Peijie Yue’s research while affiliated with Beihang University and other places

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Publications (5)


Study on the heat transfer performance of stepped lap joint in thermal protection tile based on carbon foam
  • Article

June 2025

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1 Read

Applied Thermal Engineering

Peijie Yue

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Haibin Li

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Kai Li

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[...]

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Xiaoquan Cheng



SEM graph of CCF mesostructures: (a) The section is perpendicular to the foaming direction; (b) The section is parallel to the foaming direction.
Photograph of specimens: (a) Uniaxial tension specimens; (b) Uniaxial compression specimens; (c) The CCF used in the uniaxial compression specimens; (d) Compressive shear specimens; (e) Passive confining pressure; (f) The CCF used in the passive confining pressure specimens.
The damage surfaces of CCF in compression tests: (a) Specimen without tabs; (b) Specimen with tabs.
The loading method of passive multiaxial compression tests.
Stress–strain curves of the uniaxial loading tests: (a) Uniaxial tension; (b) Uniaxial compression; (c) Compressive shear in xy and xz plane.

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Study on Failure Criteria and the Numerical Simulation Method of a Coal-Based Carbon Foam under Multiaxial Loading
  • Article
  • Full-text available

August 2023

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32 Reads

Coal-based carbon foam (CCF) has broad application prospects in aerospace, composite material tooling and other fields. However, the lack of failure criteria limits its promotion. In previous studies, the failure criteria of similar materials were proposed, but there are some limitations. This paper proposes improved failure criteria based on macro-mechanical tests. Furthermore, uniaxial and multiaxial loading tests were carried out to obtain accurate failure criteria of CCF. Finally, 3-points bending tests of the CCF sandwich structure were conducted and their finite element models (FEMs) were established. The CCF test results show that the mechanical properties of CCF are transversely isotropic. The failure criteria in this paper can accurately predict the stress when the CCF fails. The error band boundary formula caused by the dispersion of the material were also given. The maximum load Pmax calculated by the failure surface (3684 N) was only 4.7% larger than the mean value measured by the test (3518 N), and all of the Pmax measured by the test (3933 N, 3640 N, 3657 N, 3269 N, 3091 N) were between the maximum value (4297 N) and minimum value (3085 N) calculated by the error band boundary formula, which means that the failure criteria have good precision.

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Study on Low-Velocity Impact Performance of Coal-Based Carbon Foam Sandwich Structures in Thermal Protection Systems

July 2023

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108 Reads

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3 Citations

Coal-based carbon foam (CCF) has been widely used in the hypersonic vehicles’ thermal protection system (TPS) due to its good thermal insulation and mechanical properties. In addition, CCF can absorb large quantities of energy when crushed so that the CCF sandwich structure can effectively improve the impact resistance of the TPS. However, there are few studies on the impact performance of CCF sandwich structures, even the mechanical constitutive model (MCM) of CCF. This research work built the CCF MCM and studied the low-velocity impact properties. A large number of experiments were implemented to establish an effective and comprehensive CCF MCM which has three parts: basic mechanical properties, multiaxial loading failure criteria, and hardening rules. A series of tests on the low-velocity impact performance of two CCF sandwich structures were carried out, and finite element models (FEMs) were established according to the CCF MCM to simulate these tests. The experimental and simulation results were in good agreement. The impact damage mechanism was revealed by the tests and the FEMs. The MCM can be used not only for the simulation of low-velocity impact process but also for failure analysis of other CCF structures, which will help to design CCF structures at a low cost.