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Influences of depositing materials, processing parameters and heating conditions on material characteristics of laser-cladded hypereutectoid rails

机译:沉积材料,加工参数和加热条件对激光覆盖的过度切开铁路材料特性的影响

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摘要

The effects of different cladding materials, processing parameters and heating regimes on the underlying microstructural features and mechanical properties of laser-cladded premium rails were investigated by using a hypereutectoid rail grade as a substrate, which is extensively used in heavy-haul rail systems. Cladding materials of 410L, 420SS, Stellite 6 and Stellite 21 with single and double depositions were considered for the comparative study of different cladding materials and processing parameters. To ensure the constant thickness of the claddings for comparison purposes, transverse speed and powder feed rate were modified concurrently in the ranges of 1000-1200 mm/min and 3-4 RPM, respectively. Two heating conditions, i.e. preheating only (HTA) and a combination (HTB) of preheating and post weld heat treatment (PWHT) were applied after the preferable parameters for each cladding material were obtained. The most suitable cladding material for rail-wheel contact was established by assessing all crucial aspects, i.e. surface defects, hardness, microstructural and mechanical properties. Process parameters for each considered cladding material were determined to achieve no surface defects. For cladding layers, application of HTA was not able to significantly modify the microstructures of the deposits, whereas HTB was observed to cause severe cracks in Co-base alloys, i.e. Stellite 6 and Stellite 21. In the heat affected zones (HAZs), irrespective of the cladding materials, the formation of untempered martensite was not avoided by the application of preheating at 350 degrees C. Consequentially, cracking in the HAZ was observed. An uncracked and desirable microstructure in the HAZs was established using HTB, regardless of the depositing materials. The addition of a second layer did not change the thickness of the HAZs but refined the HAZ's microstructures. Shear punch testing (SPT) and Vickers hardness testing were utilized to characterize mechanical properties for the considered cladding materials and good correlations with the obtained microstructural morphologies were shown.
机译:通过使用过分切开的轨道级作为基材来研究不同包层材料,加工参数和加热制度对激光覆盖的高轨的潜在微观结构特征和力学性能的影响,其广泛用于重单轨道系统。考虑了不同包覆材料和加工参数的比较研究,考虑了410L,420S,脱晶6和脱晶21的包层材料,以及双沉积的比较研究。为了确保用于比较目的的包层的恒定厚度,分别在1000-1200mm / min和3-4 rpm的范围内同时修饰横向速度和粉末进料速率。在获得每个包层材料的优选参数之后,将仅预热和焊接热处理的预热和焊接热处理(PWHT)的两个加热条件和组合(HTB)进行预热和组合(HTB)。通过评估所有关键方面,即表面缺陷,硬度,微观结构和机械性能来建立最合适的轨道轮接触材料。确定每个考虑的包层材料的工艺参数达到表面缺陷。对于包层层,HTA的施加不能显着改变沉积物的微观结构,而HTB被观察到在共碱基合金中引起严重的裂缝,即Stellite 6和Stellite 21。在热影响的区域(HAZS)中,无论在包层材料中,通过在350℃下施加预热来避免未经维持的马氏体的形成。因此,观察到HAZ中的开裂。无论沉积材料如何,使用HTB建立危险中未粘接和理想的微观结构。添加第二层没有改变危险的厚度,但改善了HAZ的微观结构。剪切打孔测试(SPT)和维氏硬度测试用于表征用于考虑的包层材料的机械性能,并显示与所获得的微观结构形态的良好相关性。

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