首页> 外国专利> Final surface machining of ionic ceramic, e.g. an engine valve, tappet or cam follower coating, comprises grinding with an ionic bonded oxide medium to produce an ultra-smooth surface retaining an ionic residue of the medium

Final surface machining of ionic ceramic, e.g. an engine valve, tappet or cam follower coating, comprises grinding with an ionic bonded oxide medium to produce an ultra-smooth surface retaining an ionic residue of the medium

机译:离子陶瓷的最终表面加工,例如发动机气门,挺杆或凸轮从动件涂层,包括用离子键合氧化物介质研磨以产生超光滑表面,保留该介质的离子残留物

摘要

Final machining of ionic ceramic surfaces, comprising grinding with a harder ionic bonded oxide medium to produce an ultra-smooth surface which retains an ionic residue of the medium, is new. A final machining process for ionic ceramic surfaces comprises repeated surface grinding with a final machining medium of ionic bonded oxide with grains which are harder than the grains of the covalent ionic ceramic, including frequent interruption of grinding to dress the medium, until an average surface roughness of about 0.04 mu m is achieved, the free ceramic surface retaining an ionic residue of the medium. An Independent claim is also included for a method of reducing friction between lubricated friction surfaces by pressing a silicon nitride friction surface, produced by the above process, against another friction surface with mixed hydrodynamic interface lubrication by oil having additives which react with the ionic residue to form a frictional torque reducing transfer film on the silicon nitride ceramic surface. Preferred Features: The ionic bonded oxide is aluminum oxide in the form of a grinding wheel, the ionic residue is aluminum oxide or hydroxide and the covalent ionic ceramic is selected from silicon nitride, sialon, beryllium oxide, silicon oxynitride, aluminum oxynitride and nitrogen-containing silicates.
机译:离子陶瓷表面的最终加工是新的,包括用较硬的离子键合氧化物介质研磨以产生超光滑的表面,该表面保留了介质的离子残留物。离子陶瓷表面的最终加工工艺包括用离子键合氧化物的最终加工介质进行重复的表面磨削,其晶粒比共价离子陶瓷的晶粒硬,包括频繁中断打磨以修整介质,直至达到平均表面粗糙度达到约0.04μm的自由度,自由的陶瓷表面保留了介质的离子残基。还包括一种独立权利要求,该方法通过以下方法来减小润滑的摩擦表面之间的摩擦,该方法是通过将具有上述过程产生的氮化硅摩擦表面压向另一摩擦表面,并通过混合液压动力学界面润滑,该油具有与离子残基反应的添加剂。在氮化硅陶瓷表面上形成减小摩擦扭矩的转印膜。优选特征:离子键合氧化物是砂轮形式的氧化铝,离子残基是氧化铝或氢氧化物,并且共价离子陶瓷选自氮化硅,赛隆,氧化铍,氧氮化硅,氧氮化铝和氮-含有硅酸盐。

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