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Influence of silvicultural regime on wood structure characteristics and mechanical properties of clear wood in Pinus sylvestris.

机译:营林方式对樟子松透明木材木材结构特征和力学性能的影响。

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The objective of the study presented here was to evaluate the influence of two contrasting silvicultural regimes on the structural characteristics and mechanical properties of different wood tissue types at different heights in Scots pine (Pinus sylvestris) trees, and reasons for these differences. Wood samples were taken from two stands (a dense 85-year-old stand established by direct sowing and a 56-year-old widely spaced stand established by planting, designated SDR and PWR, respectively in the boreal zone of Sweden). The wood properties associated with the examined silvicultural regimes differed, in terms of both structural characteristics (with up to fivefold differences between SDR and PWR) and mechanical properties (with up to almost threefold differences between SDR and PWR). Differences between the regimes were highest for stiffness, followed by strength and hardness properties and lowest for relative stiffness after 1000 h of loading (creep) (with higher parameter values for SDR than for PWR in each case). The rankings could be explained by differences among the mechanical properties in their sensitivity to maturation of wood characteristics. In conclusion, silvicultural regimes have great potential to regulate wood structural characteristics and mechanical properties, apparently due to the influences of the green crown and growth rate on the vascular cambium, the strength of which vary throughout the rotation period. A silvicultural regime could therefore be seen as a tool that can be used to select material qualities and to make wood a more homogenous material for engineers..
机译:这里提出的研究的目的是评估两种不同的造林方式对苏格兰松树(Pinus sylvestris)树中不同高度的不同木材组织类型的结构特征和机械性能的影响,以及造成这些差异的原因。木材样品取自两个林分(分别在瑞典的北方地区通过栽种建立的稠密的85年树龄树种,以及通过种植建立的56年的宽间隔林树种,分别命名为SDR和PWR)。在结构特征(SDR和PWR之间的差异高达五倍)和机械性能(SDR和PWR之间的差异高达三倍)方面,与所调查的造林制度相关的木材性能有所不同。在载荷(蠕变)1000 h之后,两种方案之间的差异对于刚度来说是最高的,其次是强度和硬度特性,对于相对刚度来说是最低的(在每种情况下,SDR的参数值均高于PWR的参数值)。可以通过机械特性对木材特性成熟度的敏感性之间的差异来解释排名。总之,营林体制具有调节木材结构特征和机械性能的巨大潜力,这显然是由于生冠和生长速率对血管形成层的影响,其强度在整个旋转期内都会变化。因此,造林制度可以看作是一种工具,可以用来选择材料质量并使木材成为工程师更均匀的材料。

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