• CN:11-2187/TH
  • ISSN:0577-6686

›› 2012, Vol. 48 ›› Issue (22): 40-45.

• 论文 • 上一篇    下一篇

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功能梯度形状记忆合金梁纯弯曲的理论分析

薛立军;兑关锁;刘兵飞   

  1. 北京交通大学土木建筑工程学院
  • 发布日期:2012-11-20

Theoretical Analysis of Functionally Graded Shape Memory Alloy Beam Subjected to Pure Bending

XUE Lijun;DUI Guansuo;LIU Bingfei   

  1. School of Civil Engineering, Beijing Jiaotong University
  • Published:2012-11-20

摘要: 功能梯度形状记忆合金(Functionally graded shape memory alloy, FG-SMA)是一种兼备功能梯度材料(Functionally graded material, FGM)和形状记忆合金(Shape memory alloy, SMA)特性的新型功能材料。根据复合材料力学和已有的SMA本构关系,通过充分考虑组分材料的应力应变关系,建立一个描述FG-SMA力学性能的宏观本构模型。应用该模型,对由弹性材料A和SMA组成的FG-SMA梁在纯弯曲载荷下的力学行为进行研究,详细讨论加载过程的弹性阶段和相变阶段,并给出相应的解析解。通过算例,对截面的应力分布、中性轴的位置和弯矩与曲率的关系进行详细讨论。结果表明,与普通FGM相比,FG-SMA可显著减小载荷作用下的最大应力,避免材料由于应力过大而导致的破坏。研究结果可为FG-SMA材料的设计和进一步研究提供一定的依据。

关键词: 纯弯曲, 功能梯度材料, 形状记忆合金

Abstract: The functionally graded shape memory alloy(FG-SMA) is a new functional composite which possesses the excellent properties of both functionally graded material(FGM) and shape memory alloys(SMA). A macroscopic constitutive model of FG-SMA is established by using the mechanics of composite materials method and the existing SMA model. With this macro constitutive model, the mechanical behavior of a FG-SMA beam composed by elastic material A and SMA subjected to pure bending is investigated. The loading processes including elastic process and phase transformation process are discussed in detail and the analytical solutions are obtained. The distribution of stress on the cross section, the position of the neutral axis and the curvature-bending moment relation are discussed through numerical results. It can be learned that compared with common FGM, FG-SMA can decrease the maximum stress efficiently, preventing the destruction caused by oversize stress. This research can provide a base for the design and in-depth investigation of FG-SMA material.

Key words: Functionally graded material, Pure bending, Shape memory alloy

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