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轻细骨料内养护混凝土抗压强度与模拟 被引量:5
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作者 向亚平 魏亚 +1 位作者 张倩倩 王栋民 《混凝土》 CAS CSCD 北大核心 2013年第3期44-47,51,共5页
研究了2种饱水轻细骨料(粉煤灰陶砂和页岩陶砂)各自等体积取代不同普通砂时对水灰比0.3和0.4混凝土28d抗压强度影响。试验表明:取代砂体积为0-60%时,随着轻细骨料掺量增加,水灰比0_3两种轻细骨料混凝土28d抗压强度都高于普通混... 研究了2种饱水轻细骨料(粉煤灰陶砂和页岩陶砂)各自等体积取代不同普通砂时对水灰比0.3和0.4混凝土28d抗压强度影响。试验表明:取代砂体积为0-60%时,随着轻细骨料掺量增加,水灰比0_3两种轻细骨料混凝土28d抗压强度都高于普通混凝土,且都在40%时达到最高;取代砂体积0-40%时,水灰比0.4两种轻细骨料混凝土28d抗压强度随轻骨料掺量增加而减小。当水灰比和取代砂体积相同时,掺粉煤灰陶砂混凝土28d抗压强度都要高于掺页岩陶砂混凝土。对含有轻细骨料混凝土的抗压强度进行理论模拟,为此提出了混凝土中轻骨料体积-孔隙率转换系数.γ(0.1),结合强度孔隙率模型、Powers模型和内养护浆体模型计算了轻细骨料内养护混凝土28d抗压强度,模拟结果与试验值较为吻合。 展开更多
关键词 轻细骨料 混凝土 内养护 抗压强度模拟
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硅酸钙-磷酸盐复合骨水泥的制备及其性能研究 被引量:6
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作者 王志强 胡继林 +2 位作者 刘晓蕾 陈晓旭 吕秉玲 《生物医学工程学杂志》 EI CAS CSCD 北大核心 2006年第1期121-124,共4页
分别以α-磷酸三钙(α—TCP)、磷酸四钙(TTCP)为基本原料,添加羟基磷灰石(HAP)、磷酸氢钙(DCPD)、碳酸钙(CaCO2)、氧化钙(CaO)等其它辅料,并与一定量的无定形硅酸钙(CaSiO3)进行复合,确定了钙磷比均为1.50的六种骨水... 分别以α-磷酸三钙(α—TCP)、磷酸四钙(TTCP)为基本原料,添加羟基磷灰石(HAP)、磷酸氢钙(DCPD)、碳酸钙(CaCO2)、氧化钙(CaO)等其它辅料,并与一定量的无定形硅酸钙(CaSiO3)进行复合,确定了钙磷比均为1.50的六种骨水泥配方,对其基本性能进行了研究。对固化骨水泥样品进行了Ringer’S模拟液浸泡实验,研究了浸泡液pH值、样品的抗压强度随浸泡时间的变化。结果表明:调和液0.25MK2HPO4/KH2PO4和无定形CaSiO3对骨水泥有促凝作用,缩短骨水泥的终凝时间,其中初凝时间为4~5.5min,终凝时间为18~19.5min;同时添加适量无定形CaSiO3可以显著提高骨水泥的抗压强度,其中添加适量无定形CaSiO3的以α—TCP为主要原料的骨水泥Ringer’s模拟液浸泡两周后抗压强度可达45.3MPa。 展开更多
关键词 无定形硅酸钙 复合骨水泥 凝结时间 模拟抗压强度
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Simulation of rock deformation and mechanical characteristics using clump parallel-bond models 被引量:10
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作者 夏明 赵崇斌 《Journal of Central South University》 SCIE EI CAS 2014年第7期2885-2893,共9页
To properly simulate hard rock with a high ratio of the uniaxial compressive strength to tensile strength(UCS/TS) and realistic strength-failure envelope,the rock deformation and mechanical characteristics were discus... To properly simulate hard rock with a high ratio of the uniaxial compressive strength to tensile strength(UCS/TS) and realistic strength-failure envelope,the rock deformation and mechanical characteristics were discussed in detail when the particle simulation method with the clump parallel-bond model(CPBM) was used to conduct a series of numerical experiments at the specimen scale.Meanwhile,the effects of the loading procedure and crack density on the mechanical behavior of a specimen,which was modeled by the particle simulation method with the CPBM,were investigated.The related numerical results have demonstrated that:1) The uniaxial compressive strength(UCS),tensile strength(TS) and elastic modulus are overestimated when the conventional loading procedure is used in the particle simulation method with the CPBM; 2) The elastic modulus,strength and UCS/TS decrease,while Poisson ratio increases with the increase of the crack density in the particle simulation method with the CPBM; 3) The particle simulation method with the CPBM can be used to reproduce a high value of UCS/TS(>10),as well as a high friction angle and reasonable cohesion strength; 4) As the confining pressure increases,both the peak strength of the simulated specimen and the number of microscopic cracks increase,but the ratio of tensile cracks number to shear cracks number decreases in the particle simulation method with the CPBM; 5) Compared with the conventional parallel-bond model,the CPBM can be used to reproduce more accurate results for simulating the rock deformation and mechanical characteristics. 展开更多
关键词 particle simulation method clump parallel-bond model crack density loading procedure rock mechanical behavior
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