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Structures and mechanical properties of talc and carbon black reinforced high density polyethylene composites : Effects of organic and inorganic fillers

机译:滑石粉和炭黑增强高密度聚乙烯复合材料的结构和力学性能:有机和无机填料的影响

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Organic filler like carbon black (CB) and inorganic filler like talc (T) with 0, 0.5, 1.0, 10, 20 and 40 wt% were separately loaded in high density polyethylene (HDPE) by the extrusion moulding method at 160oC. Then, different sets of filler loaded HDPE composites were prepared using the compression moulding technique, and their structures and mechanical properties were characterized. The pure HDPE sample, as examined by the X-ray diffraction (XRD) technique, showed orthorhombic structure, which did not change either with filler types or with their concentration. The only variations found in the structure are the changes of crystallinity and crystallized size that depend on both types of fillers and their concentrations. Incorporation of CB in HDPE emphasizes the crystallinity and crystallized size more than that of T. The tensile strength of the composite decreases with the increase of both types of fillers, and this decrease is explained on the basis of Nielson model, which basically describes a poor interaction between filler and HDPE matrix. An increase of Young’s modulus of 350% is observed with the increasing CB and T contents, representing an increase of the stiffness in the materials. Flexural strength increased with the increase of CB content but decreased with the increase of talc content. Although the microhardness was observed to increase with both types of fillers, the hardness value was 80% higher for CB loaded-composites than that of T at 40 wt% filler content. These findings strongly indicate that the compatibility of HDPE is better with organic filler than with inorganic one. DOI: http://dx.doi.org/10.3329/jbas.v37i1.15675 Journal of Bangladesh Academy of Sciences, Vol. 37, No. 1, 11-20, 2013
机译:通过挤出成型法在160oC下将有机填料(如炭黑(CB))和无机填料(如滑石粉)分别添加到0、0.5、1.0、10、20和40 wt%的高密度聚乙烯(HDPE)中。然后,采用压缩成型技术制备了不同组的填充有填料的HDPE复合材料,并对其结构和力学性能进行了表征。通过X射线衍射(XRD)技术检查的纯HDPE样品显示正交结构,该结构不会随填料类型或浓度而变化。在结构中发现的唯一变化是取决于填料类型及其浓度的结晶度和结晶尺寸的变化。在HDPE中掺入CB比T更加强调结晶度和结晶尺寸。复合材料的抗拉强度随着两种填料的增加而降低,这种降低是基于尼尔森模型来解释的,该模型基本上描述了差填料与HDPE基质之间的相互作用。随着CB和T含量的增加,杨氏模量增加了350%,这表示材料的刚度增加。抗弯强度随CB含量的增加而增加,但随滑石粉含量的增加而降低。尽管观察到两种类型的填料的显微硬度均增加,但在40%的填料含量下,CB负载复合材料的硬度值比T高80%。这些发现强烈表明,HDPE与有机填料的相容性优于与无机填料的相容性。 DOI:http://dx.doi.org/10.3329/jbas.v37i1.15675孟加拉科学院学报,第37,No.11,11-20,2013年

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