Professor
Supervisor of Doctorate Candidates
Supervisor of Master's Candidates
Main positions: President of international exchange committee of the Chinese Society of Rock Mechanics and Engineering CSRME
Other Post: Vice President of the Chinese Society of Rock Mechanics and Engineering CSRME
Title of Paper:脆性材料热-力耦合模型及热破裂数值分析方法
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Date of Publication:2022-10-06
Journal:计算力学学报
Affiliation of Author(s):建设工程学部
Volume:26
Issue:2
Page Number:172-179
ISSN No.:1007-4708
Abstract:On the basis of the principle of thermal conduct equation and the
coupling of thermo-mechanical concept, and considering the
characteristic of damage evolution law at mesoscopic level of brittle
materials, we proposed a numerical model to simulate the coupling of
thermo-mechanical behaviour and the damage evolution. For the remarkable
feature of concrete-like materials, I. E. Nonhomogeneity at mesoscopic,
statistical method is employed to describe the relationship of
mechanical response between mesoscopic level and macroscope level. It
indicates that the temperature distribution and stresses fields are
remarkably influenced by the heterogeneous of materials. The numerically
simulated results are verified by the theoretical and experimental data.
The comparison of the failure processes at steady state and transient
state thermal conduction of the same sample indicate that the failure
zone of steady state thermal conduction is large than that of transient
state. The results reveal that the thermal cracking by considering the
transient thermal conduction is more precise and reliable than that of
steady state.
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