1. SMA 1991:
Austin,
Texas,
USA
Symposium on Solid Modeling Foundations and CAD/CAM Applications,
June 05-07,
1991,
Austin,
Texas,
USA. ACM,
1991
- S. R. Ala:
Design methodology of boundary data structures.
13-23
- Michael S. Karasick, Derek Lieber:
Schemata for interrogating solid boundaries.
25-34
- George Vancek:
BRep-Index: a multidimensional space partitioning tree.
35-44
- Yi Luo, Gábor Lukács:
A boundary representation for form features and non-manifold solid objects.
45-60
- Jean-François Dufourd:
An OBJ3 functional specification for boundary representation.
61-72
- R. E. da Silva, K. L. Wood, Joseph J. Beaman:
An algebraic approach to geometric query processing in CAD/CAM applications.
73-86
- Pere Brunet, Isabel Navazo, Alvar Vinacua:
Octree detection of closed compartments.
87-96
- Maged S. Tawfik:
An efficient algorithm for CSG to b-rep conversion.
99-108
- Amitava Maulik:
An efficient intersection algorithm for polyhedral cellular decompositions.
109-118
- Toshiaki Satoh, Hiroaki Chiyokura:
Boolean operations on sets using surface data.
119-126
- Stephen Cameron:
Approximation hierarchies and S-bounds.
129-137
- Ari Rappoport:
The n-dimensional extended convex differences tree (ECDT) for representing polyhedra.
139-147
- Yoshiyuki Shiroma, Yukinori Kakazu, Norio Okino:
A generalized sweeping method for SGC modeling.
149-157
- Arlo L. Ames:
Production ready feature recognition based automatic group technology part coding.
161-169
- Jonathan R. Corney, Doug E. R. Clark:
A feature recognition algorithm for multiply connected depressions and protrusions in 2 1/2 D objects.
171-183
- Xin Dong, Michael J. Wozny:
A method for generating volumetric features from surface features.
185-194
- Michael E. Hohmeyer:
A surface intersection algorithm based on loop detection.
197-207
- Dinesh Manocha, John F. Canny:
A new approach for surface intersection.
209-219
- Ronald N. Goldman, James R. Miller:
Combining algebraic rigor with geometric robustness for the detection and calculation of conic sections in the intersection of two natural quadric surfaces.
221-231
- Ching-Kuang Shene, John K. Johnstone:
On the planar intersection of natural quadrics.
233-242
- Kenneth I. Joy:
Utilizing parametric hyperpatch methods for modeling and display of free-form solids.
245-254
- John L. Ellis, Gershon Kedem, T. C. Lyerly, D. G. Thielman, R. J. Marisa, Jai Menon, Herbert B. Voelcker:
The Ray casting engine and Ray representatives.
255-267
- Sylvain Karpf, Christophe Chaillou, Eric Nyiri, Michel Mériaux:
Real-time display of quadric on the I.M.O.G.E.N.E. machine.
269-277
- Chandrasekhar Narayanaswami, Wm. Randolph Franklin:
Determination of mass properties of polygonal CSG objects in parallel.
279-288
- Henry P. Moreton, Carlo H. Séquin:
Surface design with minimum energy networks.
291-301
- Seth J. Teller, Carlo H. Séquin:
Constructing easily invertible Bezier surfaces that parameterize general quadrics.
303-315
- Pramod Koparkar:
Parametric blending using fanout surfaces.
317-327
- Menno Kosters:
An extension of the potential method to higher-order blendings.
329-337
- Ai-Ping Bien, Fuhua Cheng:
A blending model for parametrically defined geometric objects.
339-347
- Paul Borrel, Dominique Bechmann:
Deformation of n-dimensional objects.
351-369
- Glenn A. Kramer:
Using degrees of freedom analysis to solve geometric constraint systems.
371-378
- David Serrano:
Automatic dimensioning in design for manufacturing.
379-386
- Wolfgang Sohrt, Beat Brüderlin:
Interaction with constraints in 3D modeling.
387-396
- J. C. Owen:
Algebraic solution for geometry from dimensional constraints.
397-407
- Jan Wolter, Periannan Chandrasekaran:
A concept for a constraint-based representation of functional and geometric design knowledge.
409-418
- Masatomo Inui, Fumihiko Kimura:
Algebraic reasoning of position uncertainties of parts in an assembly.
419-428
- Tamal K. Dey, Chandrajit L. Bajaj, Kokichi Sugihara:
On good triangulations in three dimensions.
431-441
- J. J. Cox, W. W. Charlesworth, D. C. Anderson:
Domain composition methods for associating geometric modeling with finite element modeling.
443-454
- Doug Moore, Joe D. Warren:
Bounded aspect ration triangulation of smooth solids.
455-464
- Nickolas S. Sapidis, Renato Perucchio:
Domain Delaunay Tetrahedrization of arbitrarily shaped curved polyhedra defined in a solid modeling system.
465-480
- Xinhua Yu, John A. Goldak, Lingxian Dong:
Constructing 3-D discrete medial axis.
481-489
- Hyowon Suh, Rashpal S. Ahluwalia, James E. Miller:
Feature generation in concurrent engineering environment.
493-502
- Amitabha Mukerjee:
Qualitative geometric design.
503-514
- S. Dillion, B. Hill, P. Kieffer:
Cooled turbine airfoil design with solid modeling at Textron Lycoming.
515-521
- Randi M. Summer:
Summary of paper: feature & face editing in hybrid solid modeler.
525
- Maharaj Mukherjee:
An efficient and simple polygon intersection algorithm.
527
- Julio Carrera:
Handling face coincidence in a boolean algorithm for BREPS.
529
- Saul Youssef:
Solid modeling for geometries with repeated volumes.
531
- Jeff Heisserman:
A generalized Euler-Poincare equation.
533
- Prem Pradhan, Ibrahim Zeid:
NC turning tool path generation from CSG representations using the slab method.
535
- Yasushi Yamaguchi, Fumihiko Kimura:
Non-manifold topology model based on coupling entities.
537
- Sabine Stifter:
Visualization of algebraic solids and surfaces.
539
- Chia Yung Han, Penchuan Yu:
Object model reconstruction from complex planar cross sections.
541
- Tatsuhiko Suzuki, Seiji Eguchi, Hideo Yoshioka, Shigeki Tanimoto, Masato Honda:
Development of a surface-and-modeler for raw material die making.
543
- Stephen Chan:
An object-oriented implementation of STEP.
545
- Robert Young, Walid Keirouz, Jahir Pabon:
An architecture for conceptual mechanical modeling.
547
- Tsuyoshi Takayama, Issei Fujishiro, Yasuhiko Ikebe:
Product database modeling for adaptive kinematic simulation of planar linkage mechanisms.
549
- Raja P. K. Banerjee, Amar Mukherjee:
A new VLSI set membership classification algorithm.
551
Copyright © Mon Nov 2 21:13:29 2009
by Michael Ley (ley@uni-trier.de)