您所在的位置: 首页 >> 期刊 >> 控制工程期刊

控制工程期刊

《控制工程期刊》是一本关注控制工程领域最新进展的开源国际学术期刊。本刊采用开放获取模式,报道控制工程学科领域的最新科研成果,旨在反映学术前沿进展及水平,促进学术交流,为国内外该领域的学者、科研人员提供一个良好的交流平台,以推进控制工程理论、应用和技术的发展。本刊可接收中、英文稿件。但中文稿件要有详细的英文标题、作者、单位、摘要和关键词。初次投稿请按照稿件模板排版后在线投稿。录用稿件首先刊发在期刊网站上,然后由Ivy Publisher出版公司高质量…… 【更多】 《控制工程期刊》是一本关注控制工程领域最新进展的开源国际学术期刊。本刊采用开放获取模式,报道控制工程学科领域的最新科研成果,旨在反映学术前沿进展及水平,促进学术交流,为国内外该领域的学者、科研人员提供一个良好的交流平台,以推进控制工程理论、应用和技术的发展。

本刊可接收中、英文稿件。但中文稿件要有详细的英文标题、作者、单位、摘要和关键词。初次投稿请按照稿件模板排版后在线投稿。录用稿件首先刊发在期刊网站上,然后由Ivy Publisher出版公司高质量出版,面向全球公开发行。因此,要求来稿均不涉密,文责自负。

ISSN Print:2167-0196

ISSN Online:2167-020X

Email:sjce@ivypub.org

Website: http://www.ivypub.org/sjce

  0
  0

Paper Infomation

Phase Transformation Behavior and Smart Applications of Shape Memory Alloys

Full Text(PDF, 28KB)

Author: Jiao Luo

Abstract: Shape memory alloys (SMAs) are unique materials that exhibit the ability to recover their original shape upon heating after being deformed at low temperatures. Due to their remarkable properties, such as high strength, excellent fatigue resistance, and the ability to undergo significant recoverable deformation, SMAs have found extensive applications in various fields, including biomedical devices, robotics, aerospace, automotive industries, and smart textiles. This paper provides a comprehensive overview of the phase transformation behavior and smart applications of SMAs, focusing on the underlying mechanisms, characteristics, and technological advancements in SMA-based devices. It explores the various phases involved in SMA behavior, including the martensitic and austenitic phases, thermoelastic transformations, and stress-induced phase transformations. Furthermore, this paper discusses the applications of SMAs in smart technologies, including their use in medical devices, actuators, sensors, and energy harvesting systems. By exploring the key factors influencing phase transformations, this study highlights the potential of SMAs in designing next-generation smart materials and systems.

Keywords: Shape Memory Alloys; Phase Transformation; Martensitic Phase; Austenitic Phase; Smart Applications; Biomedical Devices; Actuators; Sensors; Energy Harvesting

References:

[1] Li L, Yang Z, Xu K, et al. Strain glass state in Ni50.3Ti29.7Hf20 high-temperature shape memory alloy[J].Scripta Materialia,2025,257116449-116449.

[2] Chen L, Oliveira P J, Yan X, et al. Microstructure and Phase Transformation Behavior of NiTiCu Shape Memory Alloys Produced Using Twin-Wire Arc Additive Manufacturing[J].Additive Manufacturing Frontiers,2024,3(2):200132-.

[3] Xi R, Jiang H, Li G, et al. Effect of solution treatment on the microstructure, phase transformation behavior and functional properties of NiTiNb ternary shape memory alloys fabricated via laser powder bed fusion in-situ alloying[J].International Journal of Extreme Manufacturing,2024,6(4):

[4] Ma G, Hu Y, Zhang L, et al. Phase transformation behavior and mechanical properties of NiTi shape memory alloys fabricated by directed laser deposition[J].Materials Science & Engineering A,2024,908146693-.

[5] Liu Q, Feng Y, Liu B, et al. Regulation of microstructure, phase transformation behavior, and enhanced high superelastic cycling stability in laser direct energy deposition NiTi shape memory alloys via aging treatment[J].Materials Science & Engineering A,2024,915147207-147207.

[6] Yuru Z, Daqiang J, Hui Z, et al. Phase transformation behavior and superelasticity of nanocrystalline Ti50Ni50−xCox shape memory alloys[J].Journal of Alloys and Compounds,2024,975172997-.

[7] Rui X, Hao J, Guichuan L, et al. In-situ alloying of NiTiNb ternary shape memory alloys via laser powder bed fusion using pre-alloyed NiTi and elemental Nb powders: Microstructure, phase transformation behavior and functional properties[J].Additive Manufacturing,2024,79103933-.

[8] Li Z, Zhong J, Zhang J, et al. Toward additive manufactured crack-free NiTiCu shape memory alloys with low-hysteresis and tailorable phase transition behavior supported by theoretical design[J].Additive Manufacturing,2024,92104386-104386.

Privacy Policy | Copyright © 2011-2025 Ivy Publisher. All Rights Reserved.

Contact: customer@ivypub.org