详细信息
Effect of Microstructures on the Shear Strength of Larix kaempferi ( SCI-EXPANDED收录 EI收录) 被引量:6
文献类型:期刊文献
英文题名:Effect of Microstructures on the Shear Strength of Larix kaempferi
作者:Li, Mingyue[1,2] Zhang, Shuangbao[2] Wang, Yurong[1] Ren, Haiqing[1]
第一作者:Li, Mingyue
通信作者:Ren, HQ[1]|[a0005812e0f3d391949bb]任海青;
机构:[1]Chinese Acad Forestry, Res Inst Wood Ind, Beijing 100091, Peoples R China;[2]Beijing Forestry Univ, Coll Mat Sci & Technol, Beijing 100083, Peoples R China
年份:2021
卷号:12
期号:7
外文期刊名:FORESTS
收录:;EI(收录号:20212810618100);Scopus(收录号:2-s2.0-85109323679);WOS:【SCI-EXPANDED(收录号:WOS:000676229000001)】;
基金:This research was funded by the National Natural Science Foundation (Project No. 31971596).
语种:英文
外文关键词:L; kaempferi; earlywood; latewood; fracture mode; microstructures
摘要:Shear strength is important for the application of Larix kaempferi (Lamb) Carr. The structural difference between earlywood and latewood of Larix kaempferi affects its mechanical properties, especially shear strength. The microstructures of earlywood and latewood in Larix kaempferi, however, are different. In this study, we investigated the shear strength and shear failure mode in the RL direction of 40 Larix kaempferi specimens. The results demonstrated that the initial crack appears in any location of a growth ring, whereas shear failure is concentrated in earlywood, as well as the junction between earlywood and latewood. The destruction of earlywood is the tear destruction, whereas when the destruction happened in the junction of earlywood and latewood, one to three earlywood cells usually adhered to latewood. At the cell wall level, the shear failure of earlywood was mostly observed in the direction of the microfibril angle (MFA). When the crack occurs in latewood, the destruction of latewood also occurs in the intercellular layer and preserves the complete morphology of tracheids. When destruction occurs in the wood ray, the ray cells detach intact from the tracheids. The failure mode is determined by the microstructure of earlywood and latewood. Our research suggests that the density, cell wall thickness, and MFA have significant differences between earlywood and latewood. The earlywood was found to have an MFA of 25.4 degrees, a cell wall thickness of 6.36 mu m, and a density of 0.39 g/cm(3). The MFA, cell wall thickness, and density of latewood density were 17.60 degrees, 12.37 mu m, and 0.78 g/cm(3), respectively. However, there was no significant difference found in the crystallinity between the earlywood (43.97%) and latewood (42.79%). The correlation between the microstructures and shear strength showed that earlywood with a thin cell wall, large MFA, and low density had poor shear performance, while the latewood with a thicker tracheid, smaller MFA, and higher density had better shear performance. Therefore, when shear failure occurred, it occurred in earlywood. We thus deduced that the MFA, cell wall thickness, and density of earlywood synergically affect the shear strength in the RL direction of L. kaempferi.
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