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A Nanomechanical Analysis of Deformation Characteristics of 6H-SiC Using an Indenter and Abrasives in Different Fixed Methods

机译:压头和磨料在不同固定方法下对6H-SiC变形特性的纳米力学分析

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摘要

The super-precise theory for machining single crystal SiC substrates with abrasives needs to be improved for its chemical stability, extremely hard and brittle. A Berkovich indenter was used to carry out a systematic static stiffness indentation experiments on single crystal 6H-SiC substrates, and then these substrates were machined by utilizing fixed, free, and semi-fixed abrasives, and the nanomechanical characteristics and material removal mechanisms using abrasives in different fixed methods were analyzed theoretically. The results indicated that the hardness of C faces and Si faces of single crystal 6H-SiC under 500 mN load were 38.596 Gpa and 36.246 Gpa respectively, and their elastic moduli were 563.019 Gpa and 524.839 Gpa, respectively. Moreover, the theoretical critical loads for the plastic transition and brittle fracture of C face of single crystal 6H-SiC were 1.941 mN and 366.8 mN, while those of Si face were 1.77 mN and 488.67 mN, respectively. The 6H-SiC materials were removed by pure brittle rolling under three-body friction with free abrasives, and the process parameters determined the material removal modes of 6H-SiC substrates by grinding with fixed abrasives, nevertheless, the materials were removed under full elastic-plastic deformation in cluster magnetorheological finishing with semi-fixed abrasives.
机译:由于其化学稳定性,极硬和脆性,需要改进用磨料加工单晶SiC衬底的超精密理论。使用Berkovich压头在单晶6H-SiC衬底上进行系统的静态刚度压痕实验,然后利用固定,自由和半固定的磨料对这些衬底进行机械加工,并使用磨料对纳米力学特性和材料去除机理进行加工从理论上分析了不同固定方法中的问题。结果表明,单晶6H-SiC在500 mN载荷下的C面和Si面的硬度分别为38.596 Gpa和36.246 Gpa,其弹性模量分别为563.019 Gpa和524.839 Gpa。此外,单晶6H-SiC C面塑性转变和脆性断裂的理论临界载荷分别为1.941 mN和366.8 mN,而Si面的理论临界载荷分别为1.77 mN和488.67 mN。在自由磨料的三体摩擦作用下,通过纯脆性轧制去除6H-SiC材料,工艺参数确定了用固定磨料磨削6H-SiC衬底的材料去除方式,然而,在完全弹性的条件下去除了材料。半固定磨料在簇磁流变精加工中的塑性变形。

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