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An investigation of accelerated graphitisation kinetics to improve the machinability of an experimental medium-carbon free-machining steel

机译:加速石墨动力学的研究,提高实验介质 - 碳自由加工钢的可加工性

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Recent studies have shown that the graphitisation process in a medium-carbon steel during high temperature annealing can be accelerated by alloying; the key alloying additions are Si and Al. In addition, the nucleation, morphology and dispersion of graphite particles or nodules are observed to be affected by the pre-anneal microstructure, for example, either ferrite-pearlite, bainite or martensite, as well as the annealing time. The accelerated graphitisation kinetics and microstructural effects are revealed by light optical and electron mi-croscopy, and in parallel with this, are also reflected by the hardness values as dictated by the normal tempering reactions and balance between the graphite and remaining carbides. Thus the extent of graphitisation is shown to influence the machinability of the experimental carbon steel. Indicative machinability was measured by tool wear during drill testing. The drill tests also indicated that optimisation of steel composition and heat treatment could potentially develop promising machinability comparable to existing commercial free-machining steel SAE 1117. Under the conditions of the drill tests conducted, graphitising from the starting bainitic microstructure also resulted in measured tool wear not too dissimilar to that of leaded free-machining steel SAE 12L14.
机译:最近的研究表明,在高温退火期间的中碳钢中的石墨处理可以通过合金化加速;关键合金化添加剂是Si和Al。此外,观察到石墨颗粒或结节的成核,形态和分散体受到预退火微观结构的影响,例如铁素体 - 珠光体,贝氏体或马氏体以及退火时间。通过光光学和电子Mi-CROSCOPY揭示加速的石灰质炎动力学和微观结构效应,并且与这种情况下并行地,由正常回火反应和石墨和剩余碳化物之间的平衡决定的硬度值也反映。因此,显着的石墨化程度影响了实验碳钢的可加工性。通过在钻床测试期间通过工具磨损测量指示性的可加工性。钻头测试还表明,钢组合物和热处理的优化可能会产生与现有的商业自由加工钢SAE 1117相当的有前途的可加工性。在进行的钻头测试的条件下,从起始壳体微观结构的石墨也导致了测量的工具磨损与铅自由加工钢SAE 12L14不太差异。

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