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Breakage characteristics of granulated food products for prediction of attrition during lean-phase pneumatic conveying

机译:用于预测稀相气力输送过程中磨损的颗粒状食品的破碎特性

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摘要

Pneumatic conveying is utilised in a variety of industries to convey food products exhibiting diverse handling characteristics. Attrition of particles caused by this conveying process can result in a number of undesirable outcomes such as loss in product quality or issues in subsequent handling processes. The ability to predict the breakage behaviour of particulate materials is desirable in both new system design and resolving issues in existing plants. This work considers two different particulate materials (Salt and Golden Breadcrumbs) across a range of particle sizes, and quantifies their breakage behaviour under varying impact conditions. Narrow size fractions of each material was degraded; material retained on 250 µm and 355 µm sieves for salt, and 500µm, 710µm and 1000 µm sieves for Golden Breadcrumbs. Velocity was found to be the most influential factor with respect to particle attrition. The results from the narrow size fraction tests were superimposed to form a simulated full size distribution breakage behaviour, which was then compared to the experimentally determined behaviour. A good agreement was found, however the proportion of material predicted for size fractions smaller than 355 µm for Golden Breadcrumbs and 180 µm for Salt was under-predicted. Recommendations for increasing accuracy of the prediction method are given.
机译:气动输送被用于各种工业中,以输送具有多种处理特性的食品。由该输送过程引起的颗粒磨损会导致许多不良后果,例如产品质量损失或后续处理过程中的问题。在新系统设计和解决现有工厂中的问题时,都需要具有预测颗粒材料的破坏行为的能力。这项工作考虑了整个粒径范围内的两种不同的颗粒物质(盐和金面包屑),并量化了它们在不同冲击条件下的破坏行为。每种材料的窄尺寸级分都降低了;材料保留在250 µm和355 µm的筛子上以撒盐,保留在500µm,710µm和1000 µm的筛子以撒金面包屑。速度是影响颗粒磨损的最重要因素。将窄尺寸分数测试的结果叠加起来,以形成模拟的全尺寸分布破坏行为,然后将其与实验确定的行为进行比较。发现了很好的一致性,但是,对于金黄色面包屑和盐对于尺寸份额小于355 µm以及对盐来说小于180 µm的材料,其比例预计不足。给出了提高预测方法准确性的建议。

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