标题: | 强度混合型斜撑往覆加载行为之有限元素分析 Finite Element Analysis of Steel Braces With Spliced Mid-Segment under Cyclic Loading |
作者: | 游东谚 陈垂欣 Yu, Dong-Yin Chen, Chui-Hsin 土木工程系所 |
关键字: | 同心斜撑构架;强度混合型斜撑;有限元素分析;ANSYS;等效塑性应变;往覆加载;Concentrically Braced Frame;Spliced Mid-Segment;Finite Element Analysis;ANSYS; PEEQ;Cyclic Loading |
公开日期: | 2017 |
摘要: | 钢结构同心斜撑构架是藉由斜撑构件受拉降伏与受压挫屈来进行塑性消能,大部分的变形集中于斜撑中间区域。本研究提出强度混合型斜撑,目的是将中间区域替换为不同的断面、材料与长度范围,除了让斜撑有更大的消能区域增加消能能力外,也能改善斜撑中间段斜撑因受压挫屈后又受拉而形成的大量塑性变形集中,进而增加斜撑之韧性与疲劳寿命。 本研究以实验结果校正有限元素分析模型,并以分析软体ANSYS进行一系列强度混合型斜撑受往覆加载的行为分析。为探讨不同宽厚比、材料与替换长度的影响,分析的试体包括不同宽厚比的H型断面斜撑与方管断面斜撑,而中间段皆以符合现行规范但不同长度的H型断面取代,材料则包括A36、SM570。分析比较的参数包含von Mises应力分布与等效塑性应变指数(PEEQ)等。分析结果显示中间段以高强度等断面的型式取代的试体,降低塑性变形的效果较不理想,PEEQ降低4~15%,试体的PEEQ大于其他类试体;中间段以不同断面型式取代的试体,可降低von Mises应力,且PEEQ值比原始未加工的斜撑降低10~40%,此方式有效延迟斜撑的断裂;对于宽厚比较大的斜撑而中间段以不同断面型式取代的试体,von Mises应力也可有效降低,而PEEQ可降低40~55%,尤其以原断面为方管的系列下降最多。分析结果建议中间段之宽厚比小于原断面即可降低PEEQ,而中间段长度则应超过斜撑全长之55%。若设计参数经过适当选择,强度混合型斜撑能有效提升斜撑韧性与消能能力,延长斜撑疲劳寿命 Conventional steel brace dissipates energy by its tension yielding and compression buckling. Most of the inelastic deformation of a buckling brace concentrates in the mid-length. This region dissipates most energy in a brace under cyclic loading, but it is also vulnerable to failure modes associated with low-cycle fatigue. In this research, we proposed a strategy to improve the cyclic behavior of the conventional steel braces by a spliced mid-segment with more suitable sectional properties and materials. By doing so, we can prevent the local section from concentration of large plastic deformation caused by cyclic tension and compression. We use ANSYS to conduct the finite element analyses of braces under cyclic loading. The primary variables to be investigated include the cross-sectional shape, material and length of the mid-segment. Numerical speciments include wide-flange and hollow square braces with various compactness ratios. The mid-segments of all the specimens are all made up of wide-flange sections with compactness ratios comforming to the current design code. Based on the numerical simulations we compare the distributions of von Mises stress and equivalent plastic strain (PEEQ) which are used as indices of fatigue life in this study. The analytical results show that it is ineffective to replace the mid-segment with the same section but higher-strength material; the PEEQ is only reduced by 4% to 15% which is less than the other series of specimens. Contrarily, the braces with more compact mid-segment show more favorable distributions of von Mises stress and lower PEEQ; the PEEQ is reduced by 10% to 40%. For the braces with slender original section, when the mid-segments are replaced with more compact sections, the PEEQ is reduced by 40% to 55% and von Mises stresses are also reduced. To reduce PEEQ most effectively, the analytical results suggest that the mid-segment should be replaced with a more compact section and length greater than 55% of the original length. If the parameters are properly designed, the ductility, energy dissipation capacity, and fatigue-life of conventional buckling braces can be enhanced obviously by splicing a mid-segment. |
URI: | http://etd.lib.nctu.edu.tw/cdrfb3/record/nctu/#GT070451201 http://hdl.handle.net/11536/142546 |
显示于类别: | Thesis |