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首页> 外文期刊>Wood and Fiber Science >Mechanical properties of individual southern pine fibers. Part III: Global relationships between fiber properties and fiber location within an individual tree.
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Mechanical properties of individual southern pine fibers. Part III: Global relationships between fiber properties and fiber location within an individual tree.

机译:单个南方松纤维的机械性能。第三部分:纤维特性与单个树内纤维位置之间的全局关系。

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摘要

This is the third and final paper in a three-part series investigating the effect of location within a tree on the mechanical properties of individual wood tracheids. This paper focuses on the definition of juvenile, transition, and mature zones asclassified by fiber stiffness, strength, microfibril angle, and cross-sectional area. The average modulus of elasticity and ultimate tensile stress of all loblolly pine fibers were, in equal proportion of earlywood and latewood, 17.3 Gpa and 824 Mpa, respectively. The average microfibril angle was found to be 15.4 degrees, with rings 5 and 48 averaging 26.8 and 6.1 degrees, respectively. Normalization of all mechanical and physical properties showed that the juvenile zone is not cylindrical but rather biconical, tapering from stump to below the live crown and then again from the live crown to the bole tip. The transition zone parallels the juvenile zone, ranging in width from 3 to 15 rings. Fiber properties continued to improve slightly throughout theduration of the mature zone.
机译:这是一个由三部分组成的系列文章的第三篇也是最后一篇论文,该系列研究了树木中的位置对单个木材气管的机械性能的影响。本文重点介绍了按纤维硬度,强度,微纤丝角和横截面积分类的少年,过渡区和成熟区的定义。所有火松木纤维的平均弹性模量和极限拉伸应力在早材和晚材中所占的比例分别为17.3 Gpa和824 Mpa。发现平均微纤丝角为15.4度,环5和48分别平均为26.8度和6.1度。所有机械和物理特性的归一化显示,少年区不是圆柱形的而是双圆锥形的,从树桩到活动冠冠下方逐渐变细,然后又从活动冠冠到胆尖逐渐变细。过渡区与少年区平行,宽度从3到15个环。在整个成熟区期间,纤维性能继续略有改善。

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