论文标题

对3D印刷零件的质谱研究,以评估放射性的稀有事件物理探测器的超低背景材料

Mass spectrometric investigations into 3D printed parts to assess radiopurity as ultralow background materials for rare event physics detectors

论文作者

French, Amanda D., Anguiano, Sonia Alcantar, Bliss, Mary, Christ, Josef, di Vacri, Maria Laura, Erikson, Rebecca, Harouaka, Khadouja, Hoppe, Eric W., Grate, Jay W., Arnquist, Isaac J.

论文摘要

据报道,新数据是针对聚乙烯氟化物(PVDF),聚苯基硫化物(PPS)和两种形式的聚醚酰亚胺(PEI,Branded Ultem 1010和9085)的数据。报道了用于启动细丝的数据以及简单且复杂的印刷零件。发现PVDF丝和简单的印刷珠的值分别为TH-232和U-238的值约为30和50 ppt,而更复杂的弹簧夹部分的值略高于65 ppt的Th-232级别,U-238在50 ppt处剩余U-238。发现PPS细丝的浓度分别为TH-232和U-238,并且没有被选为印刷,因为这些水平已经高于其他材料选项。发现ULTEM 1010细丝和印刷的复杂弹簧夹零件分别为Th-232和U-238的浓度约为5和7 ppt,这说明了印刷过程中没有明显的污染。在TH-232和U-238中,发现ULTEM 9085丝的浓度分别为9和5 ppt,而印刷的复合弹簧夹部分的浓度分别为TH-232和U-238的25和7 PPT略有升高。这些结果均使用新型的干式艾希方法在由超动背景电铜构建的坩埚中获得,或者在适用时,是微波炉辅助的湿艾希消化。样品和过程毛坯用TH-229和U-233作为内部标准在干/潮湿的呼吸之前升高,并通过电感耦合等离子体质谱法(ICP-MS)做出确定。为了保持较高的放射性水平,建议在打印和清洁后进行清洁丝,尽管印刷过程本身已显示出很少少量的放射性牙粉药物。

New data are reported for polyvinylidene fluoride (PVDF), polyphenylene sulfide (PPS), and two forms of polyetherimide (PEI, branded ULTEM 1010 and 9085). Data for starting filaments and both simple and complex printed parts are reported. PVDF filaments and simple printed beads, were found to have values of approximately 30 and 50 ppt for Th-232 and U-238, respectively, while a more complex spring clip part had slightly elevated Th-232 levels of 65 ppt, with U-238 remaining at 50 ppt. PPS filament was found to have concentrations of 270 and 710 ppt for Th-232 and U-238, respectively, and were not chosen to be printed as those levels were already higher than other material options. ULTEM 1010 filaments and printed complex spring clip parts were found to have concentrations of around 5 and 7 ppt for Th-232 and U-238, respectively, illustrating no significant contamination from the printing process. ULTEM 9085 filaments were found to have concentrations of around 9 and 5 ppt for Th-232 and U-238, respectively, while the printed complex spring clip part was found to have slightly elevated concentrations of 25 and 7 ppt for Th-232 and U-238, respectively. These results were all obtained using a novel dry ashing method in crucibles constructed of ultralow background electroformed copper or, when applicable, microwave-assisted wet ashing digestion. Samples and process blanks were spiked with Th-229 and U-233 as internal standards prior to dry/wet ashing and determinations were made by inductively coupled plasma mass spectrometry (ICP-MS). In order to maintain high radiopurity levels, pre-cleaning the filaments before printing and post-cleaning the parts is recommended, although the printing process itself has shown to contribute very minute amounts of radiocontaminants.

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