WITHDRAWAL DISCHARGING PISTON PUMP
A pump assembly with a first pump which draws liquid from a reservoir and dispenses it to a second pump. The second pump receives the discharge from the first pump and air such that the second pump discharges both liquid and air. The first pump preferably has a piston movable in a first inner chamber and the second pump utilizes the same piston movable in a second outer chamber. Preferably, the second pump discharges in the withdrawal stroke, that is, while moving from a retracted position to a withdrawn position.
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This application is a continuation of co-pending U.S. patent application Ser. No. 12/457,476 filed Jun. 11, 2009 and claims the benefit of 35 U.S.C. 120.
SCOPE OF THE INVENTIONThis invention relates to liquid dispensers and, more particularly, liquid dispensers to dispensing liquid and air, preferably as a foam or mist spray.
BACKGROUND OF THE INVENTIONLiquid dispensers for dispensing soaps and other similar fluids in liquid form are known. For various reasons in some applications, it is preferable to dispense liquids, soaps and air. As one example, it may be desired to dispense other similar fluids in the form of a foam. Generally, in the form of a foam, less soap liquid is required to be used as contrasted with the soap in the liquid form. As well, soap as foam is less likely to run off a user's hands or other surfaces to be cleaned. As another example, it may be desired to dispense liquid mixed with air as a mist.
SUMMARY OF THE INVENTIONThe present invention provides improved and simplified apparatuses for dispensing a fluid and air preferably as a foam or as a mist spray.
The present invention also provides a pump assembly with a first pump which draws liquid from a reservoir and dispenses it to a second pump. The second pump receives the discharge from the first pump and air such that the second pump discharges both liquid and air. The first pump preferably has a piston movable in a first inner chamber and the second pump utilizes the same piston movable in a second outer chamber. Preferably, the second pump discharges in the withdrawal stroke, that is, while moving from a retracted position to a withdrawn position.
In one version, the first pump and the second pump are out of phase in the sense that in one stroke the first pump discharges while the second pump draws in and, in the opposite stroke, the first pump draws in while the second pump discharges. In a second version, the first pump and the second pump are in phase in the sense that both discharge in the same stroke and both draw in in the opposite stroke.
Preferably, a one-way valve is provided between the first chamber and the reservoir to provide flow outwardly only from the reservoir to the first chamber. Preferably, communication is provided between the first chamber and the second chamber, preferably with a one-way valve providing flow outwardly only from the first chamber to the second chamber.
Preferably, simultaneously discharged air and liquid may preferably produce foam by passing through a foam generator, such as a porous member, or be atomized as by passing through a nozzle.
An object of the present invention is to provide an improved pump for dispensing a liquid and air.
Another object is to provide an improved pump for dispensing a liquid in the form of a foam or air mist or air spray.
Another object is to provide an improved pump for discharge in the withdrawal stroke of liquid and air.
In one aspect, the present invention provides a pump for dispensing liquid from a reservoir comprising:
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- a piston-chamber forming member having an inner cylindrical chamber, an intermediate cylindrical chamber and an outer cylindrical chamber,
- the inner chamber, intermediate chamber and outer chamber each having a diameter, a chamber wall, an inner end and an outer end,
- the diameter of the inner chamber being greater than the diameter of the intermediate chamber, the diameter of the outer chamber being less than the diameter of the intermediate chamber,
- the inner chamber, intermediate chamber and outer chamber being coaxial with the outer end of the inner chamber opening into the inner end of the intermediate chamber, and the outer end of the intermediate chamber opening into the inner end of the outer chamber,
- the inner end of the inner chamber in fluid communication with the reservoir,
- a piston-forming element received in the piston chamber-forming member axially slidable inwardly and outwardly therein between an inward retracted position and an outward extended position,
- said piston-forming element having a central axially extending hollow stem having a central passageway closed at an inner end and having an outlet proximate an outer end,
- an inner disc extending radially outwardly from the stem, the inner disc adapted to engage the chamber wall of the inner chamber,
- an intermediate disc extending radially outwardly from the stem spaced axially outwardly from the inner disc, the intermediate disc adapted to engage the chamber wall of the intermediate chamber,
- an outer disc extending radially outwardly from the stem spaced axially outwardly from the intermediate disc, the outer disc engaging the chamber wall of the outer chamber,
- an inlet located on the stem between the intermediate disc and the outer disc in communication with the passageway,
- the piston-forming element slidably received in the piston chamber-forming member for reciprocal axial inward and outward movement therein with the inner disc in the inner chamber, the intermediate disc in the intermediate chamber and the outer disc in the outer chamber,
- the inner disc substantially preventing fluid flow in the inner chamber past the inner disc in an inward direction,
- the intermediate disc substantially preventing fluid flow in the intermediate chamber past the intermediate disc in an inward direction,
- the outer disc substantially preventing fluid flow in the outer chamber past the outer disc in an outward direction,
- the inner disc elastically deformable away from the chamber wall of the inner chamber to permit fluid flow in the inner chamber past the inner disc in an outward direction,
- the intermediate disc elastically deformable away from the chamber wall of the intermediate chamber to permit fluid flow in the intermediate chamber past the intermediate disc in an outward direction.
