Method for realizing flexible vacuum body

文档序号:1706231 发布日期:2019-12-13 浏览:30次 中文

阅读说明:本技术 一种柔性真空体的实现方法 (Method for realizing flexible vacuum body ) 是由 不公告发明人 于 2018-06-06 设计创作,主要内容包括:本发明描述了一种柔性真空体的实现方法。其应用弹性材料来支撑真空空间的外壁,其中外壁用柔性材料实现。并且于支撑用的弹性材料上焊接若干支撑短板来限制最小压缩空间。使得真空空间可以承受部分外部压力而产生形变,具有良好的耐压性和抗冲击性。(The invention describes a method for realizing a flexible vacuum body. Which employs an elastic material to support the outer wall of the vacuum space, wherein the outer wall is implemented with a flexible material. And several supporting short plates are welded on the elastic material for supporting to limit the minimum compression space. The vacuum space can bear partial external pressure to generate deformation, and the vacuum chamber has good pressure resistance and impact resistance.)

1. A method for realizing a vacuum space by using a flexible material as an outer wall.

2. The structure of claim 1, wherein:

a resilient material (e.g., a spring) is used to support the flexible outer wall.

3. The structure of claim 1, wherein:

A support plate is welded to the elastomeric material (e.g., spring) to limit the minimum compression volume.

4. The structure of claim 1, wherein:

the angles of the elastic material (spring) and the support plate are suitably adjusted according to the specific bending direction and size requirements.

the technical field is as follows:

the invention is mainly used for constructing a flexible vacuum space capable of bearing certain pressure.

background art:

The background art to which the present invention generally relates includes flexible materials as well as elastomeric materials.

The invention content is as follows:

the vacuum space can effectively isolate heat transmission. In some situations it is desirable that the vacuum body be able to withstand some elastic deformation to withstand and cushion some impact forces.

The invention realizes a method for realizing a flexible vacuum space by using an elastic medium and an elastic material.

Description of the drawings:

FIG. 1 is a schematic cross-sectional view of a flexible vacuum body according to the present invention. The upper and lower lines in the figure are flexible outer walls which can bear certain pressure to generate deformation, the middle of the upper and lower lines is supported by a spring, and a plurality of supporting short plates are welded around the spring.

The specific implementation mode is as follows:

As shown in the attached drawing, a vacuum area is arranged between the upper medium and the lower medium, the vacuum area is supported by a plurality of elastic materials (such as springs), a plurality of short supporting plates can be welded on the periphery of the elastic materials, and the length of the supporting plates is smaller than the thickness of the elastic materials when the supporting plates bear the standard atmospheric pressure. When the pressure on the two sides is greater than the standard atmospheric pressure, the elastic material is compressed until the supporting plate supports the media on the two sides, the pressure is supported by the supporting plate, and the space is not reduced. In this case, the heat transfer area is only the thickness of the support plate and the sectional area of the elastic material.

according to actual needs, such as directional stress bending, the angle between the elastic material (spring) and the supporting plate can be properly adjusted according to the maximum bending degree.

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