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High Force Density Gripping with UV Activation and Sacrificial Adhesion

机译:具有紫外线活化作用和牺牲附着力的高力密度夹持

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This paper presents a novel physical gripping framework intended for controlled, high force density attachment on a range of surfaces. Our framework utilizes a light-activated chemical adhesive to attach to surfaces. The cured adhesive is part of a "sacrificial layer," which is shed when the gripper separates from the surface. In order to control adhesive behavior we utilize ultraviolet (UV) light sensitive acrylics which are capable of rapid curing when activated with 380nm light. Once cured, zero input power is needed to hold load. Thin plastic parts can be used as the sacrificial layers, and these can be released using an electric motor. This new gripping framework including the curing load capacity, adhesive deposition, and sacrificial methods are described in detail. Two proof-of concept prototypes are designed, built, and tested. The experimental results illustrate the response time (15-75s depending on load), high holding force-to-weight ratio (10-30), and robustness to material type. Additionally, two drawbacks of this design are discussed: corruption of the gripped surface and a limited number of layers.
机译:本文提出了一种新颖的物理抓握框架,旨在用于在一定范围的表面上进行受控的,高力密度的附着。我们的框架利用光活化化学胶粘剂附着在表面上。固化的粘合剂是“牺牲层”的一部分,当夹具与表面分离时会脱落。为了控制粘合行为,我们利用对紫外线(UV)敏感的丙烯酸树脂,这些丙烯酸树脂在380nm光线下活化后能够快速固化。固化后,需要零输入功率来保持负载。薄的塑料部件可以用作牺牲层,并且可以使用电动机将其释放。详细描述了这种新的夹持框架,包括固化负载能力,粘合剂沉积和牺牲方法。设计,构建和测试了两个概念验证原型。实验结果说明了响应时间(15-75s,取决于负载),高保持力重量比(10-30)以及对材料类型的耐用性。另外,讨论了这种设计的两个缺点:被握持表面的损坏和有限数量的层。

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