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基于帽形冲击实验的Q&P钢冲击性能研究 被引量:1
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作者 叶又 邓璐璐 +1 位作者 连昌伟 刘树文 《锻压技术》 CAS CSCD 北大核心 2018年第6期172-179,共8页
冲击及吸能性能是高强钢在汽车安全中的重要特性,基于帽形冲击实验及仿真,对QP980、DP980和DP780钢的吸能特性及其规律性展开对比分析及研究。进行了厚度为1.6 mm的3种板料帽形试样碰撞实验,对碰撞实验进行了有限元仿真,通过比较相同冲... 冲击及吸能性能是高强钢在汽车安全中的重要特性,基于帽形冲击实验及仿真,对QP980、DP980和DP780钢的吸能特性及其规律性展开对比分析及研究。进行了厚度为1.6 mm的3种板料帽形试样碰撞实验,对碰撞实验进行了有限元仿真,通过比较相同冲击速度下实验与仿真中压溃力-时间曲线、最大压溃距离及变形模式,验证了仿真模型的准确性,并基于仿真模型,预测了不同初始碰撞能量情况下试样的变形模式及变形行为。通过实验及有限元仿真,分析比较了QP980、DP980、DP780的吸能特性及其规律性,结果发现QP980的冲击碰撞性能较好,且相同碰撞能量下,DP980与QP980的帽形件变形模式基本相同。 展开更多
关键词 Q&P钢 碰撞性能 帽形冲击实验 仿真分析 先进高强钢
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Shear localization behavior in hat-shaped specimen of near-αTi−6Al−2Zr−1Mo−1V titanium alloy loaded at high strain rate 被引量:4
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作者 Yu-xuan DU Xin-liang YANG +6 位作者 Zu-shu LI Fang HAO You-chuan MAO Shao-qiang LI Xiang-hong LIU Yong FENG Zhi-ming YAN 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2021年第6期1641-1655,共15页
The microstructure characteristics in early stage shear localization of near-αTi−6Al−2Zr−1Mo−1V titanium alloy were investigated by split Hopkinson pressure bar(SHPB)tests using hat-shaped specimens.The microstructur... The microstructure characteristics in early stage shear localization of near-αTi−6Al−2Zr−1Mo−1V titanium alloy were investigated by split Hopkinson pressure bar(SHPB)tests using hat-shaped specimens.The microstructural evolution and deformation mechanisms of hat-shaped specimens were revealed by electron backscattered diffraction(EBSD)method.It is found that the nucleation and expansion of adiabatic shear band(ASB)are affected by both geometric and structural factors.The increase of dislocation density,structure fragment and temperature rise in the deformation-affected regions provide basic microstructural conditions.In addition to the dislocation slips,the extension twins detected in shear region also play a critical role in microstructural fragmentation due to twin-boundaries effect.Interestingly,the sandwich structure imposes a crucial influence on ASB,which finally becomes a mature wide ASB in the dynamic deformation.However,due to much larger width,the sandwich structure in the middle of shear region is also possible to serve as favorable nucleation sites for crack initiation. 展开更多
关键词 Ti−6Al−2Zr−1Mo−1V alloy adiabatic shear band split Hopkinson pressure bar hat-shaped specimen sandwich structure
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