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dc.contributor.author杨闰翔zh_TW
dc.contributor.author陈垂欣zh_TW
dc.contributor.authorYang, Ren-Xiangen_US
dc.contributor.authorChen, Chui-Hsinen_US
dc.date.accessioned2018-01-24T07:39:02Z-
dc.date.available2018-01-24T07:39:02Z-
dc.date.issued2016en_US
dc.identifier.urihttp://etd.lib.nctu.edu.tw/cdrfb3/record/nctu/#GT070351209en_US
dc.identifier.urihttp://hdl.handle.net/11536/140245-
dc.description.abstract同心斜撑构架系统以斜撑构件提供整体的侧向劲度与强度,并在结构系统进入非线性后为主要的消能构件,在以往的地震中发生过许多的破坏情况,其常见的破坏模式为斜撑经往覆的拉压行为导致挫屈、降伏,导致该楼层强度与劲度急遽衰减,造成软弱层(Soft Story)的破坏模式,而斜撑构件常见的缺点有低周疲劳寿命不足、受压之挫屈强度过低,以及斜撑构件两端之接合角隅板与梁柱接头发生破坏,或引发梁、柱构件扭转等非预期性破坏现象。本研究将传统斜撑分为多段,以消能元件连结这些斜撑段,目的是希望以类似挫屈束制斜撑(BRB)的方式,将传统斜撑的消能区块拉长,消散部分外力给予的能量,并改善斜撑构件的韧性。
本研究设计六组斜撑并进行静态往覆加载实验,探讨不同补强方式对H型钢斜撑构件行为的影响,试体分为C与R两大类,C类是将传统斜撑的中段切除,换上两消能钢板作为连接,再以围束元件束制,达到避免挫屈的目的,而R类则将传统斜撑中段的翼板切削,一样以围束元件束制住。根据实验的结果分别探讨各试体之指标强度、迟滞行为、累积消能关系、韧性容量、围束长度与消能和韧性的关系、层间位移角与应变硬化和拉压比的关系,以及面外位移量。而研究结果显示,C类以及R类的试体皆呈现饱满的迟滞回圈,并将改善传统斜撑的行为改造成BRB的行为,然而破坏模式也与BRB类似,在较大的变形作用下斜撑在核心断面转换段会发生面外挫屈,最后导致疲劳断裂,而实验透过缩小围束元件与核心元件之间隙可以明显改善此破坏模式,实验结果也显示大部分试体的韧性容量皆大于规范规定的200数值,各试体的拉压比最大值为1.28而应变硬化则大多小于1.3,研究建议尽可能延长围束消能段有助于提升斜撑韧性。
zh_TW
dc.description.abstractSteel braces efficiently provide lateral stiffness and strength to the system of Concentrically Braced Frame (CBF). Being the primary members to dissipate energy by their nonlinear behavior, conventional buckling braces are subjected to premature failure leading to damage to the neighboring structural components and mechanism of soft story. The most common failure modes in steel braces are associated with low-cycle fatigue.
In this research, we applied the concept of buckling restrained brace (BRB) and renovated the conventional braces by changing part of the brace to a buckling-restrained segment to spread out the energy dissipation region and increase their ductility. Test plan included six wide-flange specimens under static cyclic loading. The specimens were categorized into two types, namely Series C and Series R. For Series C specimens, the mid segments of the braces were cutoff and replaced with two sets of restrained core plates. For Series R specimens, the sections of the mid segments were changed to the one with reduced flange width and restrained elements. Test variables included the length and material of the mid segment. Based on the test observations and data analyses, the performance parameters of different specimens were discussed including the hysteretic behavior, strength (yielding strength, maximum tensile strength and maximum compression strength), energy dissipation, cumulative plastic ductility, effect of restrained length, strain hardening factor, compression strength adjustment factor and out-of-plane displacement, etc.
The results showed that the reinforcement strategies in both Series C and Series R specimens were able to enhance the maximum compression strength and energy dissipation capacity of the braces. The typical hysteretic behavior was similar to that of BRB, but the failure modes were also similar to those of BRB. Under large demands of axial deformation, the proposed braces buckled in the region close to the transition area of core element and finally ruptured because of low-cycle fatigue. The impact of such failure modes was significant reduced by reducing the gap between the steel core and the restrained element in some specimens. Test results also showed that most of the specimens had cumulative plastic ductility greater than 200, which was the requirement in the code. The maximum ratio of compression to tension among all the specimens was 1.28 and the strain hardening ratios were less than 1.3 for most of the specimens. The test results also suggested that increasing the length of restrained segment was able to increase the capacity of energy dissipation and ductility of the brace effectively.
en_US
dc.language.isozh_TWen_US
dc.subject斜撑构件zh_TW
dc.subject挫屈束制zh_TW
dc.subject静态往覆加载实验zh_TW
dc.subject韧性容量zh_TW
dc.subjectbracesen_US
dc.subjectbuckling-restrained segmenten_US
dc.subjectstatic cyclic loadingen_US
dc.subjectcumulative plastic ductilityen_US
dc.title增设挫屈束制段之斜撑构件耐震行为研究zh_TW
dc.titleSeismic Behavior of Steel Braces with Insertion of Buckling Restrained Segmenten_US
dc.typeThesisen_US
dc.contributor.department土木工程系所zh_TW
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