Longbiao Li Li Micromechanics of Ceramic-Matrix Composites at Elevated Temperatures

Micromechanics of Ceramic-Matrix Composites at Elevated Temperatures

von Longbiao Li

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Beschreibung

Ceramic-matrix composites (CMCs) possess high specific strength and modulus at elevated temperature, and have already been applied in hot-section components in aero-engines. To ensure the operation reliability and safety of CMCs components, it is necessary to understand the micro damage mechanisms and internal damage state in the composites. This book focuses on the micromechanics of CMCs at elevated temperatures, including the stress-strain behavior, proportional limit stress, residual strength, mechanical hysteresis, interface damage, strain response, and lifetime of CMCs at elevated temperatures. This book can help the material scientists and engineering designers to better understand and master the micromechanics of CMCs at elevated temperatures.
Ceramic-matrix composites (CMCs) possess high specific strength and modulus at elevated temperature, and have already been applied in hot-section components in aero-engines. To ensure the operation reliability and safety of CMCs components, it is necessary to understand the micro damage mechanisms and internal damage state in the composites. This book focuses on the micromechanics of CMCs at elevated temperatures, including, the stress-strain behavior, proportional limit stress, residual strength, mechanical hysteresis, interface damage, strain response, and lifetime of CMCs at elevated temperatures. This book can help the material scientists and engineering designers to better understand and master the micromechanics of CMCs at elevated temperatures.
Focuses on micromechanics of ceramic-matrix composites at elevated temperatures Proposes micromechanics damage models of ceramic-matrix composites at elevated temperatures Explains micro damage mechanisms and internal damage state in the composites

Autor*in

Longbiao Li

Themen in »Micromechanics of Ceramic-Matrix Composites at Elevated Temperatures«

Ceramic-Matrix Composites (CMCs) Micromechanics Damage Models Micromechanics Constitutive Models Micromechanics Strain Response Models Micromechanics Lifetime Models Matrix Cracking Interface Debonding Fibers Failure

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Details

ISBN: 9789819712946
Verlag: Springer Singapore
Erscheinung: 16.03.2024

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