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FUNDAMENTAL STUDIES ON MOLTEN ALUMINUM-WATER EXPLOSION PREVENTION IN DIRECT-CHILL CASTING PITS

机译:直接寒冷铸件坑熔融铝 - 水爆炸预防的基础研究

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Explosive interactions between molten aluminum and water have been studied to evaluate the impact of cure times of selected (4) organic coatings on explosion onset. Tests were also conducted to assess durability of partially-cured coatings, and the effect of water temperature. Additionally, tests were conducted to assess the potential for deliberately injected non-conducted to gases (NCGs) on prevention of explosive trigger shocks. The impact of using rubber and plastic surface layers was assessed for explosion prevention. The steam explosion triggering studies (SETS) facility was designed and constructed as a rapid-turnaround, cost-effective, and safe means to address these phenomenological issues and to derive quantitative, "practically-fundamental" data for situations covering melt masses relocating over submerged surfaces ranging up to approx 1000 kg (2,000 lb.). Test data obtained from the SETS facility correlated extremely well with past industry data. It was found that, explosion onset at short cure times does not correlate linearly with cure times. NCG injection was found to be the most important and overwhelming parameter leading to conclusive explosion prevention, leading to development of a potentially-novel methodology for cost-effective, environmentally benign and conclusive explosion prevention. Limited testing with rubber and plastic surfaces revealed that they too can provide protection from explosions but they pyrolyze extensively. Finally, a range of methods were investigated to enable rapid curing of organic coatings (down from 100+h to less than 15-20 minutes). Of these, it was found that microwave-based technology performed impressively and can bring down the time for full-curing to the 15-20 minute range for a both epoxy and coal-tar based coatings.
机译:已经研究了熔融铝和水之间的爆炸相互作用,以评估所选(4)种有机涂料的固化时间对爆炸发作的影响。还进行了试验以评估部分固化涂层的耐久性,以及水温的影响。此外,进行测试以评估故意注入对气体(NCG)的潜在预防爆炸性触发冲击的可能性。评估使用橡胶和塑料表面层的影响进行爆炸防止。蒸汽爆炸触发研究(套装)设施被设计和构建为快速转机,成本效益,安全的手段,以解决这些现象学问题,并为覆盖淹没淹没的熔体群体的情况而导出定量的“实际上基本的”数据表面范围高达约1000kg(2,000磅)。与过去的行业数据相比,从集合设施获得的测试数据非常良好。发现,在短固化时间下的爆炸发作不会与固化时间线性相关。发现NCG注射是最重要的,越来越多的参数,导致确凿爆炸预防,导致开发潜在的新方法,用于成本效益,环境良性和决定性爆炸预防。用橡胶和塑料表面进行有限的测试显示,它们也可以提供免受爆炸的保护,但它们会广泛热解。最后,研究了一系列方法以使得能够快速固化有机涂层(从100 + H下降至小于15-20分钟)。其中,发现基于微波的技术令人印象深刻,并且可以降低全固化到15-20分钟的含有环氧树脂和煤焦油的涂层的时间。

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