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A Comparison of the DSC measurements of Shape Memory Alloys and the material's thermal characteristics in a large scale actuator

机译:大型执行器中形状记忆合金的DSC测量与材料热特性的比较

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An accurate measure of a Shape Memory Alloy's (SMA) transition temperatures is necessary for the development of successful SMA actuator designs. Differential Scanning Calorimetry (DSC) is used to obtain SMA transition temperatures associated with changes in alloy formulations, fabrication processes, and forming methods, and to predict an SMA's thermal characteristics when designed into an actuator. However there is little data directly correlating a material's DSC results with its performance in an actuator configuration, particularly for large-scale actuators producing high force and large displacements. In this paper the authors compare the DSC results of several NiTinol samples with the thermal performance of the same material in a rotary actuator. Data are presented for NiTinol torque tubes 14cm (5.5 in) long by 1 cm (0.4 in) in diameter. The tubes were tested over a range of loads exceeding 17 N*m (150 in-lbs) of torque, with angular displacements of more than 60 degrees, and for durations exceeding 3,500 thermal cycles. Data from various NiTinol suppliers, levels of cold work, and a range of aging temperatures is presented. The DSC data is directly compared to the strain vs. temperature hysteresis curves of the same material under various loads; both before and after extended cycling. The value of the DSC measurements as a predictor of a material's thermal characteristics in an actuator configuration is assessed.
机译:形状记忆合金(SMA)转变温度的准确测量对于成功的SMA执行器设计的开发是必需的。差示扫描量热法(DSC)用于获得与合金配方,制造工艺和成形方法的变化相关的SMA转变温度,并在将其设计为执行器时预测SMA的热特性。但是,几乎没有数据将材料的DSC结果与其在执行机构配置中的性能直接相关,特别是对于产生高力和大位移的大型执行机构而言。在本文中,作者将几种镍钛诺样品的DSC结果与旋转执行器中相同材料的热性能进行了比较。显示了14厘米(5.5英寸)长,1厘米(0.4英寸)直径的镍钛诺扭矩管的数据。在超过17 N * m(150 in-lbs)的扭矩,超过60度的角位移和超过3500个热循环的持续时间的负载范围内对这些管进行了测试。提供了来自各种NiTinol供应商的数据,冷加工水平以及一系列的时效温度。将DSC数据直接与相同材料在各种载荷下的应变-温度磁滞曲线进行比较;延长骑行前后。评估DSC测量值作为执行器配置中材料热特性的预测指标。

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