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开孔泡沫铝的制造:海绵复制技术及其与冷冻法结合的比较

Manufacturing of Open-Cell Aluminium Foams: Comparing the Sponge Replication Technique and Its Combination with the Freezing Method.

作者信息

Sutygina Alina, Betke Ulf, Scheffler Michael

机构信息

Department of Mechanical Engineering, Institute for Materials and Joining Technology, Otto-von-Guericke-University Magdeburg, Große Steinernetischstraße 6, 39104 Magdeburg, Germany.

出版信息

Materials (Basel). 2022 Mar 15;15(6):2147. doi: 10.3390/ma15062147.

Abstract

The manufacturing of aluminium foams with a total porosity of 87% using the sponge replication method and a combination of the sponge replication and freezing technique is presented. Foams with different cell counts were prepared from polyurethane (PU) templates with a pore count per inch (ppi) of 10, 20 and 30; consolidation of the foams was performed in an argon atmosphere at 650 °C. The additional freezing steps resulted in lamellar pores in the foam struts. The formation of lamellar pores increased the specific surface area by a factor of 1.9 compared to foams prepared by the sponge replication method without freezing steps. The formation of additional lamellar pores improved the mechanical properties but reduced the thermal conductivity of the foams. Varying the pore cell sizes of the PU template showed that-compared to foams with dense struts-the highest increase (~7 times) in the specific surface area was observed in foams made from 10 ppi PU templates. The effect of the cell size on the mechanical and thermal properties of aluminium foams was also investigated.

摘要

介绍了使用海绵复制法以及海绵复制与冷冻技术相结合的方法制造总孔隙率为87%的泡沫铝。由每英寸孔数(ppi)为10、20和30的聚氨酯(PU)模板制备了具有不同泡孔数量的泡沫;在650℃的氩气气氛中对泡沫进行固结。额外的冷冻步骤导致泡沫支柱中出现层状孔隙。与未经过冷冻步骤的海绵复制法制备的泡沫相比,层状孔隙的形成使比表面积增加了1.9倍。额外层状孔隙的形成改善了泡沫的力学性能,但降低了其热导率。改变PU模板的泡孔尺寸表明,与具有致密支柱的泡沫相比,由10 ppi PU模板制成的泡沫的比表面积增加最多(约7倍)。还研究了泡孔尺寸对泡沫铝力学和热性能的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7713/8953120/7197391d5e5a/materials-15-02147-g001.jpg

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