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Preparation and Performance Optimization of Original Aluminum Ash Coating Based on Plasma Spraying

机译:等离子喷涂原始铝灰涂料的制备及性能优化

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As an industrial solid waste, the original aluminum ash (OAA) will cause serious pollution to the air and soil. How to reuse the OAA has been a research difficulty. Thus, a method of preparing a plasma spray powder using OAA is proposed. The OAA was hydrolyzed and ball milled, and the flowability of original aluminum ash spray powder (OAASP) was evaluated by the angle of repose. The coating properties were determined via analyzing the microstructure and the phase of the coating, and the effects of plasma spray parameters on the coating properties were investigated by the orthogonal experiment to optimize spray parameters. The results show that the angle of repose of OAASP after granulation was less than 40°, which met the requirements of plasma spraying. When the spraying current was 600 A, the spraying voltage was 60 V, the main gas flow was 33 slpm, and the powder flow rate was 22 g/min, and the prepared original aluminum ash coating (OAAC) had excellent comprehensive performance. After the spraying process parameters were optimized, the microhardness of the coating was 606.54 HV, which is about twice the hardness of the substrate; the abrasion rate was 12.86 × 10?3 g/min; the porosity was 0.16%; and the adhesive strength was 16 MPa. When the amount of Al2O3 added was 50%, the hardness of the coating was increased by 17.61%.
机译:作为工业固体废物,原始的铝灰(OAA)将对空气和土壤造成严重污染。如何重用OAA一直是研究的难点。因此,提出了使用OAA制备等离子体喷雾粉的方法。水解和球磨OAA,并通过休止角评估原始铝灰喷雾粉末(OAASP)的流动性。通过分析涂层的微观结构和相来确定涂层性能,并通过正交试验研究等离子体喷涂参数对涂层性能的影响,以优化喷涂参数。结果表明,造粒后OAASP的休止角小于40°,满足等离子喷涂的要求。当喷涂电流为600 A,喷涂电压为60 V,主气流为33 slpm,粉末流速为22 g / min时,制得的原始铝灰涂料(OAAC)具有优异的综合性能。优化喷涂工艺参数后,涂层的显微硬度为606.54 HV,约为底材硬度的两倍。磨耗率为12.86×10 -3 g / min。孔隙率为0.16%;粘合强度为16MPa。当Al 2 O 3的添加量为50%时,涂层的硬度增加了17.61%。

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