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钢筋混凝土剪力墙扭转行为的试验研究 被引量:2
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作者 彭晓宁 黄玉龙 吴波 《华南地震》 2008年第2期125-134,共10页
通过对4个1/2缩尺的钢筋混凝土剪力墙的静力加载试验,探讨了不同截面尺寸及配筋率对剪力墙抗扭强度、扭转变形、破坏形态及裂缝发展的影响。试验揭示了三种扭转破坏形态:少筋破坏、部分超筋破坏及超筋破坏。通过理论值与实验值的比较发... 通过对4个1/2缩尺的钢筋混凝土剪力墙的静力加载试验,探讨了不同截面尺寸及配筋率对剪力墙抗扭强度、扭转变形、破坏形态及裂缝发展的影响。试验揭示了三种扭转破坏形态:少筋破坏、部分超筋破坏及超筋破坏。通过理论值与实验值的比较发现,斜弯理论(经PCA①试验修正)能够很好的预测墙的开裂扭矩及开裂扭转角。另外,通过对试验所得的全变形曲线与软化桁架模型(Softened Truss Model)的预测变形曲线进行比较,发现基于梁单元扭转机理的软化桁架模型可以较合理地预测墙的最大扭转值及对应的扭转角,但不能较好地模拟实验曲线中的下降段。 展开更多
关键词 剪力墙的扭转 扭转试验 最大扭矩 扭转 软化桁架模型 扭矩-转角曲线
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脊骨梁桥——城市立交的新桥型 被引量:3
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作者 余顺新 《公路工程》 1996年第3期21-26,共6页
结合中新苏州工业园区互通式立体交叉匝道跨线桥施工图设计实践,简要介绍了国外城市立交桥中应用较为广泛的一种新桥型——脊骨梁桥的构造特点。
关键词 脊骨梁桥 翼板 空腹式 结构畸变 扭转剪力 滞交 叉索
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Analysis of complete plasticity assumption for solid circular shaft under pure torsion and calculation of shear stress 被引量:1
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作者 刘光连 黄明辉 +2 位作者 谭青 李显方 刘振 《Journal of Central South University》 SCIE EI CAS 2011年第4期1018-1023,共6页
The distribution of shear stress on the cross-section of plastic metal solid circular shaft under pure torsion yielding, the applicability of complete plastic model assumption and the shear stress formula were researc... The distribution of shear stress on the cross-section of plastic metal solid circular shaft under pure torsion yielding, the applicability of complete plastic model assumption and the shear stress formula were researched. Based on the shear stress formula of circular shaft under pure torsion in elastic stage, the formula of torque in elastic stage and the definition of yield, it is obtained that the yielding stage of plastic metal shaft under pure torsion is only a surface phenomenon of torque-torsion angle relationship, and the distribution of shear stress is essentially different from that of tensile stress when yielding under uniaxial tension. The pure torsion platform-torsion angle and the shape of torque-torsion angle curve cannot change the distribution of shear stress on the shaft cross-section. The distribution of shear stress is still linear with the maximum shear stress ts. The complete plasticity model assumption is not in accordance with the actual situation of shaft under torsion. The experimental strength data of nine plastic metals are consistent with the calculated results of the new limiting strain energy strength theory (LSEST). The traditional yield stress formula for plastic shaft under torsion is reasonable. The shear stress formula based on the plane assumption in material mechanics is applicable for all loaded stages of torsion shaft. 展开更多
关键词 pure torsion YIELD complete plastic model assumption shear stress calculation limiting strain energy strength theory
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