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Bruise Simulation in Peach Grading Lines as a tool for designing Improvement Strategies.

机译:桃分级线中的瘀伤模拟作为设计改进策略的工具。

摘要

The Physical Properties Laboratory (LPF) has been working on the improvement of fruit and vegetable grading lines since 1992'. The experience shows that the improvement of grading lines for decreasing mechanical damages has to be approached from two viewpoints: 1) machinery aggressiveness, and 2) fruit susceptibility. Machinery aggressiveness can be characterized as impact probability for different impact intensities assessed by means of electronic fruits (IS-100) 2,5 . On the other hand, bruise susceptibility can be determined using different laboratory tests. A recent study from LPF4 shows that damage may arise differently in pome and in stone fruits, since: a) pome fruits are mainly stress-susceptible, while stone fruits appear to be more deformation-susceptible, and b) bruise size may be a good predictor for bruise susceptibility in pome fruits while for stone fruits bruise probability is the most relevant characteristic of bruise susceptibility. Also, this study indicates the feasibility of predicting bruise probability using several mechanical and load characterization parameters. Despite the efforts to establish damage thresholds in peachess, no simulation models are currently available for predicting bruise occurrence in grading lines.
机译:自1992年以来,物理性能实验室(LPF)一直致力于改善果蔬分级线。经验表明,必须从以下两个方面来改进分级线以减少机械损伤:1)机械侵蚀性,以及2)水果敏感性。机械的侵略性可以表征为通过电子水果(IS-100)2,5评估的不同冲击强度的冲击概率。另一方面,可以使用不同的实验室测试来确定瘀伤敏感性。 LPF4的最新研究表明,梨果和核果的损害可能以不同的方式发生,因为:a)梨果主要是易受压力的,而核果似乎对变形更易受,并且b)瘀伤的大小可能是一个好选择。石榴果实中青紫敏感性的预测指标,而核果类青紫可能性是青紫敏感性的最相关特征。此外,这项研究还表明了使用几种机械和载荷表征参数预测青肿发生概率的可行性。尽管为建立桃子中的损伤阈值做出了努力,但目前尚没有模拟模型可用于预测等级线中的瘀伤发生。

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