工程科学学报
工程科學學報
공정과학학보
Journal of University of Science and Technology Beijing
2015年
8期
1008-1016
,共9页
李日%周黎明%潘红%王健
李日%週黎明%潘紅%王健
리일%주려명%반홍%왕건
凝固%偏析%铸锭%氯化铵%水溶液%数值模拟
凝固%偏析%鑄錠%氯化銨%水溶液%數值模擬
응고%편석%주정%록화안%수용액%수치모의
solidification%segregation%ingots%ammonium chloride%aqueous solutions%numerical simulation
根据合金凝固理论和体积平均多相模型,对NH4 Cl-70%H2 O凝固过程进行了数值模拟和实验验证。虽然研究者已研究过NH4 Cl-70%H2 O凝固过程,但是只针对单个现象进行分析,比如通道偏析的形成、对流形式以及晶粒的形成。在前人研究的基础上,本文首次通过数值模拟和实验对比两种手段相结合的方式全面地研究了氯化铵水溶液凝固整个计算域的全部现象,尤其再现了等轴晶在铸锭中的下落漂移现象以及由此引起的对流,并且更深入地探究了偏析的形成原因。通过计算发现等轴晶从型壁处沉降并逐渐向铸型底部积聚,直到体积分数达到一临界值后,柱状晶停止生长,完成柱状晶向等轴晶转化过程。由于溶质再分配,底部晶粒集中的区域形成了负偏析,在尚未凝固的上部区域形成较大范围的正偏析。通过实验验证发现,等轴晶在铸锭中的下落漂移现象和对流形式的预测值与实验值较为一致,从而全面揭示出凝固过程中固相的移动和对流是产生宏观偏析的关键因素。
根據閤金凝固理論和體積平均多相模型,對NH4 Cl-70%H2 O凝固過程進行瞭數值模擬和實驗驗證。雖然研究者已研究過NH4 Cl-70%H2 O凝固過程,但是隻針對單箇現象進行分析,比如通道偏析的形成、對流形式以及晶粒的形成。在前人研究的基礎上,本文首次通過數值模擬和實驗對比兩種手段相結閤的方式全麵地研究瞭氯化銨水溶液凝固整箇計算域的全部現象,尤其再現瞭等軸晶在鑄錠中的下落漂移現象以及由此引起的對流,併且更深入地探究瞭偏析的形成原因。通過計算髮現等軸晶從型壁處沉降併逐漸嚮鑄型底部積聚,直到體積分數達到一臨界值後,柱狀晶停止生長,完成柱狀晶嚮等軸晶轉化過程。由于溶質再分配,底部晶粒集中的區域形成瞭負偏析,在尚未凝固的上部區域形成較大範圍的正偏析。通過實驗驗證髮現,等軸晶在鑄錠中的下落漂移現象和對流形式的預測值與實驗值較為一緻,從而全麵揭示齣凝固過程中固相的移動和對流是產生宏觀偏析的關鍵因素。
근거합금응고이론화체적평균다상모형,대NH4 Cl-70%H2 O응고과정진행료수치모의화실험험증。수연연구자이연구과NH4 Cl-70%H2 O응고과정,단시지침대단개현상진행분석,비여통도편석적형성、대류형식이급정립적형성。재전인연구적기출상,본문수차통과수치모의화실험대비량충수단상결합적방식전면지연구료록화안수용액응고정개계산역적전부현상,우기재현료등축정재주정중적하락표이현상이급유차인기적대류,병차경심입지탐구료편석적형성원인。통과계산발현등축정종형벽처침강병축점향주형저부적취,직도체적분수체도일림계치후,주상정정지생장,완성주상정향등축정전화과정。유우용질재분배,저부정립집중적구역형성료부편석,재상미응고적상부구역형성교대범위적정편석。통과실험험증발현,등축정재주정중적하락표이현상화대류형식적예측치여실험치교위일치,종이전면게시출응고과정중고상적이동화대류시산생굉관편석적관건인소。
The solidification process of NH4 Cl-70%H2 O ingots was simulated and experimentally investigated based on the solid-ification theory and a volume-averaged multiphase solidification method. Although the solidification process of NH4 Cl-70%H2 O ingots has been investigated previously, but these researches are mainly focused on the single phenomenon of the process such as the forma-tion of channel segregation, convection or the formation of grains. On the basis of fore-researches, combining numerical simulation with experiment, nearly all the phenomena occurring in the solidification process of the ingot were investigated in this paper, especially the equiaxed crystals’ floating and settling down on the bottom of the ingot, and the convection induced by such floating of equiaxed crystals which was reproduced by the simulation. Finally, the mechanism of the forming of macro-segregation was deeply discussed. The calculation showed that equiaxed grains floated down from the mold wall and tended to settle down on the bottom of the ingot. When the volume fraction of equiaxed grains accumulated up to a critical value, columnar grains would stop their growth, and so the columnar-to-equiaxed transition( CET) process was to the end. Owing to solute partitioning and the sedimentation of equiaxed grains, there was negative macro-segregation in triangle shape on the bottom of the ingot,while a wide range of positive macro-segregation was constructed on the upper part of the ingot. The calculated results are relatively conformed to the experimental ones in aspects of the sedimentation of equiaxed grains and the induced fluid convection, indicating that the key factors leading to macro-segregation are crys-tal sedimentation and fluid convection.