首页> 外文期刊>SAE International Journal of Passenger Cars - Mechanical Systems >Novel Lightweight Laminate Concept with Ultrathin Chemically Strengthened Glass for Automotive Windshields
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Novel Lightweight Laminate Concept with Ultrathin Chemically Strengthened Glass for Automotive Windshields

机译:用于汽车挡风玻璃的具有超薄化学强化玻璃的新型轻质层压概念

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摘要

This paper proposes a novel concept for lightweight vehicle design, offering a step change in weight reduction for automotive glazing. Reducing window weight can be achieved by decreasing the thickness of the glass plies used to form vehicle windows. However, reducing the thickness of conventional automotive windows also decreases its effective strength; therefore, concerns about glass breakage become a limiting factor for weight reduction. Chemically strengthened ultrathin Corning Gorilla Glass offers the potential to go beyond existing thickness limitations. Its higher strength compared to standard soda lime window glass allows the design of thin, low weight window constructions. In addition, its unique manufacturing process delivers pristine glass surfaces and precise thickness control for high quality window optics. While this concept can be applied to all vehicle openings, this study focuses on automotive windshield design. By replacing the thick inner ply of a windshield laminate with an ultrathin Gorilla Glass ply, a significant weight reduction can be achieved. An overall reduction in windshield weight of more than 30% can be achieved with the proposed constructions in comparison to conventional designs. Test results will be discussed to demonstrate concept feasibility under consideration of regulatory and OEM vehicle design criteria. Benefits, as well as trade-offs, will be reviewed.
机译:本文提出了一种用于轻型车辆设计的新颖概念,为减轻汽车玻璃的重量提供了一个阶段性的变化。减少窗户重量可以通过减少用于形成车窗的玻璃层的厚度来实现。但是,减小传统汽车窗户的厚度也会降低其有效强度。因此,对玻璃破裂的担忧成为减轻重量的限制因素。化学强化的超薄康宁大猩猩玻璃提供了超越现有厚度限制的潜力。与标准钠钙窗玻璃相比,它具有更高的强度,可以设计出轻薄的轻质窗玻璃。此外,其独特的制造工艺还可以提供原始的玻璃表面和精确的厚度控制,以生产高质量的窗户光学器件。尽管此概念可应用于所有车辆开口,但本研究着重于汽车挡风玻璃的设计。通过用超薄的大猩猩玻璃层代替挡风玻璃层压板的厚内层,可以显着减轻重量。与传统设计相比,所提出的结构可以使挡风玻璃的重量整体减少30%以上。在讨论法规和OEM车辆设计标准时,将讨论测试结果以证明概念的可行性。收益和权衡将被审查。

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