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Advanced diagnostics and controls of thermal spray coating processes

Advanced diagnostics and controls of thermal spray coating processes
热喷涂工艺的先进诊断和控制
批准号:
RGPIN-2014-06075
负责人:
Moreau, Christian
金额:
$1.82万
依托单位:
依托单位国家:
加拿大
项目类别:
Discovery Grants Program - Individual
财政年份:
2018
资助国家:
加拿大
项目状态:
已结题
起止时间:
2018-01-01 至 2019-12-31

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中文摘要
翻译
热喷涂是应用最广泛的涂料技术之一,在航空航天、汽车、生物医药、能源等多个工业领域都有应用。该技术用途广泛,可以喷涂金属、陶瓷、聚合物及其复合材料,以生产高性能涂层/薄膜。沉积过程包括在基底上喷涂熔融或半熔融颗粒(液滴),这些颗粒(液滴)变平、固化并积累形成具有非常典型的层状结构的涂层。对喷涂参数与飞行中颗粒特性、飞行中颗粒特性与实际涂层性能之间关系(工艺图)的研究,为更好地控制喷涂过程和设计高效高性能涂层提供了必要的数据。**拟议的计划旨在开发诊断和建模工具,使我们能够基于对喷涂过程中发生的复杂转化/转移过程的更基本的理解来定制涂层性能。将重点讨论悬浮热喷涂(STS)这一新兴技术。该工艺可以通过将纳米或亚微米粉末悬浮在液体载体(通常是乙醇或水)中来喷涂。这使得沉积的涂层具有独特的微结构,比传统热喷涂工艺中通常产生的微结构细一到两个数量级。这些纳米级结构带来了新的和改进的沉积涂层的性能,这是在要求苛刻的应用中所寻求的。新兴的STS工艺有可能取代更昂贵的PVD/CVD工艺,因为它不需要昂贵的真空系统,并且允许在大型部件上沉积。为了实现这一愿景,有必要更好地了解和控制涂层的结构和性能。**本研究报告的研究成果将有助于全面了解热喷涂工艺,特别是新兴的STS工艺。这一新知识将通过培训HQP以及在加拿大关键工业部门开发和部署先进的涂层和传感技术,刺激加拿大热喷涂市场的增长;这就是说;航空航天、能源和自然资源。训练有素的HQP将获得先进制造业的经验和技术专长,这是对加拿大经济至关重要的工业部门。开发的诊断技术和模型是至关重要的,因为它们将广泛用于开发创新的STS应用,我们希望在我们新成立的加拿大热喷涂和表面工程研究主席中解决更多的应用研究主题。事实上,我们将广泛使用这些工具来优化和控制新兴STS应用中的涂层特性,如热障涂层、燃料电池、传感器、功能涂层、活性膜等。
英文摘要
Thermal spray is one of the most used coating technologies with applications in several industrial sectors such as aerospace, automotive, biomedical, energy, etc. The technology is versatile as metals, ceramics, polymers and their composites can be sprayed to produce high-performance coatings/films. The deposition processes involve spraying on a substrate molten or semi-molten particles (droplets) that flatten, solidify and accumulate forming a coating presenting a very typical lamellar structure. The study of the relationships (process maps) between the spray parameters and in-flight particle characteristics and between in-flight particle characteristics and actual coating properties brings the data necessary to better control the spray processes and design efficiently high performance coatings.**The proposed program targets the development of diagnostic and modeling tools that will permit us to tailor coating properties based on a more fundamental understanding of the complex transformation/transfer processes occurring during spraying. An important focus will be given to the emerging technology of suspension thermal spray (STS). This process enables spraying nano- or submicron powders by suspending them in a liquid carrier (commonly ethanol or water). This allows the deposition of coatings with unique microstructures that are one to two orders of magnitude finer than those normally generated in conventional thermal spray processes. These nano-scale structures bring new and improved properties of the deposited coatings that are sought in demanding applications. The emerging STS process has the potential of replacing much more expensive PVD/CVD processes as it does not require expensive vacuum systems and allows deposition on large components. To achieve this vision although, it is necessary to better understand and control coating structure and properties.**The research outcomes of this DG will contribute to develop a comprehensive understanding of thermal spray processes and, more particularly, of the emerging STS process. This new knowledge will stimulate the growth of thermal spray markets in Canada by training HQP and by developing and deploying advanced coating and sensing technologies in key industrial sectors for Canada; that is to say; aerospace, energy and natural resources. The trained HQP will gain experience and technical expertise in advanced manufacturing, an industrial sector of fundamental importance to the Canadian economy. The developed diagnostic techniques and models are crucial as they will be extensively used for developing innovative STS applications in the more applied research themes we want to address in our newly establish Canada Research Chair in Thermal Spray and Surface Engineering. Indeed, we will use extensively these tools to optimize and control coating characteristics in emerging STS applications such as thermal barrier coatings, fuel cells, sensors, functional coatings, active membranes, etc.
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Thermal Spray and Surface Engineering
  • 批准号:
    CRC-2019-00071
  • 项目类别:
    Canada Research Chairs
  • 资助金额:
    $14.57万
  • 财政年份:
    2022
  • 负责人:
    Moreau, Christian
  • 依托单位:
Thermal Spray Processing: Process Diagnostics and Control by Artificial Intelligence
  • 批准号:
    RGPIN-2020-04614
  • 项目类别:
    Discovery Grants Program - Individual
  • 资助金额:
    $2.84万
  • 财政年份:
    2022
  • 负责人:
    Moreau, Christian
  • 依托单位:
Advanced Processing of MCrAlY Coatings (AMPC)
  • 批准号:
    556145-2020
  • 项目类别:
    Alliance Grants
  • 资助金额:
    $10.93万
  • 财政年份:
    2021
  • 负责人:
    Moreau, Christian
  • 依托单位:
Thermal Spray And Surface Engineering
  • 批准号:
    CRC-2019-00071
  • 项目类别:
    Canada Research Chairs
  • 资助金额:
    $14.57万
  • 财政年份:
    2021
  • 负责人:
    Moreau, Christian
  • 依托单位:
海外基金