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1.
Wear behavior under high temperature and lubrication condition of Fe-based alloy coating formed by laser cladding
铁基合金激光熔覆层高温润滑磨损性能
2.
Study on Friction and Wear Property and Lubricant Mechanism of Water Lubricated Bearing;
水润滑轴承的摩擦磨损性能及润滑机理的研究
3.
Under the condition of boundary lubrication,adhere wear mechanism and abrasive grain wear mechanism do the business at the same time.
在边界润滑条件下,镀层的磨损机制为粘着磨损与磨粒磨损并存.
4.
the oil keeps moving parts from wearing excessively.
润滑油可使运动零件免于过度磨损。
5.
Tribological Effect of Lubricating Oil Additive EDT with Wear-Self-Compensation Function
润滑添加剂的磨损自补偿摩擦学效应
6.
Study on Friction, Wear and Lubrication of the Mated Couple of HIP-Si_3N_4/GCr15;
HIP-Si_3N_4/GCr15摩擦副摩擦、磨损及润滑的研究
7.
Tribological Properties of Steel Surface Textured by Laser under Lubrication
润滑条件下激光加工纹理的摩擦磨损
8.
Research on Accelerated Wear Mechanism for 3Cr13 Sprayed Coating Under Abrasive Particles Lubrication
含磨粒润滑条件下3Cr13涂层加速磨损机理研究
9.
Because the grease was almost gone,the gears suffered from serious wear and tear.
由于润滑油差不多耗尽 了,齿轮磨损很严重.
10.
Direct Determination of Wear Metals Copper and Iron in Lubricating Oils by Flame Atomic Absorption Spectrometry
润滑油中磨损金属铁、铜的火焰原子吸收测定
11.
Investigation of Lubricating Additive of Wear-Self-compensation Repairing and Mechanism;
磨损自补偿修复润滑添加剂及其机理研究
12.
Study of Numerical Simulation on Reciprocating Wear under Boundary Lubrication Condition;
边界润滑状态下往复摩擦磨损的数值仿真研究
13.
Study on Friction and Wear Properties of Ni/C Self-lubricanting Coating;
镍包石墨自润滑涂层摩擦磨损性能研究
14.
Study on the Wear Behavior of Ultrahigh Molecular Weight Polyethylene Using Plasma as Lubricant;
血浆润滑下超高分子量聚乙烯磨损行为研究
15.
Study on the Friction and Wear Mechanism of Nanocopper as Lubricant Additives
纳米铜润滑油添加剂摩擦磨损机理研究
16.
Effect of Speed on Wear Properties of Wheel Steel under Water Lubrication
水润滑条件下速度对车轮钢磨损特性的影响
17.
The Integration of Cylinder Liner-Piston Ring Wear and Lubrication in Lnternal Combustion Engine
内燃机中缸套-活塞环的磨损与润滑综述
18.
Experimental Research on Tool Wear in High Speed Milling of PH13-8Mo Stainless Steel with Cryogenic Minimum Quantity Lubrication
低温微量润滑高速铣削PH13-8Mo刀具磨损试验研究