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首页> 外文期刊>Materials Science and Technology: MST: A publication of the Institute of Metals >Effects of rare earth additions on structures and properties of rapidly solidified copper alloys
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Effects of rare earth additions on structures and properties of rapidly solidified copper alloys

机译:稀土元素对快速凝固铜合金组织和性能的影响

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Copper based Cu-RE alloys (where RE represents lanthanum, neodymium, or samarium) with alloying content up to 16 wt-% were prepared by chill block melt spinning into ribbons of thickness between 40 and 100μm. The melt spun ribbons were heattreated isochronally for 2 h at 300, 400, 500, 600, 700, and 800℃, respectively. The melt spun and heat treated ribbons were tested for microhardness and resistivity and were characterised by optical and transmission electron microscopy (TEM) and X-raydiffractometry (XRD). Microstructures were of the typical zone B type for Cu-1RE and Cu-3RE ribbons and of the zone B/zone A type for Cu-5RE, Cu-8RE, and Cu-12RE ribbons. Only microstructures of the zone A type were found in Cu-15La ribbons. Themetastable extended solid solubilities of the rare earth elements were evaluated by measurements of the lattice parameters of the supersaturated solid solutions and significant extension from the equilibrium solid solubility was found for all threealloys. The secondary phase was identified by TEM and XRD as Cu{sub}6RE for all ribbons except Cu-15La ribbons in which metastable Cu{sub}5La and Cu{sub}13La phases were also found. Observations using TEM and XRD also showed a reduction in thcα-Cu grainsize of the as spun ribbons with increasing alloying content, producing nanosized α-Cu grains on the chill side of the ribbons. Heat treatment of the ribbons at 400℃ for 2 h produced no significant coarsening of α-Cu grains as the size of these grainswas still in the nanometer region. Both α-Cu and Cu{sub}6RE grains coarsened as a result of heat treatment for 2 h at temperatures of 600℃ and above for all the alloys.
机译:通过冷熔熔融纺丝成厚度在40至100μm之间的薄带,制备合金含量最高为16 wt%的铜基Cu-RE合金(其中RE表示镧,钕或sa)。将熔融纺丝带分别在300、400、500、600、700和800℃下等时热处理2 h。测试了熔融纺丝和热处理过的薄带的显微硬度和电阻率,并通过光学和透射电子显微镜(TEM)和X射线衍射仪(XRD)对其进行了表征。 Cu-1RE和Cu-3RE薄带的组织为典型的B区,而Cu-5RE,Cu-8RE和Cu-12RE薄带的组织为B / A区。在Cu-15La薄带中仅发现A区类型的微结构。通过测量过饱和固溶体的晶格参数,评估了稀土元素的可转移的扩展固溶度,并且发现所有三种合金均从平衡固溶度显着扩展。通过TEM和XRD将所有带的次生相鉴定为Cu {sub} 6RE,除了Cu-15La带以外,还发现了亚稳态的Cu {sub} 5La和Cu {sub} 13La相。使用TEM和XRD进行的观察还显示,随着合金含量的增加,初生薄带的thc-Cu晶粒尺寸减小,在薄带的冷侧产生纳米级α-Cu晶粒。碳带在400℃下热处理2 h不会产生明显的α-Cu晶粒粗化,因为这些晶粒的尺寸仍在纳米区域。对于所有合金,在600℃及以上的温度下热处理2小时,α-Cu和Cu {sub} 6RE晶粒均变粗了。

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