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Vibration behavior in ceramic-matrix...
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Li, Longbiao.
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Vibration behavior in ceramic-matrix composites
Record Type:
Electronic resources : Monograph/item
Title/Author:
Vibration behavior in ceramic-matrix composites/ by Longbiao Li.
Author:
Li, Longbiao.
Published:
Singapore :Springer Nature Singapore : : 2023.,
Description:
xi, 124 p. :ill. (some col.), digital ;24 cm.
[NT 15003449]:
Introduction -- First matrix cracking behavior in CMCs at room temperature -- First matrix cracking behavior in CMCs at elevated temperature -- Multiple matrix cracking behavior in CMCs at room temperature -- Multiple matrix cracking behavior in CMCs at elevated temperature -- Matrix crack opening behavior in CMCs at room temperature -- Matrix crack opening behavior in CMCs at elevated temperature -- Matrix crack closure behavior in CMCs.
Contained By:
Springer Nature eBook
Subject:
Ceramic-matrix composites - Mechanical properties. -
Online resource:
https://doi.org/10.1007/978-981-19-7838-8
ISBN:
9789811978388
Vibration behavior in ceramic-matrix composites
Li, Longbiao.
Vibration behavior in ceramic-matrix composites
[electronic resource] /by Longbiao Li. - Singapore :Springer Nature Singapore :2023. - xi, 124 p. :ill. (some col.), digital ;24 cm. - Advanced ceramics and composites,v. 52662-9313 ;. - Advanced ceramics and composites ;v. 5..
Introduction -- First matrix cracking behavior in CMCs at room temperature -- First matrix cracking behavior in CMCs at elevated temperature -- Multiple matrix cracking behavior in CMCs at room temperature -- Multiple matrix cracking behavior in CMCs at elevated temperature -- Matrix crack opening behavior in CMCs at room temperature -- Matrix crack opening behavior in CMCs at elevated temperature -- Matrix crack closure behavior in CMCs.
This book focuses on the vibration behavior of ceramic-matrix composites (CMCs), including (1) vibration natural frequency of intact and damaged CMCs; (2) vibration damping of CMCs considering fibers debonding and fracture; (3) temperature-dependent vibration damping of CMCs; (4) time-dependent vibration damping of CMCs; and (5) cyclic-dependent vibration damping of CMCs. Ceramic-matrix composites (CMCs) possess low material density (i.e., only 1/4 or 1/3 of high-temperature alloy) and high-temperature resistance, which can reduce cooling air and improve structure efficiency. Understanding the failure mechanisms and internal damage evolution represents an important step to ensure reliability and safety of CMCs. Relationships between microstructure, damage mechanisms, vibration natural frequency, and vibration damping of CMCs are established. This book helps the material scientists and engineering designers to understand and master the vibration behavior of CMCs at room and elevated temperatures.
ISBN: 9789811978388
Standard No.: 10.1007/978-981-19-7838-8doiSubjects--Topical Terms:
1638654
Ceramic-matrix composites
--Mechanical properties.
LC Class. No.: TA418.9.C6
Dewey Class. No.: 620.1404248
Vibration behavior in ceramic-matrix composites
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Introduction -- First matrix cracking behavior in CMCs at room temperature -- First matrix cracking behavior in CMCs at elevated temperature -- Multiple matrix cracking behavior in CMCs at room temperature -- Multiple matrix cracking behavior in CMCs at elevated temperature -- Matrix crack opening behavior in CMCs at room temperature -- Matrix crack opening behavior in CMCs at elevated temperature -- Matrix crack closure behavior in CMCs.
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This book focuses on the vibration behavior of ceramic-matrix composites (CMCs), including (1) vibration natural frequency of intact and damaged CMCs; (2) vibration damping of CMCs considering fibers debonding and fracture; (3) temperature-dependent vibration damping of CMCs; (4) time-dependent vibration damping of CMCs; and (5) cyclic-dependent vibration damping of CMCs. Ceramic-matrix composites (CMCs) possess low material density (i.e., only 1/4 or 1/3 of high-temperature alloy) and high-temperature resistance, which can reduce cooling air and improve structure efficiency. Understanding the failure mechanisms and internal damage evolution represents an important step to ensure reliability and safety of CMCs. Relationships between microstructure, damage mechanisms, vibration natural frequency, and vibration damping of CMCs are established. This book helps the material scientists and engineering designers to understand and master the vibration behavior of CMCs at room and elevated temperatures.
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Chemistry and Materials Science (SpringerNature-11644)
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電子資源
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EB TA418.9.C6
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