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首页> 外文期刊>Journal of Adhesion Science and Technology: The International Journal of Theoredtical and Basic Aspects of Adhesion Science and Its Applications in All Areas of Technology >Reducing the moisture sensitivity of linear friction welded birch (Betula pendula L.) wood through thermal modification
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Reducing the moisture sensitivity of linear friction welded birch (Betula pendula L.) wood through thermal modification

机译:通过热改性降低线性摩擦焊接桦木(Betula pendula L.)的水分敏感性

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Linear friction welding of wood is a bonding process applied to wood and during which a stiff bond line is formed by the softening and rehardening of wood components to form a composite material composed mainly of wood fibres embedded in a modified lignin matrix. Unfortunately, the bonds tend to spontaneously delaminate or lose their strength when exposed to moist conditions. Some approaches were previously applied to overcome this problem, but so far a suitable solution has not been found. This paper presents results of applying post-welding thermal modification to reduce the moisture sensitivity of welded wood. The experiments included welding of birch wood, thermal modification under superheated steam at atmospheric pressure, internal bond (IB) and tensile-shear strength testing and soaking tests. As supposed, the non-modified reference specimens performed poorly after the sevendays soaking test (on average 0.33MPa IB strength), whereas the thermally modified specimens yielded almost the same IB strength in dry and wet condition (on average e.g. 1.15 and 0.93MPa, respectively). Such a similar load bearing capacity in very different moisture conditions was previously reported only in the case of paduk wood. Similar to the reduction of IB strength occurred during the soaking test, also delamination was observed more clearly in non-modified reference specimens (e.g. 4 vs. 0 total delaminations after sevendays soaking). Therefore, the authors suggest that post-welding thermal modification could provide a suitable bond-stabilisation method against moisture, although the process parameters must be optimised in further research, for instance, to ensure scalability.
机译:木材的线性摩擦焊接是一种应用于木材的粘合工艺,在此过程中,通过木质部件的软化和再硬化来形成刚性粘合线,从而形成一种复合材料,该复合材料主要由嵌入改性木质素基质中的木质纤维组成。不幸的是,当暴露于潮湿条件下时,这些键往往会自发分层或失去强度。以前曾采用一些方法来克服此问题,但到目前为止,尚未找到合适的解决方案。本文介绍了应用焊接后热改性降低焊接木材的湿度敏感性的结果。实验包括桦木的焊接,在大气压下的过热蒸汽下的热改性,内部粘合(IB)以及拉伸剪切强度测试和均热测试。如所假设的,未改性的参考样品在7天的均热测试后表现不佳(平均IB强度为0.33MPa),而热改性的样品在干燥和湿润条件下产生的IB强度几乎相同(平均为1.15和0.93MPa,分别)。以前仅在红木中才报道过在非常不同的水分条件下具有类似的承重能力。类似于在浸泡测试过程中IB强度降低,在未改性的参考样品中也更清楚地观察到了分层(例如,浸泡7天后总分层为4比0)。因此,作者建议,焊接后的热改性可以提供一种适合的防潮粘结方法,尽管在进一步研究中必须优化工艺参数,例如以确保可扩展性。

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