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A fully automatic measuring device for ordering underwear and a method for ordering underwear

A measuring device and fully automatic technology, applied in the direction of sewing tools and other directions, can solve the problems that the fit cannot meet the comfort and function, and the underwear style is single, and achieve strong weather resistance, good devitrification resistance, and measurement data. accurate effect

Active Publication Date: 2017-10-17
HONGJI UNDERWEAR CO LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, underwear customization is different from ordinary clothing customization. Even if the accurate data of the human body can be obtained by using 3D scanning technology, the underwear must be close-fitting, elastic and support the chest. However, the current customized underwear has a single style and cannot fit well Meet the needs of both comfort and function

Method used

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  • A fully automatic measuring device for ordering underwear and a method for ordering underwear
  • A fully automatic measuring device for ordering underwear and a method for ordering underwear
  • A fully automatic measuring device for ordering underwear and a method for ordering underwear

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0064] See Figure 1-2 , a fully automatic measurement device for underwear, including a central processing control device and a rectangular measurement chamber 1, the measurement chamber 1 is provided with a front panel, a right side panel, a left opening and a rear panel connected in sequence, the front panel The inner wall is provided with a display touch screen 2, the inner wall of the right side panel is provided with a vertically arranged slide rail 3, the slide rail 3 is provided with a switch handle 4, and the left opening is convexly provided with an arc-shaped changing room 5 for changing clothes. A black shading cloth 6 is provided in the room 5, a white light three-dimensional scanner 7 is provided in the four inner corners of the measurement room 1, and the inner walls of the measurement room 1 are all black panels.

[0065] The four inner corners of the measuring chamber 1 are provided with vertical scanner mounts 8, and each scanner mount 8 is provided with four...

Embodiment 2

[0084] See Figure 1-2 , a fully automatic measurement device for underwear, including a central processing control device and a rectangular measurement chamber 1, the measurement chamber 1 is provided with a front panel, a right side panel, a left opening and a rear panel connected in sequence, the front panel The inner wall is provided with a display touch screen 2, the inner wall of the right side panel is provided with a vertically arranged slide rail 3, the slide rail 3 is provided with a switch handle 4, and the left opening is convexly provided with an arc-shaped changing room 5 for changing clothes. A black shading cloth 6 is provided in the room 5, a white light three-dimensional scanner 7 is provided in the four inner corners of the measurement room 1, and the inner walls of the measurement room 1 are all black panels.

[0085] The four inner corners of the measuring chamber 1 are provided with vertical scanner mounts 8, and each scanner mount 8 is provided with four...

Embodiment 3

[0104] See Figure 1-2, a fully automatic measurement device for underwear, including a central processing control device and a rectangular measurement chamber 1, the measurement chamber 1 is provided with a front panel, a right side panel, a left opening and a rear panel connected in sequence, the front panel The inner wall is provided with a display touch screen 2, the inner wall of the right side panel is provided with a vertically arranged slide rail 3, the slide rail 3 is provided with a switch handle 4, and the left opening is convexly provided with an arc-shaped changing room 5 for changing clothes. A black shading cloth 6 is provided in the room 5, a white light three-dimensional scanner 7 is provided in the four inner corners of the measurement room 1, and the inner walls of the measurement room 1 are all black panels.

[0105] The four inner corners of the measuring chamber 1 are provided with vertical scanner mounts 8, and each scanner mount 8 is provided with four ...

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PUM

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Abstract

The invention relates to the technical field of underwear customizing, in particular to a full-automatic measuring device and method for customizing underwear. The method for customizing the underwear comprises the following steps: A. acquiring data: using the full-automatic measuring device for customizing underwear to measure the figure data of a human body; B. selecting an underwear style and underwear fabric which are expected to be customized; C. combining the stretch rate and resilience rate of the underwear fabric determined in the step B with the figure data of the human body measured in the step A to obtain customization data of the underwear; D. making the underwear according to the customization data obtained in the step C; F. enabling a consumer to try on the made underwear, modifying if the underwear is not proper, and finally, obtaining the satisfactory underwear. According to the method, the comfortable and closed-fit underwear is made by combining the figure data of the human body and the elasticity and resilience rate of the underwear fabric; the underwear made by the method is good in support effect and meets the different demands for underwear style and comfort level of everyone.

Description

technical field [0001] The invention relates to the technical field of underwear ordering, in particular to an automatic measuring device for ordering underwear and a method for ordering underwear. Background technique [0002] Three-dimensional scanning technology is an advanced non-contact measurement technology integrating optical, mechanical, electrical and computer communication technologies. The method of obtaining three-dimensional information is based on time difference measurement, triangulation and phase measurement. The time difference measurement method uses the time of flight of the speed of light to measure the distance between the measured point and the reference plane. Due to the good unidirectionality of the laser, the laser is often used as the energy source. The triangulation method is based on the principle of triangulation, and the height of each point of the object is determined by the geometric relationship between the exit point, projection point and ...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): A41H1/02
CPCA41H1/02
Inventor 黄福开金华严兆伟翁创杰翁宏果
Owner HONGJI UNDERWEAR CO LTD