标题: 圆形New RC柱的核心混凝土在围束作用下的应力应变模式
Confined Concrete Stress-Strain Model for New RC Circular Column
作者: 陈正明
赵文成
林昌佑
刘光晏
Chen, Zheng-Ming
Jau,Wen-Chen
Lin,Chang-Yu
Liu,Kuang-Yen
土木工程系所
关键字: 柱轴压试验;围束;韧性;箍筋间距;箍筋强度;高强度混凝土;axial compression test;confinement;toughness;hoop spacing;hoop strength;New RC
公开日期: 2016
摘要: 摘要
建筑结构中采用New RC有降低断面尺寸,减少材料用量以及增加使用空间等优点。但由于New RC易发生脆性破坏这一特点,使得其在应用中有困难需要克服。在混凝土柱结构中,高强度混凝土柱在可以提供高轴力的同时,在应力下降段表现出明显脆性破坏,对结构安全有严重影响。因此,原本适用于普通混凝土的规范公式无法完全适用在New RC上,需要针对研究。
柱结构中,通过增加钢筋量的方法可以有效提升围束从而增加柱的韧性,但钢筋量的选取同时受到结构安全与施工难度的限制。本次研究针对高强度圆形钢筋混凝土柱,通过调整箍筋间距,箍筋强度以及有无系筋等条件分析围束作用下高强度钢筋混凝土柱的轴压行为,包含韧性比分析,应力应变曲线对比,应力应变模型建立。
本次研究相关试验结果显示减少箍筋间距,增加系筋,增加箍筋强度都可以明显提高试体的韧性。对核心混凝土来说,箍筋强度的提高在上升段并没有明显体现,但在下降段箍筋强度高的表现出更好的韧性,说明在柱受力达到峰值时,高强度钢筋强度未能利用完全。降低箍筋间距和添加系筋都可以提高核心混凝土峰值应变,在保证箍筋配筋率不变的情况下,在上升段两者效果近似,但在下降段添加系筋的补强作用较好。
Abstract
In the building structure, New RC is used to reduce the section size and the amount of material. Besides which, New RC can increase the use of space. But New RC is prone to brittle failure which makes it difficult to use in the application. In concrete column structure, while high-strength concrete columns provides high axial force ,.The descending branch shows brittle failure which results in serious implications for security. The original specifications applicable to ordinary concrete can not be fully applicable in the New RC.
Column structure can effectively enhance the confinement conditions by increasing the amount of reinforcement , but the amount of reinforcement is limited by the structural safety and construction difficulties. The research for high strength circular reinforced concrete columns analyses axial compression behavior under confinement effects by adjusting the spacing of stirrups , stirrups strength and tie bar conditions including toughness ratio analysis , stress-strain curve and the stress-strain model .
The results of the study showed that decreasing stirrup spacing , addition of tie bar , increasing the strength of stirrups can significantly improve the toughness of the specimen.For core concrete , the increasing of stirrups strength has no effect in rising branch , but the high- strength stirrups showed better resilience in descending branch , The results described that when the force reaches a peak , high-strength steel strength completely failed to take advantage . Reducing the spacing of stirrups and addition of tie bars will enhance the core concrete peak strain,In ensuring the stirrup reinforcement ratio unchanged, the effect of both phase approximation, but the addition of tie bars performs better in the descending branch.
URI: http://etd.lib.nctu.edu.tw/cdrfb3/record/nctu/#GT070351297
http://hdl.handle.net/11536/139165
显示于类别:Thesis