Last edited by Tojazilkree

Friday, May 1, 2020 | History

1 edition of **Microstructured Materials: Inverse Problems** found in the catalog.

Microstructured Materials: Inverse Problems

Jaan Janno

- 113 Want to read
- 40 Currently reading

Published
**2011** by Springer-Verlag Berlin Heidelberg in Berlin, Heidelberg .

Written in English

- Mechanics,
- Mathematics,
- Materials,
- Partial Differential equations

**Edition Notes**

Statement | by Jaan Janno, Jüri Engelbrecht |

Series | Springer Monographs in Mathematics |

Contributions | Engelbrecht, Jüri, SpringerLink (Online service) |

The Physical Object | |
---|---|

Format | [electronic resource] / |

ID Numbers | |

Open Library | OL25547672M |

ISBN 10 | 9783642215834, 9783642215841 |

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Complex, microstructured materials are widely used in industry and technology and include alloys, ceramics and composites. Focusing on non-destructive evaluation (NDE), this book explores in detail the mathematical modeling and inverse problems encountered when using ultrasound to investigate heterogeneous microstructured materials.

“The book is concerned with inverse problems of microstructured materials and is composed of 8 chapters. The book is well written and could find many readers working in the area of microstructured materials.” (Hilmi Demiray, Zentralblatt MATH, Vol.

)Brand: Springer-Verlag Berlin Heidelberg. Inverse problems to determine parameters of microstructured solids are studied. These parameters enter as coefficients to a coupled system of 1D wave propagation derived from the Mindlin model.

Microstructured Materials: Inverse Problems (Springer Monographs in Mathematics) - Kindle edition by Jaan Janno, Jüri Engelbrecht. Download it once and read it on your Kindle device, PC, phones or tablets. Use features like bookmarks, note taking and highlighting while reading Microstructured Materials: Inverse Problems (Springer Monographs in Mathematics).

Complex, microstructured materials are widely used in industry and technology and include alloys, ceramics and composites. Focusing on non-destructive evaluation (NDE), this book explores in detail the mathematical modeling and inverse problems encountered when using ultrasound to investigate heterogeneous microstructured : Hardcover.

Complex, microstructured materials are widely used in industry and technology and include alloys, ceramics and composites.

Focusing on non-destructive evaluation (NDE), this book explores in detail the mathematical modeling and inverse problems encountered when using ultrasound to investigate heterogeneous microstructured : Springer Berlin Heidelberg.

springer, Complex, microstructured materials are widely used in industry and technology and include alloys, ceramics and composites.

Focusing on non-destructive evaluation (NDE), this book explores in detail the mathematical modeling and inverse problems encountered when using ultrasound to investigate heterogeneous microstructured materials. Introduction.- 1 Inverse problems and non-destructive evaluation.- 2 Mathematical models of microstructured solids.- 3 Linear waves.- 4 Inverse problems for linear waves.- 5 Solitary waves in nonlinear models.- 6 Inverse problems for solitary waves.- 7 Summary.- References.- Index: Series Title: Springer monographs in mathematics.

Responsibility. Janno, J., Engelbrecht, J.: Inverse problems related to a coupled system of microstructure. Inverse Probl. 24, () MathSciNet CrossRef Google Scholar. Complex, microstructured materials are widwly used in industry and technology and include alloys, ceramics and composites.

Focusing on non-destructive evaluation (NDE), this book explores in detail the mathematical modeling and inverse problems encountered when using ultrasound to investigate heterogeneous microstructured materials. The book provides solutions, based on fundamental methods and models using the theory of wave propagation, nonlinear theories and composite mechanics for media with micro- and nanostructure.

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Journal of Mathematical Imaging and VisionCited by: The present paper is devoted to the theoretical study on the estimation of the full-field strain at the microstructural level of composite materials by means of Digital Image Correlation (DIC). The main aim of the paper is to investigate the influence of speckle size on the accuracy of the strain field measurement at the microscale.

The DIC analysis was conducted based on artificial speckle Author: Witold Ogierman, Grzegorz Kokot. EUROMECH Colloquium Nonlinear Waves in Microstructured Solids: May 29 - JTallinn, Estonia: book of abstracts / European Mechanics Society - EUROMECH ; Centre for Nonlinear Studies, Institute of Cybernetics at TTU.

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Phase identification is one of the most common applications of XPD, in both microstructured materials and nanomaterials. However, the broadening of Bragg peaks produced in nanocrystalline systems, with consequent height reduction, can hinder the observation of very close or low-intensity by: 1.

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