在此基础上,建立了以单晶硅为工件材料的分子动力学仿真三维模型,对不同深度下的加工过程进行分析研究。
Then, based on these theories, the three-dimensional model with using monocrystal silicon as the workpiece is built and the processes of different grinding deepness is studied.
就模具结构对玉米秸秆粉粒体材料压制杯形工件的影响进行了研究。
This experiment studied the influence of mold design on molding a cuppy product from maize stalk powder.
通过对椭圆形工件的磨削实验研究,为非圆零件的高效精密磨削提供了好的解决方案。
The grinding experiment research of elliptic parts provided an ideal solution for the high-speed precise grinding of non-circular parts.
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