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Edge cracking prevention in 2507 super duplex stainless steel by twin-roll strip casting and its microstructure and properties

机译:2507超级双面不锈钢边缘开裂防止双辊带铸造及其微观结构及性能

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摘要

In the present work, the microstructure, mechanical properties and corrosion resistance of 2507 super duplex stainless steel (SDSS) fabricated by conventional hot-rolling and strip casting were investigated, respectively. Large deformation in the course of conventional hot-rolling destroyed the coherency of ferrite/austenite inter phase and leaded to a deviation from the ideal K-S orientation relationship, which accelerated the precipitation of sigma phase at the phase interface in 2507 SDSS. These brittle particles provided numerous potential void nucleation sites and promoted the propagation of cracks along the ferrite/austenite interface, resulting in severe cracking during conventional hot-rolling. High-quality thin strip without edge cracking was manufactured by strip casting and the edge cutting-off of hot-rolled products was avoided, leading to a significant reduction in cost compared to the conventional process. Meanwhile, the mechanical properties and corrosion resistance of 2507 SDSS fabricated by this new technology reached the same standard of conventional productions. High Temperature-Short Time (HTST) heat treatment was applied in the preparation of the final product, which significantly improved the strength of 2507 SDSS.
机译:在本工作中,分别研究了由常规热轧和带钢铸造制造的2507超级双相不锈钢(SDS)的微观结构,机械性能和耐腐蚀性。常规热轧过程中的大变形破坏了铁氧体/奥氏体相互相位的相干性,并引入了与理想的K-S取向关系的偏差,这加速了2507个SDS中的相界面处的Sigma相的沉淀。这些脆性粒子提供了许多潜在的空隙成核位点,并促进了沿铁氧体/奥氏体界面的裂缝的传播,导致常规热轧过程中的严重裂缝。通过条带铸造制造没有边缘开裂的高质量薄条,避免了热轧产品的边缘切断,导致与常规过程相比成本显着降低。同时,通过这种新技术制造的2507个SDS的机械性能和耐腐蚀性达到了相同的常规生产标准。高温短时间(HTST)热处理应用于最终产品的制备,显着提高了2507个SDS的强度。

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