耐用视觉触觉指尖让机器人在高强度操作中持续感知接触。
A Durable Vision-Based Tactile Fingertip for Robotic Manipulation

- 用硅胶+可替换感测模块+耐磨薄膜设计提升寿命。
- 抗砂磨测试达2-3小时,重复按压测试最长8天仍可用。
- 渐进式损坏且快速换芯,适合工业级机器人使用。
现有商用视觉触觉传感器虽能提供丰富接触信息,但易受磨损和反复集中负载影响,限制其在严苛机器人应用中的使用。本文提出一种耐用触觉指尖,包含软硅胶凝胶、无色纹理薄层聚氨酯保护膜及可更换感测单元。通过两种加速实验室测试评估耐久性:旋转鼓砂磨测试和以39.2 N(4.0 kgf)力、45次/分钟频率重复探针测试。在设定砂磨条件下,该传感器保护膜破裂约需2-3小时;重复探针测试中,9个样品均未失效:7个持续5天,1个6天,1个8天。而商用GelSight Mini与DIGIT样品在砂磨后约24-30秒即出现表面膜破裂,重复加载后25-35分钟即失效。本传感器损伤呈渐进式,终点时对触觉成像干扰极小。上述结果表明,在指定加速条件下,耐久性提升超过两个数量级。结合更高耐久性、渐进式退化与快速更换机制,为严苛机器人应用提供了可持续的视觉触觉感知方案。
原文摘要 · Abstract (English)
Currently available commercial vision-based tactile sensors provide rich contact information but remain vulnerable to abrasion and repeated concentrated loading, limiting their use in demanding robotic applications. This work presents a durable tactile fingertip comprising a soft silicone gel with a nonpigmented, textured, thin thermoplastic-polyurethane protective film and a replaceable sensing cartridge. Durability was evaluated using two accelerated laboratory procedures: a rotating-drum sanding test and a repetitive probe test applying 39.2 N (4.0 kgf) at 45 cycles per minute. Under the defined sanding conditions, the developed sensor reached the protective-film rupture endpoint after approximately 2-3 hours. During repetitive probe testing, all nine developed sensors remained functionally usable when testing was discontinued: seven after 5 days, one after 6 days, and one after 8 days. Commercial GelSight Mini and DIGIT specimens exhibited initial surface-film rupture after approximately 24-30 seconds of sanding and 25-35 minutes of repetitive loading. Damage to the developed sensor progressed gradually and produced little interference with tactile imaging at the test endpoints. These observations establish durability improvements of more than two orders of magnitude under the defined accelerated conditions. Combining increased durability, gradual degradation, and rapid cartridge replacement offers a practical approach to maintainable vision-based tactile sensing for demanding robotic applications.
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