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Proceedings ArticleDOI

Effect of Annealing on the Transformation Behavior of NiTi Shape Memory Alloy

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TLDR
Polycrystalline alloys from shape memory alloy have been prepared successfully by thermal plasma spray in a wire form of 3 mm diameter in a graphite cast with three different ratios Ni50Ti50, Ni50.5Ti49.5 and Ni51Ti49 and its structure has been tested by means of X-ray diffraction technique.
Abstract
Shape memory alloys (SMAs) have enormous potential for a wide variety of applications. Therefore there has been a wide concern for studying the properties of those alloys. In this study polycrystalline alloys from shape memory alloy have been prepared successfully by thermal plasma spray in a wire form of 3 mm diameter in a graphite cast with three different ratios Ni50Ti50, Ni50.5Ti49.5 and Ni51Ti49. Its structure has been tested by means of X-ray diffraction technique. It has been noticed that annealing at 500° C helps to transform part of the material from an austenite phase into a martensite phase .It has also been noticed that increasing Ni proportion more than 50% to Ti in the alloy increases the martensite phase. The temperature of phase transformation as a function to the temperature of NiTi was calculated by using Differential Scanning Calorimeter (DSC) at a temperature between 100°C and -80.0°C in a scan rate of 10°C/min. The charts show that transformation from an austenite phase into martensite phase is done through an intermediate phase called (R-phase) which means there is no direct transformation, while transformation from martensite into austenite in heating cycle is direct. An exception to that is annealing Ni50Ti50 at a temperature of 400°Cwhere the transformation cycle is in two stages.

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Journal ArticleDOI

The Effects of Temperature and Time of Heat Treatment on Thermo-Mechanical Properties of Custom-Made NiTi Orthodontic Closed Coil Springs

TL;DR: In this paper , the optimum temperature and duration for the fabrication of NiTi-closed coil springs was investigated by investigating their effects on thermo-mechanical properties. But no optimum condition of heat treatment has been reported.
References
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Book

Constitution of Binary Alloys

Max Hansen, +1 more
Book

Shape memory materials

TL;DR: Otsuka et al. as mentioned in this paper introduced shape memory alloy actuators and their application in medical and dental applications, including shape memory ceramics, shape memory polymers, and shape memory alloys.
Book

Thin film phenomena

Constitution Of Binary Alloys

TL;DR: The constitution of binary alloys is universally compatible with any devices to read and is available in the book collection an online access to it is set as public so you can download it instantly.
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