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Novel hot isostatic pressing device suitable for material genome project, and use method

A material genome and hot isostatic pressing technology, which is applied in the direction of measuring devices, analyzing materials, and testing the strength of materials by applying stable tension/pressure, can solve the problem that it is difficult to meet the high-throughput requirements of the material genome and cannot achieve multiple temperatures in the work area Problems such as zoning and difficulty in accurately controlling the pressure environment can achieve the effects of ensuring pressurization and cooling effects, improving research and development efficiency, and improving the degree of automation and intelligence

Inactive Publication Date: 2018-12-14
崔理哲
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Problems solved by technology

Existing hot isostatic pressing equipment cannot achieve multi-temperature partitions in the working area, and the working temperature in the entire working area is the same, which makes it difficult to meet the high-throughput requirements of the Materials Genome Project, and it is difficult to accurately control the required high-pressure environment. The cooling effect after hot isostatic pressing is poor, and it is often difficult to avoid errors

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  • Novel hot isostatic pressing device suitable for material genome project, and use method
  • Novel hot isostatic pressing device suitable for material genome project, and use method

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Embodiment Construction

[0031] The present invention will be further described in detail below in conjunction with the accompanying drawings, so that those skilled in the art can implement it with reference to the description.

[0032] It should be understood that terms such as "having", "comprising" and "including" used herein do not exclude the presence or addition of one or more other elements or combinations thereof.

[0033] Such as figure 1 and figure 2 As shown, the present invention provides a novel hot isostatic pressing device applicable to the material genome project, including:

[0034] the first housing 10;

[0035] A high-pressure container 11, which is arranged in the first housing 10. The upper and lower ends of the high-pressure container 11 are open. One side of the high-pressure container 11 is respectively connected with a first compressor 28 and an air storage tank 30. The first A compressor 28 communicates with the gas storage tank 30 through a pipeline;

[0036] A pressuri...

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Abstract

The invention discloses a novel hot isostatic pressing device suitable for a material genome project, and a use method. The novel hot isostatic pressing device comprises a first shell, a high-pressurecontainer arranged in the first shell and provided with openings in the upper and lower ends, a pressurization cavity wound in an inner cavity of the high-pressure container, a cooling cavity wound on the outer side of the high-pressure container and connected with a refrigerating device, a heating device arranged in the high-pressure container and comprising a base, an electric heating plate anda material cavity, and a temperature control device comprising a temperature sensor and a control panel, wherein one side of the pressurization cavity is connected with a first compressor and a gas storage tank; the first compressor and the gas storage tank are connected through a pipeline; and a display screen and a temperature adjusting button are arranged on the control panel. According to thenovel hot isostatic pressing device, a high-flux multi-temperature hot isostatic pressing treatment test can be carried out on a new material in a material genome project test, so that the test efficiency and accuracy are improved.

Description

technical field [0001] The invention relates to the technical field of material genome project, in particular to a novel hot isostatic pressing device suitable for material genome project and its use method. Background technique [0002] New materials are the basis of various industrial fields, and the development of industry and economy is increasingly dependent on the innovation of new materials. However, at present, it generally takes 10 to 20 years for new materials to be discovered in the laboratory to form industrial applications, which seriously lags behind the urgent demand for new materials in various fields. In the face of the rapid development of the manufacturing industry, it is necessary to greatly shorten the research and development cycle of new materials from discovery to application. For this reason, all scientific and technological powers have proposed the "Materials Genome Project" to develop high-throughput computing technology, high-throughput preparati...

Claims

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Application Information

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IPC IPC(8): G01N3/18G01N3/02
CPCG01N3/02G01N3/18G01N2203/0019G01N2203/0044G01N2203/0226
Inventor 崔理哲
Owner 崔理哲