耐侯耐磨涂料

  • 详情介绍

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耐候耐磨涂料采用无机-有机高度交联网络互穿和单体官能团世界前沿技术,经过18道精加工技术合成。涂料的溶液采用无机硅、氟碳和有机硅的三轴健体合成结构,这样增加协同能效的溶液在耐候、耐磨和附着力性能方面发挥极致。

涂料的主要成分是选用高度分散纳米材料--纳米系统中超声加入纳米颗粒,颗粒粒径细,性质稳定,蓄能作用大,而且与聚合物分子链之间有较强的结合力,增加涂层以及涂层和基体应力的集中,也就是涂层以及涂层和基体分子力都趋于合力交联状态。涂料的交联度越大内聚力就越大,涂料里的单体官能团发生交联反应的程度越大,涂料生成透明耐磨凝胶网络就越好,涂料的透明耐磨性也就越好。


The weather resistant and wear-resistant coatings are synthesized by 18 finishing processes using the world leading technologies of inorganic organic highly cross-linked network interpenetration and monomer functional groups. The coating solution adopts the triaxial structure of inorganic silicon, fluorocarbon and organosilicon, which can increase the synergistic energy efficiency of the solution in terms of weather resistance, wear resistance and adhesion performance.

The main component of the coating is to select highly dispersed nano materials - nano particles are added into the nano system by ultrasound. The particle size is fine, the property is stable, the energy storage effect is large, and there is a strong binding force between the particles and the polymer molecular chain, which increases the stress concentration of the coating and the coating and the substrate, that is, the molecular force of the coating and the coating and the substrate tends to be a resultant cross-linking state. The greater the degree of cross-linking of the coatings, the greater the cohesion. The greater the degree of cross-linking reaction of the monomer functional groups in the coatings, the better the transparent and wear-resistant gel network is, and the better the transparent and abrasion resistance of the coatings.


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产品测试

PRODUCT TESTING


利用扫描电镜对涂层显微组织进行观察,通过纳米显微力学探针测量涂层微区硬度,在摩擦磨损实验机上对涂层进行磨损实验涂料涂刷在碳钢上,涂刷前碳钢的硬度是5.5H,涂层的硬度测试8H。涂刷前后基体耐磨性对比,耐磨指数从0.18可以上升助08,同时耐刮性有很大提高,摩擦磨损实验机很难在其表面造成刮痕。


The microstructure of the coating was observed by scanning electron microscope, and the microhardness of the coating was measured by nano micromechanical probe. The wear test of the coating was carried out on the friction and wear testing machine. The hardness of the carbon steel was 5.5h before the coating was applied, and the hardness of the coating was 8h. The wear resistance index of the substrate before and after brushing can be increased from 0.18 to 0.08, and the scratch resistance is greatly improved. It is difficult for the friction and wear testing machine to cause scratches on its surface.


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