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Contextualizing the Load Duration-dependent Strength of Wood Members

机译:背景化木材成员的负载持续时间依赖性强度

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Strength is defined as the capacity of a material or element to resist load and can be graphically portrayed on a load-displacement curve by the point at which the maximum load is sustained, regardless of the displacement at which it occurs. It has long been recognized that the strengths of structural materials typically exhibit some sensitivity to load duration. Most strength of materials textbooks, for example, touch on the subject of strength versus load duration and indicate that structural materials subjected to very short term loading exhibit strengths that are enhanced relative to slower loading regimens. Less well-recognized is the fact that the strengths of some structural materials under very long duration loading are substantially reduced relative to what are typically taken to be their ultimate capacities, although for years, the wood engineering community has incorporated a factor into the codes that explicitly acknowledges wood's reduced capacity under long duration loads. This paper addresses the often misunderstood phenomenon of load duration effects in wood members.
机译:强度被定义为抵抗负载的材料或元件的容量,并且可以通过最大负荷维持的点在负载 - 位移曲线上被图示描绘,而不管它发生的位移如何。已经认识到,结构材料的强度通常表现出对负载持续时间的一些敏感性。例如,材料教科书的大多数强度,触及强度与负载持续时间的主体,并表明经过非常短期加载的结构材料表现出相对于较慢的负载方案增强的强度。不太公认的是,相对于通常被认为是它们的最终能力,尽管多年来,木材工程界已经将其代码纳入代码的代码,但是相对于通常认为的最终能力的持续增长的一些结构材料的优点显着降低了明确地承认木材在长期负荷下的降低容量。本文涉及木材成员中负载持续时间效应的经常误解现象。

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