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Structural window frame for in-plane seismic strengthening of masonry wall buildings

机译:砌体墙面内地震加固的结构窗框

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This article describes the initial development stages of a structural window frame system for the in-plane seismic strengthening of load-bearing masonry wall buildings. The solution implemented ultimately aims to stiffen (and strengthen) the opening such that the wall would behave as if there were no opening. This is achieved by installing a structural steel window frame composed of a profile forming a closed ring inside the opening, properly tied to the surrounding masonry wall. The strengthening concept was validated by means of a series of tests in which two approximately 1:2 geometric scale physical specimens with a similar central opening were cyclically tested to failure. One of these specimens (UMW) was unreinforced whereas the other (RMW) had a UPN profile internal ring tied at the corners and at mid-length and mid-height of the opening by means of threaded rods with chemical anchors. The material of these walls was common rubble masonry with lime-based mortar and render. The experimental results show that the strengthening technique leads to a significant increase in strength and in-plane deformation capacity, as well as in terms of cumulative dissipated energy at collapse. Nonlinear numerical specimens of the tested walls were also developed and calibrated.
机译:本文介绍了用于承重砌体墙面内平面内地震加固的结构窗框系统的初始开发阶段。所实施的解决方案最终旨在加强(并加强)开口,以使墙壁的行为就像没有开口一样。这是通过在结构钢窗框架中安装一个由型材组成的窗框来实现的,该型材在开口内形成一个闭合环,并与周围的砌体墙适当地绑在一起。通过一系列测试对加强概念进行了验证,在该测试中,对两个具有类似中心开口的大约1:2几何尺寸的物理样本进行了循环测试,以测试其是否破坏。其中一个标本(UMW)未加固,而另一个标本(RMW)则通过带有化学锚的螺纹杆,在拐角处以及开口的中长和中高处绑住了UPN型内环。这些墙的材料是普通的瓦砾石料,加上石灰基砂浆和抹灰。实验结果表明,加固技术可显着提高强度和面内变形能力,以及塌陷时的累积耗散能量。还开发并校准了被测墙的非线性数值样本。

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