搅拌摩擦加工
材料科学
响应面法
极限抗拉强度
纳米复合材料
压痕硬度
中心组合设计
复合材料
碳化硼
导线
转速
金属基复合材料
铝
实验设计
合金
复合数
微观结构
机械工程
计算机科学
工程类
机器学习
地理
大地测量学
统计
数学
作者
Ravi Butola,Kapil Dev Pandey,Qasim Murtaza,R. S. Walia,Mohit Tyagi,Krovvidi Srinivas,Arun Kumar Chaudhary
标识
DOI:10.1177/23977914231151485
摘要
In the present research work, microhardness and ultimate tensile strength of the aluminum based metal surface nanocomposites is studied using response surface methodology. Aluminum alloy 5083 is used as a matrix material, boron carbide nanoparticles as a reinforcement and surface nanocomposites are fabricated using Friction stir processing (FSP). Central composite design (CCD) matrix is used to prepare a design of experiment with three process parameters/factors that is, Tool rotational speed, Tool traverse speed, and Number of passes, having three level each. The nanocomposite fabricated according to design of experiment are analyzed using Response surface methodology (RSM). The developed mathematical model well fitted experimental values and equations are stated by the model to predict the microhardness and ultimate tensile strength of the surface nanocomposites. The predicted value by the model and actual tested values are in close agreement. The developed model predicted that the optimum nanocomposites is to be fabricated at 1300 rpm tool rotational speed with a tool traverse speed of 30 mm/min and no of passes should be three times, in order to achieve enhance ultimate tensile strength and microhardness.
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