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Experimental characterization and modeling of the mechanical behavior of brittle 3D printed food

机译:脆性3D印刷食品力学行为的实验表征及建模

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摘要

3D printing is a unique manufacturing method that enables food customization. The development of a modeling framework to predict mechanical properties of food products is an invaluable tool in such a customization process. To set up this framework, 3D printed samples are mechanically characterized by means of compression testing. The observed phenomena are captured in a constitutive model that describes the large deformation behavior and the brittle failure of the material. Due to the rough contact surface of 3D printed samples, spatial homogeneity is lost and parameter identification is rendered not straightforward. To incorporate this non-uniformity, the model is implemented in a finite element package. Simulations reveal the influence of this geometrical effect, allowing to identify the model parameters by which the mechanical behavior of the material is adequately described.
机译:3D打印是一种独特的制造方法,可实现食品定制。在这种定制过程中,以预测食品的机械性能的建模框架的发展是一种宝贵的工具。要设置此框架,通过压缩测试机械地表征3D打印样品。观察到的现象在构成模型中捕获,该模型描述了大的变形行为和材料的脆性失效。由于3D印刷样品的粗糙接触表面,丢失了空间均匀性,并且参数识别不简单。为了包含这种不均匀性,该模型是在有限元包中实现的。仿真揭示了这种几何效果的影响,从而旨在识别材料的机械行为被充分描述的模型参数。

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