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Investigation of hot cracking resistance of 2205 duplex steel

机译:2205双工钢热裂纹电阻研究

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摘要

Austenitic duplex steel of the brand 2205 according to Avesta Sheffield is used for welded constructions (pipelines, tanks) in the petrol industry, chemical industry and food industry. It is important to know the range of high-temperature brittleness in designing welding technology for constructions made of this steel type. There is no data in literature concerning this issue. High-temperature brittleness tests using the simulator of heat flow device Gleeble 3800 were performed. The tests results allowed the evaluation of the characteristic temperatures in the brittleness temperature range during the joining of duplex steels, specifically the nil-strength temperature (NST) and nil-ductility temperatures (NDT) during heating, the strength and ductility recovery temperatures (DRT) during cooling, the R_f parameter (R/= (T_(liquidus) - NDT)/NDT) describing the duplex steel inclination for hot cracking, and the brittleness temperature range (BTR). It has been stated that, for the examined steel, this range is wide and amounts to ca. 90 °C. The joining of duplex steels with the help of welding techniques creates a significant risk of hot cracks. After analysis of the DTA curves a liquidus temperature of T_L = 1465 °C and a solidus temperature of T_s = 1454 °C were observed. For NST a mean value was assumed, in which the cracks appeared for six samples; the temperature was 1381 °C. As the value of the NDT temperature 1367 °C was applied while for DRT the assumed temperature was 1375 °C. The microstructure of the fractures was observed using a Hitachi S-3400N scanning electron microscope (SEM). The analyses of the chemical composition were performed using an energy-dispersive X-ray spectrometer (EDS), Noran System Six of Thermo Fisher Scientific. Essential differences of fracture morphology type over the brittle temperature range were observed and described.
机译:根据Avesta Sheffield的奥氏体双相钢的品牌2205,用于汽油工业,化工和食品工业的焊接结构(管道,坦克)。重要的是要了解设计采用该钢型结构焊接技术的高温脆性范围。关于这个问题的文献没有数据。使用热流装置模拟器3800的高温脆性测试进行了Gleeble 3800。试验结果允许在加热期间的加热过程中的尼尔强度温度(NST)和尼尔 - 延展温度(NIL - 延展温度(NIL-延展温度(NIL延展性温度(DRT)期间评估脆性温度范围内的特征温度。(DRT )在冷却期间,描述用于热裂纹的双工钢倾斜度的R_F参数(R / =(T_(液态) - NDT)/ NDT),以及脆性温度范围(BTR)。已经说明,对于被检查的钢,这个范围很宽,大量到CA。 90°C。双工钢的连接借助焊接技术产生了显着的热裂缝风险。在分析DTA曲线之后,观察到T_L = 1465℃的液相高温和T_S = 1454℃的固体温度。对于NST,假设平均值,其中裂缝出现了六个样本;温度为1381℃。随着NDT温度的值1367℃,在DRT的同时施用假设的温度为1375℃。使用Hitachi S-3400N扫描电子显微镜(SEM)观察裂缝的微观结构。使用能量分散X射线光谱仪(EDS),Thermo Fisher Scientific的挪曼系统进行化学组合物的分析。观察和描述了脆性温度范围内骨折形态类型的基本差异。

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