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Development of a Methodology for Strain Field Analysis during Orthogonal Cutting

机译:正交切割过程中应变场分析方法的发展

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Functionality of all machined parts depends on their dimensional tolerance,surface condition and subsurface characteristics,which are often summarized as surface integrity.Key aspects of surface integrity are a change of the residual stress state and white layer formation.Reasons for any workpiece modification of the surface rim zone can be found in the occurring high thermo-mechanical loads during the cutting process.Over the last years,many researchers published simulation based approaches to determine both thermo-mechanical loads and changes in workpiece microstructure induced by machining.Nevertheless,the direct measurement of relevant state variables such as plastic strain and temperature fields at relevant cutting conditions is still a key challenge.Directly obtaining those state variable fields from the process will enable the development of fast computing analytical models to in-process estimate surface integrity features.As a basis for later modelling of dynamic recrystallization during cutting,a methodology to calculate the accumulated equivalent plastic strains alongside one particle movement path throughout the shear zone is developed in this paper.Therefore,an orthogonal cutting test bench has been used to obtain high resolution images when cutting AISI 4140 which were then analyzed using Digital Image Correlation(DIC).
机译:所有加工部件的功能取决于它们的尺寸公差,表面状况和地下特性,该表面状况和地下特性通常总结为表面完整性。表面完整性的关键方面是残余应力状态和白色层形成的变化。用于任何工件修改的残余应力状态和白色层。表面边缘区可以在切割过程中发生在发生的高热机械负载中。过去几年,许多研究人员公布了基于模拟的方法,以确定热机械载荷和机械加工工件微观结构的变化。无论如何,直接相关状态变量的测量如相关切割条件下的塑料应变和温度场仍然是一个关键挑战。从过程中获得这些状态变量字段将使快速计算分析模型的开发到过程中的估计表面完整性.as动态rerystallizat以后建模的基础在切割过程中,在本文中开发了一种方法,以沿着整个剪切区的一个颗粒运动路径计算累积的等效塑料株。因此,正交切削测试台已被用来在切割AISI 4140时获得高分辨率图像使用数字图像相关(DIC)进行分析。

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