A contour sub-division algorithm on each layer arising from slicing a heterogeneous object is proposed. Within each slice, the material grading is decomposed into subcontours according to the different grading variation. A parameter called 'grading step-width' is defined to control the number of sub-contours and resolution of the grading. With such discretization, it is, therefore, possible to build a heterogeneous object on layered manufacturing machines of different fabricating precision specification.published_or_final_versio
Recent advances in additive manufacturing technologies demand for extremely customized, complex shap...
We propose a universal approach to the outstanding problem of computer modeling of continuously vary...
A key process in additive manufacturing is converting a 3D model into a set of instructions that a ...
The emphasis of this work is to discuss a scheme for modeling the material grading and structures of...
Conventional solid modeling systems have focused on developing homogeneous models of physical object...
Solid/Geometric Modeling has been a crucial technology aiding automation in design and manufacturing...
Slicing contour generation for geometric model is a vital process in rapid prototyping manufacturing...
Materially graded objects are objects composed of different constituent materials and could exhibit...
This paper proposes a contour-processing system to enhance the capability and efficiency of fabricat...
An adaptive slicing algorithm that can vary the layer thickness in relation to local geometry is pre...
This paper presents an approach based on topological hierarchy to representation and subsequent fabr...
The usage of features in computer aided design and manufacturing has increased significantly over t...
The 5-axis layered manufacturing technology facilitates fabrication of a part with overhanging feat...
This study is attempted to use a mathematical definition to describe the principles of Layer Manufac...
To manufacture the component made of a multiphase perfect material (including homogeneous and multi...
Recent advances in additive manufacturing technologies demand for extremely customized, complex shap...
We propose a universal approach to the outstanding problem of computer modeling of continuously vary...
A key process in additive manufacturing is converting a 3D model into a set of instructions that a ...
The emphasis of this work is to discuss a scheme for modeling the material grading and structures of...
Conventional solid modeling systems have focused on developing homogeneous models of physical object...
Solid/Geometric Modeling has been a crucial technology aiding automation in design and manufacturing...
Slicing contour generation for geometric model is a vital process in rapid prototyping manufacturing...
Materially graded objects are objects composed of different constituent materials and could exhibit...
This paper proposes a contour-processing system to enhance the capability and efficiency of fabricat...
An adaptive slicing algorithm that can vary the layer thickness in relation to local geometry is pre...
This paper presents an approach based on topological hierarchy to representation and subsequent fabr...
The usage of features in computer aided design and manufacturing has increased significantly over t...
The 5-axis layered manufacturing technology facilitates fabrication of a part with overhanging feat...
This study is attempted to use a mathematical definition to describe the principles of Layer Manufac...
To manufacture the component made of a multiphase perfect material (including homogeneous and multi...
Recent advances in additive manufacturing technologies demand for extremely customized, complex shap...
We propose a universal approach to the outstanding problem of computer modeling of continuously vary...
A key process in additive manufacturing is converting a 3D model into a set of instructions that a ...