Reinforcing plate for refrigerator and manufacturing process thereof

A manufacturing process and reinforcement board technology, which is applied in the field of refrigerator reinforcement boards and its manufacturing process, can solve the problems affecting the service life and performance of the product, low strength of the reinforcement board, and brittle products, so as to avoid further degradation and prolong the service life and performance, the effect of preventing embrittlement

Inactive Publication Date: 2021-06-18
滁州美业科技股份有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] The strength of the reinforcement board inside the refrigerator is low, and it is easily affected by chemical and physical factors, which makes the product oxidative and degraded, resulting in brittleness of the product, which seriously affects the service life and performance of the product. Therefore, we propose a reinforcement board for refrigerators and its manufacturing process

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0024] A high-strength washing machine door panel, including the following weight raw materials: 50-60 polyurethane plastic, 10-12 isocyanate, 8-10 glass fibers, 7-9 pieces of titanium powder, 7-9 parts of synthetic fatty acid ester 5-7 stearate, 4-6 servants, 4-6 of phosphite, 4-6 servants.

[0025] A manufacturing process of a refrigerator with a reinforcing plate, including the following steps:

[0026] Step 1, polyurethane plastic, isocyanate, glass fiber, titanium white powder, synthetic phytrate, and synthetic phytoside, and synthetic phytoside, and zinc synthesis, it is sequentially added to the stirring tank, and after stirring for 30-40 min, it is changed to intermittently 20-25 min, resulting in a mixture A ;

[0027] Step 2, adding pollol to the mixture A in the step one, continuously stirred for 10-13 min, resulting in a mixture B;

[0028] Step three, heating the mixture B in step two to 90 ° C;

[0029] Step 4, sequentially add the phosphite to the brown coal wax to ...

Embodiment 2

[0035] A high-strength washing machine door panel, including a weight of the following weight: 50-60 polyurethane plastic, 12-13 isocyanates, 10-12 glass fibers, 9-11 titanium white powder, 9-10 synthetic fatty acids , 7-9 stearate, 6-8 servants, 6-8 sshallate, 6-7 servants.

[0036] A manufacturing process of a refrigerator with a reinforcing plate, including the following steps:

[0037] Step 1, polyurethane plastic, isocyanate, glass fiber, titanium white powder, synthetic phytrate, and synthetic phytoside, and synthetic phytoside, and zinc synthesis, it is sequentially added to the stirring tank, and after stirring for 30-40 min, it is changed to intermittently 20-25 min, resulting in a mixture A ;

[0038] Step 2, adding pollol to the mixture A in the step one, continuously stirred for 10-13 min, resulting in a mixture B;

[0039] Step three, heating the mixture B in step two to 90 ° C;

[0040] Step 4, sequentially add the phosphite to the brown coal wax to the high temperat...

Embodiment 3

[0046] A high-strength washing machine door panel, including the following weight of the following weight of 50-60 polyurethane plastic, 8-10 isocyanate, 7-8 glass fibers, 6-7 titanium white powder, 5-7 parts of the synthetic fatty acid ester 5-7 sq.7, 3-4 servants, 3-4 periklates, 2-4 servants of phosphite.

[0047] A manufacturing process of a refrigerator with a reinforcing plate, including the following steps:

[0048] Step 1, polyurethane plastic, isocyanate, glass fiber, titanium white powder, synthetic phytrate, and synthetic phytoside, and synthetic phytoside, and zinc synthesis, it is sequentially added to the stirring tank, and after stirring for 30-40 min, it is changed to intermittently 20-25 min, resulting in a mixture A ;

[0049] Step 2, adding pollol to the mixture A in the step one, continuously stirred for 10-13 min, resulting in a mixture B;

[0050] Step three, heating the mixture B in step two to 90 ° C;

[0051] Step 4, sequentially add the phosphite to the b...

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PUM

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Abstract

The invention discloses a reinforcing plate for a refrigerator and a manufacturing process thereof, which relate to the field of refrigerators, and provide the following scheme aiming at the problems of low strength and poor oxidation resistance of the traditional reinforcing plate for the refrigerator: the reinforcing plate comprises the following raw materials in parts by weight: 50-60 parts of polyurethane plastic, 10-12 parts of isocyanate, 8-10 parts of glass fiber, 7-9 parts of titanium dioxide, 7-9 parts of synthetic vegetable fatty acid ester, 5-7 parts of zinc stearate, 4-6 parts of carvacrol, 4-6 parts of phosphite ester and 4-6 parts of lignite wax. The glass fiber and the titanium dioxide are added into the polyurethane plastic and the isocyanate, the overall strength of the product can be effectively improved, the zinc stearate metal soap stabilizer is added, plastic damage and further degradation caused by thermal action can be delayed or avoided, and the service life of the product is prolonged; meanwhile, a main antioxidant carnitol and a secondary antioxidant phosphite ester are sequentially added, so that oxidative degradation of the plastic is delayed, product embrittlement and color change are prevented, the service life of the product is prolonged, and the performance of the product is improved.

Description

Technical field [0001] The present invention relates to the field of refrigerators, and more particularly to a reinforcing plate for refrigerator and a manufacturing process thereof. Background technique [0002] The refrigerator is a refrigeration apparatus that maintains a constant low temperature, and is also a civilian product that keeps food or other items constant low temperature cold. There is compressor in the box, the ice machine is used to frozen cabinets or boxes with a storage box with a refrigeration device. The volume of the household refrigerator is usually 20 ~ 500 liters. In 1910, the world's first compressed refrigeration household refrigerator came in the United States. In 1925, Sweddi has developed a household absorption refrigerator. In 1927, US General Electric Co., Ltd. developed a fully enclosed refrigerator. In 1930, air cooling continuous diffusion absorption refrigerators in different heating methods were placed in the market. In 1931, the new refrigera...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C08L75/04C08L91/06C08K13/04C08K7/14C08K3/22C08K5/098C08K5/524C08K5/29
CPCC08K2003/2241C08L75/04C08L91/06C08K13/04C08K7/14C08K3/22C08K5/098C08K5/524C08K5/29
Inventor 樊徐清付后如魏林祝传强
Owner 滁州美业科技股份有限公司
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