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在拉伸区用钢和玄武岩棒材增强的松树(L.)木材制成的结构胶合木构件的强度特性

Strength Properties of Structural Glulam Elements from Pine ( L.) Timber Reinforced in the Tensile Zone with Steel and Basalt Rods.

作者信息

Mirski Radosław, Kuliński Marcin, Dziurka Dorota, Thomas Marta, Antonowicz Ryszard

机构信息

Department of Wood-Based Materials, Poznań University of Life Sciences, ul. Wojska Polskiego 28, 60-627 Poznań, Poland.

Faculty of Civil and Transport Engineering, Poznan University of Technology, Piotrowo 5, 60-965 Poznań, Poland.

出版信息

Materials (Basel). 2021 May 15;14(10):2574. doi: 10.3390/ma14102574.

Abstract

The study analyzed potential applicability for asymmetric reinforcement of glulam beams using materials with a higher modulus of elasticity. Reinforcement elements included smooth and ribbed steel rods as well as basalt rods. These rods were placed only in the tensile zone, assuming that they will not only impart increased rigidity but first of all will reduce the scatter of bending strength values. What is significant, tests were conducted on timber with defects, as it is most commonly used in industrial practice. Analyses showed that this provides an increase in rigidity close to the assumed level. A significant increase in strength was observed. The manufactured beams reinforced with steel and basalt rods were characterized by mean bending strength amounting to 54 and 47 N/mm, respectively. However, no significant improvement was found in the scatter of the observed variable. Beams reinforced with steel exhibit a 20% higher strength than unreinforced beams. The lower strength of beams reinforced with basalt bars may be related to the lower modulus of elasticity of the basalt itself.

摘要

该研究分析了使用具有较高弹性模量的材料对胶合木梁进行不对称加固的潜在适用性。加固元件包括光圆钢棒、带肋钢棒以及玄武岩棒。这些棒材仅放置在受拉区,假定它们不仅会增加刚度,而且首先会减少抗弯强度值的离散性。重要的是,对有缺陷的木材进行了测试,因为它在工业实践中最为常用。分析表明,这使得刚度增加接近假定水平。观察到强度有显著提高。用钢棒和玄武岩棒加固制造的梁的平均抗弯强度分别为54 N/mm和47 N/mm。然而,在所观察变量的离散性方面未发现显著改善。用钢加固的梁比未加固的梁强度高20%。用玄武岩棒加固的梁强度较低可能与玄武岩本身较低的弹性模量有关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/73bb/8157097/59d69595a042/materials-14-02574-g001.jpg

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