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Constitutive model incorporating the strain-rate and state of stress effects for machining simulation of titanium alloy Ti6A14V

机译:钛合金Ti6a14V加工模拟的应变率和应力效应应变模型

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Ti6A14V titanium alloy is widely used in aero-engines due to its superior performance.However,as a difficult-to-cut alloy,it induces short cutting tool life and poor surface integrity.To improve these process outcomes,numerical simulations are of importance.The predictive ability of such simulation depends on the accuracy of the constitutive model which describes the work material behavior under loading conditions specific to metal cutting.Therefore,the focus of this paper is the formulation of a constitutive model to be used in the orthogonal cutting simulation of Ti6A14V.The distinguished feature of this model is its simplicity,accounting for the strain-rate and state of stress effects in the work material deformation and fracture.The model coefficients were identified using mechanical tests and numerical simulations with specially-designed test specimens to cover a wide range of strain-rates and state of stress.Orthogonal cutting simulations were performed and the obtained results were compared with those measured.
机译:由于其优越性,Ti6a14V钛合金广泛用于航空发动机。然而,作为难以切割的合金,它会诱导短切削刀具寿命和差的表面完整性。为了改善这些过程结果,数值模拟具有重要性。这种模拟的预测能力取决于构成模型的准确性,该模型描述了在特定于金属切削的加载条件下的工作材料行为。因此,本文的焦点是在正交切割模拟中使用本构模型的配方Ti6a14v。该模型的杰出特征是其简单性,占工作材料变形和裂缝中的应变率和应力效应的状态。使用机械测试和数值模拟来识别模型系数,与特殊设计的测试标本进行识别覆盖各种应变率和应力状态。进行正交切割模拟,并获得结果W.与测量的人相比。

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