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Potential of moderately compressed wood as an elastic component of wooden composites

机译:中等压缩木材作为木质复合材料弹性成分的潜力

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摘要

Japanese cedar wood was moderately compressed by 50 % in the radial (R) direction. The compressed wooden blocks were glued into the form of a beam with R directions aligned in the longitudinal direction of the beam. The compressed wooden beam (CR) showed excellent ductility and elasticity comparable to synthetic rubbers. The elastic deflection of the CR was further increased when the tensile side was reinforced by a thin compressed wooden plate (CL), because this ensured that the CR was always in a compressed state while tensile stress was supported by the CL. The CR + CL composite exhibited large deflections ten times greater than that of the original cedar lumber, a Charpy value corresponding to the high amount of energy absorbed in impact bending comparable to that of densified wood, and a large critical bending work exceeding that of uncompressed wood in the direction of the fiber. The soft and durable nature of the composite beam was attributed to the softness and elasticity of the moderately compressed wood, in which the folded cell walls behaved as flat springs.
机译:日本雪松木在径向(R)方向上被适度压缩了50%。将压缩的木块胶合成横梁的形式,其R方向在横梁的纵向方向上对齐。与合成橡胶相比,压缩木梁(CR)具有出色的延展性和弹性。当通过薄的压缩木板(CL)加固受拉侧时,CR的弹性挠度会进一步增加,因为这确保了CR始终在受CL支撑拉伸应力的同时始终处于压缩状态。 CR + CL复合材料的挠度比原始雪松木材大十倍,夏比值对应于冲击弯曲中吸收的大量能量,与致密木材相当,夏比值与未压缩的相比大,临界弯曲功木材在纤维方向上。复合梁的柔软耐用特性归因于中等压缩木材的柔软性和弹性,在这种情况下,折叠的隔室壁表现为板簧。

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