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Effect of feedstock particle size on microstructure of APS coatings prepared from mechanically alloyed nickel–titanium powders

机译:原料粒度对机械合金化镍钛粉末制备的APS涂层微观结构的影响

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Ni–Ti coatings were deposited using APS process. In this regard, mechanically activated Ni–Ti powders with amorphousanocrystalline structure were used. Two different sieved powders, one of nominal size range of (263 to +20 μm) and the other of nominal size of (2125 to +63 μm), were employed in the experiments. The phase composition and microstructure of the coatings were examined by X-ray diffraction, optical microscopy and scanning electron microscopy. The results indicated that for coating produced using finer powder, increasing plasma power has caused severe cracking of the coatings whereas using the minimum power a coating with better quality can be deposited. In contrast, for coating produced using coarser powder, by selecting the medium power a coating with better quality can be deposited. Based on results of X-ray diffraction, the phase composition of coatings consists of NiTi, Ni_4Ti_3, Ni and some oxides.
机译:使用APS工艺沉积镍钛涂层。在这方面,使用了具有非晶/纳米晶结构的机械活化的Ni-Ti粉末。实验中使用了两种不同的筛分粉末,一种标称尺寸范围为(263至+20μm),另一种标称尺寸范围为(2125至+63μm)。通过X射线衍射,光学显微镜和扫描电子显微镜检查涂层的相组成和微观结构。结果表明,对于使用更细的粉末生产的涂层,增加的等离子体功率会导致涂层严重开裂,而使用最小的功率可以沉积质量更好的涂层。相反,对于使用较粗粉末生产的涂层,通过选择中等功率,可以沉积质量更好的涂层。根据X射线衍射的结果,涂层的相组成由NiTi,Ni_4Ti_3,Ni和一些氧化物组成。

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