首页> 外文期刊>Journal of Mechanisms and Robotics: Transactions of the ASME >Theoretical and Experimental Study and Design Method of Blade Height of a Rotational-Flow Suction Unit in a Wall-Climbing Robot
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Theoretical and Experimental Study and Design Method of Blade Height of a Rotational-Flow Suction Unit in a Wall-Climbing Robot

机译:攀岩机器人旋转流动装置叶片高度的理论与实验研究与设计方法

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摘要

A wall-climbing robot that uses a rotational-flow suction unit to be non-contact-absorbed onto walls can climb rough walls and overstep obstacles. In the rotational-flow suction unit, the air driven by the blades rotates at a high speed within a chamber, thereby creating and maintaining a negative pressure distribution. This study is focused on the modeling and design of the blade height. First, a theoretical model of the rotation flow, containing two important parameters (i.e., blade height Hb and clearance h), was established and verified experimentally. Furthermore, the computational fluid dynamics (CFD) method was applied to illustrate the secondary flow relative to the blades, revealing that it gives rise to a nonlinear velocity distribution. It was found that an increase in the blade height greatly improves the F-h characteristics; in addition, the relationship between the power consumption and suction force ((E) over dot-F curve) is mainly determined by the clearance h instead of the blade height Hb. Based on these findings, we propose a design method for determining the suitable blade height. According to the characteristic load curves of the suction units (i.e., the T-omega curves) and the motor characteristics, suitable blades can be selected to match the motor operation (i.e., nominal operating state).
机译:攀岩机器人使用旋转流量吸入装置,以吸收到墙壁上,可以爬上粗糙的墙壁和超越障碍物。在旋转流动抽吸单元中,由叶片驱动的空气以高速在腔室内旋转,从而产生和保持负压分布。本研究专注于叶片高度的建模和设计。首先,在实验上建立并验证旋转流动的理论模型,其中包含两个重要参数(即叶片高度HB和间隙H)。此外,施加计算流体动力学(CFD)方法以说明相对于叶片的二次流动,揭示它产生了非线性速度分布。发现叶片高度的增加大大提高了F-H特性;另外,功耗和抽吸力之间的关系((e)通过DOT-F曲线)主要由间隙H而不是刀片高度Hb确定。基于这些发现,我们提出了一种确定合适的叶片高度的设计方法。根据抽吸单元的特征负载曲线(即,T-OMEGA曲线)和电动机特性,可以选择合适的刀片以匹配电动机操作(即,标称操作状态)。

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