A novel fluid driven, foldable joint for minimally invasive surgery

M. Mencattelli, A. Tonazzini, Irene Martinelli, Marco Menchicchi, C. Stefanini
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Abstract

In minimally invasive surgery (MIS) the aspect of miniaturization is getting more and more demanding. On the other hand, it is also important to assure high stability and large actuation forces at the end effector. Here we present the design and the development of a 1 degree of freedom (DOF) rotational joint, which combines a foldable mechanism and a fluidic actuation system for obtaining force magnification within a slender structure (diameter = 5 mm). The foldable mechanism is composed of identical rigid elements connected each other, which sequentially move away from the joint's axis and ensure an output torque of 0.5 Nm.
一种用于微创手术的新型液体驱动、可折叠关节
在微创手术中,对小型化的要求越来越高。另一方面,确保末端执行器的高稳定性和大致动力也很重要。在这里,我们提出了一个1自由度(DOF)旋转关节的设计和开发,它结合了一个可折叠机构和一个流体驱动系统,用于在细长结构(直径= 5 mm)内获得力放大。可折叠机构由相互连接的相同刚性元件组成,这些刚性元件依次远离关节轴,并确保输出扭矩为0.5 Nm。
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