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Effect of Processing Parameters and Temperature on Sliding Wear of H62 Copper Alloy Modified by Friction Stir Surface Processing

机译:工艺参数和温度对搅拌摩擦改性H62铜合金滑动磨损的影响

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H62 copper alloy surface was modified by friction stir processing using various values of processing parameters. The friction and wear experiments of surfaces were done at different temperatures, and the wear properties of modified surfaces thus determined were analyzed. The results of the analysis show that the wear resistance of the specimens decreased with increase in the rate of rotation of the stirring tool, when the penetration depth and the wear test temperature were kept constant. The wear resistances of the specimens decreased with increase in the penetration depth, when the rate of rotation of the stirring tool and the wear test temperature were kept constant. The specimen hardness initially increased with an increase in the wear test temperature, and then decreased with further increase in the wear temperature, with the rate of rotation of the stirring tool and the penetration depth kept constant. The main reason is that the softening material of specimen surface was removed at 100℃, resulting in an increase in the hardness of the modified surface. At 200℃, the modified surface underwent recrystallization, resulting in grain refinement of the modified surface. With increase in the wear test temperature, there was further grain growth, resulting in lower hardness at 500℃DOI: http://dx.doi.org/10.5755/j01.ms.23.3.16322
机译:通过使用各种加工参数值进行摩擦搅拌加工,对H62铜合金表面进行了改性。在不同温度下进行表面的摩擦和磨损实验,并分析由此确定的改性表面的磨损性能。分析结果表明,当针入深度和磨损试验温度保持恒定时,试样的耐磨性随搅拌工具转速的增加而降低。当搅拌工具的旋转速率和磨损试验温度保持恒定时,试样的耐磨性随穿透深度的增加而降低。样品硬度最初随着磨损测试温度的升高而增加,然后随着磨损温度的进一步升高而降低,并且搅拌工具的旋转速率和穿透深度保持恒定。主要原因是样品表面的软化材料在100℃时被去除,导致改性表面的硬度增加。在200℃下,改性表面进行重结晶,从而使改性表面细化。随着磨损测试温度的升高,晶粒进一步生长,导致在500℃下硬度降低。DOI:http://dx.doi.org/10.5755/j01.ms.23.3.16322

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