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Environment-friendly antibacterial and anti-odor shoe material and preparation method thereof

An environmentally friendly and deodorizing technology, applied in soles, footwear, applications, etc., can solve problems such as foot odor, sweat production, bacterial growth and reproduction, etc.

Inactive Publication Date: 2016-06-22
SUZHOU YUEHU SPONGE COMPOUND FACTORY
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0002] With the further development of the economy, shoes have been greatly improved in terms of aesthetics, anti-skid, and wear resistance. However, because the inner space of shoes is relatively closed, some shoes will inevitably have some ventilation functions in order to pursue warmth. However, the feet will produce sweat during exercise or walking. If the sweat cannot be eliminated in time, it will cause the growth and reproduction of some bacteria, which will not only cause foot odor and other phenomena, but even cause beriberi, bringing many problems to people's daily life. trouble

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0020] (1) Put 20 parts of chloroprene rubber and 18 parts of isoprene rubber into an internal mixer and banbury at 30°C to obtain compound A;

[0021] (2) Wash, dry and grind 3 parts of cactus and 6 parts of evergreen to 80-120 mesh, add 25 parts of vegetable oil and 3 parts of phytotriol, and vibrate ultrasonically for 2 hours at 600W power to obtain mixture B;

[0022] (3) Add 10 parts of polyurethane resin and 0.5 parts of praseodymium oxide to the mixture B described in step (2) in sequence, and stir at a temperature of 80°C at a rate of 150 r / min for 15 minutes to obtain a mixture C;

[0023] (4) Mix the mixture A described in the step (1) and the mixture C described in the step (3), then add 10 parts of phyllyl isobutyrate and 1 part of N-methylol acrylamide in sequence, at temperature At 60°C, stir at a rate of 500r / min for 20min to obtain mixture D;

[0024] (5) The mixture D in the step (4) is extruded and granulated by a twin-screw extruder, and after injection mol...

Embodiment 2

[0027] (1) Put 30 parts of chloroprene rubber and 35 parts of isoprene rubber into an internal mixer and banbury at 40°C to obtain compound A;

[0028] (2) Wash, dry, and crush 10 parts of cactus and 15 parts of evergreen to 120-200 mesh, add 35 parts of vegetable oil and 8 parts of phytotriol, and vibrate ultrasonically at 800W for 4 hours to obtain mixture B;

[0029] (3) Add 25 parts of polyurethane resin and 2 parts of praseodymium oxide to the mixture B described in step (2) in sequence, and stir at a temperature of 90°C at a speed of 300r / min for 30min to obtain a mixture C;

[0030] (4) Mix the mixture A described in step (1) and the mixture C described in step (3), then add 20 parts of phyllyl isobutyrate and 6 parts of N-methylol acrylamide in sequence, Stir at 650r / min for 40min at 80°C to obtain mixture D;

[0031] (5) The mixture D in the step (4) is extruded and granulated by a twin-screw extruder, and after injection molding, the environment-friendly antibacteri...

Embodiment 3

[0034] (1) Put 24 parts of chloroprene rubber and 25 parts of isoprene rubber into an internal mixer and banbury at 30°C to obtain compound A;

[0035] (2) Wash, dry, and crush 5 parts of cactus and 10 parts of evergreen to 80-120 mesh, add 30 parts of vegetable oil and 5 parts of phytotriol, and vibrate ultrasonically at 600W for 2 hours to obtain mixture B;

[0036] (3) Add 15 parts of polyurethane resin and 1 part of praseodymium oxide to the mixture B described in step (2) in sequence, and stir at a temperature of 100°C at a rate of 150 r / min for 15 minutes to obtain a mixture C;

[0037] (4) Mix the mixture A described in step (1) and the mixture C described in step (3), then add 12 parts of phyllyl isobutyrate and 2 parts of N-methylol acrylamide in sequence, at temperature At 60°C, stir at a rate of 500r / min for 20min to obtain mixture D;

[0038] (5) The mixture D in the step (4) is extruded and granulated by a twin-screw extruder, and after injection molding, the env...

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PUM

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Abstract

The invention discloses an environment-friendly antibacterial and anti-odor shoe material. The environment-friendly antibacterial and anti-odor shoe material is prepared from the following ingredients in parts by weight: 20-30 parts of neoprene, 18-35 parts of isoprene rubber, 10-25 parts of polyurethane resin, 3-8 parts of phytantriol, 3-10 parts of opuntia dillenii, 6-15 parts of rhodea japonica, 10-20 parts of cis-3-hexenyl isobutyrate, 25-35 parts of vegetable oil, 1-6 parts of N-methylol acrylamide and 0.5-2 parts of praseodymium oxide. The shoe material disclosed by the invention has good antibacterial performance and anti-odor performance, and the breeding and reproduction of bacteria are avoided, so that the shoe material is beneficial to human health.

Description

technical field [0001] The invention belongs to the field of shoe material preparation, in particular to an environment-friendly antibacterial and deodorant shoe material and a preparation method thereof. Background technique [0002] With the further development of the economy, shoes have been greatly improved in terms of aesthetics, anti-skid, and wear resistance. However, because the inner space of shoes is relatively closed, some shoes will inevitably have some ventilation functions in order to keep warm. However, the feet will produce sweat during exercise or walking. If the sweat cannot be eliminated in time, it will cause the growth and reproduction of some bacteria, which will not only cause foot odor and other phenomena, but even cause beriberi, bringing many problems to people's daily life. trouble. Contents of the invention [0003] Aiming at the above technical problems existing in the prior art, the present invention provides an environment-friendly antibacte...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C08L91/00C08L11/00C08L9/00C08L75/04C08K13/02C08K5/053C08K5/101C08K5/20C08K3/22A43B13/04
CPCC08L91/00A43B13/04C08L9/00C08L2205/035C08L11/00C08L75/04C08K13/02C08K5/053C08K5/101C08K5/20C08K2003/221
Inventor 魏锋
Owner SUZHOU YUEHU SPONGE COMPOUND FACTORY
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