COMPLAS 2017 will be a special occasion as we will be celebrating the 30th ANNIVERSARY OF THE FIRST COMPLAS CONFERENCE, IN 1987.
Previous meetings in the COMPLAS series were held in Barcelona in 1987, 1989, 1992, 1995, 1997, 2000, 2003, 2005, 2007, 2009, 2011, 2013 and 2015. The first thirteen conferences in the series were technically and academically successful and these meetings have become established events in the field of computational plasticity. We intend to make of COMPLAS 2017 a step forward in the history of the COMPLAS conferences.
The ever increasing rate of development of new engineering materials required to meet advanced technological needs poses fresh challenges in the field of constitutive modelling. The complex behaviour of such materials demands a closer interaction between numerical analysts and material scientists in order to produce thermodynamically consistent models which provide a response, while keeping with fundamental micromechanical principles and experimental observations. This necessity for collaboration is further highlighted by the continuing remarkable developments in computer hardware which makes the numerical simulation of complex deformation responses increasingly possible.
The objectives of COMPLAS 2017 are to address both the theoretical bases for the solution of plasticity problems and the numerical algorithms necessary for efficient and robust computer implementation. COMPLAS 2017 aims to act as a forum for practitioners in the field to discuss recent advances and identify future research directions.
COMPLAS 2017 is one of the Thematic Conferences of the European Community on Computational Methods in Applied Sciences (ECCOMAS). It is also an International Association for Computational Mechanics (IACM) Special Interest Conference.
Advanced Material Models
Biomechanics and Bio-Medicine
Composites
Contact Problems
Damage, Fracture and Fatigue
Environment and Geosciences
Forming Processes Simulations
Granulation Processes
High Velocity Impact
Industrial Applications
Innovative Computational Methods (FEM, Discrete Element Methods,
Meshless Methods, Particle-based Methods, etc.)
Multi-Body and Non-Linear Dynamics
Multi-Fracturing Solids
Multi-Physics Problems
Multi-Scale Material Models
Nano-Mechanics
Parallel and Real Time Computing Techniques
09月05日
2017
09月07日
2017
摘要截稿日期
摘要录用通知日期
初稿截稿日期
注册截止日期
2015年09月01日 西班牙
第13届计算可塑性国际会议
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