科技通报
科技通報
과기통보
BULLETIN OF SCIENCE AND TECHNOLOGY
2015年
2期
64-66
,共3页
二次缩减积分%强振动%钢管混凝土%断裂预测
二次縮減積分%彊振動%鋼管混凝土%斷裂預測
이차축감적분%강진동%강관혼응토%단렬예측
two reduced integration%vibration%concrete filled steel tube%fracture prediction
研究地震作用强振动下的钢管混凝土结构断裂点预测方法。钢管混凝土柱在强振动作用下产生纯扭和压扭荷载而导致断裂,分析结构节点延性断裂预测与裂后路径,构建基于次缩减积分的强振动下钢管混凝土结构断裂预测模型,得到一种高效、高精度的有限元单元分析钢管混凝土柱在扭矩作用下的非线性弹塑性行为方法,实现对强振动下的钢管混凝土结构断裂预测,计算钢管混凝土柱在往复扭矩荷载作用下的受力行为。得到钢管混凝土结构断裂模型断裂判据和截面受扭剪应变场,试验得出钢管混凝土矩形截面受扭剪应变场。分析结果可见,采用该预测方法和试验模型,预测得到的钢管混凝土结构试件延性起裂位置与试验结果一致,开裂时刻与试验结果吻合较好,试验结果与理论分析结果吻合较好,精度较高,具有较高的工程适用价值。
研究地震作用彊振動下的鋼管混凝土結構斷裂點預測方法。鋼管混凝土柱在彊振動作用下產生純扭和壓扭荷載而導緻斷裂,分析結構節點延性斷裂預測與裂後路徑,構建基于次縮減積分的彊振動下鋼管混凝土結構斷裂預測模型,得到一種高效、高精度的有限元單元分析鋼管混凝土柱在扭矩作用下的非線性彈塑性行為方法,實現對彊振動下的鋼管混凝土結構斷裂預測,計算鋼管混凝土柱在往複扭矩荷載作用下的受力行為。得到鋼管混凝土結構斷裂模型斷裂判據和截麵受扭剪應變場,試驗得齣鋼管混凝土矩形截麵受扭剪應變場。分析結果可見,採用該預測方法和試驗模型,預測得到的鋼管混凝土結構試件延性起裂位置與試驗結果一緻,開裂時刻與試驗結果吻閤較好,試驗結果與理論分析結果吻閤較好,精度較高,具有較高的工程適用價值。
연구지진작용강진동하적강관혼응토결구단렬점예측방법。강관혼응토주재강진동작용하산생순뉴화압뉴하재이도치단렬,분석결구절점연성단렬예측여렬후로경,구건기우차축감적분적강진동하강관혼응토결구단렬예측모형,득도일충고효、고정도적유한원단원분석강관혼응토주재뉴구작용하적비선성탄소성행위방법,실현대강진동하적강관혼응토결구단렬예측,계산강관혼응토주재왕복뉴구하재작용하적수역행위。득도강관혼응토결구단렬모형단렬판거화절면수뉴전응변장,시험득출강관혼응토구형절면수뉴전응변장。분석결과가견,채용해예측방법화시험모형,예측득도적강관혼응토결구시건연성기렬위치여시험결과일치,개렬시각여시험결과문합교호,시험결과여이론분석결과문합교호,정도교고,구유교고적공정괄용개치。
The prediction method of fracture of concrete filled steel tubular structure in strong vibration under earthquake action is researched. Concrete filled steel tubular column will produce pure torsion and compression torsion loading in the strong vibration caused fracture, analysis and forecasting of crack path structure node ductile fracture are taken, fracture of strong vibration reduced integration construction of concrete filled steel tubular structure prediction model is proposed based on finite element analysis, Torsional shear strain field obtained by the fault model of the fracture of concrete filled steel tubular structure criterion and cross section, the torsional shear strain field test of concrete filled steel tube with rect?angular cross section is get. The analysis result shows that the prediction method and model can make concrete filled steel tubular structure predict specimens ductility fracture position are consistent with the test results, the cracking moment is shown in good agreement with test results, test results and theoretical analysis results have high precision, which has high engineering application value.