首页> 外文会议>ASME conference on smart materials, adaptive structures and intelligent systems;SMASIS2009 >TWO-DIMENSIONAL THERMOMECHANICAL MODEL FOR COMBINED LOADING OF NITI WIRE STRUCTURES
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TWO-DIMENSIONAL THERMOMECHANICAL MODEL FOR COMBINED LOADING OF NITI WIRE STRUCTURES

机译:NITI线结构的组合载荷二维热力学模型

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Thin NiTi shape memory wires with unique thermomechan-ical properties are considered to be promising material for a wide range of new engineering applications. Based on broad experimental research on behavior of NiTi wires, which reveal a significant anisotropy in the transformation behaviors between tension and torsion, a new two-dimensional NiTi SMA material model was developed, particularly for the purpose of simulating NiTi wire structures behavior under combined mechanical and thermal loading. Two mutually perpendicular phase interfaces between autenite and martensite are formed during combined tension/torison loading. The first one, induced by tension, is perpendicular to symmetry axis, whereas the torsion-induced one is parallel to this axis. The model is parameterized by realistic physically-based material parameters and describes motion and evolution of these interfaces. Some numerical simulations -NiTi wire actuator, knitted self-expanding stent, shape memory fastener hook and shape memory helical spring - are presented and discussed to demonstrate the early practical applications of the model.
机译:具有独特的热机械性能的细NiTi形状记忆线被认为是用于各种新型工程应用的有前途的材料。基于对NiTi线行为的广泛实验研究,揭示了拉伸和扭转之间的转换行为中存在显着的各向异性,因此开发了一种新的二维NiTi SMA材料模型,特别是为了模拟组合机械条件下的NiTi线结构行为和热负荷。奥氏体和马氏体之间的两个相互垂直的相界面是在组合的拉力/托力载荷过程中形成的。由张力引起的第一个与对称轴垂直,而由扭转引起的第一个与对称轴平行。该模型通过现实的基于物理的材料参数进行参数化,并描述这些界面的运动和演变。提出并讨论了一些数值模拟-NiTi导线致动器,编织的自扩张式支架,形状记忆紧固件钩和形状记忆螺旋弹簧-来演示该模型的早期实际应用。

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