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Plasma Spray Forming

Plasma Spray Forming
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摘要 In the course of plasma spray, the plasma jet is comprehensively functioned by such effects as thermal pinch, magnetic pinch and mechanical compression and the flow is jetting at a high speed, the energy is concentrated and its center temperature is so high as to reach upwards of 15 000 ℃ which is capable of melting various kinds of materials inclusive of ceramic, it has a broad applied prospects in the fields of automobile, electronics, telecommunications, medical treatment, air navigation & space navigation and light industries etc because of being able to rapid fabricate thin-walled metals, ceramics and alloy parts thereof, metal moulds, functionally gradient material moulds and so on, and it has become a research spotlight for the scholars. The technology of plasma spray forming (PSF) is introduced, and the two different kinds of technique presented in this paper are studied. Some typical links in the course of technical process is also analyzed, including original prototype fabrication and surface treatment, post-treatment of formed workpiece and demoulding methods. When spraying, it should select the appropriate making methods of prototype according to the dimensions, shapes and forming accuracy as required by the formed parts. At the same time, it should be paid to the characteristic of the material for the prototype. The main purpose of surface treatment of the prototype is to raise the quality of formed parts and ensure the integrity demoulding of the coating. The method of the prototype’s surface treatment is closely related to the demoulding method, which is mainly comprised of destructive demoulding, non-destructive demoulding and composite demoulding, and is key technology in PSF. In order to eliminate these intrinsic defects and improve its performance, the fabricated parts can be given the necessary post-treatment so as to further raise the mechanical strength and surface quality. There are many methods for the post-treatment such as chemical reinforcment, metal melt-infiltration, laser-melting and self-propagating high-temperature synthesis, etc., all these methods can decrease the porosity and raise the quality of coating and service performance; whereas the finishing machining can improve the surface roughness of spray formed parts. In the course of spray forming, affected by such complex and complicated factors as electric field, the entangled ambient gas and introduced powder, as a result, it shall induce the instability of the spray condition and affect the forming quality. This paper has, on the basis of large quantity of experiments, analyzed every links in the course of PSF, summarized and evaluated the main factors affecting on the quality of formed parts, such as prototype characteristic, characteristic of plasma jet, powder characteristic, spray gun and spray parameters. The experiments prove that the process of PSF is simple and the cost is lower in rapid tooling with complex and complicated fine patterns, and PSF is apt to form special-shape and thin-walled parts made of some protective materials so as to protect those fragile workpieces. Therefore PSF is a new technology with broad and brilliant prospects of development. In the course of plasma spray, the plasma jet is comprehensively functioned by such effects as thermal pinch, magnetic pinch and mechanical compression and the flow is jetting at a high speed, the energy is concentrated and its center temperature is so high as to reach upwards of 15 000 ℃ which is capable of melting various kinds of materials inclusive of ceramic, it has a broad applied prospects in the fields of automobile, electronics, telecommunications, medical treatment, air navigation & space navigati...
出处 《厦门大学学报(自然科学版)》 CAS CSCD 北大核心 2002年第S1期33-34,共2页 Journal of Xiamen University:Natural Science
基金 ThisprojectissupportedbytheNationalNaturalScienceFoundationofChina (5 0 1 75 0 3 5,5 980 5 0 0 2 ) theNaturalScienceFundofFujianProvince ,aswellasFujianYouthInnovationFund (2 0 0 1J0 1 1 ) ,High technologyPlansFundrespectively
关键词 PLASMA spray forming forming technique plasma spray forming forming technique
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  • 1T.Osati,B.Abubakri.Inclusive Cross Section Production of J/ψ in LEP[J].Communications in Theoretical Physics,2017,67(2):212-216.
  • 2Neutron Inclusive Measurement in <sup>40</sup>Ar+<sup>nat</sup>Ag,<sup>209</sup>Bi Reactions at 25MeV/u[J].IMP & HIRFL Annual Report,1994(0):18-18.
  • 3LIU Xiang,ZHANG Fu,TAO Shunyan,CAO Yunzhen,XU Zengyu,LIU Yong,Noda N..Research and Development of Plasma Sprayed Tungsten Coating on Graphite and Copper Substrates[J].Southwestern Institute of Physics Annual Report,2006(1):156-158.
