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轻集料对高强次轻混凝土物理力学性能的影响
引用本文:胡曙光,田耀刚,丁庆军.轻集料对高强次轻混凝土物理力学性能的影响[J].混凝土与水泥制品,2007(6):1-4.
作者姓名:胡曙光  田耀刚  丁庆军
作者单位:武汉理工大学材料学院,430070
摘    要:研究了轻集料种类及其在粗集料中所占比例、轻集料粒径与级配以及体积砂率对高强次轻混凝土的表观密度、抗压强度、抗拉强度和弹性模量的影响.试验结果表明,轻集料的种类及其在粗集料中所占比例对不同强度等级的高强次轻混凝土具有相似的影响规律,即当轻集料在粗集料中比例不超过50%时,混凝土的抗压、抗拉强度和弹性模量随轻集料掺量变化的变化并不明显,而超过50%时,则随着轻集料掺量增大而明显降低;高强次轻混凝土的力学性能随轻集料粒径减小而提高,间断级配对混凝土的力学性能影响不利;体积砂率存在最佳范围,约为40%左右.

关 键 词:轻集料  高强次轻混凝土  抗压强度  抗拉强度  弹性模量  轻集料  高强次轻混凝土  物理  力学性能  性能影响  Concrete  High  Strength  Mechanical  Properties  Physical  Lightweight  Aggregate  范围  最佳  存在  配对  间断  变化  掺量  抗压强度  规律  相似
文章编号:1000-4637(2007)06-01-04
收稿时间:2007-10-08
修稿时间:2007年10月8日

Influence of Lightweight Aggregate on the Physical and Mechanical Properties of High Strength Semi-lightweight Concrete
HU Shu-guang,TIAN Yao-gang,DING Qing-jun.Influence of Lightweight Aggregate on the Physical and Mechanical Properties of High Strength Semi-lightweight Concrete[J].China Concrete and Cement Products,2007(6):1-4.
Authors:HU Shu-guang  TIAN Yao-gang  DING Qing-jun
Affiliation:HU Shu-guang TIAN Yao-gang DING Qing-jun
Abstract:Effects of the types,the volume contents,the max-sides and the grading of lightweight aggregate and the volume rate of sand on the physical and mechanical properties of high strength semi-lightweight concrete (HSSC)were investigated.Test results show that tow types of lightweight aggregate have similar regularity of effect on the mechanical properties of different strength grade HSSC. When the volume rate of lightweight aggregate in coarse aggregate changes in un-exceeding 50%,its effect on the compressive strength, split tensile strength and elastic modulus of HSSC isn't obvious,however when it's in exceeding 50% the mechanical properties of HSSC decrease markedly with increase of the volume rate of lightweight aggregate.Besides,the mechanical properties of HSSC increase with reduce of the lightweight aggregate's max-side,and the gap-grading aggregate is disadvantage to the mechanical properties of HSSC,for HSSC the optimal volume rate of sand is at about 40%.
Keywords:Lightweight aggregate  High strength semi-lightweight concrete  Compressive strength  Tensile strength  Elastic modulus
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