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Self-lubricating, low-friction, wear-resistant Al-based quasicrystalline coatings

机译:自润滑,低摩擦,耐磨的铝基准结晶涂层

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After gas atomization, a quasicrystalline powder based on aluminium was used to prepare a thick coating by high-velocity oxygen-fuel flame torch spraying. This layer was deposited on top of a bond-coat layer on a steel plate. A post-spraying annealing treatment turned the two layers to their stable state, a γ-brass crystal and an icosahedral quasicrystal, respectively. The projection parameters were selected in such a way that the coating behaved like a self-lubricating material, which offered very good wear resistance (duration of pin-on-disk tests superior to 5?km with negligible material loss) and low friction (μ ≤ 6% against sintered tungsten carbide), in contrast to the state of the art. This property was achieved thanks to, on the one hand, excellent bonding to the substrate via the bound coat, and on the other hand, presence at the boundaries between quasicrystalline flakes of a mixture of both threefold and fourfold coordinated carbon originating from spray processing. Application to hard materials used in mechanical devices is appealing, especially because soft, lubricating additives may not be needed, thus considerably increasing the lifetime of the devices and reducing waste of materials.
机译:气体雾化后,使用基于铝的准结晶粉末通过高速氧气-燃料火焰喷枪喷涂制备厚涂层。该层沉积在钢板上的粘结涂层的顶部。喷涂后退火处理将这两层分别变为γ黄铜晶体和二十面体准晶体,使其达到稳定状态。投影参数的选择应使涂层表现得像自润滑材料,从而具有非常好的耐磨性(针盘测试的持续时间超过5?km,材料损失可忽略不计)和低摩擦(μ与现有技术相比,烧结碳化钨≤6%。一方面,由于通过粘结涂层与基材的优异粘合,另一方面,由于喷雾处理而产生的三倍和四倍配位碳的混合物存在于准晶薄片之间的边界处,从而实现了此性能。应用于机械设备中使用的硬质材料很有吸引力,尤其是因为可能不需要柔软的润滑添加剂,因此大大延长了设备的使用寿命并减少了材料浪费。

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