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Application of response surface methodology for determining cutting force model in turning of LM6/SiC_P metal matrix composite

机译:响应面法在确定LM6 / SiC_P金属基复合材料切削力模型中的应用。

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摘要

In the present investigation an attempt is made to evaluate the effect of certain cutting variables on cutting forces in straight turning of aluminum metal matrix composites under dry cutting condition. Cutting speed, depth of cut and weight percentage of SiC_P are selected as the influencing parameters. The application of response surface methodology and face centered composite design for modeling, optimization, and an analysis of the influences of dominant cutting parameters on tangential cutting force, axial cutting force and radial cutting force of aluminum metal matrix composites produced through stir casting route. Experiments are carried out using aluminum (LM6) alloy reinforced with silicon carbide particles. The mathematical models are developed and tested for adequacy using analysis of variance and other adequacy measures using the developed models. The predicted values and measured values are fairly close, which indicate that the developed models can be effectively used to predict the responses in the turning of aluminum metal matrix composites. The contour plots of the process parameters revel that the low cutting forces are associated with the lowest level of depth of cut and the highest level of cutting speed and the sensitivity analysis revealed that cutting speed is most significant factor influencing the response variables investigated.
机译:在本研究中,试图评估某些切削变量对铝金属基复合材料在干切削条件下直线车削时切削力的影响。选择切削速度,切削深度和SiC_P的重量百分比作为影响参数。响应面方法和面心复合材料设计在建模,优化和分析主要切削参数对搅拌铸造铝金属基复合材料切向切削力,轴向切削力和径向切削力的影响中的应用。使用用碳化硅颗粒增强的铝(LM6)合金进行实验。使用方差分析和使用已开发模型的其他充分性度量来开发和测试数学模型的充分性。预测值和实测值相当接近,这表明所开发的模型可以有效地用于预测铝金属基复合材料车削过程中的响应。工艺参数的轮廓图表明,低切削力与最低切削深度和最高切削速度有关,而灵敏度分析表明,切削速度是影响所研究响应变量的最重要因素。

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