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1.
The Research on the Wear Performances and Wear Mechanisms of Several Ceramic Coatings Rubbed Against Resin-impregnated Graphite;
几种陶瓷涂层与浸渍石墨摩擦副的磨损性能及机理研究
2.
FRICTION REDUCTION AND ANTI-WEAR MECHANISM OF SERPENTINE MICRO POWDERS FOR SPHEROIDAL GRAPHITE IRON TRIBOPAIR
蛇纹石微粉对球墨铸铁摩擦副的减摩抗磨作用机理
3.
The Tribological Properties of Cast Zinc-Graphite Composite
铸造锌-石墨复合材料的摩擦学特性
4.
Research on Preparation and Tribological Properties of Copper Matrix with Graphite Self-lubricating Materials;
铜基石墨自润滑材料及其摩擦学研究
5.
Current Carrying Friction and Wear Behaviors of Copper-10% Graphite Alloy
铜-10%石墨合金的载流摩擦磨损性能
6.
DZD Brake are Singledisc brakes, friction disc non-asbestos lining/ steel.
DZD系列系通电工作单摩擦副型制动器,摩擦副为无石棉复合材料/。
7.
The low density graphite gets higher friction coefficient and bulk worn loss than the high density graphite.
低密度石墨的摩擦系数和体积磨损量比高密度石墨材料高。
8.
Friction and Wear Behavior of Graphite Partiele/Al Composites at High Sliding Speed and High Temperature
铝/石墨复合材料高速高温下的摩擦磨损特性
9.
Research of Gradual Copper-Graphite Self-lubrication Materials and Its Tribology Property;
梯度铜石墨自润滑材料及摩擦性能研究
10.
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
11.
Study of Microstructures and Tribological Performance of As-Milled Exfoliated Graphites
球磨态膨胀石墨的结构表征和摩擦学性能研究
12.
Effect of Graphite/Calcined Coke on Friction Performance of Brake Pad
石墨/煅后焦对合成闸瓦试样摩擦性能的影响
13.
Friction and Wear Performance of PTFE Composites Filled with Nano-SiC and graphite
纳米SiC与石墨填充PTFE复合材料的摩擦磨损性能
14.
EFFECT OF MAGNESIUM SILICATE HYDROXIDE ON THE FRICTION BEHAVIOUR OF DUCTILE CAST IRON PAIR AND THE SELF-REPAIRING PERFORMANCE
羟基硅酸镁对球墨铸铁摩擦副耐磨性能的影响及自修复作用
15.
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
16.
The Friction and Wear characteristics Research of Ceramics Friction Pair;
陶瓷材料摩擦副的摩擦磨损特性研究
17.
Recent Research of the Tribo-electrifiction Mechanism between the Friction Surfaces;
摩擦副表面摩擦带电机制的研究进展
18.
Sliding friction properties of WC-Ni/SiC friction couple
WC-Ni/SiC摩擦副滑动摩擦性能