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注射成型和3D打印的膨胀型生物基聚乳酸复合材料的阻燃性能:蒙脱石的布朗斯特酸度和路易斯酸度的影响

Flame-Retarding Properties of Injected and 3D-Printed Intumescent Bio-Based PLA Composites: The Influence of Brønsted and Lewis Acidity of Montmorillonite.

作者信息

Martins Raíssa Carvalho, Ribeiro Simone Pereira da Silva, Rezende Michelle Jakeline Cunha, Nascimento Regina Sandra Veiga, Nascimento Marco Antonio Chaer, Batistella Marcos, Lopez-Cuesta José-Marie

机构信息

Instituto de Química, Universidade Federal do Rio de Janeiro, Cidade Universitária, CT, Bloco A, Rio de Janeiro 21941-909, RJ, Brazil.

Polymères Composites et Hybrides (PCH), IMT Mines Alès, 6, Avenue de Clavières, 30319 Alès, France.

出版信息

Polymers (Basel). 2022 Apr 21;14(9):1702. doi: 10.3390/polym14091702.

Abstract

The influence of processing intumescent bio-based poly(lactic acid) (PLA) composites by injection and fused filament fabrication (FFF) was evaluated. A raw (ANa) and two acidic-activated (AH2 and AH5) montmorillonites were added to the intumescent formulation, composed by lignin and ammonium polyphosphate, in order to evaluate the influence of the strength and the nature (Brønsted or Lewis) of their acidic sites on the fire behavior of the composites. The thermal stability and the volatile thermal degradation products of the composites were assessed. The injected and 3D-printed composites were submitted to cone calorimeter (CC), limit oxygen index (LOI), and UL-94 flammability tests. A similar tendency was observed for the injected and 3D-printed samples. The high density of strong Lewis sites in AH2 showed to be detrimental to the fire-retarding properties. For the CC test, the addition of the intumescent composite reduced the peak of heat released (pHRR) in approximately 49% when compared to neat PLA, while the composites containing ANa and AH5 presented a reduction of at least 54%. However, the addition of AH2 caused a pHRR reduction of around 47%, close to the one of the composite without clay (49%). In the LOI tests, the composites containing ANa and AH5 achieved the best results: 39% and 35%, respectively, for the injected samples, and 35 and 38% for the 3D-printed samples. For the composite containing AH2 the LOI values were 34% and 32% for injected and 3D-printed samples, respectively. Overall, the best performance in the flammability tests was achieved by the composites containing clays with only weak and moderate strength acidic sites (ANa and AH5).

摘要

评估了通过注塑成型和熔融长丝制造(FFF)工艺加工膨胀型生物基聚乳酸(PLA)复合材料的影响。将一种原始(ANa)蒙脱石和两种酸性活化(AH2和AH5)蒙脱石添加到由木质素和聚磷酸铵组成的膨胀型配方中,以评估其酸性位点的强度和性质(布朗斯台德或路易斯)对复合材料燃烧性能的影响。评估了复合材料的热稳定性和挥发性热降解产物。将注塑成型和3D打印的复合材料进行锥形量热仪(CC)、极限氧指数(LOI)和UL-94燃烧性测试。注塑成型和3D打印的样品呈现出相似的趋势。AH2中高密度的强路易斯位点对阻燃性能不利。对于CC测试,与纯PLA相比,添加膨胀型复合材料使热释放峰值(pHRR)降低了约49%,而含有ANa和AH5的复合材料的pHRR降低了至少54%。然而,添加AH2导致pHRR降低了约47%,接近不含粘土的复合材料(49%)。在LOI测试中,含有ANa和AH5的复合材料取得了最佳结果:注塑成型样品分别为39%和35%,3D打印样品分别为35%和38%。对于含有AH2的复合材料,注塑成型和3D打印样品的LOI值分别为34%和32%。总体而言,在燃烧性测试中,含有仅具有弱和中等强度酸性位点的粘土(ANa和AH5)的复合材料表现最佳。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f0d3/9105856/bc231e12f49d/polymers-14-01702-g001a.jpg

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