首页> 外文期刊>Journal of Microscopy >Microstructural analysis of a FeAl/quasicrystal-based composite prepared using a focused ion beam miller.
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Microstructural analysis of a FeAl/quasicrystal-based composite prepared using a focused ion beam miller.

机译:使用聚焦离子束磨机制备的FeAl /准晶体基复合材料的微观结构分析。

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摘要

A composite consisting of a brittle multiphase matrix containing both an Al-based quasicrystalline phase (psi) and an ordered body centred cubic phase (beta) and a relatively ductile ordered body centred cubic intermetallic FeAl phase has been developed as an abrasive wear-resistant coating material. It is applied as a 500 microm thick layer onto stainless steel substrates through plasma spray processing. The microstructure of such materials can be readily examined by optical and scanning electron microscopy, but the inherent difficulty of preparing transmission electron microscope (TEM) samples has inhibited higher resolution studies. However, the relatively recent development of the focused ion beam (FIB) miller as a tool in materials science provides a method ideal for the preparation of TEM specimens of these materials. In this study a coating consisting of a mixture of an Al-Cu-Fe based quasicrystal and FeAl+Cr was deposited on to a 304 stainless steel substrate. TEM specimens were prepared using a FIB and subjected to detailed microstructural characterization. The structure consisted of elongated bands of a FeAl phase about 100 nm in width and several micrometres in length, which enclosed more equiaxed regions about 1 microm in diameter that consisted of fine mixtures of quasicrystal and two Al-Fe-Cu phases isostructurally related to FeAl.
机译:已开发出一种由脆性多相基质组成的复合材料,该复合材料既包含Al基准晶相(psi),又包含有序体心立方相(beta)和相对易延展的有序体心立方金属间FeAl相,作为耐磨磨料涂层材料。通过等离子喷涂工艺将其作为500微米厚的层施加到不锈钢基材上。此类材料的微观结构可通过光学和扫描电子显微镜轻松检查,但制备透射电子显微镜(TEM)样品的固有困难已阻碍了更高分辨率的研究。但是,聚焦离子束(FIB)铣床作为材料科学工具的相对较新的发展为制备这些材料的TEM样品提供了理想的方法。在这项研究中,将由Al-Cu-Fe基准晶体和FeAl + Cr的混合物组成的涂层沉积到304不锈钢基底上。使用FIB制备TEM标本,并对其进行详细的微结构表征。该结构由宽度为100 nm,长度为几微米的FeAl相的细长带组成,其中包含了更多的等轴直径约1 microm的等轴区域,该区域由与AlAl同构的准晶体和两个Al-Fe-Cu相的精细混合物组成。 。

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