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An Investigation of the Effects of Thermal Interference between Adjacent Nitinol Spring Actuators in a Tactile Display
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作者 Kudzanai Sekerere Rehema Ndeda Karanja Kabini 《World Journal of Engineering and Technology》 2023年第1期136-152,共17页
Over the years, there has been increased research interest in the application of Nitinol as an actuator, due to its shape memory behaviour, simplicity, high power-to-weight ratio, compactness, and extreme high fatigue... Over the years, there has been increased research interest in the application of Nitinol as an actuator, due to its shape memory behaviour, simplicity, high power-to-weight ratio, compactness, and extreme high fatigue resistance to cyclic motion, and noiseless operation. Nitinol has found application in tactile displays which reproduce tactile parameters such as texture and shape, depending on the application. This paper presents the effects of thermal interference between adjacent Nitinol spring actuators in a tactile display. The tactile display is made of a 3 by 3 pin array whose spatial resolution was varied from 4 mm to 6 mm in steps of 1 mm while a current of 1.5 A was used to actuate 8 of the springs, and the centre spring was left unactivated to observe the thermal effects on it due to the heat gradient formed. A Finite Element (FE) model was developed using COMSOL Multiphysics and the results were further verified through experimentation. In both cases, there was visible thermal interference between actuators. The increase in spatial resolution saw a decrease in thermal interference by 12.7%. Using a fan to introduce forced convection, reduced the thermal interference in the simulation by 20% and during experimentation by 11%. The results of this research indicate a spatial resolution of 6 mm reduced the thermal inference to a negligible rate. However, thermal interference could not be eliminated with these two methods. 展开更多
关键词 Finite Element Analysis (FEA) Shape Memory Alloy (SMA) nitinol (niti) spring actuator Tactile Display Thermal Interference
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镍钛诺合金涡卷弹簧的力学建模与测试 被引量:4
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作者 吴佳俊 王帮峰 +1 位作者 芦吉云 顾莉莉 《光学精密工程》 EI CAS CSCD 北大核心 2014年第4期963-969,共7页
以非接触式形状记忆合金平面涡卷弹簧为例,研究了此类元件的作动原理,建立了镍钛形状记忆合金涡卷弹簧的力学模型。以普通平面涡卷弹簧的计算方式和形状记忆合金的相变方程本构模型为基础,建立了形状记忆合金涡卷弹簧的力学模型,获得了... 以非接触式形状记忆合金平面涡卷弹簧为例,研究了此类元件的作动原理,建立了镍钛形状记忆合金涡卷弹簧的力学模型。以普通平面涡卷弹簧的计算方式和形状记忆合金的相变方程本构模型为基础,建立了形状记忆合金涡卷弹簧的力学模型,获得了预紧扭力、激励温度、输出扭力和转角位置之间的关系表达式,并且通过两组测试验证了该力学模型和关系表达式。在对激励温度和扭力输出的关系测试中,模型计算值对测试值的确定系数为0.669,最小误差为2.4%,最大误差为215.9%;在对转角位移和扭力的关系测试中,计算值与测试值的确定系数为0.336,最小误差为48.9%,最大误差为350.0%。测试显示,力学模型的计算值与测试的数据具有类似的表征形式。 展开更多
关键词 镍钛诺形状记忆合金 平面涡卷弹簧 形状记忆本构方程 扭力驱动器
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