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Effect of Air Pressure and shaking Frequency on Fruit Damage in Mechanical Harvesting of Apples

机译:空气压力和摇动频率对苹果机械收获果实损伤的影响

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Low fruit quality is the most critical barrier for the success of mechanical harvesting of fresh market apples using mass harvesting methods. To address the fruit quality issues, reduce the damage rate, and expedite the commercialization of mechanicalharvesting of fresh market apples, an innovative air suspension-based catching(ASC) mechanism were designed and fabricated to collect fruit detached by mechanical shaking device (apple tree limb shaker). The objective of this paper was to investigate the effect of air suspension and shaking frequency on fruit damage in mechanical harvesting of apples. Three apple varieties with different physical characteristics ('Honeycrisp', 'Pacific Rose', and 'Pink lady') were used to conduct the field trials. Theair pressure settings for the ASC mechanism played an important role in reducing the risk of apple damage and improve the fruit quality. The effect of shaking frequency of apple tree limb shaker on fruit quality was not significant. With the pressure increasedfrom 0 to 1.03 MPa, the fruit quality had been greatly improved. Due to the limit of air compressor used in this study, the air suspension-based catching mechanism was only tested in limited pressure range. In future, the test pressure range may beexpanded more to improve the catching performance in reducing fruit damage.
机译:低水果质量是使用大规模收获方法机械收集新鲜市场苹果成功的最关键障碍。为解决水果质量问题,降低损害率,并加快新鲜市场机械的商业化,设计并制造了一种创新的空气悬架捕获(ASC)机制,以收集由机械摇动装置拆卸的水果(苹果树肢体振动筛)。本文的目的是探讨空气悬架和摇动频率对苹果机械收获果实损伤的影响。三种具有不同身体特征的苹果品种('Honeycrisp','Pacific Rose'和'Pink Lady')用于进行现场试验。 ASC机制的灰色压力设置在降低苹果损伤的风险并提高水果质量方面发挥了重要作用。苹果树肢体振动器摇动频率对水果质量的影响并不重要。压力从0到1.03 MPa增加,水果质量得到了大大提高。由于本研究中使用的空气压缩机的极限,仅在有限的压力范围内测试了空气悬浮液的捕集机理。将来,测试压力范围可能呈现出更多以改善降低果实损伤的捕获性能。

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