METHOD AND APPARATUS FOR IMPROVED, HIGH-PRESSURE, FLUID PUMP
An apparatus for constructing a high pressure fluid pump has a piston housing, a pump head connected to and supported by the piston housing, and a pump pedestal for supporting the pump head and the piston housing. The pump head receives water at low pressure and, in combination with the piston housing, produces fluid through a flow channel at high pressure. The combination of piston housing and pump head contain a “go-thru” valve which, in response to a suction on one side of the valve allows water at low pressure to pass through the valve into a receiving chamber, and in response to a high pressure fluid in the receiving chamber enables fluid at a high pressure to pass through the valve and eventually to an output port while closing off the input path. The pump further has, in one embodiment, an aluminum pump head or manifold appropriately structured to withstand high pressure fluid impact.
This application is a continuation-in-part of and claims the benefit of and priority to U.S. patent application Ser. No. 12/698,049, filed on Feb. 1, 2010, the disclosure and drawings of which are incorporated herein by reference.
The method and apparatus relate generally to the creation of high pressure fluid streams. The method and apparatus efficiently, using a small footprint, generate such fluid streams, and more particularly, the method and apparatus generate high-pressure water streams from a low pressure water input from ordinary residential or commercial sources, using a rotary motor mechanical power input.
BACKGROUND OF THE INVENTIONHigh pressure water washers are well known. They are used for various cleaning purposes as well as to remove various materials from a harder surface. High pressure pumps, used as a component of the high pressure washers, have also been developed over the years with the goal of providing reliable high pressure streams of water. Nevertheless, these pumps, while following typically similar paths, have not achieved the combination of reliability, performance, cost, and footprint, which is most desirable. Accordingly, pumps with smaller footprints, higher reliability, lower operating costs, and lower manufacturing costs are both desirable and commercially preferable. Such pumps can result, therefore, in higher pump life at a lower cost and a smaller footprint. This advantage enables more individuals to purchase such pumps for personal use as well as enabling the construction of commercial pumps with higher reliability and lower cost.
SUMMARY OF THE INVENTIONIn one aspect, the invention relates to a high pressure fluid pump having a piston housing, a pump head connected to and supported by the piston housing, a pump pedestal for supporting the pump head and the piston housing; the pump head receiving fluid at a low pressure, and, in combination with the piston housing, producing fluid through a flow channel at a high pressure. The combination of piston housing and pump head contains a ‘go-thru” valve which in response to a suction on one side of the valve allows input fluid at a low pressure to pass through the valve and into a receiving chamber, and in response to a high pressure in the receiving chamber enables fluid at a high pressure in the chamber to pass through the valve to an outlet port while blocking the low pressure fluid path through the valve.
In another aspect, in one exemplary embodiment, the high pressure fluid pump can have a pump head made from aluminum, wherein the outer surfaces of the pump have concave relief elements for strengthening the pump head against high pressures from within the pump head. In other embodiments, brass, or other stronger materials, with or without such relief elements can be used. Further the high pressure fluid pump can have a receiving chamber having a diameter greater than 5 mm.
In a further aspect of an embodiment of the invention, a high pressure fluid pump relates to a piston housing, a pump head connected to and supported by the piston housing, a pump pedestal for supporting the pump head and the piston housing, wherein the pump head receives fluid at a low pressure, and, in combination with the piston housing, producing fluid through a flow channel at a high pressure. The combination of pump head, piston housing, and pump pedestal together enclose and include a wobble plate, a plurality of pistons, and a fluid receiving/exiting chamber, wherein the wobble plate is rotated by an external rotary source. The wobble plate is in contact with a drive to reciprocate the pistons in timed sequence to each other, and the pistons act to draw fluid into the receiving chamber on a first stroke away from the chamber and compress the fluid at high pressure during a second stroke toward the chamber. The combination of piston housing and pump head contains a ‘go-thru” valve which in response to a suction on one side of the valve allows input fluid at a low pressure to pass through the valve and into a receiving chamber, and in response to a high pressure in the receiving chamber enables fluid at a high pressure in the chamber to pass through the valve to an outlet port, while blocking the low pressure input to the valve.
The high pressure fluid pump can further have, in an illustrated embodiment, a double seal arrangement for preventing fluid leakage around the pistons.
Other features and advantages of the invention will be apparent from the following description taken together with the following drawings, in which like reference numbers represent like parts.
The pump head, when it has three pistons, has three cylindrical chambers at 120 degrees to each other to accommodate the travel of the three pistons in this illustrative embodiment. When water at low pressure enters from the inlet pipe 43 to a chamber 44 to a one way valve 44a, it flows to a chamber 45 (heavily cross-hatched portion of
The pump head 16, in the illustrated embodiment, can be made of various materials depending upon the goals set for the pump. For example, a relatively stronger material such as brass may be used, or in another exemplary embodiment, the pump head may be made of aluminum alloy instead of, for example, a stronger (and heavier) material such as brass. Usually the tensile performance of aluminum is far less than that of brass, so that the pump head, working with high pressure water at about 2000 psi or more, is often made with brass. To enable the aluminum pump head to work with high pressure water without premature wear, it is designed with a streamlined water flow passage channel 54. Such a structure can also be advantageously used with brass (or another material). Based on this construction, especially when aluminum is used, relieved surfaces 55 (
The pump of the illustrated embodiment also uses a double water sealing construction 60, 62 greatly improving the sealing capability of the structure.
