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Experimental Study on Surface Quality of AI_2O_3 Engineer Ceramics in Ultrasonic Vibration Lapping

机译:超声波振动研磨中AI_2O_3工程陶瓷表面质量的实验研究

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摘要

Hard-brittle materials have been popular used in manufacture experience because of their excellent performances. However the low plasticity, frangibility and non-conduction make their machining very difficult, especially in ultra-precise surface fabrication. Therefore, ultrasonic vibration is introduced to conventional lapping for the purpose of higher removal rate and fine surface quality. The ultrasonic vibration lapping principle is introduced, and the acoustic model of ultrasonic lapping is proposed. In addition, the experimental formulas of surface roughness in ultrasonic lapping is gained by orthogonal regression analysis, the optimum lapping parameters is put forward and the primary and secondary influencing order of parameters on surface roughness is presented through the conventional and ultrasonic vibration lapping contrast experiment of Al_2O_3 engineer ceramics with different vibration models and different lapping parameters. And combining with SEM, the influencing rule of such different lapping parameters as rotational speed, feed speed, oilstone grit and lapping depth on surface quality is studied.
机译:由于其性能优异,硬质材料在制造经验中受欢迎。然而,塑性低,脆性和非传导使其加工非常困难,特别是在超精密的表面制造中。因此,将超声波振动引入传统研磨,以便更高的去除率和细表面质量。引入超声波振动研磨原理,提出了超声波研磨的声学模型。此外,通过正交回归分析来获得超声波研磨中的表面粗糙度的实验公式,提出了最佳研磨参数,通过传统和超声波振动研磨对比试验提出了表面粗糙度的主要和二次影响顺序AL_2O_3具有不同振动模型和不同研磨参数的工程师陶瓷。研究了SEM,研究了这种不同研磨参数的影响规则,作为转速,进给速度,油石砂砾和表面质量上的研磨深度。

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