In another aspect, the present invention provides a pump for dispensing liquid and air, comprising:
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- an air compartment having an inlet and an outlet,
- a fluid compartment having a fluid inlet and a fluid outlet,
- the fluid inlet being in flow communication with a fluid containing reservoir,
- an outlet passageway downstream from the air compartment outlet and the fluid outlet to receive fluid which has been discharged through the fluid outlet and air which has been discharged through the air compartment outlet, the outlet passageway communicating with a discharge outlet open to the atmosphere for discharge of air and liquid,
- the pump comprising a first member and a second member cooperating to define the air compartment and the fluid compartment,
- the second member being reciprocally slidable with respect to the first member between an extended position and a retracted position,
- whereby moving the second member in a withdrawal stroke from the retracted position to the extended position pressurizes the air compartment thereby forcing liquid and air through the outlet passageway and simultaneously pressurizes the fluid compartment thereby discharging liquid from the fluid compartment out the fluid outlet, and
- whereby moving the second member in a retraction stroke from the extended position to the retracted position moves liquid from the reservoir through the fluid inlet into the fluid compartment and simultaneously draws air into the air compartment.
In another aspect, the present invention provides a pump for producing and dispensing foam, comprising:
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- an air compartment having an inlet and an outlet,
- a fluid compartment having a fluid inlet and a fluid outlet,
- the fluid inlet being in fluid communication with a fluid containing reservoir,
- a foam generating member for generating turbulence in air and fluid passing therethrough to produce foam,
- the foam generating member positioned downstream from the air compartment outlet and the fluid outlet to receive fluid which has been discharged through the fluid outlet and air which has been discharged through the air compartment outlet,
- a discharge outlet downstream from the foam generating member open to the atmosphere for discharge of any air, fluid and foam discharged outwardly through the foam generating member,
- the pump comprising a piston chamber-forming member and a piston-forming element cooperating to define the air compartment and the fluid compartment,
- the piston-forming element being reciprocally slidable with respect to the piston chamber-forming member between a withdrawal position and a retracted position, characterized by:
- whereby moving the piston-forming element in a withdrawal stroke from the retracted position to the extended position pressurizes the air compartment forcing liquid and air through the foam generating member, and
- whereby moving the piston-forming element in a retraction stroke from the withdrawn position to the retracted position draws air into the air compartment.
In a further aspect, the present invention provides a pump for dispensing liquid from a reservoir comprising:
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- a piston chamber-forming member having an inner cylindrical chamber, an intermediate cylindrical chamber and an outer cylindrical chamber,
- the inner chamber, intermediate chamber and outer chamber each having a diameter, a chamber wall, an inner end and an outer end,
- the diameter of the inner chamber being greater than the diameter of the intermediate chamber, the diameter of the outer chamber being less than the diameter of the intermediate chamber,
- the inner chamber, intermediate chamber and outer chamber being coaxial with the outer end of the inner chamber opening into the inner end of the intermediate chamber, and the outer end of the intermediate chamber opening into the inner end of the outer chamber,
- the inner end of the inner chamber in fluid communication with the reservoir,
- a piston-forming element received in the piston chamber-forming member axially slidable inwardly and outwardly therein between an inward retracted position and an outward extended position,
- said piston-forming element having a central axially extending hollow stem having a central passageway closed at an inner end and having an outlet proximate an outer end,
- an inner disc extending radially outwardly from the stem, the inner disc adapted to engage the chamber wall of the inner chamber,
- an intermediate disc extending radially outwardly from the stem spaced axially outwardly from the inner disc, the intermediate disc adapted to engage the chamber wall of the intermediate chamber,
- an outer disc extending radially outwardly from the stem spaced axially outwardly from the intermediate disc, the outer disc engaging the chamber wall of the outer chamber,
- an inlet located on the stem between the intermediate disc and the outer disc in communication with the passageway,
- the piston-forming element slidably received in the piston chamber-forming member for reciprocal axial inward and outward movement therein with the inner disc in the inner chamber, the intermediate disc in the intermediate chamber and the outer disc in the outer chamber,
- the inner disc substantially preventing fluid flow in the inner chamber past the inner disc in an inward direction,
- the intermediate disc substantially preventing fluid flow in the intermediate chamber past the intermediate disc in an inward direction,
- the outer disc substantially preventing fluid flow in the outer chamber past the outer disc in an outward direction,
- the inner disc elastically deformable away from the chamber wall of the inner chamber to permit fluid flow in the inner chamber past the inner disc in an outward direction,
- the intermediate disc elastically deformable away from the chamber wall of the intermediate chamber to permit fluid flow in the intermediate chamber past the intermediate disc in an outward direction.
In a further aspect, the present invention provides a pump for producing and dispensing foam, comprising:
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- an air compartment having an inlet and an outlet,
- a fluid compartment having a fluid inlet and a fluid outlet,
- the fluid inlet being in flow communication with a liquid containing reservoir,
- a foam generating member for generating turbulence in air and liquid passing therethrough to produce foam,
- the foam generating member positioned downstream from the air compartment outlet and the fluid outlet to receive liquid which has been discharged through the fluid outlet and air which has been discharged through the air compartment outlet,
- a discharge outlet downstream from the foam generating member open to the atmosphere for discharge of any air, liquid and foam discharged outwardly through the foam generating member,
- the pump comprising a first member and a second member cooperating to define the air compartment and the fluid compartment,
- the second member being reciprocally slidable with respect to the first member between an extended position and a retracted position,
- whereby moving the second member in a withdrawal stroke from the retracted position to the extended position pressurizes the air compartment thereby forcing liquid and air through the foam generating member and simultaneously pressurizes the fluid compartment thereby discharging liquid from the fluid compartment out the fluid outlet, and
- whereby moving the second member in a retraction stroke from the extended position to the retracted position moves liquid from the reservoir through the fluid inlet into the fluid compartment and simultaneously draws air into the air compartment.
