High-temperature matrix cracking, opening and closure in ceramic-matrix composites / Longbiao Li.

Author/creator Li, Longbiao, 1983-
Format Electronic
Publication InfoBoca Raton : CRC Press,Taylor & Francis Group, 2024.
Description1 online resource.
Supplemental ContentFull text available from eBooks on EBSCOhost
Subjects

Contents High-temperature first matrix cracking behavior in ceramic-matrix composites -- High-temperature multiple matrix cracking behavior in ceramic-matrix composites -- High-temperature crack opening behavior in ceramic-matrix composites -- High temperature cracking closure behavior in ceramic-matrix composites.
Abstract "Ceramic matrix composites (CMCs) can withstand higher temperatures, reduce cooling airflow, improve turbine efficiency, and greatly reduce structural mass compared to the high temperature alloys. This book focuses on the matrix first/multiple cracking, crack opening and closure behavior in CMCs at high temperatures. While conducting in-situ experimental observations to analyze the damage mechanisms and failure modes, the author develops micromechanical damage models and constitutive models to predict the first matrix cracking stress, multiple matrix cracking density, matrix crack opening displacement, and cracking closure stress at high temperatures. The effects of composite's constituent properties, stress level, and ambient temperature on matrix cracking, opening, and closure are also discussed. This book will help material scientists and engineering designers to understand and master the matrix cracking and closure behavior of fiber-reinforced CMCs"-- Provided by publisher.
Bibliography noteIncludes bibliographical references and index.
Access restrictionAvailable only to authorized users.
Technical detailsMode of access: World Wide Web
Source of descriptionDescription based on print version record and CIP data provided by publisher.
Issued in other formPrint version: Li, Longbiao, 1983- High-temperature matrix cracking, opening and closure in ceramic-matrix composites Boca Raton : CRC Press,Taylor & Francis Group, 2024 9781032637518
Genre/formElectronic books.
LCCN 2023034206
ISBN9781032638508 (ebook)
ISBN(hardback)
ISBN(paperback)

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Electronic Resources Access Content Online ✔ Available