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Robust Design of Glass Run-Channel Seal
Technical Paper
2004-01-1687
ISSN: 0148-7191, e-ISSN: 2688-3627
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English
Abstract
Glass run-channel seals are located between DIW (Door in White) and window glass. They are designed to allow window glass to move smoothly while other two major requirements are met; (1) Provide insulation to water leakage and noise, and (2) Stabilize the window glass during glass movement, door slamming and vehicle operation.
For a robust glass guidance system, it is critical to minimize the variation of seal compression force. In addition, it is desired to maintain a low seal compression force, which meets the minimum requirement for insulating water leakage/noise and stabilizing the window glass, for enhancing the durability of glass guidance system.
In this paper, a robust synthesis and design concepts on the glass run-channel seal is presented. The developed concept is demonstrated with test data.
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Authors
Citation
Lin, C., "Robust Design of Glass Run-Channel Seal," SAE Technical Paper 2004-01-1687, 2004, https://doi.org/10.4271/2004-01-1687.Also In
References
- LIN C. L. 2001 Proceedings of Seventh ISSAT International Conference on Reliability and Quality in Design Washington D.C. 237 241 Virtual Experimental Design on Glass Guidance System with an Integrated Dual-Cable Regulator - Part I: CAE Model Validation
- LIN C. L. IM K. H. BHAVSAR T. R. 2002 Proceedings of Eighth ISSAT International Conference on Reliability and Quality in Design Anaheim CA 287 291 Virtual Experimental Design on Glass Guidance System with an Integrated Dual-Cable Regulator - Part II: Design Optimization
- LIN C. L. IM K. H. 2002 Proceedings of Second International Conference on Axiomatic Design Cambridge MA System Design Process Integration of Cable-Drive Glass Guidance System using Axiomatic Design
- LIN C. L. 2002 Spring Research Conference on Statistics in Industry and Technology Ann Arbor MI Math-Based Statistical Quality Analysis on Cable-Drive Glass Guidance System
- LIN C. L. 2002 International Journal of Reliability, Quality, and Safety Engineering 9 4 317 328 Virtual Experimental Design Optimization on Cable-Drive Glass Guidance System