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Evaluation of bruise resistance of pears to impact load

机译:梨抗冲击负荷的评估

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The main cause of bruises resulting in loss for fruit growers are dynamic and impact type loads to which fruit is exposed during harvesting, loading and transport. Due to the characteristic shape of the contact plane of the fruit during the impact with the hard surface of e.g., a box or another fruit, there appears a problem of pressure force concentrated in a small area, leading to local exceeding of allowable limits. The authors focused on experimental procedure aimed at quantitative assessment of damage to the 'Clapp's Favorite' pear fruit depending on the changes in surface pressures that occur during impact loads. The study analyzed the influence of impact loads on the bruise resistance by measuring the surface pressures at varying drop heights and a specified number of impacts. The Tekscan (R) system was applied to determine force impulse values and contact plane areas, which enabled the calculation of surface pressure distribution. A computer analysis of the images of damaged tissue was carried out in order to determine the bruise volume, and a method for evaluating bruise resistance in pears was proposed based on the obtained BRI indicators (bruise resistance index-relationship between contact pressure and bruise volume). Both the analysis of the instantaneous force values, contact planes and surface pressures, as well as verifying analysis of the volume images enabled to determine bruise resistance in the case of the investigated 'Clapp's Favorite' pears at level of 8%. Also the pear bruise threshold was estimated at 46 mm with force impulses of up to 100 N. The presented method allows for the determination of the bruise resistance of fruits with high water content by measuring the surface pressure, accounting for the shape of the fruit's surface, mechanical properties of the flesh, and compression force. (C) 2015 Elsevier B.V. All rights reserved.
机译:造成果农损失的瘀伤的主要原因是动态的和冲击型负载,在收获,负载和运输过程中,水果承受这种冲击。由于在与例如盒子或另一种水果的硬质表面碰撞时,水果的接触平面的特征形状,出现了压力集中在小区域内的问题,导致局部超过允许极限。作者专注于旨在定量评估“ Clapp's Favorite”梨果实受损程度的实验程序,该过程取决于冲击载荷期间发生的表面压力变化。该研究通过测量变化的液滴高度和指定次数的冲击下的表面压力,分析了冲击载荷对耐擦伤性的影响。应用Tekscan(R)系统确定力脉冲值和接触平面面积,从而可以计算表面压力分布。对受损组织的图像进行计算机分析以确定瘀伤量,并基于获得的BRI指标(接触压力与瘀伤量之间的瘀伤指数-关系),提出了一种评估梨抗瘀伤性的方法。 。瞬时力值,接触平面和表面压力的分析,以及对体积图像的验证分析,都可以确定在研究水平为8%的“ Clapp's Favorite”梨的情况下的抗擦伤性。此外,梨的瘀伤阈值估计为46 mm,力脉冲高达100N。所提出的方法可以通过测量表面压力来确定含水量高的水果的抗瘀伤性,这考虑了水果表面的形状,果肉的机械性能和压缩力。 (C)2015 Elsevier B.V.保留所有权利。

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