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首页> 外文期刊>Materials Science and Engineering >Fabrication of high borated austenitic stainless steel thick plates with enhanced ductility and toughness using a hot-roll-bonding method
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Fabrication of high borated austenitic stainless steel thick plates with enhanced ductility and toughness using a hot-roll-bonding method

机译:采用热轧制粘接法制造具有增强的延展性和韧性的高硼化奥氏体不锈钢厚板

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摘要

The increase in casting slab thickness causes sharp increase in both the size and uneven distribution of brittle eutectic borides in high borated austenitic stainless steel, thus remarkably deteriorating the hot workability and the final room-temperature mechanical properties. Hence, it is undesirable to produce thick plates by rolling an extra-thick slab. Here it is reported that a specially designed hot-roll-bonding method for producing Fe-19Cr-15Ni-1.2B austenitic stainless steel thick plates using the conventional thick slab as starting materials. The main aim is to obtain refined and uniformly distributed borides so as to improve the room-temperature ductility and toughness by increasing total rolling compression ratio via hot-roll-bonding. It was validated that double-layered thick slabs could be successfully hot-roll-bonded though massive brittle ceramic (Cr,Fe)_2B particles exist at the contacting interlayer interfaces. The hot-roll-bonding mechanism was clarified in terms of severe plastic flow, recrystallization and interface-diffusion. The effects of total rolling compression ratio on the morphological change and size distribution of (Cr,Fe)_2B particles in both the mono-layered plates and the double-layered composite plates were investigated in details with the consequent effects on room-temperature comprehensive mechanical properties. It was found that the initial large and brittle (Cr,Fe)_2B broke into more spheroidal and refined particles and significantly enhanced the ductility and toughness with increasing the total rolling compression ratio up to 10. The present work provides not only a practicable method to fabricate high borated austenitic stainless steel thick plates but also a promising way to improve the ductility and toughness of other metals containing a large number of hard and brittle particles.
机译:铸造板坯厚度的增加导致脆性共晶硼化物在高硼化奥氏体不锈钢中的尺寸和不均匀分布急剧增加,从而显着降低了热的可加工性和最终室温机械性能。因此,通过滚动厚厚的板坯来生产厚板是不希望的。这里据报道,使用传统厚板为原料的特殊设计的热轧粘合方法,用于生产Fe-19Cr-15ni-1.2b奥氏体不锈钢厚板。主要目的是通过通过热轧制粘合剂增加总轧制压缩比来获得精制和均匀分布的硼化物,以改善室温延展性和韧性。经过验证的是,通过在接触层间接口处存在大规模脆性陶瓷(Cr,Fe)_2b颗粒,可以成功地热滚动双层厚板。在严重的塑料流动,重结晶和界面扩散方面阐明了热辊键合机理。通过对室温综合机械的影响,研究了总轧制压缩比对(Cr,Fe)_2b颗粒(Cr,Fe)_2b颗粒的形态变化和大小分布的影响特性。发现初始大且脆性(Cr,Fe)_2b突破了更多的球形和精制颗粒,并显着提高了延展性和韧性随着增加的总轧制压缩比。目前的工作不仅提供了一种可行方法制造高硼化奥氏体不锈钢厚板,但也是提高含有大量硬质颗粒的其他金属的延展性和韧性的有希望的方法。

著录项

  • 来源
    《Materials Science and Engineering》 |2021年第2期|140212.1-140212.12|共12页
  • 作者单位

    State Key laboratory of Rolling and Automation Northeastern University P.O. Box 105 Shenyang 110819 People's Republic of China;

    State Key laboratory of Rolling and Automation Northeastern University P.O. Box 105 Shenyang 110819 People's Republic of China;

    Science and Technology on Reactor Fuel and Materials Laboratory Nuclear Power Institute of China Chengdu 610041 People's Republic of China;

    Science and Technology on Reactor Fuel and Materials Laboratory Nuclear Power Institute of China Chengdu 610041 People's Republic of China;

    State Key laboratory of Rolling and Automation Northeastern University P.O. Box 105 Shenyang 110819 People's Republic of China;

    State Key laboratory of Rolling and Automation Northeastern University P.O. Box 105 Shenyang 110819 People's Republic of China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Hot-roll-bonding; Ductility; Toughness; Thick plates; Borides; Microstructure evolution;

    机译:热轧粘合;延展性;韧性;厚板;硼化物;微观结构演变;

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