On the Issue of Determining the Modulus of Elasticity of Bamboo Moso Under Tension

S. V. Skuratov, S. V. Shchutsky, A. A. Limantsev, Xuanzhen Song
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Abstract

Introduction. A large number of works devoted to the research of physical and mechanical properties of bamboos, methods of nodal connections of bamboo rods are indicated. The main "bamboo" countries in which bamboo is gaining popularity as a structural material in the modern construction industry are listed. With the development of modern processing technologies, bamboo is widely used in the construction industry, including in the manufacture of slabs and boards, as well as in the decoration and interior decoration of rooms in Oriental style. The results of studies of the physical and mechanical properties of various types of bamboos conducted by scientists from different countries are currently combined into three ISO editions concerning building codes and rules for the use of bamboos in construction.Materials and Methods. Consideration of the macrostructure of bamboo allows us to characterize the high mechanical properties inherent in natural and artificial polymers. Such an approach to the consideration of bamboo and wood as natural polymers makes it possible to use methods applied to the testing of wood and structural plastics in determining the mechanical characteristics of bamboo. Two series of samples of five pieces each were made. Tables of geometric characteristics of the cross-section of the samples are compiled. A constructive solution is proposed related to the reinforcement of the sample blades with an epoxy composition in order to increase the reliability of securing the samples in the grips of the test rig.Results. To determine the elastic modulus of bamboo under tension, an experimental setup consisting of two grips in which the test sample is placed has been developed and manufactured. Through the lower gripper, the test load is applied by means of a steel rod with a loading platform on which the calibrated piece loads are stacked. To determine the magnitude of the absolute elongation of the sample base during stretching, contact deflection meters are used, as which watchtype indicators of the Mitutoyo company (Japan) are used.Discussion and Conclusion. The formula for determining the elastic modulus under tension is given. The arithmetic mean of the modulus of elasticity of the tested samples and the mean square deviation of the results of the modulus of elasticity are taken as the test result. The analysis of the obtained results allows us to conclude that the experimental values of the modulus of elasticity of Moso bamboo under tension reliably coincide with the values known in the technical literature.
关于确定毛竹在拉力作用下的弹性模量问题
简介大量著作致力于研究竹子的物理和机械性能、竹竿节点连接方法。列出了竹子作为结构材料在现代建筑业中越来越受欢迎的主要 "竹子 "国家。随着现代加工技术的发展,竹子被广泛应用于建筑行业,包括板材和木板的制造,以及东方风格的房间装饰和内部装修。目前,不同国家的科学家对各种竹子的物理和机械性能进行了研究,研究成果被纳入国际标准化组织关于建筑规范和竹子在建筑中的使用规则的三个版本中。考虑到竹子的宏观结构,我们可以确定天然和人工聚合物固有的高机械性能。这种将竹子和木材视为天然聚合物的方法使我们可以使用木材和结构塑料的测试方法来确定竹子的机械特性。我们制作了两组样品,每组五根。编制了样品横截面几何特征表。提出了用环氧树脂加固样品叶片的建设性解决方案,以提高将样品固定在试验台夹具上的可靠性。为了测定竹子在拉力作用下的弹性模量,我们开发并制造了一种由两个夹具组成的实验装置,将测试样品放置在两个夹具中。通过下部夹具,用一根钢棒施加试验载荷,钢棒上有一个加载平台,平台上堆放着校准过的载荷。为了确定拉伸过程中试样基体的绝对伸长量,使用了接触式挠度仪,其中使用了日本三丰公司的手表式指示器。给出了确定拉伸弹性模量的公式。测试样品弹性模量的算术平均值和弹性模量结果的均方偏差作为测试结果。通过对所得结果的分析,我们可以得出结论:毛竹在拉力作用下的弹性模量实验值与技术文献中的已知值完全吻合。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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