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Effects of process parameters on molten particle speed and surface temperature and the properties of HVOF CrC/NiCr coatings

机译:工艺参数对熔融粒子速度和表面温度以及HVOF CrC / NiCr涂层性能的影响

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摘要

Chromium Carbide/Nickel-Chrome is a good wear resistant coating at elevated temperatures up to 850℃. High velocity oxy-fuel (HVOF) is a promising process for preparation of the CrC/NiCr coatings. During thermal spray process, the speed and surface temperature of in-flight molten particles are two key factors affecting the sprayed coating quality. Coating deposited by higher kinetic energy and adequate surface temperature molten particles is expected to be dense and hard. In this study, the influences of HVOF process parameters on molten particle speed and surface temperature, and the properties of prepared CrC/NiCr coatings were subjected to a DOE investigation. According to the experimental results, the major control factors affecting particle temperature are powder feed rate, stand-off distance and gun barrel length. Stand-off distance and oxygen flow rate are major factors affecting particle speed. Based on the evaluated specimens, porosity contents of all the prepared coatings are less than one percent, and coatings deposited by molten particles heated to range of 1650℃-1725℃ showed relatively lower porosity contents. Coatings deposited by higher particle speed exhibited relatively better abrasion-wear resistance.
机译:碳化铬/镍铬合金是在高达850℃的高温下具有良好耐磨性的涂层。高速含氧燃料(HVOF)是制备CrC / NiCr涂层的有前途的工艺。在热喷涂过程中,飞行中熔融颗粒的速度和表面温度是影响喷涂涂层质量的两个关键因素。通过较高的动能和足够的表面温度熔融颗粒沉积的涂层有望致密且坚硬。在这项研究中,对HVOF工艺参数对熔融粒子速度和表面温度的影响以及制备的CrC / NiCr涂层的性能进行了DOE研究。根据实验结果,影响颗粒温度的主要控制因素是粉末进料速度,支座距离和枪管长度。间隔距离和氧气流速是影响颗粒速度的主要因素。根据评估的样品,所有制备的涂层的孔隙率均小于1%,并且由加热至1650℃-1725℃的熔融颗粒沉积的涂层的孔隙率相对较低。以较高的颗粒速度沉积的涂层表现出相对较好的耐磨性。

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