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首页> 外文期刊>Microsystem technologies >Design and material analysis for prototyping of four arm mechanical microgripper with self-locking and anti-slipping capability
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Design and material analysis for prototyping of four arm mechanical microgripper with self-locking and anti-slipping capability

机译:四臂机械微渗透自锁和防滑能力的设计和材料分析

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摘要

In this work, a mechanically actuated microgripper is designed with the COMSOL Multiphysics and its analysis is discussed. The mechanical microgripper is having a structure which consists of four arms which are held together with fingers emerging from a pedestal attached to the shaft where the input force is applied. The actuator is a screw based micrometer setup where self locking mechanism can be practiced. Based on the applied force, the initially closed gripper arms will be opened because of the force magnification acquired by the multiple stages and the fishbone structure of the gripper design. The study is done with the comparison between applied load versus the displacement achieved and also between the applied load and stress. As the design is displacement driven the studies performed is capable of representing the gripper's real time working model. Various materials can be used for the gripper manufacturing, out of which aluminium, maraging steel, polycarbonate, verowhite and FullCure 720 are compared here and the best response is found to be aluminium in metals and polycarbonate in polymers. The prototyping can be done by rapid prototyping method, where the steps involved in the manufacturing of both polymer and metal grippers for various applications are discussed. The study is based on the structure's stability because of the supporting fingers and the corresponding stress and displacement were also obtained.
机译:在这项工作中,用COMSOL多发性设计了机械致动的微鳃,并讨论了其分析。机械微电器具有由四个臂组成的结构,该臂与从附着到轴的轴上的基座中出现的指状物一起保持在一起。致动器是一种基于螺旋基的千分尺设置,可以实施自锁机构。基于施加的力,由于由多个阶段获得的力倍率和夹具设计的捕鱼器结构获取的力倍率,将打开最初闭合的夹持臂。该研究采用施加负荷与施加负荷和应力之间实现的位移与位移之间的比较进行。由于设计是位移驱动所执行的研究能够代表夹具的实时工作模型。在此处比较夹持器制造的各种材料,其中铝,游行钢,聚碳酸酯,Verowhite和Fullcure 720并发现最佳反应是聚合物中金属和聚碳酸酯的铝。讨论了原型设计,可以通过快速成型方法来完成,其中涉及用于各种应用的两种聚合物和金属夹具的制造步骤。该研究基于结构的稳定性,因为支撑手指和相应的应力和位移也被获得。

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