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TiZr-Based Metallic Alloys: Controllable Composite Phase Structures and Related Properties

机译:TiZr基金属合金:可控的复合相结构和相关性能

摘要

Composite phase structure of early transition metal-based metallic alloys, including those of crystalline, quasicrystalline and amorphous phases, can be obtained in a controllable way upon direct (in-situ) cooling (solidification) of the alloy, realized either by adjusting the alloy compositions at a fixed cooling rate or by changing the cooling rates for a given alloy composition. Some embodiments are based on the addition of later transition metals, mainly of Cu with Ni or Fe with Co in early transition metal based (mainly Ti and Zr or Hf and Nb) metallic alloys. If cooling rate is on the scale of 103° C./s, a wholly amorphous structure is obtained for most of the compositions. At reduced cooling rates, composite structures with different kinds of phases can be achieved, as illustrated graphically in FIG. 1. Nickel addition promotes the formation of quasicrystalline phases, especially for Ti-rich alloy compositions with beryllium. A critical percentage of Ni exists below which no quasicrystalline phases will be formed.
机译:早期过渡金属基金属合金的复合相结构,包括晶相,准晶相和非晶相,可以通过对合金进行直接(原位)冷却(凝固)而以可控制的方式获得,可以通过调节合金来实现以固定的冷却速度或通过改变给定合金成分的冷却速度来冷却合金成分。一些实施方案是基于在较早过渡金属基(主要是Ti和Zr或Hf和Nb)金属合金中添加较晚过渡金属,主要是Cu,Ni或Fe和Co。如果冷却速度在10 Sup 3℃/ s的范围内,则对于大多数组合物而言,获得了完全无定形的结构。在降低的冷却速率下,可以实现具有不同种类的相的复合结构,如图2中的图形所示。 1 。镍的添加促进了准晶相的形成,特别是对于含铍的富钛合金成分而言。存在临界百分比的Ni,低于该临界百分比将不会形成准晶相。

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