midas贝雷梁刚栈桥

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容易生成重复单 元。因此,建完模 型后,建议使用检
模型>检查结构数据>检查并删除重复输入的单元(删除刚才支撑架 复制重叠的单元)
查功能,删除重叠 的单元,以确保分 析的正确性。(其他
建立其余的支撑架 模型>单元>复制和移动
结构的分析也建议 在分析前执行检查 的操作)
全选
形式>复制 等间距> dx,dy,dz>(3000,0,0)mm
栈桥分析
1、工程概况
一座用贝雷片搭建的施工栈桥,跨径 15m(5 片贝雷片),支承 条件为简支,桥面宽 6 米。设计荷载汽—20,验算荷载挂—50。贝雷 片的横向布置为 5×90cm,共 6 片主梁,在贝雷片主梁上布置 I20a 分配梁,位置作用于贝雷片上弦杆的每个节点处,间距约 75cm。如 下图所示:
全选ቤተ መጻሕፍቲ ባይዱ
扩展类型>节点-线单元 单元类型>梁单元;材料>1:16Mn; 截面>1:弦杆 生成形式>复制和移动 复制和移动>任意间距:方向(x) 间距(90,4@705,90)mm ↵
注:对于直线单元, 使用 MIDAS/CIVIL 特有的扩展功能可 以快速地建立模 型。另,对于钢结 构,要善于使用扩 展、移动和复制、 旋转等功能快速建 模。
贝雷片参数:材料 16Mn; 弦杆 2I10a 槽钢(C 100x48x5.3/8.5,间 距 8cm),腹杆 I8(h=80mm,b=50mm, tf=4.5mm ,tw=6.5mm)。贝雷片 的连接为销接。
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图表 1 贝雷片计算图示(单位:mm) 支撑架参数:材料 A3 钢,截面 L63X4。 分配横梁参数:材料 A3 钢,截面 I20a,长度 6m。 建模要点:贝雷片主梁用梁单元,销接释放绕梁单元截面 y-y 轴的旋 转自由度;支撑架用桁架单元;分配横梁用梁单元,与贝雷主梁的连 接采用节点弹性连接(仅连接平动自由度,旋转自由度不连接);车 道布置一个车道,居中布置。
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建立其余的贝雷片
模型>单元>复制和移动 全选 形式>复制 等间距> dx,dy,dz>(3000,0,0)mm 复制次数>(4)↵ (生成 1 根贝雷片主梁) 模型>单元>复制和移动 全选 形式>复制 等间距> dx,dy,dz>(0,900,0)mm 复制次数>(5)↵ (生成另外 5 根贝雷片主梁)
截面号 3; 名称:(支撑架) 截面类型:(角钢) 数据库:(GB-YB) 截面:(L 63x4)点击适用
截面号 4; 名称:(分配梁) 截面类型:(工字形截面) 数据库:(GB-YB) 截面:(I 200x100x7/11.4) 偏心:(中上部)↵
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3、建模 建立第一片贝雷片
生成上下弦杆 模型>节点>建立节点 坐标(0,0,0) 模型>单元>扩展单元
复制次数>(5)↵
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建立分配梁
切换到正面视图,窗口选择 x=0 的构件,然后激活 模型>节点>复制和移动 选择节点 8 形式>复制 等间距> dx,dy,dz>(0,-750,200)mm 复制次数>(1)↵ 模型>单元>扩展单元 选择最新建立的个体 (快速选中刚才生成的节点) 扩展类型>节点-线单元 单元类型>梁单元; 材料>2:A3; 截面>4:分配梁 复制和移动>任意间距:方向(y) 间距(750,5@900,750)mm ↵ (生成第一根分配梁) 模型>单元>复制和移动(使用复制功能建立余下的分配梁) 窗口选择刚才生成的分配梁 形式>复制 任意间距:方向(x) 间距(795,3@705,885,3@705,885,3@705, 885,3@705,885,3@705)mm↵
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建立支撑架
建立一联支撑架 模型>单元>建立 单元类型>桁架单元; 材料>2:A3; 截面>3:支撑架 如下图所示,依次连接节点,生成两片主梁间的支撑架
模型>单元>复制和移动 选择刚才生成的支撑架单元。(切换到正面视图,窗口选择 x=0 的构
件,然后激活 ,再窗口选择即可)
形式>复制
注:对于钢结构模 等间距> dx,dy,dz>(0,900,0)mm 型,由于单元较多, 复制次数>(4)↵
模型 / 材料和截面特性 / 截面/添加 数据库/用户 截面号 1; 名称:(弦杆) 截面类型:(双角钢截面) 选择用户定义,数据库名称(GB-YB); 截面名称:C 100x48x5.3/8.5 C:(80mm)
点击适用
截面号 2; 名称:(腹杆) 截面类型:(工字形截面) 选择用户定义 H:(80mm) B1:(50mm) tw:(6.5mm) tf1:(4.5mm) 点击适用
模型>单元>复制和移动
选择最新建立的个体
形式>复制 等间距> dx,dy,dz>(1410,0,0)mm 复制次数>(2)↵
生成斜杠 模型>单元>建立 材料>1:16Mn; 截面>2:腹杆 节点连接:依次连接节点(15,10),(10,16),(16,3),(3,15)
(16,12),(12,17),(17,5),(5,16) 生成斜杆(如图所示)
栈桥分析
北京迈达斯技术有限公司
目录
栈桥分析 ····································································································1 1、工程概况 ······························································································1 2、定义材料和截面 ··················································································3 定义钢材的材料特性·················································································3 定义截面 ····································································································4 3、建模 ······································································································6 建立第一片贝雷片 ····················································································6 建立其余的贝雷片 ····················································································9 建立支撑架 ······························································································10 建立分配梁 ······························································································13 4、添加边界 ····························································································16 添加弹性连接 ··························································································16 添加一般连接 ··························································································17 释放梁端约束 ··························································································20 5、输入荷载 ····························································································21
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2、定义材料和截面 定义钢材的材料特性
模型 / 材料和截面特性 / 材料/添加 材料号:1 类型>钢材; 规范:JTJ(S) 数据库>16Mn (适用) 材料号:2 类型>钢材; 规范:JTJ(S) 数据库>A3 (确定)
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定义截面
注 : MIDAS/CIVIL 的截面库中含有丰 富的型钢截面,同 时还拥有强大的截 面自定义功能。
模型>单元>复制和移动
全选
形式>复制 等间距> dx,dy,dz>(0,0,1400)mm 复制次数>(1)↵
生成竖杆 模型>单元>扩展单元 选择节点 2 扩展类型>节点-线单元 单元类型>梁单元; 材料>1:16Mn; 截面>2:腹杆 复制和移动>等间距> dx,dy,dz>(0,0,700)mm 复制次数>(2)↵
添加荷载工况 ··························································································21 6、输入移动荷载分析数据·····································································22 定义横向联系梁组 ··················································································22 定义移动荷载分析数据···········································································23 输入车辆荷载 ··························································································24 移动荷载分析控制 ··················································································26 7、运行结构分析 ····················································································27 8、查看结果 ····························································································27 生成荷载组合 ··························································································27 查看位移 ··································································································27 查看轴力 ··································································································28 利用结果表格查看应力···········································································29
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