首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >A Novel Powder Metallurgy Processing Approach to Prepare Fine-Grained Cu-Al-Ni Shape-Memory Alloy Strips from Elemental Powders
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A Novel Powder Metallurgy Processing Approach to Prepare Fine-Grained Cu-Al-Ni Shape-Memory Alloy Strips from Elemental Powders

机译:从元素粉末制备细晶粒的Cu-Al-Ni形状记忆合金带的新型粉末冶金加工方法

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摘要

The current work describes the experimental results related to the successful preparation of finegrained, Cu-Al-Ni, high-temperature shape-memory alloy (SMA) strips from elemental Cu, Al, and Ni powders via a novel powder metallurgy (P/M) processing approach. This route consists of short time period ball milling of elemental powder mixture, preform preparation from milled powder, sintering of preforms, hot-densification rolling of unsheathed sintered powder preforms under protective atmosphere, and postconsohdation homogenization treatment of the hot-rolled strips. It has been shown that it is possible to prepare chemically homogeneous Cu-Al-Ni SMA strips consisting of equiaxed grains of average size approximately 6 μm via the current processing approach. It also has been shown that fine-grained micro structure in the finished Cu-Al-Ni SMA strips resulted from the pinning effect of nanosized alumina particles present on the grain boundaries. The finished SMA strips were almost fully martensitic in nature, consisting of a mixture of β'_1- and γ'_1-type martensites. The Cu-Al-Ni SMA strips had 677 MPa average fracture strength, coupled with 13 pct average fracture strain. The fractured surfaces of the specimens exhibited primarily dimpled ductile type of fracture, together with some transgranular mode of fracture. The Cu-Al-Ni strips exhibited an almost 100 pct one-way shape recovery after bending followed by unconstrained heating at 1, 2, and 4 pct applied deformation pre-strain. The two-way shape-memory strain was found approximately 0.35 pct after 15 training cycles at 4 pct applied training prestrain.
机译:当前的工作描述了与通过新型粉末冶金(P / M )处理方式。这条路线包括短时间的球磨粉,混合粉的预制品制备,预制品的烧结,无护套烧结粉末预制品的热致密化轧制,以及热轧带材的缩浆后均质化处理。已经表明,可以通过当前的加工方法制备化学均质的Cu-Al-Ni SMA条带,该条带由平均尺寸约为6μm的等轴晶粒组成。还已经表明,在最终的Cu-Al-Ni SMA条带中的细晶粒微观结构是由存在于晶界上的纳米级氧化铝颗粒的钉扎效应引起的。制成的SMA板条本质上几乎是马氏体,由β'_1型和γ'_1型马氏体的混合物组成。 Cu-Al-Ni SMA条带的平均断裂强度为677 MPa,平均断裂应变为13 pct。标本的断裂表面主要表现为延性的延性类型的断裂,以及一些沿颗粒的断裂模式。弯曲后,在施加了1、2和4 pct变形预应变的情况下,无限制加热后,Cu-Al-Ni带材表现出了近100 pct的单向形状恢复。在以4 pct施加的训练预应变进行15个训练周期后,发现双向形状记忆应变约为0.35 pct。

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