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智慧灯杆高强轻量化方案设计与分析
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作者 陶琳 祝愿 孙萌 《宝钢技术》 CAS 2023年第6期57-60,共4页
对某城市主干道某型号智慧灯杆进行高强轻量化设计,在保证承载的情况下,整体轻量化率21%,可以降低综合成本。运用有限元仿真分析方法对灯杆在外荷载作用下进行刚度、强度和稳定性分析。结果表明:灯杆在外荷载作用下最大位移为287 mm,最... 对某城市主干道某型号智慧灯杆进行高强轻量化设计,在保证承载的情况下,整体轻量化率21%,可以降低综合成本。运用有限元仿真分析方法对灯杆在外荷载作用下进行刚度、强度和稳定性分析。结果表明:灯杆在外荷载作用下最大位移为287 mm,最大应力为556 MPa,第一阶屈曲特征值为8.1,高强轻量化方案满足标准要求。 展开更多
关键词 智慧灯杆 高强轻量化 刚度 强度
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Simulation about hot stamping of ultra-high strength steel on the basis of lightweight technology
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作者 Liu Qiang Ma Fangwu +5 位作者 Wang Xiaona Yao Zaiqi Song Wei Zhao Fuquan Ma Mingtu Song Leifeng 《Engineering Sciences》 EI 2012年第6期67-70,共4页
With the development of automobile lightweight,it is very necessary to apply the ultra-high strength steel parts manufactured by hot stamping,which offers the possibility to reduce the weight of automobiles and mainta... With the development of automobile lightweight,it is very necessary to apply the ultra-high strength steel parts manufactured by hot stamping,which offers the possibility to reduce the weight of automobiles and maintain the safety requirement.In order to complete hot stamping,it is important to design the structure of parts reasonably,which is related with reasonable matching of strength.The objective of this paper is to guide the design of parts manufactured by hot stamping and find the forming technical requirements of vehicle performance.Through experiments,the paper obtains the stress and strain curves at different deformation temperatures and strain rates.Based on experimental data, the constitutive relationship model is established which can reflect the deformation capacity of ultra-high strength steel during the process of hot stamping.Combined with finite element simulation results of hot stamping by commercial software AUTOFORM,transfer path of load and matching law of strength,the paper determines the design criteria and forming technical requirements of parts manufactured by hot stamping.At the same time,the impact performance of front cross member internal plate is taken into consideration. 展开更多
关键词 ultra-high strength steel hot stamping finite element simulation lightweight technology
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