对于对称配筋的钢筋混凝土受压柱,大小偏心受压构件的判别条件是

2025-04-06 02:51:10
推荐回答(2个)
回答1:

大偏心和小偏心受压破坏的本质区别在于受拉区的钢筋是否屈服。

构件承受的压力作用点与构件的轴心偏离,使构件产生既受压又受弯时即为偏心受压构件(亦称压弯构件)。常见于屋架的上弦杆、框架结构柱,砖墙及砖垛等。

大偏压(受拉破坏)首先在受拉一侧出现横向裂缝,受拉钢筋形变较大,应力增长较快。在临近破坏时,受拉钢筋屈服。横向裂缝迅速开展延伸至混凝土受压区域,受压区迅速缩小,压应力增大。在受压区出现纵向裂缝,混凝土达到极限压应变压碎破坏。

扩展资料:

注意事项:

当柱子轴心受压时,截面上轴向力作用线与柱截面重心轴重合,截面上钢筋与混凝土应变相同,且均匀分布。在发生强度破坏时,柱四周明显出现纵向裂缝,箍筋间的纵筋屈服并外鼓,最终混凝土被压碎。

当柱偏心距较大,且受拉区钢筋配置不多,此时柱出现横向裂缝,随着荷载不断加大,受拉区混凝土退出工作,致使混凝土达到极限压应变而破坏,属于一种延性破坏。当柱偏心距较小,或虽然偏心距较大,但所配受拉钢筋过多时截面全部或大部分受压,受压混凝土出现纵向裂缝并先达到极限压应变而破坏,此时钢筋未达到屈服,受压破坏属于脆性破坏。

参考资料来源:百度百科-钢筋混凝土柱

参考资料来源:百度百科-大偏心受压构件

回答2:

《砼规》第7.3.4条:
1)当ξ≤ξb时为大偏心受压构件,ξ为相对受压区高度,ξ=x/h0;
2)当ξ>ξb时为小偏心受压构件;
ζb--相对界限受压区高度。(按砼规7.1.4-1或7.1.4-2条计算)

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