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A multi-segmented shape memory alloy-based actuator system for endoscopic applications

机译:基于多分段的形状存储合金的内窥镜应用致动器系统

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This paper describes the design, fabrication and testing of a shape memory alloy based actuator system to provide three degrees of freedom bending with high flexibility and repeated use capability without any performance loss for minimally invasive surgery. The flexibility, long-term endurance and thermal characteristics of this system were studied. The system consisted of 3 segments, front, middle and back. Thermal simulations showed an increase in temperature of 1-2 degrees C at the segment nearest to the activated segment and a temperature increase of 1 degrees C at the segment furthest from the activated segment. Transformation strain simulations showed that the 8 mm width design has the lowest strain (2%). The average maximum bending angle was above 30 degrees across most actuator segments but a reformation angle of only 50% of the maximum angle. The endurance test showed that all actuators can operate for 7000 actuation cycles with a standard deviation of 0.6154, 0.8293 and 0.0364 mm for sections A, B and C, respectively. The system was capable of high angle of bending across all segments and capable of continuous long-term use with little performance deviation. The system will allow surgeons to have more flexibility during surgery and thus enable reaching difficult regions in minimally invasive surgery. (C) 2019 Elsevier B.V. All rights reserved.
机译:本文描述的设计,制造和形状记忆合金致动器的基于系统的测试,以提供三个自由度弯曲具有很高的灵活性和重复使用能力的不用于微创外科手术的任何性能损失。柔韧性,长期耐久性和该系统的热特性进行了研究。该系统由3个段,前部,中部和后部的。热模拟表明在段最接近激活段和在段最远从激活的段的1摄氏度的温度增加的增加的1-2度的温度。变应变模拟表明8毫米宽的设计具有最低的菌株(2%)。平均最大弯曲角度高于在大多数致动器段30度,但只有50%的最大角度的重整角度。在耐久试验表明,所有的致动器可以为7000个的致动周期与0.6154,0.8293和0.0364毫米为部分A,B和C的标准偏差分别操作。该系统能够在所有段弯曲的高角度的和能够用很小的性能偏差连续长期使用。该系统将允许外科医生在手术过程中有更多的灵活性,从而使微创手术难以达到的区域。 (c)2019 Elsevier B.v.保留所有权利。

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