哈尔滨工程大学学报
哈爾濱工程大學學報
합이빈공정대학학보
JOURNAL OF HARBIN ENGINEERING UNIVERSITY
2013年
10期
1316-1320
,共5页
崔海%郭黎滨%张彬%陆喜文
崔海%郭黎濱%張彬%陸喜文
최해%곽려빈%장빈%륙희문
微细电火花线切割%表面形貌%干摩擦%摩擦性能
微細電火花線切割%錶麵形貌%榦摩抆%摩抆性能
미세전화화선절할%표면형모%간마찰%마찰성능
micro wire electrical discharge machining%surface morphology%dry friction%tribological properties
微细电火花线切割加工技术已经成为加工微小复杂三维零件的重要加工方法,但是,对加工表面的摩擦磨损性能的研究很少。采用小于35μJ的微能量进行微细电火花线切割加工,结合放电机理和热力学传递过程,综合研究了微细电火花线切割加工表面在干摩擦条件下的摩擦磨损性能,并与超精磨削加工表面在同种条件下进行对比。结果表明,由于微细电火花线切割加工表面微观形貌的固有特征,使得微凸起减小了摩擦接触面积,微凹坑的容纳作用减少了摩擦表面之间的磨粒存留量,温升形成的氧化膜降低了微凸起接触界面的抗剪强度,并且摩擦过程由二体摩擦转变为三体摩擦,从而降低了摩擦系数,有效地减少了磨粒磨损和粘着磨损,摩擦学性能优于超精磨削加工表面。
微細電火花線切割加工技術已經成為加工微小複雜三維零件的重要加工方法,但是,對加工錶麵的摩抆磨損性能的研究很少。採用小于35μJ的微能量進行微細電火花線切割加工,結閤放電機理和熱力學傳遞過程,綜閤研究瞭微細電火花線切割加工錶麵在榦摩抆條件下的摩抆磨損性能,併與超精磨削加工錶麵在同種條件下進行對比。結果錶明,由于微細電火花線切割加工錶麵微觀形貌的固有特徵,使得微凸起減小瞭摩抆接觸麵積,微凹坑的容納作用減少瞭摩抆錶麵之間的磨粒存留量,溫升形成的氧化膜降低瞭微凸起接觸界麵的抗剪彊度,併且摩抆過程由二體摩抆轉變為三體摩抆,從而降低瞭摩抆繫數,有效地減少瞭磨粒磨損和粘著磨損,摩抆學性能優于超精磨削加工錶麵。
미세전화화선절할가공기술이경성위가공미소복잡삼유령건적중요가공방법,단시,대가공표면적마찰마손성능적연구흔소。채용소우35μJ적미능량진행미세전화화선절할가공,결합방전궤리화열역학전체과정,종합연구료미세전화화선절할가공표면재간마찰조건하적마찰마손성능,병여초정마삭가공표면재동충조건하진행대비。결과표명,유우미세전화화선절할가공표면미관형모적고유특정,사득미철기감소료마찰접촉면적,미요갱적용납작용감소료마찰표면지간적마립존류량,온승형성적양화막강저료미철기접촉계면적항전강도,병차마찰과정유이체마찰전변위삼체마찰,종이강저료마찰계수,유효지감소료마립마손화점착마손,마찰학성능우우초정마삭가공표면。
The technique of micro wire electrical discharge machining ( Micro-WEDM ) has become an important method for the machining of 3D intricate micro parts. However, there is little research on tribological properties of the machining surface. In this paper, the micro energy of micro wire electrical discharge machining ( micro-WEDM) was lower than 35 μJ. With the discharge mechanism and the thermodynamic transfer process, the tribo-logical wear properties of micro-WEDM surface were investigated under dry friction conditions. In addition, the mi-cro-WEDM surface was compared with superfine grinding machining surface under the same conditions. Results show that, because the micro-WEDM surface has its own microstructure characteristics, the micro-projections re-duced the friction contact area. Due to the containing of micro-concave pits, the quantity of abrasive particles re-maining on the friction surface was reduced. The oxidation film formed by increase in temperature reduced the shear strength of micro-projections contact interfaces, and the friction process transformed from two-body friction to three-body friction, so to reduce the friction coefficient,the abrasive wear and the adhesive wear were reduced. Therefore, the tribological performance of the micro-WEDM surface is superior to the superfine grinding machining surface.