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Preparation and Characterization of Poly(butylenesuccinate)/Polylactide Blends for Fused Deposition Modeling 3D Printing

机译:聚丁烯的制备与表征琥珀酸酯/聚丙交酯共混物用于熔融沉积建模3D打印

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摘要

To obtain a new type of biodegradable material with high toughness and strength used for fused deposition modeling (FDM) printing, a series of poly(butylene succinate) (PBS)-based polymer materials was prepared via blending with polylactide (PLA). The rheological, thermal, and mechanical properties as well as FDM printing performances of the blends, such as distortion, cross section, and the interlayer bond strength, were characterized. The results show that with increasing PLA content, the blends possess higher melt viscosity, larger tensile strength, and modulus, which are more suitable for FDM printing. Especially, when the content of PLA is more than 40%, distortion due to residual stress caused by volume shrinkage disappears during the printing process and thus products with good dimensional accuracy and pearl-like gloss are obtained. The results demonstrate that the blend compositions with moderate viscosity, low degree of crystallinity, and high modulus are more suitable for FDM printing. Compared with the low elongation upon breaking of commercially FDM-printed material, the PBS/PLA blendmaterials exhibit a typical ductile behavior with elongation of 90–300%.Therefore, besides biodegradability, the PBS/PLA blends present excellentmechanical properties and suitability as materials for FDM printing.In addition, our study is expected to provide methods for valuatingthe suitability of whether a thermoplastic polymer material is suitablefor FDM printing or not.
机译:为了获得一种新型的具有高韧性和强度的新型可生物降解材料,用于熔融沉积建模(FDM)印刷,通过与聚丙交酯(PLA)混合制备了一系列基于聚丁二酸丁二酯(PBS)的聚合物材料。表征了共混物的流变,热和机械性能以及FDM印刷性能,例如变形,横截面和层间粘合强度。结果表明,随着PLA含量的增加,共混物具有更高的熔体粘度,更大的拉伸强度和模量,更适合FDM印刷。特别地,当PLA的含量大于40%时,由于体积收缩引起的残余应力引起的变形在印刷过程中消失,因此获得具有良好尺寸精度和珍珠状光泽的产品。结果表明,具有适度粘度,低结晶度和高模量的共混组合物更适合于FDM印刷。与商业FDM打印材料断裂时的低伸长率相比,PBS / PLA共混物材料表现出典型的延展性,伸长率为90–300%。因此,除了可生物降解性外,PBS / PLA共混物还具有出色的生物降解性。机械性能和作为FDM打印材料的适用性。此外,我们的研究有望提供评估方法热塑性聚合物材料是否合适的适用性是否进行FDM打印。

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