PRECISION PERISTALTIC METERING PUMP AND DEVICE THEREOF
A precision peristaltic metering pump comprises a base, a case structure, a differential device, and a hose. The case structure is disposed on the base and has a lateral wall. The differential device comprises a first member, a second member, a plurality of planet gears, and a sun gear, wherein the first member has a first internal gear and a plurality of rollers. The second member has a second internal gear. Each planet gear has a first external gear and a second external gear. The first and second external gears mesh with the first and second internal gears respectively. The sun gear pivotally connects with the base and meshes with the plural planet gears. Hence, while the sun gear drives the planet gears, the first member is in rotation relative to the second member. The hose is pushed by the rollers so as to urge the lateral wall.
1. Field of the Invention
The present invention relates to a precision peristaltic metering pump and a device thereof; in particular, to a precision peristaltic metering pump that has a differential device and a device thereof.
2. Description of Related Art
Peristaltic pump functions to deliver fluid. Peristalsis is a phenomenon of fluid delivery under normal pressure environment, and such peristalsis is just like the delivery phenomena of the intestines and stomach of a human being. For a peristaltic tubing pump, it is to deliver fluid via the peristalsis of the wall of a hose. The peristaltic tubing pump is characterized by that fluid only contacts with the inner wall of the hose and hose fittings and does not touch other active components, units or fluids in the pump so as to lower down the contaminations as possible as it can. The peristaltic tubing pump is applied to not only labs and multiple applications in industry, but drip liquid, blood transfusions and humoral in dialysis machine of hospital. Prior peristaltic pump has a disc and a plurality of roller sets pivotally disposed on the periphery of the disc in equidistance, and the surface of each roller bulges out from the periphery of the disc. The roller sets are driven by motor for circular motions. Through push and releasing soft hose of the roller sets, pulse intermittent thrusts may happen to deliver the fluid in the soft hose. However, the prior way of the roller sets pushing the soft hose may often cause varied unstable flow rates, so that if an accurate flow rate is a must, the prior pump will be failed.
Therefore, the inventor had studied related technologies so as to produce the present invention that improve the disadvantages of the prior arts.
SUMMARY OF THE INVENTIONThe object of the present invention is to provide a precision peristaltic metering pump, which accurately control the intermittent pulsation between rollers and a hose in order to precisely control the output flow quantity of fluid in the hose.
The other object of the present invention is to provide the precision peristaltic metering pump device, a flexible fastening member is squeezed by a holding member to wrap around the hose so as to prevent that the hose slips. The holding member and the flexible fastening member are simple, easily assembled, etc.
In order to achieve the aforementioned objects, according to an embodiment of the present invention, the present invention comprises a base, a case structure, a differential device, and a hose. The case structure is disposed on the base and has a lateral wall. The differential device comprises a first member, a second member, a plurality of planet gears, and a sun gear, wherein the first member has a first internal gear and a plurality of rollers. The second member has a second internal gear. Each planet gear has a first external gear and a second external gear. The first external gear meshes with the first internal gear, the second external gear meshes with the second internal gear. The sun gear pivotally connects with the base and meshes with the plurality of planet gears. Hence, while the sun gear drives the planet gears, the first member is in rotation relative to the second member. Meanwhile the hose is pushed by the rollers so as to urge the lateral wall.
In addition, the precision peristaltic metering pump cooperates with a flexible fastening member and a holding member to become a precision peristaltic metering pump device. The flexible fastening member is squeezed by the holding member to wrap around the hose.
The present invention has following advantages listed below. The precision peristaltic metering pump of the present invention adopts a differential device to accurately control the speed of the rollers squeezing the hose for continuously and quantitatively controlling a precision flow rate. Additionally, due to the simple structure of the differential device, the advantages of lower manufacturing cost and difficulty are approached.
In order to further the understanding regarding the present invention, the following embodiments are provided along with illustrations to facilitate the disclosure of the present invention.
The aforementioned illustrations and following detailed descriptions are exemplary for the purpose of further explaining the scope of the present invention. Other objectives and advantages related to the present invention will be illustrated in the subsequent descriptions and appended drawings.
With references to
The case structure 20 is disposed on the base 10 and has a lateral wall 201, an accommodating space 202 is defined by the lateral wall 201, so that the differential device 30 is accommodated in the accommodating space 202.
