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Oxidation behavior of the TiAlN hard coating in the process of recycling coated hardmetal scrap

机译:TiAlN硬质涂层在涂层硬质金属废料回收过程中的氧化行为

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Recycling coated hardmetal scraps is becoming increasingly important for tungsten resource recovery. However, the coatings in these materials are one of the biggest problems, especially Al-containing coatings. In this study, discarded TiAlN-coated WC–Co hardmetal tool tips were isothermally oxidized at 900 °C in air, during which the final oxide, phase transition and microstructure evolution were investigated. Milled powders below 0.15 mm were completely oxidized in 180 min, and pieces of coatings were found in the final oxides. White WO _(3) was mainly distributed on defect-rich areas of oxide scale surfaces. Furthermore, the final oxide scale was triple-layered, mainly consisting of the WO _(3) -concentrated outmost layer, the Al _(2) O _(3) -concentrated middle layer, and the TiO _(2) -concentrated inner layer. It is different from the bi-layered Al _(2) O _(3) /TiO _(2) oxide scale that appeared for a new TiAlN-coated hardmetal during an oxidation resistance test. This was attributed to the defects in hardmetal scraps, which provided a fast pathway for element diffusion and volatilization of WO _(3) . Consequently, it was impossible to remove Al _(2) O _(3) completely.
机译:回收涂覆的硬质金属废料对于钨资源的回收变得越来越重要。然而,这些材料中的涂层是最大的问题之一,尤其是含铝涂层。在这项研究中,废弃的TiAlN涂层的WC–Co硬质合金刀头在900°C的空气中被等温氧化,在此过程中,对最终的氧化物,相变和微观结构演变进行了研究。 0.15毫米以下的研磨粉末在180分钟内被完全氧化,最终的氧化物中发现了涂层的碎片。白色WO_(3)主要分布在氧化皮表面的富缺陷区域。此外,最终的氧化皮是三层的,主要由WO _(3)浓缩的最外层,Al _(2)O _(3)浓缩的中间层和TiO _(2)浓缩的中间层组成内层。它不同于在抗氧化性测试期间针对新型TiAlN涂层硬质合金出现的双层Al _(2)O _(3)/ TiO _(2)氧化皮。这归因于硬质金属废料中的缺陷,这为WO _(3)的元素扩散和挥发提供了快速途径。因此,不可能完全去除Al _(2)O _(3)。

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