A platform for research: civil engineering, architecture and urbanism
Mechanical Properties of Dahurian Larch Wood under Cyclic Loading: Experiments and Constitutive Model
This article presents a study on the mechanical properties and constitutive model of Dahurian larch wood under parallel-to-grain (ParG) and perpendicular-to-grain (PerG) cyclic loading. A total of twenty-four dog-bone specimens were designed and prepared. Failure modes, stress–strain curves, elastic moduli under monotonic loading, and unloading/reloading moduli under cyclic loading were analyzed. Results indicated that the tensile and compressive envelope curves of wood under cyclic loading are similar to the monotonic stress–strain curves. The unloading and reverse reloading stiffness of wood are significantly degraded in both material directions. Furthermore, a constitutive model that is capable of considering the degradation of cyclic compression unloading stiffness and the change in reverse compression (tension) stiffness after tension (compression) unloading was proposed. A comprehensive comparison with test results was conducted, and they are in good agreement. Thus, the correctness of the proposed constitutive model is verified.
Mechanical Properties of Dahurian Larch Wood under Cyclic Loading: Experiments and Constitutive Model
This article presents a study on the mechanical properties and constitutive model of Dahurian larch wood under parallel-to-grain (ParG) and perpendicular-to-grain (PerG) cyclic loading. A total of twenty-four dog-bone specimens were designed and prepared. Failure modes, stress–strain curves, elastic moduli under monotonic loading, and unloading/reloading moduli under cyclic loading were analyzed. Results indicated that the tensile and compressive envelope curves of wood under cyclic loading are similar to the monotonic stress–strain curves. The unloading and reverse reloading stiffness of wood are significantly degraded in both material directions. Furthermore, a constitutive model that is capable of considering the degradation of cyclic compression unloading stiffness and the change in reverse compression (tension) stiffness after tension (compression) unloading was proposed. A comprehensive comparison with test results was conducted, and they are in good agreement. Thus, the correctness of the proposed constitutive model is verified.
Mechanical Properties of Dahurian Larch Wood under Cyclic Loading: Experiments and Constitutive Model
Lipeng Zhang (author) / Qifang Xie (author) / Yonggang Han (author) / Yingjin Wang (author) / Yajie Wu (author)
2023
Article (Journal)
Electronic Resource
Unknown
Metadata by DOAJ is licensed under CC BY-SA 1.0
Mechanical Properties of Dahurian Larch
British Library Conference Proceedings | 1994
|Dahurian larch: treatment with inorganic arsenical preservatives
Tema Archive | 1994
|A Comparative Study of the Bending Properties of Dahurian Larch and Japanese Larch Grown in Korea
DOAJ | 2022
|Radial Growth of Dahurian Larch (Larix gmelinii) Responses to Climate and Competition
DOAJ | 2024
|Post-Fire Evolution of Soil Nitrogen in a Dahurian Larch (Larix gmelinii) Forest, Northeast China
DOAJ | 2023
|