The differential device 30 includes a first member 301, a second member 302, a plurality of planet gears 303, and a sun gear 304; wherein the sun gear 304 pivotally connects with the base 10 and meshes with the plurality of planet gears 303. The first member 301 has a first internal gear 301a. The second member 302 has a second internal gear 302a. Each planet gear 303 has a first external gear 303a and a second external gear 303b. The first external gear 303a meshes with the first internal gear 301a, the second external gear 303b meshes with the second internal gear 302a. Hence, while the sun gear 304 drives the planet gears 303, the first member 301 is in rotation relative to the second member 302, and a plurality of rollers 301b may be in rotation as well as the first member 301. Meanwhile the hose 40 is pushed by the rollers 301b so as to urge the lateral wall 201. By the means of pushing and releasing the hose 40, the fluid inside the hose 40 is then driven to move. For example, a section, between two rollers 301b, of the hose 40 has some fluid, and the hose 40 may be squeezed by the movement of the rollers 301b in order to deliver the fluid. Continuously, the fluid is exhausted to outside of the hose 40 while the rollers 301b release the hose 40, in another word, the hose 40 is not squeezed by the rollers 301b. After that, the following fluid will be input to the hose 40 constantly. According to aforesaid, the precision peristaltic metering pump 1 of the present invention adopts the differential device 30 to accurately control the speed of the rollers 301b squeezing the hose 40 for continuously and quantitatively controlling a precision flow rate. In addition, due to the simple structure of the differential device 30, the advantages of lower manufacturing cost and difficulty are approached.
Following will describe the preferred embodiments in detail. With references to
Except for the first member 301, the second member 302, the plurality of planet gears 303, and the sun gear 304, the differential device 30 has a planet arm set 305 and a plurality of pins 306; the planet arm set 305 has a first planet arm 305a and a second planet arm 305b, the rollers 301b pivotally connects with a position between the first planet arm 305a and the first member 301 through the rotors 301c. As shown in
With reference to
It is to be noted that the tooth number of the first external gear 303a of the planet gears 303 may be the same as or different than the tooth number of the second external gear 303b of the planet gears 303. In case of different tooth numbers, a variety of rotation ratios can then be produced. That is, to meet different demands, different rates of tooth numbers of the planet gears 303 can be designed. In addition, the touching areas are larger while the sun gears 304, the planet gears 303, the first member 301, and the second member 302 mesh with each other, the stress accepted by each gear is lowered. Hence, the differential device 30 is able to accept larger power input (high power horsepower input), tooth-broken may not be happening very easily, the structure is compact, and the performance is stable as well.
With reference to
With references to
The flexible fastening member 60 female-connects with the hose 40. The holding member 70 clamps the flexible fastening member 60, and the flexible fastening member 60 is squeezed by the holding member 70 in order to tightly wrap around the hose 40. Thus, the hose 40 may not slip while the rollers 30 squeeze the hose 40, so that the fluid in the hose 40 can accurately and quantitatively flow to a directed direction.
The hose 40 has an inlet portion 401 and an outlet portion 402, and the inlet portion 401 and the outlet portion 402 can be at the same side of the case structure 20. The flexible fastening member 60 female-connects with the inlet portion 401 and the outlet portion 402 of the hose 40, the flexible fastening member 60 is thus squeezed by the holding member 70 in order to tightly wrap around the inlet portion 401 and the outlet portion 402. The holding member 70 can be any figure of structure to hold the flexible fastening member 60 and is demanded by any request. For the preferred embodiment, as shown in
With references to
There is one thing to be noted. A limit portion R is between the hose limits S. While the holding member 70 clamps the ringer 601, the bottom edge 703 of the U-type clamping structure 702 of the holding member 70 is against to the limit portion R in order to effectively prevent the movement, relative to the rollers 301b, of the hose 40. In addition, since the one end of the holding member 70 forms two bent arm structures 701 that are corresponding to each other, and the other end of the holding member 70 forms a U-type clamping structure 702. While the holding member 70 is going to clamp the ringer 601, a force is simply applied to the two sides of the U-type clamping structure 702, the distance between the two bent arm structures 701 may be automatically larger in order to let the U-type clamping structure 702 female-connect with and clamp the ringer 601, and the inlet portion 401 and the outlet portion 402 of the hose 40 may not happen relative motions. More, because of a pre-determined width L of the ringer 601, and while the holding structure 70 is going to use the ringer 601 to wrap around the hose 40, the touching area of the ringer 601 and the hose 40 is increased due to the pre-determined width so as to let an increased static friction strengthen the bonding forces between the ringer 601 and the hose 40. On the other hand, the flow quantity of the fluid in the hose 40 may not be affected. Additionally, the hose 40 and the ringer 601 are made of silicone. Hence, the holding member 70 and the flexible fastening member 60 of the precision peristaltic metering pump device 2 are simple, easily assembled, hardly out of order, and stable.
According to aforesaid, the present invention has some advantages listed below:
- 1. The differential device of the precision peristaltic metering pump is able to accurately control the speed of the rollers squeezing the hose in order to approach the requirement of precision flow.
- 2. The differential device of the precision peristaltic metering pump is simple, cost-saving, easily assembled, hardly out of order, and stable, and the rollers can be effectively controlled.
- 3. The differential device of the precision peristaltic metering pump is able to accept larger power input, tooth-broken may not be happening very easily, the structure is compact, and the performance is stable as well.
- 4. The flexible fastening member of the precision peristaltic metering pump device is squeezed by the holding member to wrap around the hose so as to prevent that the hose slips while the rollers squeeze the hose. The holding member and the flexible fastening member of the precision peristaltic metering pump are simple, easily assembled, hardly out of order, and stable.
