Franco-Urquiza Edgar Adrián, Escamilla Yael Ramírez, Alcántara Llanas Perla Itzel
National Council for Science and Technology (CONACYT-CIDESI), Center for Engineering and Industrial Development, Carretera Estatal 200, Querétaro 76265, Mexico.
Department of Mechatronics, Center for Engineering and Industrial Development (CIDESI), Carretera Estatal 200, Querétaro 76265, Mexico.
Polymers (Basel). 2021 Sep 22;13(19):3202. doi: 10.3390/polym13193202.
This work evaluates the feasibility to manufacture polylactic acid (PLA) composites using jute fiber fabrics. For characterization, PLA-fused filament was successfully deposed onto jute fabrics to print dog-bone tensile specimens (Type I specimen from ASTM D638). The jute fabrics were chemically modified, treated with flame retardant additives, and sprayed with aerosol adhesive to improve the mechanical properties of PLA/Jute fabric composites. The elastic modulus and the strength of PLA were higher than PLA composites, and the plastic deformation of the PLA composites was slightly lower than PLA. Tomography scans revealed the fabrics were well oriented and some adherence between jute fabrics and PLA. Viscoelastic properties of PLA composites resulted in the reduction in storage modulus and the reduction in intensity in the damping factor attributed to segmental motions with no variations in the glass transition temperature. Flame retardant and spray adhesive on jute fabrics promoted better response to time of burning than PLA and PLA with modified fibers. The results presented in this work lead to the need for a more detailed investigation of the effect of plant fiber fabrics as reinforcement of 3D printed objects for industrial applications.
这项工作评估了使用黄麻纤维织物制造聚乳酸(PLA)复合材料的可行性。为了进行表征,成功地将PLA熔丝沉积在黄麻织物上,以打印狗骨拉伸试样(ASTM D638中的I型试样)。对黄麻织物进行化学改性,用阻燃添加剂处理,并用气溶胶粘合剂喷涂,以改善PLA/黄麻织物复合材料的机械性能。PLA的弹性模量和强度高于PLA复合材料,PLA复合材料的塑性变形略低于PLA。断层扫描显示织物排列良好,黄麻织物与PLA之间有一些粘附。PLA复合材料的粘弹性导致储能模量降低,以及由于链段运动导致的阻尼因子强度降低,而玻璃化转变温度没有变化。黄麻织物上的阻燃剂和喷雾粘合剂比PLA以及带有改性纤维的PLA对燃烧时间的反应更好。这项工作中呈现的结果表明,需要更详细地研究植物纤维织物作为工业应用3D打印物体增强材料的效果。