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由丙烯腈-丁二烯-苯乙烯(ABS)制成的具有径向和正交排列单元的圆柱形晶格试样弯曲行为的比较。

Comparison of the Bending Behavior of Cylindrically Shaped Lattice Specimens with Radially and Orthogonally Arranged Cells Made of ABS.

作者信息

Monkova Katarina, Monka Peter Pavol, Vodilka Adrián

机构信息

Faculty of Manufacturing Technologies with a Seat in Prešov, Technical University in Kosice, 080 01 Presov, Slovakia.

Faculty of Technology, Tomas Bata University in Zlin, Nam. T.G. Masaryka 275, 760 01 Zlin, Czech Republic.

出版信息

Polymers (Basel). 2024 Apr 3;16(7):979. doi: 10.3390/polym16070979.

Abstract

The article deals with the comparison of the bending behavior of cylindrical lattice samples with radially and orthogonally arranged cells made of ABS material. The structures were designed in PTC Creo Parametric 8 software, while four types of lattice structures were evaluated: Rhombus, Cuboidal BCC, Octagon, and Starry, in three material volume fractions: 44, 57, and 70%, together with tubular and rod-shaped samples. The Fused Filament Fabrication (FFF) technique was chosen for the production of ABS plastic samples. Based on the bending tests, the dependences of the force on the deflection were recorded and the obtained data were statistically processed to identify outliers using the Grubbs test. The maximum stresses were calculated and the dependences of the stresses on the volume fractions were plotted. Along with energy absorption, ductility indices were also specified. Although the Rhombus structure appears to be the best based on the ductility indices obtained, on the other hand, the structure showed the lowest values of bending stresses (in the range from 10.6 to 12.6 MPa for volume fractions ranging from 44 to 70%, respectively). Therefore, from a synergic point of view of both factors, stress and ductility, the Starry structure exhibits the best flexural properties among those investigated.

摘要

本文探讨了由ABS材料制成的具有径向和正交排列单元的圆柱形晶格样品的弯曲行为比较。这些结构在PTC Creo Parametric 8软件中进行设计,同时评估了四种晶格结构:菱形、立方体型体心立方晶格、八边形和星形,三种材料体积分数分别为44%、57%和70%,还包括管状和棒状样品。选择熔融长丝制造(FFF)技术来生产ABS塑料样品。基于弯曲试验,记录了力与挠度的关系,并对所得数据进行统计处理,使用格拉布斯检验识别异常值。计算了最大应力,并绘制了应力与体积分数的关系图。除了能量吸收外,还指定了延性指数。尽管根据获得的延性指数,菱形结构似乎是最好的,但另一方面,该结构的弯曲应力值最低(对于体积分数分别为44%至70%的情况,弯曲应力范围为10.6至12.6 MPa)。因此,从应力和延性这两个因素的协同角度来看,在研究的结构中,星形结构表现出最佳的弯曲性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d8b3/11013487/4d94311cfa46/polymers-16-00979-g001.jpg

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