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气体作冷却润滑剂的绿色切削试验
引用本文:张悦,孙泰礼,由颖,李启东,吴博,韦茵,韩荣第.气体作冷却润滑剂的绿色切削试验[J].沈阳工业大学学报,2010,32(3):306-310.
作者姓名:张悦  孙泰礼  由颖  李启东  吴博  韦茵  韩荣第
作者单位:1 沈阳工业大学 a 机械工程学院, b 材料科学与工程学院, c 基础教育学院, 沈阳 110870; 2. 沈阳东华同方电子科技有限公司, 沈阳 110023; 3. 哈尔滨工业大学 机电工程学院, 哈尔滨 150001
摘    要:为实现绿色切削,研究了无污染、无危害的冷却润滑技术.采用氮气、氧气、二氧化碳气、氩气及过热水蒸气作冷却润滑剂,进行了单因素切削试验.试验结果表明,这些气体冷却润滑剂可以减小切削变形、切削力,降低切削温度,改善加工表面形貌.根据试验结果和冷却润滑作用机理分析可知,气体在切削中具有一定的冷却润滑作用,同时具有来源广泛、无毒害和污染、不用回收处理等绿色特点,故气体具备绿色切削的潜力.

关 键 词:绿色切削  冷却  润滑  氮气  氧气  二氧化碳气  氩气  过热水蒸气  毛细管模型  

Green cutting experiment with gases as coolant and lubricant
ZHANG Yue,SUN Tai li,YOU Ying,LI Qi dong,WU Bo,WEI Yin,HAN Rong di.Green cutting experiment with gases as coolant and lubricant[J].Journal of Shenyang University of Technology,2010,32(3):306-310.
Authors:ZHANG Yue  SUN Tai li  YOU Ying  LI Qi dong  WU Bo  WEI Yin  HAN Rong di
Affiliation:1a. School of Mechanical Engineering, b School of Materials Science and Engineering, c Fundamental Education College, Shenyang University of Technology, Shenyang 110870, China; 2. Shenyang Donghua Tongfang Electronic Technology Co. Ltd., Shenyang 110023, China; 3. School of Mechanical and Electrical Engineering, Harbin Institute of Technology, Harbin 150001, China
Abstract:In order to realize green cutting, the cooling and lubricating technology without any harm and pollution was investigated. The single factor cutting experiments were carried out with nitrogen, oxygen, argon, carbon dioxide and overheated steam as coolant and lubricant. The experimental results show that all gas coolant and lubricant can reduce the cutting force, deformation and temperature, and improve the machined surface morphology. It is known by the experimental results and the cooling and lubricating mechanism that the gases have certain cooling and lubricating effect in cutting process. Due to their characters such as the wide source, innocuity, non pollution and no recycle disposal, the gases have the potential in green cutting.
Keywords:green cutting  cooling  lubricating  nitrogen  oxygen  carbon dioxide  argon  overheated steam  capillary model  
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