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Novel aluminum borate foams with controllable structures as exquisite high-temperature thermal insulators

机译:具有可控结构的新型铝硼酸盐泡沫作为精致的高温热绝缘体

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摘要

In this contribution, a manageable foam-casting technique for the preparation of novel aluminum borate foams (ABFs) as thermal insulators with highly controllable performances is presented. ABFs were fabricated from alpha-Al2O3 and 2Al(2)O(3)center dot B2O3 with the addition of various amounts of foaming agents, thickening agents, and slurry solid contents. The dispersions and rheological properties of the slurries were then examined, followed by exploration of microstructural evolution and testing of mechanical/thermal properties. It should be noted that the generated micro-pores generated and interlocking rod-like 9Al(2)O(3)center dot 2B(2)O(3) crystals may lead to superior mechanical tolerances and lower thermal conductivities for the ABFs. In general, the as-prepared ABFs with porosities ranging from 73.8 to 96.3 vol%, compressive strengths of 8.204115 MPa, and thermal conductivities of 0.228-0.046 W/(mK) (200-800 degrees C) could render them suitable for application as high-temperature thermal insulating materials.
机译:在该贡献中,提出了一种用于制备具有高可控性能的热绝缘体的新型铝硼酸盐泡沫(ABF)的可管理泡沫铸造技术。通过添加各种发泡剂,增稠剂和浆料固体含量,从α-Al2O3和2AL(2)O(2)O(3)中心点B2O3制成ABF。然后检查浆料的分散体和流变性质,然后探索机械/热性能的微观结构演化和测试。应当注意,产生的微孔和互锁杆状9AL(2)O(3)中心点2b(2)O(3)晶体可以导致ABF的优越的机械公差和较低的导热性。通常,具有孔隙率的药物的ABF,范围为73.8至96.3 Vol%,抗压强度为8.204115MPa,以及0.228-0.046W /(MK)(200-800摄氏度)的热导体可以使它们适用于应用高温隔热材料。

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