The descriptions illustrated supra set forth simply the preferred embodiments of the present invention; however, the characteristics of the present invention are by no means restricted thereto. All changes, alternations, or modifications conveniently considered by those skilled in the art are deemed to be encompassed within the scope of the present invention delineated by the following claims.
Claims
1. A precision peristaltic metering pump comprising:
- a base;
- a case structure, disposed on the base and having a lateral wall, an accommodating space being defined by the lateral wall;
- a differential device, disposed in the accommodating space, comprising: a first member, having a first internal gear and a plurality of rollers; a second member, having a second internal gear, the first member being correspondingly coupled to the second member; a plurality of planet gears, one end of each planet gear having a first external gear portion and the other end a second external gear portion, respectively, the first external gear portion meshing with the first internal gear, the second external gear portion meshing with the second internal gear; and a sun gear, pivotally connecting with the base and meshing with the plurality of planet gears; and
- a hose, disposed between the lateral wall and the plurality of rollers and tightly urged to the lateral wall by the plurality of rollers.
2. The precision peristaltic metering pump according to claim 1, wherein the first member has a plurality of protruding rotors, the plurality of rollers being installed on the plurality of protruding rotors.
3. The precision peristaltic metering pump according to claim 2, wherein the differential device further has a planet arm set and a plurality of pins, the planet arm set having a first planet arm and a second planet arm, the plurality of pins being corresponding to the plurality of planet gears respectively, the planet gears pivotally connecting with the second planet arm through the pins, the rollers pivotally connecting with a position between the first planet arm and the first member through the rotors.
4. The precision peristaltic metering pump according to claim 3, wherein the sun gear pivotally connects with the center of the second planet arm.
5. The precision peristaltic metering pump according to claim 4, wherein the differential device has three horizontal planet gears.
6. The precision peristaltic metering pump according to claim 1 further comprising a motor in order to drive the sun gear.
7. A precision peristaltic metering pump device comprising:
- a base;
- a case structure, disposed on the base and having a lateral wall, an accommodating space being formed by the lateral wall;
- a differential device, disposed in the accommodating space and comprising: a first member, having a first internal gear and a plurality of rollers; a second member, having a second internal gear, the first member being corresponding to the second member; a plurality of planet gears, each planet gear having a first external gear and a second external gear, the first external gear meshing with the first internal gear, the second external gear meshing with the second internal gear; and a sun gear, pivotally connecting with the base and meshing with the plurality of planet gears;
- a hose, disposed between the lateral wall and the plurality of rollers and tightly urged to the lateral wall by the plurality of rollers;
- a flexible fastening member, female-connecting with the hose; and
- a holding member, clamping the flexible fastening member, the flexible fastening member being squeezed by the holding member in order to tightly wrap around the hose.
8. The precision peristaltic metering pump device according to claim 7, wherein the hose has an inlet portion and an outlet portion, the flexible fastening member female-connecting with the inlet portion and the outlet portion of the hose, the flexible fastening member being squeezed by the holding member in order to tightly wrap around the inlet portion and the outlet portion.
9. The precision peristaltic metering pump device according to claim 8, wherein the one end of the holding member forms two bent arm structures that are corresponding to each other, the other end of the holding member forming a U-type clamping structure, the two ends of the U-type clamping structure connecting with the two bent arm structure respectively.
10. The precision peristaltic metering pump device according to claim 9, wherein the U-type clamping structure clamps the flexible fastening member from the case structure toward the flexible fastening member, the flexible fastening member being a ringer that has a pre-determined width.
11. The precision peristaltic metering pump device according to claim 7, wherein a plurality of hose limits are between the case structure and the second member, a limit portion being between the plurality of hose limits.
12. The precision peristaltic metering pump device according to claim 7, wherein the first member has a plurality of protruding rotors, the plurality of rollers being installed on the plurality of protruding rotors.
13. The precision peristaltic metering pump device according to claim 12, wherein the differential device further has a planet arm set and a plurality of pins, the planet arm set having a first planet arm and a second planet arm, the plurality of pins being corresponding to the plurality of planet gears respectively, the planet gears pivotally connecting with the second planet arm through the pins, the rollers pivotally connecting with a position between the first planet arm and the first member through the rotors.
14. The precision peristaltic metering pump device according to claim 13, wherein the sun gear pivotally connects with the center of the second planet arm.
15. The precision peristaltic metering pump device according to claim 14, wherein the differential device has three horizontal planet gears.
16. The precision peristaltic metering pump device according to claim 7 further comprising a motor in order to drive the sun gear.
Type: Application
Filed: Nov 2, 2012
Publication Date: Jul 11, 2013
Applicant: CHESHIRE ELECTRIC COMPANY, LLC (TAOYUAN COUNTY)
Inventor: Cheshire Electric Company, LLC (Taoyuan County)
Application Number: 13/667,291
International Classification: F04B 43/12 (20060101);