Effect of raster angle on mechanical properties of 3D printed short carbon fiber reinforced acrylonitrile butadiene styrene

被引:40
|
作者
Iyer, Skhandesh Srinivasan Ganesh [1 ]
Keles, Ozgur [1 ]
机构
[1] San Jose State Univ, Dept Chem & Mat Engn, San Jose, CA 95192 USA
关键词
Polymer composites; Fiber reinforcement; Additive manufacturing; Raster angle; Tensile strength; Flexural strength; Fracture toughness; FUSED DEPOSITION MATERIALS; RELIABILITY; ORIENTATION; COMPOSITES; STRENGTH; BEHAVIOR; LENGTH;
D O I
10.1016/j.coco.2022.101163
中图分类号
TB33 [复合材料];
学科分类号
摘要
The most common additive manufacturing technique fused filament fabrication (FFF) suffers from inter-bead porosity that reduces mechanical properties. Inter-bead pores follow the raster angle, which causes anisotropic mechanical properties. Yet, the effects of raster angle on the mechanical behavior of short-carbon-fiberreinforced (SCFR) thermoplastics are unclear. In this study, we performed tensile, flexural, and fracture toughness tests on SCFR acrylonitrile butadiene styrene (ABS). Raster angles of 0 degrees, 15 degrees, 30 degrees, 45 degrees, 60 degrees, 75 degrees, and 90 degrees were investigated. Tensile strength and elastic modulus decreased by 22-35% for a change from 0 degrees to 15 degrees. Flexural strength and modulus were less sensitive to raster angle. Flexural strengths were at least 50% more than tensile strength for the same raster angle. Whereas flexural modulus is at least 15% less than elastic modulus. Fracture toughness showed a non-linear relationship with the raster angle. Maximum fracture toughness was observed at 0 degrees and 60 degrees rasters. Crack deflection was observed as the toughening mechanism.
引用
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页数:5
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