Material suitable for bearing in mechanical equipment

文档序号:1499771 发布日期:2020-02-07 浏览:17次 中文

阅读说明:本技术 一种适用于机械设备中轴承的材料 (Material suitable for bearing in mechanical equipment ) 是由 蒋友河 于 2019-11-07 设计创作,主要内容包括:本发明是一种适用于机械设备中轴承的材料,包含添加剂和载体,配方中的原料按重量百分比组成分别是:0.5~6%磷酸三钠,10~35%聚二甲基丙烯酰胺,1~10%纳米碳酸钙,0~3%硅烷偶联剂,0~2.5%聚偏二氟乙烯,5~20%环氧树脂,10~20%蒙脱土,30~60%催化剂,通过本方法制备的产品,具有极强的抗塑性能力,摩擦系数较低,轴承的精密度极高且可以很好的保持精密度不受损。(The invention relates to a material suitable for a bearing in mechanical equipment, which comprises an additive and a carrier, wherein the raw materials in the formula comprise the following components in percentage by weight: 0.5-6% of trisodium phosphate, 10-35% of polydimethylacrylamide, 1-10% of nano calcium carbonate, 0-3% of silane coupling agent, 0-2.5% of polyvinylidene fluoride, 5-20% of epoxy resin, 10-20% of montmorillonite and 30-60% of catalyst.)

1. The material suitable for the bearing in mechanical equipment comprises an additive and a carrier, and is characterized in that the raw materials in the formula comprise the following components in percentage by weight: 0.5-6% of trisodium phosphate, 10-35% of polydimethylacrylamide, 1-10% of nano calcium carbonate, 0-3% of silane coupling agent, 0-2.5% of polyvinylidene fluoride, 5-20% of epoxy resin, 10-20% of montmorillonite and 30-60% of catalyst.

2. The material suitable for the bearing in the mechanical equipment as claimed in claim 1, wherein the raw materials in the formula comprise the following components in percentage by weight: 0.5 percent of trisodium phosphate, 10 percent of polydimethylacrylamide, 1 percent of nano calcium carbonate, 1 percent of silane coupling agent, 1 percent of polyvinylidene fluoride, 5 percent of epoxy resin, 10 percent of montmorillonite and 30 percent of catalyst.

3. The material suitable for the bearing in the mechanical equipment as claimed in claim 1, wherein the raw materials in the formula comprise the following components in percentage by weight: 6 percent of trisodium phosphate, 35 percent of polydimethylacrylamide, 10 percent of nano calcium carbonate, 3 percent of silane coupling agent, 2.5 percent of polyvinylidene fluoride, 20 percent of epoxy resin, 20 percent of montmorillonite and 60 percent of catalyst.

4. The material suitable for the bearing in the mechanical equipment as claimed in claim 1, wherein the raw materials in the formula comprise the following components in percentage by weight: 4% of trisodium phosphate, 23% of polydimethylacrylamide, 5% of nano calcium carbonate, 1.5% of silane coupling agent, 1.25% of polyvinylidene fluoride, 13% of epoxy resin, 15% of montmorillonite and 45% of catalyst.

Technical Field

The invention discloses a material suitable for a bearing in mechanical equipment.

Background

The bearing is an important part in the modern mechanical equipment. Its main function is the support mechanical rotator, reduces the coefficient of friction in its motion process to guarantee its gyration precision, among the prior art, the bearing uses the condition of a period of time after, the coefficient of friction grow can appear, makes the general shorter condition of life of bearing.

Disclosure of Invention

Aiming at the problems in the prior art, the invention provides a material suitable for a bearing in mechanical equipment, which has the advantages of extremely strong plasticity resistance, low friction coefficient, extremely high precision of the bearing and capability of well keeping the precision not damaged.

In order to achieve the purpose, the invention is realized by the following technical scheme: the material suitable for the bearing in mechanical equipment comprises the following raw materials in percentage by weight: 0.5-6% of trisodium phosphate, 10-35% of polydimethylacrylamide, 1-10% of nano calcium carbonate, 0-3% of silane coupling agent, 0-2.5% of polyvinylidene fluoride, 5-20% of epoxy resin, 10-20% of montmorillonite and 30-60% of catalyst.

Has the advantages that: the product prepared by the method has strong plasticity resistance, low friction coefficient, high precision of the bearing and capability of well keeping the precision not damaged.

Detailed Description

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