Modeling of Flexible Belt Objects toward Their Manipulation

H. Wakamatsu, Tatsuya Yamasaki, E. Arai, S. Hirai
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引用次数: 5

Abstract

A modeling method of flexible belt objects is proposed. Deformation of a belt object such as film circuit boards or flexible circuit boards must be estimated for automatic manipulation and assembly. In this paper, we assume that deformation of an inextensible belt object can be described by the shape of its central axis in a longitudinal direction called "the spine line" and lines with zero curvature called "rib lines". This model is referred to as a "fishbone model" in this paper. First, we describe deformation of a rectangular belt object using differential geometry. Next, we propose the fishbone model considering characteristics of a developable surface, i.e., a surface without expansion or contraction. Then, we formulate potential energy of the object and constraints imposed on it. Moreover, this model is applied to a bent belt object. Finally, we explain a procedure to compute the deformed shape of straight and bent objects and compare their shape with measured shape to demonstrate the validity of our proposed method.
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面向柔性带对象操纵的建模
提出了一种柔性带对象的建模方法。带状物体(如薄膜电路板或柔性电路板)的变形必须进行估计,以便进行自动操作和组装。在本文中,我们假设一个不可扩展的带状物体的变形可以用其中轴线在纵向上的形状来描述,称为“脊柱线”,曲率为零的线条称为“肋骨线”。本文将此模型称为“鱼骨模型”。首先,我们用微分几何描述矩形带物体的变形。接下来,我们提出了考虑可展表面特征的鱼骨模型,即无膨胀或收缩的表面。然后,我们给出了物体的势能和施加在物体上的约束。此外,该模型还适用于弯曲带对象。最后,我们解释了一种计算直线和弯曲物体变形形状的程序,并将其形状与测量形状进行了比较,以证明我们提出的方法的有效性。
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