首页> 外文期刊>Journal of Thermal Spray Technology >Powder Treatment for Increased Thickness of Iron Coatings Produced by the Powder Aerosol Deposition Method and Formation of Iron-Alumina Multilayer Structures
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Powder Treatment for Increased Thickness of Iron Coatings Produced by the Powder Aerosol Deposition Method and Formation of Iron-Alumina Multilayer Structures

机译:通过粉末气溶胶沉积法生产的铁涂层厚度增加的粉末处理和铁 - 氧化铝多层结构的形成

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摘要

The powder aerosol deposition (PAD) method is a well-known process to fabricate dense layers at room temperature directly from the powder. It is particularly suitable for the deposition of ceramic materials. Compared to these, the use of metal powders (here iron), which are significantly more ductile and have a higher density than typical ceramic powders, has not yet been investigated in detail for PAD. In the first step of this work, the iron powder is characterized by scanning electron microscopy and x-ray diffraction. In order to improve the deposition behavior, the influence of heat treatment on the crystallite and the particle size of the iron powder is investigated. It is shown that the crystallite size of iron powders is reduced down to a nanocrystalline size during deposition. The magnetic properties of the iron powder as well as the layers are investigated by means of coercive field development. Although the initial coercivity raises after deposition, potential applications for flux guiding in microelectronic sensors and devices are feasible. In the second step, thin metal layers (iron) and ceramics (aluminum oxide) are deposited alternatingly to produce iron-alumina multilayer structures.
机译:粉末气溶胶沉积(PAD)法是一种在室温下直接从粉末制备致密层的众所周知的工艺。它特别适用于陶瓷材料的沉积。与这些相比,金属粉末(此处为铁)的使用比典型陶瓷粉末具有更大的韧性和更高的密度,但尚未对PAD进行详细研究。在这项工作的第一步中,通过扫描电子显微镜和x射线衍射对铁粉进行了表征。为了改善沉积行为,研究了热处理对铁粉微晶和粒度的影响。结果表明,在沉积过程中,铁粉的晶粒尺寸减小到纳米尺寸。用矫顽场展开法研究了铁粉及其层的磁性能。虽然沉积后初始矫顽力提高,但在微电子传感器和器件中进行磁通引导的潜在应用是可行的。在第二步中,交替沉积薄金属层(铁)和陶瓷层(氧化铝),以生成铁-氧化铝多层结构。

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