首页> 外文期刊>Journal of Thermal Spray Technology >Deposition Mechanisms and Oxidation Behaviors of Ti-Ni Coatings Deposited in Low-Temperature HVOF Spraying Process
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Deposition Mechanisms and Oxidation Behaviors of Ti-Ni Coatings Deposited in Low-Temperature HVOF Spraying Process

机译:低温HVOF喷涂Ti-Ni涂层的沉积机理和氧化行为

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摘要

Three kinds of Ti-Ni powders were deposited on 316L stainless steel by low-temperature high-velocity oxygen fuel (LT-HVOF) spraying process, respectively. Deposition mechanisms and oxidation behaviors of the coatings were researched in this paper. The coating deposited from TiNi intermetallic powder had obvious laminar structure and the oxygen content was the highest among the three kinds of coatings. The oxygen content of the coating deposited from small-sized Ni-clad Ti powder was still high due to the melting of parts of particles. However, most of the coarse Ni-clad Ti powder was deposited in solid states without changes of chemical compositions and phase compositions. The oxygen content of the coating deposited from coarse Ni-clad Ti powder was the lowest among the three kinds of coatings. It indicated that the deposition behavior of the coating could effectively preserve the inner titanium from oxidation. The results of the present research demonstrated that it is entirely feasible to deposit active metal materials such as titanium and titanium alloy through the optimizing selection of powder in the LT-HVOF process.
机译:通过低温高速氧燃料(LT-HVOF)喷涂工艺将三种Ti-Ni粉末分别沉积在316L不锈钢上。研究了涂层的沉积机理和氧化行为。 TiNi金属间粉末沉积的涂层具有明显的层状结构,在三种涂层中氧含量最高。由于颗粒部分的熔化,从小尺寸的覆镍Ti粉末沉积的涂层中的氧含量仍然很高。然而,大多数粗Ni包层的Ti粉末以固态沉积而不改变化学组成和相组成。在这三种涂层中,由镀镍粗钛粉沉积的涂层中的氧含量最低。这表明涂层的沉积行为可以有效地保护内部钛免受氧化。本研究结果表明,通过优化LT-HVOF工艺中粉末的选择,沉积活性金属材料(例如钛和钛合金)是完全可行的。

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