FLOW-PATH MEMBER USED IN ANALYSIS DEVICE AND LIQUID CHROMATOGRAPH
20230132609 ยท 2023-05-04
Inventors
Cpc classification
International classification
Abstract
A flow-path member through which a sample flows in an analysis device includes a pipe and a covering member that covers the pipe. The pipe has a first portion including a first direction, which is orthogonal to a direction in which the flow-path member extends as a whole, as at least an element of a local extending direction, a second portion including a second direction, which is opposite to the first direction, as at least an element of a local extending direction, a first bent portion in which a local extending direction changes from the first portion to the second portion, and a second bent portion in which a local extending direction changes from the second portion to the first portion. A space is formed between the covering member and the pipe at least in the first portion and the second portion.
Claims
1. A flow-path member which is used in an analysis device and through which a sample flows in the analysis device, comprising: a pipe; and a covering member that covers the pipe, wherein the pipe has a first portion including a first direction, which is orthogonal to a direction in which the flow-path member extends as a whole, as at least an element of a local extending direction, a second portion including a second direction, which is opposite to the first direction, as at least an element of a local extending direction, a first bent portion in which a local extending direction changes from the first portion to the second portion, and a second bent portion in which a local extending direction changes from the second portion to the first portion, and a space is formed between the covering member and the pipe at least in the first portion and the second portion.
2. The flow-path member which is used in an analysis device according to claim 1, wherein the analysis device includes an autosampler and a separation column, and the flow-path member connects the autosampler and the separation column to each other.
3. The flow-path member which is used in an analysis device according to claim 2, wherein an end portion connected to the separation column of the flow-path member is arranged in a column oven.
4. The flow-path member which is used in an analysis device according to claim 1, wherein the covering member is constituted by an elastic member.
5. The flow-path member which is used in an analysis device according to claim 4, wherein a sleeve having a diameter larger than diameters of the first portion and the second portion is provided at an end portion of the pipe, and the covering member is provided across the sleeve and the first portion, or the sleeve and the second portion.
6. The flow-path member which is used in an analysis device according to claim 1, wherein a filling member for reducing a volume of the space is arranged in the covering member.
7. The flow-path member which is used in an analysis device according to claim 6, wherein the filling member is a bar member extending substantially parallel to a direction in which the flow-path member extends as a whole.
8. A liquid chromatograph comprising the flow-path member which is used in an analysis device according to claim 1.
Description
BRIEF DESCRIPTION OF THE DRAWING
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[0010]
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[0012]
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[0017]
DETAILED DESCRIPTION
[0018] A flow-path member and a liquid chromatograph according to embodiments of the present invention will now be described with reference to the attached drawings.
[1] First Embodiment
[0019] (1) Configuration of Liquid Chromatograph
[0020]
[0021] The solution tank 2 stores a solvent which is a mobile phase. The liquid sending pump 3 pumps the solvent stored in the solution tank 2 to an analysis flow path. The autosampler 4 injects a sample into the analysis flow path. The sample that has been injected by the autosampler 4 flows through the flow-path member 10 together with the solvent and is sent to the separation column 50. In the separation column 50, the sample is separated into components based on a difference in magnitude of interaction of a stationary phase. The components into which the sample has been separated in the separation column 50 are detected by the detector 6.
[0022] (2) Configuration of Flow-Path Member 10
[0023]
[0024]
[0025] As shown in
[0026]
[0027] As shown in
[0028] Further, because the entire corrugated pipe 112 is covered with the covering member 13, it is possible to protect the corrugated pipe 112. Thus, durability of the flow-path member 10 can be enhanced. Further, the covering member 13 is provided across the sleeve 12 and the first portion 112A or the sleeve 12 and the second portion 112B. Thus, the sleeve 12 and the corrugated pipe 112 are prevented from being bent excessively, so that the flow-path member 10 is prevented from being damaged.
[0029] (3) Result of Measurement
[0030]
[2] Second Embodiment
[0031] (1) Configuration of Flow-Path Member 10
[0032]
[0033]
[0034] In this manner, with the flow-path member 10M of the second embodiment, the volume of an air layer formed in the covering member 13 can be reduced. In the first embodiment, an air layer is ensured in the covering member 13, and an increase in temperature of a sample caused by the heat of the column oven 51 is suppressed. However, a user who has replaced a conventional liquid chromatograph with the liquid chromatograph 1 of the first embodiment wishes to make a comparison in regard to a specific analysis process under the same conditions as those with which a result of conventional measurement is obtained. As such, in regard to such a wish of the user, comparison with a result of conventional measurement is enabled with use of the flow-path member 10M. Further, it is possible to improve the strength of the flow-path member 10M by inserting the filling member 14 into the covering member 13.
