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TECHNICAL PAPERS

A New ISO 10303 (STEP) Resource for Modeling Parameterization and Constraints

[+] Author and Article Information
Michael J. Pratt

LMR Systems, 21 High Street, Carlton, Bedford, MK43 7LA, UK

J. Comput. Inf. Sci. Eng 4(4), 339-351 (Jan 04, 2005) (13 pages) doi:10.1115/1.1814383 History: Online January 04, 2005
Copyright © 2004 by ASME
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References

Owen, J., 1997, STEP: An Introduction, 2nd ed., Information Geometers, Winchester, UK.
Pratt,  M. J., 2001, “Introduction to ISO 10303—The STEP Standard for Product Data Exchange,” ASME J. Comput. Inf. Syst. Eng., 1, No. 1, pp. 102–103.
ISO, 2004, “Industrial automation systems and integration—Product data representation and exchange—Part 108: Integrated application resource: Parameterization and constraints for explicit geometric product models,” International Standard ISO 10303-108, International Organization for Standardization, Geneva.
ISO, 1994, “Industrial automation systems and integration—Product data representation and exchange—Part 11: Description methods: The EXPRESS language reference manual,” International Standard ISO 10303-11, International Organization for Standardization, Geneva.
ISO, 2000, “Industrial automation systems and integration—Product data representation and exchange—Part 43: Integrated generic resource: Representation structures,” International Standard 10303-43, International Organization for Standardization, Geneva.
ISO, 2000, “Industrial automation systems and integration—Product data representation and exchange—Part 42: Integrated generic resource: Geometric and topological representation,” International Standard 10303-42, International Organization for Standardization, Geneva.
ISO, 1994, “Industrial automation systems and integration—Product data representation and exchange—Part 21: Implementation methods: Clear text encoding of the exchange structure,” International Standard 10303-21, International Organization for Standardization, Geneva.
ISO, 2002, “Industrial automation systems and integration—Product data representation and exchange—Part 50: Integrated generic resource: Mathematical constructs,” International Standard 10303-50, International Organization for Standardization, Geneva.
ISO, 2004, “Industrial automation systems and integration—Product data representation and exchange—Part 55: Integrated generic resource: Procedural and hybrid representation,” International Standard ISO 10303-55, International Organization for Standardization, Geneva.
Bettig,  B., and Shah,  J. J., 2000, “Derivation of a Standard set of Geometric Constraints for Parametric Modeling and Data Exchange,” Comput.-Aided Des., 33, No. 1, pp. 17–33.
Pratt,  M. J., 2001, “Extension of the STEP Standard for Parametric CAD Models,” ASME J. Comput. Inf. Syst. Eng., 1, No. 3, pp. 269–275.
Pratt, M. J., 2002, “Parametric STEP for Concurrent Engineering,” in Advances in Concurrent Engineering (Proc. 9th ISPE International Conference on Concurrent Engineering, Cranfield, UK, July 2002) R. Gonçalves, R. Roy, and A. Steiger-Garção eds., Balkema Publishers, Lisse, Netherlands, pp. 933–940.
Stiteler, M., 2004, “C_onstruction H_istory And P_arametricS_: Improving Affordability through Intelligent CAD Data Exchange,” CHAPS Program Final Report, Advanced Technology Institute, 5300 International Boulevard, North Charleston, SC 29418, USA.
Pratt, M. J., Anderson, W. D., and Ranger, T., 2004, “Towards the Standardized Exchange of Parameterized Feature-based CAD Models,” in press, Computer Aided Design.

Figures

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ISO 10303-108 explicit_geometric_constraint_schema
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ISO 10303-108 variational_representation_schema
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ISO 10303-108 sketch_schema
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ISO 10303-108 parameterization_schema
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ISO 10303-108 explicit_constraint_schema

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