In yet a further aspect, the present invention provides a pump for dispensing liquid and air, comprising:
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- an air compartment having an inlet and an outlet,
- a fluid compartment having a fluid inlet and a fluid outlet,
- the fluid inlet being in flow communication with a fluid containing reservoir,
- an outlet passageway downstream from the air compartment outlet and the fluid outlet to receive fluid which has been discharged through the fluid outlet and air which has been discharged through the air compartment outlet, the outlet passageway communicating with a discharge outlet open to the atmosphere for discharge of air and liquid,
- the pump comprising a first member and a second member cooperating to define the air compartment and the fluid compartment,
- the second member being reciprocally slidable with respect to the first member between an extended position and a retracted position,
- whereby moving the second member in a withdrawal stroke from the retracted position to the extended position pressurizes the air compartment thereby forcing liquid and air through the outlet passageway and simultaneously pressurizes the fluid compartment thereby discharging liquid from the fluid compartment out the fluid outlet, and
- whereby moving the second member in a retraction stroke from the extended position to the retracted position moves liquid from the reservoir through the fluid inlet into the fluid compartment and simultaneously draws air into the air compartment.
Further aspects and advantages of the present invention will become apparent from the following description taken together with the accompanying drawings in which:
Reference is made to
Support plate 84 carries an actuating lever 88 journalled for pivoting about a horizontal axis at 90. A central portion of the lever 88 carries a hook 94 to engage an engagement disc on a piston 14 of the pump assembly 10 and couple lever 88 to piston 14, such that movement of the lower handle end 96 of lever 88 from the retracted position shown in solid lines to the withdrawn position shown in dashed lines, in the direction indicated by arrow 98 slides piston 14 outwardly in a withdrawal pumping stroke as indicated by arrow 100. On release of the lower handle end 96, spring 102 biases the upper portion of lever 88 upwardly so that the lever moves the piston 14 inwardly to a fully retracted position as seen in solid lines in
In use of the dispenser 70, once exhausted, the empty, collapsed reservoir 60 together with the attached pump assembly 10 are removed and a new reservoir 60 and attached pump assembly 10 may be inserted into the housing. Preferably, the removed reservoir 60 with its attached pump assembly 10 are both made entirely out of recyclable plastic material which can easily be recycled without the need for disassembly prior to cutting and shredding.
Reference is made first to
The piston chamber-forming body 12 has three cylindrical portions illustrated to be of different radii, forming three chambers, an inner chamber 20, an intermediate chamber 22, and an outer chamber 24, all coaxially disposed about an axis 26. The intermediate cylindrical chamber 22 is of the largest diameter. The outer cylindrical chamber 24 is of a diameter which is smaller than that of the intermediate cylindrical chamber 22. The inner cylindrical chamber 20 is of a diameter less than that of the intermediate cylindrical chamber 22 and, as well, is shown to be of a diameter which is greater than that of the outer cylindrical chamber 24.
The inner chamber 20 has an inlet opening 28 and an outlet opening 29. The inner chamber has a cylindrical chamber side wall 30. The outlet opening 29 opens into an inlet end of the intermediate chamber 22 from an opening in a shoulder 31 forming an inner end of the intermediate chamber 22. The intermediate chamber 22 has an inlet opening, an outlet opening 32, and a cylindrical chamber side wall 33. The outlet opening 32 of the intermediate chamber 22 opens into an inlet end of the outer chamber 24 from an opening in a shoulder 34 forming the outer end of the intermediate chamber 22. The outer chamber 24 has an inlet opening, an outlet opening 35 and a cylindrical chamber side wall 36.
Piston 14 is axially slidably received in the body 12. The piston 14 has an elongate stem 38 upon which four discs are provided at axially spaced locations. An inner flexing disc 40 is provided at an innermost end spaced axially from an intermediate flexing disc 42 which, in turn, is spaced axially from an outer sealing disc 44. The inner disc 40 is adapted to be axially slidable within the inner chamber 20. The intermediate disc 42 is adapted to be axially slidable within the intermediate chamber 22. The outer sealing disc 44 is adapted to be axially slidable within the outer chamber 24.
The inner disc 40 has a resilient outer peripheral edge which is directed outwardly and is adapted to prevent fluid flow inwardly yet to deflect to permit fluid flow outwardly therepast. Similarly, the intermediate disc 42 has a resilient peripheral edge which is directed outwardly and adapted to prevent fluid flow inwardly yet to deflect to permit fluid flow outwardly therepast. In this regard, each of the inner disc 40 and intermediate disc 42 comprise circular resilient flexible discs each of which extends radially outwardly. The inner disc 40, when engaged with the cylindrical side wall 30 of the inner chamber 20, prevents fluid flow axially inwardly therepast through the inner chamber 20, however, is adapted to have its resilient outer edge deflect radially inwardly to permit fluid flow, under pressure differentials above a predetermined pressure, axially outwardly therepast. The intermediate flexible disc 42, when engaged with the interior wall 33 of the intermediate chamber 22, prevents fluid flow axially inwardly therepast through the intermediate chamber 22, however, is adapted to have its resilient outer edge deflect radially inwardly to permit fluid flow, under pressure differentials above a predetermined pressure, axially outwardly therepast.
The sealing outer disc 44 extends radially outwardly from the stem 38 to sealably engage the side wall 36 of the outer chamber 24, and prevent flow therepast either outwardly or both outwardly and inwardly. In this regard, the outer disc 44 includes an elastically deformable edge portion near the side wall 36 of the outer chamber 24. This edge portion of the outer disc 44 is deflectable radially inwardly so as to permit, under a sufficiently high vacuum, air to flow axially inwardly therepast. In one generally preferred arrangement, the piston 14 may be configured such that all air to be drawn inwardly is drawn inwardly via the outlet 48, however, some proportion of air drawn in may be drawn in past the outer disc 44 by deflection of the outer disc.
