Multi-scale Simulation of Composite Materials: Results from the Project MuSiKo (Mathematical Engineering)
暫譯: 複合材料的多尺度模擬:來自MuSiKo專案的結果(數學工程)
- 出版商: Springer
- 出版日期: 2019-02-14
- 售價: $6,020
- 貴賓價: 9.5 折 $5,719
- 語言: 英文
- 頁數: 178
- 裝訂: Hardcover
- ISBN: 3662579561
- ISBN-13: 9783662579565
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商品描述
Due to their high stiffness and strength and their good processing properties short fibre reinforced thermoplastics are well-established construction materials.
Up to now, simulation of engineering parts consisting of short fibre reinforced thermoplastics has often been based on macroscopic phenomenological models, but deformations, damage and failure of composite materials strongly depend on their microstructure. The typical modes of failure of short fibre thermoplastics enriched with glass fibres are matrix failure, rupture of fibres and delamination, and pure macroscopic consideration is not sufficient to predict those effects. The typical predictive phenomenological models are complex and only available for very special failures. A quantitative prediction on how failure will change depending on the content and orientation of the fibres is generally not possible, and the direct involvement of the above effects in a numerical simulation requires multi-scale modelling.
One the one hand, this makes it possible to take into account the properties of the matrix material and the fibre material, the microstructure of the composite in terms of fibre content, fibre orientation and shape as well as the properties of the interface between fibres and matrix. On the other hand, the multi-scale approach links these local properties to the global behaviour and forms the basis for the dimensioning and design of engineering components. Furthermore, multi-scale numerical simulations are required to allow efficient solution of the models when investigating three-dimensional problems of dimensioning engineering parts.
Bringing together mathematical modelling, materials mechanics, numerical methods and experimental engineering, this book provides a unique overview of multi-scale modelling approaches, multi-scale simulations and experimental investigations of short fibre reinforced thermoplastics. The first chapters focus on two principal subjects: the mathematical and mechanical models governing composite properties and damage description. The subsequent chapters present numerical algorithms based on the Finite Element Method and the Boundary Element Method, both of which make explicit use of the composite’s microstructure. Further, the results of the numerical simulations are shown and compared to experimental results.Lastly, the book investigates deformation and failure of composite materials experimentally, explaining the applied methods and presenting the results for different volume fractions of fibres.
This book is a valuable resource for applied mathematics, theoretical and experimental mechanical engineers as well as engineers in industry dealing with modelling and simulation of short fibre reinforced composites.
商品描述(中文翻譯)
由於其高剛性和強度以及良好的加工性能,短纖維增強熱塑性塑料已成為成熟的建材。
迄今為止,基於短纖維增強熱塑性塑料的工程部件模擬通常依賴於宏觀現象模型,但複合材料的變形、損傷和失效強烈依賴於其微觀結構。短纖維熱塑性塑料(如玻璃纖維增強型)的典型失效模式包括基體失效、纖維斷裂和層間剝離,僅僅依賴宏觀考量無法充分預測這些效應。典型的預測性現象模型複雜且僅適用於非常特殊的失效情況。對於失效如何隨著纖維的含量和取向而變化的定量預測通常是不可行的,並且上述效應在數值模擬中的直接參與需要多尺度建模。
一方面,這使得能夠考慮基體材料和纖維材料的性質、複合材料的微觀結構(如纖維含量、纖維取向和形狀)以及纖維與基體之間界面的性質。另一方面,多尺度方法將這些局部性質與全局行為聯繫起來,並為工程部件的尺寸設計和設計提供基礎。此外,進行三維工程部件尺寸問題的研究時,需要多尺度數值模擬以有效解決模型。
本書將數學建模、材料力學、數值方法和實驗工程相結合,提供了短纖維增強熱塑性塑料的多尺度建模方法、多尺度模擬和實驗研究的獨特概述。前幾章集中於兩個主要主題:支配複合材料性質和損傷描述的數學和力學模型。隨後的章節介紹基於有限元素法和邊界元素法的數值算法,這兩者都明確利用了複合材料的微觀結構。此外,數值模擬的結果將顯示並與實驗結果進行比較。
最後,本書實驗性地研究了複合材料的變形和失效,解釋了所應用的方法並呈現了不同纖維體積分數的結果。
本書是應用數學、理論和實驗機械工程師以及從事短纖維增強複合材料建模和模擬的工業工程師的寶貴資源。