Effects of Sawn Splits on Buckling, Bending, and Shearing Properties in Full-Size Squared Lumber of Hinoki (Chamaecyparis obtusa)

Yuusaku Kameyama, Yasuhiro Andou, H. Ohno, Yuusuke Anzai, F. Ishiguri, S. Yokota, K. Iizuka
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Abstract

Effects of depth (30 and 50% of lumber width) and inclination to the loaded face of sawn splits on buckling, bending, and shearing properties were investigated for full-size squared lumber (10.5 by 10.5 cm in cross section) of hinoki (Chamaecyparis obtusa Sieb. et Zucc.). No significant differences in buckling properties, and modulus of elasticity and proportional limit ratio in static bending were found between lumber without or with a sawn split. On the other hand, when load was applied to the side opposite to the sawn split, modulus of rupture in static bending was significantly decreased for all depths of sawn split. In addition, shearing strength determined by an asymmetric four-point loading method largely decreased when the load was applied to the side perpendicular to the sawn split. However, modulus of rupture in static bending and shearing strength of lumber with a sawn split with depth 50% of width exceeded the design strength requirement values of ungraded hinoki lumber listed in Bulletin No. 1452 of the Ministry of Construction, Japan. The obtained values of buckling strength in all specimens tested here were higher than the buckling strength of ungraded hinoki lumber estimated by compression design strength based on “Standard for Structural Design of Timber Structures” of the Architectural Institute of Japan.
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锯缝对全尺寸扁柏(Chamaecyparis obtusa)木材屈曲、弯曲和剪切性能的影响
对全尺寸扁木(Chamaecyparis obtusa Sieb)木材(横截面10.5 × 10.5 cm)进行了深度(木材宽度的30%和50%)和锯片加载面倾角对屈曲、弯曲和剪切性能的影响研究。调查)。无锯裂和有锯裂的木材的屈曲性能、弹性模量和静态弯曲的比例极限比无显著差异。另一方面,当载荷施加到与锯裂相反的一侧时,静弯曲的断裂模量在锯裂的所有深度都显着降低。此外,非对称四点加载法确定的抗剪强度在垂直于锯裂的一侧加载时大幅降低。然而,锯切深度为宽度50%的木材的静态弯曲断裂模量和抗剪强度超过了日本建设省公告第1452号所列的未分级杉木木材的设计强度要求值。所有试件的屈曲强度均高于日本建筑学会《木结构设计标准》中按压缩设计强度估算的未分级杉木木材的屈曲强度。
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