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Materials Forming of Dolphin Model for Hydrodynamic Research Based on the 3D Printing Technology

机译:基于3D打印技术的流体动力学研究模型的材料形成

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Traditional manufacturing techniques used for developing the models for hydrodynamic research are slow and costly. Based on the development of current technology, 3D printing technology could be the fastest way to generate the model for with high accuracy for experimental test. With the help of 3D printing technology, it would only take days or hours to generate the 3D model with complicated geometry. This paper presents the application of 3D printing method for dolphin model generation. Rigid and flexible dolphin 3D models are made with non-metallic. 3D printing parts include the outer mold and added stiffness to the model. The dolphin model is 1 m long, and does not have pectoral fin. The dolphin hydrodynamic model developed using 3D printing technology show promise in model development for future hydrodynamic model studies. A rigid model and two flexible models with different material have been built by 3D printing. The appropriate materials were chosen for flexible dolphin model, which have the similar properties with dolphin skin.
机译:用于开发流体动力学研究模型的传统制造技术缓慢且昂贵。基于当前技术的开发,3D打印技术可能是为实验测试高精度产生型号的最快方法。在3D打印技术的帮助下,它只需要几天或时间来生成具有复杂的几何形状的3D模型。本文介绍了三维打印方法对海豚模型的应用。刚性和柔性海豚3D模型采用非金属制成。 3D打印部件包括外模并向模型添加刚度。海豚模型长1米,没有胸鳍。使用3D印刷技术开发的海豚流体动力学模型在未来流动力模型研究模型开发中显示出的承诺。 3D打印建立了一个刚性模型和两个具有不同材料的柔性型号。选择合适的材料,用于柔性海豚模型,其具有与海豚皮肤相似的性质。

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