首页> 外文期刊>Journal of the Brazilian Society of Mechanical Sciences and Engineering >Analysis of Ranque-Hilsch vortex tube cooling performance in respect of cutting temperature, resultant cutting force and chip morphology in turning of BeCu alloy
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Analysis of Ranque-Hilsch vortex tube cooling performance in respect of cutting temperature, resultant cutting force and chip morphology in turning of BeCu alloy

机译:Ranque-Hilsch涡流管冷却性能在BeCu合金车削过程中的切削温度、合切削力和切屑形貌分析

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摘要

Recently, it has been seen that environmentally friendly cutting media are widely used to contribute to sustainability in the processing of engineered materials. In this context, a study has been focused on both contributing to the mentioned purpose and turning a beryllium-copper (BeCu) alloy on which much research has not been done on its machinability despite being used in a wide industrial area. For this purpose, a comprehensive study was performed to determine the effects on the cutting temperature, resultant cutting force and chip morphology of the cutting speed, feed rate and depth of cut in the machining of C17500 alloy under dry and Ranque-Hilsch vortex tube (RHVT) cutting environments. Turning experiments were carried out with Al2O3 + TiCN-coated carbide tools, and the changes on the cutting tool were investigated by SEM and EDX analyses. The cutting temperature values revealed in the RHVT application were measured 62.6 lower on average compared to the dry cutting environment. The Fr values obtained for the RHVT cutting environment were on average 11.6 higher than those in the dry condition. The chip thickness ratio was obtained larger in the experiments performed in the RHVT application, and the most important secondary parameter affecting it is the depth of cut. In addition, more than 99 compatibility was found between the mathematical model predictions developed for the cutting temperature, the resultant cutting force and the actual test results.
机译:最近,人们看到环保的切削介质被广泛使用,以促进工程材料加工的可持续性。在这种情况下,一项研究的重点是为上述目的做出贡献,并转向铍铜 (BeCu) 合金,尽管铍铜 (BeCu) 合金用于广泛的工业领域,但尚未对其可加工性进行大量研究。为此,进行了综合研究,以确定在干式和 Ranque-Hilsch 涡流管 (RHVT) 切削环境下加工 C17500 合金时,切削速度、进给率和切削深度对切削温度、合射切削力和切屑形态的影响。采用Al2O3+TiCN涂层硬质合金刀具进行车削实验,通过SEM和EDX分析研究了切削刀具上的变化。与干式切削环境相比,RHVT 应用中显示的切削温度值平均降低了 62.6%。RHVT切削环境下的Fr值平均比干燥条件下高11.6%。在RHVT应用中进行的实验中,切屑厚度比更大,影响它的最重要次要参数是切削深度。此外,还发现针对切削温度、合切削力和实际测试结果开发的数学模型预测之间的兼容性超过 99%。

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