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Dimension stone design - kerf anchorage in limestone and marble

机译:石材尺寸设计-石灰石和大理石的切缝锚固

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This paper describes a study on kerf anchorage behaviour in three types of stones. Two limestone and various marble specimens were submitted to a series of tests - namely standard absorption, bulk specific gravity and flexural strength tests - to determine their physical and mechanical properties. The paper focuses on the results of tests carried out according to the ASTM Standard Test Method for Strength of Individual Stone Anchorages in Dimension Stone. These tests were performed on a stiff rail continuous anchorage system on both the front and rear kerf legs. Stress analysis and finite element method calculations were the basis for the proposed semi-empirical formula to estimate this anchorage system's breaking load under the above-mentioned conditions. Through a general but practical example, it is shown that a design focused on the bending strength of stone panels, to the detriment of the kerf anchorage, is an unsafe and yet common practice. The paper emphasises that designing stone cladding systems with continuous kerf must take into account different effects in order to evaluate the effective stress in the critical region of the kerf geometry. Separate stress concentration factors are proposed to account for the kerf geometry and the specimens' specific properties.
机译:本文介绍了对三种类型结石的切缝锚固行为的研究。对两个石灰石和各种大理石样品进行了一系列测试,即标准吸收,堆积比重和抗弯强度测试,以确定它们的物理和机械性能。本文着重于根据ASTM标准测试方法对尺寸石材中单个石材锚固强度进行测试的结果。这些测试是在前后切口腿上的硬轨连续锚固系统上进行的。应力分析和有限元方法计算是所提出的半经验公式在上述条件下估算该锚固系统的破坏荷载的基础。通过一个一般但实际的例子,可以看出,着重于石板抗弯强度,不利于缝隙锚固的设计是不安全的,但仍是普遍的做法。本文强调,设计具有连续切口的石材砌面系统必须考虑不同的影响,以便评估切口几何关键区域中的有效应力。建议使用单独的应力集中系数来考虑切口几何形状和标本的特殊性能。

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