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06级加气混凝土砌块的生产 被引量:2
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作者 李伏林 焦宝祥 《粉煤灰综合利用》 CAS 2002年第1期13-14,共2页
06级加气砼砌块生产技术较为成熟 ,但因各厂在生产工艺和原材料方面的差异 ,故生产中仍会出现质量问题。本文结合实际生产情况 ,总结了 0 6级加气砼砌块生产经验 。
关键词 加气混凝土砌块 充温温度 浇注温度 坍落度
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5A06-O aluminium−magnesium alloy sheet warm hydroforming and optimization of process parameters 被引量:6
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作者 Zhi-hui JIAO Li-hui LANG Xiang-ni ZHAO 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2021年第10期2939-2948,共10页
The uniaxial tensile test of the 5A06-O aluminium−magnesium(Al−Mg)alloy sheet was performed in the temperature range of 20−300℃ to obtain the true stress−true strain curves at different temperatures and strain rates.... The uniaxial tensile test of the 5A06-O aluminium−magnesium(Al−Mg)alloy sheet was performed in the temperature range of 20−300℃ to obtain the true stress−true strain curves at different temperatures and strain rates.The constitutive model of 5A06-O Al−Mg alloy sheet with the temperature range from 150 to 300℃ was established.Based on the test results,a unique finite element simulation platform for warm hydroforming of 5A06-O Al−Mg alloy was set up using the general finite element software MSC.Marc to simulate warm hydroforming of classic specimen,and a coupled thermo-mechanical finite element model for warm hydroforming of cylindrical cup was built up.Combined with the experiment,the influence of the temperature field distribution and loading conditions on the sheet formability was studied.The results show that the non-isothermal temperature distribution conditions can significantly improve the forming performance of the material.As the temperature increases,the impact of the punching speed on the forming becomes particularly obvious;the optimal values of the fluid pressure and blank holder force required for forming are reduced. 展开更多
关键词 Al−Mg alloy constitutive model warm hydroforming finite element analysis non-isothermal temperature field
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