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Influence of pre-strain on cryogenic tensile properties of 316LN austenitic stainless steel

机译:316LN奥氏体不锈钢低菌株对低温拉伸性能的影响

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In the present work, influences of room temperature tensile pre-strain on cryogenic tensile properties of 316LN austenitic stainless steel (SS) were investigated. The tensile properties of the 316LN SS with various tensile prestraining amounts of 15%, 25% and 35% were measured at both room temperature (RT) and liquid helium temperature (4.2 K). Results indicated that both 0.2% proof strength (R-p0.2) and ultimate tensile strength (R-m) at both RT and 4.2 K of the pre-strained 316LN SS significantly increased compared to those of the as-received material. The R-p0.2 and R-m at 4.2 K for 35% pre-strained specimens increased around 86% and 18%, respectively, compared to those of the as-received material. However, the elongation at fracture (A) at both RT and 4.2 K decreased for the pre-strained 316LN SS compared to those of the as-received material. The fractured morphologies of the pre-strained 316LN SS were investigated by means of scanning electron microscopy (SEM) and transmission electron microscopy (TEM). Dimples in the surface fractured at both RT and 4.2 K of the as-received and pre-strained 316LN exhibited a ductile fracture mode. Moreover, fractographic results indicated that the pre-strain treatment considerably decreased the ductility at both RT and 4.2 K. TEM analyses revealed that pre-strain treatment at RT led to dislocation accumulation and stress-induced martensite phase occurred at 4.2 K, which interpreted the cryogenic tensile properties of the pre-strained 316LN SS.
机译:在本作工作中,研究了研究室温拉伸对316LN奥氏体不锈钢(SS)的低温拉伸性能的影响。在室温(RT)和液氦温度(4.2K)的情况下,测量具有15%,25%和35%的各种拉伸普拉限量的316LN SS的拉伸性能。结果表明,与接收材料相比,在RT和4.2K的RT和4.2K的下,在RT和4.2k的抗拉强度(R-M)的均为0.2%的抗拉强度(R-M)显着增加。与接收物质的材料相比,35%预选标本的R-P0.2和R-M分别增加约86%和18%。然而,与由接收材料的材料相比,在RT和4.2K的裂缝(A)处的伸长率降低,与接收的材料相比降低。通过扫描电子显微镜(SEM)和透射电子显微镜(TEM)来研究预带316LNSS的裂缝形态。在RT和4.2K的接收和预束316Ln的表面处于RT和4.2k的表面凹陷表现出延性裂缝模式。此外,式致菌预处理显着降低了RT和4.2K的延展性。TEM分析表明,在室温下的猝灭剂导致脱位累积和应激诱导的马氏体相发生于4.2 k,以4.2 k解释预先应变316LnSS的低温拉伸性能。

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