首页> 外文期刊>Journal of Cleaner Production >Investigation of the influences of polycrystalline cubic boron nitride (PCBN) tool on the reduction of cutting fluid consumption and increase of machining parameters range in turning Inconel 783 using spray mode of cutting fluid with compressed air
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Investigation of the influences of polycrystalline cubic boron nitride (PCBN) tool on the reduction of cutting fluid consumption and increase of machining parameters range in turning Inconel 783 using spray mode of cutting fluid with compressed air

机译:研究多晶立方氮化硼(PCBN)工具对使用压缩空气切削液的喷射模式下车削Inconel 783时减少切削液消耗和增加加工参数范围的影响

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摘要

Nickel-based superalloys, such as Inconel 783, have exclusive characteristics like excellent corrosion resistance and physical and chemical strength against high temperatures, and therefore, are ubiquitous in the industries include turbine manufacturing, petroleum and petrochemical companies, aerospace and ship building. However, their low coefficient of heat transfer in combination with high toughness, can put these materials into the category of hard-to-machine ones and make the use of cutting fluid inevitable, and also, may constraint the range of machining parameters. Disadvantages contribute to the using of cutting fluid, the difficulty of performing machining process and the limitations in choosing input parameters can induce detrimental impacts on the environment and human health and it may also increase the machining and manufacturing costs and therefore, significantly reduce the efficiency of machining. In the present article, the influences of utilizing polycrystalline cubic boron nitride (PCBN) and coated carbide tools in combination with spray mode of biodegradable vegetable cutting fluid with compressed air were investigated on cutting forces, surface finish and tool tip temperature, in order to make a dramatic reduction in the consumption rate of the cutting fluid in turning process of Inconel 783. In addition, the feasibility of increasing the range of machining input parameters was explored via this approach. The results showed that making use of a PCBN tool, in comparison with the coated carbide tool, can result in a significant reduction in the consumption rate of cutting fluid. This may make it viable to remarkably increase machining input parameters. Moreover, in application of cutting fluid with the spray mode in combination with compressed air and a PCBN tool, it is practical to monitor the temperatures of machining area via a thermal imager. This is done in order to control the machining process and the behavior of Inconel 783 during this process. (C) 2016 Elsevier Ltd. All rights reserved.
机译:镍基超级合金(例如Inconel 783)具有独特的特性,例如出色的耐腐蚀性以及抗高温的物理和化学强度,因此在涡轮机制造,石油和石化公司,航空航天和造船业中无处不在。但是,它们的低传热系数与高韧性相结合,可以将这些材料归类为难加工材料,不可避免地要使用切削液,并且可能会限制加工参数的范围。不利因素导致切削液的使用,执行加工过程的困难以及选择输入参数的局限性可能对环境和人类健康产生不利影响,并且还可能增加加工和制造成本,因此会大大降低加工效率。加工。在本文中,研究了多晶立方氮化硼(PCBN)和涂层硬质合金刀具与可压缩空气对可生物降解蔬菜切削液的喷射方式结合压缩方式的使用对切削力,表面光洁度和刀尖温度的影响,大大降低了Inconel 783车削过程中切削液的消耗率。此外,通过这种方法探索了增加加工输入参数范围的可行性。结果表明,与涂覆的硬质合金刀具相比,使用PCBN刀具可以显着降低切削液的消耗率。这样可以显着增加加工输入参数。此外,在以喷射方式结合压缩空气和PCBN工具使用切削液来应用切削液时,通过热像仪监控加工区域的温度非常实用。这样做是为了控制加工过程和Inconel 783在此过程中的行为。 (C)2016 Elsevier Ltd.保留所有权利。

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