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Microstructure and Mechanical Properties of Nickel‑Aluminum Bronze Coating on 17‑4PH Stainless Steel by Laser Cladding 被引量:1
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作者 Lu Zhao Baorui Du +3 位作者 Jun Yao Haitao Chen ruochen ding Kailun Li 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2022年第6期403-414,共12页
Bimetallic copper-steel composite could be an effective structural material to improve the performance of traditional nickel-aluminum bronze(NAB)ship propeller due to its high structural strength and corrosion resista... Bimetallic copper-steel composite could be an effective structural material to improve the performance of traditional nickel-aluminum bronze(NAB)ship propeller due to its high structural strength and corrosion resistance.In this work,the defect-free NAB coatings has been successfully fabricated by laser direct depositing technique on the 17-4PH stainless steel substrate.The phase constitution,microstructure characteristics and hardness properties were investigated in details.The XRD results showed that the coatings mainly consisted ofα-Cu,Fe and intermetallicκphases despite the diffraction peaks shifted more than 0.5°,which may due to the influence of the Ni,Fe and Al atoms dissolved into Cu-matrix.The microstructures of the coatings were affected significantly by laser energy density according to SEM and EDS results.The top region of the coating was more undercooled during solidification,therefore the grains at this region was much finer than that at the bottom region.The higher energy input would lead to coarser grains.Fe-rich dendrites and spherical particles were found in the Cu matrix,which could be a result of liquid separation.The hardness of the coating is in the range of 204 HV0.2–266 HV0.2 which is higher than traditional as-cast NAB.The uneven distribution of Fe-rich phases as well as the hardκphases could be the main reasons for the fluctuations of the hardness value.Tensile fracture occurred at bronze side,not at transition zone,which shows there is a good interfacial bonding between the two metals produced by laser cladding. 展开更多
关键词 Laser direct depositing Nickel-aluminum bronze Microstructure HARDNESS TENSILE Liquid separation
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O-烷基壳聚糖的制备及其止血性能
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作者 丁若辰 周雯雯 +1 位作者 陈任 杨健 《高分子材料科学与工程》 北大核心 2025年第7期53-61,共9页
壳聚糖作为止血材料已获临床广泛应用,为进一步探究结构改性对止血性能的影响,文中设计制备出C6羟基接枝不同链长烷烃的O-烷基壳聚糖(OACS)。核磁共振氢谱和红外光谱分析证实烷烃链接枝成功;元素分析显示短链烷烃较长链更容易接枝在C6... 壳聚糖作为止血材料已获临床广泛应用,为进一步探究结构改性对止血性能的影响,文中设计制备出C6羟基接枝不同链长烷烃的O-烷基壳聚糖(OACS)。核磁共振氢谱和红外光谱分析证实烷烃链接枝成功;元素分析显示短链烷烃较长链更容易接枝在C6羟基上;X射线衍射和热重分析显示烷烃链破坏了壳聚糖晶区,热分解温度与接枝烷烃链长度无直接关联。相对分子质量测定结果显示相对分子质量和分子量分布与烷烃链长呈正相关;L02人正常肝细胞毒性实验结果显示,1 mg/mL不同烷烃链长度OACS的细胞增值率在83%~90%区间内;体外凝血实验表明,OACS较空白对照组凝血时间缩短63.4%~64.2%,具有促进纤维蛋白原转化成纤维蛋白、增加纤维蛋白原的凝固性以促进血液凝固的潜力,但烷烃链长度间差异不明显。 展开更多
关键词 壳聚糖 O-烷基壳聚糖 羟基 烷基化改性 凝血
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