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Experimental investigation of turning AISI1045 steel using cryogenic carbon dioxide as the cutting fluid

机译:以低温二氧化碳为切削液车削AISI1045钢的实验研究

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摘要

The intensive temperatures in high speed machining not only limit the tool life but also impair the machined surface by inducing tensile residual stresses, microcracks and thermal damage. This problem can be handled largely by reducing the cutting temperature. When the conventional coolant is applied to the cutting zone, it fails to remove the extent of the heat effectively. Hence, a cryogenic coolant is highly recommended for this purpose. In this paper, an attempt has been made to use cryogenic carbon dioxide (CO_2) as the cutting fluid. Experimental investigations are carried out by turning AISI 1045 steel in which the efficiency of cryogenic CO_2 is compared to that of dry and wet machining with respect to cutting temperature, cutting forces, chip disposal and surface roughness. The experimental results show that the application of cryogenic CO_2 as the cutting fluid is an efficient coolant for the turning operation as it reduced the cutting temperature by 5%-22% when compared with conventional machining.It is also observed that the surface finish is improved to an appreciable amount in the finished work piece on the application of cryogenic CO_2. The surface finish is improved by 5%-25% in the cryogenic condition compared with wet machining.
机译:高速加工中的高温不仅会限制刀具寿命,还会通过引起拉伸残余应力,微裂纹和热损伤而损害加工表面。通过降低切割温度可以很大程度上解决该问题。当常规冷却剂应用于切割区域时,它不能有效地消除热量。因此,强烈建议为此使用低温冷却剂。在本文中,已经尝试使用低温二氧化碳(CO_2)作为切削液。通过旋转AISI 1045钢进行实验研究,其中在切削温度,切削力,切屑处理和表面粗糙度方面,将低温CO_2的效率与干式和湿式加工的效率进行了比较。实验结果表明,将低温CO_2用作切削液是车削的有效冷却剂,因为与传统机械加工相比,切削温度降低了5%-22%,并且还观察到了表面光洁度的提高低温CO_2的应用在成品中的含量可观。与湿加工相比,在低温条件下的表面光洁度提高了5%-25%。

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  • 来源
    《Journal of Manufacturing Processes 》 |2011年第2期| p.113-119| 共7页
  • 作者单位

    Department of Mechanical Engineering, CEG Campus. Anna University Chennai, Chennai-600 025, India;

    Department of Mechanical Engineering, CEG Campus. Anna University Chennai, Chennai-600 025, India;

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