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硬铝合金半连续铸造过程数值模拟及裂纹倾向性研究
引用本文:刘自由,张海鹰,范四立,舒雨锋.硬铝合金半连续铸造过程数值模拟及裂纹倾向性研究[J].湖南城建高等专科学校学报,2011(4):23-28.
作者姓名:刘自由  张海鹰  范四立  舒雨锋
作者单位:[1]湖南城市学院土木工程学院,湖南益阳413000 [2]东莞职业技术学院,广东东莞523808
基金项目:湖南省科技厅科研基金资助项目(2011GK3110)
摘    要:对凝固过程中流场、应力场、温度场及微观组织形态进行数值模拟,能帮助工艺设计人员分析不同时刻凝固过程的温度分布、金属流态、结晶晶粒尺寸、应力分布等重要物理参数,从而预测疏松、偏析、夹杂及热裂纹等缺陷.在结晶器下方设置区域冷却装置,控制区域冷却装置刮水板的作用位置,能够阻挡冷却水沿铸锭下流,实现区域冷却的效果.通过研究温度场、应力场分布规律,分析铸锭裂纹产生的原理,能够从宏观上阐明铸锭内部裂纹的形成原因及寻找有效的调节控制方法.

关 键 词:硬铝合金  半连续铸造  温度场  应力场

Duralumin Alloy Half Continuous Casting Process Value Simulation and Crack Tendentiousness Research
LIU Zi-you,ZHANG Hai-ying,FAN Si-li,SHU Yu-feng.Duralumin Alloy Half Continuous Casting Process Value Simulation and Crack Tendentiousness Research[J].Journal of Hunan Urban Construction College,2011(4):23-28.
Authors:LIU Zi-you  ZHANG Hai-ying  FAN Si-li  SHU Yu-feng
Affiliation:1.College of Civil Engineering,Hunan City University,Yiyang,Hunan 413000,China;2.Dongguan Polytechnic Institute,Dongguan,Guangdong 523808,China)
Abstract:The solidification process in the flow field,the stress field,the temperature field and the microscopic organization shape carry on the value simulation,it can help the technological design personnel to analyze the different time solidification process the temperature distribution,the metal fluid state,the crystal crystal grain size,the stress distribution and so on.The important physical parameter,thus forecasts loose,flaws and so on segregation,mixture and heat crack.Establishes the region cooling system underneath the crystallizer,the controlled area cooling system blows water-wiper the function position,it can prevent the cooling water front ingot casting lower reaches,realizes effect which the region cools.Through the research temperature field,the stress field distribution rule,it analyzes the principle which the ingot casting crack produces,and it can expound macroscopically the ingot casting underbead crack formation reason and seeks the effective regulating control method..
Keywords:duralumin alloy  half continuous casting  temperature field  stress field
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