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Control of interparticle cohesion in PS304 plasma spray deposited solid lubricant coating powder feedstock.

机译:控制PS304等离子喷涂沉积的固体润滑剂涂料粉末原料中的颗粒间内聚力。

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摘要

The effects of eutectic barium fluoride - calcium fluoride particle morphology, particle size, size distribution and relative humidity level on PS304 powder feedstock flowability have been investigated in an effort to optimize the plasma spray deposition process. The eutectic fluorides were fabricated by comminution (angular particle morphology) and by gas atomization (spherical particle morphology). The angular fluorides were classified by screening to obtain 38–45μm, 45–106μm, 63–106μm, 45–53μm, 63–75μm and 90–106μm particle size distributions and the spherical fluorides were screened to obtain 45–106μm particles. The fluorides were added incrementally to the other powder constituents of the PS304 feedstock: nichrome, chromia, and silver powders. A linear relationship between feedstock flow rate and concentration of the fluorides was found from 0–10wt% using a Hall flowmeter. For the angular fluorides, the flow rate of the feedstock decreased linearly with increasing fluoride concentration. Flow of feedstock containing spherical fluorides was independent of fluoride concentration. Flow was degraded with decreasing fluoride particle size and with increasing particle size distribution due to interparticle friction. The angle of repose was distinct with respect to physical properties of the fluorides. The Hausner Ratio was less sensitive, though these data behaved predictably. Feedstock containing 10wt% 45–53μm and 90–106μm angular fluorides and 45–106μm angular and spherical fluorides were dried in a vacuum oven and cooled to room temperature under dry nitrogen. The flow of these powders was studied from 2–100% relative humidity (RH). The flow rate was only slightly degraded with increasing humidity below 66%RH, and a greater effect was apparent above 66%RH. No flow was observed above 88%RH for feedstock containing 45–106μm fluorides. The feedstock with narrower fluoride particle size distributions allowed flow up to 95%RH. These results offer guidance that enhances the efficiency of the plasma spray deposition process and the commercial potential for this material system and may have applicability to other powders that do not flow easily, such as cohesive ceramics.
机译:研究了共晶氟化钡-氟化钙的颗粒形态,粒径,粒径分布和相对湿度水平对PS304粉末原料流动性的影响,以优化等离子体喷涂工艺。共晶氟化物是通过粉碎(角颗粒形态)和气体雾化(球形颗粒形态)制成的。通过筛选对角氟化物进行分类,以获得38-45μm,45-106μm,63-106μm,45-53μm,63-75μm和90-106μm的粒径分布,对球形氟化物进行筛选以获得45-106μm的颗粒。将氟化物逐步添加到PS304原料的其他粉末成分中:镍铬合金,氧化铬和银粉。使用霍尔流量计在0-10wt%范围内发现原料流量与氟化物浓度之间存在线性关系。对于角氟化物,原料的流速随氟化物浓度的增加而线性降低。含球形氟化物的原料流量与氟化物浓度无关。由于颗粒间的摩擦,流动性随着氟化物粒径的减小和粒径分布的增加而降低。就氟化物的物理性质而言,休止角是不同的。尽管这些数据的表现可预测,但Hausner Ratio的敏感性较低。将含10wt%45-53μm和90-106μm角氟化物以及45-106μm角和球形氟化物的原料在真空炉中干燥,并在干燥氮气下冷却至室温。这些粉末的流动是在2–100%相对湿度(RH)下进行的。在湿度低于66%RH时,流速只会随着湿度的增加而略微降低,而在湿度高于66%RH时,效果会更大。对于含45–106μm氟化物的原料,在88%RH以上没有观察到流动。氟化物粒度分布较窄的原料允许流动高达95%RH。这些结果为提高等离子喷涂沉积工艺的效率和该材料系统的商业潜力提供了指导,并且可能适用于其他不易流动的粉末,例如粘结陶瓷。

著录项

  • 作者

    Stanford, Malcolm Keith.;

  • 作者单位

    The University of Dayton.;

  • 授予单位 The University of Dayton.;
  • 学科 Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 2002
  • 页码 99 p.
  • 总页数 99
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学;
  • 关键词

  • 入库时间 2022-08-17 11:46:08

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