首页> 外文期刊>Polymer Composites >Morphology,Mechanical,and Dielectric Breakdown Properties of PBT/PET/TPE,PBT/PET/PA66,PBT/PET/LMPE,and PBT/PET/TiO2 Blends
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Morphology,Mechanical,and Dielectric Breakdown Properties of PBT/PET/TPE,PBT/PET/PA66,PBT/PET/LMPE,and PBT/PET/TiO2 Blends

机译:PBT / PET / TPE,PBT / PET / PA66,PBT / PET / LMPE和PBT / PET / TiO2共混物的形态,力学和介电击穿性能

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摘要

The morphology and thermal behavior of tertiary blends of poly(butyiene terephthalate)[PBT]/poly(ethyl-ene terephthalate)[PET]alloy resin(Alloy)/thermoplas-tic elastomer(TPE),Alloyylon 66(PA66),Alloy/low molecular weight polyester(LMPE),and Alloy/titanium dioxide(TiO2)have been investigated by scanning electron microscopy,differential scanning calorimetry,and thermogravimetry(TG).In case of TPE and LMPE containing blends did not show any morphological change compared with Alloy whereas for PA66 containing blends,the size of the dispersed phase increased with the increase the PA66 contents.The crystallization peak of Alloy/TPE blends became undetectable with an increasing TPE content.In contrast,the crystallization temperature(T_(c1))of Alloy/PA66,Alloy/LMPE,Alloy/TiO2 blends increased significantly as the PA66,LMPE,and TiO2 content increases.TG traces show a significant shift of the weight loss towards higher temperature for Alloy/TiO2 blend whereas Alloy/TPE,Alloy/PA66 and Alloy/LMPE blends slightly decreases in thermal stability than Alloy.To investigate the applicability for insulation material,the prepared blend samples were extruded an electric wire and the breakdown voltage(BDV)of wires was investigated.The melt flow rate of Alloy increased as the amount of TPE increased,and a contrary trend was found when the increase of the amount of TiO2.The dielectric breakdown test applies a voltage that is greater than the product's rated operating voltage for a specific period of time during which dielectric breakdown must not occur.The BDV of Alloy/TPE and Alloy/PA66 blends is higher than other blends before and after thermal aging 225 C for 30 min.
机译:聚对苯二甲酸丁二酯[PBT] /聚对苯二甲酸乙二酯[PET]合金(合金)/热塑性弹性体(TPE),合金/尼龙66(PA66)的三元共混物的形貌和热行为已经通过扫描电子显微镜,差示扫描量热法和热重法(TG)研究了合金/低分子量聚酯(LMPE)和合金/二氧化钛(TiO2)。在含有TPE和LMPE的混合物中,混合物没有任何形态变化与合金相比,PA66含量高时,分散相的尺寸增加。随着TPE含量的增加,合金/ TPE共混物的结晶峰变得无法检测。相反,结晶温度(T_(c1)合金/ PA66,合金/ LMPE,合金/ TiO2共混物的含量随PA66,LMPE和TiO2含量的增加而显着增加.TG痕迹表明,合金/ TiO2共混物的重量损失向较高温度显着转移,而合金/ TPE合金/ PA66和合金/ LMP E混合物的热稳定性比合金略有下降。为研究绝缘材料的适用性,将制备的混合物样品挤出电线,并研究电线的击穿电压(BDV)。合金的熔体流动速率随合金量的增加而增加。 TPE增加,并且当TiO2含量增加时发现相反的趋势。电介质击穿测试所施加的电压在一定时间内必须大于产品的额定工作电压,在此期间不得发生电介质击穿。合金/ TPE和合金/ PA66混合物在225°C 30分钟热老化前后的混合比均高于其他混合物。

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