[1]GVINIASHVILI V K, WOOLLEY N H, ROWE W B. Useful coolant flowrate in grinding[J]. International Journal of Machine Tools and Manufacture, 2004, 44(6): 629-636.
[2]AURICH J C, KIRSCH B. Improved coolant supply through slotted grinding wheel[J]. CIRP Annals-Manufacturing Technology, 2013, 62(1): 363-366.
[3]霍文国,徐九华,傅玉灿,等. 自润滑金属结合剂CBN砂轮干式磨削特性分析[J]. 中国机械工程,2012,23(23): 2773-2777.
HUO Wenguo, XU Jiuhua, FU Yucan, et al. Characteristic analysis of self-lubricantion metal bonded CBN wheel during dry grinding[J]. China Mechanical Engineering, 2012, 23(23): 2773-2777.
[4]PAL B, CHATTOPADHYAY A K, CHATTOPADHYAY A B. Development and performance evaluation of monolayer brazed cBN grinding wheel on bearing steel[J]. International Journal of Advanced Manufacturing Technology, 2010, 48(9-12): 935-944.
[5]LIANG L, QUAN Y M, KE Z Y. Investigation of tool-chip interface temperature in dry turning assisted by heat pipe cooling[J]. International Journal of Advanced Manufacturing Technology, 2011, 54(1-4): 35-43.
[6]马可. 基于热管技术的磨削弧区强化换热基础研究[D]. 南京: 南京航空航天大学机电学院,2011.
[7]赫青山,傅玉灿,徐鸿钧,等. TC4钛合金高效磨削加工用环形热管砂轮的研制[J]. 航空学报,2013,34(7): 1740-1747.
HE Qingshan, FU Yucan, XU Hongjun, et al. Development of annular heat pipe grinding wheel for high efficiency machining of TC4 titanium alloy[J]. Acta Aeronautica et Astronautica Sinica, 2013, 34(7): 1740-1747.
[8]HE Q S, FU Y C, XU H J, et al. Investigation of a heat pipe cooling system in high-efficiency grinding[J]. International Journal of Advanced Manufacturing Technology, 2014, 70(5/8): 833-842. |