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首页> 外文期刊>Polymers & Polymer Composites >Effects of concentration and surface silanization of barite on the mechanical and physical properties of poly(lactic acid)/barite composites
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Effects of concentration and surface silanization of barite on the mechanical and physical properties of poly(lactic acid)/barite composites

机译:重晶矿浓度和表面硅烷化对聚(乳酸)/重晶石复合材料的机械和物理性质

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摘要

Neat and surface silanized barite (BR) was compounded with poly(lactic acid) (PLA) at the loading range of 5, 10, 15, and 20 wt% by melt blending process. Surface characteristics of BR samples were examined by infrared spectroscopy in attenuated total reflectance mode. Mechanical, thermal, water resistance, melt flow, and morphological characterizations of composites were performed by tensile and impact tests, dynamic mechanical analysis, water absorption test, melt flow rate (MFR) test, and scanning electron microscopy (SEM) analysis, respectively. BR additions lead to increase in tensile strength and modulus of PLA. The maximum improvement is obtained for 15 wt% of silanized BR containing composite. In contrast, percent elongation of PLA decreases with the incorporation of BR. Treated BR-loaded composites give higher impact energy values compared to untreated BR. Impact performance of composites increases with concentration. Silanized BR-filled composite at 5 wt% concentration exhibits higher storage modulus than unfilled PLA, where other composites yield relatively lower values in the case of storage modulus. Glass transition temperature of PLA extends to higher values by the addition of BR. Inclusions of BR samples cause a slight decrease in MFR of unfilled PLA. Water absorption of composites is found to be higher than that of PLA. Silanized BR-filled composites display lower water absorption values compared to untreated BR, thanks to hydrophobic nature of Si containing surface. According to SEM microimages of composites, more homogeneous dispersion in PLA matrix is achieved for treated BR particles than neat ones due to enhancement for interfacial adhesion of BR to PLA after silanization.
机译:通过熔融共混工艺在5,10,15和20wt%的加载范围内用聚(乳酸)(PLA)混合整齐的和表面硅烷化的重晶石(BR)。通过红外光谱检查BR样品的表面特性,在减振的总反射模式中被衰减。通过拉伸和冲击试验,动态机械分析,吸水试验,熔体流速(MFR)试验和扫描电子显微镜(SEM)分析,进行组合材料的机械,热,耐水性,熔体流动和形态学特性分别进行,以及扫描电子显微镜(SEM)分析。 BR添加导致拉伸强度和PLA模量的增加。获得15wt%的含有复合材料的15wt%的最大改进。相比之下,PLA伸长率的百分比随着BR的掺入而降低。与未处理的BR相比,处理的Br负载复合材料具有更高的冲击能值。复合材料的冲击性能随浓度而增加。硅烷化Br填充的复合材料,5wt%浓度表现出比未填充的PLA更高的储存量,其中其他复合材料在储存模量的情况下产生相对较低的值。通过添加BR,PLA的玻璃化转变温度延伸至更高的值。 BR样品的含量导致未填充的PLA的MFR略有下降。发现复合材料的吸水率高于PLA的吸水。由于含Si表面的疏水性质,硅烷化的Br填充复合材料显示与未处理的BR相比较低的吸水值。根据复合材料的SEM微观镜,由于BR在硅烷化之后BR至PLA的界面粘附而导致的PLA基质中的处理比较颗粒更均匀的分散。

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