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Cracking cone fracture after cold compaction of argillaceous particles

机译:冷却骨质颗粒冷压缩后的锥形骨折

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Cold uniaxial pressing of powder into a green body is a common forming process used in ceramic and pharmaceutical industries. Argillaceous particles are used as a model system to investigate granule failure during compaction. Indeed, the volume enclosed between the die and punches is reduced and the powder consolidates until a final height is obtained or a prescribed compacting pressure is reached. Desired properties of the green body are high strength, uniform density, no defects and fracture. In this work an experimental investigation has been focused on the 'cracking cone' fracture in powder compacts. This includes studies of crack propagation and determination of operating conditions to avoid the green body fracture. The numerical modelling is implemented using a finite element method based on the Von Mises criterion. A case of simulation is presented to demonstrate the ability of the model to compute the distribution of the relative stresses.
机译:冷的单轴将粉末压入绿色身体是一种用于陶瓷和制药行业的常见成型过程。 骨质颗粒用作模型系统,以研究压实过程中的颗粒衰竭。 实际上,封闭在管芯和冲头之间的体积减小,并且粉末固结直到获得最终高度或达到规定的压缩压力。 绿体的所需性质是高强度,密度均匀,无缺陷和骨折。 在这项工作中,实验研究一直专注于粉末块中的“开裂锥体”骨折。 这包括对裂纹繁殖和测定操作条件的研究,以避免生绿体骨折。 使用基于Von Mises标准的有限元方法来实现数值建模。 提出了模拟的情况以证明模型计算相对应力的分布的能力。

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