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Correlating Hardness and Welding Dilution with the Abrasion Mass Loss of Hardfacings Welded with Different Currents and Polarities

机译:用不同电流和极性焊接的硬度和极性磨损的硬度和焊接稀释

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摘要

The correlation of hardness, microstructure, and dilution with the abrasion mass loss of hardfaced samples deposited using different currents (500 and 600 A) and polarities (AC and DC+) was studied. Four different welding conditions were considered for submerged arc welding using a martensitic hardfacing electrode and austenitic buffer electrode. Single-layer hardfacing was applied over the single-layer buffer. The microstructure of hardfacing was observed by an optical microscope. The micro-Vickers hardness across a single-layer hardfacing and dilution percentage were also measured. A dry-sand-rubber wheel abrasion test was conducted according to ASTM G65 procedure A to record the abrasive mass loss of the samples. The use of higher current and DC+ polarity resulted in the highest mass loss because of the deepest dilution and lowest hardness. Dilution affects the hardness and microstructure of hardfacing. The lowest abrasive mass loss, shallowest dilution, and highest hardness were obtained for the sample welded with lower current and AC polarity.
机译:研究了硬度,微观结构和稀释与使用不同电流(500和600A)和极性(AC和DC +)的硬粘接样品的耐磨质量损失的相关性。考虑使用马氏体硬渣电极和奥氏体缓冲电极进行浸没电弧焊接的四种不同的焊接条件。在单层缓冲液上施加单层硬裂。光学显微镜观察到硬坯的微观结构。还测量了单层硬折叠和稀释率的微维氏硬度。根据ASTM G65步骤A进行干式橡胶轮磨损试验,以记录样品的磨料质量损失。由于最深的稀释度和最低硬度,使用更高电流和DC +极性导致质量损失最高。稀释会影响性硬度的硬度和微观结构。获得具有较低电流和交流极性的样品焊接的最低磨料质量损失,最浅的稀释度和最高硬度。

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