黑龙江科技学院学报
黑龍江科技學院學報
흑룡강과기학원학보
JOURNAL OF HEILONGJIANG INSTITUTE OF SCIENCE & TECHNOLOGY
2011年
4期
321-324
,共4页
劲性钢筋轻骨料混凝土梁%正截面受弯%裂缝
勁性鋼觔輕骨料混凝土樑%正截麵受彎%裂縫
경성강근경골료혼응토량%정절면수만%렬봉
concrete beam with formed steel light aggregate%crack%cross-section bending
为研究劲性钢筋轻骨料混凝土构件的抗裂性能,采用跨中集中荷载的加载方式,通过数值模拟,分析劲性钢筋轻骨料混凝土梁受弯构件变形与荷载的关系。模拟结果表明:劲性钢筋轻骨料混凝土梁刚度较大,但破坏时挠度很大,有很好的延性。当受压区混凝土压碎破坏时,试验梁仍具有很大的承压能力。随着跨中荷载的增大,梁的位移变形也随之增多。跨中荷载增加到40 t时,梁的位移变形开始大幅度增大,导致混凝土开裂。混凝土开裂后,试件截面刚度退化,裂缝宽度增幅显著,裂缝宽度逐渐加宽。试件梁开裂后,裂缝宽度随荷载变化的增长趋于稳定,抗裂性能较好。模拟结果与试验值相符。
為研究勁性鋼觔輕骨料混凝土構件的抗裂性能,採用跨中集中荷載的加載方式,通過數值模擬,分析勁性鋼觔輕骨料混凝土樑受彎構件變形與荷載的關繫。模擬結果錶明:勁性鋼觔輕骨料混凝土樑剛度較大,但破壞時撓度很大,有很好的延性。噹受壓區混凝土壓碎破壞時,試驗樑仍具有很大的承壓能力。隨著跨中荷載的增大,樑的位移變形也隨之增多。跨中荷載增加到40 t時,樑的位移變形開始大幅度增大,導緻混凝土開裂。混凝土開裂後,試件截麵剛度退化,裂縫寬度增幅顯著,裂縫寬度逐漸加寬。試件樑開裂後,裂縫寬度隨荷載變化的增長趨于穩定,抗裂性能較好。模擬結果與試驗值相符。
위연구경성강근경골료혼응토구건적항렬성능,채용과중집중하재적가재방식,통과수치모의,분석경성강근경골료혼응토량수만구건변형여하재적관계。모의결과표명:경성강근경골료혼응토량강도교대,단파배시뇨도흔대,유흔호적연성。당수압구혼응토압쇄파배시,시험량잉구유흔대적승압능력。수착과중하재적증대,량적위이변형야수지증다。과중하재증가도40 t시,량적위이변형개시대폭도증대,도치혼응토개렬。혼응토개렬후,시건절면강도퇴화,렬봉관도증폭현저,렬봉관도축점가관。시건량개렬후,렬봉관도수하재변화적증장추우은정,항렬성능교호。모의결과여시험치상부。
Aimed at the effective control of deformation of steel reinforced light aggregate concrete component,this paper is an analysis of relationship between member deformation of reinforced light aggregate concrete beam on the normal section and load by applying concentrated load across the mid-span and through numerical simulation.The simulation results show that the reinforced light aggregate concrete beam gives a bigger rigidity,but in case of the destruction,reinforced light aggregate concrete has a large deflections.The reinforced light aggregate concrete beam exhibits a better ductility.The test beam still has great bearing capacity when the compressive zone of light aggregate concrete is subjected to crushing damages.The increasing deformation is accompanied by the increasing deformation displacement of the concentrated load across the mid-span.40-ton load in the mid span gives the beam a dramatically increasing displacement deformation,with resultant cracking in light aggregate concrete.Concrete cracking is followed by degrading stiffness of the specimen section,the increasing crack width,and the widening crack width.Specimen beams,subjected to cracking,show crack width which tends to be relatively stable with the load growth,and a better crack resisting performance.The simulation results fits better with the experimental values.