采用基于印迹的设计方法和仿真优化的自动化夹具设计

L. C. M. W. Schwartz, Lars-Peter Ellekilde, N. Krüger
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引用次数: 1

摘要

在工业中,机器人装配任务的对象对准和夹具是成功完成装配的重要工具。然而,夹具的设计通常是手工完成的,这可能是一个漫长而乏味的过程,包括许多迭代,即使是有经验的工程师。本文提出了一种自动设计用于机器人装配和取放任务的夹具的方法。为了实现这一目标,介绍了一种新的夹具切割设计自动化方法。该方法使用对象印记的参数化版本来设计切割。使用该方法生成的夹具在仿真中进行了优化,以确定其用于特定应用的最终参数。动态仿真用于评估切割的每次迭代。最后,将该方法应用于工业用例,以设计用于机器人装配任务的夹具。
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Automated Fixture Design using an Imprint-based Design Approach and Optimisation in Simulation
Object aligning and holding fixtures for robotic assembly tasks are important in industry in order to successfully complete an assembly. However, the designing of a fixture is usually done manually which can be a long and tedious process including many iterations, even for experienced engineers. This paper presents a method to design fixtures automatically for use in robotic assemblies and pick-and-place tasks. To achieve this, a new automated method to design the cut-out for a fixture is introduced. The method uses a parameterized version of the object's imprint to design the cut-out. The fixtures generated using this method are optimized in simulations to determine their final parameters for a specific application. Dynamic simulations are used to evaluate each iteration of the cut-out. Lastly, the method is applied to a use-case from the industry to design a fixture for use in a robotic assembly task.
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