IP Library Granted Patent US 10,371,141
Granted Patent B1
US 10,371,141 · App. 15/219,084 · Granted Aug 6, 2019

Gradient high pressure syringe pump

Inventor: Yury Zelechonok (Northbrook, IL)
F04B49/22F04B3/00F04B13/02F04B19/003F04B19/22F04B53/142G01N2030/326G01N2030/328G01N2030/385
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Quick Facts
Patent No.
US 10,371,141
App. No.
15/219,084
Granted
Aug 6, 2019
Kind
B1
Abstract

A gradient high pressure syringe pump usable in a high pressure liquid chromatography system includes a housing defining an internal cavity, a drive piston, and a floating piston unconnected from the drive piston dividing the internal cavity into first and second pumping chambers. Each pumping chamber has an intake inlet with an upstream no-return valve communicating with a source of fluid and a discharge outlet communicating with an inlet of a downstream control valve. The control valve is operable to selectively direct fluid from either of the upstream pumping chambers downstream. In one embodiment, the first pumping chamber defines a cylinder section for the drive piston having an internal diameter smaller than the cylinder section defined by the second pumping chamber for the floating piston. The drive piston is moved linearly between suction and discharge strokes by an attached screw operatively coupled with a controllable stepper motor.

Claims (40)

1. A pump for moving fluids comprising:

a housing having a wall, defining an internal cavity closed at one end;

a first piston within said cavity;

a motor for selectively moving said first piston linearly along a pump axis outwardly toward and inwardly away from said one end;

a second piston floating intermediate said one end and said first piston, said second piston being linearly movable along the pump axis and separating the internal cavity into a first pumping chamber and a second pumping chamber, said first piston being disposed within said first pumping chamber;

a first pump inlet and a first pump outlet intermediate said second piston and said first piston communicating with said first pumping chamber;

said first pump inlet and first pump outlet being disposed to remain open to fluid flow with said first pumping chamber at any linear position of said first piston;

a second pump inlet and a second pump outlet intermediate said second piston and said one end communicating with said second pumping chamber;

said second piston movable between a first position toward said first pump inlet and first pump outlet and a second position toward said second pump inlet and second pump outlet;

a spring biasing said second piston axially toward said first piston; and,

a 2-position valve to control fluid flow from the pumping chambers, said valve having first and second valve inlets and a valve outlet, said first valve inlet communicating with said first pump outlet, a said second valve inlet communicating with said second pump outlet, said valve being selectively switchable between a first position opening said first valve inlet allowing fluid flow from said first pumping chamber and shutting off fluid flow from said second pumping chamber and a second position opening said second valve inlet to said valve outlet allowing fluid flow from said second pumping chamber and shutting off fluid flow from said first pumping chamber, and wherein switching said valve between said first and second positions delivers fluid through said valve alternately from said first and second pumping chambers.

2. The pump of claim 1 wherein said housing defines a first cylinder section having a first diameter, said first piston being movable within said first cylinder section, and said housing defines a second cylinder section having a second diameter greater than said first diameter, said second piston being movable within said second cylinder section between said first cylinder section and said closed end.

3. The pump of claim 1 further including a check valve upstream of said first pump inlet preventing backflow from said first pumping chamber and a check valve upstream of said second pump inlet preventing backflow from said second pumping chamber.

4. The pump of claim 1 wherein said spring is a constant force spring disposed between said closed end and said second piston.

5. The pump of claim 4 wherein said constant force spring is a tapered constant force spring.

6. The pump of claim 1 wherein said spring applies a force between 2 and 10 pounds.

7. The pump of claim 1 wherein said second piston has a recess on a side facing said second pumping chamber and said spring is disposed between said closed end and said second piston extending into said recess.

8. The pump of claim 1 wherein said second piston has a recess on a side facing said second pumping chamber, said spring is disposed between said closed end and said second piston extending into said recess, and said recess has a depth enabling said spring to be compressed completely into said recess.

