山东建筑大学学报
山東建築大學學報
산동건축대학학보
JOURNAL OF SHANDONG JIANZHU UNIVERSITY
2014年
6期
541-545,577
,共6页
磨削淬硬%工件变形%有限元分析
磨削淬硬%工件變形%有限元分析
마삭쉬경%공건변형%유한원분석
grinding hardening%workpiece deformation%FE analysis
磨削淬硬技术是以磨削力做功产生足够的热量,以达到奥氏体相变温度,工件表面需承受高温、磨削力和相变等的综合作用。文章基于磨削淬硬热力相变作用,进行了温度场有限元分析和结构分析,通过耦合有限元法计算了三种高度不同工件加载过程中不同时刻工件应力-应变分布及变形情况、工件内部应力—应变分布情况以及工件高度对工件变形的影响规律。结果表明:应力、应变集中在工件表层,在磨削弧区其值最大,越远离工件表面,应力、应变越小;相同加工参数下,工件越高,应力、应变集中区域所占工件体积比例越小,总体变形也较小。
磨削淬硬技術是以磨削力做功產生足夠的熱量,以達到奧氏體相變溫度,工件錶麵需承受高溫、磨削力和相變等的綜閤作用。文章基于磨削淬硬熱力相變作用,進行瞭溫度場有限元分析和結構分析,通過耦閤有限元法計算瞭三種高度不同工件加載過程中不同時刻工件應力-應變分佈及變形情況、工件內部應力—應變分佈情況以及工件高度對工件變形的影響規律。結果錶明:應力、應變集中在工件錶層,在磨削弧區其值最大,越遠離工件錶麵,應力、應變越小;相同加工參數下,工件越高,應力、應變集中區域所佔工件體積比例越小,總體變形也較小。
마삭쉬경기술시이마삭력주공산생족구적열량,이체도오씨체상변온도,공건표면수승수고온、마삭력화상변등적종합작용。문장기우마삭쉬경열력상변작용,진행료온도장유한원분석화결구분석,통과우합유한원법계산료삼충고도불동공건가재과정중불동시각공건응력-응변분포급변형정황、공건내부응력—응변분포정황이급공건고도대공건변형적영향규률。결과표명:응력、응변집중재공건표층,재마삭호구기치최대,월원리공건표면,응력、응변월소;상동가공삼수하,공건월고,응력、응변집중구역소점공건체적비례월소,총체변형야교소。
The grinding hardening technology needs grinding force to get enough heat to reach the austenitic temperature.The workpiece in grinding hardening withstands high temperature,grinding force and phase transition.Based on the combined effects of thermal phase transitions,the paper analyzes grinding temperature FE analysis and structural analysis.The paper uses thermo-mechanical coupling module to simulate the thermal deformation for surface grinding hardening of three kinds of workpiece sizes.The stress,strain and deformation in different loaded time are calculated out.The effect of wokrpiece height to grinding deformation is also included.The result is as follows:The stress and strain concentrated on the workpiece surface.The maximum stress and strain is in grinding contact arc.The further away from the surface,the less the stress and strain.The higher the workpiece is with same grinding parameter,the lower the ratio of strain-stress concentration is.