Devi C, Mahalingam Siva Kumar, Cep Robert, Kouril Karel
Department of Mechanical Engineering, Vel Tech Rangarajan Dr. Sagunthala R&D Institute of Science and Technology, Avadi 600062, India.
Department of Machining, Assembly and Engineering Metrology, Faculty of Mechanical Engineering, VSB-Technical University of Ostrava, 70800 Ostrava, Czech Republic.
Materials (Basel). 2023 Jun 30;16(13):4744. doi: 10.3390/ma16134744.
Custom 450 stainless steel is the most desirable material across industries due to its widespread application in the aerospace, defense and marine industries. Stainless-steel materials are challenging to deal with and fall into the list of hard-to-process materials due to their low heat conduction coefficient and high mechanical properties. In this research work, end milling was carried out on Custom 450 stainless steel machined using TiAlN coated with tungsten carbide inserts that have been cryo-treated (CT) for 24 h (24 h) and 36 h (36 h), as well as untreated (UT) inserts. The inserts were evaluated in terms of feed force, feed rate and consistent depth of cut (ap) at various spindle speeds (S). Also examined were the tool morphology, chip anatomy and surface morphology of cryo-treated material compared to untreated inserts at various responses to cutting force (Fx, Fy, Fz), cutting temperature (Tc), vibration and surface abrasion. For inserts that have been cryo-treated for 36 h, the feed force (Fx) value was 44% and 5% less compared to inserts treated for 24 h and in UT inserts, respectively. Furthermore, for 24-h and 36-h CT inserts, feed force (Fx) was 12% and 20% less compared to a UT insert. Using 24-h cryo-treated inserts as opposed to UT inserts significantly reduced the surface roughness by 20%. Cutting inserts that have undergone cryogenic treatment have been observed to exhibit longer cutting tool life due to less wear and friction on the cutting edges.
定制450不锈钢是各行业最理想的材料,因为它在航空航天、国防和海洋工业中有着广泛应用。不锈钢材料因其低导热系数和高机械性能而难以处理,属于难加工材料之列。在本研究工作中,对采用经24小时(24 h)和36小时(36 h)低温处理(CT)以及未处理(UT)的硬质合金刀片涂层TiAlN加工的定制450不锈钢进行了端铣削。根据不同主轴转速(S)下的进给力、进给速度和恒定切削深度(ap)对刀片进行了评估。还研究了与未处理刀片相比,在不同切削力(Fx、Fy、Fz)、切削温度(Tc)、振动和表面磨损响应下,低温处理材料的刀具形态、切屑形态和表面形态。对于经过36小时低温处理的刀片,与经过24小时处理的刀片和未处理刀片相比,进给力(Fx)值分别降低了44%和5%。此外,对于24小时和36小时低温处理的刀片,与未处理刀片相比,进给力(Fx)分别降低了12%和20%。与未处理刀片相比,使用经过24小时低温处理的刀片可显著降低表面粗糙度20%。由于切削刃上的磨损和摩擦较小,经过低温处理的切削刀片已被观察到具有更长的刀具寿命。