山东建筑大学学报
山東建築大學學報
산동건축대학학보
JOURNAL OF SHANDONG JIANZHU UNIVERSITY
2015年
2期
103-109
,共7页
方钢管混凝土柱%隔板贯通节点%局部抗拉性能
方鋼管混凝土柱%隔闆貫通節點%跼部抗拉性能
방강관혼응토주%격판관통절점%국부항랍성능
concrete-filled square steel tubular column%diaphragm-through joints%local tensile behavior
钢管混凝土柱隔板贯通节点局部抗拉性能研究对改进方钢管混凝土柱与钢梁受拉翼缘的结构性能具有重要意义。文章基于7个十字形隔板贯通节点试件的静力拉伸试验,考虑几何非线性、钢材与混凝土接触非线性和各种材料非线性等多重非线性因素,采用ANSYS有限元软件建立三维实体模型,对隔板贯通节点进行了单调加载分析。结果表明:有限元分析得到的荷载-位移曲线与试验结果吻合较好;与试验值相比,节点屈服承载力有限元计算值的误差均在5%以内,极限承载力有限元计算值的误差小于14%。有限元分析结果可为隔板贯通节点承载力计算公式与设计方法的研究提供参考。并提出了改进节点局部抗拉性能的设计建议。
鋼管混凝土柱隔闆貫通節點跼部抗拉性能研究對改進方鋼管混凝土柱與鋼樑受拉翼緣的結構性能具有重要意義。文章基于7箇十字形隔闆貫通節點試件的靜力拉伸試驗,攷慮幾何非線性、鋼材與混凝土接觸非線性和各種材料非線性等多重非線性因素,採用ANSYS有限元軟件建立三維實體模型,對隔闆貫通節點進行瞭單調加載分析。結果錶明:有限元分析得到的荷載-位移麯線與試驗結果吻閤較好;與試驗值相比,節點屈服承載力有限元計算值的誤差均在5%以內,極限承載力有限元計算值的誤差小于14%。有限元分析結果可為隔闆貫通節點承載力計算公式與設計方法的研究提供參攷。併提齣瞭改進節點跼部抗拉性能的設計建議。
강관혼응토주격판관통절점국부항랍성능연구대개진방강관혼응토주여강량수랍익연적결구성능구유중요의의。문장기우7개십자형격판관통절점시건적정력랍신시험,고필궤하비선성、강재여혼응토접촉비선성화각충재료비선성등다중비선성인소,채용ANSYS유한원연건건립삼유실체모형,대격판관통절점진행료단조가재분석。결과표명:유한원분석득도적하재-위이곡선여시험결과문합교호;여시험치상비,절점굴복승재력유한원계산치적오차균재5%이내,겁한승재력유한원계산치적오차소우14%。유한원분석결과가위격판관통절점승재력계산공식여설계방법적연구제공삼고。병제출료개진절점국부항랍성능적설계건의。
Seven cruciform specimens of diaphragm-through joint model are studied by static tensile test to investigate the structural behavior of the connection between concrete-filled square steel tubular column and steel beam tensile flange. On the basis of experimental investigation,3-D nonlinear FEM models of diaphragm-through joints involving geometric large deformation,contact problems between the steel and the concrete and materials nonlinear are presented and the behavior of connections under the monotonic loading are analyzed by using ANSYS. Research results indicate that load-deflection curves by finite element analysis show good agreement with those of the experiment. Compared with experimental values,yield bearing capacity of the finite element calculation error is less than 5%, and the ultimate bearing capacity of finite element calculation error is less than 14%. The finite element analysis results can provide the reference for studying bearing capacity calculation formula and design method of diaphragm-through joint. Based on the stress distribution of the joint zone,the transfer mechanism of the joint is analyzed,and some design suggestions for improving local tensile behavior of joint are presented according to stress distribution analyses in the joint zone between steel beam flange and diaphragm.