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Brazing of silicon nitride ceramic composite to steel using SiC-particle-reinforced active brazing alloy

机译:使用SiC颗粒增强活性钎焊合金将氮化硅陶瓷复合材料钎焊到钢上

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摘要

Silicon carbide particles have been introduced as reinforcements in a commercially available active metal braze filler alloy (Incusil ABA, Wesgo Metals) used for the joining of ceramic-to-metal. The effect of particle reinforcement of the braze filler on the flexural strength of ceramic to metal joints has been investigated at room temperature and at elevated temperatures. An average four point flexural strength of nearly 400 MPa is achieved at room temperature when using Incusil ABA + 30 vol. percent SiC (sandwich foil system) compared to 330 MPa with Incusil ABA alone. At a test temperature of 250 deg C relaxation of residual stresses in the joints results in an average flexural strength of approximately 520 MPa when using Incusil ABA + 10 vol. percent SiC. These values compare with an average room temperature flexural strength of nearly 800 MPa for the ceramic composite. The reaction products of the braze alloy at the joint interface were identified by SEM.
机译:碳化硅颗粒已作为增强材料引入到用于陶瓷与金属连接的市售活性金属钎料合金(Incusil ABA,Wesgo Metals)中。在室温和高温下,已经研究了钎料填料的颗粒增强对陶瓷对金属接头抗弯强度的影响。当使用Incusil ABA + 30 vol。时,在室温下可获得接近400 MPa的平均四点弯曲强度。 SiC(夹心箔系统)的百分比,而Incusil ABA则为330 MPa。在250℃的测试温度下,使用Incusil ABA + 10卷时,接头中残余应力的松弛导致平均弯曲强度约为520 MPa。 SiC含量这些值与陶瓷复合材料的近800 MPa的平均室温弯曲强度相比。用扫描电镜(SEM)鉴定了钎料在接头界面处的反应产物。

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