首页> 外文会议>Symposium on Symposium on Dimension Stone Use in Building Construction; 20071031; Tampa,FL(US) >Characteristics That Affect the Integrity of Existing Thin Stone Cladding
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Characteristics That Affect the Integrity of Existing Thin Stone Cladding

机译:影响现有薄石砌面完整性的特征

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Prestigious structures began using thin natural stone panels as wall cladding to give them historic character in the late 1960s. Easier fabrication methods increased stone production and enabled larger, thinner panels that were lightweight. Unfortunately, engineering and testing did not keep pace. Inadequate initial evaluation of material durability and panel strength resulted in varying degrees of distress developing in some claddings. Because early stone cladding was installed with little structural analysis, current evaluation should predict capability by checking characteristics initial engineering likely ignored. Comprehending all characteristics that affect the integrity of thin stone cladding must be the objective of a responsible maintenance program. The program must evolve with each evaluation's findings to adapt to the specifics of that building and its changes over time. Maintaining the safety of a building's skin is essential to extending the service life of the whole structure. Verifying safety requires more than a cursory visual check for exposed elements to find them before they fall. In the past, stone cladding was completely removed from too many structures that experienced distress. Some evaluations misunderstood or misdi-agnosed affect of distress on integrity. They failed to investigate some characteristics, or did not relate others, yielding an incomplete assessment. Adding evaluation of characteristics common to traditional structural assessment to a cladding program adds rigor and objectivity, avoiding misdiagnosis and unjustified expense. In rare cases, remove-and-replace-all may still be required, but only if gross problems exist with support. However, in most cases, an appropriate program will not only identify the parts creating the highest risk, but the program can prescribe selective replacement instead of complete recladding as a long-term remedy.
机译:久负盛名的建筑开始使用天然石材薄板作为墙板,使其具有1960年代后期的历史特色。更简单的制造方法可提高石材产量,并能实现更大,更薄的轻质面板。不幸的是,工程和测试跟不上步伐。最初对材料耐久性和面板强度的评估不足,导致某些覆层出现不同程度的遇险。由于安装早期石材砌面时几乎没有结构分析,因此当前评估应通过检查可能被忽略的初始工程特征来预测性能。理解影响薄石材立面完整性的所有特征,必须是负责任的维护计划的目标。该计划必须随着每个评估的发现而发展,以适应该建筑物的特定特征及其随时间的变化。维持建筑物皮肤的安全性对于延长整个结构的使用寿命至关重要。验证安全性不仅需要粗略的视觉检查,还可以在裸露的元素掉落之前对其进行发现。过去,石砌被完全从太多遭受困扰的结构中移除。一些评估误解或误诊了痛苦对完整性的影响。他们没有研究某些特征,或者没有关联其他特征,从而得出了不完整的评估。将与传统结构评估相同的特征评估添加到熔覆程序中,可以增加严密性和客观性,避免错误诊断和不合理的费用。在极少数情况下,仍然可能需要全部删除和替换,但前提是在支持方面存在严重问题。但是,在大多数情况下,适当的程序不仅可以识别造成最高风险的零件,而且该程序还可以规定选择性更换而不是完全更换作为长期补救措施。

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