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Effect of Coolant Temperature on Surface Finish during Turning of Titanium Alloy Ti6Al4V

机译:冷却液温度对钛合金Ti6Al4V车削过程中表面光洁度的影响

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High temperature generated and stresses induced as a result of turning of Ti6Al4V results in poor surface finish. The aim of this study was to investigate the effect of coolant temperature on the surface roughness of Ti6Al4V which is a core material used as an implant. A cooling system was developed to reduce the temperature of the coolant (soluble oil) from room temperature to 2oC. Ti6Al4V was turned in dry and cooled (at temperatures 5, 7, 9 and 11 oC) conditions. The experiment was designed using central composite design of (Response surface methodology) Design Expert 11.0 to generate an array and optimize the machining parameters. The machining parameters used were cutting speed, feed rate, depth of cut and coolant temperature. Results analyses show that cutting speed and depth of cut had considerable effect on surface roughness of Ti6Al4V. Surface roughness reduced when coolant temperature was reduced. The results of this study shows that turning Ti6Al4V at a very low cutting temperature will ensure a better surface finish.
机译:由于Ti6Al4V的车削而产生的高温和引起的应力导致较差的表面光洁度。这项研究的目的是研究冷却液温度对Ti6Al4V表面粗糙度的影响,Ti6Al4V是用作植入物的核心材料。开发了一种冷却系统,以将冷却剂(可溶性​​油)的温度从室温降至2oC。将Ti6Al4V置于干燥和冷却(在5、7、9和11 oC温度)条件下。实验是使用(响应曲面方法)Design Expert 11.0的中央复合设计进行设计的,以生成阵列并优化加工参数。使用的加工参数为切削速度,进给速度,切削深度和冷却液温度。结果分析表明,切削速度和切削深度对Ti6Al4V的表面粗糙度有很大影响。当降低冷却剂温度时,表面粗糙度降低。这项研究的结果表明,在非常低的切削温度下车削Ti6Al4V将确保更好的表面光洁度。

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