Iqbal Asif, Zhao Guolong, Suhaimi Hazwani, Nauman Malik Muhammad, He Ning, Zaini Juliana, Zhao Wei
Faculty of Integrated Technologies, Universiti Brunei Darussalam, Jalan Tungku Link, Gadong BE 1410, Brunei.
Department of Manufacturing & Automation, College of Mechanical & Electrical Engineering, Nanjing University of Aeronautics and Astronautics, 29-Yu Dao Street, Nanjing 210016, China.
Materials (Basel). 2021 Jun 21;14(12):3429. doi: 10.3390/ma14123429.
Application of cryogenic fluids for efficient heat dissipation is gradually becoming part and parcel of titanium machining. Not much research is done to establish the minimum quantity of a cryogenic fluid required to sustain a machining process with respect to a given material removal rate. This article presents an experimental investigation for quantifying the sustainability of milling a commonly used titanium alloy (Ti-6Al-4V) by varying mass flow rates of two kinds of cryogenic coolants at various levels of cutting speed. The three cooling options tested are dry (no coolant), evaporative cryogenic coolant (liquid nitrogen), and throttle cryogenic coolant (compressed carbon dioxide gas). The milling sustainability is quantified in terms of the following metrics: tool damage, fluid cost, specific cutting energy, work surface roughness, and productivity. Dry milling carried out the at the highest level of cutting speed yielded the worst results regarding tool damage and surface roughness. Likewise, the evaporative coolant applied with the highest flow rate and at the lowest cutting speed was the worst performer with respect to energy consumption. From a holistic perspective, the throttle cryogenic coolant applied at the highest levels of mass flow rate and cutting speed stood out to be the most sustainable option.
应用低温流体实现高效散热正逐渐成为钛加工不可或缺的一部分。关于在给定材料去除率的情况下维持加工过程所需的低温流体最小量,目前尚未开展太多研究。本文进行了一项实验研究,通过在不同切削速度水平下改变两种低温冷却液的质量流量,来量化铣削一种常用钛合金(Ti-6Al-4V)的可持续性。测试的三种冷却方式分别是干式(无冷却液)、蒸发式低温冷却液(液氮)和节流式低温冷却液(压缩二氧化碳气体)。铣削可持续性通过以下指标进行量化:刀具损坏、流体成本、比切削能、工件表面粗糙度和生产率。在最高切削速度下进行的干式铣削在刀具损坏和表面粗糙度方面产生了最差的结果。同样,以最高流量和最低切削速度应用的蒸发式冷却液在能耗方面表现最差。从整体角度来看,在最高质量流量和切削速度水平下应用的节流式低温冷却液是最具可持续性的选择。