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配筋条件对补偿收缩混凝土变形性能的影响
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作者 汪彬 徐文 +1 位作者 张建业 田倩 《江苏建筑》 2013年第6期84-85,94,共3页
配筋条件是影响使用膨胀剂配制的补偿收缩混凝土性能发挥的关键因素之一。试验研究了一维条件下不同配筋率和约束条件时基准混凝土和补偿收缩混凝土限制体积变形发展规律。试验结果表明,随着配筋率的增大,约束条件的增强,基准混凝土和... 配筋条件是影响使用膨胀剂配制的补偿收缩混凝土性能发挥的关键因素之一。试验研究了一维条件下不同配筋率和约束条件时基准混凝土和补偿收缩混凝土限制体积变形发展规律。试验结果表明,随着配筋率的增大,约束条件的增强,基准混凝土和补偿收缩混凝土14d水养限制膨胀率增大,28d干养限制收缩率绝对值减小,前期膨胀与后期收缩间落差值同样减小。 展开更多
关键词 膨胀剂 配筋条件 限制体积变形 补偿收缩混凝土
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Numerical Analysis of Finite Deformation of Overbroken Rock Mass in Gob Area Based on Euler Model of Control Volume 被引量:10
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作者 LIU Wei-qun MIAO Xie-xing 《Journal of China University of Mining and Technology》 EI 2006年第3期245-248,共4页
The overbroken rock mass of gob areas is made up of broken and accumulated rock blocks compressed to some extent by the overlying strata. The beating pressure of the gob can directly affect the safety of mining fields... The overbroken rock mass of gob areas is made up of broken and accumulated rock blocks compressed to some extent by the overlying strata. The beating pressure of the gob can directly affect the safety of mining fields, formarion of road retained along the next goaf and seepage of water and methane through the gob. In this paper, the software RFPA'2000 is used to construct numerical models. Especially the Euler method of control volume is proposed to solve the simulation difficulty arising from plastically finite deformations. The results show that three characteristic regions occurred in the gob area: (1) a naturally accumulated region, 0-10 m away from unbroken surrounding rock walls, where the beating pressure is nearly zero; (2) an overcompacted region, 10-20 m away from unbroken walls, where the beating pressure results in the maximum value of the gob area; (3) a stable compaction region, more than 20 m away from unbroken walls and occupying absolutely most of the gob area, where the beating pressures show basically no differences. Such a characteristic can exolain the easy-seeoaged “O”-ring phenomena around mining fields very well. 展开更多
关键词 overbroken rock mass plastically finite deformation method of control volume bearing pressure
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