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首页> 外文期刊>Journal of Materials Science >Interfacial reactions between lithium silicate glass-ceramics and Ni-based superalloys and the effect of heat treatment at elevated temperatures
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Interfacial reactions between lithium silicate glass-ceramics and Ni-based superalloys and the effect of heat treatment at elevated temperatures

机译:硅酸锂玻璃陶瓷与镍基高温合金之间的界面反应以及高温热处理的影响

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摘要

Two lithium silicate glasses (S- and BPS-glass) were sealed to four different Ni-based superalloys (Inconel 600, Inconel 718, Haynes 230, and Hastelloy C-276) and the effects of long-term heating at 700–900°C on the chemical, microstructural, and mechanical properties of sealed interfaces were studied. The presence of a small amount of ZnO in the BPS-glass leads to the formation of a thin interfacial second phase layer and a less rough alloy interface compared to the ZnO-free S-glass. Inconel 718 was found to be the most reactive of the alloys, with Cr and Nb diffusing into the glass and forming a coarse glass-ceramic microstructure at the interface. Heat treatment of all the reaction assemblies at 900°C for 100 h in air resulted in degradation of the seals and their spontaneous failure. Heat treatments at 700 or 800°C did not cause any interfacial coarsening in BPS sealed to Inconel 600, Haynes 230, and Hastelloy C-276 alloys and did not alter the bond strength of Haynes 230 bars, sealed with a thin layer of BPS-glass, demonstrating the potential of these material combinations for applications up to 800°C.
机译:将两个硅酸锂玻璃(S和BPS玻璃)密封到四种不同的镍基高温合金(Inconel 600,Inconel 718,Haynes 230和Hastelloy C-276),以及在700–900°C下长期加热的影响研究了密封界面的化学,微观结构和力学性能。与不含ZnO的S玻璃相比,BPS玻璃中存在少量的ZnO导致形成薄的第二界面层和较粗糙的合金界面。发现铬镍铁合金718是最活泼的合金,Cr和Nb扩散到玻璃中并在界面处形成粗糙的玻璃陶瓷微结构。在空气中900°C下对所有反应组件进行热处理100 h会导致密封件性能下降和自发失效。在700或800°C的温度下进行热处理不会导致密封到Inconel 600,Haynes 230和Hastelloy C-276合金的BPS发生任何界面粗化,也不会改变用一薄层BPS-密封的Haynes 230 bar的粘结强度。玻璃,证明了这些材料组合在高达800°C的应用中的潜力。

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  • 来源
    《Journal of Materials Science》 |2004年第2期|605-618|共14页
  • 作者单位

    Department of Industrial Engineering Eastern Mediterranean University;

    Ceramic Engineering Department University of Missouri-Rolla;

    Praxair Inc;

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  • 原文格式 PDF
  • 正文语种 eng
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