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1)  mates [英][meit]  [美][met]
配副
1.
Effect of mates and slide rate on wear resistance of 40Cr steel strengthened by electrical dischange was investigated under a large contacting stress.
用MM-200型磨损试验机研究了在大接触应力磨损条件下,配副和潜滑率对电火花表面强化40Cr钢的耐磨性影响。
2.
The effect of varying mates on abrasive wear character of martensitic wear-resistant steel by MLD-10 type impact abrasion tester was investigated.
讨论了在动载三体磨粒磨损条件下 ,马氏体钢配副变化对磨粒磨损系统耐磨性的影响。
2)  partner adaptability
配副性
1.
In order to decrease the wear of piston rings and cylinder liners,and improve partner adaptability,the laser cladding and electroplating techniques were adopted to prepare in-situ precipitation particle reinforced metal matrix composite coatings and chromium-plated coatings on the nodular cast iron matrix.
为降低活塞环、缸套摩擦副的磨损和改善配副性,采用激光熔覆和电镀技术在球墨铸铁表面分别制备原位析出颗粒增强金属基复合材料表层和镀铬层。
3)  Counterpart [英]['kaʊntəpɑ:t]  [美]['kauntɚ'pɑrt]
配副件
1.
Investigation on Tribological Properties of TiN Films at Different Counterparts;
金属和陶瓷配副件条件下TiN薄膜的摩擦学特性
4)  port pair
配流副
1.
Experimental study of frictional torque properties of plane port pairs in axial piston pump
轴向柱塞泵平面配流副的摩擦转矩特性试验研究
2.
Oil film with a certain range of thickness and figure are the basic prerequisites of a good running condition for port pair in axial piston pump,and also is one of the primary lubrication indicators.
一定厚度与形状的油膜是轴向柱塞泵配流副保持良好工作状态的首要前提,也是衡量其润滑特性的主要指标之一。
5)  Port plate/cylinder block
配流副
1.
Development and simulation of lubrication test system for port plate/cylinder block in axial piston pump;
轴向柱塞泵配流副润滑特性试验系统的建立及仿真研究
6)  distribution pair
配流副
1.
The oil film thickness of the distribution pair of the bent-axis pump is tested dynamically in this paper.
动态测试了斜轴泵配流副的油膜间隙。
2.
The leakage flow rate and power loss of the bent-axis piston pump distribution pair are calculated,which is composed of a distributor and a cylinder block.
对斜轴式轴向柱塞泵配流副──组成楔形油膜间隙的缸体与配流盘──的泄漏量、功率损失进行了理论计算,分析了配流副的污染磨损机理。
补充资料:异配位体配位化合物
分子式:
CAS号:

性质:又称异配位体配位化合物。中心离子同时与两种以上不同配体共存于配位内界所组成的单核或多核配位化合物。例如,三氯·氨合铂(II)酸钾和(2)铜(II)-吡啶(py)-水杨酸(sal)配位化合物。在溶液中混配配位化合物的形成是普遍现象。与单一型配位化合物比较,它加强了中心体的化学个性(如易满足高配位数、增强不稳价态稳定性、光学性质改变等),也加强了配体的反应活性和协同萃取效应。在湿法冶金、电化学、分析化学、药物化学、环境化学、生物无机化学和材料化学等方面有着重要作用。

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