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首页> 外文期刊>Metals and Materials International >Effect of wear debris of Al2O3, ZrO2 and WC balls on Y-α/β-SiAlON ceramics consolidated by spark plasma sintering
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Effect of wear debris of Al2O3, ZrO2 and WC balls on Y-α/β-SiAlON ceramics consolidated by spark plasma sintering

机译:Al2O3,ZrO2和WC球的磨屑对火花等离子体烧结固结的Y-α/β-SiAlON陶瓷的影响

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摘要

Three types of Y-α/β-SiAlON powders were prepared by mixing and milling the raw materials for 20 h using Al2O3, ZrO2, and WC balls, thereafter denoted as SNA, SNZ and SNW, respectively. The three types of specimens were sintered using spark plasma sintering (SPS) at 1510 °C for 5 min under 30 MPa in a vacuum. α-phases (SiAlON and Si3N4) and β-SiAlON phase were observed in the SNA and SNZ specimens, but only the β-SiAlON phase existed in the SNW specimen. The wear debris of the WC balls affected the grain boundary properties and eventually promoted the full phase transformation of α-Si3N4 into α- and β-SiAlON phases. However, SNA and SNZ were partially transformed into α- and β-SiAlON phases. The Vickers hardness of SNA was the highest (18.7 GPa), due to its having the highest content of α-phase, but its fracture toughness was the lowest (4.09 MPam1/2) due to its having the lowest content of β-SiAlON phase. The wear debris and secondary phases existed at the grain boundary, mostly at the triple junction, and also affected the color. The color of the sintered specimen was quite different depending on the milling media.
机译:通过使用Al2O3,ZrO2和WC球将原材料混合和研磨20小时来制备三种类型的Y-α/β-SiAlON粉,其后分别表示为SNA,SNZ和SNW。在1510℃,真空和30 MPa下,使用火花等离子体烧结(SPS)将三种类型的样品烧结5分钟。在SNA和SNZ标本中观察到α相(SiAlON和Si3N4)和β-SiAlON相,但是在SNW标本中仅存在β-SiAlON相。 WC球的磨屑影响了晶界性能,并最终促进了α-Si3N4的全相转变为α-和β-SiAlON相。但是,SNA和SNZ被部分转化为α-和β-SiAlON相。 SNA的维氏硬度最高(18.7 GPa),因为其具有最高的α相含量,但其断裂韧性最低(4.09 MPam1 / 2),因为其具有最低的β-SiAlON相含量。 。磨屑和次生相存在于晶界处,主要存在于三重结处,并且还影响了颜色。烧结样品的颜色根据研磨介质的不同而有很大差异。

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  • 来源
    《Metals and Materials International》 |2013年第2期|163-169|共7页
  • 作者单位

    School of Materials Science and Engineering Yeungnam University">(12005);

    Center for Research Facilities Yeungnam University">(22005);

    School of Materials Science and Engineering Yeungnam University">(12005);

    NCRC for Hybrid Materials Solution Pusan National University">(32005);

    NCRC for Hybrid Materials Solution Pusan National University">(32005);

    NCRC for Hybrid Materials Solution Pusan National University">(32005);

    NCRC for Hybrid Materials Solution Pusan National University">(32005);

    Central Research Facility Ulsan National Institute of Science and Technology">(42005);

    School of Materials Science and Engineering Yeungnam University">(12005);

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