首页> 外文会议>ASME International Mechanical Engineering Congress and Exposition >AN EXPERIMENTAL INVESTIGATION OF THE EFFECTS OF GAMMA RADIATION ON 3D PRINTED ABS FOR IN-SPACE MANUFACTURING PURPOSES
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AN EXPERIMENTAL INVESTIGATION OF THE EFFECTS OF GAMMA RADIATION ON 3D PRINTED ABS FOR IN-SPACE MANUFACTURING PURPOSES

机译:γ辐射对空间内制造目的3D印刷ABS的影响的实验研究

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The following work is presented as a preliminary study on the effects of gamma irradiation on mechanical properties of Acrylonitrile Butadiene Styrene (ABS) as an in-space 3D printing feedstock to investigate the forthcoming possibilities of this technology for future space exploration missions. 3D printed testing samples were irradiated at different dosages from 1 to 1400 kGy (1 Gray (Gy) = 1 J/kg = 100 rad) using a Cobalt-60 gamma irradiator to simulate space radiation environment. Testing samples were manufactured using Fused Deposition Modeling (FDM) with a Makerbot Replicator 2×3D printer. The correlation between the mechanical properties of irradiated samples and accumulated radiation dosage were evaluated by a series of tensile and flexural tests. Furthermore, Shore hardness tests were conducted to evaluate changes in surface hardness of irradiated parts. Finally, results were compared with a control group of samples. Findings showed a significant decrease in mechanical performance and noticeable changes in appearance of the parts with accumulated dosage of 1000 kGy and higher. However, for dosages below 10 kGy, samples showed no significant decrease in mechanical performance or change in appearance. These results were used to predict the life of a 3D printed part on board the International Space Station (ISS), on Low Earth Orbit (LEO) satellites, in deep space and long duration missions.
机译:以下作品作为γ辐射对丙烯腈丁二烯苯乙烯(ABS)的影响的初步研究,作为空中3D印刷原料,以研究未来的空间勘探任务的即将到来的这种技术的可能性。 3D使用钴-60伽马辐照器以1至1400kgy(1灰色)= 1J / kg = 100 rad的不同剂量照射3D印刷测试样品以模拟空间辐射环境。使用熔融沉积建模(FDM)和Makerbot Replicator 2×3D打印机制造测试样品。通过一系列拉伸和弯曲试验评估辐照样品和累积放射剂量的力学性能之间的相关性。此外,进行了肖氏硬度测试以评估照射零件的表面硬度变化。最后,将结果与对照组样品进行比较。结果表明,累积剂量为1000千吨和更高的零件外观的机械性能和明显变化显着降低。然而,对于低于10kGy的剂量,样品显示出的机械性能或外观变化没有显着降低。这些结果用于预测国际空间站(ISS),在低地球轨道(LEO)卫星上,在深度空间和长期任务中的寿命中的3D印刷部分的使用寿命。

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