Polypropylene (PP) nanocomposites with transition metal (MgCoAl, MgNiAl, MgCuAl, MgZnAl) layered double hydroxides (t-LDHs): Flammability, thermal and mechanical analysis

IF 9.9 Q1 MATERIALS SCIENCE, COMPOSITES
Sajid Naseem , Sven Wießner , Ines Kühnert , Frederick J.W.J. Labuschagné , Andreas Leuteritz
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引用次数: 4

Abstract

Over the last few years, transition metal based LDHs are drawing more and more attention. This is especially true for tri-metal LDHs due to their wide range of applications. This research work highlights four types of tri-metal layered double hydroxide (t-LDH) that were synthesized and used in polypropylene (PP) nanocomposites. The effect and interaction of cobalt (Co), nickel (Ni), copper (Cu) and zinc (Zn) containing MgAl LDHs in PP nanocomposite were prepared and tested. These t-LDHs (MgCoAl, MgNiAl, MgCuAl, MgZnAl) were synthesized using the urea hydrolysis method. The t-LDH/PP nanocomposites were prepared using melt mixing in a small-scale compounder. Structural and morphological analysis of t-LDH and their PP nanocomposites were done using XRD spectroscopy and SEM. The thermal behaviour of the nanocomposites was studied using DSC and TGA. Rheological analysis was done using a rheometer, flammability was analysed using limiting oxygen index (LOI) and UL94 testing. Mechanical properties were compared by a UTM and Charpy impact test. The thermal stability, flame retardancy and mechanical strength are increased with the addition of these t-LDHs. MgCuAl/PP nanocomposites showed superior thermal and mechanical properties as compared to MgAl/PP, MgCoAl/PP, MgNiAl/PP, MgZnAl/PP nanocomposites. In comparison to pure PP with the addition of only 5 wt.% of MgCuAl-LDH the degradation temperature was 43 °C higher.

Abstract Image

过渡金属(MgCoAl、MgNiAl、MgCuAl、MgZnAl)层状双氢氧化物(t-LDHs)的聚丙烯(PP)纳米复合材料:燃烧性、热性能和力学分析
近年来,过渡金属基LDH越来越受到人们的关注。这对于三金属LDH尤其适用,因为它们的应用范围很广。本研究工作重点介绍了合成并用于聚丙烯(PP)纳米复合材料的四种类型的三金属层状双氢氧化物(t-LDH)。制备并测试了含钴(Co)、镍(Ni)、铜(Cu)和锌(Zn)的MgAl-LDHs在PP纳米复合材料中的作用和相互作用。采用尿素水解法合成了这些t-LDHs(MgCoAl、MgNiAl、MgCuAl、MgZnAl)。在小规模的混合机中使用熔融混合制备t-LDH/PP纳米复合材料。用XRD和SEM对t-LDH及其PP纳米复合材料的结构和形貌进行了分析,并用DSC和TGA对其热行为进行了研究。使用流变仪进行流变分析,使用极限氧指数(LOI)和UL94测试分析可燃性。通过UTM和夏比冲击试验对机械性能进行了比较。这些t-LDH的加入提高了热稳定性、阻燃性和机械强度。与MgAl/PP、MgCoAl/PP,MgNiAl/PP和MgZnAl/PP纳米复合材料相比,MgCuAl/PP复合材料表现出优异的热性能和机械性能。与仅添加5重量%的纯PP相比MgCuAl-LDH的降解温度高出43°C。
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来源期刊
Advanced Industrial and Engineering Polymer Research
Advanced Industrial and Engineering Polymer Research Materials Science-Polymers and Plastics
CiteScore
26.30
自引率
0.00%
发文量
38
审稿时长
29 days
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