首页> 外文会议>International conference on structural engineering, mechanics and computation >The effect of manufacturing flaws in the meso-structure of cast glass on the structural performance
【24h】

The effect of manufacturing flaws in the meso-structure of cast glass on the structural performance

机译:铸玻璃细观结构中制造缺陷对结构性能的影响

获取原文

摘要

The success of projects such as the Crystal Houses façade in Amsterdam has triggered an increasing interest from architects, engineers and glass producers in the development and application of structural cast glass components. This interest raises, simultaneously, the needs for a controlled manufacturing process, a system for quality control and structural validation, to guarantee the production of safe components. Manufacturing-related flaws, such as stones, cord inclusions, or air-bubbles, occurring in the meso-structure of the components, form weak zones within the material and may lead to 'spontaneous' cracking. The casting parameters such as the forming temperature and corresponding glass viscosity, the dwell time at this temperature and the cooling rate, largely determine the homogeneity of the final product. Additional complexity arises once the use of waste/recycled glass is considered, due to the probable presence of variable glass compositions and miscellaneous contaminants in the initial batch. The risk of inhomogeneity and resulting eventual mechanical failure, indicates the necessity of understanding the causes of flaw-formation and the impact of the developed flaws on the structural performance of the cast components. Therefore, a series of 50 mm cubic glass components are cast at the TU Delft Glass Lab, using a selection of already formulated discarded soda-lime glasses from different commercial applications. The cubes' meso-structure is documented and- when required- scanned employing a Computer Tomography scanner and a polariscope to identify possible density differentials and internal stresses respectively. Then the cubes are tested for splitting strength and their performance is analyzed in relation to the previously documented flaws. The destructive tests suggest that there is a correlation between the meso-structure, structural performance and failure pattern of the cast glass components.
机译:阿姆斯特丹的Crystal Houses外墙等项目的成功引发了建筑师,工程师和玻璃生产商对结构浇铸玻璃组件的开发和应用的日益增长的兴趣。同时,这种兴趣引起了对受控制造过程,质量控制和结构验证系统的需求,以保证安全组件的生产。在零件的细观结构中发生的与制造相关的缺陷(例如结石,帘线夹杂物或气泡)会在材料内形成薄弱区域,并可能导致“自发”破裂。铸造参数,例如成型温度和相应的玻璃粘度,在该温度下的停留时间以及冷却速率,在很大程度上决定了最终产品的均质性。一旦考虑使用废玻璃/回收玻璃,由于在最初的批次中可能存在可变的玻璃成分和杂物,就会产生额外的复杂性。不均匀和可能导致最终机械故障的风险表明,有必要了解缺陷形成的原因以及已开发缺陷对铸件结构性能的影响。因此,在TU Delft玻璃实验室使用一系列已经配制好的废弃钠钙玻璃(来自不同商业应用)铸造了一系列50毫米立方玻璃组件。记录立方体的细观结构,并在需要时使用计算机断层扫描仪和偏光镜进行扫描,以分别识别可能的密度差和内应力。然后测试立方体的劈裂强度,并针对先前记录的缺陷分析其性能。破坏性测试表明,铸造玻璃组件的细观结构,结构性能和破坏模式之间存在相关性。

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