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1)  shear wall with reinforced concrete combined
钢筋混凝土周边有梁柱的剪力墙
1.
Anti-seismic design of shear wall with reinforced concrete combined
钢筋混凝土周边有梁柱的剪力墙抗震设计
2)  hollow shear wall of reinforced concrete
空心钢筋混凝土剪力墙
1.
An experimental study on the aseismic behavior of hollow shear wall of reinforced concrete;
空心钢筋混凝土剪力墙抗震性能试验研究
3)  reinforced concrete hollow shear wall
钢筋混凝土空心剪力墙
1.
Based on the test of three reinforced concrete hollow shear walls under the action of bending moment and shear force,the failure mechanism,the deformation feature and the strain of steel bar under the horizontal loading are discussed.
通过对三个钢筋混凝土空心剪力墙弯剪试件的试验研究,探讨了空心剪力墙在受到水平力作用下,试件的破坏机理、变形特征及截面钢筋的应变情况。
2.
Based on the test of eight reinforced concrete hollow shear walls of various slenderness ratio under the action of axial compressive force,The failure mechanism,the deformation feature and the strain of steel bar under the axial loading are discussed.
通过对长细比不同的八个轴心受压钢筋混凝土空心剪力墙试件的试验研究,探讨了空心剪力墙在受到轴向压力作用下,试件的破坏机理、变形特征及截面钢筋的应变情况。
4)  reinforced concrete shear wall
钢筋混凝土剪力墙
1.
An effective macroscopic model,multi-vertical-line-element model,developed in recent years,has been used to nonliear analysis for reinforced concrete shear wall structures by many researchers.
多垂直杆元模型是近年来发展的一种较为理想的宏观墙单元模型,被许多研究者用于钢筋混凝土剪力墙结构的非线性分析。
2.
The structure form is chosen to use the SRC columns- reinforced concrete shear wall structure under 9th layers, and the steel frame- reinforced concrete shear wall structure for 9th layer above , to increase the lower part structure s side stiffness and decrease the upper part weight.
工程主楼为16层行政办公楼,其建筑特点是9层以下较空旷,平面、竖向均为不规则结构,针对其特点,层9以下采用钢骨柱-钢筋混凝土剪力墙结构,层9以上采用钢框架-钢筋混凝土剪力墙结构,以增加下部结构抗侧刚度,减轻上部重量,并采取了若干计算与构造措施,对个别节点进行了处理。
5)  reinforced concrete coupled shear wall
钢筋混凝土双肢剪力墙
1.
Finite element software ABAQUS was used in a concrete damage plastic model,and the nonlinear finite element was adopted to analyze the reinforced concrete coupled shear walls,according to the separate finite element model.
利用有限元软件ABAQUS中的混凝土损伤塑性模型,采用分离式方法建立有限元模型,对钢筋混凝土双肢剪力墙进行了非线性分析;在与试验结果进行对比分析的基础上,选取了用于钢筋混凝土剪力墙非线性有限元分析的材料破坏准则和本构关系进行建模;通过数值计算,分析了轴压比、墙连梁跨高比、墙分布钢筋配筋率、边缘构件配筋率对钢筋混凝土双肢剪力墙的承载能力、延性、破坏形态等的影响。
6)  Reinforced concrete frame-shear-wall
钢筋混凝土框架-剪力墙
补充资料:钢筋
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性质:钢筋做为钢材的全称是(预应力)钢筋混凝土用钢筋。钢筋从外形分两类,一类是光面钢筋,一类是变形钢筋。光面钢筋就是变通碳素钢圆钢(参见圆钢),直径8~50毫米。变形钢筋则是表面带筋的钢筋,通常带有两道纵筋利沿长度方向均匀分布的横筋,公称直径8~50毫米。根据横筋的不同分布,变形钢筋还分为螺旋形、人字形和月牙形钢筋(见图)。变形钢筋的材质是低合金结构钢。钢筋按强度分级,光面钢筋的屈服点/抗拉强度(即屈强比)不小于235/370兆帕,属I级;变形钢筋的屈强比不小于315/490兆帕的属Ⅱ级,不小于370/570兆帕的属Ⅲ级,不小于540/835兆帕的属Ⅳ级。另一种变形钢筋叫预应力钢筋混凝土用热处理钢筋,是由高强度(屈强比1325/1470兆帕)的硅锰系列代号为RB150的钢种(40Si2Mn,48Si2Mn,45Si2Cr)经过热轧、淬火和回火调质热处理制成的,公称直径有6毫米、8.2毫米和10毫米3种,钢筋的螺纹外形,分为有纵筋和无纵筋的两种(见图)。

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