Stress-Rupture of Fiber-Reinforced Ceramic-Matrix Composites with Stochastic Loading at Intermediate Temperatures. Part I: Theoretical Analysis

Under stress-rupture loading, stochastic loading affects the internal damage evolution and lifetime of fiber-reinforced ceramic-matrix composites (CMCs) at intermediate temperatures. The damage mechanisms of the matrix cracking, fiber/matrix interface debonding and oxidation, and fiber fracture are...

Full description

Bibliographic Details
Main Author: Longbiao Li
Format: Article
Language:English
Published: MDPI AG 2019-09-01
Series:Materials
Subjects:
Online Access:https://www.mdpi.com/1996-1944/12/19/3123
id doaj-b79b19b938cf444f985d329233b841c9
record_format Article
spelling doaj-b79b19b938cf444f985d329233b841c92020-11-24T21:55:32ZengMDPI AGMaterials1996-19442019-09-011219312310.3390/ma12193123ma12193123Stress-Rupture of Fiber-Reinforced Ceramic-Matrix Composites with Stochastic Loading at Intermediate Temperatures. Part I: Theoretical AnalysisLongbiao Li0College of Civil Aviation, Nanjing University of Aeronautics and Astronautics, Nanjing 210016, ChinaUnder stress-rupture loading, stochastic loading affects the internal damage evolution and lifetime of fiber-reinforced ceramic-matrix composites (CMCs) at intermediate temperatures. The damage mechanisms of the matrix cracking, fiber/matrix interface debonding and oxidation, and fiber fracture are considered in the analysis of stochastic loading. The strain, fiber/matrix interface debonding and oxidation length, and the broken fibers fraction versus the time curves of SiC/SiC composite under constant and three different stochastic loading conditions are analyzed. The effects of the stochastic loading stress level, stochastic loading time, and time spacing on the damage evolution and lifetime of SiC/SiC composite are discussed. When the stochastic loading stress level increases, the stress-rupture lifetime decreases, and the time for the interface complete debonding and oxidation decreases. When the stochastic loading time and time spacing increase, the stress-rupture lifetime decreases, and the time for the interface complete debonding and oxidation remains the same.https://www.mdpi.com/1996-1944/12/19/3123ceramic-matrix composites (cmcs)stress-rupturestochastic loadingmatrix crackinginterface debondingfiber failurelifetime
collection DOAJ
language English
format Article
sources DOAJ
author Longbiao Li
spellingShingle Longbiao Li
Stress-Rupture of Fiber-Reinforced Ceramic-Matrix Composites with Stochastic Loading at Intermediate Temperatures. Part I: Theoretical Analysis
Materials
ceramic-matrix composites (cmcs)
stress-rupture
stochastic loading
matrix cracking
interface debonding
fiber failure
lifetime
author_facet Longbiao Li
author_sort Longbiao Li
title Stress-Rupture of Fiber-Reinforced Ceramic-Matrix Composites with Stochastic Loading at Intermediate Temperatures. Part I: Theoretical Analysis
title_short Stress-Rupture of Fiber-Reinforced Ceramic-Matrix Composites with Stochastic Loading at Intermediate Temperatures. Part I: Theoretical Analysis
title_full Stress-Rupture of Fiber-Reinforced Ceramic-Matrix Composites with Stochastic Loading at Intermediate Temperatures. Part I: Theoretical Analysis
title_fullStr Stress-Rupture of Fiber-Reinforced Ceramic-Matrix Composites with Stochastic Loading at Intermediate Temperatures. Part I: Theoretical Analysis
title_full_unstemmed Stress-Rupture of Fiber-Reinforced Ceramic-Matrix Composites with Stochastic Loading at Intermediate Temperatures. Part I: Theoretical Analysis
title_sort stress-rupture of fiber-reinforced ceramic-matrix composites with stochastic loading at intermediate temperatures. part i: theoretical analysis
publisher MDPI AG
series Materials
issn 1996-1944
publishDate 2019-09-01
description Under stress-rupture loading, stochastic loading affects the internal damage evolution and lifetime of fiber-reinforced ceramic-matrix composites (CMCs) at intermediate temperatures. The damage mechanisms of the matrix cracking, fiber/matrix interface debonding and oxidation, and fiber fracture are considered in the analysis of stochastic loading. The strain, fiber/matrix interface debonding and oxidation length, and the broken fibers fraction versus the time curves of SiC/SiC composite under constant and three different stochastic loading conditions are analyzed. The effects of the stochastic loading stress level, stochastic loading time, and time spacing on the damage evolution and lifetime of SiC/SiC composite are discussed. When the stochastic loading stress level increases, the stress-rupture lifetime decreases, and the time for the interface complete debonding and oxidation decreases. When the stochastic loading time and time spacing increase, the stress-rupture lifetime decreases, and the time for the interface complete debonding and oxidation remains the same.
topic ceramic-matrix composites (cmcs)
stress-rupture
stochastic loading
matrix cracking
interface debonding
fiber failure
lifetime
url https://www.mdpi.com/1996-1944/12/19/3123
work_keys_str_mv AT longbiaoli stressruptureoffiberreinforcedceramicmatrixcompositeswithstochasticloadingatintermediatetemperaturespartitheoreticalanalysis
_version_ 1725861945473499136