面向机器人采摘的番茄力学特性试验

    Experimental study on mechanical properties of tomatoes for robotic harvesting

    • 摘要: 番茄果实及果梗的力学特性,是采摘机器人设计与控制的重要依据。对不同成熟期的番茄果实进行了纵向和横向挤压试验,对其果梗进行了折断和拉断试验。试验表明番茄果实的抗挤压能力具有明显的各向异性,且从青果期至绿熟期达到最大,而后随着成熟度增加而迅速减小。利用简化结构对这一规律的力学原理进行了分析。果梗拉断和折断试验发现,果梗均从离层处断裂,与拉断相比,折断方式更省力和易于实现机器人采摘。

       

      Abstract: Mechanical properties of tomato fruits and its peduncles are vital basis in design and control of tomato harvesting robot. Tests of compression from transversal and longitudinal directions for tomato fruit of different ripening phases, and tests of bending and stretching for tomato peduncle were conducted. Test results show the tomato fruits’ capacity of resistance for compression is significant anisotropy and it reaches the peak from greenness stage to green ripening stage, and then falls rapidly with increase of maturity. These results are explained with simplified force structure. Test results of stretching and bending for tomato peduncles indicate that all peduncles break at absciss layer and peduncle bending is a better way to detach fruit for robotic tomato- harvesting.

       

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