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Manufacturing method of satellite protective cover first coated and then punched based on automatic cutting machine

A technology for protective covers and satellites, applied in artificial satellites, metal processing, etc., can solve problems such as reduced efficiency, increased operational difficulty, and decreased installation accuracy, achieving accurate punching positions, improving processing quality, and solving positioning problems.

Inactive Publication Date: 2018-04-20
BEIJING INST OF SPACECRAFT ENVIRONMENT ENG
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

The protective film cannot be wrapped before the core of the protective cover is cut and formed by an automatic cutting machine, otherwise the protective film will be the same size as the core and cannot fully protect the edge of the core
After forming, if the cutting machine is used to punch the core at one time during the forming process, the hole will be covered by the film covering the core, which cannot be fixed, so that the processing of the pin hole of the satellite protective cover is always Staying in the way of manual punching leads to a decrease in installation accuracy and efficiency
If the core and the protective film are punched separately and then coated with the protective film, the alignment of the pin holes between the two during the assembly process will greatly increase the difficulty of operation and consume more operating time
And there is currently no similar product processing method to solve this problem in other industries

Method used

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  • Manufacturing method of satellite protective cover first coated and then punched based on automatic cutting machine
  • Manufacturing method of satellite protective cover first coated and then punched based on automatic cutting machine

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Embodiment Construction

[0031] The following is a further description of the manufacturing method of the satellite protective cover based on the automatic cutting machine, which is coated first and then punched, in conjunction with the accompanying drawings.

[0032] The high-temperature three-dimensional multi-layer design and manufacture method for satellites with complex shapes and surfaces of the present invention is realized through the following steps:

[0033] 1) if figure 1 As shown, for each satellite cover, two cutting bed cutting files are produced

[0034] When using AutoCAD and other two-dimensional drawing software to draw the shape of the satellite protective cover, it is proposed to draw two drawings, one without pin holes figure 1 , a drawing with pin holes in Figure 3, wherein the drawing without pin holes is used to process the protective cover core, and the drawing with pin holes is used to punch the protective cover after coating. Delete the internal line segments and openings ...

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Abstract

The invention discloses a method for manufacturing a satellite protective cover by firstly coating a film and then punching based on an automatic cutting bed. The method comprises the following steps of: manufacturing a pore-free cutting bed cutting file and a pored cutting bed cutting file for each satellite protective cover, and not cutting a peripheral line during cutting by changing tool parameters of the cutting bed; cutting a material core by use of the pore-free cutting file to generate the cut material core and a paper sample; coating the film on the cut material core and carrying out pore processing on the film-coated protective cover; punching by use of the pored cutting file; horizontally moving the cutting head to the bed tail, and observing whether a light spot deviates from a cutting edge; if the light spot deviates from the cutting edge, carrying out position regulation on the material core, and enabling the light spot to always move along the edge of the paper sample during a horizontal moving process; and fixing the protective cover and completing punching by use of the automatic cutting bed. The method solves the problems of low quality and relatively low efficiency caused by manual punching after coating the film in a manufacturing process of the satellite protective cover, and improves manufacturing level of the satellite protective cover.

Description

technical field [0001] The invention relates to a method for manufacturing a satellite protective cover based on an automatic cutting bed, which is coated first and then punched. The method can be directly applied to the field of satellite protective cover production. Background technique [0002] In the process of using an automatic cutting machine to process the satellite protective cover, since the core of the protective cover needs to be covered with a layer of film, the protective cover as a whole needs to be punched with several circular holes for fixing to the surface of the satellite. The protective film cannot be wrapped before the core of the protective cover is cut and formed by an automatic cutting machine, otherwise the protective film will be the same size as the core, and the edge of the core cannot be fully protected. After forming, if the cutting machine is used to punch the core at one time during the forming process, the hole will be covered by the film co...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): B26F1/02B26D7/01B64G1/10
Inventor 王哲彭鹤刘峰戎建臣祁鹏于洋潘尚洁武婷婷
Owner BEIJING INST OF SPACECRAFT ENVIRONMENT ENG