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High-Temperature Properties and Applications of Si-Based Polymer-Derived Ceramics: A Review

机译:基于Si的聚合物衍生陶瓷的高温性能和应用:综述

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摘要

Ceramics derived from organic polymer precursors, which have exceptional mechanical and chemical properties that are stable up to temperatures slightly below 2000 °C, are referred to as polymer-derived ceramics (PDCs). These molecularly designed amorphous ceramics have the same high mechanical and chemical properties as conventional powder-based ceramics, but they also demonstrate improved oxidation resistance and creep resistance and low pyrolysis temperature. Since the early 1970s, PDCs have attracted widespread attention due to their unique microstructures, and the benefits of polymeric precursors for advanced manufacturing techniques. Depending on various doping elements, molecular configurations, and microstructures, PDCs may also be beneficial for electrochemical applications at elevated temperatures that exceed the applicability of other materials. However, the microstructural evolution, or the conversion, segregation, and decomposition of amorphous nanodomain structures, decreases the reliability of PDC products at temperatures above 1400 °C. This review investigates structure-related properties of PDC products at elevated temperatures close to or higher than 1000 °C, including manufacturing production, and challenges of high-temperature PDCs. Analysis and future outlook of high-temperature structural and electrical applications, such as fibers, ceramic matrix composites (CMCs), microelectromechanical systems (MEMSs), and sensors, within high-temperature regimes are also discussed.
机译:源自有机聚合物前体的陶瓷,其具有稳定于略低于2000℃的温度稳定的机械和化学性质,称为聚合物衍生的陶瓷(PDC)。这些分子设计的无定形陶瓷具有与常规粉末陶瓷相同的高机械和化学性质,但它们也表明了改善的抗氧化性和抗蠕变性和低热解温度。自20世纪70年代初以来,由于其独特的微观结构,PDC引起了广泛的关注,以及用于高级制造技术的聚合物前体的益处。根据各种掺杂元件,分子配置和微结构,PDC也可能对电化学应用有益于超过其他材料适用性的电化学应用。然而,无定形纳米域结构的微观结构演化或转化,偏析和分解,降低了在高于1400℃的温度下PDC产物的可靠性。本综述调查在接近或高于1000°C的升高温度下PDC产品的结构相关性质,包括制造生产和高温PDC的挑战。还讨论了高温结构和电气应用的分析和未来前景,例如纤维,陶瓷基质复合材料(CMC),微机电系统(MEMSS)和传感器,在高温方案中,也是在高温制度内的。

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