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Performance Evaluation of Cryogenically Treated Worn CBN Insert by Turning Process

机译:通过转动过程对低温处理的磨损CBN插入物的性能评估

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Machining of materials is to produce desired shape and size with smooth surfaces for the performance. Machining is carried out using various cutting tools starting from high speed steel to recently developed tools like CBN and PCBN inserts etc. These tools are used to machine difficult to cut materials like high strength alloy steels, stainless steel, Inconel 718, Titanium etc. The inserts used are disposed off or no longer used for finish machining. It can be used for rough machining where smooth surface is not important and subjected to subsequent machining using fresh inserts. The used inserts can be used subsequently by subjecting them cryogenic treatment at - 196? C in a closed chamber. It is a long process for more than 30 hours in a liquid nitrogen chamber. This treatment gives additional strength to cutting inserts to improve cutting ability and wear resistance. The components used in high strength applications like an aerospace, automobile industries are treated with cryogenic process to improve wear strength. The operating parameters are cutting speed, feed rate and constant depth of cut. In this research, CBN inserts after turning for 750 mm length was cryogenically treated and again used with same operating parameters as previous machining conditions. Each inserts were measured for flank wear by Scanning Electron Microscope (SEM) after treatment and re-used with same turning conditions as before. Performances of all inserts used were producing the same results or approximately similar results. The treated inserts were acts like as fresh cutting edges. The results showed that cryogenically processed CBN inserts performed very close to new cutting inserts.
机译:材料的加工是生产所需的形状和尺寸,具有平滑的表面,用于性能。使用从高速钢开始的各种切削工具进行加工,最近开发的工具如CBN和PCBN插入物等。这些工具用于难以切割高强度合金钢,不锈钢,818,钛等材料等材料。该工具使用的插入物放开或不再用于精加工加工。它可用于粗糙加工,其中光滑的表面并不重要,并使用新鲜插入物进行随后的加工。通过在196 - 196-196进行低温治疗后随后可以使用二手插入物? C在闭合室中。它是液氮室中超过30小时的长工艺。这种处理能够切割刀片以改善切割能力和耐磨性。在高强度应用中使用的部件,如航空航天,汽车行业采用低温工艺处理,以提高磨损强度。操作参数是切割速度,进给速率和恒定的切割深度。在该研究中,在低温处理的情况下,CBN插入长度在低温处理,并再次与以前的加工条件相同的操作参数使用。通过扫描电子显微镜(SEM)在处理后通过扫描电子显微镜(SEM)测量每个插入物,并重新使用与以前相同的转弯条件。所使用的所有插入物的性能正在产生相同的结果或大致相似的结果。处理过的插入物作为鲜切割边缘起作用。结果表明,低温处理的CBN插入物非常接近新切削刀片。

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