I-Corps: Elastomeric Passive Transmission for Dynamic Adjustment of Mechanical Advantage
I-Corps: Elastomeric Passive Transmission for Dynamic Adjustment of Mechanical Advantage
批准号:
1838514
负责人:
Robert Shepherd
金额:
$5.0万
依托单位:
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2018
资助国家:
美国
项目状态:
已结题
起止时间:
2018-07-01 至 2018-12-31
中文摘要
I-Corps项目更广泛的影响/商业潜力是基于一种被动调整电机驱动执行器的机械优势的设备。该装置被称为弹性被动传动(EPT),可以提高肌腱驱动驱动系统的受力和速度,同时对其尺寸、重量和成本的影响最小。在美国,每年大约有4万人患有严重的上肢丧失。这些患者使用的最先进的假肢的握力、抓握速度和活动自由度与人的手相比都相形见绌。用户研究表明,90%的肌电假肢患者认为他们的假手太慢,79%的人认为假手太重。通过将EPT整合到他们的设计中,假肢制造商可以在降低成本和重量的同时增加设备的力量和速度。除了提高假肢的性能外,EPT还具有在机器人自动化领域为抓手和机械手带来性能优势的潜力。I-Corps项目利用增材制造技术的进步来生产简单、低成本的部件,以提高机电系统的性能。每个EPT都是由硬质和软质聚氨酯组成的复合材料。硬聚氨酯作为EPT的核心,确保它不会在电机轴上滑动。这个核心被一圈柔软的、可拉伸的支柱包围,这给了系统动态的线轴半径。ept被3d打印成两部分,并在最后的固化阶段粘合在一起。这导致了一个单组件传输系统,可以被动地感知环境和调整电机的输出,以提高性能和控制。EPTs的优势已经通过集成到3d打印的假手中得到了证明,该假手在廉价和轻质的包装中展示了高速和高强度。该奖项反映了美国国家科学基金会的法定使命,并通过使用基金会的知识价值和更广泛的影响审查标准进行评估,被认为值得支持。
英文摘要
The broader impact/commercial potential of this I-Corps project is based on a device which passively adjusts the mechanical advantage of a motor-driven actuator. This device, known as the Elastomeric Passive Transmission (EPT), improves the force and speed of tendon-driven actuation systems with minimal impact to their size, weight, and cost. Approximately 40,000 people per year suffer from major upper limb loss in the United States. The grip strength, grasping speed, and active degrees-of-freedom of even the most advanced prosthetic hands used by these patients pale in comparison to those of a human hand. User studies have shown that 90% of patients with myoelectric prostheses consider their prosthetic hand to be too slow and 79% consider it to be too heavy. By incorporating the EPT into their designs, prosthetic limb manufacturers can increase the force and speed of their devices with reduced cost and weight. In addition to improving the performance of prosthetics, the EPT has the potential to bring performance benefits to grippers and manipulators in the field of robotic automation.This I-Corps project is leverages advances in additive manufacturing to produce simple, low-cost components to improve the performance of electromechanical systems. Each EPT is a composite consisting of both hard and soft polyurethane sections. The hard polyurethane serves as the core of the EPT ensuring that it does not slip on the motor shaft. This core is surrounded by a ring of soft, stretchable struts which give the system its dynamic spooling radius. The EPTs are 3D-printed in two parts and bonded together during the final curing stage. This leads to a single component transmission system which can passively sense the environment and adjust the output of a motor to improve performance and control. The benefits of EPTs have been demonstrated through integration into a 3D-printed prosthetic hand which demonstrates high speed and high force in an inexpensive and lightweight package.This award reflects NSF's statutory mission and has been deemed worthy of support through evaluation using the Foundation's intellectual merit and broader impacts review criteria.
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依托单位:
海外基金