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作 者:傅迎庆[1] 任仲兴[1] 梁志强[1] 周锋[1] 高阳[1]
机构地区:[1]大连海事大学机电与材料工程学院,辽宁大连116026
出 处:《大连海事大学学报》2008年第1期112-115,共4页Journal of Dalian Maritime University
基 金:国家自然科学基金资助项目(50575028);大连海事大学青年教师科研基金资助项目(DLMU-ZL-200721)
摘 要:为研究基体热导率对超音速火焰(HVOF)喷涂Al-Cu-Cr准晶涂层相组成的影响规律,采用相同的热喷涂参数,分别在304不锈钢、45#钢、工业纯铝和紫铜基体表面制备涂层.X射线衍射分析结果表明:喷涂准晶粉末Al65Cu20Cr15中含有二十面体准晶相I-Al65Cu24Cr11和极少量具有单斜结构的晶体相-θAl13Cr2(即Al83Cu4Cr13);而超音速火焰喷涂形成涂层中除这两相外,还生成了一种新相,即具有体心立方结构的晶体相-αAl69Cu18Cr13,为I相的晶体类似相.晶体相θ和α与准晶相I之间对应衍射峰的强度比值θ/I和α/I随基体热导率的提高而增大.304不锈钢为基体的涂层中,准晶相I含量比紫铜为基体的涂层中的高,而晶体相θ和α的含量比后者低.Al-Cu-Cr quasicrystalline coatings were prepared on AISI304, 45 steel, Al and Cu substrates respectively using identical high velocity oxy-fuel (HVOF) spray parameters to investigate the influence of substrate thermal conductivity on the phase composition of the coatings. X-ray diffraction (XRD) results show that the feedstock powders consist of a dominant icosahedral quasicrystalline phase Ⅰ -Al65 CU24 Cr11 and a minor monoclinic crystalline phase 0 - Al13 Cr22 ( i. e. Al83 Cu4Cr13 ). However, besides these two phases, an approximant to Ⅰ - Al65 CU24 Cr11, a - Al69 Cu18 Cr13 (body-centered cubic) was detected in all coatings. The phase assemblage of the as-sprayed coatings was affected significantly by substrate thermal conductivity. The XRD α/Ⅰ and θ/Ⅰ peak intensity ratios increase with the substrate thermal conductivity rising. The amount of Ⅰ in the coating deposited on AISI304 substrate is larger than that on Cu, but the amount of α and θ is less than the latter.
关 键 词:热导率 超音速火焰喷涂 准晶涂层 相组成 影响规律
分 类 号:TG174.4[金属学及工艺—金属表面处理]
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