标题: 高性能金属斜撑结构系统之耐震性能研究---子计画:特殊同心斜撑构架之斜撑构材耐震性能研究(III)
Seismic Performance of Bracing Members in Special Concentrically Braced Frames (III)
作者: 陈诚直
CHEN CHENG-CHIH
国立交通大学土木工程学系(所)
关键字: 特殊同心斜撑构架;面内挫屈;接合板;切削;Special concentrically brace frame;buckle in-plane;gusset plate;reduce section.
公开日期: 2010
摘要: 对于强震区域而言,特殊同心斜撑构架 (Special Concentrically Braced Frame, SCBF)
是一种可有效的抵抗地震力之构架系统。不同于一般的抗弯矩构架,SCBF 的非弹性
变形乃根据斜撑构材与接合板受轴拉力降伏和受压产生整体或局部挫屈而设计之。国
内常使用之斜撑构材大多是重型断面,例如H-型钢、H-型钢加侧板或箱型断面。由
于国内习用之斜撑构材之实验资料短缺,斜撑构材与其接合受拉压之反覆迟滞行为需
要更进一步的了解。
本研究于第一年采用非线性有限元素分析进行斜撑构材与其接合之非弹性迟滞行
为之研究,藉由先前实验结果先行验证有限元素分析模型的准确性。第二年研究以实
验方法进行国内常用斜撑与接合细节之反覆载重试验,以研究其迟滞行为与强度,进
而变更试体之參數,以期达到经济且具优良非弹性行为之斜撑与接合设计。本计划为
第三年,拟进行斜撑构材面内挫屈型式之研究,面内挫屈不同于面内挫屈在于须将斜
撑构材之弱轴转置构架面内,斜撑构材与接合板之連结需一連接板。此連接板之型
式、其与斜撑构材及接合板之接合设计、以及力量传递与非线性行为等皆须深入研
究。本计画并将尝试将斜撑构材兩端切削以达成面内挫屈,并于此切削区域提供塑性
行为以消能。研究方法拟进行有限元素分析与试体反覆载重试验,以期对斜撑面内挫
屈之迟滞行为有更进一步之瞭解,针对接合板与連接板建立相关设计方法,以期为工
程实务之參考应用。
Special concentrically braced frames (SCBFs) are one of the effective
earthquake-resisting frames used in the high seismic areas. Unlike the moment-resisting
frame, SCBFs will behave with inelastic deformation depending on the braces and gusset
plates which are designed to yield in axial tension and to buckle, globally or locally, in axial
compression. The braces used in Taiwan are generally in the form of heavy braces, e.g.,
H-shaped structural steel, H-shaped steel with additional side plates, or box section steel.
Due to lack of experimental results for the heavy braces, the cyclic behavior for heavy
braces and their connections is needed to clarify.
In the first year, this research was conducted using nonlinear finite element analysis to
investigate the inelastic cyclic behavior of the braces and connections to gusset plates. Finite
element modeling was validated by comparing the analysis results with previous
experimental results. In the second year, the research is conducting experimentally to
investigate the hysteretic behavior and strength of the heavy braces and gusset plate
connection used in Taiwan. Furthermore, the specimen design parameters are varied to
achieve the economy and the satisfactory inelastic behavior of the braces and gusset plate
connections. This proposal is for the third year and the in-plane buckling of the braces will
be studied. Unlike the out-of-plane buckling of the braces, the braces buckled in-plane are to
be designed to have their minor axis in the plane of the frame, and a link plate is needed
between gusset plate and the brace. The configuration, detailing, force transferring, and
nonlinear behavior of the link plate require to be investigated. Another design method to
achieve in-plane buckling of the brace will be designed by reducing brace section at both
ends of the brace to create yielding zones to dissipate energy. Finite element analysis and
experiment of cyclic testing will be conducted to study the hysteretic behavior of the braces
bucked in-plane, to establish the design procedure for the gusset plate and link plate, and to
be beneficial for the practice.
官方说明文件#: NSC99-2625-M009-005
URI: http://hdl.handle.net/11536/100507
https://www.grb.gov.tw/search/planDetail?id=2145175&docId=345168
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