arXiv:2510.22738cs.RO2025-10

两种自适应夹持器实现无需复杂传感的环境自适应抓取。

SCAL for Pinch-Lifting: Complementary Rotational and Linear Prototypes for Environment-Adaptive Grasping

  • SCAL-R旋转驱动内收形成包裹,SCAL-L线性驱动被动张开覆盖大物。
  • 在桌面上滑动、上坡后抓起及大件物体抓取中均稳定有效。
  • 结构简单,无需复杂控制,适合小件和弱特征物体抓取。

本文提出基于槽约束自适应连杆(SCAL)的环境自适应夹持方案,设计了两种互补手指:SCAL-R为旋转驱动,触碰后主动内收形成包裹;SCAL-L为线性驱动,触碰时被动张开以覆盖宽大或弱特征物体。两者将表面跟随转化为向上提升动作,同时保持指尖朝向,使薄型或低轮廓目标可从支撑面抬起,且感知与控制需求极低。采用PLA 3D打印制作双指夹爪。实验评估了桌面接触保持滑动与夹持提升、上坡后抓起、以及通过主动包裹(SCAL-R)或接触触发被动张开(SCAL-L)处理大件物体的能力。在数十次对小型零件、盒子、罐子、胶带卷的测试中,两种设计均实现稳定抓取,仅需少量调参。准静态分析给出线性平行夹持与两点包裹的闭式指尖力模型,为设计与操作提供几何感知指导。结果表明二者具有互补工作模式,为实现简单驱动下的鲁棒环境自适应抓取提供了可行路径。

原文摘要 · Abstract (English)

This paper presents environment-adaptive pinch-lifting built on a slot-constrained adaptive linkage (SCAL) and instantiated in two complementary fingers: SCAL-R, a rotational-drive design with an active fingertip that folds inward after contact to form an envelope, and SCAL-L, a linear-drive design that passively opens on contact to span wide or weak-feature objects. Both fingers convert surface following into an upward lifting branch while maintaining fingertip orientation, enabling thin or low-profile targets to be raised from supports with minimal sensing and control. Two-finger grippers are fabricated via PLA-based 3D printing. Experiments evaluate (i) contact-preserving sliding and pinch-lifting on tabletops, (ii) ramp negotiation followed by lift, and (iii) handling of bulky objects via active enveloping (SCAL-R) or contact-triggered passive opening (SCAL-L). Across dozens of trials on small parts, boxes, jars, and tape rolls, both designs achieve consistent grasps with limited tuning. A quasi-static analysis provides closed-form fingertip-force models for linear parallel pinching and two-point enveloping, offering geometry-aware guidance for design and operation. Overall, the results indicate complementary operating regimes and a practical path to robust, environment-adaptive grasping with simple actuation.

机器人抓取自适应机构3D打印夹持器

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