The piston 14 essentially forms, as defined between the inner disc 40 and the intermediate disc 42, an annular inner compartment 64 which opens radially outwardly as an annular opening between the discs 40 and 42. Similarly, the piston 14 effectively forms between the intermediate sealing disc 42 and the outer sealing disc 44 an annular outer compartment 66 which opens radially outwardly as an annular opening between the discs 42 and 44.
In the first embodiment of
An outermost portion of the stem 38 is hollow with a central passageway 46 extending from an outlet 48 at the outermost end 50 of the stem 38 centrally through the stem 38 to a closed inner end 52. A radially extending inlet 54 extends radially through the stem into the passageway 46, with the inlet 54 being provided on the stem 38 in between the intermediate disc 42 and the outer disc 44. The inlet 54 is preferably disposed as shown proximate the outer disc 44 such that liquid in the bottom of the compartment 66 will be at or close to a height of the inlet 54 and will be urged out the inlet 54 in a withdrawal stroke. While not necessary, as shown in
The piston 14 is shown as formed from two main elements, an inner piston element 102 and an outer piston element 104 which are secured together capturing a foam producing element therebetween within an enlarged section of the passageway 46. The foam producing member as shown in
The foam-inducing member is provided in the passageway 46 intermediate between the inlet 54 and the outlet 48. The screens 56 and 57 may be fabricated of plastic, wire or cloth material. It may comprise a porous ceramic member. The screens 56 and 57 provides small apertures through which an air and liquid mixture may be passed to aid foam production as by production of turbulent flow through the small pores or apertures of the screen thereof in a known manner. While two screens 56 and 57 are shown to produce foam, other foam producing members may be used preferably being porous members, preferably with small openings therethrough preferably to produce turbulence in fluid passing therethrough.
The piston 14 carries an engagement flange or disc 62 on the stem 38 outward from the outer sealing disc 44. Engagement disc 62 is provided for engagement by an activating device in order to move the piston 14 in and out of the body 12. The outer piston element 104 is shown to carry the engagement flange 62.
In a withdrawal stroke from the position of
In a retraction stroke with movement from the extended position of
Reciprocal movement of the piston 14 between the retracted and extended positions will successively draw and pump precise amounts of fluid from a container and mix such fluid with air from the atmosphere and dispense the fluid commingled with the air as a foam.
Operation of the pump assembly illustrated in
It is to be appreciated that the inner disc 40 and the intermediate disc 42 form a first stepped pump and, similarly, the intermediate disc 42 and the outer disc 44 form a second stepped pump. The first pump and second pump are out of phase in the sense that in any one retraction or extension stroke while one pump is drawing fluid in, the other is discharging fluid out.
Both the piston 14 and the body 12 may be formed as from plastic as by injection moulding.
The body 12 is shown as formed as a unitary element by injection moulding with the stepped increase in diameter from the inner chamber 20 to the intermediate chamber 22 selected to be sufficiently small that a mould core to form the larger diameter intermediate chamber 22 may be withdrawn through the inner chamber 20. In this regard, to facilitate the mould core removal, the shoulder 31 is shown to provide a smooth transition from the chamber 22 to the chamber 20. Alternatively, the body 12 may be formed from two or more separate portions, for example, one including the cylindrical wall 30 of the inner chamber 20 and the shoulder 31, and the other including the cylindrical wall 33 of the intermediate chamber 22.
In the embodiment of
The first embodiment shows dispensers for passing liquid and air through screens 56 and 57 to dispense the liquid as a foam. The screens 56 and 57 can be eliminated in which case the dispenser illustrated could serve to dispense liquid with air. The foaming screens could be replaced by another orifice device such as an atomizing nozzle to produce a mist or spray.
Reference is now made to
The first exception is that the inner chamber 20 has a diameter which is larger than the diameter of the intermediate chamber 22.
The second exception is that the piston chamber-forming body 12 carries an internally threaded collar 106 adapted to threadably secure the piston chamber-forming body 12 to the neck of a bottle or reservoir not shown.
The third exception is that the piston chamber-forming body 12 has been provided with a protective shroud 108 effectively comprising an outward extension of the intermediate chamber wall 33 from the shoulder 34 so as to provide protection to the piston 14 when in the retracted position as can be useful during shipping and handling and, for example, reduce the need for a separate removable protective cover.
The fourth exception includes the construction of the piston so that the inner portion 102 carries the engagement disc 62 which is of reduced diameter so as to permit the portion of the piston 14 carrying the engagement flange to be inserted outwardly through the outer chamber as can permit any preassembly of the piston before coupling to the body 12.
The fifth exemption is that the foam inducing member has been removed and replaced by a nozzle member 110 carried as a smaller sized outer portion of the piston 14 located in the passageway 46 near the outlet 48 with the nozzle member having an aperture therethrough adapted to discharge air and liquid as a spray or air mist.
One or more the collar 106, the protective shroud 108, the reduced diameter engagement disc 62 and the nozzle 110 could similarly be provided on the first embodiment of
From the retracted position shown in
In a retraction stroke with movement from a withdrawn position inwardly toward to the retracted position of
As with the first embodiment of
It is to be appreciated that the nature of the liquid to be dispensed including its viscosity and flow characteristics will be important in order for a person skilled in the art to make suitable selection of the relative sizes and dimensions and resistance to flow provided by the various passageways, inlets, outlets and screens and/or past the various discs. As well, the quantity of liquid desired to be dispensed in each stroke will have a bearing on the relative proportion and sizing of the components including particularly the inner compartment 64, outer compartment 66 and the axial length of a stroke of the piston.
