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首页> 外文期刊>Journal of manufacturing science and engineering: Transactions of the ASME >Modeling Cutting Temperatures for Turning Inserts With Various Tool Geometries and Materials
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Modeling Cutting Temperatures for Turning Inserts With Various Tool Geometries and Materials

机译:模拟具有各种刀具几何形状和材料的车削刀片的切削温度

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摘要

Temperatures are of interest in machining because cutting tools often fail by thermal softening or temperature-activated wear. Many models for cutting temperatures have been developed, but these models consider only simple tool geometries such as a rectangular slab with a sharp corner. They do not simultaneously account for tool nose radii and insert shape effects, even though it is known in practice that these features affect tool life and thus presumably tool temperature. This report describes a finite element study of tool temperatures in cutting that accounts for tool nose radius and included angle effects. A temperature correction factor model that can be used in the design and selection of inserts is developed to account for these effects. Parametric mesh generator is used to generate the finite element models of tool and inserts of varying geometries. The steady-state temperature response is calculated using NASTRAN solver. Several finite element analysis (FEA) runs are performed to quantify the effects of insert's included angle, nose radius, and materials for the insert and the tool holder on the cutting temperature at the insert rake face. The FEA results are then utilized to develop a temperature correction factor model that accounts for these effects. The temperature correction factor model is integrated with an analytical temperature model for rectangular inserts to predict cutting temperatures for contour turning with inserts of various shapes and nose radii. Finally, experimental measurements of cutting temperature using tool-work thermocouple technique are performed and compared with the predictions of the new temperature model. The comparisons show good agreement.
机译:温度在机械加工中很重要,因为切削工具通常会因热软化或温度激活的磨损而失效。已经开发了许多切削温度模型,但是这些模型仅考虑简单的刀具几何形状,例如带有尖角的矩形板。尽管实际上已知这些特征会影响刀具寿命,进而可能影响刀具温度,但它们并不能同时考虑刀尖半径和刀片形状的影响。该报告描述了切削中刀具温度的有限元研究,该研究考虑了刀尖半径和所包含的角度影响。为了解决这些影响,开发了可用于插入件的设计和选择的温度校正因子模型。参数化网格生成器用于生成工具和不同几何形状的刀片的有限元模型。使用NASTRAN求解器计算稳态温度响应。进行了几次有限元分析(FEA),以量化刀片的夹角,刀尖半径以及用于刀片和刀架的材料对刀片前刀面切削温度的影响。然后将FEA结果用于建立考虑这些影响的温度校正因子模型。温度校正因子模型与用于矩形刀片的分析温度模型集成在一起,以预测各种形状和刀尖半径的刀片的轮廓车削的切削温度。最后,使用工具热电偶技术对切削温度进行了实验测量,并将其与新温度模型的预测进行了比较。比较显示出良好的一致性。

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