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Resin composition for zipper, zipper, slide unit and lock

A resin composition and slider technology, used in fasteners, applications, household appliances, etc., can solve the problems of low rigidity, difficult metal mold forming, and insufficient improvement.

Inactive Publication Date: 2003-05-14
TOYOBO CO LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] In addition, polybutylene terephthalate was used for locks and sliders in some parts, but at this time, the dyeability of the cloth and the belt is very different, and the color tone cannot be matched, so before molding , for coloring based on pigments, or after forming, it must be dyed separately from the cloth, so it cannot be generalized
In addition, in locks and sliders made of non-reinforced polybutylene terephthalate resin, the flexural modulus is about 2.3GPa, and the rigidity is low, and there is a problem of deformation during opening and closing.
In addition, in the lock and slider made of reinforced polybutylene terephthalate resin, especially when the content of the fibrous reinforcing material is 20% by weight or more, bending and deformation become large, due to the limitation of dimensional accuracy. relationship, the switch resistance is large or part of the gap, wear is large, and the use is limited to a very small range
Although, try to reduce the switching resistance with friction modifier, but the improvement is not enough
I tried to use polyethylene terephthalate, but it is difficult to form it with a complex metal mold in the usual composition, and it is impossible to produce
In addition, when zipper parts with high dimensional accuracy are required, there are problems with the switch during use due to the deformation of the product that has been released from the mold.

Method used

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  • Resin composition for zipper, zipper, slide unit and lock
  • Resin composition for zipper, zipper, slide unit and lock
  • Resin composition for zipper, zipper, slide unit and lock

Examples

Experimental program
Comparison scheme
Effect test

Embodiment A1~A11

[0075] Examples A1 to A11, Comparative Examples A1 to A8

[0076] A combination is selected from the resins, modified resins, and inorganic fillers shown in Tables 1 and 2, and the predetermined amount (% by weight) of these is measured, and then premixed. The preparatory mixture was put into the hopper of a two-axis extruder with a diameter of 30mmф in the same direction and adjusted to 265-270-270°C from the hopper side, and melted and kneaded at a screw speed of 100rpm to obtain pellets. Each obtained pellet was dried at 140°C for 3 hours to obtain a sample for evaluation. According to the above-mentioned evaluation method, the performance was evaluated, and the results are shown in Tables 1 and 2.

[0077] It should be pointed out that the dispersed particle diameter of the polymer in the polyester resin is calculated by observing the impact fracture surface of the injection-molded Ai-style impact test piece with gold at 3000 times with a scanning electron microscope.

[0078]...

Embodiment B1~B11

[0091] Examples B1 to B11, comparative examples B1 to B8

[0092] A combination is selected from the resins, modified materials, and inorganic fillers shown in Tables 3 and 4, and a predetermined amount (% by weight) of these is measured, and then the mixture is prepared. The preparatory mixture was put into the hopper of a two-axis extruder with a diameter of 30mmф in the same direction and adjusted to 265-270-270°C from the hopper side, and melted and kneaded at a screw speed of 100rpm to obtain pellets. Each obtained pellet was dried at 140°C for 3 hours to obtain a sample for evaluation. The performance was evaluated according to the above-mentioned evaluation method, and the results are shown in Tables 3 and 4.

[0093] Example

B1

B2

B3

B4

B5

B6

B7

B8

B9

B10

B11

B12

Make up

(Parts by weight)

PET1

100

100

100

100

100

100

100

100

...

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Abstract

The present invention relates to a resin composition for slide fastener, and a higher aliphatic acid salt-based compound, and to a slider, an element, and a slide fastener made from the resin composition. This resin composition for the slide fastener contains the following (A) component and at least one of grops from (B) to (E), wherein, (A) a polyester resin having 80% by mole of a repeating unit of alkylene terephthalate, and at least one component selected from group consisting of (B) a polymer having an average dispersion particle diameter in the range of 0.01 to 3 micron when dispersed and a glass transition temperature of 0 DEG C or less, (C) at least one inorganic compound selected from the group consisting of a titanium compound, a zinc compound and a silicon compound, (D) a fibrous reinforcing material, and (E) at least one releasing agent selected from the group consisting of a silicon-based compound, a higher aliphatic acid ester-based compound.

Description

Technical field [0001] The present invention relates to a resin composition used in the molding of a zipper, and more specifically, to a resin composition that can be used in the molding of a zipper that can be used even if it is mounted on clothes, purses, etc., even if it is subjected to repeated washing, heating and drying, and heat from an iron. Resin composition. In addition, the present invention relates to a slider and a lock that constitute a zipper, and a method of manufacturing them. Background technique [0002] Generally, such as figure 1 As shown, the zipper is composed of the following parts: a lock 1 (also called a tooth), a zipper tape 2, a slider (switch part: composed of a slider body 3 and a handle 4), a bottom stop (also called a bottom stop) ), as needed, there is a top stop (also called top stop). The belt is closed by moving the slider to engage the lock member, or the belt is opened by separating the lock member. [0003] Conventionally, as the locks and ...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C08K3/00C08K5/09C08K5/101C08L23/02C08L33/06C08L67/00C08L67/02C08L75/04C08L83/04
CPCC08L75/04C08K5/101C08L83/04C08L67/00C08L67/02C08K5/09C08K3/00C08L33/06C08L23/02Y10T428/25Y10T24/2507Y10T24/25Y10T24/2561Y10T428/249946Y10T428/24994Y10T428/249945C08L2666/02
Inventor 葭原法谷口聪
Owner TOYOBO CO LTD