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首页> 外文期刊>Materials Science and Engineering >Influence of Ti_3Ni_4 precipitates on the indentation-induced two-way shape-memory effect in Nickel-Titanium
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Influence of Ti_3Ni_4 precipitates on the indentation-induced two-way shape-memory effect in Nickel-Titanium

机译:Ti_3ni_4对镍钛缩进诱导的双向形状记忆效应的影响

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Nickel Titanium (NiTi) alloys have been used for many years based on their unique ability to exhibit the shape-memory and pseudoelastic effects. The indentation-induced two-way shape memory effect (TWSME) is a specific sub-capability of this alloy such that a repeatably switchable surface can be created by "training" the material through mechanical indentation and activated through temperature transitions between the austenitic and martensitic phases. This study sought to observe the effect Ti_3Ni_4 precipitate aging would have on the indentation-induced TWSME. Ti_3Ni_4 has previously been shown as an effective method to alter NiTi transformation temperatures, yet it was unclear what effect localized stress fields around precipitates would have on the TWSME. The results presented here indicate that growth of precipitates in the alloy before training suppresses the resultant indentation-induced TWSME, and small precipitates, which cause minimal lattice mismatch to the matrix (i.e. highest coherency), have the strongest role in suppressing the effect. It is suggest that lattice coherency acts to inhibit plastic deformation, suppressing the creation of the preferred microstructure under the indent required to guide the TWSME. Therefore, precipitate aging is not a recommended alternative to precise alloying in order to alter transformation temperatures with the goal of maximizing the indentation-induced TWSME effect within a targeted temperate transformation regime.
机译:镍钛(NITI)合金已根据其独特的表现出形状记忆和伪弹性效应的独特能力使用了多年。压痕诱导的双向形状记忆效应(TWSME)是该合金的特定子能力,使得可以通过机械压痕“训练”材料来产生可重新切换的表面,并通过奥氏体和马氏体之间的温度过渡激活阶段。该研究试图观察Ti_3Ni_4沉淀效果对压痕诱导的TWSME的影响。先前已被显示为改变NITI变换温度的有效方法,但目前尚不清楚沉淀物周围的局部应力场会在TWEME上具有哪些效果。呈现的结果表明,在训练之前,合金中的沉淀物的生长抑制所得缩进诱导的Twsme,并且小沉淀物,其导致基质(即最高一致性)的最小晶格错配,在抑制效果方面具有最强的作用。据表明,晶格一致性起到抑制塑性变形,抑制在引导TWSME所需的凹面下产生优选的微观结构。因此,沉淀老化不是精确合金化的推荐替代方案,以便改变转化温度,其目的是最大化咬合诱导的TWSME效应在有针对性的温带转变制度内。

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