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Formation of Nitrogen-Pearlite in the Diffusion Bonding of Sialon to 316L Stainless Steel

机译:锡亚顿扩散粘合形成氮珠光体的形成316L不锈钢

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The objective of this study is to investigate the interface reaction and diffusion bonding between 316L stainless steel and sialon. Bonding was carried out in a hot press at 1250°C under the pressure of 15 MN/m~2 for 1 hour and was cooled slowly in the furnace to prevent the mismatch between the sialon and the steel. Scanning Electron microscopy ( SEM) revealed the interdiffusion and intereaction between the steel and the sialon. Theelements diffusing into sialon were illustrated by the Energy Dispersive Spectrometer ( EDS) analysis where the presence of Fe, Cr, Ni and Mn are significant. The formation ofnitrogen pearlite can be described as a result of the reaction between the stainless steel and the silicon nitride component of sialon which release nitrogen. Mechanical behavior of the nitrogen diffused layer was also investigated using microhardness tester and at the reaction layer an increase in hardness was observed. Conclusion can be deduced that the formation of nitrogen pearlite in the stainless steel is quite significant especially on joining sialon to asreceived nitrogen-free austenite stainless steel. The formation of nitrogen pearlite could be understood by the diffusion of nitrogen into the stainless steel. Thus, the continuous precipitates form lamellar nitrogen pearlite.
机译:本研究的目的是研究316L不锈钢和唾液之间的界面反应和扩散键合。在1250℃下在15mN / m〜2的压力下在1250℃下进行粘合1小时,并在炉中缓慢冷却,以防止唾液和钢之间的不匹配。扫描电子显微镜(SEM)揭示了钢和唾液之间的相互作用和互动。扩散到Sialon中的散射由能量分散光谱仪(EDS)分析来说明,其中Fe,Cr,Ni和Mn的存在是显着的。可以将形成的赤料珠光体作为释放氮气的不锈钢和氮化硅组分之间的反应来描述。还使用显微硬度测试仪研究氮气扩散层的力学行为,并且在反应层中观察到硬度的增加。结论可以推断出不锈钢中氮珠光体的形成是非常重要的,特别是在加入唾液中至无氢无奥氏体不锈钢。通过将氮气的扩散到不锈钢中,可以理解氮珠光石的形成。因此,连续沉淀物形成层状氮珠光石。

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