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Effect of powder reactivity on fabrication and properties of NiAl/Al2O3 composite coated on cast iron using spark plasma sintering

机译:粉末反应性对火花等离子体烧结铸铁NiAl / Al2O3复合材料制备及性能的影响

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Powder mixtures of Ni, NiO and Al are ball milled for 1 and 10 h. X-ray diffractometry and differential thermal analysis show that while ball milling for 1 h produced mechanically activated powder; 10 h ball milling produced NiAl and Al2O3 phases. Dense NiAl/Al2O3 composite coatings are formed on gray cast iron substrate by spark plasma sintering (SPS) technique. The effect of powder reactivity on microstructure, hardness and scratch hardness of NiAl/Al2O3 coatings after SPS is discussed. Results show that in the coating sample made of mechanically activated powder in situ synthesis of NiAl/Al2O3 composite coating is fulfilled and a thicker well-formed diffusion bond layer at the interface between coating and substrate is observed. The diffusion of elements across the bond layers and phase evolution in the bond layers were investigated. No pores or cracks were observed at the interface between coating layer and substrate in any of samples. Higher Vickers hardness and scratch hardness values in coating made of 10 h ball milled powder than in coating fabricated from 1 h ball milled powder are attributed to better dispersion of Al2O3 reinforcement particles in NiAl matrix and nano-crystalline structure of NiAl matrix. Scratched surface of coatings did not reveal any cracking or spallation at coating-substrate interface indicating their good adherence at test conditions. (C) 2015 Elsevier B.V. All rights reserved.
机译:将Ni,NiO和Al的粉末混合物球磨1小时和10小时。 X射线衍射仪和差热分析表明,球磨1 h产生了机械活化粉末。 10 h球磨产生NiAl和Al2O3相。通过火花等离子体烧结(SPS)技术在灰铸铁基体上形成致密的NiAl / Al2O3复合涂层。讨论了粉末反应性对SPS后NiAl / Al2O3涂层组织,硬度和划痕硬度的影响。结果表明,在由机械活化粉末制成的涂层样品中,完成了NiAl / Al2O3复合涂层的原位合成,并且在涂层和基材之间的界面处观察到了较厚的良好形成的扩散结合层。研究了元素在粘结层中的扩散以及粘结层中的相演化。在任何样品中,在涂层和基材之间的界面上均未观察到孔或裂纹。 10 h球磨粉制成的涂层比1 h球磨粉制成的涂层具有更高的维氏硬度和耐刮擦硬度值,这归因于Al2O3增强颗粒在NiAl基体中的分散性更好以及NiAl基体的纳米晶体结构。涂层的刮擦表面在涂层-基底界面上没有发现任何裂纹或剥落,表明它们在测试条件下具有良好的附着力。 (C)2015 Elsevier B.V.保留所有权利。

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