Fire-proof and high-temperature-resistant vacuum insulation glove

A technology of vacuum insulation and high temperature resistance, applied in the field of solar power generation, can solve the problems of limited high temperature resistance or heat resistant radiation, and single material of high temperature resistant gloves, so as to avoid instability, inhibit heat conduction and heat convection, and reduce the possibility of Effect

Inactive Publication Date: 2017-05-17
SHANGHAI SOLAR ENERGY S&T
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

The existing high-temperature-resistant gloves are relatively single in material, and are mostly used by mixing and superimposing a variety of high-temperature-resistant materials, and the corresponding function is limited to one of high-temperature resistance or heat-radiation resistance.

Method used

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Embodiment Construction

[0016] see figure 1 , with reference to figure 2 , image 3 , The fireproof and high temperature resistant vacuum insulation gloves of the present invention are provided with a high temperature resistant layer 4, a heat radiation resistant layer 3, a vacuum layer 2 and a heat insulating layer 1 sequentially from the outside to the inside.

[0017] The high-temperature-resistant layer in the present invention is made of heat-insulating and heat-preserving paint capable of withstanding a high temperature of 1800°C. The high temperature resistant layer can directly face the flame heat insulation, besides high temperature resistance, it can also effectively suppress and shield the infrared radiant heat and heat conduction, the heat insulation suppression efficiency can reach about 90%, and the coating thickness is only a few millimeters .

[0018] The heat radiation resistant layer in the present invention is made of aluminum foil heat radiation resistant material. It can mee...

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Abstract

A fire-proof and high-temperature-resistant vacuum insulation glove comprises a high-temperature-resistant layer, a heat-resistant radiation layer, a vacuum layer and a heat insulation layer in succession from outside to inside. The high-temperature-resistant layer is made of a thermal-insulation coating resistant to a high temperature of 1800 DEG C; the heat-resistant radiation layer is made of an aluminum foil heat-resistant radiation material; the heat insulation layer is made of a heat insulation material with a heat conduction coefficient of 0.03W/mK; and the vacuum layer comprises multiple annular vacuum blocks which are disposed at intervals, and spacing between the adjacent annular vacuum blocks is filled by gas gel. According to the invention, various heat insulation and high-temperature-resistant materials are matched and combined effectively, and the vacuum layer composed of the multiple vacuum blocks is added, so occurrence of heat conduction and heat convection are restrained effectively, and possibility in heat transfer is reduced. The glove is resistant to high temperatures around 1000 DEG C; blank in high-temperature operation fields is filled up; and instability of tool use is avoided.

Description

technical field [0001] The invention relates to solar power generation, in particular to a fireproof and high temperature resistant vacuum insulation glove. Background technique [0002] In the field of high-temperature operations, operators (firefighters, high-temperature furnace operators, etc.) need to use fire-resistant and high-temperature-resistant gloves to protect their hands. Currently, the existing high-temperature-resistant gloves on the market are only limited to about 500 degrees Celsius. If there is direct contact with the objects, more tools such as crucible pliers are used to avoid high temperature burns, but the use of tools will have an adverse effect on the stability of the operation, and there are more potential safety hazards. Therefore, it is particularly necessary to design a high-temperature resistant glove that can be applied to a thousand-degree high temperature. In order to solve this problem, the relevant knowledge of heat transfer should be take...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): A41D19/015F16L59/075
Inventor 陆佳伟
Owner SHANGHAI SOLAR ENERGY S&T
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