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In Situ Experimental Study on the Active Support Used for Building Rectification

机译:建筑物矫正用主动支撑的原位试验研究

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摘要

There are many vertically deflected building structures in the world that require rectification. Temporary supports installed in the building bearing walls can be used to perform such a rectification. The supports consist of a hydraulic piston jack, a stack of parallelepiped steel elements, and a concrete grout. The structure is unevenly raised and reaches the desired vertical position using such supports. The support in which the piston extension is forced at the given time is an active support. The aim was to determine the stiffness of an active support. The investigations were performed in in situ conditions during experimental building rectification. No such investigations have been performed to date. It has been demonstrated that the stiffness of the investigated support results from the stiffness of the serially connected elements forming the support. In general, the support stiffness depends on the value of the force occurring in the support and is rising linearly along with the load for the investigated range. It was also shown that the force existing in the active support also depends on the stiffness of the building being rectified. The investigations carried out show that it is advantageous to use supports with smaller stiffness for rectification, as forces with smaller values must be induced in them. The application of forces with lower values also allows the avoidance of unfavorable penetration of the unlifted part of the building into the ground.
机译:世界上有许多需要垂直矫正的建筑结构。安装在建筑物承重墙中的临时支撑物可用于执行此类纠正。支架由液压活塞千斤顶,一堆平行六面体钢构件和混凝土灌浆组成。使用这样的支撑,结构会不均匀地升高并达到所需的垂直位置。在给定时间被迫进行活塞伸出的支撑是主动支撑。目的是确定主动支撑的刚度。调查是在实验性建筑物整改过程中在原位进行的。迄今为止,尚未进行过此类调查。已经证明,所研究的支撑件的刚度是由形成支撑件的串联连接的元件的刚度引起的。通常,支撑刚度取决于在支撑中出现的力的值,并且随着载荷的增加而线性上升。还显示出主动支撑中存在的力还取决于要矫正的建筑物的刚度。进行的研究表明,使用较小刚度的支架进行矫正是有利的,因为必须在其中引入较小的力。施加较小值的力还可以避免建筑物的未提升部分不适当地渗透到地面中。

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