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High-temperature wear and oxidation behaviors of TiNi/Ti2Ni matrix composite coatings with TaC addition prepared on Ti6Al4V by laser cladding

机译:激光熔覆在Ti6Al4V上添加TaC的TiNi / Ti2Ni基复合涂层的高温磨损和氧化行为

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TiNi/Ti2Ni matrix composite coatings were produced on Ti6A14V surfaces by laser cladding the mixed powders of Ni-based alloy and different contents of TaC (0, 5, 10, 15, 20, 30 and 40 wt.%). Microstructures of the coatings were investigated. High-temperature wear tests of the substrate and the coatings were carried out at 600 degrees C in air for 30 min. High-temperature oxidation tests of the substrate and the coatings were performed at 1000 degrees C in air for 50 h. Wear and oxidation mechanisms were revealed in detail. The results showed that TiNi/Ti2Ni as the matrix and TiC/TiB2/TiB as the reinforcements are the main phases of the coatings. The friction coefficients of the substrate and the coatings with different contents of TaC were 0.431 (the substrate), 0.554 (0 wt.%), 0.486 (5 wt.%), 0.457 (10 wt.%), 0.458 (15 wt.%), 0.507 (20 wt.%), 0.462 (30 wt.%) and 0.488 (40 wt.%). The wear rates of the coatings were decreased by almost 83%-98% than that of the substrate and presented a decreasing tendency with increasing TaC content. The wear mechanism of the substrate was a combination of serious oxidation, micro-cutting and brittle debonding. For the coatings, oxidation and slight scratching were predominant during wear, accompanied by slight brittle debonding in partial zones. With the increase in content of TaC, the oxidation film better shielded the coatings from destruction due to the effective friction-reducing role of Ta2O5. The oxidation rates of the substrate and the coatings with different contents of TaC at 1000 C were 12.170 (the substrate), 5.886 (0 wt.%), 4.937 (5 wt.%), 4.517 (10 wt.%), 4.394 (15 wt.%), 3.951 (20 wt.%), 4.239 (30 wt.%) and 3.530 (40 wt.%) mg(2) cm(-4) h(-1), respectively. The oxidation film formed outside the coating without adding TaC was composed of TiO2, NiO, Cr2O3, Al2O3 and SiO2. When TaC was added, Ta2O5 and TaC were also detected, which effectively improved the oxidation resistance of the coatings. The addition of TaC contributed to the improvement in high-temperature wear and oxidation resistance. (C) 2017 Elsevier B.V. All rights reserved.
机译:通过激光熔覆镍基合金和不同含量的TaC(0、5、10、15、20、30和40 wt。%)的混合粉末,在Ti6A14V表面上制备TiNi / Ti2Ni基复合涂层。研究了涂层的微观结构。基材和涂层的高温磨损测试是在600摄氏度的空气中进行30分钟。基材和涂层的高温氧化测试在空气中1000摄氏度下进行50小时。详细揭示了磨损和氧化机理。结果表明,以TiNi / Ti2Ni为基体和TiC / TiB2 / TiB为增强体是涂层的主要相。基材和具有不同TaC含量的涂层的摩擦系数分别为0.431(基材),0.554(0重量%),0.486(5重量%),0.457(10重量%),0.458(15重量%)。 %),0.507(20 wt。%),0.462(30 wt。%)和0.488(40 wt。%)。涂层的磨损率比基材的磨损率降低了近83%-98%,并且随着TaC含量的增加呈现降低的趋势。基材的磨损机理是严重的氧化,微切割和脆性脱胶的结合。对于涂层,在磨损过程中主要发生氧化和轻微刮擦,并在部分区域出现轻微的脆性剥离。随着TaC含量的增加,由于Ta2O5的有效减摩作用,氧化膜更好地保护了涂层免受破坏。在1000 C下基材和具有不同TaC含量的涂层的氧化速率分别为12.170(基材),5.886(0 wt。%),4.937(5 wt。%),4.517(10 wt。%),4.394( 15(重量%),3.951(20重量%),4.239(30重量%)和3.530(40重量%)mg(2)cm(-4)h(-1)。在不添加TaC的情况下在涂层外形成的氧化膜由TiO2,NiO,Cr2O3,Al2O3和SiO2组成。当添加TaC时,还检测到Ta2O5和TaC,有效地改善了涂层的抗氧化性。 TaC的添加有助于改善高温磨损和抗氧化性。 (C)2017 Elsevier B.V.保留所有权利。

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