铬羰基配合物的制备方法及其制备装置

Mehran Mammadli Mehran Mammadli
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摘要

现代技术的发展和在高温条件下使用的材料和结构的长期加工提出了很大的要求。获得满足这些要求的硬熔金属是非常重要的。在自然界中,难熔金属的稀缺和它们的高成本迫使我们寻找其他更有效的方法。一种这样的解决方案是在金属或结构上以薄层或涂层的形式应用硬熔金属。为此,近年来难熔金属的羰基化合物在技术上得到了广泛的应用。羰基化合物具有重要的性质,其中之一是它们可以作为原料,通过热分解获得涂层和层。然而,基于有机配体的铬羰基配合物制备铬涂层存在一些困难。为了克服这一困难,确定了两种易挥发、低分解温度的铬基配合物的合成方法,并确定了其分解极限温度范围、物理化学结构参数。研究发现,合成的两种铬羰基配合物在金属载体上形成了高附着力的铬涂层,提高了其耐腐蚀性。铬羰基配合物可以作为技术上有利的原料,在非常低的温度范围内(100-150℃)分解基团时获得所需的铬涂层,而不会产生额外的压力。这两种合成的复合化合物都是获得09Г2С钢焊缝耐腐蚀涂层的原料。还确定了这些配合物在磨料冶金中作为活性填料的用途。关键词:铬,溶剂,甲苯,亚甲基,红外光谱,羰基铬,配合物,熔化,分解,涂层,加热,溶液。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
METHODOLOGY OF OBTAINING CHROMIUM CARBONYL COMPLEXES AND DEVICES USED IN OBTAINING THEM
The development of modern technology and the long-term processing of materials and constructions used in high temperature conditions make great demands. It is very important to obtain hard-melting metals that meet these requirements. In nature, the scarcity of hard-to-melt metals and their high cost force us to find other more efficient ways. One such solution is the application of hard- -melt metals in the form of thin layers or coatings on metals or structures. For to this purpose, carbonyl compounds of hard-to-melt metals are widely used in technology recently. Carbonyl compounds have important properties, one of which is that they act as raw materials for obtaining coatings and layers through thermal decomposition. However, some difficulties arise in obtaining chromium coatings based on chromium carbonyl complexes with organic ligands. In order to overcome such difficulties, the synthesis methodology of two chromium-based complex compounds with easy volatility and low decomposition temperature, which are used in the production of corrosion-resistant coatings, and the temperature range in their decomposition limits, physical chemical structure parameters have been determined. The research found that both chromium carbonyl complexes obtained by synthesis form chromium coatings with high adhesion on the metal carrier and increase their corrosion resistance. Chromium carbonyl complexes can serve as technologically favorable raw materials for obtaining the necessary chromium coating during the decomposition of groups at a very low temperature range (100-150 C) without creating additional pressure. Both synthesized complex compounds are raw materials for obtaining corrosion-resistant coatings on weld seams of 09Г2С steel. The use of these complexes as active fillers in abrasive metallurgy has also been determined. Keywords: Chromium, solvent, toluene, mesethylene, infrared spectrum, chromium carbonyl, complex, melting, decomposition, coating, heating, solution.
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