3D Printer for Advanced Materials and Structures Research
3D Printer for Advanced Materials and Structures Research
批准号:
RTI-2019-00570
负责人:
Hubert, Pascal
金额:
$10.85万
依托单位:
依托单位国家:
加拿大
项目类别:
Research Tools and Instruments
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
中文摘要
这份提案要求从NSERC RTI计划获得资金,以从CoSine Additive为AM1+3D打印机提供资金。这款3D打印机兼容细丝和颗粒挤出系统,并且是大幅面、伺服控制和开放式架构。这些功能是支持广泛研究项目的关键,从基础材料开发到应用加工和大范围应用的结构优化。AM1+3D打印机与具有长丝和颗粒原料的公开市场材料兼容。可印刷的材料范围从环境友好型聚合物(如聚乳酸)到技术聚合物,如聚醚醚酮(PEEK)或尼龙。加热台与加热室相结合,增强了打印部件的尺寸控制。较大的打印尺寸(1100 Mm X 850 Mm X 850 Mm)将使您能够打印各种几何图形,甚至结构部件。申请的打印机将为工程学院和农业与环境科学学院的研究人员提供支持。有了所要求的3D打印机,将开发新的制造技术,将利用回收复合材料设计用于添加剂制造的新材料,我们将创造受自然启发的先进轻质材料,将研究未来的添加剂制造优化方案,并将设计通过有限元优化构思的新型外科设备。所要求的3D打印机将影响大量本科生、研究生和博士后研究员。在支持的研究项目之间,估计每年将有40-50名高级高素质人员使用3D打印机进行研究。
英文摘要
This proposal requests funding from NSERC RTI program for the AM1+ 3D printer from Cosine Additive. This 3D printer is compatible with both filament and pellet extrusion systems and is large format, servo controlled and open architecture. These features are key to support a wide range of research projects from fundamental materials development to applied processing and structural optimization for a large range of applications. The AM1+ 3D printer is compatible with open market materials with both filament and pellet feedstock. The materials that can be printed range from environment-friendly polymers (e.g. polylactic acid, PLA) to technical polymers like polyether ether ketone (PEEK) or nylons. A heated table combined with a heated chamber enhance dimensional control of the printed parts. The large print size (1100 mm x 850 mm x 850 mm) will enable to print a wide range of geometries and even structural components. The requested printer will support researchers from the Faculties of Engineering and Agricultural and Environmental Sciences. With the requested 3D printer, novel manufacturing techniques will be developed, new materials for additive manufacturing from recycled composites will be engineered, advanced light-weight materials inspired by nature will we create, future additive manufacturing optimization protocols will be investigated, and novel surgical devices conceived via finite element optimization will be designed. The requested 3D printer will impact a large number of undergraduate, graduate students and postdoctoral fellows. Between the research programs supported, it is estimated that 40-50 per year senior highly qualified personnel will use the 3D printer for their research.
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