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The influence of titanium and iron oxides on the coloring and friability of the blue fired aluminum oxide as an abrasive material

机译:钛和氧化铁对蓝色燃煤氧化铝作为磨料材料的着色和脆性的影响

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摘要

The quality of abrasive grains is crucial to increase the lifespan of roughing, polishing and cutting tools. The purpose of the work herein was to evaluate the variables of the blue fired aluminum oxide heat treatment process. This heat treatment process improves the physical properties of the brown fused aluminum oxide and results in a blue coloring, which uniquely identifies it within the abrasives industry. The work herein includes information beginning with the electro-fusion process of bauxite (the manufacturing of the brown fused aluminum oxide) to the Blue Fired process. It also compares the fracture resistance index between these materials. This index is the inverse of the friability. Besides the content of titanium and iron oxides, process variables such as time, temperature and atmospheric conditions are important to monitor in order to reach standard requirements. Experimental evidence measuring these parameters is presented in the article herein. The blue coloring of this aluminum oxide is explained by the optical phenomena of electron transition, and not by the formation of aluminum titanate, as some technical literature has stated. Furthermore, it was proved that the coloring of blue fired material should not be used exclusively as an indicator of the optimal abrasive characteristics of this class of aluminum oxide.
机译:磨粒的质量至关重要,可以增加粗加工,抛光和切削工具的寿命。本发明的作品的目的是评估蓝色燃烧氧化铝热处理过程的变量。该热处理过程改善了棕色熔融氧化铝的物理性质,并导致蓝色着色,在磨料行业内唯一地识别它。本文的工作包括以铝土矿的电融合方法(棕色熔化氧化铝的制造)开头的信息,包括蓝色烧制过程。它还比较了这些材料之间的断裂抗性指数。该指数是易损的反比力。除了钛和氧化铁的含量之外,工艺变量如时间,温度和大气条件都很重要,以便达到标准要求。测量这些参数的实验证据在本文中介绍。由于一些技术文献所述,通过电子转型的光学现象,而不是通过形成钛酸铝的光学现象来解释这种氧化铝的蓝色。此外,证明了蓝色燃烧材料的着色不应仅用作为这类氧化铝的最佳磨料特性的指示。

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