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加工参数对MgAlO泡沫材料制备的影响。

Effect of the Processing Parameters on the Fabrication of MgAlO Foams.

作者信息

Morales-Hernández Reynaldo, López-Morelos Víctor H, Cholico-González Diana, Curiel-López Francisco Fernando, García-Rentería Marco Arturo, Falcón-Franco Lazaro Abdiel, Martínez-Landeros Victor Hugo

机构信息

Instituto de Investigación en Metalurgia y Materiales, Universidad Michoacana de San Nicolás de Hidalgo, Francisco J. Mújica S/N, Ciudad Universitaria, Edificio U, Morelia 58030, Mexico.

Facultad de Metalurgia, Universidad Autónoma de Coahuila, Carretera 57 Km 5, Monclova 25710, Mexico.

出版信息

Materials (Basel). 2021 Oct 10;14(20):5945. doi: 10.3390/ma14205945.

Abstract

Stable MgAlO foams (7-21 vol.%) were manufactured using a natural extract from the pericarp of the soap-nut fruit, saponin being the main component, as the foaming agent. The soap-nut extract is soluble in water, biodegradable, non-toxic, and has similar properties to commercial tensoactives. The stability and characteristics of the porous structure of the ceramic foams were evaluated in terms of the amount of foaming agent, content of MgAlO particles, time and speed of stirring of the slurry, type of agitator, and drying temperature. It was found that the foaming capacity decreased with the percent of foaming agent and ceramic, whereas the time and speed of stirring enhanced the foamability. Foaming trials showed that stirring aqueous slurries with 3 wt.% of soap-nut extract for 2 min at 1070 or 2120 rpm, depending on the type of agitator, produced stable MgAlO foams when drying at 60 °C. The mechanism of foaming is discussed. The foams were sintered at 1400 °C for 1 h under an Ar atmosphere. Observation of the sintered foam structures in the scanning electron microscope revealed nearly spherical cells with very good interconnectivity and strength to be manipulated, making them suitable as preforms for manufacturing Al-based composites by pressureless infiltration.

摘要

采用无患子果皮的天然提取物(主要成分是皂苷)作为发泡剂,制备了体积分数为7% - 21%的稳定MgAlO泡沫材料。无患子提取物可溶于水,具有生物可降解性、无毒,且与商业表面活性剂具有相似的性质。从发泡剂用量、MgAlO颗粒含量、浆料搅拌时间和速度、搅拌器类型以及干燥温度等方面评估了陶瓷泡沫多孔结构的稳定性和特性。结果发现,发泡能力随发泡剂和陶瓷的百分比增加而降低,而搅拌时间和速度则提高了发泡性。发泡试验表明,根据搅拌器类型,在1070或2120 rpm下用3 wt.%的无患子提取物搅拌水性浆料2分钟,在60°C干燥时可产生稳定的MgAlO泡沫。讨论了发泡机理。泡沫在氩气气氛下于1400°C烧结1小时。在扫描电子显微镜下观察烧结后的泡沫结构,发现几乎是球形的泡孔,具有非常好的连通性和可操控强度,使其适合作为通过无压浸渗制造铝基复合材料的预制件。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3268/8539518/9e0922eb1bff/materials-14-05945-g001.jpg

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