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首页> 外文期刊>Intermetallics >Effect of post annealing on the microstructure, mechanical properties, and failure of MoxW1-xSi2 heaters produced by self-propagating high temperature synthesis
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Effect of post annealing on the microstructure, mechanical properties, and failure of MoxW1-xSi2 heaters produced by self-propagating high temperature synthesis

机译:通过自蔓延高温合成产生的MoxW1-XSI2加热器微观结构,机械性能和失效的影响

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摘要

High-performance tungsten molybdenum disilicide (MoxW1-xSi2) heating elements were prepared using a self propagating high temperature synthesis process. The effect of post annealing on the degradation behavior of the alloy was experimentally investigated. Increasing the attrition milling time up to 20 min during powder preparation resulted in MoxW1-xSi2 heaters with the highest density, which increased the fracture strength compared to samples with shorter attrition times. Such samples were annealed and evaluated as heating elements using accelerated degradation tests and failure analysis in order to compare their structural characteristics and flexural strength with as-fabricated samples. The annealed MoxW1-xSi2 heater showed a relatively dense structure with few pores and no secondary phases, apart from a SiO2 layer. This favorable structure prevented bubble formation, which can result in fracturing of the heater, as revealed by evaluation at high temperatures with various heating rates. The flexural strength of the annealed specimen was 2.5-times higher than that of the as fabricated specimen, which was attributed to removal of secondary phases during annealing. Failure time and surface load analyses were used to investigate the fracture mechanism of the MoxW1-xSi2 heaters in detail at 1790 degrees C by quantifying bubble formation and the presence of secondary phases.
机译:使用自捕获的高温合成方法制备高性能钨钼二硅化物(MOXW1-XSI2)加热元件。实验研究了退火后退火对合金降解行为的影响。在粉末制剂期间增加磨损铣削时间可达20分钟,导致MOXW1-XSI2加热器具有最高密度的加热器,与具有较短磨损时间的样品相比,裂缝强度增加。使用加速降解试验和破坏分析来退火并评估作为加热元件的这种样品,以比较它们的结构特性和用作制造样品的弯曲强度。退火的Moxw1-XSI2加热器显示出相对致密的结构,孔隙少,除了SiO 2层之外,没有次级相。这种有利的结构防止了气泡形成,这可能导致加热器的压裂,如在具有各种加热速率的高温下评价所揭示的。退火标本的弯曲强度高于作为制造标本的2.5倍,这归因于退火期间除去次生阶段。通过量化气泡形成和二次相,使用失效时间和表面负荷分析来研究MoxW1-XSI2加热器的细节详细探讨MoxW1-XSI2加热器的裂缝机制。

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