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EFFECT OF FILLER TYPE AND CONTENT ON PHYSICAL AND MECHANICAL PROPERTIES OF NR/SBR NANOCOMPOSITE BLEND

机译:填料型和含量对NR / SBR纳米复合配合混合物物理和力学性能的影响

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摘要

The effect of type and content of nanofiller on the cure behavior, cure characteristics, and mechanical and dynamic mechanical thermal properties of the vulcanized SBR/NR (30/70) blend nanocomposites containing carbon black were investigated. Halloysite nanotube (HNT) and calcium carbonate (CaCO3) nanoparticles were used as reinforcing agents at different levels ranging from0 to 5 phr. Two nanofillers affected the cure characteristics of the blended vulcanizates in opposite ways. While the gradual incorporation of HNT into the elastomer blend shortened the scorch time along with an increase in the effective torque of resulting nanocomposite compared to the unfilled blend, the progressive addition of CaCO3 into the blend monotonically prolonged the scorch time in conjunction with a decrease in the effective torque of vulcanizate sample. Mechanical tests showed enhanced elastic modulus and tensile strength of HNT-filled nanocomposites as the HNT content was increased. Nanocomposites reinforced with HNT exhibited significantly higher extensibility than the unfilled blend. In the case of CaCO3-filled nanocomposites, the elasticmodulus and ultimate strength decreased upon the addition of CaCO3 nanoparticles, whereas the strain at break showed a substantial increase compared to unfilled compound. Dynamic mechanical thermal analysis results revealed a monotonic shift of damping peak's temperature toward higher temperatures with HNT loading in HNT-filled vulcanizate nanocomposites. For CaCO3-filled nanocomposites, the damping peak's temperature shifted to higher temperatures at first and then shifted back to lower temperatures at higher loadings of CaCO3. The damping peak's intensity of the CaCO3-filled nanocomposites was considerably higher than the unfilled blend, indicating higher damping capability in these systems.
机译:研究了纳米填充物对硫化SBR / NR(30/70)混合物纳米复合材料的固化行为,固化特性和机械和动态机械热性能的影响。使用Halloysite Nanotube(HNT)和碳酸钙(CaCO 3)纳米粒子用作不同水平的增强剂,范围为0至5phr。两个纳米填充物以相反的方式影响混合硫化胶的固化特征。虽然HNT进入弹性体混合物的逐渐掺入速度缩短了烧焦时间,但与未填充的混合物相比,纳米复合材料的有效扭矩的增加,CaCO3进入混合物的逐步加入单调的时间结合延长焦点时间硫化样品的有效扭矩。机械试验显示出增强的弹性模量和HNT填充纳米复合材料的拉伸强度,因为HNT含量增加。用HNT加固的纳米复合材料比未填充的混合物呈现出显着更高的可伸展性。在CaCO 3填充的纳米复合材料的情况下,在加入CaCO 3纳米颗粒时,弹性模型和极限强度降低,而断裂的菌株与未填充的化合物相比显示出大量的增加。动态机械热分析结果显示,在HNT填充硫化纳米复合材料中具有HNT载荷的HNT载荷升高温度升温的单调转变。对于Caco3填充的纳米复合材料,阻尼峰的温度首先向上移动到较高的温度,然后在CaCO 3的更高载荷下返回到较低的温度。 CaCO3填充纳米复合材料的阻尼峰值的强度远高于未填充的混合物,表明这些系统中的较高阻尼能力。

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