首页> 外文会议>International Conference on Processing amp; Manufacturing of Advanced Materials; 20060704-08; Vancouver(CA) >Effects of Alloying on Deformation Behavior of Low Carbon Steels in the Intercritical Temperature Range
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Effects of Alloying on Deformation Behavior of Low Carbon Steels in the Intercritical Temperature Range

机译:临界温度范围内合金化对低碳钢变形行为的影响

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摘要

Industrial thermomechanical processing of hot rolled steel strip products with rolling operations in the austenite + ferrite (γ + α) range offers, on one hand, unique possibilities for more precise control of microstructure and mechanical properties of as hot rolled products after accelerated cooling. On the other hand, there are significant technical problems related to the rolling stability induced by steel grade dependent non-monotonous variations in deformation resistance and its sensitivities to temperature and strain rate within the γ + α range. Based on laboratory results, the deformation behavior of low carbon (up to 0.2 %) steels alloyed with Mn, Si, Al and their combinations, as well as microalloyed with Nb at the intercritical temperatures is discussed.
机译:一方面,热轧钢带产品的工业热机械加工以及在奥氏体+铁素体(γ+α)范围内的轧制操作,为加速冷却后作为热轧产品的组织和力学性能提供了更为精确的控制可能性。另一方面,存在由与钢种有关的变形抗力的非单调变化及其在γ+α范围内对温度和应变率的敏感性引起的滚动稳定性相关的重大技术问题。根据实验室结果,讨论了在临界温度下与Mn,Si,Al及其混合物以及与Nb微合金化的低碳(最高0.2%)钢的变形行为。

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