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Numerical and Experimental Validation of Chip Morphology 芯片形态学的数值和实验验证
Pub Date : 2019-04-30 DOI: 10.34218/IJARET.10.2.2019.049
M. Sivaramakrishnaiah, P. Nandakumar, G. Janardhana
The extensive research studies are used to divination the behavior of complex Metal cutting processes. The cutting parameters such as speed, feed and force play important role on conform chip morphology. The experimental techniques for investigation the chip morphology is expensive and time consuming. To overcome these difficulties Finite element modeling and simulation process are used as effective tool to divination the effect of cutting variables. In the present study FEA simulation process model is developed to divination the chip morphology and cutting forces in turning of Al-6061 with WC tool. Johnson cook material models are considered for visco-elastic material behavior. The obtained simulation process results are compared with experimental process results.
广泛的研究用于预测复杂金属切削过程的行为。切削速度、进给量和切削力等切削参数对切屑形貌的一致性有重要影响。研究芯片形态的实验技术既昂贵又耗时。为了克服这些困难,将有限元建模和仿真过程作为预测切削变量影响的有效工具。本研究建立了Al-6061用WC刀具车削时切屑形貌和切削力的有限元模拟过程模型。约翰逊库克材料模型被认为是粘弹性材料的行为。仿真结果与实验结果进行了比较。
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LingRN: Other Morphology (Topic)
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