首页> 外文会议>ASME international mechanical engineering congress and exposition >DEVELOPMENT OF A LOW COEFFICIENT OF THERMAL EXPANSION COMPOSITE TOOLING VIA 3D PRINTING
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DEVELOPMENT OF A LOW COEFFICIENT OF THERMAL EXPANSION COMPOSITE TOOLING VIA 3D PRINTING

机译:通过3D印刷开发低膨胀系数的热膨胀复合材料模具

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The use of additive manufacturing (AM) provides an opportunity to fabricate composite tooling rapidly and cost effectively. This project appears to have demonstrated the use of an additive technology for the production of composite processing tools. In particular, this work has addressed tooling that is functional in the range of autoclave temperatures around 300-350℉. This has led to the use of Invar and ceramic materials for use in composite molding tools because of their relatively low coefficient of thermal expansion (CTE) performance, which is in range to that commonly displayed by carbon fiber reinforced composites during their solidifying-curing process. In this project, two main approaches have been considered. The first approach consisted on using binder jetting for 3D printing sand molds to cast molten Invar to produce the composite tooling. Indeed, 3D sand printing offers the ability to cast complex geometries without the geometric limitations associated with conventional pattern making. The second innovative approach was based on printing a mold based on silica sand and infiltrating it with a polymer to yield a robust ceramic composite tooling. An additional technology using a Hybrid Direct Energy Deposition (DED) System for cladding Invar upon a steel molding structure has also been considered for producing potential composite tooling. Indeed, this unique approach could represent a promising technology for producing low cost composite tooling since only a small layer of Invar would be printed upon a non-expensive substrate. The results have shown that the aforementioned processes have successfully resulted on low CTE composite tooling molds. This work presents innovative AM processes by initially investigating 3D ceramic systems for composite tooling.
机译:增材制造(AM)的使用为快速制造复合工具和降低成本提供了机会。该项目似乎已经证明了使用添加剂技术生产复合材料加工工具。尤其是,这项工作解决了在300-350℉的高压釜温度范围内起作用的工具。因因瓦合金和陶瓷材料相对较低的热膨胀系数(CTE)性能,使得碳纤维增强复合材料在固化固化过程中通常表现出较低的热膨胀系数(CTE)性能,从而导致将其用于复合材料成型工具中。在该项目中,已经考虑了两种主要方法。第一种方法包括对3D打印砂模使用粘结剂喷射法来浇铸熔融的因瓦合金以生产复合工具。的确,3D喷砂技术能够铸造复杂的几何形状,而没有传统图案制作所带来的几何限制。第二种创新方法是基于印刷基于硅砂的模具,并用一种​​聚合物渗入模具,以生产出坚固的陶瓷复合材料工具。还考虑了使用混合直接能量沉积(DED)系统在钢模制结构上包覆Invar的其他技术,以生产潜在的复合工具。确实,这种独特的方法可以代表一种生产低成本复合工具的有前途的技术,因为只有一小层殷钢将被印刷在廉价的基材上。结果表明,上述方法已成功地在低CTE复合模具上完成。通过初步研究用于复合工具的3D陶瓷系统,这项工作提出了创新的增材制造工艺。

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