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Tests on stainless steel frames. Part Ⅰ: Preliminary tests and experimental set-up

机译:测试不锈钢框架。第Ⅰ部分:初步试验和实验设置

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Austenitic stainless steel is an excellent construction material for structures required to withstand accidental loads such as seismic and/or fire events due to its appropriate mechanical properties, including high ductility, considerable strain hardening and good fire resistance. In recent years, a considerable amount of research has been devoted to the understanding of the structural performance of single isolated stainless steel members. However, new trends in the design philosophy moving from current member-based methods to direct system based approaches will require more experimental evidence on more complex structural systems such as frames, which are currently scarce. With the aim of contributing to the advances in this field, one of the first known extensive experimental programmes on austenitic stainless steel frames is presented in this paper. The experimental programme comprised several sub-programmes, in which the performance of stainless steel structures at different levels was investigated. This paper describes a series of tests on austenitic stainless steel cross-sections and members, which were utilized in the planning and analysis of the subsequent frame tests. The paper also outlines the complex experimental set-up adopted for the stainless steel frame tests, including the implemented loading schemes, auxiliary elements and instrumentation, through a detailed explanation of the different issues encountered in the process of their definition. The knowledge gained and the experiences reported in this paper could assist researchers in planning similar experimental programmes.
机译:奥氏体不锈钢是一种优异的结构材料,用于承受由于其适当的机械性能,包括高延展性,相当大的硬化和耐火性耐火性,所需的结构需要承受意外载荷,例如地震和/或火灾事件。近年来,致力于了解单一隔离式不锈钢构件的结构性性能的大量研究。然而,从当前的基于成员的方法转向直接系统的方法的新趋势将需要更多关于更复杂的结构系统(例如帧)的实验证据,这些系统目前稀缺。旨在为该领域的进展有所贡献,本文提出了奥氏体不锈钢框架上的第一众所周知的广泛实验程序之一。实验计划包括多个子程序,其中研究了不同水平的不锈钢结构的性能。本文介绍了一系列关于奥氏体不锈钢横截面和构件的测试,其在随后的框架测试的规划和分析中使用。本文还概述了不锈钢架试验采用的复杂实验设置,包括实施的装载方案,辅助元件和仪器,通过详细解释其定义过程中遇到的不同问题。获得的知识和本文报告的经验可以帮助研究人员规划类似的实验计划。

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