Mesh segmentation and parameterization are crucial for Reverse Engineering (RE). Bijective parameterizations of the sub-meshes are a sine-qua-non test for segmentation. Current segmentation methods use either (1) topologic or (2) geometric criteria to partition the mesh. Reported topology-based segmentations produce large sub-meshes which reject parameterizations. Geometry-based segmentations are very sensitive to local variations in dihedral angle or curvatures, thus producing an exaggerated large number of small sub-meshes. Although small sub-meshes accept nearly isometric parameterizations, this significant granulation defeats the intent of synthesizing a usable Boundary Representation (compulsory for RE). In response to these limitation...
Current reverse engineering systems are able to generate simple valid boundary representation (B-rep...
Reverse Engineering has been exploited for several application, e.g measuring and inspection, custom...
Given a 2-manifold triangular mesh M subset of R-3, with border, a parameterization of M is a FACE o...
Mesh segmentation and parameterization are crucial for Reverse Engineering (RE). Bijective parameter...
In the context of CAD, CAM, CAE, and reverse engineering, the problem of mesh parameterization is a ...
This manuscript reports a geometrical and a topological methods to segment a closed triangular 2-man...
This paper presents a novel, powerful reconstruction algorithm that can recover correct shape geomet...
Boundary representation models reverse engineered from 3D range data suffer from various inaccuracie...
In design and manufacturing, mesh segmentation is required for FACE construction in boundary represe...
International audienceThis paper presents a new segmentation approach, for 3D dynamic meshes, based ...
Boundary representation models reconstructed from 3D range data suffer from various inaccuracies cau...
With the inherent usage of the computer when dealing with additive manufacturing, it only makes sens...
Reverse Engineering (RE) requires representing with free forms (NURBS, Spline, B,zier) a real surfac...
Boundary representation models reconstructed from 3D range data suffer from various in-accuracies ca...
Current reverse engineering systems are able to generate simple valid boundary representation (B-rep...
Current reverse engineering systems are able to generate simple valid boundary representation (B-rep...
Reverse Engineering has been exploited for several application, e.g measuring and inspection, custom...
Given a 2-manifold triangular mesh M subset of R-3, with border, a parameterization of M is a FACE o...
Mesh segmentation and parameterization are crucial for Reverse Engineering (RE). Bijective parameter...
In the context of CAD, CAM, CAE, and reverse engineering, the problem of mesh parameterization is a ...
This manuscript reports a geometrical and a topological methods to segment a closed triangular 2-man...
This paper presents a novel, powerful reconstruction algorithm that can recover correct shape geomet...
Boundary representation models reverse engineered from 3D range data suffer from various inaccuracie...
In design and manufacturing, mesh segmentation is required for FACE construction in boundary represe...
International audienceThis paper presents a new segmentation approach, for 3D dynamic meshes, based ...
Boundary representation models reconstructed from 3D range data suffer from various inaccuracies cau...
With the inherent usage of the computer when dealing with additive manufacturing, it only makes sens...
Reverse Engineering (RE) requires representing with free forms (NURBS, Spline, B,zier) a real surfac...
Boundary representation models reconstructed from 3D range data suffer from various in-accuracies ca...
Current reverse engineering systems are able to generate simple valid boundary representation (B-rep...
Current reverse engineering systems are able to generate simple valid boundary representation (B-rep...
Reverse Engineering has been exploited for several application, e.g measuring and inspection, custom...
Given a 2-manifold triangular mesh M subset of R-3, with border, a parameterization of M is a FACE o...