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膜式燃气表的温度补偿研究 被引量:6
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作者 赵会平 崔浩 《科技与创新》 2017年第16期78-79,共2页
天然气作为一种清洁能源已进入人们的生活,随着我国不断加大城市燃气管网的建设,我国的天然气用户数大幅度提升。天然气用户通过安装的膜式燃气表计量使用燃气的量,燃气公司依据燃气表计量的数值进行燃气贸易结算,因此,膜式燃气表的准... 天然气作为一种清洁能源已进入人们的生活,随着我国不断加大城市燃气管网的建设,我国的天然气用户数大幅度提升。天然气用户通过安装的膜式燃气表计量使用燃气的量,燃气公司依据燃气表计量的数值进行燃气贸易结算,因此,膜式燃气表的准确度成为了燃气供需双方关注的焦点。分析了温度对膜式燃气表计量误差的影响,探讨了温度补偿方法以及电子式膜式燃气表温度补偿原理,提出了具有温度补偿功能的燃气表方案,以维护天然气公司和广大天然气用户的切身利益,实现公平交易。 展开更多
关键词 膜式燃气表 温度补偿 介质温差 环境温度
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5A06-O aluminium−magnesium alloy sheet warm hydroforming and optimization of process parameters 被引量:5
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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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