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Mechanical performance and cellulose microfibrils in wood with high S2 microfibril angles

机译:具有高S2微纤角的木材的机械性能和纤维素微纤

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Corewood and compression wood, both with high S2 microfibril angles, are the worst parts of the tree most in need of improvement in wood quality. This study focuses on the characteristics of cellulosic reinforcement in wood with high S2 microfibril angles lying between 35° and 60°, as well as the probable influence of these characteristics on wood longitudinal mechanical properties. Stiffness and tensile strength were measured on 221 thin radiata pine wood strips. The results indicate that at high angles, the average values of wood stiffness and tensile strength are low with relatively large variations. The variations of stiffness and strength are weakly correlated with the variation of S2 microfibril angles, regardless of wood type. Further study involved examining the characteristics of cellulose microfibrils within the S2 layer using dual axis electron tomography for samples with the same microfibril angle but differing mechanical performance. From the fact that the severe compression wood possessed fewer cellulose microfibrils and had abundant dislocations, and that at many kinking points these cellulose microfibrils were broken down into shorter dislocation segments, it was concluded that the characteristics of cellulose microfibril reinforcement are responsible for the inferior stiffness and tensile strength in the severe compression wood compared with normal corewood with the same high S2 microfibril angle.
机译:具有高S2微纤丝角的芯材和压缩材是最需要提高木材质量的最差部分。这项研究的重点是高S2微纤丝角介于35°和60°之间的木材中的纤维素增强特性,以及这些特性对木材纵向力学性能的可能影响。在221条辐射松木细条上测量了刚度和拉伸强度。结果表明,在大角度下,木材刚度和抗拉强度的平均值较低,变化较大。不论木材类型如何,刚度和强度的变化与S2微纤丝角度的变化之间的关系微弱。进一步的研究包括使用双轴电子断层扫描技术检查具有相同微纤丝角但机械性能不同的样品的S2层中纤维素微纤丝的特性。从严重的压缩木材中纤维素微纤维少且位错丰富,而且这些纤维素微纤维在许多弯折点被分解成较短的位错段这一事实,可以得出结论,纤维素微纤维增强的特性是造成刚性差的原因。与相同高S2微纤丝角的普通芯材相比,重压材的抗拉强度和抗张强度。

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