钢轨铝热焊接头力学性能及显微组织分析

Yang Liu, Z. Tsakadze, H. Hoh, J. Pang, Ivan Christian, Tie Xuan Ng, Y. Ng
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引用次数: 2

摘要

铝热剂焊接是一种常用的钢轨连接方法,一旦出现故障,将会造成工期延误甚至灾难。本文通过对普通钢轨和焊接试样的力学性能和显微组织进行分析,了解影响钢轨头部和焊接接头裂纹萌生和扩展的潜在因素。结果表明,钢轨在热影响区(HAZ)附近的硬度急剧下降,这可能是由于钢轨经过退火等热处理所致。为了验证这一假设,用光学显微镜和扫描电镜对样品进行了分析。显微组织结果表明,焊接区可划分为焊接金属区、混合熔化区、热影响区和未受影响母轨4个区域,根据晶粒尺寸和层间间距可划分为粗晶热影响区、细晶热影响区和临界热影响区3个亚区。热影响区硬度的降低主要是由于完全退火、部分退火和球化引起的软化。同时发现,混合熔区中大量的氧化物夹杂物可能导致裂纹的萌生和扩展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mechanical Properties and Microstructural Analysis of Rail Thermite Welding Joints
Thermite welding is commonly applied to join running rails together and any failures related to it will result in delay or even catastrophe. In this paper, mechanical properties and microstructures of specimens extracted from plain rail and welding are analyzed to understand the potential factors affecting crack initiation and propagation in the head of rail and welding joints. It is found that there is a sharp decrease of hardness near the heat affected zone (HAZ), likely due to the rail undergoing a heat treatment such as annealing. To verify this assumption, the specimens are analyzed by optical microscope and Scanning Electron Microscope. The microstructure result shows that the region near welding can be clearly divided into four zones: Welding Metal Zone, Mixed Melted Zone, Heat Affected Zone (HAZ) and Unaffected Parent Rail with three subzones for HAZ: Coarse Grained HAZ, Fine Grained HAZ and Inter-critical HAZ based on the grain size and inter-lamellar spacing. The decrease of hardness in HAZ is due to softening because of fully annealing, partial annealing, “spheroidization” in three subzones respectively. This paper also found that the large amount of oxide inclusions in Mixed Melted Zone may cause the ease of crack initiation and propagation.
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