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A Flexible Adhesive Layer to Strengthen Glulam Beams

机译:增强胶合木梁的柔性胶层

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摘要

Glulam is manufactured by gluing graded timber boards on top of each other with standard, stiff adhesives to form a beam. The research presented here is concerned with the use of a single flexible adhesive layer at a certain position of the beam cross section instead of the standard, stiff adhesive. In a first step, fundamental theoretical considerations for a favourable redistribution of the stresses over the cross section of the beam are presented and the position of the flexible adhesive layer is optimized in order to obtain the highest bending resistance of the total beam. Further calculations help to determine the requisite mechanical properties of the adhesive layer. They are communicated to the adhesive manufacturer as target values for the development of new adhesives. The industrial partner was able to produce several adhesive layers with the required mechanical properties. There was a need to select a limited number of the adhesive layers for further tests. The selection was done based on creep and delamination tests. Finally, several beams were manufactured with three selected adhesive layers. Bending tests were carried out to verify the theoretical predictions. The beams manufactured with two of the selected adhesives did not perform well on the large scale as compared to the small scale tests. One of the adhesive layers, however, gave completely satisfactory results: The beams manufactured with this adhesive layer exhibited much higher strength than the control beams and thus confirmed the theoretical expectations. The authors envision a new strengthening technique for glulam beams with this simple technique of using a single, flexible adhesive layer in the beam cross section.
机译:胶合木是通过用标准的硬质胶粘剂将分级的木板彼此粘合在一起形成梁而制成的。此处提出的研究涉及在梁横截面的某个位置使用单个柔性粘合剂层,而不是标准的刚性粘合剂。在第一步中,提出了在梁的横截面上有利地重新分配应力的基本理论考虑,并且优化了柔性粘合层的位置,以便获得整个梁的最高抗弯性。进一步的计算有助于确定粘合剂层的必要机械性能。将它们作为新粘合剂开发的目标值传达给粘合剂制造商。该工业合作伙伴能够生产出具有所需机械性能的多个粘合剂层。需要选择有限数量的粘合剂层用于进一步测试。选择是根据蠕变和分层测试完成的。最后,用三个选定的粘合剂层制造了几根梁。进行弯曲测试以验证理论预测。与小规模测试相比,使用两种选定的粘合剂制造的梁在大范围内表现不佳。然而,其中一个粘合剂层给出了完全令人满意的结果:用该粘合剂层制造的梁比控制梁具有更高的强度,因此证实了理论上的期望。作者通过这种简单的技术在梁截面中使用单个柔性粘合剂层,构想了胶合木梁的新加固技术。

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