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首页> 外文期刊>Slovak Journal of Civil Engineering >Timber beams subjected to long - term loading
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Timber beams subjected to long - term loading

机译:长期受力的木梁

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Wood is a significant structural material, which is often used for timber bearing structures. Elements of timber structures must especially satisfy safety requirements, which are expressed by the ultimate limit states in the established standards. The structure must also satisfy the serviceability limit states. Local and global deformations make it impossible for the structure to serve the purpose it was designed for. It is important to take the deflections and their possible increase into account in the design to provide a structure which can be used during the whole period of service. Based on earlier examinations, it is known that a timber element over the course of long-term loading shows creep behavior. The structure of wood is able to adapt to the conditions of the surrounding environment. The properties of wood are especially affected by the relative humidity of the air and then by the type, intensity and duration of the loading. The most important factors affecting the serviceability of timber structures are volume changes caused by humidity and additional deflections caused by the effects of long-term loading. These phenomena emphasize the importance of serviceability limit states for timber structures. The paper deals with a long-term experimental investigation of timber girders that are currently often used. The aim was to obtain the deflection curves and mark the time dependence and the final deflections. The paper will also define the approximations for simulating the time-dependent deflections and obtain the creep coefficients for calculating the final deflections of the girders investigated.
机译:木材是重要的结构材料,通常用于承重木结构。木材结构的元素必须特别满足安全要求,这些要求由既定标准中的极限值表示。该结构还必须满足可使用性极限状态。局部和整体变形使该结构无法达到其设计目的。重要的是在设计中要考虑到挠度及其可能增加的问题,以提供可在整个服务期间使用的结构。根据较早的检查,已知长期加载过程中的木材元素表现出蠕变行为。木材的结构能够适应周围环境的条件。木材的特性尤其受空气相对湿度的影响,然后受负载类型,强度和持续时间的影响。影响木材结构可使用性的最重要因素是湿度引起的体积变化和长期载荷作用引起的额外挠度。这些现象强调了木材结构使用寿命极限状态的重要性。本文涉及对当前经常使用的木梁的长期实验研究。目的是获得挠度曲线并标记时间依赖性和最终挠度。本文还将定义模拟与时间有关的挠度的近似值,并获得蠕变系数以计算所研究大梁的最终挠度。

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