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Capability of high pressure cooling in the turning of surface hardened piston rods

机译:表面硬化活塞杆旋转时的高压冷却能力

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An experimental study was performed to investigate the capabilities of dry, conventional and high pressure cooling (HPC) in the turning of surface hardened piston rods used in fluid power applications. Machining experiments were performed using coated carbide tools at cutting speeds up to 160m/min. The cooling capabilities are compared by monitoring of chip breakability, process regions of operability, cooling efficiency, tool wear, tool life and cutting forces. Test results showed that dry cutting could not be performed due to long and ductile chips that were formed for all investigated cutting conditions. In comparison to conventional cooling the significant increase of cutting speed and feed rate region of operability was recorded when machining with HPC. Tool life analysis proved a five times increase in tool life when machining with HPC. Furthermore HPC also improved chip breakability and reduced coolant consumption.
机译:进行了一项实验研究,以研究干式,常规和高压冷却(HPC)在流体动力应用中使用的表面硬化活塞杆的车削中的能力。使用涂层硬质合金刀具以高达160m / min的切削速度进行机加工实验。通过监控切屑断裂性,可操作性的工艺区域,冷却效率,刀具磨损,刀具寿命和切削力来比较冷却能力。测试结果表明,由于在所有研究的切削条件下都形成了长而易碎的切屑,因此无法进行干切削。与传统冷却相比,HPC加工时切削速度和进给率区域的可操作性显着提高。刀具寿命分析证明,使用HPC加工时,刀具寿命增加了五倍。此外,HPC还改善了切屑断裂性并减少了冷却液消耗。

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