拼接模具过缝区域切削力建模与表面质量
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TG54;TH113

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国家自然科学基金资助项目(51575147);哈尔滨理工大学青年拔尖创新人才培养计划资助项目(201507)


Research on Cutting Force Modeling and Surface Quality in the Transition Area of the Mosaic Mold
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    摘要:

    针对汽车覆盖件拼接模具铣削过程中刀具易磨损破损、已加工表面精度低的问题,对铣削拼接缝过程进行了切削力微元建模。根据加工材料硬度的不同,把每一切削周期的切屑厚度建成切削角度的函数关系,得到不同切削角度下剪切力和犁耕力模型。通过引入单自由度斜体碰撞模型,运用霍普金森压杆试验得到不同主轴转速下刀-工碰撞的弹性变形量δ,进而得到过缝处刀具受到的冲击力。结合剪切力、犁耕力模型与冲击力模型得到过缝区域铣削力预测模型。切削试验与仿真结果具有很好的一致性,证明所建立模型的正确性。研究了不同进给方向下的表面质量,对已加工表面质量、表面粗糙度及工件间高度差进行分析,结果表明,由高硬度切向低硬度工件时可以获得较好的表面质量。所得结果为汽车覆盖件拼接模具铣削加工的工艺优化提供了理论支持。

    Abstract:

    Aiming at the problem of tool wear and breakage, the low accuracy of machined surface during the milling process of automobile panel splicing dies, the cutting force modeling of micro element is carried out. The cutting chip thickness of each cutting cycle is built as a function of the cutting angle and the shear force according to the different hardness of machining materials, and a plow force model are obtained under different cutting angles. By introducing a single-degree-of-freedom italic collision model, the Hopkinson test is used to obtain the elastic deformation of the tool-workpiece impact under different spindle speeds, and then the impact force on the tool in the transition area is obtained. Combining above models together, the prediction model of milling force in the transition area can be obtained. Experiment and simulation results show a good consistency to prove the accuracy of the model. The surface quality under different feed directions is studied. From the analysis results of machined surface quality, surface roughness and height difference between workpieces, it is concluded that better surface quality can be obtained from high hardness and low hardness workpiece. The results provide theoretical support for the optimization of the milling process in the splicing die of the automobile panel.

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  • 在线发布日期: 2018-07-04
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