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Evaluating fundamental position-dependent differences in wood cell wall adhesion using nanoindentation

机译:使用纳米压痕评估木材细胞壁粘附力的基本位置依赖性差异

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摘要

Spruce wood specimens were bonded with one-component polyurethane (PUR) and urea-formaldehyde (UF) adhesive, respectively. The adhesion of the adhesives to the wood cell wall was evaluated at two different locations by means of a new micromechanical assay based on nanoindentation. One location tested corresponded to the interface between the adhesive and the natural inner cell wall surface of the secondary cell wall layer 3 (S3), whereas the second location corresponded to the interface between the adhesive and the freshly cut secondary cell wall layer 2 (S2). Overall, a trend towards reduced cell wall adhesion was found for PUR compared to UF. Position-resolved examination revealed excellent adhesion of UF to freshly cut cell walls (S2) but significantly diminished adhesion to the inner cell wall surface (S3). In contrast, PUR showed better adhesion to the inner cell wall surface and less adhesion to freshly cut cell walls. Atomic force microscopy revealed a less polar character for the inner cell wall surface (S3) compared to freshly cut cell walls (S2). It is proposed that differences in the polarity of the used adhesives and the surface chemistry of the two cell wall surfaces examined account for the observed trends.
机译:云杉木材标本分别用单组分聚氨酯(PUR)和脲醛(UF)粘合剂粘合。借助于基于纳米压痕的新的微机械测定法,在两个不同的位置评估了粘合剂对木材细胞壁的粘附力。测试的一个位置对应于粘合剂与二次电池壁层3的天然内部细胞壁表面之间的界面(S3),而第二个位置对应于粘合剂与刚切割的二次电池壁层2(S2)之间的界面)。总的来说,与UF相比,发现PUR的细胞壁粘附力有降低的趋势。位置分辨检查显示,UF与刚切开的细胞壁具有出色的粘附力(S2),但与细胞内壁表面的粘附力却明显降低(S3)。相反,PUR对细胞内壁表面表现出更好的粘附力,而对新鲜切割的细胞壁则表现出更少的粘附力。原子力显微镜显示,与新鲜切割的细胞壁(S2)相比,细胞壁内表面(S3)的极性较小。提出所用粘合剂的极性和所检查的两个孔壁表面的表面化学的差异是观察到的趋势的原因。

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