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首页> 外文期刊>Journal of Thermal Spray Technology >Effects of Particle Strength of Feedstock Powders on Properties of Warm-Sprayed WC-Co Coatings
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Effects of Particle Strength of Feedstock Powders on Properties of Warm-Sprayed WC-Co Coatings

机译:原料粉末的颗粒强度对热喷涂WC-Co涂层性能的影响

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摘要

Warm spray (WS) process, which can control the temperature of a combustion gas jet used to propel powder, has been successfully applied to deposit WC-Co coatings. Detrimental reactions resulting from dissolution of WC into Co binder and decarburization were suppressed effectively by keeping the WC-Co particles' temperature below the m.p. of the binder phase. In this study, three nano-structured WC-12Co powders with different particle strengths were prepared by changing the sintering conditions of spray-dried powder and were deposited by WS. The deposition efficiency and porosity of the coatings decreased with increasing the particle strength. The coating deposited from the powder with very low particle strength showed significant phase changes, while those deposited from the higher particle strengths showed almost no change. Particle Image Velocimetry revealed significant disintegration of the weakest powder, which explains the changes observed. The hardness and wear properties of the former coating, therefore, were inferior to the other two.
机译:可以控制用于推动粉末的燃烧气体喷射温度的热喷涂(WS)工艺已成功应用于沉积WC-Co涂层。通过将WC-Co颗粒的温度保持在m.p.以下,可以有效地抑制由于WC溶于Co粘合剂和脱碳而产生的有害反应。粘结相本研究通过改变喷雾干燥粉末的烧结条件,制备了三种具有不同颗粒强度的纳米结构WC-12Co粉末,并通过WS沉积。涂层的沉积效率和孔隙率随颗粒强度的增加而降低。由具有非常低的颗粒强度的粉末沉积的涂层显示出明显的相变,而由更高的颗粒强度沉积的涂层几乎没有变化。粒子图像测速仪显示出最弱粉末的明显崩解,这解释了观察到的变化。因此,前一种涂层的硬度和耐磨性能低于其他两种。

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