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首页> 外文期刊>Tribology in Industry >Development of Polyester/Eggshell Particulate Composites
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Development of Polyester/Eggshell Particulate Composites

机译:聚酯/卵壳颗粒复合材料的开发

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The development of Polyester/Eggshell particulate composites has been carried out. Uncarbonized and carbonized eggshell particles were used as reinforcement in polyester matrix. 10 to 50 wt% eggshell particles at intervals of 10 wt% were added to polyester as reinforcement. The microstructural analyses of the polyester/eggshell particulate composites were carried out using SEM and EDS. The mechanical properties and density were carried out by standard methods. The results showed that the density and hardness values of the polyester/eggshell particulate composite increased steadily with increasing eggshell addition. The tensile strength increased from 15.182 N/mm2 at 0 wt% eggshell addition to a maximum of 23.4 N/mm2 at 40 wt% eggshell addition for uncarbonized eggshell; while it increased to a maximum of 28.378 N/mm2 at 20 wt% eggshell addition for carbonized eggshell. Compressive strength increased steadily from 90.3 N/mm2 at 0 wt% eggshell additions to a maximum of 103.6 at 50 wt% eggshell addition for uncarbonized eggshell and 116.5N/mm2 at 50 % eggshell addition for carbonized eggshell. Hardness value increased from 91 HRF at 0 % eggshell addition to a maximum of 120.05HRF at 50 wt% eggshell addition for uncarbonized eggshell and 149.45HRF at 50 wt% eggshell for the carbonized eggshell. Flexural strength increased from 76.06 N/mm2 at 0 wt% eggshell addition to a maximum of 97.06 N/mm2 at 40 wt% eggshell addition for uncarbonized eggshell; however, it increased to a maximum of 106.66 N/mm2 at 20 wt% eggshell addition for the carbonized eggshell. The impact energy also increased from 0.1 Joules at 0 wt% eggshell addition to a maximum of 0.35 Joules at 30 wt% eggshell addition for uncarbonized eggshell; it however increased to a maximum of 0.45 Joules at 20 wt% eggshell addition for the carbonized eggshell. Hence the development of polyester/eggshell particulate composites material with good mechanical properties and light weight which is relevant to the electronics, auto and building industries has been achieved.
机译:聚酯/卵壳颗粒复合材料的开发已经进行。未碳化和碳化的蛋壳颗粒被用作聚酯基质的增强材料。以10重量%的间隔将10至50重量%的蛋壳颗粒加入到聚酯中作为增强剂。聚酯/蛋壳颗粒复合材料的显微结构分析是使用SEM和EDS进行的。力学性能和密度通过标准方法进行。结果表明,随着蛋壳添加量的增加,聚酯/蛋壳颗粒复合材料的密度和硬度值稳定增加。拉伸强度从添加0 wt%蛋壳时的15.182 N / mm2增加到添加40 wt%蛋壳时未碳化蛋壳的最大23.4 N / mm2;当添加20%(重量)的蛋壳时,碳化蛋壳增加到最大28.378 N / mm2。抗压强度从添加0重量%蛋壳时的90.3 N / mm2稳定增加到未碳化的蛋壳添加50 wt%蛋壳时的最大值103.6和添加到碳化蛋壳的50%蛋壳时116.5N / mm2。硬度值从添加0%蛋壳时的91 HRF增加到未碳化蛋壳添加50 wt%蛋壳时的最大120.05HRF和添加50%蛋壳时的149.45HRF。抗弯强度从添加0重量%蛋壳时的76.06 N / mm2增加到添加40重量%蛋壳时未碳化蛋壳的最大97.06 N / mm2;但是,添加20%(重量)的蛋壳后,碳化蛋壳的最大含量增加到106.66 N / mm2。冲击能量也从添加0重量%蛋壳时的0.1焦耳增加到添加了30重量%蛋壳时未碳化的蛋壳的最大0.35焦耳;然而,对于碳化蛋壳,在添加20 wt%蛋壳时,它增加到最大0.45焦耳。因此,已经实现了与电子,汽车和建筑工业相关的具有良好机械性能和轻质的聚酯/卵壳颗粒复合材料的开发。

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