Batistella Marcos, Pucci Monica Francesca, Regazzi Arnaud, Lopez-Cuesta José-Marie, Kadri Ouassila, Bordeaux David, Ayme Florence
Polymers Composites and Hybrids (PCH), IMT Mines Ales, 30319 Ales, France.
LMGC, IMT Mines Ales, University Montpellier, CNRS, 30319 Ales, France.
Materials (Basel). 2022 Feb 26;15(5):1773. doi: 10.3390/ma15051773.
In the present work, the processability and fire behavior of parts made by the laser sintering (LS) of polyamide 12/rubber powder blends is studied. In order to evaluate some of the interactions that could take place during LS, three acrylonitrile butadiene rubbers (NBRs) were used, which included two that had different acrylonitrile (AN) contents, and one that had carboxylated rubber. The results show that the flowability of the powders is strongly dependent on the rubber used. For the carboxylated rubber, a good flowability of the blend was observed, whereas the use of rubbers with different AN contents led to significant changes in the powder flowability, with a heterogeneous powder bed, and differences in the porosity as a function of the AN content. Furthermore, the addition of rubbers to polyamide 12 (PA12) entails an increase in the sintering window and, in particular, a change in the melting temperature of PA12 is noticed. Even though some changes in the crystallization and melting temperatures are observed, formulations containing 10 and 20 wt.% of rubbers could be processed using the same process parameters as PA12. Furthermore, the formulations containing carboxylated rubber show improved fire behavior, which is measured by a cone calorimeter, with reductions of about 45 and 65% in the peak of the heat release rate, compared to the PA12. Moreover, almost all of the samples evaluated in this study are classed as "Good" by the Flame Retardancy Index. This result can be partially explained by the formation of an amide linkage between the polyamide and NBR during processing, which could result in increases in the melt viscosities of these samples.
在本研究中,对聚酰胺12/橡胶粉末共混物激光烧结(LS)制成的部件的加工性能和燃烧行为进行了研究。为了评估LS过程中可能发生的一些相互作用,使用了三种丙烯腈-丁二烯橡胶(NBR),其中包括两种丙烯腈(AN)含量不同的橡胶和一种羧化橡胶。结果表明,粉末的流动性强烈依赖于所使用的橡胶。对于羧化橡胶,观察到共混物具有良好的流动性,而使用不同AN含量的橡胶会导致粉末流动性发生显著变化,粉末床不均匀,并且孔隙率随AN含量而变化。此外,向聚酰胺12(PA12)中添加橡胶会使烧结窗口增大,特别是注意到PA12的熔点发生了变化。尽管观察到结晶温度和熔点有一些变化,但含有10 wt.%和20 wt.%橡胶的配方可以使用与PA12相同的工艺参数进行加工。此外,含有羧化橡胶的配方显示出改善的燃烧行为,通过锥形量热仪测量,与PA12相比,热释放速率峰值降低了约45%和65%。此外,本研究中评估的几乎所有样品根据阻燃指数都被归类为“良好”。这一结果可以部分解释为在加工过程中聚酰胺和NBR之间形成了酰胺键,这可能导致这些样品的熔体粘度增加。