沥青矿物组合物用改性硫沥青粘结剂

V. Galdina, N. S. Galdin, M. S. Chernogorodova
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引用次数: 0

摘要

研究了以粘性石油沥青、工业硫和聚合石油树脂为基料的改性硫沥青粘结剂的性能。在选择改性硫沥青粘结剂的组成时,采用了实验计划法。建立了硫和聚合石油树脂用量对改性硫沥青粘结剂性能影响的数学模型。建立的回归方程可以根据操作条件预测粘结剂的性能并优化粘结剂的组成。改性硫沥青粘结剂的耐热性、裂纹韧性、延展性、应变能力和附着力指标均高于初粘路面沥青和硫沥青粘结剂。研究了以粘性石油沥青、工业硫和聚合石油树脂为基料的改性硫沥青粘结剂的性能。在选择改性硫沥青粘结剂的组成时,采用了实验计划法。建立了硫和聚合石油树脂用量对改性硫沥青粘结剂性能影响的数学模型。建立的回归方程可以根据操作条件预测粘结剂的性能并优化粘结剂的组成。改性硫沥青粘结剂的耐热性、裂纹韧性、延展性、应变能力和附着力指标均高于初粘路面沥青和硫沥青粘结剂。
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Modified sulfur bitumen binders for bitumen-mineral compositions
The properties of modified sulfur bitumen binders based on viscous petroleum bitumen, industrial sulfur and polymeric petroleum resin were studied. In selecting the compositions of the modified sulfur bitumen binders, the experiment planning method was used. Mathematical models showing the influence of sulfur and polymeric petroleum resin dosages on the modified sulfur bitumen binders properties were obtained. The regression equations make it possible to predict the properties and to optimize the binders compositions according to the operating conditions. Modified sulfur bitumen binders in comparison with the properties of the initial viscous road bitumen and sulfur bitumen binders are characterized by the relatively high indicators of thermal resistance, crack toughness, ductility, strain capacity and adhesion.The properties of modified sulfur bitumen binders based on viscous petroleum bitumen, industrial sulfur and polymeric petroleum resin were studied. In selecting the compositions of the modified sulfur bitumen binders, the experiment planning method was used. Mathematical models showing the influence of sulfur and polymeric petroleum resin dosages on the modified sulfur bitumen binders properties were obtained. The regression equations make it possible to predict the properties and to optimize the binders compositions according to the operating conditions. Modified sulfur bitumen binders in comparison with the properties of the initial viscous road bitumen and sulfur bitumen binders are characterized by the relatively high indicators of thermal resistance, crack toughness, ductility, strain capacity and adhesion.
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