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Particle Erosion of SUS403 Tempered Martensitic Stainless Steel

机译:SUS403回火马氏体不锈钢的颗粒侵蚀

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The particle erosion behavior of SUS403 martensitic stainless steel tempered with five different temperatures range from 200 to 600℃ were studied as a function of impact angle and hardness. The results indicate that the dominated mechanisms for material removal are cutting and extrusion at low and high impact angles, respectively. A transition of mechanism mixed by cutting and extrusion occurs at medium impact angle. Grain boundary cracking is often found for all impact angles that seem to be one of the major erosion mechanisms for two-phase materials mixed with martensite and ferrite. The erosion rate of all the experimental materials increases first, and then decreases with increase in impact angle. Thus, the maximum erosion rate occurs at the angle between 30° and 45°. At 15° and 30° of impingement, the erosion rate is virtually independent of hardness. While impact angles exceed than 30°, erosion rate increases with increasing hardness.
机译:研究了SUS403马氏体不锈钢在200至600℃这五个不同温度下回火后的颗粒腐蚀行为,它是冲击角和硬度的函数。结果表明,材料去除的主要机制分别是在低和高冲击角下的切割和挤压。通过切削和挤压混合的机理的转变发生在中等的冲击角。通常在所有冲击角都发现晶界裂纹,这似乎是马氏体和铁素体混合的两相材料的主要腐蚀机理之一。所有实验材料的腐蚀速率首先增加,然后随着冲击角的增加而减小。因此,最大腐蚀速率出现在30°和45°之间的角度。在15°和30°的冲击下,腐蚀速率实际上与硬度无关。当冲击角超过30°时,腐蚀速率随硬度的增加而增加。

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