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Rotary bending as a mean for improving micro-cleanliness of stainless steels for high demanding applications

机译:旋转弯曲是提高高要求应用中不锈钢微观清洁度的一种手段

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Stainless steels are used for automotive or medical applications which require a high fatigue resistance correlated to a high level of micro-cleanliness. A methodology based on rotary bending tests carried out on wires or bars has been defined to determine the material’s endurance limit (after 100 millions cycles) and identify the largest subcutaneous inclusions or precipitates where failures initiate. This methodology has been applied to EN 1.4568 spring wires. Failures were found to initiate both at oxide inclusions and AlN precipitates. For the same size, AlN precipitates were observed to be more critical towards crack initiation than oxide inclusions, due to their angular shape and lower thermal expansion at high temperatures. However, oxide inclusions larger than the AlN maximum size strongly impact the material’s fatigue limit, and their density and size should be reduced.
机译:不锈钢用于汽车或医疗应用,这些应用需要与高水平的微观清洁度相关的高抗疲劳性。已经定义了一种基于在金属丝或金属棒上进行的旋转弯曲测试的方法,以确定材料的耐力极限(1亿次循环后),并确定发生故障的最大皮下包裹体或沉淀物。该方法已应用于EN 1.4568弹簧线。发现失效会在氧化物夹杂物和AlN沉淀物上引发。对于相同的尺寸,观察到AlN沉淀物比氧化物夹杂物对裂纹萌生的影响更大,这是由于它们的角形状和高温下较低的热膨胀。但是,大于AlN最大尺寸的氧化物夹杂物会严重影响材料的疲劳极限,因此应降低其密度和尺寸。

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