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首页> 外文期刊>Journal of Minerals and Materials Characterization and Engineering >Identification of Growth Promoter to Fabrication SiCp/Al2O3 Ceramic Matrix Composites Prepared by Directed Metal Oxidation of An Al Alloy
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Identification of Growth Promoter to Fabrication SiCp/Al2O3 Ceramic Matrix Composites Prepared by Directed Metal Oxidation of An Al Alloy

机译:铝合金直接金属氧化制备SiCp / Al2O3陶瓷基复合材料的生长促进剂

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摘要

SiC particulates reinforced alumina matrix composites were fabricated using Directed Metal Oxidation (DIMOX) process. Continuous oxidation of an Al-Si-Mg-Zn alloy with different interlayers (dopents) as growth promoters, will encompasses the early heating of the alloy ingot, melting and continued heating to temperature in the narrow range of 950°C to 980°C in an atmosphere of oxygen. Varying interlayers (dopents) are incorporated to examine the growth conditions of the composite materials and to identification of suitable growth promoter. The process is extremely difficult because molten aluminum does not oxidize after prolonged duration at high temperatures due to the formation of a passivating oxide layer. It is known that the Lanxide Corporation had used a combination of dopents to cause the growth of alumina from molten metal. This growth was directed, i.e. the growth is allowed only in the required direction and restricted in the other directions. The react nature of the dopants was a trade secret. Though it is roughly known that Mg and Si in the Al melt can aid growth, additional dopents used, the temperatures at which the process was carried out, the experimental configurations that aided directed growth were not precisely known. In this paper we have evaluated the conditions in which composites can be grown in large enough sizes for evaluation application and have arrived at a procedure that enables the fabrication of large composite samples by determining the suitable growth promoter (dopant). Scanning electron microscopic, EDS analysis of the composite was found to contain a continuous network of Al2O3, which was predominantly free of grain-boundary phases, a continuous network of Al alloy. Fabrication of large enough samples was done only by the inventor company and the property measurements by the company were confirmed to those needed to enable immediate applications. Since there are a large number of variable affecting robust growth of the composite, fabrication large sized samples for measurements is a difficult task. In the present work, to identify a suitable window of parameters that enables robust growth of the composite has been attempted.
机译:SiC颗粒增强氧化铝基复合材料是使用直接金属氧化(DIMOX)工艺制造的。连续氧化具有不同中间层(掺杂剂)作为生长促进剂的Al-Si-Mg-Zn合金将包括合金锭的早期加热,熔化以及持续加热到950°C至980°C的狭窄温度在氧气气氛中。掺入各种中间层(掺粉剂)以检查复合材料的生长条件并鉴定合适的生长促进剂。该过程非常困难,因为在高温下长时间溶解后,由于形成钝化氧化物层,熔融铝不会氧化。众所周知,Lanxide Corporation已使用混合废料引起熔融金属中氧化铝的生长。该生长是定向的,即仅在所需方向上允许生长,而在其他方向上限制生长。掺杂剂的反应性质是商业秘密。尽管众所周知,Al熔体中的Mg和Si可以帮助生长,但是还需要使用其他掺杂剂,进行该工艺的温度以及有助于定向生长的实验配置。在本文中,我们评估了复合材料可以以足够大的尺寸生长以进行评估的条件,并确定了可以通过确定合适的生长促进剂(掺杂剂)来制造大型复合材料样品的程序。在复合材料的扫描电子显微镜下,EDS分析发现其包含Al2O3的连续网络,该网络主要不含晶界相,Al2O3的连续网络。仅由发明人公司制造足够大的样品,并且公司的性能测量结果已被确认为可以立即进行应用所需要的那些。由于存在大量影响复合材料稳健增长的变量,因此制造用于测量的大型样品是一项艰巨的任务。在本工作中,已经尝试确定合适的参数窗口,该窗口使得复合材料能够稳健地生长。

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