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夹层热钢化玻璃裂纹形态表征及开裂后力学行为 被引量:2
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作者 王星尔 杨健 王翰坤 《硅酸盐学报》 EI CAS CSCD 北大核心 2019年第8期1039-1046,共8页
首先对随机分布的热钢化玻璃裂纹形态的表征方法进行研究,基于碎片面数、体积、球度参数的数据统计参数对裂纹形态分布特征进行控制,并采用Voronoi分布方法对裂纹形态进行表征。其次,引入组合有限离散元法来建立处于开裂后状态的夹层玻... 首先对随机分布的热钢化玻璃裂纹形态的表征方法进行研究,基于碎片面数、体积、球度参数的数据统计参数对裂纹形态分布特征进行控制,并采用Voronoi分布方法对裂纹形态进行表征。其次,引入组合有限离散元法来建立处于开裂后状态的夹层玻璃数值模型,并对开裂层碎片的Voronoi分布进行重构,结合试验结果研究热钢化玻璃碎片间嵌合作用及其关键参数对夹层玻璃后续力学行为的影响。结果表明:仅考虑碎片间的摩擦作用将显著低估夹层玻璃开裂后刚度,碎片间残余应变能和厚度方向上的不规则形态使碎片间相互作用仍然较强,宜用弱化的内聚模型来描述。通过内聚模型关键参数的迭代分析,建立了可较好预测夹层玻璃开裂后行为的组合有限离散元模型,并确定了关键参数对开裂后行为的作用规律。 展开更多
关键词 热钢化玻璃 裂纹形态 开裂后行为 Voronoi分布
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Post-fire Behavior of Ordinary Concrete Reinforced with Short Steel Fibers
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作者 Augusto Cesar da Silva Bezerra Elaine Carbalho Siqueira Correa +1 位作者 Maria Teresa Paulino Aguilar Paulo Roberto Cetlin 《Journal of Civil Engineering and Architecture》 2015年第3期262-267,共6页
Concrete is a widely used material in civil construction and may be submitted to high working temperatures under various circumstances. Many factors influence the behavior of this material at high temperatures, which ... Concrete is a widely used material in civil construction and may be submitted to high working temperatures under various circumstances. Many factors influence the behavior of this material at high temperatures, which usually leads to the evaporation of the hydrated cement. The dehydrated cement undergoes a contraction, simultaneously with the thermal expansion of the inert fraction of the material. As a consequence of these conflicting expansions and contractions, the material cracks and its strength and modulus of elasticity decrease significantly. On the other hand, the addition of short metallic fibers to the material increases its toughness, probably due to its action on the cracking behavior of the composite. It is thus expected that a concrete containing metallic fibers should maintain its original properties even after exposure to elevated temperatures. This paper presents an evaluation of the influence of steel fibers on the microstructure and toughness of concretes submitted to high tenaperatures. The bending behavior, under strain rate control, of concretes with a strength of 30 MPa and containing short steel fibers, submitted to a previous treatment at 500 ℃, was analyzed. It was observed that, after both heat treatments, the addition of metallic fibers to concrete was able to maintain the pseudo-ductility and load-carrying capacity of this composite material. 展开更多
关键词 Steel fibers MICROSTRUCTURE CONCRETE temperature.
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