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High-temperature Mechanical Properties of Al_2O_3/Ti_3SiC_2 Multilayer Ceramics

机译:Al_2O_3 / Ti_3SiC_2多层陶瓷的高温力学性能

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摘要

The high-temperature mechanical properties were very important to structural materials, especially structural ceramics. Hence, the strength, elastic modulus, stress relaxation and creep behavior of the multilayer materials at elevated temperature were studied in this paper. According to the curves of mechanical properties varieties with temperature risen from room-temperature to 1300℃, the multilayer materials could remain relatively high mechanical properties until 1150℃. Otherwise, the creep function of the multilayer composites was also determined, in which the stress exponent was 1.4 and activation energy was 204kJ/mol. By contrasting to the monolithic ceramics of Al_2O_3 and Ti_3SiC_2, the main creep mechanisms include: interface diffusion creep (in Al_2O_3 layers), dislocation movement creep, grain delamination and sliding (in Ti_3SiC_2 layers).
机译:高温机械性能对结构材料特别是结构陶瓷非常重要。因此,本文研究了多层材料在高温下的强度,弹性模量,应力松弛和蠕变行为。根据机械性能随温度从室温升高到1300℃的曲线,多层材料可以保持较高的机械性能直至1150℃。另外,还确定了多层复合材料的蠕变功能,其中应力指数为1.4,活化能为204kJ / mol。与Al_2O_3和Ti_3SiC_2的单片陶瓷相比,主要的蠕变机理包括:界面扩散蠕变(在Al_2O_3层中),位错运动蠕变,晶粒分层和滑动(在Ti_3SiC_2层中)。

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