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聚丙烯腈纤维对铁路桥混凝土结构的高性能作用研究 被引量:3
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作者 刘凤茹 张海文 何唯平 《铁道建筑技术》 2005年第5期59-61,共3页
从提高铁路桥混凝土高性能化的角度出发,分析了聚丙烯腈纤维对提高混凝土的高性能作用机理。结合理论和试验数据,从聚丙烯腈纤维抗裂防渗作用、抗冲击性能、韧性的提高以及提高抗疲劳性能等多角度阐述了聚丙烯腈纤维对混凝土的高性能作用。
关键词 铁路桥混凝土 高性能作用 动荷载 聚丙烯腈纤维 聚丙烯腈纤维 混凝土结构 高性能 铁路桥 抗冲击性能 抗疲劳性能 试验数据 高混凝土 抗裂防渗
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PAN纤维在铁路桥混凝土结构中的应用研究
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作者 陈艳明 《四川水泥》 2017年第10期35-35,共1页
铁路桥混凝土的高性能作用于铁路桥的质量安全密切相关,研究PAN纤维对混凝土结构的高性能作用,能够为其质量提升提供参考。文章通过对PAN纤维在混凝土中应用的优势、对混凝土高性能作用等方面进行探析,以期为广大研究者提供借鉴。
关键词 PAN纤维 铁路桥 混凝土结构 高性能作用
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High Energy ^-pp and pp Elastic Scatterings in QCD Inspired Model 被引量:2
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作者 LU Juan MA Wei-Xing HE Xiao-Rong 《Communications in Theoretical Physics》 SCIE CAS CSCD 2007年第4期715-718,共4页
We propose QCD inspired model to calculate ^-pp and pp elastic scatterings at high energies in this paper. A calculation for total cross section of ^-pp and pp is performed in which the contributions from gluon-gluon,... We propose QCD inspired model to calculate ^-pp and pp elastic scatterings at high energies in this paper. A calculation for total cross section of ^-pp and pp is performed in which the contributions from gluon-gluon, quark-quark, and gluon-quark interactions are included. Our results show that the QCD inspired model gives a perfect fit to experimental data of total cross section both for ^-pp and pp elastic scatterings at the whole energy region where experimental data existed at FNAL and CERN. 展开更多
关键词 QCD inspired model eikonal profile function high-energy elastic scattering
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Higher Order Multipole Potentials and Electrostatic Screening Effects on Cohesive Energy and Bulk Modulus of Metallic Nanoparticles
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作者 T.Barakat 《Communications in Theoretical Physics》 SCIE CAS CSCD 2011年第12期1125-1129,共5页
Higher order rnultipole potentials and electrostatic screening effects are introduced to incorporate the dan gling bonds on the surface of a metallic nanopaticle and to modify the coulornb like potential energy terms,... Higher order rnultipole potentials and electrostatic screening effects are introduced to incorporate the dan gling bonds on the surface of a metallic nanopaticle and to modify the coulornb like potential energy terms, respectively. The total interaction energy function for any rnetallic nanoparticle is represented in terms of two- and three-body potentials. The two-body part is described by dipole-dipole interaction potential, and in the three-body part, triple-dipole (DDD) and dipole-dipole-quadrupole (DDQ) terrns are included. The size-dependent cohesive energy and bulk modulus are observed to decrease with decreasing sizes, a result which is in good agreement with the experimental values of Mo and W nanoparticles. 展开更多
关键词 higher order multipole potentials electrostatic screening effect size-dependent cohesive energy size-dependent bulk modulus metallic nanoparticles
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