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Cooling Behaviors of High-Carbon Steel Wires In Lead Bath and Alternatives for Patenting

机译:铅浴中高碳钢丝的冷却行为及专利的替代品

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With the help of steel wire probes, the cooling curves of steel wires upon patenting in lead bath and alternatives were measured, and the cooling characteristics and the austenitic transformation process of the wires upon patenting were analyzed. Experiment results showed that patenting in lead bath was not an isothermal process, austinite transformation completed in a fluctuated temperature range before wire got to bath temperature. The appropriate CMC polymer aqueous solution and water spray fields could also produce the pearlite microstructures without separation of primary ferrite for high-carbon steel wires, but the cooling behaviors were controlled by the inherent "thermal barrier" on the cooling interface involved in aqueous quenchants which possess of much lower thermal diffusion ability than lead bath. It must be noticed, therefore, that it is the coherence of the "mass effect" of steel wires and the cooling characteristics of quenchants that determines the infrastructure upon patenting, which contributes to a better understanding of alternatives for patenting process and provides a basis for laying down alternatives' variables upon patenting.
机译:借助钢丝探针的帮助,测量了在铅浴和替代方案中获得专利的钢丝的冷却曲线,并分析了在专利下电线的冷却特性和奥氏体转化过程。实验结果表明,铅浴中的专利不是等温工艺,在电线到浴温之前在波动温度范围内完成的奥斯坦转换。适当的CMC聚合物水溶液和水喷雾器还可以产生珠光体微结构而不分离原代铁氧体用于高碳钢丝,但冷却行为由所涉及的冷却界面上的固有的“热屏障”控制,所述冷却界面具有比铅浴的热扩散能力低得多。因此,必须注意到,它是钢丝的“质量效应”的相干性和确定专利基础设施的淬火剂的冷却特性,这有助于更好地了解专利过程的替代方案,并为其提供基础在专利时铺设替代品的变量。

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