高级检索

耐磨耐油鞋用丁腈橡胶复合材料的制备及性能

Preparation and Performance of Abrasion-resistant and Oil-resistant Nitrile Rubber Composites for Footwear Applications

  • 摘要: 为了提升鞋用丁腈橡胶的物理性能,文章采用无定型硫酸钙和碳酸钙两种填料对丁腈橡胶(NBR)进行补强改性。通过研究门尼黏度、拉伸撕裂强度、密度、热空气老化、耐油和磨耗等性能,系统探究两种填料对丁腈橡胶力学性能的影响。研究结果表明,硫酸钙与碳酸钙的比例为1∶3时,其撕裂强度为15.39 kN/m,且随着硫酸钙与碳酸钙比例的增加,NBR橡胶复合材料的密度可达到1.42 g/cm3。此外,其耐热氧老化性能优异。进一步研究发现,该填料配比在鞋底用丁腈橡胶复合材料中,其磨耗体积为0.78 cm3,耐油实验后体积膨胀率低于15%,具备较好的耐油性能。为鞋底用橡胶性能的提升提供研究思路和基础数据。

     

    Abstract: To enhance the physical properties of Nitrile Butadiene Rubber (NBR) for footwear applications, this study employed amorphous calcium sulfate (CaSO4) and calcium carbonate (CaCO3) as hybrid fillers to reinforce and modify the NBR composites. The effects of filler ratios on the mechanical properties of NBR were systematically investigated through Mooney viscosity measurement, tensile tear strength, density, heat aging resistance, oil resistance, and abrasion resistance tests. Results demonstrated that, at a CaSO4/CaCO3 mass ratio of 1∶3, the NBR composite exhibited optimal tear strength of 15.39 kN/m, and its density achieved 1.42 g/cm3 with the increasing of CaSO4/CaCO3 proportion. Notably, the composite displayed excellent thermal oxidative aging resistance. Further evaluation revealed an abrasion volume of 0.78 cm3 of the NBR composite for its shoe sole applications at this filler ratio, along with a post-oil-resistance-test volume swelling rate below 15%, confirming its superior oil resistance. This research provides both methodological frameworks and foundational datasets for the performance optimization of the NBR-based shoe sole materials.

     

/

返回文章
返回