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The Virtual Fields Method: Extracting Constitutive Mechanical Parameters from Full-field Deformation Measurements is the first and only one on the Virtual Fields Method, a recent technique to identify materials mechanical properties from full-field measurements. It contains an extensive theoretical description of the method as well as numerous examples of application to a wide range of materials (composites, metals, welds, biomaterials etc.) and situations(static, vibration, high strain rate etc.). Finally, it contains a detailed training section with examples of progressive difficulty to…mehr
The Virtual Fields Method: Extracting Constitutive Mechanical Parameters from Full-field Deformation Measurements is the first and only one on the Virtual Fields Method, a recent technique to identify materials mechanical properties from full-field measurements. It contains an extensive theoretical description of the method as well as numerous examples of application to a wide range of materials (composites, metals, welds, biomaterials etc.) and situations(static, vibration, high strain rate etc.). Finally, it contains a detailed training section with examples of progressive difficulty to lead the reader to program the VFM. This is accompanied with a set of commented Matlab programs as well as with a GUI Matlab based software for more general situations.
Part I Principles and Theory.- Introduction, Main Equations and Notations.- The Principle of Virtual Work.- The Linear Virtual Fields Method.- The Non-linear Virtual Fields Method.- Complements.- Part II Applications.- Fiber Composites.- Metals.-Soft and Biological Materials.- Other Materials.- Design of New Tests for the VFM.-The VFM for force reconstruction.- Part III Training.- Case study I: Standard and Funny Isotropic Discs.- Case Study II: Unnotched Losipescu Test.- Case Study III: Orthotropic Plate in Pure Bending.- The CAMFIT Program.
Part I Principles and Theory.- Introduction, Main Equations and Notations.- The Principle of Virtual Work.- The Linear Virtual Fields Method.- The Non-linear Virtual Fields Method.- Complements.- Part II Applications.- Fiber Composites.- Metals.-Soft and Biological Materials.- Other Materials.- Design of New Tests for the VFM.-The VFM for force reconstruction.- Part III Training.- Case study I: Standard and Funny Isotropic Discs.- Case Study II: Unnotched Losipescu Test.- Case Study III: Orthotropic Plate in Pure Bending.- The CAMFIT Program.
Part I Principles and Theory.- Introduction, Main Equations and Notations.- The Principle of Virtual Work.- The Linear Virtual Fields Method.- The Non-linear Virtual Fields Method.- Complements.- Part II Applications.- Fiber Composites.- Metals.-Soft and Biological Materials.- Other Materials.- Design of New Tests for the VFM.-The VFM for force reconstruction.- Part III Training.- Case study I: Standard and Funny Isotropic Discs.- Case Study II: Unnotched Losipescu Test.- Case Study III: Orthotropic Plate in Pure Bending.- The CAMFIT Program.
Part I Principles and Theory.- Introduction, Main Equations and Notations.- The Principle of Virtual Work.- The Linear Virtual Fields Method.- The Non-linear Virtual Fields Method.- Complements.- Part II Applications.- Fiber Composites.- Metals.-Soft and Biological Materials.- Other Materials.- Design of New Tests for the VFM.-The VFM for force reconstruction.- Part III Training.- Case study I: Standard and Funny Isotropic Discs.- Case Study II: Unnotched Losipescu Test.- Case Study III: Orthotropic Plate in Pure Bending.- The CAMFIT Program.
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