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Milling machine for garment template

A milling and template technology, applied in the field of garment processing, can solve the problems of affecting product flatness and aesthetics, affecting product quality, and quality insecurity, etc., to solve the problem of excessive dependence on high skills, simplify complex processes, and improve production efficiency Effect

Inactive Publication Date: 2018-11-06
YINCHUAN RUINA CLOTHING CO LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0002] The traditional craft is to sew the mesh and lace fabrics, and the general parts have to follow the positioning line. The traditional production is not only slow, but also the quality is not guaranteed. There are deviations that affect the quality of the product
Traditional manual operation will also cause shrinkage or stretching of the fabric, poor wiring, etc., which will affect the flatness and aesthetics of the product. The daily output of traditional sewing is 100-200 pieces, which requires real sample sewing, points, and skilled hands Cars, low quality assurance, according to the diversification of clothing styles, the parts using templates must be analyzed before production, such as: collars, cuffs, clips, plackets, patchwork, waistbands, zippers, pockets, etc., all of which can be For making templates, if the garment templates are used for garment making, the production efficiency will be greatly improved and the labor intensity will be reduced. Therefore, it is necessary to design a milling machine for template making

Method used

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  • Milling machine for garment template
  • Milling machine for garment template
  • Milling machine for garment template

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0033] A milling and cutting machine for making garment templates, comprising a workbench 1 on which a milling template is arranged, height-adjustable outriggers 2 are arranged under the workbench 1, and opposite sides of the workbench 1 are respectively There is a guide rail A3, a crossbeam support 4 is provided between the two guide rails A3, a guide rail B5 is provided on the crossbeam support 4, a positioner 6 is provided on the guide rail B5, a milling head 7 is provided on the positioner 6, and the workbench 1 A set of pressing plate mechanisms are respectively provided at opposite ends. The positioner 6 can move along the guide rail B5. Locator 6 adopts existing clothing cutting locator. Support leg 2 comprises sleeve 2-1, and the bottom of sleeve 2-1 is provided with roller 11, and telescopic pole 2-2 is arranged in sleeve 2-1, and the distance between sleeve 2-1 and telescopic pole 2-2 There are positioning pins 2-3 between them. At least two positioning pins 2-3 a...

Embodiment 2

[0035] A milling and cutting machine for making garment templates, comprising a workbench 1 on which a milling template is arranged, height-adjustable outriggers 2 are arranged under the workbench 1, and opposite sides of the workbench 1 are respectively There is a guide rail A3, a crossbeam support 4 is provided between the two guide rails A3, a guide rail B5 is provided on the crossbeam support 4, a positioner 6 is provided on the guide rail B5, a milling head 7 is provided on the positioner 6, and the workbench 1 A set of pressing plate mechanisms are respectively provided at opposite ends. The positioner 6 can move along the guide rail B5. Locator 6 adopts existing clothing cutting locator. Support leg 2 comprises sleeve 2-1, and the bottom of sleeve 2-1 is provided with roller 11, and telescopic pole 2-2 is arranged in sleeve 2-1, and the distance between sleeve 2-1 and telescopic pole 2-2 There are positioning pins 2-3 between them. At least two positioning pins 2-3 a...

Embodiment 3

[0037] A milling and cutting machine for making garment templates, comprising a workbench 1 on which a milling template is arranged, height-adjustable outriggers 2 are arranged under the workbench 1, and opposite sides of the workbench 1 are respectively There is a guide rail A3, a crossbeam support 4 is provided between the two guide rails A3, a guide rail B5 is provided on the crossbeam support 4, a positioner 6 is provided on the guide rail B5, a milling head 7 is provided on the positioner 6, and the workbench 1 A set of pressing plate mechanisms are respectively provided at opposite ends. The positioner 6 can move along the guide rail B5. Locator 6 adopts existing clothing cutting locator. Each set of platen mechanism includes an inverted U-shaped support 8, at least two pressing rods 9 are arranged on the cross bar of the supporting frame 8, and pressing blocks 10 are arranged on the pressing rods 9.

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Abstract

The invention discloses a milling machine for a garment template. The milling machine for the garment template comprises a working table, wherein a height-adjustable supporting leg is arranged below the working table; guide tracks A are separately arranged on two opposite sides of the working table; a cross beam support is arranged between the two guide tracks A; a guide track B is arranged on thecross beam support; a positioner is arranged on the guide track B; and a milling head is arranged on the positioner; two pressure plate mechanisms are separately arranged at two opposite ends of theworking table; and a milling template is arranged on the working table. By the template manufactured by the milling machine, the clothing manufacture efficiency can be improved.

Description

technical field [0001] The present application relates to the technical field of garment processing, in particular to a milling machine for making garment templates, and the present invention also relates to the process of making garments by using the milling templates in the above-mentioned milling machine. Background technique [0002] The traditional craft is to sew the mesh and lace fabrics, and the general parts have to follow the positioning line. The traditional production is not only slow, but also the quality is not guaranteed. There are deviations that affect the quality of the product. Traditional manual operation will also cause shrinkage or stretching of the fabric, poor wiring, etc., which will affect the flatness and aesthetics of the product. The daily output of traditional sewing is 100-200 pieces, which requires real sample sewing, points, and skilled hands Cars, low quality assurance, according to the diversification of clothing styles, the parts using te...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): A41H3/00
CPCA41H3/00
Inventor 张晓露丁雪琴贾成刚崔叶杨巧莉郭晓庭
Owner YINCHUAN RUINA CLOTHING CO LTD
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