Cold-resistant rubber

A technology of cold-resistant rubber and silicone rubber, which is applied in the field of cold-resistant rubber to achieve high tensile strength and good cold-resistant performance

Active Publication Date: 2014-03-26
大连铁达塑胶制品有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

This phenomenon shows that by exposing the rubber to an appropriate temperature, part of the irregular molecular structure inside the rubber will be rearranged, resulting in an increase in modulus, expansion of permanent deformation, and a decrease in the elasticity of the rubber over time. slowly lost

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0045] Chlorohydrin rubber 80 guayule gum 80

[0046] Silicone rubber 50 Polyurethane rubber 40

[0047] Ethylene Propylene Rubber 25 Carbon Black N100 20

[0048] Clay 6 Sulfur 8

[0049] Antiaging agent 3 Clay 5

[0050] Aromatic oil 2 Silica 5

[0051] Anti-scorch agent 2 Nano zinc oxide 2

[0052] Zinc diethyldithiocarbamate 3 2-thiol imidazoline 2

[0053] Plasticizer 6 Softener 6.

[0054] The plasticizer is dioctyl phthalate;

[0055] The emollient is ointment;

[0056] Antiaging agent is N-phenyl-α-aniline.

Embodiment 2

[0058] Chlorohydrin rubber 50 Epoxidized natural rubber 50

[0059] Silicone rubber 30 Polyurethane rubber 20

[0060] Ethylene Propylene Rubber 10 Carbon Black N100 10

[0061] Clay 2 Sulfur 2

[0062]Antiaging Agent 1 Clay 1

[0063] Aromatic oil 1 Silica 1

[0064] Anti-scorch agent 1 Nano zinc oxide 1

[0065] Zinc diethyldithiocarbamate 1 2-thiol imidazoline 1

[0066] Plasticizer 1 Softener 4.

[0067] The plasticizer is dibutyl phthalate;

[0068] The softening agent is stearic acid;

[0069] Antiaging agent is p-phenylenediamine.

Embodiment 3

[0071] Chlorohydrin rubber 150 Zieger gum 120

[0072] Silicone rubber 70 Polyurethane rubber 60

[0073] Ethylene Propylene Rubber 40 Carbon Black N100 30

[0074] Clay 8 Sulfur 10

[0075] Antiaging agent 5 Clay 10

[0076] Aromatic oil 5 Silica 10

[0077] Anti-scorch agent 5 Nano zinc oxide 4

[0078] Zinc diethyldithiocarbamate 4 2-thiol imidazoline 4

[0079] Plasticizer 10 Softener 12.

[0080] The plasticizer is dibutyl phthalate;

[0081] The softening agent is stearic acid;

[0082] Antiaging agent is p-phenylenediamine.

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PUM

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Abstract

The invention belongs to the rubber field, and particularly relates to cold-resistant rubber. The cold-resistant rubber comprises the components in parts by weight as follows: 50-150 parts of epichlorohydrin rubber, 50-120 parts of natural rubber, 30-70 parts of silicone rubber, 20-60 parts of polyurethane rubber, 10-40 parts of ethylene propylene rubber, 10-30 parts of carbon black N100, 2-8 parts of pottery clay, 2-10 parts of sulfur, 1-5 parts of an aging-resistant agent, 1-10 parts of pottery clay, 1-5 parts of aromatic oil, 1-10 parts of white carbon black, 1-5 parts of an anti-scorching agent, 1-4 parts of nano-zinc oxide, 1-4 parts of zinc diethyldithiocarbamate, 1-4 parts of 2-imidazolidinethione, 1-10 parts of a plasticizer and 4-12 parts of a softening agent. The cold-resistant rubber has the benefits as follows: compared with common rubber, the cold-resistant rubber has good cold-resistant performance and is suitable for continuous persistent use at the low temperature, and meanwhile, the rubber further has the advantages of high tensile strength, fire resistance, corrosion resistance and the like.

Description

technical field [0001] The invention belongs to the technical field of rubber materials, and in particular relates to a cold-resistant rubber with good cold resistance. Background technique [0002] The cold resistance of rubber, that is, the ability to maintain its elasticity and normal work at a specified low temperature, the cold resistance of rubber mainly depends on two basic properties of high polymers, glass transition and crystallization, both of which will make rubber loss of elasticity. The cold resistance of rubber is mainly reflected in the strong movement ability of the molecular chain, the relatively easy movement between molecules, and the relatively low energy of molecular aggregation. First, the rubber content can be appropriately increased. Under the same vulcanization conditions, the combined rubber content is relatively reduced, thus improving the cold resistance. Second, the selection and use of plasticizers and oils. Plasticizers facilitate the move...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C08L71/03C08L7/00C08L15/02C08L15/00C08L83/04C08L75/04C08L23/16C08K13/02C08K3/04C08K3/34C08K3/06C08K3/36C08K3/22C08K5/39C08K5/37
Inventor 尤晓明李洋刘国华张兰鹏葛汝海燕纪祥
Owner 大连铁达塑胶制品有限公司
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