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Iron boron based powders sprayed by high velocity spray processes

机译:高速喷涂工艺喷涂的铁硼基粉末

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In this work, a comparative evaluation has been carried out on the deposition efficiency of iron boride powder with a composition of Fe-17.9B-0.4C-1.6Si-0.3Al (wt.%) mixed with Ni powder (20 wt.%Ni) sprayed onto low carbon steel substrate by cold gas dynamic spray processes and the High Velocity Oxy-Fuel (HVOF) spraying method. The particle deformation and bonding mechanism were evaluated. Direct spraying of iron boride powders by lowand high pressure cold gas spraying led to depositing a very thin single layer on the substrate, due to the intrinsic brittleness of the powder. Prior to spraying, reducing the particle size (?20 μm) and increasing the internal energy of the powders by the ballmilling process resulted in no appreciable improvement in deposition efficiency, implying that sprayed particles still had insufficient ductility to plastically deform and flow. Likewise, iron boride powders were spray dried and sintered with Ni particles (FeB-20 wt.% Ni) to deposit layers in both low pressure and high pressure cold gas spray processes with various spray parameters. It was discovered that iron boride particles, surrounded by ductile Ni, experienced disintegration and cracking during deposition. The build up of iron boride layerswas successfully obtained when spraying FeB20Ni powder by the HVOF deposition method. An abrasionwear test result of the HVOF coatings, 952 HV,was comparedwith HVOF sprayedWC-12Co coatings.
机译:在这项工作中,对Fe-17.9B-0.4C-1.6Si-0.3Al(重量%)与Ni粉(20重量%)混合组成的硼化铁粉的沉积效率进行了比较评估。 Ni)通过冷气动态喷涂工艺和高速氧燃料(HVOF)喷涂方法喷涂到低碳钢基材上。评价了颗粒变形和结合机理。由于粉末的固有脆性,通过低压和高压冷气喷涂直接喷涂硼化铁粉末会导致在基材上沉积非常薄的单层。在喷涂之前,通过球磨工艺减小粒径(约20μm)并增加粉末的内部能量不会显着提高沉积效率,这意味着喷涂后的颗粒仍具有不足的延展性以塑性变形和流动。同样,将硼化铁粉末喷雾干燥并与Ni颗粒(FeB-20 wt%Ni)一起烧结,以低压和高压冷气喷涂工艺在各种喷涂参数下沉积层。据发现,被延展性镍包围的硼化铁颗粒在沉积过程中会发生崩解和开裂。通过HVOF沉积法喷涂FeB20Ni粉末时,成功获得了硼化铁层的堆积。将HVOF涂层952 HV的耐磨性测试结果与HVOF喷涂的WC-12Co涂层进行了比较。

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