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Shear strain and microscopic characterization of a bamboo bonding interface with poly(vinyl alcohol) modified phenol-formaldehyde resin

机译:聚乙烯醇改性酚醛树脂与竹结合界面的剪切应变和微观表征

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摘要

The study of the shear strain distribution at the bonding interface helped us to understand the bamboo bonding interface response mechanisms to solve problems of ply bamboo deformation or bonding failure. The shear strain distribution across a two-ply bamboo sheet bonded with a ductile phenol-formaldehyde resin (PF) modified by poly(vinyl alcohol) (PVA) was measured by means of electronic speckle pattern interferometry, along with tensile strength measurements to prove the shear stain distribution on a macroscopic scale. This research effectively combined macroscopic mechanical properties with microcosmic interfacial mechanical properties. The shear strength and shear strain results showed that PF modified with 20% PVA performed better than common PF and PF modified with 5 and 10% PVA. Microscopic fluorescent characterization of the bonding interface also provided evidence that a new bonding mechanism was adequate for bamboo bonding under the ductile PF modified with 20% PVA. Moreover, we suppose that the results of this study will help in the choice of bamboo-specific adhesives under different strain conditions.
机译:对粘结界面处的剪切应变分布的研究有助于我们了解竹粘结界面的响应机制,以解决层板竹变形或粘结破坏的问题。通过电子散斑图干涉法测量了用聚乙烯醇(PVA)改性的延性酚醛树脂(PF)粘结的两层竹板上的剪切应变分布,并通过拉伸强度测量来证明宏观上的剪切污渍分布。这项研究有效地结合了宏观力学性能与微观界面力学性能。剪切强度和剪切应变结果表明,用20%PVA改性的PF的性能优于普通PF和用5%和10%PVA改性的PF。结合界面的微观荧光特性也提供了证据,表明在用20%PVA改性的韧性PF下,一种新的结合机制足以进行竹结合。此外,我们认为这项研究的结果将有助于在不同应变条件下选择竹子专用胶粘剂。

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