Heat insulating structure composed of heat insulating units and manufacturing method thereof
一种结构体、单位体的技术,应用在隔热结构体及其制造领域,能够解决隔热结构体体积或尺寸难以操作、热反射效率降低、很难隔热或保温等问题,达到改善双向导热及热转移局限性、改善作业损失、改善导热及传热极限的效果
- Summary
- Abstract
- Description
- Claims
- Application Information
AI Technical Summary
Problems solved by technology
Method used
Image
Examples
no. 2 Embodiment
[0099] The second embodiment combines Figure 11 to Figure 14 To be specific.
[0100] The heat insulation structure of the second embodiment of the present invention is a collection of heat insulation units composed of spheres, that is, the heat insulation units composed of spheres are regularly or irregularly arranged adjacent to each other for more than one layer, and each heat insulation The outside of the unit body is covered with heat reflection film respectively.
[0101] An example thereof is that the thermal insulation unit 2050 of the present invention is as Figure 11 As shown, it is composed of a sphere 2010 filled inside and covered with a heat-reflecting film 2020 on the outside of the sphere to form an integrated independent sphere. The diameter of the thermal insulation unit 2050 is preferably 10-100mm, but it is not limited to this size, and the size can be appropriately changed according to the use conditions.
[0102] The spherical body 2010 is preferably...
no. 3 Embodiment
[0113] The third embodiment combines Figure 15 to Figure 18 Be explained.
[0114] Such as Figure 15 and Figure 16 As shown, the heat insulating structure 3150 of the third embodiment of the present invention includes a first sheet 3016, a second sheet 3017, and a heat reflection film 3020 formed on one surface of the first sheet.
[0115] A plurality of arched recesses 3117 are formed in the same direction on the second piece 2017 .
[0116] The concave part 3117 preferably consists of a hemispherical or elliptical shape with a diameter of 10-100mm, but it is not limited to this size and shape, and can be variously deformed according to the usage conditions.
[0117] The second sheet is pasted on one side of the heat reflection film 3020 forming the first sheet so that the respective recesses 3117 form closed spaces 3217 . The enclosed space may be filled with argon, which has a lower heat transfer coefficient than air.
[0118] It is advisable for the first sheet 3016 ...
no. 4 Embodiment
[0131] The fourth embodiment combines Figure 19 to Figure 22 to illustrate.
[0132] Such as Figure 19 and Figure 20 As shown, the heat insulation structure 4150 of the fourth embodiment of the present invention is composed of a rod-shaped heat insulation unit 4050 formed in a barrel shape.
[0133] Each rod-shaped thermal insulation unit body 4050 includes a film material 4010 composed of synthetic resin, vinyl plastic, foam, etc., and an integral closed space 4017 formed in the film material along the length direction of the thermal insulation unit body. A heat reflective film in the enclosed space.
[0134] The heat reflective film is made of such as Figure 20 As shown in (a), the entire inner surface of the closed space 4017 covered with the film 4010 is covered with an aluminum film or a heat reflective film 4025 formed by silver foil paper, etc., or as shown in FIG. Figure 20 As shown in (b), it is formed in half of the inner surface of the heat reflection film...
PUM
Login to View More Abstract
Description
Claims
Application Information
Login to View More 


