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首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Study on the Mechanical Properties of Heat-Treated Electroless NiP Coatings Reinforced with Al2O3 Nano Particles
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Study on the Mechanical Properties of Heat-Treated Electroless NiP Coatings Reinforced with Al2O3 Nano Particles

机译:Al2O3纳米粒子增强的热处理化学镀NiP涂层的力学性能研究

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This work reports the effects of electroless co-deposition of Al2O3 nanoparticles and NiP to obtain a NiP-Al2O3 coating on the structure and mechanical properties of the composite coatings. The effects of annealing heat treatments at 373 K, 473 K, 573 K, and 673 K (100 degrees C, 200 degrees C, 300 degrees C, and 400 degrees C) on the structure and properties of the coatings were evaluated. The as-deposited coatings are a mixture of crystalline and amorphous phases that tend to crystallize during heat treatment. Heat treatment at higher temperatures causes the precipitation of the Ni3P phase. The mechanical properties of as-deposited and heat-treated NiP-Al2O3 coatings were evaluated using depth-sensing indentation tests performed at loads of 200 mN. The incorporation of Al2O3 nanoparticles induces strengthening of the NiP coating by dispersion. Heat treatment of the NiP-Al2O3 coatings induced crystallization of the amorphous phase with the formation of nanosized grains and the precipitation of Ni3P. Consequently, there is an increase in the hardness and Young's modulus of the coatings to 15.4 +/- 0.5 and 227 +/- 2.8 GPa, respectively, in a combined hardening effect induced by dispersion of the Al2O3 nanoparticles and crystallization and precipitation during heat treatment. (C) The Minerals, Metals & Materials Society and ASM International 2016
机译:这项工作报告了Al2O3纳米粒子和NiP化学共沉积以获得NiP-Al2O3涂层对复合涂层的结构和力学性能的影响。评估了在373 K,473 K,573 K和673 K(100摄氏度,200摄氏度,300摄氏度和400摄氏度)下进行的退火热处理对涂层结构和性能的影响。沉积的涂层是结晶相和非晶相的混合物,在热处理过程中往往会结晶。在较高温度下进行热处理会导致Ni3P相沉淀。使用在200 mN的载荷下进行的深度感应压痕测试,评估了沉积和热处理后的NiP-Al2O3涂层的机械性能。 Al 2 O 3纳米颗粒的引入通过分散引起NiP涂层的增强。 NiP-Al2O3涂层的热处理诱导了非晶相的结晶,并形成了纳米晶粒和Ni3P沉淀。因此,在Al2O3纳米粒子的分散以及热处理过程中的结晶和沉淀引起的组合硬化效应中,涂层的硬度和杨氏模量分别增加到15.4 +/- 0.5和227 +/- 2.8 GPa。 。 (C)矿产,金属与材料学会和ASM International 2016

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