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Survey of Selected Additively Manufactured Propellants for Arc Ignition of Hybrid Rockets

机译:混合火箭弹引燃用精选添加剂制造推进剂研究

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Results of a testing campaign to assess multiple commercially available three-dimensional printer materials for effectiveness in an arc-ignition system for hybrid rockets are presented. Previously, a form of additive manufacturing known as fused deposition modeling was used to fabricate high-density acrylonitrile butadiene styrene (ABS) fuel grains so that, when properly layered, they possess unique electrical breakdown properties. When subjected to an inductive charge, an electrical arc flows along the layered material surface and seeds combustion when the arc occurs simultaneously with the introduction of an oxidizing flow. This study investigates commercially available three-dimensional printable materials to search for equivalent or possibly superior fuel alternatives to ABS. Test specimens include photopolymers processed using polyjet (stereolithography) and fused-deposition printing. Comparison metrics include general arc ability, pyrolysis rate, dissipated power, characteristic velocity, and ability for multiple restarts. Initially, an ensemble of eight commonly available "printable" polymers was evaluated, and only four printable materials (high- and low-density ABS, VeroClear~®, and white polycarbonate) were found to possess effective sparking properties. In follow-on burn tests, only high- and low-density ABS and VeroClear performed effectively as fuel materials. White polycarbonate would not ignite using the arc method. High-density ABS exhibited the best overall ignition properties and characteristic velocity.
机译:提出了测试活动的结果,以评估多种商用三维打印机材料在混合火箭的电弧点火系统中的有效性。以前,一种称为熔融沉积建模的增材制造形式被用于制造高密度丙烯腈丁二烯苯乙烯(ABS)燃料颗粒,因此,在正确分层时,它们具有独特的电击穿特性。当受到感应电荷时,电弧沿着分层的材料表面流动,并且当电弧与引入氧化流同时发生时,种子燃烧。这项研究调查了可商购的三维可打印材料,以寻找与ABS等效或可能更好的燃料替代品。试样包括使用多喷(立体光刻)和熔融沉积印刷加工的光敏聚合物。比较指标包括一般电弧能力,热解速率,耗散功率,特征速度和多次重启的能力。最初,评估了八种常用的“可印刷”聚合物的集合,仅发现四种可印刷材料(高密度和低密度ABS,VeroClear®和白色聚碳酸酯)具有有效的起火性能。在后续燃烧测试中,只有高密度和低密度ABS和VeroClear可以有效地用作燃料材料。使用电弧法不会点燃白色聚碳酸酯。高密度ABS表现出最佳的整体点火性能和特征速度。

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