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镍钛形状记忆合金丝增强锡铋自修复金属基复合材料的性能研究

Investigation into the Performance of NiTi Shape Memory Alloy Wire Reinforced Sn-Bi Self-Healing Metal Matrix Composite.

作者信息

Salowitz Nathan, Misra Shobhit, Haider Muhammad Istiaque, Povolo Marco, Rohatgi Pradeep

机构信息

Department of Mechanical Engineering, University of Wisconsin-Milwaukee, 3200 N Cramer Street, Milwaukee, WI 53211, USA.

Slunca Engineers Private Limited, New Delhi 110091, India.

出版信息

Materials (Basel). 2022 Apr 19;15(9):2970. doi: 10.3390/ma15092970.

Abstract

Self-healing materials have the potential to create a paradigm shift in the life cycle design of engineered structures, by changing the relation between material damage and structural failure, affecting structures' lifetime, safety, and reliability. However, the knowledge of self-healing capabilities in metallic materials is still in its infancy compared to other material systems because of challenges in the synthesis of organized and complex structures. This paper presents a study of a metal matrix composite system that was synthesized with an off-eutectic Tin (Sn)-Bismuth (Bi) alloy matrix, reinforced with Nickel-Titanium (NiTi) shape memory alloy (SMA) wires. The ability to close cracks, recover bulk geometry, and regenerate strength upon the application of heat was investigated. NiTi wires were etched and coated in flux before being incorporated into the matrix to prevent disbonding with the matrix. Samples were subjected to large deformations in a three-point bending setup. Subsequent thermo-mechanical testing of the composites confirmed the materials' ability to restore their geometry and recover strength, without using any consumable components. Self-healing was accomplished through a combination of activation of the shape memory effect in the NiTi to recover the samples' original macroscopic geometry, closing cracks, and melting of the eutectic material in the matrix alloy, which resealed the cracks. Subsequent testing indicated a 92% strength recovery.

摘要

自修复材料有可能在工程结构的生命周期设计中引发范式转变,通过改变材料损伤与结构失效之间的关系,影响结构的寿命、安全性和可靠性。然而,与其他材料系统相比,金属材料自修复能力的知识仍处于起步阶段,这是因为在合成有组织的复杂结构时存在挑战。本文介绍了一种金属基复合材料系统的研究,该系统由亚共晶锡(Sn)-铋(Bi)合金基体合成,并由镍钛(NiTi)形状记忆合金(SMA)丝增强。研究了在加热时闭合裂纹、恢复整体几何形状和再生强度的能力。在将NiTi丝并入基体之前,先对其进行蚀刻并涂覆助熔剂,以防止与基体脱粘。样品在三点弯曲装置中承受大变形。随后对复合材料进行的热机械测试证实了材料在不使用任何消耗性部件的情况下恢复其几何形状和恢复强度的能力。自修复是通过激活NiTi中的形状记忆效应以恢复样品的原始宏观几何形状、闭合裂纹以及基体合金中共晶材料的熔化来实现的,共晶材料熔化后重新密封了裂纹。随后的测试表明强度恢复了92%。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/16b4/9102469/deb5255bd772/materials-15-02970-g001.jpg

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