In the preferred embodiments, the engagement disc 62 is provided on the piston 14 for engagement to move the piston inwardly and outwardly. It is to be appreciated that various other mechanisms can be provided for engagement and movement of the piston relative the body 12.
The preferred embodiments of the invention show passageway 46 for dispensing of the air and/or liquid as being provided internally within a piston. Such an arrangement is believed preferred from the point of view of ease of construction of the pump assembly 10. However, it is to be appreciated that passageways for dispensing the liquid and/or foam may be provided, at least partially, as part of the body 12 or removably mounted to the body 12.
In accordance with the preferred embodiment illustrated, the relative buoyancy of air within the liquid and, hence, the separation of air and liquid due to gravity are utilized as, for example, to permit liquid in the outer compartment 66 to flow downwardly in the outer chamber 24 to be disposed proximate the outlet 54. It is to be appreciated, therefore, that the pump assembly 10 in accordance with the presence invention should preferably be disposed with what has been referred to as the inner end of the pump assembly at a height above the height of the outer outlet end.
Reference is made to
The piston chamber-forming body 12 has four cylindrical portions illustrated to be of different radii, forming four chambers, an inner chamber 20, an inner intermediate chamber 21, an outer intermediate chamber 23, and an outer chamber 24, all coaxially disposed about an axis 26. The inner cylindrical chamber 20 is of a diameter less than that of the inner intermediate cylindrical chamber 21. The outer intermediate cylindrical chamber 23 is of a diameter which is greater than that of the outer cylindrical chamber 24.
The inner chamber 20 has an inlet opening 28 and an outlet opening 29. The inner chamber has a cylindrical chamber side wall 30. The outlet opening 29 opens into an inlet end of the inner intermediate chamber 21 from an opening in a shoulder 31 forming an inner end of the inner intermediate chamber 21.
The inner intermediate chamber 21 has an inlet opening, an outlet opening 32, and a cylindrical chamber side wall 33. The outlet opening 32 of the inner intermediate chamber 21 opens into the outer intermediate chamber 23.
The outer intermediate chamber 23 has an outlet opening 133 and a cylindrical chamber side wall 134. The outlet opening of the outer intermediate chamber 23 opens into the outer chamber 24 from an opening in a shoulder 34 forming the outer end of the outer intermediate chamber 23. The outer chamber 24 has an inlet opening, outlet opening 35 and a cylindrical chamber side wall 36.
Piston 14 is axially slidably received in the body 12. The piston 14 has an elongate stem 38 upon which six discs are provided at axially spaced locations. A flexing inner disc 40 is provided at an innermost end spaced axially from a flexing inner intermediate disc 42 which, in turn, is spaced axially from a sealing inner intermediate disc 43. The inner disc 40 is adapted to be axially slidable within the inner chamber 20. The flexing inner intermediate disc 42, and the sealing inner intermediate disc 43 are adapted to be axially slidable within the inner intermediate chamber 21. An outer intermediate disc 45 is provided adapted to be axially slidable within the outer intermediate chamber 23. A sealing outer disc 44 is spaced axially from the outer intermediate disc 45 and adapted to be axially slidable within the outer cylindrical chamber 24.
The inner disc 40 has a resilient outer peripheral edge which is directed outwardly and is adapted to prevent fluid flow inwardly yet to deflect to permit fluid flow outwardly therepast in the inner chamber 20. The flexing inner intermediate disc 42 has a resilient peripheral edge which is directed outwardly and adapted to prevent fluid flow inwardly yet to deflect to permit fluid flow outwardly therepast in the inner intermediate chamber 21. The sealing inner intermediate disc 43 is adapted to be axially slidable within the inner intermediate chamber 21. The sealing inner intermediate disc 43 extends radially outwardly from the stem 38 to sealably engage the side wall of the inner intermediate chamber 21, and prevent flow therepast either outwardly or both outwardly and inwardly.
The flexing outer intermediate disc 45 has a resilient peripheral edge which is directed outwardly and adapted to prevent fluid flow inwardly yet to deflect to permit fluid flow outwardly therepast in the outer intermediate chamber 23. The outer sealing disc 44 is adapted to be axially slidable within the outer cylindrical chamber 24. The outer sealing disc 44 extends radially outwardly from the stem 38 to sealably engage the side wall 36 of the outer chamber 24, and prevent flow therepast either outwardly or both outwardly and inwardly.
The piston 14 essentially forms, as defined between the inner disc 40 and the flexing inner intermediate disc 42, an annular inner compartment 64 which opens radially outwardly as an annular opening between the discs 40 and 42. Similarly, the piston 14 effectively forms between the flexing inner intermediate disc 42 and the sealing inner intermediate sealing disc 43 an annular outer intermediate compartment 65 which opens radially outwardly as an annular opening between the discs 42 and 43. Similarly, the piston 14 effectively forms between the outer intermediate sealing disc 45 and the outer disc 44 an annular outer compartment 66 which opens radially outwardly as an annular opening between the discs 45 and 44.
An outermost portion of the stem 38 is hollow with a central outer passageway 46 extending from an outlet 48 at the outermost end 50 of the stem 38 centrally through the stem 38 to a closed inner end 52. A radially extending inlet 54 extends radially through the stem into the outer passageway 46, with the inlet 54 being provided on the stem in between the outer disc 44 and the outer intermediate disc 45. A foam inducing member including screens 56 and 56 is provided in the outer passageway 46 intermediate between the inlet 54 and the outlet 48 to aid foam production as by production of turbulent flow through small pores or apertures of the screen thereof in a known manner.