9. The pump of claim 1 wherein said first pump inlet and said first pump outlet extends through said housing wall near the first position of said second piston, and said second pump inlet and said second pump outlet extends through said housing wall near the second position of said second piston.

10. The pump of claim 1 wherein said second piston has an annular groove adjacent its periphery on a side facing said first pumping chamber to define a peripheral skirt radially outward of the groove for sliding engagement with said housing wall.

11. The pump of claim 1 wherein said housing defines a first cylinder section having a first diameter and said first piston is disposed within said first cylinder section, and further including an endcap closing said one end of said housing, said endcap having a transverse end wall and an annular side wall extending axially from said end wall defining a second cylinder section having a second diameter greater than said first diameter, said second piston being disposed within said second cylinder section between said first cylinder section and said closed end.

12. A pump for moving fluids comprising:

a housing having a wall, defining an internal cavity closed at one end;

a first piston within said cavity;

a motor for selectively moving said first piston linearly along a pump axis outwardly toward and inwardly away from said one end;

a second piston floating intermediate said one end and said first piston, said second piston being linearly movable along the pump axis and separating the internal cavity into a first pumping chamber and a second pumping chamber;

said housing defining a first cylinder section having a first diameter, said first piston being movable within said first cylinder section;

said housing defining a second cylinder section having a second diameter greater than said first diameter, said second piston being movable within said second cylinder section between said first cylinder section and said closed end;

a first pump inlet and a first pump outlet intermediate said second piston and said first piston communicating with said first pumping chamber;

said first pump inlet and first pump outlet being disposed to remain open to fluid flow with said first pumping chamber at any linear position of said first piston;

a second pump inlet and a second pump outlet intermediate said second piston and said one end communicating with said second pumping chamber;

said second piston movable between a first position toward said first pump inlet and first pump outlet and a second position toward said second pump inlet and second pump outlet;

a check valve upstream of said first pump inlet preventing backflow from said first pumping chamber and a check valve upstream of said second pump inlet preventing backflow from said second pumping chamber;

a spring biasing said second piston axially toward said first piston; and,

a 2-position valve to control fluid flow from the pumping chambers, said valve having first and second valve inlets and a valve outlet, said first valve inlet communicating with said first pump outlet, said second valve inlet communicating with said second pump outlet, said valve being selectively switchable between a first position opening said first valve inlet allowing fluid flow from said first pumping chamber and shutting off fluid flow from said second pumping chamber, and a second position opening said second valve inlet allowing fluid flow from said second pumping chamber and shutting off fluid flow from said first pumping chamber, and wherein switching said valve between said first and second positions delivers fluid through said valve alternately from said first and second pumping chambers.

13. The pump of claim 12 wherein said spring is a constant force spring disposed between said closed end and said second piston.

14. The pump of claim 13 wherein said constant force spring is a tapered constant force spring.

15. The pump of claim 12 wherein said second piston has a recess on a side facing said second pumping chamber, said spring is between said closed end and said second piston extending into said recess, and said recess has a depth enabling said spring to be compressed completely into said recess.

16. The pump of claim 12 wherein said first pump inlet and said first pump outlet extends through said housing wall near the first position of said second piston, and said second pump inlet and said second pump outlet extends through said housing wall near the second position of said second piston.

17. The pump of claim 12 the housing, including an endcap closing said one end of said housing, said endcap having a transverse end wall and an annular side wall extending axially from said end wall defining said second cylinder section.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 25, 2022
From: ZELECHONOK, YURY
To: SIELC TECHNOLOGIES CORPORATION
Reel/Frame 058762/0009 →
RELEASE OF SECURITY INTEREST Recorded Jan 11, 2022
From: ORLOVSKY, VLADISLAV
To: ZELECHONOK, YURY
Reel/Frame 058693/0610 →
SECURITY INTEREST Recorded Jan 9, 2018
From: ZELECHONOK, YURY
To: ORLOVSKY, VLADISLAV
Reel/Frame 044570/0686 →
Cited By (1)
US 1,117,735