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A comparative study on performance of CBN inserts when turning steel under dry and wet conditions

机译:在干湿条件下转动钢时CBN插入性能的比较研究

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Cutting fluids is the most unsustainable components of machining processes, it is negatively impacting on the environmental and additional energy required. Due to its high strength and corrosion resistance, the machinability of stainless steel has attracted considerable interest. This study aims to evaluate performance of cubic boron nitride (CBN) inserts for the machining parameters includes the power consumption and surface roughness. Due to the high single cutting-edge cost of CBN, the performance of significant is importance for hard finish turning. The present work also deals with a comparative study on power consumption and surface roughness under dry and flood conditions. Turning process of the stainless steel 316 was performed. A response surface methodology based box-behnken design (BBD) was utilized for statistical analysis. The optimum process parameters are determined as the overall performance index. The comparison study has been done between dry and wet stainless-steel cut in terms of minimum value of energy and surface roughness. The result shows the stainless still can be machined under dry condition with 18.57% improvement of power consumption and acceptable quality compare to the wet cutting. The CBN tools under dry cutting stainless steel can be used to reduce the environment impacts in terms of no cutting fluid use and less energy required which is effected in machining productivity and profit.
机译:切削液是加工过程中最不可持续的部件,它对所需的环境和额外的能量产生负面影响。由于其高强度和耐腐蚀性,不锈钢的可加工性引起了相当大的兴趣。本研究旨在评估用于加工参数的立方硼(CBN)插入物的性能,包括功耗和表面粗糙度。由于CBN的高单位尖端成本,显着的性能是硬结合转动的重要性。目前的工作还涉及干燥和洪水条件下的功耗和表面粗糙度的比较研究。进行不锈钢316的转动过程。基于响应表面方法的Bod-Behnken设计(BBD)用于统计分析。最佳过程参数被确定为整体性能指标。在最小能量和表面粗糙度方面,在干湿的不锈钢切割之间进行了比较研究。结果表明,不锈钢仍然可以在干燥条件下加工,功耗提高18.57%,可接受的质量与湿切割相比。干切削不锈钢下的CBN工具可用于减少在没有切削液的使用和所需的能量方面的环境影响,这在加工生产力和利润中实现。

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