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    1. Naturvetenskap och teknik
    2. Teknik och industri
    3. Maskinteknik och material

    High Temperature Mechanical Behavior of Ceramic-Matrix Composites

    AvLongbiao Li

    Inbunden, Engelska, 2021

    1 640 kr

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    Beskrivning

    High Temperature Mechanical Behavior of Ceramic-Matrix Composites Covers the latest research on the high-temperature mechanical behavior of ceramic-matrix compositesDue to their high temperature resistance, strength and rigidity, relatively light weight, and corrosion resistance, ceramic-matrix composites (CMCs) are widely used across the aerospace and energy industries. As these advanced composites of ceramics and various fibers become increasingly important in the development of new materials, understanding the high-temperature mechanical behavior and failure mechanisms of CMCs is essential to ensure the reliability and safety of practical applications.High Temperature Mechanical Behavior of Ceramic-Matrix Composites examines the behavior of CMCs at elevated temperature—outlining the latest developments in the field and presenting the results of recent research on different CMC characteristics, material properties, damage states, and temperatures. This up-to-date resource investigates the high-temperature behavior of CMCs in relation to first matrix cracking, matrix multiple cracking, tensile damage and fracture, fatigue hysteresis loops, stress-rupture, vibration damping, and more.This authoritative volume:Details the relationships between various high-temperature conditions and experiment resultsFeatures an introduction to the tensile, vibration, fatigue, and stress-rupture behavior of CMCs at elevated temperaturesInvestigates temperature- and time-dependent cracking stress, deformation, damage, and fracture of fiber-reinforced CMCsIncludes full references and internet links to source materialWritten by a leading international researcher in the field, High Temperature Mechanical Behavior of Ceramic-Matrix Composites is an invaluable resource for materials scientists, surface chemists, organic chemists, aerospace engineers, and other professionals working with CMCs.

    Produktinformation

    • Utgivningsdatum:2021-07-07
    • Mått:170 x 244 x 24 mm
    • Vikt:851 g
    • Format:Inbunden
    • Språk:Engelska
    • Antal sidor:384
    • Förlag:Wiley-VCH Verlag GmbH
    • ISBN:9783527349036

    Utforska kategorier

    • Maskinteknik och material inom Naturvetenskap och teknik

    Mer om författaren

    Longbiao Li, PhD, is a lecturer at the College of Civil Aviation, Nanjing University of Aeronautics and Astronautics (NUAA), China. His research focuses on the fatigue, damage, fracture, reliability, and durability of aircraft and aero engines. He has been involved in different projects related to structural damage, reliability, and airworthiness design for aircraft and aero engines, supported by the Natural Science Foundation of China, COMAC Company, and AECC Commercial Aircraft Engine Company.

    Innehållsförteckning

    • Preface xiiiAcknowledgments xv1 Introduction 11.1 Tensile Behavior of CMCs at Elevated Temperature 21.2 Fatigue Behavior of CMCs at Elevated Temperature 61.3 Stress Rupture Behavior of CMCs at Elevated Temperature 71.4 Vibration Behavior of CMCs at Elevated Temperature 91.5 Conclusion 102 First Matrix Cracking of Ceramic-Matrix Composites at Elevated Temperature 192.1 Introduction 192.2 Temperature-Dependent Matrix Cracking Stress of C/SiC Composites 202.3 Temperature-Dependent Matrix Cracking Stress of SiC/SiC Composite 292.4 Time-Dependent Matrix Cracking Stress of C/SiC Composites 392.5 Time-Dependent Matrix Cracking Stress of Si/SiC Composites 592.6 Conclusion 713 Matrix Multiple Cracking Evolution of Fiber-Reinforced Ceramic-Matrix Composites at Elevated Temperature 753.1 Introduction 753.2 Temperature-Dependent Matrix Multiple Cracking Evolution of C/SiC Composites 763.3 Temperature-Dependent Matrix Multiple Cracking Evolution of SiC/SiC Composites 893.4 Time-Dependent Matrix Multiple Cracking Evolution of C/SiC Composites 1013.5 Time-Dependent Matrix Multiple Cracking Evolution of SiC/SiC Composites 1163.6 Conclusion 1394 Time-Dependent Tensile Behavior of Ceramic-Matrix Composites 1454.1 Introduction 1454.2 Theoretical Analysis 1484.3 Results and Discussion 1494.4 Experimental Comparisons 1614.5 Conclusion 1795 Fatigue Behavior of Ceramic-Matrix Composites at Elevated Temperature 1875.1 Introduction 1875.2 Theoretical Analysis 1895.3 Experimental Comparisons 1915.4 Conclusion 2066 Stress Rupture of Ceramic-Matrix Composites at Elevated Temperature 2116.1 Introduction 2116.2 Stress Rupture of Ceramic-Matrix Composites Under Constant Stress at Intermediate Temperature 2136.3 Stress Rupture of Ceramic-Matrix Composites Under Stochastic Loading Stress and Time at Intermediate Temperature 2346.4 Stress Rupture of Ceramic-Matrix Composites Under Multiple Load Sequence at Intermediate Temperature 2746.5 Conclusion 3027 Vibration Damping of Ceramic-Matrix Composites at Elevated Temperature 3077.1 Introduction 3077.2 Temperature-Dependent Vibration Damping of CMCs 3087.3 Time-Dependent Vibration Damping of CMCs 3297.4 Conclusion 356References 356Index 359