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Validation of a Heat Input Model for the Prediction of Thermomechanical Deformations during NC Milling

机译:NC铣削期间热机械变形预测热输入模型的验证

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During roughing in NC milling, heat is introduced into the workpiece. For the manufacturing of large structural components, a constantly changing temperature field is created due to the rapid movement and the varying contact conditions between tool and workpiece. Therefore, significant deformations can cause form errors that lead to rejects in the production process. In this paper, a simulation system for the prediction of transient workpiece temperatures is presented. In order to calibrate the system, simple experiments have been conducted, and a model for the introduction of energy into the workpiece via cutting has been developed. The newly developed cutting-energy input model makes it possible to perform fast simulations. Therefore, it can be used to perform simulations of the thermoelastic workpiece deformations during milling of complex shaped parts.
机译:在NC铣削中粗加工期间,将热量引入工件中。为了制造大型结构部件,由于工具和工件之间的快速运动和变化的接触条件,产生不断变化的温度场。因此,显着的变形可能导致形成在生产过程中拒绝的形式误差。本文介绍了一种用于预测瞬态工件温度的仿真系统。为了校准系统,已经开发了简单的实验,并且已经开发了通过切割将能量引入工件中的模型。新开发的切削能量输入模型可以执行快速模拟。因此,它可以用于在铣削复合成形部件期间执行热弹性工件变形的模拟。

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