首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers. Part L, Journal of Materials: Design and Application >Fabrication and microstrain evolution of AI-TiB_2 composite coating by cold spray deposition
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Fabrication and microstrain evolution of AI-TiB_2 composite coating by cold spray deposition

机译:冷喷涂沉积制备Al-TiB_2复合涂层及其微应变演变

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This paper investigates the microstructure evolution of Al-TiB2 coatings prepared by cold spraying. In situ Al-TiB2 composite powders containing uniformly distributed titanium diboride (TiB2) particles with a size range of 5-100nm in the Al matrix and Al/Al-TiB2 blended powders were used as the cold spray feedstock for coating fabrication on aluminium alloy substrates. The microstructures of the feedstock powders and as-deposited coatings were characterised using scanning electron microscopy with energy dispersive X-ray analysis and X-ray diffraction. Al/Al-TiB2 blended powder coatings, compromising closely packed powder particles, were sprayed to an approximate thickness of 500 mu m. Al-TiB2 composite coatings (approximately 50 mu m thick) were obtained retaining the microstructure of the composite powders being sprayed and no evidence of detrimental phase transformation was found. However, micro-cracks were found to exist in the Al-TiB2 coating due to the hardly deformable powder particles. Little or no microstrain was revealed in the as-sprayed Al-TiB2 coating, indicating that annealing may have occurred due to the localised adiabatic heating during the spraying process. It is demonstrated that it is possible to fabricate the Al-TiB2 composite coating by cold spray deposition but further improvements to eliminate coating cracking are required.
机译:本文研究了冷喷涂制备的Al-TiB2涂层的组织演变。在铝基体中包含均匀分布的二硼化钛(TiB2)颗粒且尺寸范围为5-100nm的原位Al-TiB2复合粉末和Al / Al-TiB2混合粉末用作冷喷涂原料,用于在铝合金基材上进行涂层制造。使用具有能量色散X射线分析和X射线衍射的扫描电子显微镜对原料粉末和沉积涂层的微观结构进行表征。将危害紧密堆积的粉末颗粒的Al / Al-TiB2混合粉末涂料喷涂到大约500微米的厚度。获得了Al-TiB2复合涂层(约50微米厚),保留了所喷涂复合粉末的微观结构,没有发现有害相变的迹象。然而,由于难以变形的粉末颗粒,发现Al-TiB2涂层中存在微裂纹。喷涂后的Al-TiB2涂层几乎没有或几乎没有发现微应变,表明退火可能是由于喷涂过程中局部绝热加热引起的。已经证明可以通过冷喷涂沉积来制造Al-TiB 2复合涂层,但是需要进一步的改进以消除涂层开裂。

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