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Analisis Tegangan Pada Mata Pahat Dalam Proses Pemesinan Bubut Menggunakan Software Autodesk Inventor 2016

机译:使用Autodesk Inventor 2016软件分析车床加工过程中刀眼上的应力

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摘要

In the turning process, all the energy used for chip formation is converted into heat. This causes thetemperature at the cutting zone will increase. The heat generated during the machining process depends on thetype of tool material, workpiece material, and process parameters such as cutting speed, cutting depth andfeeding. High temperatures that are well distributed during the turning process, have an important effect on thetension on the tools. Therefore, it is necessary to analyze the effect of variation of the rake angle on titaniummachining process, by comparing the theoretical and simulation results using Autodesk Inventor 2016. In thisresearch, the cutting force used was orthogonal. The main angle variations are used 5°, 10° and 15°. Based onthe theoretical, the maximum cutting force (Fc) is 1720 N for the rake angle (γ) 50, and there is a decrease in thecutting force of each rake angle (γ) increase. From the simulation results, the maximum tension occurs at a rakeangle of 15°, amounting to 1368.462 N / mm2. There is an increase in the tension of each rake angle (γ) increase.
机译:在车削过程中,所有用于切屑形成的能量都转化为热量。这导致切割区域的温度将升高。加工过程中产生的热量取决于刀具材料,工件材料的类型以及诸如切削速度,切削深度和进给等工艺参数。在车削过程中分布良好的高温对工具的张力有重要影响。因此,有必要通过比较使用Autodesk Inventor 2016的理论和仿真结果来分析前角变化对钛合金加工的影响。在此研究中,所使用的切削力是正交的。主角度变化使用5°,10°和15°。根据理论,前角(γ)50的最大切削力(Fc)为1720 N,并且每个前角(γ)增大时切削力都会减小。根据仿真结果,最大张力出现在15°的斜角处,总计1368.462 N / mm2。每个前角的张力(γ)的增加都会增加。

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