首页> 外文会议>International Conference on Proceeding amp; Manufacturing of Advanced Materials; 20060704-08; Vancouver(CA) >Optimization of Nb HSLA Microstructure Using Advanced Thermomechanical Processing in a CSP Plant
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Optimization of Nb HSLA Microstructure Using Advanced Thermomechanical Processing in a CSP Plant

机译:CSP工厂中使用先进的热机械工艺优化Nb HSLA显微组织

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摘要

There are two obstacles to be overcome in the CSP production of HSLA heavy gauge strip and skelp, especially for API Pipe applications. First, the microalloying should be conserved by eliminating the high temperature precipitation of complex particles. Second, the heterogeneous microstructure that normally results from the 800 micron initial austenite in the 50mm slab as it is rolled to 12.5mm skelp must be eliminated to optimize the final microstructure and improve the final mechanical properties. Alteration in the hot rolling sequence can strongly homogenize the final austenite and resulting final ferritic microstructure. When coupled with a low coiling temperature near 550℃, the new rolling practice can result in Nb HSLA steels that can easily meet requirements for strength, toughness and ultrasonic testing in 12.5mm skelp gauges for X70 API pipe applications. The underlying physical metallurgy of these two breakthroughs will be presented and discussed in detail.
机译:HSLA重规格带材和带材的CSP生产中有两个障碍需要克服,特别是对于API管道应用而言。首先,应通过消除复杂颗粒的高温沉淀来保持微合金化。其次,必须消除通常由50毫米厚板中的800微米初始奥氏体轧制成12.5毫米短骨时产生的异质组织,以优化最终的微观结构并改善最终的机械性能。热轧顺序的改变可以使最终奥氏体和最终的铁素体显微组织均质化。加上约550℃的低卷取温度,这种新的轧制方法可以使Nb HSLA钢轻松满足在X70 API管应用的12.5mm弯管规中对强度,韧性和超声波测试的要求。将详细介绍和讨论这两个突破的基础物理冶金学。

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