[0035] (2) Result of Measurement
[0036]
[3] Modified Example
[0037] In the above-mentioned embodiment, the first portion 112A and the second portion 112B of the corrugated pipe 112 are arranged in the plane including the first direction DA and the second direction DB, by way of example. However, the first portion 112A and the second portion 112B do not have to be arranged in the same plane. The first portion 112A may include the first direction DA as at least an element of the extending direction, and the second portion 112B may include the second direction DB as at least an element of the extending direction.
[0038] In the present embodiment, the space 15 is formed not only on the outer peripheries of the first portion 112A and the second portion 112B but also on the outer peripheries of the first bent portion 113A and the second bent portion 113B. That is, in
[0039] In the second embodiment, the filling member 14 is a bar member having a substantially circular cross section, by way of example. This is merely one example, and the cross sectional shape of the filling member 14 may be another shape. For example, it is possible to further reduce the volume of an air layer by making the cross sectional shape of the filling member 14 be close to that of the space 15.
[4] Aspects
[0040] It will be appreciated by those skilled in the art that the exemplary embodiments described above are illustrative of the following aspects.
[0041] (Item 1)
[0042] A flow-path member according to one aspect which is used in an analysis device and through which a sample flows in the analysis device, includes a pipe, and a covering member that covers the pipe, wherein the pipe has a first portion including a first direction, which is orthogonal to a direction in which the flow-path member extends as a whole, as at least an element of a local extending direction, a second portion including a second direction, which is opposite to the first direction, as at least an element of a local extending direction, a first bent portion in which a local extending direction changes from the first portion to the second portion, and a second bent portion in which a local extending direction changes from the second portion to the first portion, and a space is formed between the covering member and the pipe at least in the first portion and the second portion.
[0043] It is possible to provide a flow-path member with which high analysis accuracy can be maintained in an analysis device.
[0044] (Item 2)
[0045] The flow-path member which is used in an analysis device according to item 1, wherein the analysis device may include an autosampler and a separation column, and the flow-path member may connect the autosampler and the separation column to each other.
[0046] Extra-column dispersion in the flow path between the autosampler and the separation column can be reduced.
[0047] (Item 3)
[0048] The flow-path member which is used in an analysis device according to item 2, wherein an end portion connected to the separation column of the flow-path member may be arranged in a column oven.
[0049] The space formed in the covering member functions as a heat insulating layer, and an increase in temperature of a sample due to the heat of the column oven can be reduced.
[0050] (Item 4)
[0051] The flow-path member which is used in an analysis device according to any one of items 1 to 3, wherein the covering member may be constituted by an elastic member.
[0052] The covering member can be attached to fit the shape of the flow-path member.
[0053] (Item 5) The flow-path member which is used in an analysis device according to item 4, wherein a sleeve having a diameter larger than diameters of the first portion and the second portion may be provided at an end portion of the pipe, and the covering member may be provided across the sleeve and the first portion, or the sleeve and the second portion.
[0054] It is possible to prevent the pipe from being excessively bent with respect to the sleeve and improve durability of the flow-path member.
[0055] (Item 6)
[0056] The flow-path member which is used in an analysis device according to any one of items 1 to 5, wherein a filling member for reducing a volume of the space may be arranged in the covering member.
[0057] It is easy to compare a result of analysis performed by the analysis device having this flow-path member with a result of analysis obtained by a conventional analysis device.
[0058] (Item 7)
[0059] The flow-path member which is used in an analysis device according to item 6, wherein the filling member may be a bar member extending substantially parallel to a direction in which the flow-path member extends as a whole.
[0060] The filling member can be inserted along the flow-path member.
[0061] (Item 8)
[0062] A liquid chromatograph according to another aspect of the present invention includes the flow-path member which is used in an analysis device according to any one of items 1 to 7.
[0063] While preferred embodiments of the present disclosure have been described above, it is to be understood that variations and modifications will be apparent to those skilled in the art without departing the scope and spirit of the present disclosure. The scope of the present disclosure, therefore, is to be determined solely by the following claims.