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首页> 外文期刊>Sadhana: Academy Proceedings in Engineering Science >Mechanical and tribological properties of Al7475-SiCp composites by stir casting method and wear rate modeling using RSM
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Mechanical and tribological properties of Al7475-SiCp composites by stir casting method and wear rate modeling using RSM

机译:用RSM搅拌铸造方法和磨损率建模的AL7475-SICP复合材料的机械和摩擦学性能

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摘要

The microstructure, mechanical and wear properties of the Al 7475-SiCp composites and to investigate the effects of SiC micro-particles reinforcement with alloy have been studied. Al 7475-SiCp composites have been developed by a stir casting method. The SiCp size in the range of 15-40 mu m with weight.% of 0, 5, 10 and 15 were injected in molten Aluminum 7475 alloy in argon gas environment and stirrer using a mechanical method at 450rpm to ensure uniform distribution of SiC particles. The mechanical properties such as hardness and compressive strength of the composites were found to be gradually improved with the addition of 5-15% SiCp reinforcement. The ultimate tensile and impact strength increased with 10% of SiCp reinforcement. For modeling the wear rate, the experiments were conducted in Pin-on Disc tribometer at room condition. A three-level central composite design with response surface methodology was used to reduce the experimental conditions and to predict the abrasive response of wear rate through the development of mathematical models. The model developed is efficiently predicted the rate of wear at 95% confidence level and the entire model validate with analysis of variance.
机译:研究了Al 7475-SICP复合材料的微观结构,机械和磨损性能和研究SiC微颗粒增强与合金的影响。 A1775-SICP复合材料已由搅拌铸造方法开发。 SICP尺寸在15-40μm的重量范围内。在450rpm下使用机械方法在氩气环境和搅拌器中在氩气环境和搅拌器中注射0,5,10和15的熔融铝,以确保SiC颗粒的均匀分布。通过加入5-15%SICP增强件,发现复合材料的硬度和压缩强度等机械性能逐渐提高。最终拉伸和冲击强度随SICP增强的10%增加。为了对磨损率进行建模,实验在房间条件下以销滤盘摩擦计进行。采用响应面方法的三级中央复合设计来减少实验条件,并通过数学模型的发展预测磨损率的磨蚀响应。该模型显影了有效地预测了95%置信水平的磨损率和整个模型的差异验证。

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