Tamil Alagan Nageswaran, Beno Tomas, Hoier Philipp, Klement Uta, Wretland Anders
Department of Engineering Science, University West, SE-461 32 Trollhättan, Sweden.
Department of Industrial and Materials Science, Chalmers University of Technology, SE-412 96 Gothenburg, Sweden.
Materials (Basel). 2018 Apr 25;11(5):664. doi: 10.3390/ma11050664.
The critical problems faced during the machining process of heat resistant superalloys, (HRSA), is the concentration of heat in the cutting zone and the difficulty in dissipating it. The concentrated heat in the cutting zone has a negative influence on the tool life and surface quality of the machined surface, which in turn, contributes to higher manufacturing costs. This paper investigates improved heat dissipation from the cutting zone on the tool wear through surface features on the cutting tools. Firstly, the objective was to increase the available surface area in high temperature regions of the cutting tool. Secondly, multiple surface features were fabricated for the purpose of acting as channels in the rake face to create better access for the coolant to the proximity of the cutting edge. The purpose was thereby to improve the cooling of the cutting edge itself, which exhibits the highest temperature during machining. These modified inserts were experimentally investigated in face turning of Alloy 718 with high-pressure coolant. Overall results exhibited that surface featured inserts decreased flank wear, abrasion of the flank face, cutting edge deterioration and crater wear probably due to better heat dissipation from the cutting zone.
耐热超级合金(HRSA)加工过程中面临的关键问题是切削区热量集中且难以消散。切削区集中的热量会对刀具寿命和加工表面质量产生负面影响,进而导致制造成本升高。本文通过切削刀具的表面特征研究了切削区热量散发改善对刀具磨损的影响。首先,目标是增加切削刀具高温区域的有效表面积。其次,制造多个表面特征以用作前刀面中的通道,从而使冷却液更好地到达切削刃附近。目的是改善切削刃本身的冷却,切削刃在加工过程中温度最高。通过使用高压冷却液对718合金进行端面车削实验研究了这些改进的刀片。总体结果表明,具有表面特征的刀片减少了后刀面磨损、后刀面磨损、切削刃破损和月牙洼磨损,这可能是由于切削区热量散发更好所致。