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Sustainable design and manufacturing of multifunctional polymer nanocomposite coatings: A multiscale systems approach.

机译:多功能聚合物纳米复合材料涂料的可持续设计和制造:一种多尺度系统方法。

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摘要

Polymer nanocomposites have a great potential to be a dominant coating material in a wide range of applications in the automotive, aerospace, ship-making, construction, and pharmaceutical industries. However, how to realize design sustainability of this type of nanostructured materials and how to ensure the true optimality of the product quality and process performance in coating manufacturing remain as a mountaintop area. The major challenges arise from the intrinsic multiscale nature of the material-process-product system and the need to manipulate the high levels of complexity and uncertainty in design and manufacturing processes.;This research centers on the development of a comprehensive multiscale computational methodology and a computer-aided tool set that can facilitate multifunctional nanocoating design and application from novel function envisioning and idea refinement, to knowledge discovery and design solution derivation, and further to performance testing in industrial applications and life cycle analysis. The principal idea is to achieve exceptional system performance through concurrent characterization and optimization of materials, product and associated manufacturing processes covering a wide range of length and time scales. Multiscale modeling and simulation techniques ranging from microscopic molecular modeling to classical continuum modeling are seamlessly coupled. The tight integration of different methods and theories at individual scales allows the prediction of macroscopic coating performance from the fundamental molecular behavior. Goal-oriented design is also pursued by integrating additional methods for bio-inspired dynamic optimization and computational task management that can be implemented in a hierarchical computing architecture. Furthermore, multiscale systems methodologies are developed to achieve the best possible material application towards sustainable manufacturing. Automotive coating manufacturing, that involves paint spay and curing, is specifically discussed in this dissertation. Nevertheless, the multiscale considerations for sustainable manufacturing, the novel concept of IPP control, and the new PPDE-based optimization method are applicable to other types of manufacturing, e.g., metal coating development through electroplating. It is demonstrated that the methodological development in this dissertation can greatly facilitate experimentalists in novel material invention and new knowledge discovery. At the same time, they can provide scientific guidance and reveal various new opportunities and effective strategies for sustainable manufacturing.
机译:聚合物纳米复合材料具有巨大的潜力,可以在汽车,航空航天,造船,建筑和制药行业的广泛应用中成为主导涂料。但是,如何实现这种类型的纳米结构材料的设计可持续性以及如何确保涂层制造中产品质量和工艺性能的真正最佳仍然是一个山顶地区。主要挑战来自材料-过程-产品系统的固有多尺度性质以及在设计和制造过程中操纵高水平的复杂性和不确定性的需要。本研究的重点是全面的多尺度计算方法和方法的发展。计算机辅助工具集,可促进多功能纳米涂层的设计和应用,从新颖的功能构想和概念提炼,到知识发现和设计解决方案派生,以及工业应用和生命周期分析中的性能测试。其主要思想是通过同时表征和优化材料,产品以及相关的制造过程来实现出色的系统性能,这些过程涵盖了各种长度和时间范围。从微观分子建模到经典连续谱建模的多尺度建模和仿真技术已无缝耦合。不同方法和理论在各个尺度上的紧密集成,可以从基本分子行为预测宏观涂层性能。通过集成用于生物启发式动态优化和可在分层计算体系结构中实现的计算任务管理的其他方法,也可以追求面向目标的设计。此外,开发了多尺度系统方法论,以实现可持续生产的最佳材料应用。本文具体讨论了涉及涂料喷涂和固化的汽车涂料制造。然而,可持续制造的多方面考虑,IPP控制的新颖概念以及基于PPDE的新优化方法也适用于其他类型的制造,例如通过电镀开发金属涂层。实践证明,本文的方法论发展可以极大地促进实验人员进行新的材料发明和新知识的发现。同时,他们可以提供科学指导并揭示可持续制造的各种新机会和有效策略。

著录项

  • 作者

    Xiao, Jie.;

  • 作者单位

    Wayne State University.;

  • 授予单位 Wayne State University.;
  • 学科 Engineering Chemical.;Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 331 p.
  • 总页数 331
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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