An intermediate portion of the stem 38 is also hollow with a central inner passageway 146 extending from an inner closed end 152 to an outer closed end 153. A radially extending inlet 154 extends radially through the stem into the inner passageway 146, with the inlet 154 being provided on the stem in between the flexing inner intermediate disc 42 and the sealing inner intermediate disc 43. A radially extending outlet 148 extends radially through the stem 38 from the inner passageway 146, to between the outer intermediate disc 45 and the outer disc 44.
The piston 14 also carries an engagement flange or disc 62 on the stem 38 outward from the outer sealing disc 44. Engagement disc 62 is provided for engagement by an activating device in order to move the piston 14 in and out of the body 12.
The first inner liquid pump comprises a stepped cylinder pump formed by inner chamber 20 and the inner intermediate chamber 21 interacting with the piston 14 carrying the inner disc 40, the flexing inner intermediate disc 42 and the sealing inner intermediate sealing disc 43, such that liquid from the reservoir is in a withdrawal stroke drawn from the reservoir into the annular inner compartment 64 between the inner disc 40 and the flexing inner intermediate disc 42 and in a retraction stroke liquid in the annular inner compartment 64 is forced outwardly past the inner intermediate flexing disc 42 into an annular outer intermediate compartment 65 and then via the inlet 154, inner passageway 146 and the outlet 148 into the annular outer compartment 66.
The second outer air pump comprises a stepped cylinder pump formed by the outer intermediate chamber 23 and the outer chamber 24 interacting with the piston 14 carrying the outer intermediate disc 45 and the outer disc 44, such that air and liquid in the outer compartment 66 is in a withdrawal stroke forced from the outer compartment 66 via the inlet 54, outer passageway 46 and out the outlet 48, and in a retraction stroke atmospheric air plus air and/or liquid in the outer passageway 46 is drawn into the outer compartment 66 via the outlet 48, outer passageway 46 and inlet 54.
In the third embodiment of
Reference is now made to
From the retracted position shown in
In the fourth embodiment of
Reference is made to
A flexing inner disc 40 is provided at an innermost end spaced axially from a flexing inner intermediate disc 42 which, in turn, is spaced axially from a sealing outer intermediate disc 43. The inner disc 40 is adapted to be axially slidable within the inner chamber 20. The flexing inner intermediate disc 42, and the sealing outer intermediate disc 43 are adapted to be axially slidable within the intermediate chamber 22. A sealing outer disc 44 is spaced axially from the sealing outer intermediate disc 43 and adapted to be axially slidable within the outer cylindrical chamber 24.
The inner disc 40 has a resilient outer peripheral edge which is directed outwardly and is adapted to prevent fluid flow inwardly yet to deflect to permit fluid flow outwardly therepast in the inner chamber 20. The flexing inner intermediate disc 42 has a resilient peripheral edge which is directed outwardly and adapted to prevent fluid flow inwardly yet to deflect to permit fluid flow outwardly therepast in the intermediate chamber 22. The sealing outer intermediate disc 43 is adapted to be axially slidable within the intermediate chamber 22. The sealing outer intermediate disc 43 extends radially outwardly from the stem 38 to sealably engage the side wall of the intermediate chamber 22, and prevent flow therepast both outwardly and inwardly. The outer sealing disc 44 extends radially outwardly from the stem 38 to sealably engage the side wall 36 of the outer chamber 24, and prevent flow therepast either outwardly or both outwardly and inwardly.
The piston 14 essentially forms, as defined between the inner disc 40 and the flexing inner intermediate disc 42, an annular inner compartment 64 which opens radially outwardly as an annular opening between the discs 40 and 42. Similarly, the piston 14 effectively forms between the flexing inner intermediate disc 42 and the sealing outer intermediate sealing disc 43 an annular outer intermediate compartment 65 which opens radially outwardly as an annular opening between the discs 42 and 43. Similarly, the piston 14 effectively forms between the outer intermediate sealing disc 43 and the outer disc 44 an annular outer compartment 66 which opens radially outwardly as an annular opening between the discs 43 and 44.
The piston 14 also carries an engagement flange or disc 62 on the stem 38 outward from the outer sealing disc 44. Engagement disc 62 is provided for engagement by an activating device in order to move the piston 14 in and out of the body 12.
The stem 38 is hollow having a central passageway 46 open at an outlet 48 and closed at an inner end 52. An axially extending inlet 54 extends radially through the stem into the passageway 46 with the inlet 54 being provided on the stem in between the outer disc 44 and the outer intermediate disc 43. A center tube 138 is provided coaxially within the passageway 46. The tube 138 has a central passageway 146 coaxially therein open at an outlet end 148 within the passageway 46 and closed at an inner end 152. A radially extending inlet 154 extends radially through the stem into the inner passageway 146, with the inlet 154 being provided on the stem in between the flexing intermediate disc 42 at the sealing outer intermediate disc 43.
A first inner liquid pump comprises a stepped cylinder pump formed by inner chamber 20 and the intermediate chamber 22 interacting with the piston 14 carrying the inner disc 40, the flexing inner intermediate discs 42 and the sealing outer intermediate discs 43, such that fluid from the reservoir is in a retraction stroke drawn from the reservoir into the annular inner compartment 64 between the inner disc 40 and the flexing intermediate disc 42 and, in a withdrawal stroke, liquid in the annular inner compartment 64 is forced outwardly past the inner intermediate flexing disc 42 into the annular intermediate compartment 65 and then via the inlet 154, the inner passage 146 discharged out the outlet 148 into the passageway 46.
