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首页> 外文期刊>Practice periodical on structural design and construction >Design and Construction Practices that Affect Diaphragm Strength and Stiffness of Postframe Buildings
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Design and Construction Practices that Affect Diaphragm Strength and Stiffness of Postframe Buildings

机译:影响后框架建筑物横隔板强度和刚度的设计和施工实践

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摘要

Including diaphragm action in sizing building posts (columns) and postembedment depths (foundation) is more consistent with the actual building performance. A large portion of in-plane loading, such as wind, is transferred to the end walls through in-plane shear via metal roofing—a phenomenon called "diaphragm action." Because of load sharing and redundancies that are not accounted for, postframe buildings are stronger and stiffer than what is normally assumed. Various construction and design practices that increase diaphragm strength and stiffness of postframe buildings are discussed. The objective of this paper is to discuss design and construction practices that contribute to the diaphragm strength and stiffness of metal-clad postframe rectangular buildings. The paper is based on data and information obtained from the full-scale metal-clad timber-framed postframe building tested over a period of 9 years, and the literature. Understanding the functions, contributions, interactions, and load sharing characteristics of the different framing, cladding, and redundant elements is critical in understanding the diaphragm action and optimizing designs of postframe buildings. The study benefits the engineers, architects, builders, and code officials of postframe buildings.
机译:在调整建筑物立柱(柱)和埋入后深度(基础)的尺寸中包括隔板作用与实际建筑物性能更加一致。诸如风之类的平面内载荷的很大一部分通过金属屋面通过平面内剪切传递到端壁,这种现象称为“膜片作用”。由于没有考虑负载分担和冗余,因此后架建筑物比通常的设想更坚固。讨论了增加后框架建筑物的隔板强度和刚度的各种构造和设计实践。本文的目的是讨论有助于金属包覆的后框架矩形建筑物的隔板强度和刚度的设计和施工实践。本文基于从经过9年测试的全尺寸金属包覆木结构后框架建筑中获得的数据和信息,以及文献资料。了解不同框架,覆层和冗余元素的功能,作用,相互作用和负载分担特性对于理解膜片作用和优化后框架建筑的设计至关重要。该研究使后架建筑物的工程师,建筑师,建筑商和规范官员受益。

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