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Effect of Empty Fruit Bunch (EFB) Fiber on Mechanical Properties of HDPE/EVA/MMT/EFB Nanohybrid Biocomposite

机译:空果实束(EFB)纤维对HDPE / EVA / MMT / EFB纳米油状生物复合材料力学性能的影响

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This work study the effect of empty fruit bunch (EFB) fiber on mechanical properties (tensile, fiexural and impact) of different formulation of HDPE/EVA/MMT/EFB nanohybrid biocomposite with present of 1.5 phr compatibilizer. The ratio of HDPE and EVA are fixed at 80 wt% and 20 wt% respectively. However, the nanoclay montmorillonitc (MMT) was varied from 0, 0.5, 1.0 and 1.5 phr. Meanwhile EFB fiber was varied from 0, 10, 20, 30, 40 and 50 wt%. The HDPE/EVA/MMT/EFB blends were prepared by melt extrusion blending technique using a single screw extruder. Generally, the result found that by increasing of EFB fiber content the tensile strength of HDPE/EVA/MMT/EFB nanohybrid biocomposite was declined. The highest tensile strength was given by formulation of HDPE/EVA/l phr MMT without EFB fiber loading which is 29.064 MPa. Meanwhile the lowest tensile strength is given by formulation of ITDPE/EVA/0.5 phr MMT with 50 wt% of EFB fiber which is 9.673 MPa. Similar trend also showed by the result of fiexural strength obtained. In contrast, the value of tensile modulus is progressively increased with further increasing of EFB fiber content. The highest tensile modulus given by formulation of HDPE/KVA/l phr MMT with reinforced of 50 wt% EFB fiber loading (694.53 MPa) whereas the lowest is given by HDPE/EVA/0.5 phr MMT with 10 wt% EFB fiber loading (290.76 MPa). Similar trend for the fiexural modulus where further increasing of EFB fiber content, the fiexural modulus is directly increasing. Unfortunately, for impact properties, reinforced of EFB fiber give resulted on the reduction of impact strength.
机译:该工作研究了空果束(EFB)纤维对HDPE / EVA / MMT / EFB纳米纳米纳米纳米纳米二核化合物不同配方的机械性能(拉伸,纤维和冲击)的影响,具有1.5phr Compatibiliger。 HDPE和EVA的比例分别以80wt%和20wt%固定。然而,纳米粘土Montmorillonitc(MMT)由0,0.5,1.0和1.5phr变化。同时EFB纤维在0,10,20,30,40和50wt%中变化。通过使用单螺杆挤出机的熔融挤出混合技术制备HDPE / EVA / MMT / EFB混合物。通常,结果发现,通过增加EFB纤维含量,HDPE / EVA / MMT / EFB纳米组合物的拉伸强度下降。通过没有EFB纤维负载的HDPE / EVA / L PHR MMT给出的最高拉伸强度,其为29.064MPa。同时,最低抗拉强度通过配制ITDPE / EVA / 0.5PRMMT,具有50wt%的EFB纤维,其为9.673MPa。相似的趋势也得到了获得的性感强度的结果。相反,随着EFB纤维含量的进一步增加,拉伸模量的值逐渐增加。通过增强50wt%EFB纤维负载(694.53MPa)的HDPE / kVA / L PHR MMT提供的最高拉伸模量,而最低的HDPE / EVA / 0.5 PHR MMT具有10wt%EFB纤维载荷(290.76 MPA)。类似趋势的Fiexural模量,其中EFB纤维含量进一步增加,Fiexural模量直接增加。遗憾的是,对于影响性能,EFB纤维的增强导致碰撞强度的降低。

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