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A diagram of the minimum necessary internal force required to resist external forces on two-point-grasped objects in two-dimensional space

机译:二维空间中抵抗两点抓取物体上的外力所需的最小必要内力图

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This paper considers the magnitude of the gripping power, i.e., the internal force that depends on the grasping posture or object orientation in a two-dimensional grasp by two contact points with friction. Expressing the effect of variations in the object posture as the direction of an external force, we propose an "internal force diagram." The internal force necessary to create a statically stable grasp is depicted in the object coordinate frame. Then, a polar coordinate system is introduced in which the orientation represents the direction of the external force, while the distance from the origin represents the minimum necessary internal force. We demonstrate a method based on friction cone configurations to manually draw the internal force diagram, using only a ruler and a compass. The validity of this drawing method is confirmed by a comparison with computer-generated plots. Finally, the characteristics of the internal force diagram are discussed.
机译:本文考虑了抓握力的大小,即内力取决于在两个抓握点之间的摩擦而在二维抓握中的抓握姿势或物体方向。为了表达物体姿态变化作为外力方向的影响,我们提出了“内力图”。在对象坐标系中显示了创建静态稳定抓握所需的内力。然后,引入极坐标系,其中的方向表示外力的方向,而到原点的距离表示最小的必要内力。我们演示了一种基于摩擦锥配置的方法,仅使用标尺和指南针即可手动绘制内力图。通过与计算机生成的绘图进行比较,可以确认这种绘制方法的有效性。最后,讨论了内力图的特征。

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