首页> 外文会议>Pacific Rim International Conference on Advanced Materials and Processing; 20071105-09; Jeju Island(KR) >Formation of Ultrafine Grained Structure in SUS 304 Stainless Steel Produced by High Pressure Torsion (HPT)
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Formation of Ultrafine Grained Structure in SUS 304 Stainless Steel Produced by High Pressure Torsion (HPT)

机译:高压扭转(HPT)在SUS 304不锈钢中形成超细晶粒组织

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SUS 304 austenitic stainless steel was processed by HPT at room temperature with different rotation speed. It was found that the microstructure evolution and composed phases along the progress of HPT were sensitive to the strain rate (rotation speed). During deforming with the low strain rate, the deformation-induced dynamic phase transformation (DPT) from austenite (γ) to martensite (α') occurred and the microstructure is characterized by elongated submicron a' grains after 10 revolutions. While the euqiaxed nanocrystalline a' grains were produced after HPT at the continuously alternative low and high strain rate. XRD analyses showed that multiple DPT of γ→α'→γ→α' took place during HPT at the continuously alternative low and high rotation speed. Based on the experimental results, it was proposed that the euqiaxed ultrafine grained structure were produced by multiple DPT under the high strain and strain gradient.
机译:SUS 304奥氏体不锈钢通过HPT在室温下以不同的转速加工。已经发现,沿着HPT进行的组织演变和组成相对应变速率(旋转速度)敏感。在低应变速率下的变形过程中,发生了从奥氏体(γ)到马氏体(α')的变形诱导动态相变(DPT),并且其微观结构的特征是经过10转后拉长了亚微米a'晶粒。 HPT后,以连续交替的低应变率和高应变率产生了共晶纳米晶a'晶粒。 XRD分析表明,在HPT过程中,在连续交替的低和高转速下,发生了γ→α′→γ→α′的多次DPT。根据实验结果,提出了在高应变和高应变梯度下,通过多次DPT法制备的共晶超细晶粒结构。

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