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首页> 外文期刊>Journal of Electron Microscopy >Characterization of self-healing glassy composites by high-temperature environmental scanning electron microscopy (HT-ESEM).
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Characterization of self-healing glassy composites by high-temperature environmental scanning electron microscopy (HT-ESEM).

机译:高温环境扫描电子显微镜(HT-ESEM)表征自修复玻璃态复合材料。

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摘要

In situ high-temperature healing of cracks in composites made of glass and vanadium boride (VB) particles was observed using an environmental scanning electron microscope equipped with a high-temperature chamber (HT-ESEM). HT-ESEM is an adequate tool for studying the self-healing property of these materials. The change in crack length as a function of redox atmospheric conditions is reported. No self-healing behaviour was observed under reducing conditions, while a complete and rapid healing of the cracks was measured under oxidizing conditions. HT-ESEM image analyses enabled the monitoring of the healing effect. The self-healing mechanism was identified as a consequence of the VB active particles oxidation and subsequent pouring of fluid oxides into the cracks. These innovative composites offer an interesting potential in the domain of solid oxide fuel cell sealants.
机译:使用配备有高温室(HT-ESEM)的环境扫描电子显微镜观察到了玻璃和硼化钒(VB)颗粒制成的复合材料中裂纹的原位高温修复。 HT-ESEM是研究这些材料的自愈性能的合适工具。报告了裂纹长度随氧化还原气氛条件的变化。在还原条件下未观察到自愈行为,而在氧化条件下测得了裂纹的完全和快速愈合。 HT-ESEM图像分析可以监测愈合效果。由于VB活性颗粒氧化并随后将流体氧化物倒入裂纹中,因此确定了自修复机制。这些创新的复合材料在固体氧化物燃料电池密封剂领域提供了令人感兴趣的潜力。

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