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Novel 2D Dynamic Elasticity Maps for Inspection of Anisotropic Properties in Fused Deposition Modeling Objects

机译:用于检测融合沉积建模对象中各向异性特性的新型2D动态弹性图

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摘要

In this study, a novel ultrasonic non-destructive and non-invasive elastography method was introduced and demonstrated to evaluate the mechanical properties of fused deposition modeling 3D printed objects using two-dimensional dynamical elasticity mapping. Based on the recently investigated dynamic bulk modulus and effective density imaging technique, an angle-dependent dynamic shear modulus measurement was performed to extract the dynamic Young’s modulus distribution of the FDM structures. The elastographic image analysis demonstrated the presence of anisotropic dynamic shear modulus and dynamic Young’s modulus existing in the fused deposition modeling 3D printed objects. The non-destructive method also differentiated samples with high contrast property zones from that of low contrast property regions. The angle-dependent elasticity contrast behavior from the ultrasonic method was compared with conventional and static tensile tests characterization. A good correlation between the nondestructive technique and the tensile test measurements was observed.
机译:在本研究中,引入了一种新型超声波非破坏性和非侵入性弹性摄影方法,并证明了使用二维动态弹性映射来评估熔融沉积建模3D印刷物体的机械性能。基于最近研究的动态体积模量和有效密度成像技术,执行角度依赖性动态剪切模量测量以提取FDM结构的动态杨氏模量分布。弹性图图像分析证明存在在融合沉积建模3D印刷物体中存在的各向异性动态剪切模量和动态杨氏模量。非破坏性方法也将具有高造影区的样品与低对比度的高造影区。将超声波方法的角度依赖性弹性对比度与常规和静态拉伸试验表征进行比较。观察到非破坏性技术与拉伸试验测量之间的良好相关性。

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