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MECHANICAL PERFORMANCE ANALYSIS OF ULTEM 9085 IN A HEATED, IRRADIATED ENVIRONMENT

机译:加热,辐射环境下ULTEM 9085的机械性能分析

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This paper investigates the thermal and radiation performance of 3D-printed ULTEM materials following ASTM standard D638. ULTEM is a thermoplastic in the polyetherimide (PEI) family that is regularly used as a high-grade material for 3D printing. This material has similar properties to polyether ether ketone (PEEK), which is another thermoplastic that has strong mechanical properties at elevated temperature conditions. While PEEK has stronger mechanical properties, ULTEM is significantly more cost efficient to acquire and process via 3D printing. Also, most 3D printers are unable to utilize PEEK because of the significantly higher temperature requirements this material imposes on a 3D printer. This work is motivated by the need to rapidly deploy robotic inspection systems within a nuclear canister environment, which exposes the material to temperatures up to 170°C (340℉), and radiation levels of 270 Gy/hr (27 krad/hr), which are significantly beyond that of conventional 3D-printed parts. The design analysis was performed via an experiment consisting of three treatment groups of dogbone ULTEM test pieces. After tensile testing all of the pieces, the material properties were compared to those of the control group. These results allow manufacturers to select a more cost-effective material to build parts to operate in such a harsh high-temperature, high-radiation environment, which could include applications in both space systems and nuclear inspection robotics. Specifically, the results were used to guide the development of a robust robotic inspection system for the Nuclear Energy University Program (NEUP) by replacing complex parts with easily-fabricated 3D-printed ULTEM pieces.
机译:本文研究了ASTM标准D638后3D印刷ULTEM材料的热量和辐射性能。 Ultem是聚醚酰亚胺(PEI)系列中的热塑性塑料,其经常用作3D印刷的高级材料。该材料具有与聚醚醚酮(PEEK)具有相似的性质,其是另一种热塑性塑料,其在升高的温度条件下具有强机械性能。虽然PEEK机械性能较强,但通过3D打印获得和处理的ULTEM明显更具成本效益。此外,大多数3D打印机无法利用PEEK,因为该材料在3D打印机上施加了显着较高的温度要求。这项工作是有必要在核罐环境中快速部署机器人检测系统的动机,这将材料暴露于高达170°C(340°)的温度,以及270 Gy / HR(27 krad / HR)的辐射水平,这显着超出了传统的3D印刷部件。通过由三个治疗组的狗骨Ultem试验片组成的实验进行设计分析。在拉伸测试后,将材料特性与对照组的粘合剂进行比较。这些结果允许制造商选择更具成本效益的材料来构建零件,以便在这种苛刻的高温高辐射环境中运行,这可能包括空间系统和核检测机器人中的应用。具体而言,结果用于通过更换具有易于制造的3D印刷的Ultem件,通过更换复杂部件来指导核能大学计划(NEUP)的强大机器人检测系统的开发。

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