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Effect of annealing temperature on slurry erosion resistance of ferritic X10CrAlSi18 steel

机译:退火温度对铁素体X10cralsi18钢浆料腐蚀性的影响

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In the present work, the slurry erosion tests were carried out to investigate the influence of heat treatment on slurry erosion process of ferritic X10CrAlSi18 stainless steel using a slurry pot test rig. X10CrAlSi18 stainless steel was tested in as-received condition and after annealing at three different temperatures: 600 degrees C, 800 degrees C and 1000 degrees C. Degradation of materials due to slurry erosion depends on many factors connected with fluid flow conditions, properties of target material and erodent characteristics. In this case, factors related to the properties of the eroded material such as microstructure, grain size, work hardening, hardness played an important role. The heat treatment decreased hardness of this steel and increased erosion resistance. Microstructure was one of the most important parameters influencing the slurry erosion process of tested materials. X10CrAlSi18 stainless steel after annealing at 600 degrees C with fine-grained microstructure and the deepest of work hardening layer obtained the best resistance to slurry erosion. Heat treatment contributed to approximately 55%, 23% and 41% decrease in mass loss compared to steel in as-received condition. After slurry erosion tests craters, fracture, ridges and flakes were observed on the eroded surface. Furthermore, to identify the dominant mechanism of erosion, the erosion efficiency parameter was used, eta.
机译:在本工作中,使用泥浆罐试验台进行了泥浆侵蚀试验,以研究热处理对铁素体X10CrAlSi18不锈钢泥浆侵蚀过程的影响。X10CrAlSi18不锈钢在接收条件下以及在三种不同温度(600℃、800℃和1000℃)下退火后进行测试。由于泥浆侵蚀,材料的降解取决于与流体流动条件、目标材料的性能和侵蚀特性相关的许多因素。在这种情况下,与腐蚀材料的性能有关的因素,如微观结构、晶粒尺寸、加工硬化、硬度等起到了重要作用。热处理降低了这种钢的硬度,提高了抗侵蚀性。微观结构是影响材料浆体冲蚀过程的重要参数之一。X10CrAlSi18不锈钢在600℃退火后,具有细粒度的微观结构和最深的加工硬化层,获得了最佳的抗泥浆侵蚀性。与钢相比,热处理使质量损失分别降低了55%、23%和41%。泥浆侵蚀试验后,在侵蚀表面上观察到凹坑、裂缝、隆起和薄片。此外,为了确定侵蚀的主要机制,使用了侵蚀效率参数eta。

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