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首页> 外文期刊>Wood and Fiber Science >Elastic properties of hot-pressed aspen strands.
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Elastic properties of hot-pressed aspen strands.

机译:热压白杨木条的弹性性能。

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The in-situ elastic constants of a wood strand are affected by the physical changes that it experiences during the manufacturing process of a wood-strand composite. The hot-pressing conditions and the location in the mat govern the environmental conditions surrounding each strand, which in turn influence the adhesive cure and final strand density. Few studies have examined systematically the changes in strand elastic constants as influenced by strand density, location, and/or resin content. Understanding these interactions is important to determine the role of pressing variables on altering strand properties and to accurately model structure-property relationships in wood-strand composites. The following presentation will discuss the results of a study conducted to investigate the influence of strand location and resin content on changes in strand density and elastic properties within a pressed panel. Strands for this study were produced from 60- to 70-year-old quaking aspen (Populus tremuloides) trees harvested locally. In-situ properties of the strands were evaluated after isolating the strands from resinated hot-pressed oriented strandboards. Response models based on mixture design, considering the hot-pressing effects, were developed to predict the in-situ elastic constants of strands. Addition of resin positively influenced the strand stiffness and decreased strand's Poisson's ratio. Strand stiffness greatly increased with increasing resin content in regions of higher densification..
机译:木线的原位弹性常数受木线复合材料制造过程中发生的物理变化的影响。热压条件和垫子中的位置决定着每根股线周围的环境条件,进而影响粘合剂的固化和最终股线的密度。很少有研究系统地检查线弹性常数受线密度,位置和/或树脂含量的影响。了解这些相互作用对于确定压榨变量在改变线束性能中的作用以及准确地对木绞线复合材料中的结构-属性关系进行建模非常重要。下面的演示将讨论研究结果,以研究股线位置和树脂含量对压制面板内股线密度和弹性性能变化的影响。这项研究使用的是当地采伐的60到70岁的老龄白杨(Populus tremuloides)树。从树脂化的热压定向刨花板中分离出绞线后,评估了绞线的原位性能。考虑到热压效果,开发了基于混合物设计的响应模型,以预测钢绞线的原位弹性常数。树脂的添加对钢绞线的刚度产生积极影响,并降低钢绞线的泊松比。在较高密度的区域中,随着树脂含量的增加,股线刚度大大增加。

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