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Al-4.6Zn-2.58Mg合金热变形工艺研究
引用本文:王贵福.Al-4.6Zn-2.58Mg合金热变形工艺研究[J].轻合金加工技术,2011,39(9).
作者姓名:王贵福
作者单位:东北轻合金有限责任公司,黑龙江哈尔滨,150060
摘    要:在工业化生产条件下,采用半连续铸造、自由锻造、固溶和时效处理技术制备A l-4.6Zn-2.58Mg合金锻件。采用热加工模拟方法优化该合金的热加工工艺。试验结果表明:该合金高温压缩变形时的流变应力随变形温度的升高而减小,随变形速率的提高而增大。合金在420℃以下热变形,热变形组织主要为动态回复组织;在420℃以上热变形,热变形组织有动态再结晶发生。在400℃~420℃之间热压缩变形,变形抗力比较小;380℃~420℃时铸态塑性最好。该合金较适宜的热加工温度范围为400℃~420℃。

关 键 词:Al-4.6Zn-2.58Mg合金  热模拟  热塑性  工业化生产  

Study on forging technology of Al-4.6Zn-2.58Mg aluminum alloy
WANG Gui-fu.Study on forging technology of Al-4.6Zn-2.58Mg aluminum alloy[J].Light Alloy Fabrication Technology,2011,39(9).
Authors:WANG Gui-fu
Affiliation:WANG Gui-fu (Northeast light alloy Co.Ltd.,Harbin 150060,China)
Abstract:The Al-4.6Zn-2.58Mg alloy forgings have been prepared by processes of semi-continuous casting,free forging,solid solution and aging heat treatment at industry production condition.Thermal processing technology has been optimized by using of thermal processing simulation method.The results show that,at high temperature compressing deformation condition,the deformation flow stress of Al-4.6Zn-2.58Mg aluminum alloy decreases with deformation temperature increasing,and the stress increases with strain rate incr...
Keywords:Al-4  6Zn-2  58Mg alloy  thermal processing simulation  thermal plasticity  industry production  
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