首页> 外文会议>European Powder Metallurgy Association;Euro International powder metallurgy congress exhibition >Production of Superhard Carbon Rich Boron Carbon (B_(11.72)C_(3.28)) Based Composite in the B_4C-Al-WC-Co-Cu System through SHS and SPS Techniques
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Production of Superhard Carbon Rich Boron Carbon (B_(11.72)C_(3.28)) Based Composite in the B_4C-Al-WC-Co-Cu System through SHS and SPS Techniques

机译:通过SHS和SPS技术在B_4C-Al-WC-Co-Cu体系中生产超硬碳富硼碳(B_(11.72)C_(3.28))基复合材料

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A superhard carbon rich B_(11.72)C_(3.28) based composite was produced via self-propagating hightemperaturesynthesis (SHS), by heat treatment in N gas presence, attrition milling, chemical leachingand spark plasma sintering (SPS) under N gas pressure at high temperatures. Such processingfeatures were conducted for production (during SHS with nitrification) of the superhard B_(13)C_2, c-BNand c-BC_2N chemical compounds in the starting powder compound B_4C(68 wt.%)-Al(28 wt.%)-WCCo(3 wt.%)-Cu(1 wt.%). The XRD results show that during SHS the boron rich boron carbon B_(13)C_2 andrelatively soft (Vickers hardness lower than 40 GPa) Al-based compounds like Al_6(BO_3)_5(OH)_3,AlO(OH), Al_2O_3, Al3BC, AlB, and AlN were formed. These compounds were removed from thedisintegrated composite powder by leaching with hydrochloric acid. The newly formed (via SPS)superhard light-weight composite contains 86.7 wt.% of carbon rich B_(11.72)C_(3.28) and 3.7 wt.% of boronrich B_(13)C_2 as well c-BN in a quantity of 3.3 wt.%, and precipitates of C_(11)N_4 (1.9 wt.%), WB_2 (0.9 wt.%),FeB_2 (0.3 wt.%) and graphite about 1.9 wt.%. The composite processed via SHS technology has aVickers hardness of 40.2 GPa and the newly processed (via SPS) composite has a Vickersmicrohardness of ~4400HV1.0 (46 GPa), high chemical inertness in concentrated HCl acid, andthermal stability at high temperatures.
机译:通过自蔓延高温合成(SHS),在N气存在下进行热处理,减磨,化学浸出和火花等离子体烧结(SPS),通过自蔓延高温合成(SHS)生产了一种超硬的富B_(11.72)C_(3.28)基复合材料。温度。进行此类加工功能以生产(在硝化SHS期间)起始粉末化合物B_4C(68 wt。%)-Al(28 wt。%)-中的超硬B_(13)C_2,c-BN和c-BC_2N化合物WCCo(3重量%)-Cu(1重量%)。 XRD结果表明,在SHS中,富硼碳B_(13)C_2和相对较软(维氏硬度低于40 GPa)的铝基化合物,如Al_6(BO_3)_5(OH)_3,AlO(OH),Al_2O_3,Al3BC形成AlB和AlN。通过用盐酸浸出将这些化合物从崩解的复合粉末中除去。新形成的(通过SPS)超硬轻质复合材料包含86.7 wt。%的富碳B_(11.72)C_(3.28)和3.7 wt。%的Boronrich B_(13)C_2以及c-BN的含量为3.3重量%,以及C_(11)N_4(1.9重量%),WB_2(0.9重量%),FeB_2(0.3重量%)和约1.9重量%的石墨的沉淀。通过SHS技术处理的复合材料的维氏硬度为40.2 GPa,新加工(通过SPS)的复合材料的维氏显微硬度为〜4400HV1.0(46 GPa),在浓盐酸中的化学惰性高,在高温下具有热稳定性。

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