广西大学学报(自然科学版)
廣西大學學報(自然科學版)
엄서대학학보(자연과학판)
JOURNAL OF GUANGXI UNIVERSITY (NATURAL SCIENCE EDITION)
2015年
2期
298-306
,共9页
李兴科%莫时旭%郑艳%李胜%羊海林
李興科%莫時旭%鄭豔%李勝%羊海林
리흥과%막시욱%정염%리성%양해림
部分充填钢箱-混凝土组合梁%负弯矩区%滑移%挠度%有效刚度法
部分充填鋼箱-混凝土組閤樑%負彎矩區%滑移%撓度%有效剛度法
부분충전강상-혼응토조합량%부만구구%활이%뇨도%유효강도법
concrete-partial-filled steel box composite beam%negative moment region%slip%deflec-tion%effective stiffness method
为研究组合梁负弯矩区的滑移及变形进行了3片不同抗剪连接度的部分充填式钢箱—混凝土组合简支梁试验,观测了在对称集中荷载作用下交界面的相对滑移分布规律和挠度的试验结果。试验结果表明,随着抗剪连接度的增加,滑移逐渐减小且基本上以跨中为对称点沿梁对称分布。建立了考虑滑移效应的组合梁受力模型,推导出部分充填式钢箱—混凝土组合简支梁交界面的滑移微分方程,针对钢结构设计规范运用刚度折减法计算挠度出现的问题,建议采用有效刚度法,同时将计算结果与试验结果进行了对比分析。对比结果表明,在弹性阶段滑移理论计算值和实测值具有很好的拟合性,弹性阶段以后有一定的误差,有效刚度法计算得到的挠度可以准确描述组合梁的变形。
為研究組閤樑負彎矩區的滑移及變形進行瞭3片不同抗剪連接度的部分充填式鋼箱—混凝土組閤簡支樑試驗,觀測瞭在對稱集中荷載作用下交界麵的相對滑移分佈規律和撓度的試驗結果。試驗結果錶明,隨著抗剪連接度的增加,滑移逐漸減小且基本上以跨中為對稱點沿樑對稱分佈。建立瞭攷慮滑移效應的組閤樑受力模型,推導齣部分充填式鋼箱—混凝土組閤簡支樑交界麵的滑移微分方程,針對鋼結構設計規範運用剛度摺減法計算撓度齣現的問題,建議採用有效剛度法,同時將計算結果與試驗結果進行瞭對比分析。對比結果錶明,在彈性階段滑移理論計算值和實測值具有很好的擬閤性,彈性階段以後有一定的誤差,有效剛度法計算得到的撓度可以準確描述組閤樑的變形。
위연구조합량부만구구적활이급변형진행료3편불동항전련접도적부분충전식강상—혼응토조합간지량시험,관측료재대칭집중하재작용하교계면적상대활이분포규률화뇨도적시험결과。시험결과표명,수착항전련접도적증가,활이축점감소차기본상이과중위대칭점연량대칭분포。건립료고필활이효응적조합량수력모형,추도출부분충전식강상—혼응토조합간지량교계면적활이미분방정,침대강결구설계규범운용강도절감법계산뇨도출현적문제,건의채용유효강도법,동시장계산결과여시험결과진행료대비분석。대비결과표명,재탄성계단활이이론계산치화실측치구유흔호적의합성,탄성계단이후유일정적오차,유효강도법계산득도적뇨도가이준학묘술조합량적변형。
Three partially filled steel-box-concrete composite beam models of different shear connec-tions are tested to study the slip and deformation of partially filled steel box concrete composite Gird-ers under negative moment, and the distribution of relative slip and deflection at the interface under symmetrical concentrated loads are observed. The test results show that the slip decreases with the increase of shear connection, and the slip distributes along the beam symmetrically. The model of partially filled steel-box-concrete composite beam is built considering the effect of slip, and a differ-ential equation of slip at the interface is derived. To solve the problems, the reduced stiffness meth-od is adopted according to the code for the design of steel structures, and the effective stiffness meth-od is suggested. The results of theoretical calculation are compared with the experimental results. Comparison shows that the calculated results and the measured results are in good consistent in the elastic stage, but there are certain errors after this stage. The deflection calculated by the effective stiffness method can describe the deformation of the composite beam accurately.