首页> 外文期刊>Smart structures and systems >Experimental mechanical analysis of traditional in-service glass windows subjected to dynamic tests and hard body impact
【24h】

Experimental mechanical analysis of traditional in-service glass windows subjected to dynamic tests and hard body impact

机译:经过动态测试和硬体影响的传统玻璃窗的实验力学分析

获取原文
获取原文并翻译 | 示例

摘要

The large use of glass in buildings, and especially the presence of fenestrations and facade systems, represents a potential critical issue for people safety. The brittle nature of glass (with limited elastic deformation and resistance) is often enforced by its use in combination of several secondary components, whose reciprocal interaction and potential damage should be properly assessed. In the case of windows, accordingly, a special care should be spent for glass members but also for the framing system and possible adhesive or mechanical connections. This study aims at exploring the dynamic response and damage sensitivity of traditional glass window systems, based on the experimental derivation of few key material properties and mechanical parameters. To this aim the attention is focused on traditional, in-service windows that belongs to existing residential buildings and are typically sustained by timber frames, through a linear flexible connection. In doing so, major advantage is taken from experimental analysis, both in the static and dynamic field, for whole window assemblies of single components. For comparative purposes, selected window specimens including plastic (PVC) frame members and Insulated Glass Units (IGUs) are also taken into account in the paper. The static characteristics of the windows components are first preliminary derived. The dynamic performance of such a kind of systems is then experimentally explored with the support of modal analysis techniques and hard body impact procedures, including the experimental derivation of stiffness parameters for the frame members and the glass panels. Further assessment of experimental outcomes is finally achieved with the support of Finite Element numerical analyses.
机译:玻璃在建筑物中大量使用,特别是奉献和门面系统的存在,代表了人们安全的潜在关键问题。玻璃的脆性(具有有限的弹性变形和抗性)通常通过其组合使用几种二级组分来强制,其互易相互作用和潜在损坏应得到适当的评估。因此,在Windows的情况下,应为玻璃构件花费特别的护理,而且还要用于框架系统和可能的粘合剂或机械连接。本研究旨在探索传统玻璃窗系统的动态响应和损坏敏感性,基于少数关键材料特性和机械参数的实验推导。为此目的,关注属于现有住宅建筑物的传统窗户,通常由木材框架通过线性柔性连接而受到的传统窗户。在这样做时,针对单个组件的整个窗口组件,从实验分析中取出主要优点。对于比较目的,还考虑在纸张中包括塑料(PVC)框架构件和绝缘玻璃单元(IGU)的所选窗口样本。窗口组件的静态特征是首先初步衍生。然后通过支持模态分析技术和硬体冲击程序进行实验地探索这种系统的动态性能,包括框架构件和玻璃面板的刚度参数的实验推导。通过有限元数值分析的支持,最终实现了对实验结果的进一步评估。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号