In this study, micro-machining of f.c.c. single-crystal materials was investigated based on a hybrid modelling approach combining smoothed particle hydrodynamics and continuum finite element analysis. The numerical modelling was implemented in the commercial software ABAQUS/Explicit by employing a user-defined subroutine VUMAT for a crystal plasticity formulation to gain insight into the underlying mechanisms that drive a plastic response of materials in high deformation processes. The numerical studies demonstrate that cutting force variations in different cutting directions are similar for different f.c.c. crystals even though the magnitudes of the cutting forces are different
The purpose of this study is to explain the experimentally observed variations in cutting parameters...
In this paper a multiscale simulation study was carried out in order to gain in-depth understanding ...
For the past decades, one of the major trends in industry has been micro-product manufacturing. Micr...
With an increased use of mechanical micro-machining in manufacture of small-sized components with co...
AbstractMachining simulation is a challenging task for numerical method due to inherent difficulty o...
A micro-machining process becomes increasingly important with the continuous miniaturization of comp...
The finite element (FE) method has been extensively used to model complex cutting processes. However...
In this paper, a developed three-dimensional model combining finite-element and smoothed-particle hy...
This paper presents analysis of mechanics in a micro-cutting process of a single-crystal metal – mec...
A machining process is one of the most common techniques used to remove material in order to create ...
AbstractIn this paper, a developed three-dimensional model combining finite-element and smoothed-par...
In recent years thanks to enhancements in design of advanced machines, laser metrology and computer ...
In latest years small scale machining has been widely used in advanced engineering applications such...
A size effect is exhibited by metals in cutting processes at small scales: a nonlinear escalation in...
Crystal plasticity model with physics-based dislocation kinetics and hardening relations is presente...
The purpose of this study is to explain the experimentally observed variations in cutting parameters...
In this paper a multiscale simulation study was carried out in order to gain in-depth understanding ...
For the past decades, one of the major trends in industry has been micro-product manufacturing. Micr...
With an increased use of mechanical micro-machining in manufacture of small-sized components with co...
AbstractMachining simulation is a challenging task for numerical method due to inherent difficulty o...
A micro-machining process becomes increasingly important with the continuous miniaturization of comp...
The finite element (FE) method has been extensively used to model complex cutting processes. However...
In this paper, a developed three-dimensional model combining finite-element and smoothed-particle hy...
This paper presents analysis of mechanics in a micro-cutting process of a single-crystal metal – mec...
A machining process is one of the most common techniques used to remove material in order to create ...
AbstractIn this paper, a developed three-dimensional model combining finite-element and smoothed-par...
In recent years thanks to enhancements in design of advanced machines, laser metrology and computer ...
In latest years small scale machining has been widely used in advanced engineering applications such...
A size effect is exhibited by metals in cutting processes at small scales: a nonlinear escalation in...
Crystal plasticity model with physics-based dislocation kinetics and hardening relations is presente...
The purpose of this study is to explain the experimentally observed variations in cutting parameters...
In this paper a multiscale simulation study was carried out in order to gain in-depth understanding ...
For the past decades, one of the major trends in industry has been micro-product manufacturing. Micr...