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Invariant plane-strains in crystal lattices considering reasonable kinematics of crystal slip

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ManuelPetersmann/Martensite_Calculator

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Martensite_Calculatur

Matlab code for the calculation of invariant plane-strains incorporating slip and twinning. Find a problem example in Materials/Steels/... The code is written in an object oriented programming framework in Matlab R2013 to facilitate the selection of solutions in the combined crystal-kinematic framework of crystal plasticty and martensite transformation theory. Here you find the open source publication in the international journal of plasticity: https://www.sciencedirect.com/science/article/pii/S0749641918306211

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Getting Started

Download or clone the repository. Navigate to the directory using the Matlab GUI or the cd command. Right-click the folder in the current folder sidebar on the right side of the GUI and select "Add to Path" - "Selected Folders and Subfolders". If you want to save your path permanently just type savepath in the command window.

To start the GUI type Martensite_Calculator into the Matlab console.

Citation

If you use our code for your own research, we would be grateful if you cite it via

@article{disloc_lath_mart,
	title={Unification of the non-linear geometric transformation theory of 
	martensite and crystal plasticity - application to dislocated lath martensite in steels},
	author={Petersmann, M. and Antretter, T. and Cailletaud, G. and Ehlenbröker,
	U. and Sannikov, A. and Fischer, F.D. },
	Journal = {International journal of Plasticity},
  	Year = {2019},
        Doi = {10.1016/j.ijplas.2019.02.016},
}

License

This project is licensed under GPL v3 - see the LICENSE.md file for details

Created by Manuel Petersmann

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Invariant plane-strains in crystal lattices considering reasonable kinematics of crystal slip

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