Tensile and Flexural Performance of Hybrid FDM and Compression Moulded PLA/Basalt Biocomposite

Mirza Faizaan, Satish Shenoy, Chandrakant R. Kini
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Abstract

Emerging trends in extrusion-based additive manufacturing (AM) focus on improving the mechanical performance of pristine polymers with high strength reinforcing materials. Prominent reviews have indicated a heavy dependence on PLA polymer for fused deposition Modeling (FDM) based studies. To promote biodegradability, the effect of natural fibres as reinforcement has been widely researched in the literature. However, it is noted that discontinuous natural fibre reinforcement yields negative or negligible improvement in the strength and modulus of FDM-based biocomposites. Hence, an attempt to hybridise FDM with a conventional composite manufacturing method was made in this study by cladding natural fibre reinforcement over FDM-based polymer. Tensile and flexural test coupons were additively manufactured by FDM and reinforced with a skin of bi-directional woven basalt fibre through compression moulding. A 90% improvement in tensile strength and a similar significant increase in flexural strength was observed. Further, an average increment of 46.38% and 237.24% in tensile and flexural modulus, respectively, was achieved through this manufacturing technique. In conclusion, a drastic improvement in mechanical performance can be obtained through the hybridisation of manufacturing methods and needs further investigation towards the compatibility of adhesive materials with FDM polymers.
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混合 FDM 和压缩成型聚乳酸/钴生物复合材料的拉伸和挠曲性能
以挤压为基础的增材制造(AM)的新趋势侧重于利用高强度增强材料改善原始聚合物的机械性能。著名评论指出,基于熔融沉积成型(FDM)的研究对聚乳酸聚合物的依赖性很大。为了促进生物降解性,文献中广泛研究了天然纤维作为增强材料的效果。然而,人们注意到,不连续的天然纤维加固对基于 FDM 的生物复合材料的强度和模量的改善是负面的,甚至可以忽略不计。因此,本研究尝试将 FDM 与传统复合材料制造方法混合,在基于 FDM 的聚合物上包覆天然纤维增强材料。拉伸和弯曲测试试样由 FDM 加成制造,并通过压缩模塑用双向编织的玄武岩纤维表皮进行加固。拉伸强度提高了 90%,弯曲强度也有类似的显著提高。此外,通过这种制造技术,拉伸和弯曲模量分别平均提高了 46.38% 和 237.24%。总之,通过混合制造方法,机械性能可以得到大幅提高,因此需要进一步研究粘合剂材料与 FDM 聚合物的兼容性。
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