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Evaluation of the Surface Roughness of Additive Manufacturing Parts Based on the Modelling of Cusp Geometry

机译:基于尖锐几何模型的增材制造零件表面粗糙度评估

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Most of commonly used Additive manufacturing (AM) technologies are developed based on a layered manufacturing process to fabricate 3D models. However, a critical drawback that reduces the surface quality of the AM parts is the stair case effect as a direct result of the layered deposition of the material. The final surface roughness of the products has been a key problem in AM. In this paper, a new approach to model surface roughness in Fused Deposition Modeling (FDM) is proposed. Based on actual observation and modeling of the cusp geometry under various setups and fabrication condition, an empirical model to express surface roughness distribution is presented. Considering the fact that the edge profiles crucially affect the surface quality, the developed model is used directly to estimate surface roughness of the final product. The proposed expression is verified by implementation and comparison with the experimental case data.
机译:大多数常用的增材制造(AM)技术都是基于分层制造工艺开发的,以制造3D模型。但是,降低AM零件表面质量的一个关键缺点是阶梯效应,这是材料分层沉积的直接结果。产品的最终表面粗糙度一直是增材制造的关键问题。在本文中,提出了一种新的在熔融沉积建模中进行表面粗糙度建模的方法。在各种设置和制造条件下,根据对尖角几何形状的实际观察和建模,提出了表示表面粗糙度分布的经验模型。考虑到边缘轮廓会严重影响表面质量这一事实,开发的模型可直接用于估算最终产品的表面粗糙度。通过实现并与实验案例数据进行比较,验证了所提出的表达式。

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