  • 4Jiang Huan-ging Chen Lin Institute of High Energy Physics,Chinese Academy of Sciences,Beijing 100039.N(1535)-Nucleus Potential From Inclusive η-Production Reactions[J].Chinese journal of nuclear physics,1995(3):189-193.
  • 5麦迪娜,M. N. Achasov,D. J. Ambrose,安芬芬,安琪,安正华,白景芝,班勇,J. Becker,N. Berger,M. Bertani,边渐鸣,E. Boger,O. Bondarenko,I. Boyko,R. A. Briere,V. Bytev,蔡啸,A. Calcaterra,曹国富,常劲帆,G. Chelkov,陈刚,陈和生,陈江川,陈玛丽,陈申见,陈晔,陈元柏,程和平,初元萍,D. Cronin-Hennessy,代洪亮,代建平,D. Dedovich,邓子艳,A. Denig,I. Denysenko,M. Destefanis,丁伟民,丁勇,董燎原,董明义,杜书先,方建,房双世,L. Fava,F. Feldbauer,封常青,R. B. Ferroli,傅成栋,傅金林,高原宁,耿聪,K. Goetzen,龚文煊,W. Gradl,M. Greco,顾旻皓,顾运厅,管颖慧,郭爱强,郭立波,郭玉萍,韩艳良,郝喜庆,F. A. Harris,何康林,何苗,何振亚,T. Held,衡月昆,侯治龙,胡海明,胡继峰,胡涛,黄彬,黄光明,黄金书,黄性涛,黄燕萍,T. Hussain,姬长胜,纪全,季晓斌,季筱璐,贾卢魁,姜丽丽,江晓山,焦健斌,焦铮,金大鹏,金山,景繁凡,N. Kalantar-Nayestanaki,M. Kavatsyuk,W. Kuehn,赖蔚,J. S. Lange,潘振声,李春花,李澄,李翠,李德民,李飞,李刚,李海波,李家才,李康,李蕾,李宁博,李秋菊,李绍莉,李卫东,李卫国,李晓玲,李小男,李学潜,李秀荣,李志兵,梁昊,梁勇飞,梁羽铁,廖广瑞,廖小涛,刘北江,C. L. Liu,刘春秀,刘春燕,刘福虎,刘芳,刘峰,刘虎,刘宏邦,刘汇慧,刘怀民,刘红薇,刘觉平,刘魁勇,刘凯,刘坤,刘佩莲,刘树彬,刘翔,刘晓海,刘勇,刘豫斌,刘振安,刘志强,刘智青,H. Loehner,鲁公儒,吕海江,吕军光,吕绮雯,吕晓睿,卢云鹏,罗成林,罗民兴,罗涛,罗小兰,吕蒙,马长利,马凤才,马海龙,马秋梅,马斯,马天,马晓妍,Y. Ma,F. E. Maas,M. Maggiora,Q. A. Malik,毛虎,冒亚军,毛泽普,J. G. Messchendorp,闵建,闵天觉,R. E. Mitchell,莫晓虎,C. Morales Morales,C. Motzko,N. Yu. Muchnoi,Y. Nefedov,宁洁,I. B. Nikolaev,宁哲,马鹏,欧阳群,S. Pacetti,卞正烷,M. Pelizaeus,彭海平,K. Peters,平加伦,平荣刚,R. Poling,E. Prencipe,C. S. J. Pun,祁鸣,钱森,乔从丰,秦小帅,秦瑶,秦中华,邱进发,K. H. Rashid,荣刚,阮向东,A. Sarantsev,B. D. Schaefer,J. Schulze,邵明,沈成平,沈肖雁,盛华义,M. R. Shepherd,宋新颖,S. Spataro,B. Spruck,孙德辉,孙功星,孙俊峰,孙胜森,孙晓东,孙勇杰,孙永昭,孙志嘉,孙振田,唐昌建,唐晓,E. H. Thorndike,田浩来,D. Toth,M. Ullrich,G. S. Varner,王斌,王博群,王科,王亮亮,王灵淑,王萌,王平,王佩良,王强,王庆娟,王思广,王雄飞,汪晓莲,王雅迪,王贻芳,王亚乾,王铮,王志刚,王至勇,魏代会,P. Weidenkaff,文群刚,文硕频,M. Werner