1)  scratch resistance
耐刮伤
2)  scratch resistance
耐刮伤性
1.
After being added in the wood coatings,the wax particles were homodispersed in the coating films,which could improve the tackiness resistance and the scratch resistance of coating films.
采用复配法将水性蜡助剂加入到水性木器涂料中,蜡助剂在涂料成膜时均匀地分散在整个涂层中,蜡助剂的加入能够显著提高漆膜的抗回粘性和耐刮伤性能,但是大粒径的蜡助剂会引起漆膜光泽的下降。
2.
The morphology and structure of the nanocomposite coatings were characterized by transmission electron microscopy(TEM) and small angle X-ray scattering(SAXS) method,while the scratch resistance by the gloss loss of the coatings film after washing.
以四乙氧基硅烷(TEOS)作为主要前驱体,通过改变溶胶-凝胶工艺参数制得了结构和形态各异的丙烯酸酯聚氨酯/SiO2纳米复合涂层,利用TEM、SAXS等手段表征涂层的结构与形态,由洗刷前后涂层的失光率来表征耐刮伤性,详细探讨了纳米复合涂层耐刮伤性与SiO2相特征、有机无机相作用力及SiO2质量分数之间的关系。
3)  scratch resistant coatings
耐刮伤涂层
1.
Organic-inorganic nanocomposite scratch resistant coatings for polycarbonate(PC)were successfully fabricated by evaporation induced self-assembly method.
利用挥发诱导自组装法制备了聚碳酸酯(PC)有机-无机纳米复合耐刮伤涂层,考察了基材处理方式、自组装液组成、涂装工艺等因素对自组装涂层厚度、透明性及耐刮伤性的影响。
4)  scratch resistance
耐刮擦性
1.
The scratch resistance of nano alumina and nano silica without influence of film gloss and transparency and the long-term UV absorption of nano-zinc oxide are also briefed.
简述了纳米助剂的定义和制备,纳米氧化铝和纳米氧化硅助剂能显著提高涂膜的耐刮擦性而不影响光泽和透明性,纳米氧化锌助剂具有长效紫外线吸收性。
5)  scratch-resistant
耐刮擦
1.
The mechanical properties and scratch-resistant properties of PC/ABS alloys could be improved obviously by adding nano-MgO particles.
添加纳米MgO后的PC/ABS合金与纯PC/ABS空白样相比,其拉伸、弯曲和缺口冲击强度及表面耐刮擦性能都得到了明显改善,其中合金弯曲强度可提高20%,缺口冲击强度可提高77。
2.
The scratch-resistant SiO2 antireflective coatings were prepared by dipping of the glass followed by a thermal curing at 700 ℃ taking place simultaneously with the glass toughening, using the base/acid two-step catalytic sol-gel process with tetraethylorthosilicate (TEOS) as precursor.
17%,在400-800nm的波长范围内平均反射率较镀膜前下降了5%以上,同时薄膜具有较好的耐刮擦性能。
6)  mar-resisatant,scratch proof
耐刮的
补充资料:刮伤


刮伤
scuffing

guoshang刮伤(seuffing)钢材在轧制和输送过程中,被设备、工具刮出的沟痕状表面缺陷。刮伤的深度不等,可见沟底,常呈直线形,也有的呈曲线形,单条或多条,通长或局部地分布在产品表面上。一般钢材产品允许有局部刮伤,但其深度应符合有关标准规定。 产生刮伤的原因是:(l)导卫板(见导板)加工不良或磨损严重,边缘不圆滑;(2)导卫装呈安装调整不当,对轧件压力过大;(3)热轧区地板、辊道、移钢翻钢设备有尖棱,轧件通过时被刮伤。 产生在管材内表面上,基本上呈直线形的刮伤称直道。直道是自动轧管机乳管时常易出现的缺陷。产主的原因是轧管机顶头表面上有凹凸缺陷,如烧化的金属焊在顶头上、顶头磨损和顶头形状畸变等,轧制时把钢管内表刮伤。在冷拔时短芯棒严重磨损也容易出现冷拔直道缺陷。防止和消除刮伤的办法有:(1)轧钢设备和辅助设备要保持光洁平整;(2)导卫装置安装要适当。 (刘贤才李连诗)
说明:补充资料仅用于学习参考,请勿用于其它任何用途。