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Microscopy Study of Amorphous/Nanocrystalline Coatings Thermally Sprayed

机译:无定形/纳米晶体涂层的显微镜研究热喷涂

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A commercial NiCrBSi and FeCrPC amorphous–nanocrystalline coatings were fabricated on a carbon steel substrate by plasma thermal spraying in a controlled atmosphere vessel. A cold helium gas stream can be blown directly onto freshly deposited layers to form amorphous coating or suppressed to allow formation of crystalline coating. Microstructural studies are investigated by means of X-ray diffraction (XRD), optical microscopy, scanning (SEM) and transmission (TEM) electron microscopy. Hand fracture surfaces in the fully amorphous coatings specimens exhibited a vein like morphology typical of many metallic glasses. When coatings are aged at 300 °C for 15 min, the vein like morphology is still present. If the coating is heated to 500 °C for 15 min, the vein pattern, characteristic of amorphous materials, disappears completely and nanocrystalline structure appeared. TEM was made to give more detailed information on the nanocrystallized structure. Fine nanocrystalline particles were grown on the amorphous matrix in the aged coatings having grain size ranged between 50 and 100 nm. From XRD, full amorphous coatings seem to be obtained but meticulous TEM examination has revealed the presence of crystallites of approximately 100 nm within size in the amorphous matrix. The thermal plasma technology is well adapted to the manufacture amorphous coatings on a substrate of any shape. However, the numerous operating parameters that govern the deposition of a coating render difficult the preparation of fully amorphous coatings. X-rays diffraction is not sufficient to assert that the crystallization is totally suppressed. Careful observation by the TEM microscope is necessary.
机译:通过控制气氛容器中的等离子体热喷涂在碳钢基板上制造商业NiCrBSI和FECRPC非晶纳米晶涂层。冷氦气流可以直接吹入新沉积的层上以形成无定形涂层或抑制以允许形成结晶涂层。通过X射线衍射(XRD),光学显微镜,扫描(SEM)和透射(TEM)电子显微镜来研究微观结构研究。完全无定形涂料标本中的手部断裂表面表现出许多金属玻璃的典型形态等静脉。当涂层在300℃下15分钟时,仍存在像形态的静脉。如果将涂层加热至500℃,则为15分钟,静脉图案,无定形材料的特性完全消失,纳米晶体结构出现。 TEM是关于纳米晶体结构的更详细信息。在具有50-100nm之间的晶粒尺寸的老化涂层中的非晶基质中生长细纳米晶体颗粒。来自XRD,完全无定形涂层似乎是可获得的,但细致的TEM检查揭示了在非晶基质中大约100nm的微晶的存在。热等离子体技术很好地适应于在任何形状的基板上的制造非晶涂层。然而,控制涂层沉积的许多操作参数使得难以制备完全无定形涂层。 X射线衍射不足以断言结晶完全抑制。需要仔细观察TEM显微镜。

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