,U. Wiedner,伍灵慧,吴宁,吴硕星,吴蔚,吴智,夏力钢,肖振军,谢宇广,修青磊,许国发,徐光明,徐昊,徐庆君,徐新平,徐晔,许志蕊,薛飞,薛镇,严亮,鄢文标,颜永红,杨洪勋,杨涛,杨迎,杨永栩,叶桦,叶梅,叶铭汉,俞伯祥,喻纯旭,俞洁晟,于帅鹏,苑长征,袁文龙,袁野,A. A. Zafar,A. Zallo,曾云,张丙新,张炳云,张长春,张达华,张宏浩,章红宇,张杰,张金国,张敬庆,张家文,张建勇,张景芝,张雷,张书华,张太锐,张晓杰,张学尧,张瑶,张银鸿,张艳硕,张子平,张振宇,赵光,赵海升,赵京伟,赵凯旋,赵雷,赵玲,赵明刚,赵强,赵书俊,赵天池,赵祥虎,赵豫斌,赵政国,A. Zhemchugov,郑建平,郑阳恒,郑志鹏,钟彬,J. Zhong,周莉,周晓康,周小蓉,朱程,朱凯,朱科军,朱世海,朱相雷,朱兴旺,朱亚敏,朱永生,朱自安,庄建,邹冰松,邹佳恒,左嘉旭.Determination of the number of J/ψ events with J/ψ → inclusive decays[J].Chinese Physics C,2012,36(10):915-925.
  • 6麦迪娜,M.N.Achasov,艾小聪,O.Albayrak,M.Albrecht,D.J.Ambrose,A.Amoroso,安芬芬,安琪,白景芝,R.Baldini Ferroli,班勇,D.W.Bennett,J.V.Bennett,M.Bertani,D.Bettoni,边渐鸣,F.Bianchi,E.Boger,I.Boyko,R.A.Briere,蔡浩,蔡啸,O.Cakir,A.Calcaterra,曹国富,S.A.Cetin,常劲帆,G.Chelkov,陈刚,陈和生,陈海云,陈江川,陈玛丽,陈申见,谌炫,陈旭荣,陈元柏,程和平,褚新坤,G.Cibinetto,代洪亮,代建平,A.Dbeyssi,D.Dedovich,邓子艳,A.Denig,I.Denysenko,M.Destefanis,F.De Mori,丁勇,董超,董静,董燎原,董明义,豆正磊,杜书先,段鹏飞,范荆州,方建,房双世,方馨,方易,R.Farinelli,L.Fava,O.Fedorov,F.Feldbauer,G.Felici,封常青,E.Fioravanti,M.Fritsch,傅成栋,高清,高鑫磊,高旭阳,高原宁,高榛,I.Garzia,K.Goetzen,龚丽,龚文煊,W.Gradl,M.Greco,顾旻皓,顾运厅,管颖慧,郭爱强,郭立波,郭玥,郭玉萍,Z.Haddadi,A.Hafner,韩爽,郝喜庆,F.A.Harris,何康林,T.Held,衡月昆,侯治龙,胡琛,胡海明,胡继峰,胡涛,胡誉,黄光顺,黄金书,黄性涛,黄勇,T.Hussain,纪全,姬清平,季晓斌,季筱璐,姜鲁文,江晓山,蒋兴雨,焦健斌,焦铮,金大鹏,金山,T.Johansson,A.Julin,N.Kalantar-Nayestanaki,康晓琳,康晓珅,M.Kavatsyuk,柯百谦,P.Kiese,R.Kliemt,B.Kloss,0.B.Kolcu,B.Kopf,M.Kornicer,A.Kupsc,W.Kuhn,J.S.Lange,M.Lara,P.Larin,C.Leng,李翠,李澄,李德民,李飞,李峰云,李刚,李海波,李家才,李瑾,李科,李康,李蕾,李培荣,李启云,李腾,李卫东,李卫国,李晓玲,李小男,李学潜,李志兵,梁昊,梁勇飞,梁羽铁,廖广睿,林德旭,刘北江,刘春秀,刘栋,刘福虎,刘芳,刘峰,刘宏邦,刘欢欢,刘慧慧,刘怀民,刘杰,刘建北,刘觉平,刘晶译,刘凯,刘魁勇,刘兰雕,刘佩莲,刘倩,刘树彬,刘翔,刘玉斌,刘振安,刘智青,H.Loehner,娄辛丑,吕海江,吕军光,卢宇,卢云鹏,罗成林,罗民兴,T.Luo,罗小兰,吕晓睿,马凤才,马海龙,马连良,马秋梅,马天,马旭宁,马骁妍,马玉明,F.E.Maas,M.Maggiora,冒亚军,毛泽普,S.Marcello,J.G.Messchendorp,闵建,闵天觉,R.E.Mitchell,莫晓虎,莫玉俊,C.Morales