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1)  Anti-wear performance
抗磨耗性能
2)  attrition resistance
抗磨耗性
3)  wear resistance
磨耗性能
1.
And the test results of hardness , wear resistance.
研究了适合于连铸结晶器Ni—Fe合金单层电镀技术的工艺及配方,并对镀层的硬度、耐磨耗性能、耐热性能及耐热冲击性能进行了研究。
4)  wear ability
磨耗性能
1.
By means of several measures such as TEM, SEM and dynamic mechanical analysis, morphology, static mechanical properties, wear ability, dynamic heat build-up and dynamic viscoelasticity of star-shaped and di-block SIBR,star-shaped and random SIBR were studied,and compared with NR/SSBR(40/60)blend.
用透射电镜、扫描电镜、动态粘弹谱仪等研究了星形两嵌段SIBR、星形无规SIBR的相态结构、静态力学性能、磨耗性能、动态生热性能及动态粘弹性能,并与40/60(质量比)的NR/SSBR共混物进行了对比。
5)  Wear Resistance
抗磨性能
1.
Microstructure of the coating was analyzed and wear resistance of the coating at room temperature was evaluated under sliding condition.
结果表明:复合涂层由TiC颗粒、γ-N i奥氏体枝晶和枝晶间M23C6共晶组织组成;随着载荷增加,感应熔覆涂层磨损质量损失缓慢增大,16Mn钢磨损质量损失迅速增大,熔覆涂层具有优异的抗磨性能,其磨损机制主要为擦伤式磨损。
2.
The microhardness and wear resistance of artificial carious human enamel and artificial carious human enamel applied with two anticarious measures were tested by a sclerometer and a oscillating friction and wear test rig.
采用人工方法制成人牙釉质浅龋及使用抗龋措施的龋损釉质样本 ,分别测量各组釉质表面显微硬度 ,并以微动摩擦磨损试验机测试其抗磨性能 。
6)  antiwear ability
抗磨性能
1.
The antiwear ability of copper oleate capped CuO nanoparticles as additives in liquid paraffin were investigated using a four-ball wear tester.
利用四球摩擦磨损实验机考察了油酸铜修饰CuO纳米颗粒作为润滑油添加剂的抗磨性能,并用扫描电子显微镜(SEM)和X-射线光电子能谱(XPS)等对钢球磨损表面进行了分析。
2.
The effect of oleate/PS/TiO 2 nanospheres as additives on the antiwear ability and load carrying capacity of liquid paraffin was investigated on a four ball machine.
采用种子乳液聚合法制备了油酸 / PS/ Ti O2 复合纳米微球 ,在四球摩擦磨损试验机上考察了油酸 / PS/ Ti O2 复合纳米微球添加剂对液体石蜡抗磨性能的影响 ,采用 X射线光电子能谱分析了钢球磨斑表面边界膜元素的组成及化学状态 。
3.
The results show that DDP-coated ZnS nanoparticles as oil additive can effectively enhance the antiwear ability of the base oil at low additive concentration.
SEM及EDS的分析结果表明摩擦过程中在摩擦表面形成了一层富含Zn、S、P元素的反应膜 ,正是这层膜的存在使得DDP修饰ZnS纳米微粒作为润滑油添加剂具有良好的抗磨性
补充资料:磨耗性
分子式:
CAS号:

性质:材料由于摩擦而引起表面磨损的性质或能对别种材料刮伤、擦伤或磨损的品质或特性。首先,这是由于摩擦力的存在而发生的。因此,影响摩擦力大小的因素都会影响磨耗性的测定结果;其次,也和对磨的两个材料的材质、加工条件、形状等有关系。所以磨耗性既是一个实用性的指标,同是也是具有相对意义的条件性参数。

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