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首页> 外文期刊>International Journal of Materials Engineering >Impact Strength in Dinamic Bending as a Function of the Strength in Static Bending of Wood
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Impact Strength in Dinamic Bending as a Function of the Strength in Static Bending of Wood

机译:动态弯曲的冲击强度与木材静态弯曲强度的关系

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Wood is a natural, renewable and abundant material in Brazilian territory. But its use in civil construction is still commonplace. When compared to materials such as steel and concrete, it has many advantages, such as its resistance to density ratio. Where it is possible to observe a high resistance, equivalent to concrete of high performance with a much smaller density. Due to the heterogeneity of the woods, very different behaviors may occur in response to the various requests. Thus, for a better use of its capacity is essential knowledge of its properties. Among them is impact strength in bending. Impact strength in bending knowledge is fundamental in structures that will be exposed to short-lived impact loads, such as bridges. But due to some factors this is not a mechanical property that is very accessible to most research centers. The objective of this research was to use linear, exponential, logarithmic and geometric regression models to verify if it is possible to obtain a relation between the resistance modulus in the static bending, which is more easily obtained, and the impact strength in bending values. Ten Brazilian wood species were selected and static bending and impact in bending tests were performed according to ABNT NBR 7190:1997. All tests were done in the Wood and Timber Structures Laboratory (LaMEM), in the Department of Structural Engineering of the Engineering School of S?o Carlos, University of S?o Paulo. According to the results and the statistical analysis performed, it was possible to conclude that the Strength in static bending does not seem to be a good estimator of the impact strength in bending of wood.
机译:木材是巴西领土上的天然,可再生和丰富的材料。但是它在民用建筑中的使用仍然很普遍。与钢材和混凝土等材料相比,它具有许多优势,例如,耐密度比。在可能观察到高电阻的地方,它等效于密度小得多的高性能混凝土。由于森林的异质性,响应各种要求可能会出现非常不同的行为。因此,为了更好地利用其性能,必须了解其性能。其中包括弯曲时的冲击强度。弯曲知识中的冲击强度对于承受短时冲击载荷(例如桥梁)的结构至关重要。但是由于某些因素,这不是大多数研究中心都无法获得的机械性能。这项研究的目的是使用线性,指数,对数和几何回归模型来验证是否有可能获得更容易获得的静态弯曲中的阻力模量与弯曲值的冲击强度之间的关系。选择了十种巴西木材,并根据ABNT NBR 7190:1997进行了静态弯曲和弯曲测试。所有测试均在圣保罗大学圣卡洛斯工程学院结构工程系的木材和木材结构实验室(LaMEM)中完成。根据结果​​和进行的统计分析,可以得出结论,静态弯曲强度似乎不能很好地估计木材弯曲强度。

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