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Surface modification of AISI H13 tool steel with silicon or manganese powders mixed to the dielectric in electrical discharge machining process

机译:AISI H13工具钢的表面改性与电气放电加工过程中的电介质混合的硅或锰粉末

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摘要

In electrical discharge machining (EDM) process, one of the most important aspects is the surface quality of the workpiece. When a uniform and thick recast layer is achieved with characteristics of low roughness, high hardness, and the absence of pores and micro-cracks, it acts as a kind of coating. Such surface is required by mold-making industry, where the molds are subjected to chemical and abrasive wear, and the surface needs to present high resistance against corrosion and abrasive forces. The use of powder particles suspended in the dielectric is a way to provide such improvement and, at the same time, avoiding the need for subsequent polishing. This work investigated the influence of silicon and manganese powders with fine particle sizes, using two different concentrations, suspended in the dielectric when EDM machining AISI H13 tool steel. It evaluated the surface roughness, hardness, and the chemical composition and micro-structure of the recast layer; using X-ray diffraction (XRD), scanning electron microscopy (SEM), and energy dispersive spectroscopy (EDS) techniques. The best results were obtained for silicon powder; presenting the surface roughness improved about five times, when compared to the conventional EDM process, as well as a thick and uniform recast layer without micro-cracks and pores. The silicon and the manganese powders also promoted an increase of the recast layer hardness of about 40 % when compared to the conventional EDM process.
机译:在电气放电加工(EDM)过程中,最重要的方面是工件的表面质量。当通过低粗糙度,高硬度和孔隙的特性实现均匀和厚的重量层时,它用作一种涂层。模具制造工业需要这种表面,其中模具经受化学和磨料磨损,并且表面需要呈现高耐腐蚀和磨料的高抗性。悬浮在电介质中的粉末颗粒是一种提供这种改进的方法,同时避免需要随后的抛光。这项工作研究了使用两种不同浓度的微粒尺寸的硅和锰粉的影响,当EDM加工AISI H13工具钢时悬浮在电介质中。它评估了塑料层的表面粗糙度,硬度和化学成分和微结构;使用X射线衍射(XRD),扫描电子显微镜(SEM)和能量分散光谱(EDS)技术。获得了硅粉的最佳结果;与传统的EDM工艺相比,呈现表面粗糙度提高了大约五次,以及没有微裂纹和孔的厚且均匀的重质量层。与常规EDM工艺相比,硅和锰粉末还促进了额外重复层硬度约40%的增加。

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