IP Library Granted Patent US 9,243,629
Granted Patent B1
US 9,243,629 · App. 13/837,903 · Granted Jan 26, 2016

High pressure liquid chromatography pump

Inventor: Yury Zelechonok (Northbrook, IL)
Assignee: SIELC Technologies Corporation
F04B53/006F04B35/04
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Quick Facts
Patent No.
US 9,243,629
App. No.
13/837,903
Granted
Jan 26, 2016
Kind
B1
Abstract

A pump for use in high pressure liquid chromatography includes a housing with a pump head at one end and an axially-movable, high-pressure piston with a small-diameter plunger reciprocating within the pump head to move fluid from an inlet through an outlet at high pressure. An attached motor rotates a circular cam fixed off center on the motor shaft to reciprocate the piston that has an inner end in engaging contact with the cam periphery. An axially-aligned, torque-compensating piston is provided and has an inner end biased by spring force against the cam opposite the high-pressure piston. A large-diameter piston head may be fixed to the outer end of the torque-compensating piston and slidably mounted within a cylinder defined at the housing end opposite the pump head. The outer end of the piston head is open to ambient atmosphere.

Claims (46)

1. A fluid pump for use in high pressure liquid chromatography comprising:

a housing having a drive case and a pump head at one end of the drive case defining an internal pump chamber communicating with an inlet and an outlet;

a first piston supported by said housing for reciprocation along a first axis;

a motor fixed to said housing rotating a shaft;

a cam fixed to said shaft for rotation about a second axis transverse to said first axis, said cam having a peripheral edge intersecting said first axis;

a first spring biasing said first piston along said first axis towards said cam;

said first piston having an outer end with a plunger of lesser diameter than said first piston inward thereof movable in said pump chamber and an inner end engaging said cam edge so that said plunger may be reciprocated in said pump chamber upon rotation of said cam by said motor;

a second piston supported by said housing for reciprocation along said first axis and having inner and outer ends, said cam being disposed between the inner ends of said pistons, said second piston outer end having an outer surface transverse to said first axis open to ambient atmosphere;

a second spring biasing said second piston inner end towards said cam; and,

wherein said second spring and atmospheric pressure in combination provide torque compensating force biasing said second piston inward against said cam opposing the inward force of said first piston on said cam.

2. The pump of claim 1 wherein said first spring applies a biasing force of about 3 to 5 pounds and said second spring applies a biasing force generally equal to one half of the maximum force on said first piston.

3. The pump of claim 1 further including an open pump cylinder at the end of said housing opposite said pump head, said second piston extending outward through said housing into said open cylinder and having an outer end with a piston head of greater diameter than said plunger diameter reciprocatable within said open cylinder and defining a second pump chamber between the housing end and piston head communicating with an inlet and an outlet, and said piston head having an outer surface transverse to said first axis open to ambient atmosphere.

4. The pump of claim 3 wherein said first spring applies a biasing force of about 3 to 5 pounds and said second spring applies a biasing force generally equal to one half of the maximum force on said first piston.

5. The pump of claim 3 wherein said first spring applies a biasing force of about 3 to 5 pounds and said second spring applies a biasing force of about 3 to 5 pounds.

6. The pump of claim 3 wherein the diameter of said piston head is 10 to 15 times the diameter of said plunger.

7. The pump of claim 6 wherein the diameter of said plunger diameter is less than 0.4 inch.

8. The pump of claim 3 wherein said cylinder is integrally formed with said housing.

9. The pump of claim 3 further including fluid flow paths between said second pump chamber and its inlet and outlet extending through said housing bottom wall to the periphery of said housing.

10. The pump of claim 1 wherein said cam is generally disc-shaped and said second axis intersects and is perpendicular to said first axis with said peripheral edge rotating through said first axis.

11. A fluid pump for use in high pressure liquid chromatography comprising:

a housing having a drive case and a pump head at one end of the drive case defining an internal pump chamber communicating with an inlet and an outlet;

a first piston supported by said housing for reciprocation along a first axis;

a motor fixed to said housing rotating a shaft;

a cam fixed to said shaft for rotation about a second axis transverse to said first axis, said cam having a peripheral edge intersecting said first axis;

a first spring biasing said first piston along said first axis towards said cam;

said first piston having an outer end with a plunger of lesser diameter than said first piston inward thereof movable in said pump chamber and an inner end engaging said cam edge so that said plunger may be reciprocated in said pump chamber upon rotation of said cam by said motor;

a second piston supported by said housing for reciprocation along said first axis and having inner and outer ends, said cam being disposed between the inner ends of said pistons;

a second spring biasing said second piston inner end towards said cam;

an open pump cylinder at the end of said housing opposite said pump head, said second piston extending outward through said housing into said open cylinder and having an outer end with a piston head of greater diameter than said plunger diameter reciprocatable within said open cylinder and defining a second pump chamber between the housing end and piston head communicating with an inlet and an outlet, said piston head having an outer surface transverse to said first axis open to ambient atmosphere; and,

wherein said second spring and atmospheric pressure in combination provide torque compensating force biasing said second piston inward against said cam opposing the inward force of said first piston on said cam.

12. The pump of claim 11 wherein said first spring applies a biasing force of about 3 to 5 pounds and said second spring applies a biasing force generally equal to one half of the maximum force on said first piston.

13. The pump of claim 11 wherein said first spring applies a biasing force of about 3 to 5 pounds and said second spring applies a biasing force of about 3 to 5 pounds.

14. The pump of claim 11 wherein the diameter of said piston head is 10 to 15 times the diameter of said plunger.

15. The pump of claim 11 wherein the diameter of said plunger is less than 0.4 inch.

16. The pump of claim 11 wherein said cylinder is integrally formed with said housing.

17. The pump of claim 11 further including fluid flow paths between said second pump chamber and its inlet and outlet extending through said housing bottom wall to the periphery of said housing.

18. The pump of claim 11 wherein said cam is generally disc-shaped and said second axis intersects and is perpendicular to said first axis with said peripheral edge rotating through said first axis.

19. A fluid pump for use in high pressure liquid chromatography comprising:

a housing having a drive case and a pump head at one end of the drive case defining an internal pump chamber communicating with an inlet and an outlet;

a first piston supported by said housing for reciprocation along a first axis;

a cam within said housing rotatable about a second axis transverse to said first axis and having a peripheral edge intersecting said first axis;

a first spring biasing said first piston inward into contact with said cam;

said first piston having an outer end with a plunger of lesser diameter than said first piston inward thereof and an inner end contacting said cam edge so that said plunger may be reciprocated within said pump chamber upon rotation of said cam;

a second piston supported by said housing for reciprocation along said first axis and having an outer end and an inner end contacting said cam edge, said cam being disposed between the inner ends of said pistons;

a second spring biasing said second piston inward into contact with said cam with a force generally equal to one half of the maximum force of said first piston on said cam; and,

wherein said second spring provides torque compensating force biasing said second piston inward against said cam opposing the inward force of said first piston on said cam.

Assignments (3)
RELEASE OF SECURITY INTEREST Recorded Jan 11, 2022
From: ORLOVSKY, VLADISLAV
To: SIELC TECHNOLOGIES CORPORATION
Reel/Frame 058693/0581 →
SECURITY INTEREST Recorded Jan 9, 2018
From: SIELC TECHNOLOGIES CORPORATION
To: ORLOVSKY, VLADISLAV
Reel/Frame 044570/0414 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 31, 2013
From: ZELECHONOK, YURY
To: SIELC TECHNOLOGIES CORPORATION
Reel/Frame 030916/0916 →