The pump also uses a “go-thru” one-way check valve 44a (the inlet valve) to simplify the passage of water through the pump as described below.
The pump of the invention has the following characteristics.
Efficiency of the described pump is generally higher than typical pumps of the same class. To increase the efficiency, the area of the flow passage channel 45 is increased from the usual Φ3.5 mm to Φ5-6.5 mm to reduce friction resistance to the water flow. As a result, the loss of pressure is less, and the pump can produce higher pressure than currently available in typical wobble plate pumps of a similar class.
To save material and reduce cost, the “go-thru” one-way valve construction 44a is used at the input, so that when the wobble plate 18 causes a piston to retreat (toward the wobble plate) (
When the piston advances away from the wobble plate, (
As noted above, a pump head which uses aluminum can further reduce cost. However, to strengthen the pressure-enduring property of the aluminum pump head, and thus prevent its deformation under pressure, a “relieved surface” design (mentioned above) as illustrated at 55, is used to reinforce the pump head. This design, while maintaining a smooth water flow passage, enhances the pump head's strength. Finally, (also, as mentioned above), to further avoid a bottleneck in the flow of water, a larger size (Φ5-6.5 mm) water passage channel is used. The pump also uses a dual water seal 60, 62 (primary and secondary) construction to effectively prevent water leakage. The structure can also be used with other materials as described above.
The pump, in accordance with the illustrated embodiment of the invention, further has safety features for proper operation and care. The pump has, for example, a thermal safety relief valve 82 to relieve high temperature water in the pump chamber and hence prevent damage due to such high temperatures. In addition, each piston has associated with its structure an end cap
Referring to
Referring to
The piston housing 14 contains the three pistons 30, with their respective return springs 32 and spring seats 34. The pistons are pressed tightly by the return springs against the plate of the wobble plate thrust bearing, and each rotation of the wobble plate will cause the each piston to move up and down one time whereby water at a high pressure is thus formed in a high pressure chamber. There are plural concave indents 40 on the piston housing to contain 84 communicating, with the chamber 45 through a channel 86 in the output valve 46. Lastly, although somewhat difficult to see due to the complex nature of the pump device, the channel 88 communicates with the output valve 46 through a hidden channel, not shown, and connects to the output tube 86.
Other objects and features of the invention will be apparent to one practiced in this field, and are within the scope of the following claims.
Claims
1. A high pressure fluid pump comprising:
- a piston housing;
- a pump head connected to and supported by the piston housing;
- a pump pedestal for supporting the pump head and the piston housing;
- the pump head receiving fluid at a low pressure, and, in combination with the piston housing, producing fluid through a flow channel at a high pressure;
- the combination of piston housing and pump head containing a “go thru” valve which in response to a suction on one side of the valve allows input fluid at a low pressure to pass through the valve and into a receiving chamber, and in response to a high pressure in the receiving chamber enables fluid at a high pressure in the chamber to pass through the valve to an outlet port while blocking the low pressure input path.
2. The high pressure fluid pump of claim 1 further comprising,
- said pump head comprising aluminum, and
- wherein the outer surfaces of the pump had have concave relief elements for strengthening the pump head against high pressures from within the pump head.
3. The high pressure fluid pump of claim 1 further comprising
- the receiving chamber having a diameter greater than 5 mm.
4. The high pressure fluid pump of claim 1 further comprising
- a pump head comprising brass.
5. A high pressure fluid pump comprising:
- a piston housing;
- a pump head connected to and supported by the piston housing;
- a pump pedestal for supporting the pump head and the piston housing;
- the pump head receiving fluid at a low pressure, and, in combination with the piston housing, producing fluid through a flow channel at a high pressure;
- the combination of pump head, piston housing, and pump pedestal together enclosing and including a wobble plate, a plurality of pistons, and a fluid receiving/exiting chamber, wherein the wobble plate is rotated by an external rotary source, the wobble plate being in contact with and driving the pistons to reciprocate the pistons in timed sequence to each other, and the pistons acting to draw water into the receiving chamber on a first stroke away from the chamber and compressing the water at high pressure during a second stroke toward the chamber, and
- the combination of piston housing and pump head containing a “go-thru” valve which in response to a suction on one side of the valve allows input fluid at a low pressure to pass through the valve and into a receiving chamber, and in response to a high pressure in the receiving chamber enables fluid at a high pressure in the chamber to pass through the valve to an outlet port while blocking the low pressure input path.
6. The high pressure fluid pump of claim 5 further comprising
- a double seal arrangement for preventing fluid leakage around the pistons.
Type: Application
Filed: May 5, 2010
Publication Date: Aug 4, 2011
Inventor: Da Quan Zhang (Taicang)
Application Number: 12/774,251
International Classification: F04B 49/00 (20060101);