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

Приготовление и оптимизация эксплуатационных характеристик покрытия из исходного алюминиевого шлака методом плазменного напыления
Tao Gu, Hongjun Ni, Jiaqiao Zhang, Shuaishuai Lv, Xingxing Wang, Yu Zhu, Jiaqiao Zhang
2019-11-19

original aluminum ash (OAA)original aluminum ash coating (OAAC)original aluminum ash spray powder (OAASP)plasma spray powderplasma spraying parameters (600 A, 60 V, 33 slpm, 22 g/min)
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%.
1
A plasma spray powder was successfully prepared from original aluminum ash (OAA) via hydrolysis, ball milling, and granulation, yielding OAASP with angle of repose < 40° suitable for plasma spraying.
2
Adding 50% Al2O3 to the feed increased the coating hardness by 17.61%.
3
Optimized plasma spray parameters (600 A current, 60 V voltage, 33 slpm main gas flow, 22 g/min powder flow) produced an original aluminum ash coating (OAAC) with excellent comprehensive performance.
4
Under optimized parameters, the OAAC microhardness reached 606.54 HV (about twice the substrate hardness), abrasion rate 12.86 × 10−3 g/min, porosity 0.16%, and adhesive strength 16 MPa.

Original aluminum ash coating prepared by plasma spraying (OAAC)

Preparation process and performance optimization of the OAAC including powder preparation (hydrolysis, ball milling, granulation), flowability (angle of repose), effects of plasma spray parameters (current, voltage, gas flow, powder feed) and added Al2O3 on microstructure, microhardness, porosity, abrasion rate and adhesive strength

Publication Details
Publication Date
2019-11-19
Journal
Publisher
ISSN
Access Type
Author Information
Authors
Tao Gu
Hongjun Ni
Jiaqiao Zhang
Shuaishuai Lv
Xingxing Wang
Yu Zhu
Jiaqiao Zhang
Explore further
Open the scid.ai AI chat with a ready-made request: it will find papers on a similar topic and help build a literature review.
Find similar papers in the chat
Make a presentation
100%