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Titlebook: Local Mechanics Concepts for Composite Material Systems; IUTAM Symposium Blac J. N. Reddy,K. L. Reifsnider Conference proceedings 1992 Spri

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書目名稱Local Mechanics Concepts for Composite Material Systems
副標題IUTAM Symposium Blac
編輯J. N. Reddy,K. L. Reifsnider
視頻videohttp://file.papertrans.cn/588/587681/587681.mp4
叢書名稱IUTAM Symposia
圖書封面Titlebook: Local Mechanics Concepts for Composite Material Systems; IUTAM Symposium Blac J. N. Reddy,K. L. Reifsnider Conference proceedings 1992 Spri
描述The application of composite materials to engineering components has spurred a ma- jor effort to analyze such materials and the structures made from them. Most researchers workin~ in mechanics of composite structures understand that composite materials pro- vide umque advantages but also present complex and challenging problems to researchers. The complex inelastic behavior and variety of failure modes of composite structures are a result of the strength and stiffness properties of constituents and their complex interac- tions. Macromechanical constitutive models based on gross composite properties cannot realistically represent local interactions, and thus have serious limitations. The composite materials that are of most interest to engineering applications are often "brittle" in their behavior, in the sense that the strength and life of the material systems is controlled or greatly influenced by events or processes which involve volumes of material whose dimen- sions are small compared to the global dimensions of the element. This is also true in ductile systems where local nonlinearity may contribute to local behavior which controls global response.
出版日期Conference proceedings 1992
關(guān)鍵詞Composite Materials; Mechanik; Verbundwerkstoffe; Werkstoff; composite material; damage; damage mechanics;
版次1
doihttps://doi.org/10.1007/978-3-642-84792-9
isbn_softcover978-3-642-84794-3
isbn_ebook978-3-642-84792-9
copyrightSpringer-Verlag, Berlin Heidelberg 1992
The information of publication is updating

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An Experimental Element Technique for Transverse Fracture in CFRP and GFRP,fibre/matrix bond strength was derived from the Weibull distribution. The applicability of the model is demonstrated with three examples of transverse cracking influenced by (i) the effect of constraint (ii) the test temperature and (iii) the fibre surface treatment.
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Deformation of a Meta-Ceramic Composite with a Crystal Matrix: Reinforcement Distribution Effects,l matrix shear localization initiates at the sharp whisker edges. The onset of this localization is distribution dependent and, as a consequence of localization, the stress-carrying capacity eventually drops.
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Analysis of Interlaminar Stresses and Failures Using a Layer-Wise Laminate Theory,perties, which are used to update the stiffness matrix. It is demonstrated through an example problem that three-dimensional stress analysis is a necessary requirement but not sufficient to predict the failure behavior of composites laminate accurately.
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Matrix Cracking and Interphase Failure in Fiber Composites, failure mechanisms follow the periodicity of the composite, two damage configurations have been analyzed, namely, conjugate radial matrix cracks and interphase disbonds forming L-shaped and ⊥-shaped defects.
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Conference proceedings 1992hem. Most researchers workin~ in mechanics of composite structures understand that composite materials pro- vide umque advantages but also present complex and challenging problems to researchers. The complex inelastic behavior and variety of failure modes of composite structures are a result of the
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Micromechanics as a Basis for Damage Mechanics,The development of locally averaged damage dependent constitutive equations is discussed, and evolution laws for damage accumulation are reviewed. Finally, a brief overview of the role of micromechanics in life prediction is presented.
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