The second outer air pump comprises a stepped cylinder pump formed by the intermediate chamber 22 and the outer chamber 24 interacting with the piston 14 carrying the outer intermediate disc 43 and the outer disc 44, such that air in the outer compartment 66 is in a withdrawal stroke forced from the outer compartment 66 via the inlet 54, the outer passageway 46 to out of the outlet 48 and in a retraction stroke atmospheric air is drawn into the outer compartment via the outlet 48, outer passageway 46 and the inlet 54.
As seen in
Reference is made to
The second exception is that an annular flute-like channelway 346 is provided in an outer surface of the stem 38 between the engagement flange 62 and the outer disc 44 so as to provide for air communication from outside the body 12 into the outer chamber 24.
In operation, the outer disc 144 permits air to pass outwardly therepast through the annular opening 246 yet to prevent air to pass inwardly therepast. In a retraction stroke, atmospheric air may enter the outer compartment 66 by flowing through the slotway 364 to the outer disc 44 which is to be configured to have its resilient outer edge deflect radially inwardly to permit air flow therepast.
The provision of the outer disc 144 can assist in ensuring that fluid discharged from the outlet 148 or in the outlet 48 is not drawn inwardly into the chamber 66. The relative resiliency of the outer disc 144 can be adjusted to require air pressure to be developed within the chamber 66 before air may be released through the annular opening 248. The relative resiliency of the outer disc 44 may be adjusted so as to permit relative ease of air flow therepast into the chamber 66.
As a further embodiment to be appreciated that an arrangement similar to
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While this invention has been described with reference to preferred embodiments, the invention is not so limited. Many modifications and variations will now occur to persons skilled in the art. For a definition of the invention, reference is made to the appended claims.
Claims
1. A pump for dispensing liquid from a reservoir comprising:
- a piston chamber-forming member having an inner cylindrical chamber, an intermediate cylindrical chamber and an outer cylindrical chamber,
- the inner chamber, intermediate chamber and outer chamber each having a diameter, a chamber wall, an inner end and an outer end,
- the diameter of the inner chamber being greater than the diameter of the intermediate chamber, the diameter of the outer chamber being less than the diameter of the intermediate chamber,
- the inner chamber, intermediate chamber and outer chamber being coaxial with
- the outer end of the inner chamber opening into the inner end of the intermediate chamber, and the outer end of the intermediate chamber opening into the inner end of the outer chamber,
- the inner end of the inner chamber in fluid communication with the reservoir,
- a piston-forming element received in the piston chamber-forming member axially slidable inwardly and outwardly therein between an inward retracted position and an outward extended position,
- said piston-forming element having a central axially extending hollow stem having a central passageway closed at an inner end and having an outlet proximate an outer end,
- an inner disc extending radially outwardly from the stem, the inner disc adapted to engage the chamber wall of the inner chamber,
- an intermediate disc extending radially outwardly from the stem spaced axially outwardly from the inner disc, the intermediate disc adapted to engage the chamber wall of the intermediate chamber,
- an outer disc extending radially outwardly from the stem spaced axially outwardly from the intermediate disc, the outer disc engaging the chamber wall of the outer chamber,
- an inlet located on the stem between the intermediate disc and the outer disc in communication with the passageway,
- the piston-forming element slidably received in the piston chamber-forming member for reciprocal axial inward and outward movement therein with the inner disc in the inner chamber, the intermediate disc in the intermediate chamber and the outer disc in the outer chamber,
- the inner disc substantially preventing fluid flow in the inner chamber past the inner disc in an inward direction,
- the intermediate disc substantially preventing fluid flow in the intermediate chamber past the intermediate disc in an inward direction,
- the outer disc substantially preventing fluid flow in the outer chamber past the outer disc in an outward direction,
- the inner disc elastically deformable away from the chamber wall of the inner chamber to permit fluid flow in the inner chamber past the inner disc in an outward direction,
- the intermediate disc elastically deformable away from the chamber wall of the intermediate chamber to permit fluid flow in the intermediate chamber past the intermediate disc in an outward direction.
2. A pump as claimed in claim 1 wherein in the piston-forming element moving from the retracted position to the extended position, liquid is displaced in an outward direction past the intermediate disc to between the intermediate disc and the outer disc, and both liquid and air are displaced from between the intermediate disc and the outer disc through the inlet and passageway and out the outlet; and
- in the piston-forming element moving from the extended position to the retracted position, liquid from the reservoir is displaced in an outward direction past the inner disc to between the inner disc and the intermediate disc, and air is drawn into between the intermediate disc and the outer disc.
3. A pump as claimed in claim 2 wherein in the piston-forming element moving from the extended position to the retracted position, the air drawn into between the intermediate disc and the outer disc comprises atmospheric air drawn inwardly via the outlet through the passageway.
4. A pump as claimed in claim 3 wherein in the piston-forming element moving from the extended position to the retracted position, the air drawn into between the intermediate disc and the outer disc further comprises air in the passageway drawn inwardly.
5. A pump as claimed in claim 3 wherein in the piston-forming element moving from the extended position to the retracted position, air and fluid in the passageway are drawn inwardly into between the intermediate disc and the outer disc.
6. A pump as claimed in claim 1 wherein the air drawn into between the intermediate disc and the outer disc is drawn thereinto, at least in part, via the outlet, passageway and inlet.
