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循环荷载下路基压实粉土的临界应力与应变水平 被引量:9
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作者 肖军华 《水文地质工程地质》 CAS CSCD 北大核心 2010年第5期61-66,共6页
通过动三轴试验,分析了不同压实系数、不同含水率和不同动应力水平条件下路基压实粉土的累积塑性变形特征、影响因素及演化规律,界定了循环荷载作用下路基压实粉土的临界动应力和动(回弹)应变水平。试验表明,路基压实粉土的临界动应力... 通过动三轴试验,分析了不同压实系数、不同含水率和不同动应力水平条件下路基压实粉土的累积塑性变形特征、影响因素及演化规律,界定了循环荷载作用下路基压实粉土的临界动应力和动(回弹)应变水平。试验表明,路基压实粉土的临界动应力和动应变水平随压实系数增加而增大,试样含水率越低,变化速率越大;同时随含水率增加而降低,且含水率越高,降低速率越大。此外,还随静强度增加近似线性增大,回归分析得到比例系数分别为0.5204和0.0007。 展开更多
关键词 循环荷载 路基 粉土 临界应力 临界动应变
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Model of critical strain for dynamic recrystallization in 10%TiC/Cu-Al_2O_3 composite 被引量:4
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作者 杨志强 刘勇 +1 位作者 田保红 张毅 《Journal of Central South University》 SCIE EI CAS 2014年第11期4059-4065,共7页
Using the Gleeble-1500 D simulator, the hot deformation behavior and dynamic recrystallization critical conditions of the 10%Ti C/Cu-Al2O3(volume fraction) composite were investigated by compression tests at the tempe... Using the Gleeble-1500 D simulator, the hot deformation behavior and dynamic recrystallization critical conditions of the 10%Ti C/Cu-Al2O3(volume fraction) composite were investigated by compression tests at the temperatures from 450 °C to 850 °C with the strain rates from 0.001 s-1 to 1 s-1. The results show that the softening mechanism of the dynamic recrystallization is a feature of high-temperature flow true stress-strain curves of the composite, and the peak stress increases with the decreasing deformation temperature or the increasing strain rate. The thermal deformation activation energy was calculated as 170.732 k J/mol and the constitutive equation was established. The inflection point in the lnθ-ε curve appears and the minimum value of-(lnθ)/ε-ε curve is presented when the critical state is attained for this composite. The critical strain increases with the increasing strain rate or the decreasing deformation temperature. There is linear relationship between critical strain and peak strain, i.e., εc=0.572εp. The predicting model of critical strain is described by the function of εc=1.062×10-2Z0.0826. 展开更多
关键词 10%Ti C/Cu-Al2O3 composite hot deformation constitutive equation dynamic recrystallization critical condition
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