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Comprehensive study of the abrasive wear and slurry erosion behavior of an expanded system of high chromium cast iron and microstructural modification for enhanced wear resistance

机译:对高铬铸铁扩展系统的磨料磨损和浆液侵蚀行为的综合研究以及增强耐磨性的微结构改性

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摘要

High chromium cast irons (HCCIs) have been demonstrated to be an effective material for a wide range of applications in aggressive environments, where resistances to abrasion, erosion and erosion-corrosion are required. For instance, machinery and facilities used in mining and extraction in Alberta's oil sands suffer from erosion and erosion-corrosion caused by silica-containing slurries, which create challenges for the reliability and maintenance of slurry pumping systems as well as other processing and handling equipment.;Considerable efforts have been made to determine and understand the relationship between microstructural features of the HCCIs and their wear performance, in order to guide the material selection and development for specific service conditions with optimal performance. The focus was previously put on a narrow group of compositions dictated by ASTM A532. However, with recent advances in casting technology, the HCCI compositional range can be significantly expanded, which potentially brings new alloys that can be superior to those which are currently employed.;This work consists of three main aspects of study. The first one is the investigation of an expanded system of white irons with their composition ranging from 1 to 6 wt.% C and 5 to 45 wt.% Cr, covering 53 alloys. This work has generated wear and corrosion maps and established correlation between the performance and microstructural features for the alloys. The work was conducted in collaboration with the Materials Development Center of Weir Minerals in Australia, and the results have been collected in a database that is used by the company to guide materials selection for slurry pump components in Alberta oil sands and in other mining operations throughout the world. The second part consists of three case studies on effects of high chromium and high carbon, respectively, on the performance of the HCCIs. The third aspect is the development of an approach to enhance the wear resistance of HCCIs by microstructural modification through addition of strong carbide-forming elements to produce eutectic microstructures reinforced with in-situ formed foreign carbides. Very promising results have been obtained in lab, which demonstrates that the approach is feasible and effective in tailoring HCCIs for improved performance.
机译:高铬铸铁(HCCI)已被证明是有效的材料,可广泛用于要求耐磨损,抗腐蚀和抗腐蚀的侵蚀性环境中。例如,艾伯塔省油砂的采矿和开采所使用的机械和设施遭受含硅石浆引起的侵蚀和腐蚀腐蚀,这对泥浆泵送系统以及其他加工和处理设备的可靠性和维护提出了挑战。 ;已经做出了巨大的努力来确定和理解HCCI的微结构特征与其耐磨性能之间的关系,以指导针对具有最佳性能的特定使用条件的材料选择和开发。以前的重点是ASTM A532规定的一小部分组合物。但是,随着铸造技术的最新发展,HCCI的成分范围可以大大扩展,这有可能带来新的合金,这些合金可以优于目前使用的合金。这项工作包括三个主要方面的研究。第一个是研究一种膨胀的白铁体系,其成分范围为1至6重量%的C和5至45重量%的Cr,覆盖53种合金。这项工作已经产生了磨损和腐蚀图,并建立了合金性能与微观结构特征之间的相关性。该工作是与澳大利亚伟尔矿业的材料开发中心合作进行的,结果已收集在一个数据库中,该公司使用该数据库来指导艾伯塔省油砂和其他采矿作业中的渣浆泵组件的材料选择。世界。第二部分包括三个案例研究,分别研究高铬和高碳对HCCI性能的影响。第三方面是通过添加强碳化物形成元素以产生用原位形成的外来碳化物增强的共晶微结构来通过微结构改性来增强HCCI的耐磨性的方法的开发。在实验室中已经获得了非常有希望的结果,这表明该方法在定制HCCI以提高性能方面是可行和有效的。

著录项

  • 作者

    Chung, Reinaldo Javier.;

  • 作者单位

    University of Alberta (Canada).;

  • 授予单位 University of Alberta (Canada).;
  • 学科 Materials science.;Mechanics.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 275 p.
  • 总页数 275
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 老年病学;
  • 关键词

  • 入库时间 2022-08-17 11:40:47

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