IP Library Granted Patent US 10,921,296
Granted Patent B2
US 10,921,296 · App. 16/097,145 · Granted Feb 16, 2021

Separation column connection device, connection method, and analysis system

Inventors: Hideki Hasegawa (Tokyo, JP); Masako Ishimaru (Tokyo, JP); Masuyuki Sugiyama (Tokyo, JP)
Assignee: HITACHI HIGH-TECH CORPORATION
G01N30/6047
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Quick Facts
Patent No.
US 10,921,296
App. No.
16/097,145
Granted
Feb 16, 2021
Kind
B2
Abstract

A separation column connecting device includes: a column holder for retaining a separation column; a first fitting holder carrying a first fitting which includes a seal portion to be connected to an upstream seal portion of the separation column and connected with an upstream pipe; a second fitting holder carrying a second fitting which includes a seal portion to be connected to a downstream seal portion of the separation column and connected with a downstream pipe; a body member to which either one of the first fitting holder and the second fitting holder is fixed; a driver for moving, relative to the body member, the first fitting holder or the second fitting holder not fixed to the body member; a guide for guiding the column holder in a direction of movement driven by the driver; and an elastic body disposed between the column holder and the second fitting holder.

Claims (57)

1. A separation column connecting device comprising:

a column holder for retaining a separation column;

a first fitting holder carrying a first fitting which includes a seal portion to be connected to an upstream seal portion of the separation column and is connected with an upstream pipe;

a second fitting holder carrying a second fitting which includes a seal portion to be connected to a downstream seal portion of the separation column and is connected with a downstream pipe;

a body member to which either one of the first fitting holder and the second fitting holder is fixed;

a driver for moving, relative to the body member, the first fitting holder or the second fitting holder that is not fixed to the body member and moving the column holder relative to the body member;

a guide for guiding the column holder in a direction of movement driven by the driver; and

an elastic body disposed between the column holder and the second fitting holder.

2. The separation column connecting device according to claim 1 ,

wherein

L≤L 1 +L 2 ,

L 3 =L 2

provided that in an open position where the first fitting and the second fitting are separate from the separation column, L 1 denotes a distance between the upstream seal portion of the separation column and the seal portion of the first fitting, L 2 denotes a distance between the downstream seal portion of the separation column and the seal portion of the second fitting, L 3 denotes a displacement of the elastic body between a connection position where the first fitting and the second fitting are connected to the separation column and the open position, and L denotes a range of movement of the driver.

3. The separation column connecting device according to claim 2 ,

wherein the second fitting holder includes a first stopper for limiting the movement of the column holder in order that a distance between the separation column and the second fitting does not exceed L 2 .

4. The separation column connecting device according to claim 3 ,

wherein the first stopper and the column holder each include a contact portion for inhibiting each other from moving freely in a driving direction of the driver, and

a distance between the contact portion of the first stopper and the contact portion of the column holder is L 2 when the separation column is in the connection position.

5. The separation column connecting device according to claim 2 ,

wherein the first fitting holder includes a second stopper for limiting the movement of the column holder in order that a distance between the first fitting and the separation column does not exceed L 1 .

6. The separation column connecting device according to claim 5 ,

wherein the second stopper and the guide or the column holder each include a contact structure for inhibiting each other from moving freely in a driving direction of the driver, and

a distance between a contact portion of the second stopper and a contact portion of the guide or the column holder is L 1 when the separation column is in the connection position.

7. The separation column connecting device according to claim 1 ,

wherein the first fitting holder is fixed to the body member, and the driver moves the second fitting holder relative to the body member.

8. The separation column connecting device according to claim 1 ,

wherein the second fitting holder is fixed to the body member, and the driver moves the first fitting holder relative to the body member.

9. The separation column connecting device according to claim 1 ,

wherein the driver includes a feed screw.

10. The separation column connecting device according to claim 1 , further comprising:

a temperature control part for controlling the temperature of at least one of the separation column, the first fitting, the second fitting, the upstream pipe connected to the first fitting and the downstream pipe connected to the second fitting.

11. The separation column connecting device according to claim 1 , further comprising:

a first liquid sensor for detecting a solution flowing out from an outlet of the first fitting; and

a second liquid sensor for detecting a solution flowing out from an outlet of the separation column.

12. An analysis system comprising:

a separation column connecting device which includes:

a column holder for retaining a separation column;

a first fitting holder carrying a first fitting which includes a seal portion to be connected to an upstream seal portion of the separation column and is connected with an upstream pipe;

a second fitting holder carrying a second fitting which includes a seal portion to be connected to a downstream seal portion of the separation column and is connected with a downstream pipe;

a body member to which either one of the first fitting holder and the second fitting holder is fixed;

a driver for moving, relative to the body member, the first fitting holder or the second fitting holder that is not fixed to the body member and moving the column holder relative to the body member;

a guide for guiding the column holder in a direction of movement driven by the driver; and

an elastic body disposed between the column holder and the second fitting holder;

a pump for feeding a sample to the separation column via the upstream pipe;

a sample injection part for injecting the sample into the upstream pipe;

a detector for detecting an elution component from the separation column; and

a data processor for analysis of detection result obtained by the detector.

13. A separation column connection method comprising:

placing a separation column between a first fitting and a second fitting, the first fitting including a seal portion to be connected to an upstream seal portion of the separation column and is connected with an upstream pipe, and the second fitting including a seal portion to be connected to a downstream seal portion of the separation column and is connected with a downstream pipe;

first connecting the first fitting to the separation column by bringing the first fitting and the second fitting close to each other by applying a repulsive force or a resistive force between the separation column and the second fitting; and

connecting the second fitting to the separation column by further bringing the first fitting and the second fitting closer to each other.

14. The separation column connection method according to claim 13 ,

wherein the first fitting is connected to the separation column after a solution through the upstream pipe flows out from an outlet of the first fitting, and

the second fitting is connected to the separation column after the solution flows out from an outlet of the separation column.

15. The separation column connection method according to claim 14 ,

wherein the first fitting is connected to the separation column after a first liquid sensor detects the solution flowing out from the outlet of the first fitting, and

the second fitting is connected to the separation column after a second liquid sensor detects the solution flowing out from the outlet of the separation column.

Assignments (2)
CHANGE OF NAME Recorded May 12, 2020
From: HITACHI HIGH-TECHNOLOGIES CORPORATION
To: HITACHI HIGH-TECH CORPORATION
Reel/Frame 052643/0682 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 26, 2018
From: HASEGAWA, HIDEKI; ISHIMARU, MASAKO; SUGIYAMA, MASUYUKI
To: HITACHI HIGH-TECHNOLOGIES CORPORATION
Reel/Frame 047330/0955 →
Continuity (1)
Related Publication 20200025727A1 · Jan 23, 2020