...
首页> 外文期刊>Applied Sciences >Laboratory Evaluation on Performance of Compound-Modified Asphalt for Rock Asphalt/Styrene–Butadiene Rubber (SBR) and Rock Asphalt/Nano-CaCO 3
【24h】

Laboratory Evaluation on Performance of Compound-Modified Asphalt for Rock Asphalt/Styrene–Butadiene Rubber (SBR) and Rock Asphalt/Nano-CaCO 3

机译:复合改性沥青对岩沥青/苯乙烯-丁二烯橡胶(SBR)和岩沥青/纳米CaCO 3性能的实验室评估

获取原文
   

获取外文期刊封面封底 >>

       

摘要

As a natural modifier of asphalt, rock asphalt has been widely used to improve its thermal stability and aging resistance. However, the thermal cracking resistance of asphalt modified by rock asphalt is unsatisfactory. In order to improve the thermal cracking resistance in low temperature, two kinds of modifiers—styrene–butadiene rubber (SBR) and nano-CaCO 3 —were selected as the compound modifiers, and then implemented to improve the low-temperature performance of the binder. Then, compound asphalt modified by Buton rock asphalt (BRA) was chosen as the study subject. The thermal stability and aging resistance of asphalt modified by BRA, compound-modified asphalt by BRA/SBR, and compound-modified asphalt by BRA and nano-CaCO 3 were determined to identify whether the compound modifiers in the asphalt would have a negative effect on the thermal stability and aging resistance of the asphalt. The dynamic shear rheometer (DSR) test was employed to evaluate the thermal stability. The thin film oven test (TFOT) and pressure aging vessel (PAV) were adopted to determine the aging resistance. The viscoelastic characteristics of asphalt with and without modifiers were revealed to evaluate the low-temperature crack resistance of asphalt modified by compound modifiers. The bending beam rheometer (BBR) creep test was conducted in three test temperatures in order to determine the creep stiffness modulus of the BRA compound-modified asphalt. The viscoelastic model considering the damage caused by loading was established; then, the creep compliance and parameters of the viscoelastic damage model were implemented to evaluate the low-temperature performance of the compound-modified asphalt. The results show that the compound modifiers have little negative effects on the thermal stability and aging resistance of asphalt. The thermal crack resistance of the compound-modified asphalt by BRA/SBR was the best, followed by the compound-modified asphalt by BRA and nano-CaCO 3 within the three materials. The accuracy of forecasting the characteristics of compound-modified asphalt was improved by using the viscoelastic model and considering the damage effect.
机译:作为沥青的天然改性剂,岩石沥青已被广泛用于改善其热稳定性和耐老化性。然而,由岩沥青改性的沥青的耐热裂性不能令人满意。为了提高低温下的抗热裂性,选择了苯乙烯-丁二烯橡胶(SBR)和纳米CaCO 3两种改性剂作为复合改性剂,然后用于改善粘结剂的低温性能。 。然后,以布顿岩沥青改性的复合沥青为研究对象。确定了BRA改性沥青,BRA / SBR改性复合沥青以及BRA和nano-CaCO 3改性沥青的热稳定性和耐老化性,以确定沥青中的复合改性剂是否会对沥青产生负面影响沥青的热稳定性和耐老化性。动态剪切流变仪(DSR)测试用于评估热稳定性。采用薄膜烘箱测试(TFOT)和压力老化容器(PAV)来确定耐老化性。揭示了具有和不具有改性剂的沥青的粘弹性特性,以评价由复合改性剂改性的沥青的低温抗裂性。为了确定BRA复合改性沥青的蠕变刚度模量,在三个测试温度下进行了弯曲束流变仪(BBR)蠕变测试。建立了考虑载荷引起的损伤的粘弹性模型;然后,采用蠕变柔度和粘弹性损伤模型的参数来评估复合改性沥青的低温性能。结果表明,复合改性剂对沥青的热稳定性和抗老化性几乎没有负面影响。三种材料中,BRA / SBR复合改性沥青的抗热裂性能最好,其次是BRA和nano-CaCO 3复合改性沥青。通过使用粘弹性模型并考虑损伤效应,提高了预测复合改性沥青特性的准确性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号