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Technological Parameters of Production and Properties of Babbit-Based Composite Surfacing Rods and Deposited Antifriction Coatings

机译:基于BABBITT基复合物杆的生产和性能的技术参数和沉积抗摩擦涂层

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摘要

A method for production of Sn-Sb-Cu alloy (babbitt) based composite coatings reinforced with micron-sized SiC and B_4C particles on a steel substrate has been developed. A combined action of uniformly distributed high-modulus reinforcements and plastic matrix increases the strength and durability, reduces the wear rate, and significantly improves the antifriction properties of the coating. The surfacing rods based on B83 babbit containing reinforcing particles for arc welding of coatings on steel substrate were produced by the extrusion method. These rods were characterized by lack of porosity and discontinuities in the internal volume as well as by defect-free surface. The density and hardness of the rods arc comparable with the same characteristics of the cast babbitt. Arc welding of coatings was performed in the AC mode with a non-consumable tungsten electrode in an argon atmosphere. Welding current I= 160-170 A, arc voltage U- 16-18 V, welding rate V_w = 4.2 m/h, and protective gas (Ar) flow rate V_(Ar) = 12-14 L/min. The structure and tribological properties of the composite rods and coatings deposited were investigated with the help of electron and optical microscopy methods and under dry sliding friction tribological tests. The size of SnSb intermetallic compounds in the rods after extrusion and in the coatings deposited was determined. It was found that the size of intermetallic phases decreased by a factor of two after introduction of SiC and B_4C particles into the babbitt alloy. The results of wear tests show that reinforcing and modifying the structure of the surfacing rods by introduction of high-strength micron- and submicron-sized ceramic SiC and B_4C particles improves the antifriction properties of surfaced composite coatings. The friction coefficient of the composite coating was the same throughout the load interval, while for the unmodified babbit coating its value was by two times higher than that for the composite coating under a load up to 39 N and 20% higher under loads greater than 39 N. The coatings with high-strength SiC and B_4C particles have a low coefficient of friction (0.4) and a high coefficient of the friction process stability (0.8).
机译:已经开发了一种用微米尺寸SiC和B_4C颗粒加强钢基板上增强的Sn-Sb-Cu合金(Babbitt)的复合涂层的方法。均匀分布的高模量增强和塑料基质的组合作用增加了强度和耐用性,降低了磨损率,并显着提高了涂层的抗抗率特性。通过挤出方法生产基于Ba33含有用于钢基板涂层涂层电弧焊接的增强颗粒的堆焊棒。这些棒的特征在于内部体积缺乏孔隙率和不连续性以及无缺陷表面。杆的密度和硬度与铸造Babbitt的相同特性相当。在AC模式下,在氩气氛中,在AC模式下进行涂层的电弧焊接。焊接电流I = 160-170 A,电弧电压U- 16-18 V,焊接率V_W = 4.2 m / h,保护气体(AR)流速V_(AR)= 12-14 L / min。借助电子和光学显微镜方法并在干燥滑动摩擦摩擦学检测中研究了沉积的复合杆和涂层的结构和摩擦学性质。确定挤出后棒中的SNSB金属间化合物的大小和沉积在沉积的涂层后。发现金属间相的尺寸在将SiC和B_4C颗粒引入Babbitt合金之后减少了两倍。磨损试验结果表明,通过引入高强度微米和亚微米陶瓷SiC和B_4C颗粒加固和改变堆焊杆的结构,提高了表面复合涂层的抗抗率特性。复合涂层的摩擦系数在整个负荷间隔中相同,而对于未修饰的巴巴贝特涂层,其值比在高达39 n的负载下的复合涂层的值高出两倍,在大于39的载荷下高达20% N.具有高强度SiC和B_4C颗粒的涂层具有低摩擦系数(0.4)和摩擦过程稳定性的高系数(0.8)。

著录项

  • 来源
    《Inorganic materials: applied research》 |2019年第3期|635-641|共7页
  • 作者单位

    Baikov Institute of Metallurgy and Materials Science Russian Academy of Sciences Moscow 119334 Russia;

    Baikov Institute of Metallurgy and Materials Science Russian Academy of Sciences Moscow 119334 Russia;

    Baikov Institute of Metallurgy and Materials Science Russian Academy of Sciences Moscow 119334 Russia;

    Baikov Institute of Metallurgy and Materials Science Russian Academy of Sciences Moscow 119334 Russia;

    Baikov Institute of Metallurgy and Materials Science Russian Academy of Sciences Moscow 119334 Russia;

    Bauman Moscow State Technical University Moscow 105005 Russia;

    Presidium of the National Academy of Sciences of Belarus Minsk 220072 Belarus Public Corporation Scientific Production Association Centre National Academy of Sciences of Belarus Minsk 220018 Belarus;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    babbitt B83; boron carbide; silicon carbide; arc welding; structure; friction coefficient; wear resistance;

    机译:巴比特B83;碳化硼;碳化硅;电弧焊接;结构体;摩擦系数;耐磨性;

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