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Evaluation of the Possibility of Using 1.4462 and 1.4501 Steel as a Construction Material for Apparatus Operating at an Increased Temperature and with Corrosive Factors

机译:评估使用1.4462和1.4501钢的可能性作为用于在升高的温度和腐蚀性因素的设备上运行的设备的建筑材料

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摘要

The objective of this study was to determine the requirements for steels used as construction materials for chemical apparatus operating at an elevated temperature and to correlate them with the properties of the tested steels. The experimental part examined the influence of the annealing process on the structure and properties of X2CrNiMoN22-5-3 (1.4462) and X2CrNiMoCuWN25-7-4 (1.4501) steel. Heat treatment was carried out on the tested samples at a temperature of 600 °C and 800 °C. Changes were observed after the indicated time intervals of 250 and 500 h. In order to determine the differences between the initial state and after individual annealing stages, metallographic specimens were performed, the structure was analyzed using an optical microscope and the micro-hardness was measured using the Vickers method. Potentiostatic tests of the samples were carried out to assess the influence of thermal process parameters on the electrochemical properties of the passive layer. An increase in the hardness of the samples was observed with increasing temperature and annealing time, the disappearance of magnetic properties for both samples after annealing at the temperature of 800 °C, as well as a significant deterioration in corrosion resistance in the case of treatment at a higher temperature.
机译:本研究的目的是确定用作在升高的温度下操作的化学设备的钢材用作建筑材料的钢的要求,并将它们与测试钢的性质相关联。实验部分检查退火过程对X2Crnimon22-5-3(1.4462)和X2Crnimocuwn25-7-4(1.4501)钢的结构和性能的影响。在600℃和800℃的温度下在测试的样品上进行热处理。在250和500小时的指示时间间隔后观察到变化。为了确定初始状态和在各个退火阶段之间的差异,进行金相样品,使用光学显微镜分析结构,使用维氏方法测量微固态。进行样品的电位试验,以评估热处理参数对无源层的电化学性质的影响。观察到样品的硬度增加,随着温度和退火时间的增加,在800℃的温度下退火后两种样品的磁性消失,以及在治疗的情况下耐腐蚀性的显着劣化温度较高。

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