【正文】
況下,也能更進(jìn)一步的提高主軸的轉(zhuǎn)速,使機(jī)床的加工效率更高。同時(shí)也可以緩解機(jī)電主軸軸承的熱膨脹,提高軸承的使用壽命。 國(guó)產(chǎn)的數(shù)控機(jī)床電主軸的轉(zhuǎn)速一直未能提高,其中的主要原因就高轉(zhuǎn)速下的內(nèi)部散熱問題[29]。而采用熱管冷卻技術(shù),能有效的解決高速機(jī)電主軸領(lǐng)域的內(nèi)部散熱問題。參考文獻(xiàn)[1]柴田宗一等,機(jī)床譯叢,1982(1):33~36.[2]靳明聰,陳遠(yuǎn)國(guó).熱管及熱管換熱器.重慶:重慶大學(xué)出版社,1986.[3]Gaugler, ,“Heat Transfer Device”, . Patent 2350348 1942,12. Published 1944, 6[4]Grover, ., Cotter, . and Eerikson, ., “Structure of Very High Thermal Conductance”, phys. 1964, Vol. 35, No: 6, pp. 19901991[5]辛明道編,《熱管研究與應(yīng)用》,重慶大學(xué)科技情報(bào)室,1974,1.[6]重慶大學(xué)熱管科研組、中國(guó)科學(xué)技術(shù)情報(bào)研究所重慶分所編譯,《熱管基礎(chǔ)及其應(yīng)用》,科學(xué)技術(shù)文獻(xiàn)出版社重慶分社,1977.[7]辛明道等編譯,《熱管設(shè)計(jì)研究及工程應(yīng)用》,科學(xué)技術(shù)文獻(xiàn)出版社重慶分社,1981.[8][美],陳叔平譯,《熱管》,科學(xué)出版社,1975.[9][美],蔣章焰譯,《熱管理論與應(yīng)用》,科學(xué)出版社,1981.[10][英]、雷伊著,周海云譯,熱管[M].北京:國(guó)防工業(yè)出版社,1982.[11]雷亨順,《暖通空調(diào)中的熱管——應(yīng)用與制作》,中國(guó)建筑工業(yè)出版社,1979.[12]辛明道、陳遠(yuǎn)國(guó),“重慶大學(xué)的熱管研究”,重慶大學(xué)報(bào),1984,.[13]黃問盈,《熱管與熱管換熱器設(shè)計(jì)基礎(chǔ)》,中國(guó)鐵道出版社,1994.[14]黃問盈,馬步燧.熱管及其在蒸汽機(jī)車余熱問收中的應(yīng)用.鐵道機(jī)車車輛,1985(1.2):53~61.[15]]16]森田信—.熱管在電機(jī)上的應(yīng)用.楊華達(dá),吳益民譯.電機(jī)技術(shù),1982(3):30~33;1983(1):33~39.[17]方彬,白文彬.鍋爐和窯爐節(jié)能熱管換熱器.哈爾濱:哈爾濱工業(yè)大學(xué)出版社,1985.[18]吳克平.熱管換熱器進(jìn)展.能源技術(shù),1988(2):9~16.[19]With aqueous solution hydrogen peroxide as heat carrier under longterm service. Advances in Heat Pipe Scienceand . 8th Int. Heat Pipe Conf. 506. 1992[20]X. g. Shao, C. H. Sun and M. Mi. Study on Working Capability of Axially Grooved Heat Pipe with MultiEvaporators Advances in Heat Pipe Science and . 8th Int. Heat Pipe Conf. 291. 1992[21]V. L. Barantsevich and B. N. Ovchinnikov. The Heat Transfer Characteristic Improvement of the Axial Grooved Heat Pipes. Advances in Heat Pipe Science and Technology. Proc. 8th Int. Heat Pipe 344. 1992[22]K. Tasaka, R. Saeki, M. Kureta,etc. Dynamic TwoPhase FlowVisualizationina Thermosyphonwithan Inclined Adiabatic Section by Using Neutron Radiography. Advances in Heat Pipe Science and Technology. Proc. 8th Int. Heat Pipe Conf. 279. 1992[23],. Thermal Performances of R123 and R11 in an Internal Rectangular Grooved Gravity Assisted Heat Pipe for Use in Energy Recovery in Heat Pipe Science and Technology. Proc. 8thInt. Heat Pipe Conf. 334. 1992[24]Ha Manh Thu, BuiHai and Dang Quoc Phu. An Investigation of Grooved Gravitational Closed Thermosyphons. Advances in Heat Pipe Science and Technology. Proc. 8th Int. Heat Pipe Conf. . 379 384. 1992[25] I. A Zelenov, Y. A. Poskonin, V. N. Timofev, LowTemperature and/cryogenic Heat Pipes for the Space Controlled RadiatorEmitter. Advances in Heat Pipe Science and Technology. Proc. Pipe . pp. 657 660. 1992[26]R. M. Bayasan, Y. N. Shirikhin and s. Kh. and development of DoublephaseThermosiphon sand Gradient in Heat Pipe Science and . 8thInt. Heat Pipe . pp. 368 372. 1992[27] L. L. Vasiliev, D. K. Khrustalev,etc. HighEfficient Condensers with Capillary Channels. Advances in Heat Pipe Science and Pipe [28] M. Tamaki, K. Ohkubo, etc. Research and Development of Sodium Heat Pipes. Advances in Heat Pipe Science and Technology. Proc. 8th Pipe 274. 1992[29]興軍,楊淑啟,韓龍義.高速精密電主軸的研制. 機(jī)電工程技術(shù),2006,(6)