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Carbonitridation of Fe-Ni-Cr Alloys

机译:Fe-Ni-Cr合金的碳氮共渗

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A model austenitic Fe-Ni-Cr alloy was subjected at 1000℃ to either nitridation at P_(N_2) = 0.9 atm, carburisation in a gas of unit carbon activity or to a series of exposures where the alloy was simultaneously carburised and nitrided or nitrided and subsequently carburised. Nitridation produced only lamellae of Cr_2N, whereas carburisation produced two carbide zones, an inner layer of M_(23)C_6 and an outer layer of M_7C_3. Carbonitridation produced a structure indistinguishable from that formed during attack by carbon only, suggesting that nitrogen plays little role in precipitation reactions under these circumstances. However, carburisation following nitridation led to the formation of zones of lamellar carbides, with the same crystal structures as those formed during carburisation, but with lamellar morphologies similar to those of the pre-formed nitrides. No nitrides were observed following this sequential attack. It is speculated that the carbides nucleate on the preexisting nitrides and displace the nitrogen into the alloy matrix. The highly oriented nitrides/carbides also act as rapid paths for oxidant diffusion into the metal and this increases the volume fraction of carbide that is formed, compared with carburisation.
机译:奥氏体模型的Fe-Ni-Cr合金在1000℃经受P_(N_2)= 0.9 atm的氮化,在单位碳活度的气体中渗碳或在合金同时被渗碳,渗氮或渗氮的一系列暴露中然后渗碳。渗氮仅产生Cr_2N薄片,而渗碳则产生两个碳化物区,一个内层M_(23)C_6和一个外层M_7C_3。碳氮共渗产生的结构与仅受到碳侵蚀时形成的结构没有区别,这表明在这种情况下氮在沉淀反应中几乎没有作用。然而,氮化后的渗碳导致层状碳化物区域的形成,其具有与渗碳期间形成的晶体结构相同的晶体结构,但是具有类似于预形成氮化物的层状形态。在此连续腐蚀之后未观察到氮化物。据推测,碳化物在预先存在的氮化物上成核并将氮置换到合金基体中。高度定向的氮化物/碳化物还充当氧化剂扩散到金属中的快速路径,与渗碳相比,这增加了所形成碳化物的体积分数。

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