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用于镍基高温合金精密铸造的陶瓷纳米颗粒聚合物粘结剂

Polymer Binders of Ceramic Nanoparticles for Precision Casting of Nickel-Based Superalloys.

作者信息

Wiśniewski Paweł

机构信息

Faculty of Materials Science and Engineering, Warsaw University of Technology, Wołoska 141, 02-507 Warsaw, Poland.

出版信息

Nanomaterials (Basel). 2021 Jun 29;11(7):1714. doi: 10.3390/nano11071714.

Abstract

This study presents the general characteristics of binders used in precision casting of Nickel-based superalloys. Three groups of binders were described: resins, organic compounds, and materials containing nanoparticles in alcohol or aqueous systems. This study also includes literature reports on materials commonly used and those recently replaced by water-soluble binders, i.e., ethyl silicate (ES) and hydrolysed ethyl silicate (HES). The appearance of new and interesting solutions containing nano-alumina is described, as well as other solutions at the initial stage of scientific research, such as those containing biopolymers, biodegradable polycaprolactone (PCL), or modified starch. Special attention is paid to four binders containing nano-SiO intended for the first layers (Ludox AM, Ludox SK) and structural layers (EHT, Remasol) of shell moulds. Their morphology, viscosity, density, reactions, and electrokinetic potential were investigated. The binders were characterized by a high solid-phase content (>28%), viscosity, and density close to that of water (1-2 mPa·s) and good electrokinetic stability. The nanoparticles contained in the binders were approximately spherically shaped with an average particle size of 16-25 nm.

摘要

本研究介绍了用于镍基高温合金精密铸造的粘结剂的一般特性。描述了三类粘结剂:树脂、有机化合物以及在醇类或水体系中含纳米颗粒的材料。本研究还包括关于常用材料以及最近被水溶性粘结剂取代的材料的文献报道,即硅酸乙酯(ES)和水解硅酸乙酯(HES)。描述了含纳米氧化铝的新型有趣溶液的出现情况,以及处于科研初期的其他溶液,如含生物聚合物、可生物降解聚己内酯(PCL)或改性淀粉的溶液。特别关注了用于壳型模具第一层(硅溶胶AM、硅溶胶SK)和结构层(EHT、雷马索尔)的四种含纳米SiO的粘结剂。研究了它们的形态、粘度、密度、反应和动电位。这些粘结剂的特点是具有高固相含量(>28%)、粘度和密度接近水(1 - 2 mPa·s)以及良好的动电稳定性。粘结剂中所含的纳米颗粒近似球形,平均粒径为16 - 25 nm。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1517/8308181/c80f6754a882/nanomaterials-11-01714-g001.jpg

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