arXiv:2604.20092cs.HCcs.RO2026-04

研究分层结构如何影响人对柔软感的感知。

Heterogeneous Layered Structures Can Modulate Human Softness Perception

论文配图:Heterogeneous Layered Structures Can Modulate Human Softness Perception
图 1 · 摘自论文原文
  • 用3D打印制作16种分层结构,调节表层到第4层刚度。
  • 表层软度影响最大,下方层数越多感知越软但递减。
  • 适合触觉交互、假体或可穿戴设备设计者参考。

触觉中的柔软感研究多基于均质物体,但现实中多数物体具有非均匀刚度的分层结构。本研究通过3D打印制备16种格子状刺激物,系统调节上部四层刚度而固定底层两层。22名参与者在心理物理任务中评估软硬度,压缩测试量化其机械性能。感知软度主要由负载下的位移预测,但感知排序与物理排序不完全一致。线性混合效应分析显示,最外层软度对感知影响最大;下方软层越多,感知越软,但此效应随深度减弱,第2、3层有显著影响,第4层无显著作用。结果表明,触觉软度感知不仅取决于整体刚度,还受分层结构中柔顺性的深度分布影响。

原文摘要 · Abstract (English)

Human softness perception in haptics has mainly been studied using mechanically homogeneous objects, despite the fact that many real-world objects exhibit heterogeneous layered structures with nonuniform stiffness. This study examined how layered heterogeneity modulates haptic softness perception. Sixteen lattice-structured stimuli were fabricated by 3D printing, with the stiffness of the upper four layers systematically varied while the bottom two layers remained fixed. Twenty-two participants evaluated the softness of the stimuli in a psychophysical task, and compression tests were conducted to quantify their mechanical properties. Perceived softness was significantly predicted by displacement under load, however, perceptual ranking did not fully coincide with the physical ranking. Linear mixed-effects analyses showed that the softness of the outermost layer had the greatest impact on the perceived softness. Perceived softness also increased as the number of soft subsurface layers increased, although this contribution decreased with depth. Layers 2 and 3 showed significant effects, whereas Layer 4 did not. These findings suggest that haptic softness perception depends not only on the overall stiffness but also on the depth-dependent distribution of compliance within layered structures.

触觉感知分层结构3D打印软硬度

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