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分散方法对纳米碳酸钙增强NR/SBR的形态、固化及力学性能的影响

The Influence of the Dispersion Method on the Morphological, Curing, and Mechanical Properties of NR/SBR Reinforced with Nano-Calcium Carbonate.

作者信息

Damircheli Mehrnoosh, MajidiRad AmirHossein

机构信息

Mechanical Engineering Department, Lafayette College, Easton, PA 18042, USA.

School of Engineering, University of North Florida, Jacksonville, FL 32224, USA.

出版信息

Polymers (Basel). 2023 Jul 6;15(13):2963. doi: 10.3390/polym15132963.

Abstract

There are several reasons for the development of nanopolymer compounds, such as improving physical, mechanical, and chemical properties, increasing lifespan, reducing costs, and decreasing negative environmental impact. The compatibility of two rubbers and mineral nanofillers in nanocomposites is a challenge that needs to be studied, and the effect of nanofillers on morphological, physical, and mechanical properties should be investigated accordingly. In this study, calcium carbonate nanoparticles were added to a polymer compound that included natural rubber (NR), styrene-butadiene rubber (SBR), vulcanization accelerators, and other additives. For mixing nanoparticles in the polymer matrix, various methods were used, including the solvent method in toluene and W410 solvents and the surface modification of calcium carbonate nanoparticles with stearic acid. The effect of dispersion nanoparticles in nanocomposite specimens on morphology, curing characteristics, and mechanical properties was studied. The morphologies of specimens were determined by X-ray diffraction (XRD) analysis and field emission scanning electron microscopy (FESEM). The particle size of the nanocomposite was approximately 34 nm, and the interlayer spacing between crystal plates increased from 2.81 nm to 3.03 nm. These results indicate a uniform dispersion of nanoparticles, specifically with an optimum content of 3.52%, in the compounds prepared through all mixing methods, with no agglomeration observed in the nanocomposites. The results of the nanocomposites' curing characterization demonstrate that with the addition of nanoparticles, a strong bond is created in the polymer chains, and curing properties are improved. Among the dispersion methods, the highest percentage improvement in curing properties is observed with the solvent method W410. To evaluate the effect of the addition of calcium carbonate nanoparticles and the dispersion method on improving mechanical properties, tensile, tear, hardness, and rebound resilience tests were performed. In tensile tests, the surface modification method showed the highest enhancement in ultimate stress (80%), followed by the W410 method (64%) and toluene method (63.7%). Tear strength improvements were highest in the W410-solvent sample (80%), followed by the surface modification method (57%) and the solvent-toluene method (50%). The W410 method resulted in the hardest samples, while the surface-modified samples had the lowest hardness. The addition of CaCO3 nanofillers reduced rebound resilience, with the W410 method experiencing the largest reduction (10.64%), followed by the toluene method (6.38%), and with the surface-modified samples showing the lowest reduction (4.25%). The results show that in the W410 solvent method, the nanocomposite is more elastic than for other methods. Additionally, for most of the mechanical properties, the W410 method results in the most growth in improvement.

摘要

纳米聚合物化合物的发展有几个原因,比如改善物理、机械和化学性能、延长使用寿命、降低成本以及减少对环境的负面影响。纳米复合材料中两种橡胶与矿物纳米填料的相容性是一个需要研究的挑战,应相应地研究纳米填料对形态、物理和机械性能的影响。在本研究中,将碳酸钙纳米颗粒添加到一种聚合物化合物中,该化合物包含天然橡胶(NR)、丁苯橡胶(SBR)、硫化促进剂和其他添加剂。为了在聚合物基体中混合纳米颗粒,使用了各种方法,包括在甲苯和W410溶剂中的溶剂法以及用硬脂酸对碳酸钙纳米颗粒进行表面改性。研究了纳米复合样品中分散纳米颗粒对形态、固化特性和机械性能的影响。通过X射线衍射(XRD)分析和场发射扫描电子显微镜(FESEM)确定样品的形态。纳米复合材料的粒径约为34nm,晶板间的层间距从2.81nm增加到3.03nm。这些结果表明,在通过所有混合方法制备的化合物中,纳米颗粒均匀分散,特别是最佳含量为3.52%时,在纳米复合材料中未观察到团聚现象。纳米复合材料的固化特性结果表明,随着纳米颗粒的添加,聚合物链中形成了强键,固化性能得到改善。在分散方法中,用W410溶剂法观察到固化性能的提高百分比最高。为了评估添加碳酸钙纳米颗粒和分散方法对改善机械性能的影响,进行了拉伸、撕裂、硬度和回弹性测试。在拉伸试验中,表面改性方法的极限应力提高最高(80%),其次是W410方法(64%)和甲苯方法(63.7%)。W410溶剂样品的撕裂强度提高最高(80%),其次是表面改性方法(57%)和溶剂甲苯方法(50%)。W410方法得到的样品最硬,而表面改性样品的硬度最低。添加CaCO3纳米填料降低了回弹性,W410方法的降低幅度最大(10.64%),其次是甲苯方法(6.38%),表面改性样品的降低幅度最小(4.25%)。结果表明,在W410溶剂法中,纳米复合材料比其他方法更具弹性。此外,对于大多数机械性能,W410方法的改善增长最大。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7223/10346586/ff3666d98421/polymers-15-02963-g001.jpg

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