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Wettability of welded wood-joints investigated by the Wilhelmy method: part 1. Determination of apparent contact angles, swelling, and water sorption

机译:Wilhelmy方法研究的焊接木头接头的润湿性:第1部分。表观接触角,肿胀和水吸附的测定

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This study presents a novel application of the Wilhelmy plate method on welded joints of Scots pine sapwood and beech. Welding resulted in an increase in the contact angle (increased hydrophobicity) as well as a decrease in the water uptake and swelling of the welded pine-joint compared to non-welded pine. When the welding time was extended from 4 to 5 s, these properties were further pronounced. Welding of beech, on the other hand, led to an increase in the contact angle and a decrease in the water uptake, but an increase in the swelling.Fourier Transform Infrared spectroscopy showed that welding increased the aliphatic C-H and unsaturated C=C stretching absorption bands in pine and beech. Scanning electron microscopy showed a dense structure at the welded joints of the both species, giving evidence of a lower porosity that leads to a lower permeability as a result of the welding.
机译:本研究介绍了威廉·苏格兰焊接关节的威廉米板方法的新应用。与非焊接松树相比,焊接导致接触角(增加疏水性增加)的增加以及焊接松树 - 接头的溶胀和膨胀。当焊接时间从4-5秒延伸时,这些性质进一步发作。另一方面,山毛榉的焊接导致接触角的增加和水吸收的减少,但膨胀的增加。膨胀性的红外光谱显示焊接增加脂肪族CH和不饱和C = C拉伸吸收松树和山毛榉的乐队。扫描电子显微镜显示在两种物种的焊接接头处致密的结构,赋予较低孔隙率的证据,导致焊接的较低渗透性。

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