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首页> 外文期刊>Materials Characterization >Deep pit repairing of nodular cast iron by laser cladding NiCu/Fe-36Ni low-expansion composite alloy
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Deep pit repairing of nodular cast iron by laser cladding NiCu/Fe-36Ni low-expansion composite alloy

机译:激光熔覆Nicu / Fe-36ni低膨胀复合合金的光学铸铁深坑修复

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摘要

It is very easy to form hard and brittle phases (chilled structure and martensite) in the interface zone during the welding and cladding process of nodular cast iron which always decrease the tensile strength of the interface. Shrinkage during the freezing and cooling process of the weld and the clad also bring high residual stress which results in cracks in the interface. However, it is very difficult to eliminate hard and brittle phases in the interface. In this study, a new method was adopted to reduce the residual stress during the laser cladding process of nodular cast iron. That is, cladding alloy with low expansion characteristic was prepared to repair the nodular cast iron, and the shrinkage of the claddings could be reduced, which could reduce the residual stress and cracks. Fe-36Ni (Invar 36) alloy powders which show very low coefficient of expansion and NiCu alloy powders which could restrain the hard phases in the interface were used as the cladding powders to repair the pit of the nodular cast iron by designing composite claddings. The microstructure characteristics were identified by Optical microscope (OM) and Scanning electron microscopy (SEM). Chemical composition was conducted using Energy dispersive microanalysis (EDS). The results showed that no obvious cracks forming in the composite cladding layers and the interface. The average hardness of the cladding layer was about 190 HV and the tensile strength is beyond 460 MPa. The thermal expansion coefficient of the cladding layer is obviously lower than that of the substrate at temperatures below 230 degrees C and above 870 degrees C. The cracks were effectively controlled by using NiCu/Fe-36Ni low-expansion composite alloy during the deep pit repair of the nodular cast iron.
机译:在结节铸铁的焊接和包层过程中,在界面区域中形成硬度和脆性相(冷却结构和马氏体)非常容易,这总是降低界面的拉伸强度。焊接冷冻和冷却过程中的收缩率和包层也带来了高残余应力,导致界面中的裂缝。然而,很难消除界面中的硬质和脆性阶段。在该研究中,采用了一种新方法来降低结节铸铁激光包层过程中的残余应力。也就是说,制备具有低膨胀特性的包层合金以修复结节铸铁,并且可以降低包层的收缩,这可以降低残余应力和裂缝。 Fe-36ni(Invar 36)合金粉末,其显示出极低的膨胀系数和可以抑制界面中的硬相的芽孢杆菌合金粉末作为包层粉末,通过设计复合衬垫来修复结节铸铁的凹坑。通过光学显微镜(OM)和扫描电子显微镜(SEM)鉴定微结构特征。使用能量分散微量分析(EDS)进行化学成分。结果表明,复合覆层层和界面中没有形成明显的裂缝。包层层的平均硬度约为190HV,拉伸强度超过460MPa。包层层的热膨胀系数明显低于230℃,高于870℃的温度下的基板的热膨胀系数。通过在深坑修复期间使用Nicu / Fe-36ni低膨胀复合合金有效地控制裂缝结节铸铁。

著录项

  • 来源
    《Materials Characterization 》 |2019年第2019期| 共7页
  • 作者单位

    Harbin Inst Technol State Key Lab Adv Welding &

    Joining Harbin 150001 Heilongjiang Peoples R China;

    Army Acad Armored Forces Natl Key Lab Remfg Beijing 100072 Peoples R China;

    Army Acad Armored Forces Natl Key Lab Remfg Beijing 100072 Peoples R China;

    Army Acad Armored Forces Natl Key Lab Remfg Beijing 100072 Peoples R China;

    Army Acad Armored Forces Natl Key Lab Remfg Beijing 100072 Peoples R China;

    Harbin Inst Technol State Key Lab Adv Welding &

    Joining Harbin 150001 Heilongjiang Peoples R China;

    Harbin Inst Technol State Key Lab Adv Welding &

    Joining Harbin 150001 Heilongjiang Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学 ;
  • 关键词

    Nodular iron; Laser cladding; Fe-36Ni alloy; Stress; Thermal expansion;

    机译:结节性熨斗;激光包覆;Fe-36ni合金;应力;热膨胀;

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