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Analysis and Research of Structure and Process Characteristic Based on Low Rigidity Shell Part

机译:基于低刚度壳体零件的结构与工艺特性分析研究

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The process design is a very important step in NC machining which will ensure the manufacturing quality of the part. For the low rigidity part, due to the low rigidity and high deformation under certain load, herein, the low rigidity part often shows more clamping deformation under clamping force and cutting force in manufacturing, so that it will lead to machining error out of tolerance. In this paper, we choose a low rigidity shell part as research target, the machining process will be designed and analyzed, two clamping schemes were designed for this part, and the comparison and analysis were finished by using finite element method (FEM), the results showed that the smaller deformation and error was obtained in the axial clamping scheme, therefore, we choose this scheme as the ultimate clamping scheme for the low rigidity shell part.
机译:工艺设计是数控加工中非常重要的一步,它将确保零件的制造质量。对于低刚度部件,由于在一定载荷下的低刚度和高变形,在本文中,低刚度部件在制造过程中经常在夹紧力和切削力的作用下表现出更大的夹紧变形,从而导致加工误差超出公差范围。本文以低刚度壳体零件为研究对象,对零件的加工工艺进行了设计和分析,为此零件设计了两种夹紧方案,并通过有限元方法进行了比较分析。结果表明,轴向夹紧方案的变形和误差较小,因此,我们选择该方案作为低刚度壳体零件的最终夹紧方案。

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