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Development of a Mixing Mechanism with a Complex Motion of the End-effector

机译:具有末端效应器复杂运动的混合机构的研制

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摘要

This study is focused on the development and analysis of a single-driven mixing mechanism, synthesized with a minimum number of links and joints. The end-effector of this mechanism is designed as a screw ending with a mixing element (blades) moving along a spatial trajectory. The end-effector is set between movable links in the kinematic chain of the mechanism. This allows increasing the working zone of the endeffector. The study provides kinematic analysis via an analytical method of coordinate transformations that have resulted in the detection of variable kinematic parameters (tilt angles and displacements in joints) depending on driving link rotation angle. Based on these results, the motion trajectory of the mixing element has been analytically determined and reproduced. Analytical findings have been verified by results of motion simulations. The presented mechanism is advisable to use for the preparation of various mixtures and levelling the concentrations and temperature of mixed substances. The mechanism can be used in the food, medical, chemical, and construction industries, as well as in agriculture.
机译:该研究专注于开发和分析单次混合机构,用最小数量的环节和关节合成。该机构的末端执行器被设计为具有沿空间轨迹移动的混合元件(刀片)的螺钉。末端执行器在机构的运动链中的可移动链路之间设定。这允许增加endeffector的工作区。该研究通过坐标变换的分析方法提供了运动学分析,该方法导致检测可变运动学参数(接头中的倾斜角度和位移),这取决于驱动链路旋转角度。基于这些结果,已经在分析和再现了混合元件的运动轨迹。通过运动模拟的结果验证了分析结果。所提出的机制是建议用于制备各种混合物并调平混合物质的浓度和温度。该机制可用于食品,医疗,化学和建筑行业以及农业中。

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