根据纤维增强金属基复合材料的结构特点,研究了界面在复合材料磨损过程中的作用。
The roles of interface between tile fiber and the matrix in fiber reinforced metal matrix composites are studied during wear according to the structural features of the composites.
并利用扫描电镜观察磨损后试样的形貌,分析该材料磨损过程中的影响因素及磨损机制。
The worn sample appearance was studied was observed by SEM, and the influence factors and wear mechanism were analyzed after experimentations.
指使材料从地表磨损、消耗的一组自然过程,包括风化、溶解、磨蚀、浪蚀、腐蚀和搬运。
The group of natural processes, including weathering, dissolution, abrasion, corrosion, and transportation, by which material is worn away from the earth's surface.
在硅片磨削过程中,磨削力是综合反映工件材料性质和状况、砂轮特性和磨损状态、加工用量和工艺系统参数等因素的一个重要物理参量。
In the process of grinding, the grinding force is a key physical parameter, generally reflecting properties and state of material, and the characteristics of grinding wheel and abrasion state.
分析了主离合器摩擦片的磨损具有沿径向非均分布的特点,指出摩擦片在使用过程中,局部高温和材料软化是产生磨损的重要原因。
The wear of friction wafers in main clutch features uneven radical distribution. In the operation of friction wafers, high local temperature and material softening are important reasons causing wear.
对制备的复合材料的磨损试验表明:磨损过程存在磨台阶段和稳态磨损阶段。
The wear process of the composite was composed of running-in and steady state wear.
着重讨论了钛合金TC4高速铣削过程铣削力的问题,研究了切削参数、刀具磨损及刀具材料等对铣削力的影响。
The effects of cutting parameters, cutter wears and materials on cutting force are also focused on in the paper.
根据三体磨损是典型的随机过程这一特点,运用蒙特卡罗方法模拟在球形磨料的作用下,材料塑性变形磨损的磨损率。
Monte Carlo method was applied for simulating plastic deformation wear rate of materials under the three body abrasion using ball like abrasive particles.
结果表明,无论是试验过程中的载荷、滑动速度,还是材料本身的硬度都将影响材料的磨损性能,在该试验过程中材料磨损的机制以粘着磨损和磨粒磨损为主。
The results indicate that the wear properties are influenced by load, glide velocity and rigidity, and the main wear mechanism is adherence wear and abrasive wear.
结果表明,无论是试验过程中的载荷、滑动速度,还是材料本身的硬度都将影响材料的磨损性能,在该试验过程中材料磨损的机制以粘着磨损和磨粒磨损为主。
The results indicate that the wear properties are influenced by load, glide velocity and rigidity, and the main wear mechanism is adherence wear and abrasive wear.
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