熔融长丝增材制造ABS倾斜试样的结构与断口可视化

D. Richkov, Y. Rosenthal, D. Ashkenazi, A. Stern
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引用次数: 0

摘要

熔丝制造(FFF)技术是用于打印ABS和许多其他热塑性材料的最常用的增材制造(AM)技术之一。使用FFF技术制造的3d打印部件的力学性能的各向异性仍然是使用该技术时主要关注的问题。因此,组件的取向、构建策略和打印参数影响力学性能,失效机制至关重要。本研究旨在通过研究FFF-ABS试件的结构和力学行为,并通过三点弯曲试验进行断口分析,部分填补这一空白。对倾斜试样在相对于机床平台0°、15°、30°、45°、60°和75°倾角下的抗弯性能进行了一系列试验。该工作描述了样品的制造方法,实验程序,以及FFF-ABS样品的机械和结构表征的结果。总体而言,测试样品观察到两种主要破坏模式:(1)层间/栅格间粘结破坏(典型的直立试件)和(2)层内/跨栅格破坏(典型的边缘试件)。在150°和600°的倾斜范围内,发现了混合层间/层内模式。
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Structure and Fracture Visualization of Tilted ABS Specimens Processed via Fused Filament Fabrication Additive Manufacturing
Fused filament fabrication (FFF) technique is one of the most frequently used additive manufacturing (AM) technologies for printing ABS and many other thermoplastic materials. The anisotropy of the mechanical properties of 3D-printed parts manufactured by FFF technology is still of major concern when using this technique. Thus, the component’s orientation, build strategy and printing parameters affect the mechanical properties, and failure mechanisms are of crucial importance. This research aims to partly fill this gap by studying the structure and mechanical behavior of FFF-ABS specimens, and by performing fracture surface analysis by the three-point bend flexural test. A series of tests were conducted to determine the flexural properties of tilted specimens at 0°, 15°, 30°, 45°, 60° and 75° inclination angles relative to the machine platform. The work describes manufacture method of the specimens, experimental procedures, and outcomes from the mechanical and structural characterizations of the FFF-ABS specimens. Overall, two main failure modes were observed for the tested specimens: (1) inter-layer/ inter-raster bond failure (typical for upright specimens) and (2) intra-layer/trans-raster failure (typical for on-edge specimens). A mixed inter-layer/ intra-layer mode was found for the specimens tilted in-between the 15o and 60o range.
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来源期刊
CiteScore
0.80
自引率
0.00%
发文量
1
审稿时长
16 weeks
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