Nuclear magnetic pipe rack

A nuclear magnetic tube and tube rack technology, which is applied in the field of experimental sample storage, can solve the problems of difficult operation, low firmness, smashing through the bottom, etc., and achieves the effects of improving mechanical strength, not easy to fall off, and avoiding breaking.

Active Publication Date: 2017-06-13
武汉安隆科讯技术有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Most of the NMR tube racks on the market now use polypropylene as the main material. This type of NMR tube rack has low mechanical strength and cannot well protect the NMR tubes from external damage. In addition, when storing sample NMR tubes at ultra-low temperature on a large scale, Polypropylene material is easy to harden and crack, which is not conducive to long-term storage of biological samples
At the same time, most NMR tube racks have unreasonable structural design and mostly use double-layer plates. Since the NMR tube has a certain length, when it is placed in the panel hole, it is easy to cause the NMR tube to topple or fall through the bottom with a free fall, resulting in loss. Possibility of valuable samples
[0003] Because the existing NMR tube racks have the above-mentioned problems of unstable materials, easy breakage, and low firmness, which bring a lot of inconvenience to the storage of NMR tubes, there is an urgent need to develop an NMR tube rack with stable chemical properties and reasonable structure to solve the problem of nuclear magnetic The tube is easy to fall when put in and taken out, easy to drop and smash through the bottom, difficult to operate, etc.

Method used

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Examples

Experimental program
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Effect test

Embodiment 1

[0026] Embodiment 1: A nuclear magnetic tube frame, including a panel 1, a middle partition 2, a bottom plate 3, and a tube frame support column 4, and the panel 1, the middle partition 2, and the bottom plate 3 cooperate with the fixing screws 6 through the tube frame support column 4 Set at intervals in turn, the corresponding positions of the panel 1 and the middle partition 2 are provided with guide through holes 5, and the bottom plate 3 is provided with positioning holes 7 corresponding to the guide through holes 5 one by one. Plate 2, base plate 3 and fixing screws 6 are made of 6061 aluminum alloy which has been precisely processed by CNC machine tools, sand blasted and surface oxidized. The support column 4 of the pipe frame is a copper connecting column; Rubber foot pad 14, the rubber foot pad 14 is provided with a plurality of protrusions on the contact surface with the ground; the guide through hole 5 and the positioning hole 7 are chamfered to prevent the metal fra...

Embodiment 2

[0027]Embodiment 2: The difference between the nuclear magnetic tube frame described in this embodiment and the nuclear magnetic tube frame described in embodiment 1 is only that: the high-density elastic silica gel that is once molded is laid on the bottom plate, and the thickness of the high-density elastic silica gel is 2mm. The amount of the high-density elastic silica gel hardening catalyst is 1:50. The invention is applicable to the storage of nuclear magnetic tubes under general low temperature.

Embodiment 3

[0028] Embodiment 3: The difference between the nuclear magnetic tube rack described in this embodiment and the nuclear magnetic tube rack described in embodiment 1 is only that: the high-density elastic silica gel that is formed once is laid on the bottom plate, and the thickness of the high-density elastic silica gel is 2mm. The amount of the high-density elastic silica gel hardening catalyst is 1:75. The invention is applicable to the storage of nuclear magnetic tubes under general low temperature.

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Abstract

The invention discloses a nuclear magnetic pipe rack which comprises a faceplate, a middle partition plate, a bottom plate and pipe rack supporting columns; guide through holes are formed in corresponding positions on the faceplate and the middle partition plate; the bottom plate is provided with positioning holes corresponding to the guide through holes one by one; the faceplate, the middle partition plate, the bottom plate and a fixing screw are made of 6061 aluminum alloy subjected to precision machining, sand blasting and surface oxidation treatment through a numerically-controlled machine tool; each pipe rack supporting column is a copper connecting column; high-density elastic silica gel formed in one step is laid on the bottom plate, and the thickness of the high-density elastic silica gel is 1-3 mm, and the amount of high-density elastic silica hardening catalysts is 1:100-1:40. The nuclear magnetic pipe rack disclosed by the invention is made of three layers of finely-processed aluminum alloy materials, is resistant to acid and alkali, can be used under a strong magnetic field; as the optimized high-density elastic silica gel is arranged on the bottom plate, a nuclear magnetic pipe is prevented from breakage caused by contact with the bottom plate in a free-fall manner.

Description

technical field [0001] The invention relates to the technical field of experimental sample storage, in particular to a nuclear magnetic tube rack. Background technique [0002] NMR tube, as a high borosilicate glass container for NMR instrument sampling, has very high processing accuracy, usually its wall thickness does not exceed 0.5mm, and its length is between 15.3-22.6cm. During the research process, a large number of NMR tubes are used for sample loading. How to safely and efficiently place and store NMR tubes has become an inevitable demand. Most of the NMR tube racks on the market now use polypropylene as the main material. This type of NMR tube rack has low mechanical strength and cannot protect the NMR tubes from damage by external forces. In addition, when storing sample NMR tubes at ultra-low temperature on a large scale, Polypropylene material is easy to harden and crack, which is not conducive to long-term storage of biological samples. At the same time, most...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): B01L9/06
CPCB01L9/06B01L2200/023B01L2200/16B01L2300/021B01L2300/12
Inventor 王隽
Owner 武汉安隆科讯技术有限公司
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