Morales,N.Yu.Muchnoi,H.Muramatsu,Y.Nefedov,F.Nerling,I.B.Nikolaev,宁哲,S.Nisar,牛顺利,牛讯伊,马鹏,欧阳群,S.Pacetti,潘越,P.Patteri,M.Pelizaeus,彭海平,K.Peters,J.Pettersson,平加伦,平荣刚,R.Poling,V.Prasad,漆红荣,祁鸣,钱森,乔从丰,秦丽清,覃拈,秦小帅,秦中华,邱进发,K.H.Rashid,C.F.Redmer,M.Ripka,荣刚,Ch.Rosner,阮向东,V.Santoro,A.Sarantsev,M.Savrie,K.Schoenning,S.Schumann,单葳,邵明,沈成平,沈培迅,沈肖雁,盛华义,宋维民,宋欣颖,S.Sosio,S.Spataro,孙功星,孙俊峰,孙胜森,孙勇杰,孙永昭,孙志嘉,孙振田,唐昌建,唐晓,I.Tapan,E.H.Thorndike,M.Tiemens,M.Ullrich,I.Uman,G.S.Varner,王斌,王滨龙,王东,王大勇,王科,王亮亮,王灵淑,王萌,王平,王佩良,王炜,王维平,王雄飞,王雅迪,王贻芳,王亚乾,王铮,王志刚,王志宏,王至勇,T.Weber,魏代会,P.Weidenkaff,文硕频,U.Wiedner,M.Wolke,伍灵慧,吴智,夏磊,夏力钢,夏宇,肖栋,肖浩,肖振军,谢宇广,修青磊,许国发,徐雷,徐庆君,徐庆年,徐新平,严亮,鄢文标,闫文成,颜永红,杨海军,杨洪勋,杨柳,杨永栩,叶梅,叶铭汉,殷俊昊,俞伯祥,喻纯旭,俞洁晟,苑长征,袁文龙,袁野,A.Yuncu,A.A.Zafar,A.Zallo,曾云,曾哲,张丙新,张炳云,张驰,张长春,张达华,张宏浩,章红宇,张佳佳,张杰磊,张敬庆,张家文,张建勇,张景芝,张坤,张磊,张学尧,张瑶,张银鸿,张宇宁,张亚腾,张宇,张正好,张子平,张振宇,赵光,赵京伟,赵静宜,赵京周,赵雷,赵玲,赵明刚,赵强,赵庆旺,赵书俊,赵天池,赵豫斌,赵政国,A.Zhemchugov,郑波,郑建平,郑文静,郑阳恒,钟彬,周莉,周详,周晓康,周小蓉,周兴玉,朱凯,朱科军,朱帅,朱世海,朱相雷,朱莹春,朱永生,朱自安,庄建,L.Zotti,邹冰松,邹佳恒.Determination of the number of J/ψ events with inclusive J/ψ decays[J].Chinese Physics C,2017,41(1):1-10.
  • 7边渐鸣,沈肖雁,李卫国.J/ψ Inclusive Photon Spectrum at BESⅢ[J].Chinese Physics Letters,2009,26(4):70-73.
  • 8Prospects of Scientii c Breakthroughs in Dark Matter Particle Detection and Related Research[J].Bulletin of the Chinese Academy of Sciences,2014,28(1):15-17.
  • 9王长斌,柳兆荣.ANALYSIS OF OSCILLATORY FLOW IN CONSIDERATION OF A PLASMA LAYER IN ARTERIAL STENOSES[J].Applied Mathematics and Mechanics(English Edition),1996,17(12):1127-1135.
  • 10Akbar TAYEBI,Mehdi RAFIE-RAD.S-curvature of isotropic Berwald metrics[J].Science China Mathematics,2008,51(12):2198-2204. 被引量:1

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