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Effects of spray distance on the microstructure and mechanical properties of reactive plasma sprayed TiCN coatings

机译:喷射距离对反应等离子体喷涂TiCN涂层微观结构和力学性能的影响

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The objective of this study is to evaluate the effects of spray distance on the microstructure and mechanical properties of reactive plasma sprayed titanium carbonitride (TiCN) coatings under nitrogen plasma gas. For this purpose, five different distances were adopted, and the morphology (single splats, surface and cross section) and composition (phase and chemical) of as-sprayed coatings were investigated. Mechanical properties of bonding strength, hardness, elastic modulus as well as indentation toughness of coatings were systematically evaluated. Results show that all of coatings consist of TiCxN1-x (0 = x = 1), TiOx, amorphous graphite and CNx phases, and the amount of ternary TiCN increases as the spray distance increases. Typical microstructure of plasma sprayed coatings containing fully melted particle, partially melted particles, un-melted particles and defects (pores and cracks) are observed. As the spray distance increase, the surface morphology and splats shape change from uneven and irregular ones to relatively flat and regular "disc splats" due to the improved dwell time and sufficient melting in plasma jet. In this case, the maximum hardness about 17.8 +/- 1.9 GPa, elasticity modulus about 214.5 +/- 18.3 GPa and bonding strength about 24.2 +/- 2.1 MPa are obtained due to the relatively high TiCN content, favorable indentation toughness and compact microstructure. As the spray distance further increases to 150 mm, irregular "fingers splats" appear, and in this case the mechanical properties of coating are worsened. Therefore, a significant influence of spray distance on the microstructure and mechanical properties of as-sprayed TiCN coating is found.
机译:本研究的目的是评估喷射距离对氮等离子体气体中反应等离子体喷涂碳氮化物(TiCN)涂层的微观结构和力学性能的影响。为此目的,采用了五种不同的距离,研究了各种涂层的形态(单丝,表面和横截面)和组成(相和化学)。系统地评价粘合强度,硬度,弹性模量以及涂层压痕韧性的力学性能。结果表明,所有涂层都由TiCXN1-X(0& = x = 1),TiOx,非晶石墨和CNX相包括,随着喷射距离的增加,三元TiCN的量增加。观察到含有完全熔化的颗粒,部分熔化的颗粒,未熔化的颗粒和缺陷(孔隙和裂缝)的等离子体喷涂涂层的典型微观结构。由于喷射距离增加,由于改善的停留时间和等离子体射流充分熔化,表面形态和Splats形状从不均匀和不规则的形状变为相对平坦的“圆盘Splats”。在这种情况下,由于相对高的TiCN含量,有利的压痕韧性和紧凑的微观结构,最大硬度约为214.8 + -1.9GPa,弹性模量约214.5 +/-18.3GPa和粘接强度约24.2 +/- 2.1MPa 。由于喷射距离进一步增加到150毫米,出现不规则的“手指Splats”,并且在这种情况下,涂层的机械性能变得恶化。因此,发现了喷射距离对喷涂的TiCN涂层微观结构和力学性能的显着影响。

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