Advanced manufacturing of composites for structural and acoustic applications
Advanced manufacturing of composites for structural and acoustic applications
批准号:
514761-2017
负责人:
Therriault, DanielD
金额:
$34.94万
依托单位国家:
加拿大
项目类别:
Collaborative Research and Development Grants
财政年份:
2022
资助国家:
加拿大
项目状态:
已结题
起止时间:
2022-01-01 至 2023-12-31
中文摘要
增材制造(AM)在制造具有定制性能的廉价、高度定制的热塑性复合材料方面显示出无限的潜力。聚合物复合材料的轻量化和高比刚度和强度与增材制造的灵活制造性相结合,为需要高承载能力和精确控制结构几何形状的应用提供了独特的机会。这个大型项目主要涉及使用增材制造工艺制造结构和声学应用的复合材料。在这个项目中,我们提出(O1)开发用于熔融沉积建模(FDM)工艺的高性能材料,(O2)开发分析工具来预测FDM打印材料的力学行为,(O3)开发先进的FDM工艺来制造高性能结构复合材料,具有高机械强度和声学性能,以及灵活的可制造性。(O4)开发了一种先进的增材制造方法,用于在具有复杂表面的复合材料上直接沉积可磨损材料。此外,该项目将追求(补充目标,SO1)树脂传递模压(RTM)制造的复合材料的仿真工具和模型的开发,这是与Safran S.A.(法国)合作的NSERC工业椅的延续。这个多学科项目将是蒙特利尔理工大学一个多元化的学术研究团队和工业合作伙伴赛峰集团之间的合作。这个为期五年的研究项目是一个独特的机会,可以在多学科环境和非常专业的领域培养几名高素质人才(HQP),主要包括研究生(7名博士和5名硕士)和6名博士后。该项目将提供实验工作和理论建模之间的平衡训练,并将在包括复合材料,先进制造和声学材料在内的各个领域产生重要的知识进步。该项目与加拿大和魁北克政府支持的更安全的公共交通和环保的“绿色”飞机的发展直接相关。
英文摘要
Additive manufacturing (AM) has shown boundless potential for the manufacturing of inexpensive, highly-customized thermoplastic composites with tailored properties. The lightweight and high specific stiffness and strength of polymer composites combined with the flexible manufacturability of AM offers a unique opportunity for applications that require high load-bearing capacities and precise control over structure geometry. This large project mainly involves the manufacturing of composites using AM processes for structural and acoustic applications. In this project, we propose to (O1) develop high performance materials to be used in the fused deposition modeling (FDM) process, (O2) develop analytical tools to predict mechanical behavior of the FDM printed materials, (O3) develop an advanced FDM process for manufacturing of high performance structural composites featuring high mechanical strength and acoustic properties, and flexible manufacturability, and (O4) develop an advanced AM approach for the direct deposition of abradable materials on composites with complex surfaces. In addition, the project will pursue (supplementary objective, SO1) the development of simulation tools and models for the composites manufactured by resin transfer molding (RTM), which is a continuation of an NSERC Industrial Chair with Safran S.A. (France). This multidisciplinary project will be a collaboration between a diversified academic research team at Polytechnique Montreal and the industrial partner, Safran S.A. This five-year research project is a unique opportunity for the training of several highly qualified personnel (HQP) consisting principally of graduate students (7 PhD and 5 MS) and 6 postdoctoral fellows in a multidisciplinary environment and very specialized areas. The project will provide a balanced training between experimental work and theoretical modeling and will generate important knowledge advancements in various fields including composites, advanced manufacturing, and acoustic materials. This project is directly related to the development of safer public transportation and environmentally friendly "greener" airplanes supported by the Canadian and Quebec governments.
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会议论文
Rapid Additive Manufacturing of Large Sandwich Composite Structures for Aerospace Applications
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批准号:560257-2020
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项目类别:Alliance Grants
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资助金额:$4.43万
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财政年份:2022
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负责人:Therriault, DanielD
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依托单位:
Design and advanced manufacturing of a lunar rover using thermoplastic composites
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批准号:556497-2020
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项目类别:Alliance Grants
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资助金额:$6.87万
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财政年份:2022
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负责人:Therriault, DanielD
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依托单位:
海外基金