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Discrete Element Method Modelling of the Diametral Compression of Starch Agglomerates

机译:淀粉团块径向压缩的离散元方法建模

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摘要

Starch agglomerates are widely applied in the pharmaceutical, agricultural, and food industries. The formation of potato starch tablets and their diametral compression were simulated numerically and verified in a laboratory experiment to analyse the microscopic mechanisms of the compaction and the origins of their breakage strength. Discrete element method (DEM) simulations were performed using EDEM software. Samples comprised of 120,000 spherical particles with radii normally distributed in the range of 5–36 μm were compacted in a cylindrical die with a diameter of 2.5 cm. The linear elastic–plastic constitutive contact model with a parallel bonded-particle model (BPM) was used to model the diametral compression. DEM simulations indicated that the BPM, together with the linear elastic–plastic contact model, could describe the brittle, semi-brittle, or ductile breakage mode, depending on the ratio of the strength to Young’s modulus of the bond and the bond-to-contact elasticity ratio. Experiments confirmed the findings of the DEM simulations and indicated that potato starch (PS) agglomerates can behave as a brittle, semi-brittle, or ductile material, depending on the applied binder. The PS agglomerates without any additives behaved as a semi-brittle material. The addition of 5% of ground sugar resulted in the brittle breakage mode. The addition of 5% gluten resulted in the ductile breakage mode.
机译:淀粉团聚物广泛应用于制药,农业和食品工业。对马铃薯淀粉片的形成及其径向压缩进行了数值模拟,并在实验室实验中进行了验证,以分析压实的微观机理及其断裂强度的来源。离散元方法(DEM)仿真是使用EDEM软件进行的。将由120,000个半径通常在5–36μm范围内分布的球形颗粒组成的样品压紧在直径为2.5 cm的圆柱形模具中。线性弹塑性本构接触模型和平行键合颗粒模型(BPM)用于模拟径向压缩。 DEM模拟表明,BPM与线性弹塑性接触模型一起,可以描述脆性,半脆性或延性断裂模式,具体取决于键的强度与杨氏模量的比以及键与键之间的关系。接触弹性比。实验证实了DEM模拟的发现,并表明马铃薯淀粉(PS)附聚物可以表现为脆性,半脆性或延性材料,具体取决于所施加的粘合剂。没有任何添加剂的PS团聚体表现为半脆性材料。添加5%的糖粉会导致脆性断裂。添加5%的面筋会导致韧性破坏模式。

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