7. A pump as claimed in claim 1 wherein the outer disc engaging the chamber wall of the outer chamber circumferentially thereabout to form a substantially fluid impermeable seal therewith on sliding of said piston-forming element inwardly and outwardly between the retracted and the extended positions, and all the atmospheric air drawn into between the intermediate disc and the outer disc is drawn thereinto via the outlet, passageway and inlet.
8. A pump as claimed in claim 1 wherein the outer disc having an elastically deformable edge portion proximate the chamber wall of the outer chamber circumferentially thereabout, the outer disc elastically deformable away from the chamber wall of the outer chamber to permit air flow in the outer chamber past the outer disc in an inward direction, the air drawn into between the intermediate disc and the outer disc is drawn thereinto at least in part inwardly in the outer chamber past the outer disc.
9. A pump as claimed in claim 1 wherein the air drawn into between the intermediate disc and the outer disc is drawn thereinto at least in part via the outlet, passageway and inlet.
10. A pump as claimed in claim 1 including an orifice member in the passageway between the inlet and the outlet selected from a porous member for generating turbulence in fluid passing therethrough to generate foam when liquid and air pass therethrough simultaneously and a nozzle member to at least partially atomize liquid when liquid and air pass therethrough simultaneously.
11. A pump as claimed in claim 1 wherein:
- the outer end of the inner chamber comprises an annular shoulder opening into the inner end of the intermediate chamber, and the outer end of the intermediate chamber comprises an annular shoulder opening into the inner end of the outer chamber.
12. A pump as claimed in claim 1 in which each of the piston chamber-forming member and piston-forming member element is of generally circular cross-section disposed coaxially about a central axis along which the piston-forming element and piston chamber-forming member are slidable relative each other.
13. A pump as claimed in claim 1 in which the inner chamber is above the intermediate chamber, the intermediate chamber is above the outer chamber, the inner end of the inner chamber is above the outer end of the inner chamber, the inner end of the intermediate chamber is above the outer end of the intermediate chamber, and the inner end of the outer chamber above the outer end of the outer chamber.
14. A pump as claimed in claim 13 in which the reservoir is above the inner chamber.
15. A pump as claimed in claim 1 wherein the diameter of the outer chamber is less than the diameter of the inner chamber.
16. A pump for dispensing liquid and air, comprising:
- an air compartment having an inlet and an outlet,
- a fluid compartment having a fluid inlet and a fluid outlet,
- the fluid inlet being in flow communication with a fluid containing reservoir,
- an outlet passageway downstream from the air compartment outlet and the fluid outlet to receive fluid which has been discharged through the fluid outlet and air which has been discharged through the air compartment outlet, the outlet passageway communicating with a discharge outlet open to the atmosphere for discharge of air and liquid,
- the pump comprising a first member and a second member cooperating to define the air compartment and the fluid compartment,
- the second member being reciprocally slidable with respect to the first member between an extended position and a retracted position,
- whereby moving the second member in a withdrawal stroke from the retracted position to the extended position pressurizes the air compartment thereby forcing liquid and air through the outlet passageway and simultaneously pressurizes the fluid compartment thereby discharging liquid from the fluid compartment out the fluid outlet, and
- whereby moving the second member in a retraction stroke from the extended position to the retracted position moves liquid from the reservoir through the fluid inlet into the fluid compartment and simultaneously draws air into the air compartment.
17. A pump as claimed in claim 16 including a foam generating member for generating turbulence in air and liquid passing therethrough to produce foam,
- the foam generating member positioned downstream from the air compartment outlet and the fluid outlet to receive liquid which has been discharged through the fluid outlet and air which has been discharged through the air compartment outlet.
18. A pump for producing and dispensing foam, comprising:
- an air compartment having an inlet and an outlet,
- a fluid compartment having a fluid inlet and a fluid outlet,
- the fluid inlet being in fluid communication with a fluid containing reservoir,
- a foam generating member for generating turbulence in air and fluid passing therethrough to produce foam,
- the foam generating member positioned downstream from the air compartment outlet and the fluid outlet to receive fluid which has been discharged through the fluid outlet and air which has been discharged through the air compartment outlet,
- a discharge outlet downstream from the foam generating member open to the atmosphere for discharge of any air, fluid and foam discharged outwardly through the foam generating member,
- the pump comprising a piston chamber-forming member and a piston-forming element cooperating to define the air compartment and the fluid compartment,
- the piston-forming element being reciprocally slidable with respect to the piston chamber-forming member between a withdrawal position and a retracted position, characterized by:
- whereby moving the piston-forming element in a withdrawal stroke from the retracted position to the extended position pressurizes the air compartment forcing liquid and air through the foam generating member, and
- whereby moving the piston-forming element in a retraction stroke from the withdrawn position to the retracted position draws air into the air compartment.
19. A pump as claimed in claim 18 wherein in the piston-forming element moving from the retracted position to the extended position, fluid is displaced in an outward direction past the intermediate disc to between the intermediate disc and the outer disc, and both fluid and air are displaced from between the intermediate disc and the outer disc through the stem inlet and passageway and out the outlet;
- in the piston-forming element moving from the extended position to the retracted position, fluid from the reservoir is displaced in an outward direction past the inner disc to between the inner disc and the intermediate disc, and air is drawn into between the intermediate disc and the outer disc.
Type: Application
Filed: Jan 2, 2013
Publication Date: May 9, 2013
Applicant: GOTOHTI.COM INC. (Beamsville)
Inventor: GOTOHTI.COM INC. (Beamsville)
Application Number: 13/733,027
International Classification: A47K 5/12 (20060101);