TY - JOUR
T1 - Research on the cross-scale thermal characteristics prediction method of integrated thermal protection materials for hypersonic vehicle
AU - Liu, Lei
AU - Shi, Youan
AU - Zhang, Litong
AU - Yang, Xiaofeng
AU - Wei, Dong
AU - Xiao, Guangming
N1 - Publisher Copyright:
© 2018 International Heat Transfer Conference. All rights reserved.
PY - 2018
Y1 - 2018
N2 - Ceramic matrix composites have inherent advantages in thermal protection performance and structural properties, but there also have many new features, such as multi-scale, non-linear and non-uniform. These new features present new challenges for aircraft structure design and evaluation in complex aerodynamic and aerodynamic heating environment. This paper established a new method for predicting the thermal performance of the continuous fiber reinforced ceramic matrix composites. According to the different fiber weaving methods and the different preparation process, the microscopic structural is modeled based on computer graphics. On the basis of this, the relationship between the mesoscopic heat transfer characteristics and the macroscopic heat transfer characteristics is studied based on the idea of the representative elementary volume (REV), and the thermal performance prediction ability of the new material is finally established. Finally, a typical example is given to validate the method.
AB - Ceramic matrix composites have inherent advantages in thermal protection performance and structural properties, but there also have many new features, such as multi-scale, non-linear and non-uniform. These new features present new challenges for aircraft structure design and evaluation in complex aerodynamic and aerodynamic heating environment. This paper established a new method for predicting the thermal performance of the continuous fiber reinforced ceramic matrix composites. According to the different fiber weaving methods and the different preparation process, the microscopic structural is modeled based on computer graphics. On the basis of this, the relationship between the mesoscopic heat transfer characteristics and the macroscopic heat transfer characteristics is studied based on the idea of the representative elementary volume (REV), and the thermal performance prediction ability of the new material is finally established. Finally, a typical example is given to validate the method.
KW - Ceramic Matrix Composites
KW - Cross-scale Prediction Method
KW - Heat Transfer Characteristics
KW - Multi-scale Collaboration
UR - http://www.scopus.com/inward/record.url?scp=85068312379&partnerID=8YFLogxK
U2 - 10.1615/ihtc16.tpm.022494
DO - 10.1615/ihtc16.tpm.022494
M3 - 会议文章
AN - SCOPUS:85068312379
SN - 2377-424X
VL - 2018-August
SP - 8661
EP - 8669
JO - International Heat Transfer Conference
JF - International Heat Transfer Conference
T2 - 16th International Heat Transfer Conference, IHTC 2018
Y2 - 10 August 2018 through 15 August 2018
ER -