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Cold spraying of thermally softened Ni-coated FeSiAl composite powder: Microstructure characterization, tribological performance and magnetic property

机译:热软化镀镍的FeSiAl复合粉末的冷喷涂:微观结构表征,摩擦学性能和磁性

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摘要

The low retainability of reinforcing particles in functional composite coatings fabricated by cold spray ( CS) is a major problem in maximizing coating properties. In this work, the Ni-coated FeSiAl composite powders were used to fabricate soft magnetic composite (SMC) coatings via CS. The feedstock particles were preheated prior to the entrance of nozzle to improve the retainability of FeSiAl particles and the coating properties. Our results showed that the dense Ni/FeSiAl coatings containing the uniformly-dispersed and crack-free FeSiAl particles were produced. The thermal softening effect of Ni layer, as a result of particle preheating, can effectively increase the volumetric content of FeSiAl particle (from 24.3% to 46.2%) in the composite coating. Particle preheating also conducted to the significant improvement of coating thickness due to enhanced deposition efficiency. Dry-sliding test showed that the tribological performance of SMC coating with particle preheating weakens, owing to lowered microhardness. Enhanced magnetic property was achieved with higher soft ferromagnetic characteristic and decreasing coercivity value at higher particle preheating temperatures. The study on coating formation mechanism highlighted that thermal softening effect can give rise to adiabatic shear instability of Ni layer. This results in the significantly improved retainability of FeSiAl particles and soft magnetic performance. (C) 2018 Elsevier Ltd. This is an open access article under the CC BY-NC-ND license.
机译:增强颗粒在通过冷喷涂(CS)制造的功能性复合涂层中的低保留性是最大程度地提高涂层性能的主要问题。在这项工作中,镀镍的FeSiAl复合粉末用于通过CS制备软磁复合材料(SMC)涂层。将原料颗粒在喷嘴进入之前进行预热,以改善FeSiAl颗粒的保留能力和涂层性能。我们的结果表明,生成了包含均匀分散且无裂纹的FeSiAl颗粒的致密Ni / FeSiAl涂层。颗粒预热的结果是,镍层的热软化作用可以有效地提高复合涂层中FeSiAl颗粒的体积含量(从24.3%至46.2%)。由于提高了沉积效率,颗粒预热还大大改善了涂层厚度。干滑动试验表明,由于降低了显微硬度,带颗粒预热的SMC涂层的摩擦学性能减弱。在较高的颗粒预热温度下,具有较高的软铁磁特性和降低的矫顽力值,可以实现增强的磁性能。对涂层形成机理的研究表明,热软化作用会引起Ni层的绝热剪切不稳定性。这导致FeSiAl颗粒的保留能力和软磁性能大大提高。 (C)2018 Elsevier Ltd.这是CC BY-NC-ND许可下的开放获取文章。

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