Pulseless, reversible precision piston-array pump

6079313
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Inventors

Wolcott, Duane K.
Marshall, Graham D.

Application #

292971

Filed

Apr-16-1999

Published

Jun-27-2000

Current US Class

091/499
092/71
417/269

International Classes

F01B 003/04

Field of Search

417/269 92/71 91/499

Assignee

FIA Solutions, Inc. (Gig Harbor, WA)

Examiners

Thorpe; Timothy S.

Attorney, Agent or Firm

Roberts, Jr.; Reginald F.

US Patent References

3981360   Well tubing drain
4095921   Multi-cylinder com...
4360321   Multicylinder refrig...
4880361   Multi-piston swash...
5009574   Thrust bearing and...
5167181   Fluid transfer devic...
5253981   Multichannel pum...
5733105   Axial cam driven v...

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Abstract
A pulseless, reversible, precision piston-array pump. The pump head has a cylindrical body which rotates inside a cylindrical casing. A cam cap closes one end of the pump body, and a port cap the other end. The cam cap has on its interior surface a groove which controls the timing and depth of the piston strokes. The port cap has on its interior surface an inlet valve groove and an outlet valve groove to provide the valving action which controls the direction of fluid flow. At all times during the operation of the pump, at least one piston is in a compression mode; At least one piston is in a suction mode; and at least one piston is in a null mode, performing neither compression nor suction while moving across the port cap. This design decouples the rotary movement of the cylindrical body from the linear movement of the pistons, to provide pulseless flow for the pump.
 
Claims
We claim:

1. A pump head for a piston-array pump, the pump head comprising:

(a) a cylindrical casing having first and second ends,

(b) a cylindrical body having first and second ends, rotatably disposed within the casing;

(c) a cam cap at the first end of the cylindrical body, the cam cap incorporating a profile;

(d) a port cap at the second end of the cylindrical body;

(e) an inlet port;

(f) an outlet port;

(g) a plurality of at least three pistons, disposed within the cylindrical body, to provide capability of pulseless bidirectional fluid flow through the pump;

(h) a cam follower for each piston; and

(i) reciprocating means for each piston, the reciprocating means comprising the cam-cap profile;



Description
BACKGROUND OF THE INVENTION

The present invention relates to mechanical pumps. More particularly, the invention relates to piston-array pumps suitable for use in analytical instrumentation.

There are many different categories of pumps commonly used in instrumentation. Examples include such types as: centrifugal, diaphragm, gear, peristaltic, piston, and syringe. This evaluation will cover the mode of operation and advantages and disadvantages of each. In particular, the relevance of the characteristics of each type to FIA (Flow-Injection Analysis), SIA (Sequential Injection Analysis), and HPLC (High Pressure Liquid Chromatography) will be examined. These methodologies will hereafter be referred to as "Flow-Based Analytical Techniques".

Centrifugal pumps are typically not used directly in the analytical portions of instrumentation, as they are incapable of delivering sufficiently precise control of flow. They do, however, find use as sample loop circulation devices. They have the disadvantages of not being self-priming, are unidirectional in their pumping action, and cannot pump against much back pressure. They have the advantages of not requiring the use of check valves to regulate cycle direction, and of providing pulseless flow output. Use of this type of pump to provide micro-flows is highly unlikely, and they are typically not used in Flow-Based Analytical Techniques.
 
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