Anas Abualia, Jun Liu, Louay N. Mohammad, Samuel B. Cooper, Samuel B. Cooper
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Five types of asphalt binder were utilized: conventional styrene-butadiene-styrene (SBS) asphalt binder PG 76-22M; high SBS content asphalt binder PG 88-28; diluted epoxy asphalt (EA) binder with two different dosages (25% and 50%); and a hybrid modified asphalt binder prepared with SBS and crumb rubber modifier PG 76-22G. The optimal aggregate structures were determined based on minimum required air voids and voids in coarse aggregate. Physical and mechanical tests were conducted to assess the performance of OGFC mixtures, including draindown, permeability, loaded wheel track, and Cantabro abrasion loss. Results indicate that OGFC mixtures incorporating diluted EA binder exhibited lower draindown values than mixtures containing PG 76-22M and PG 88-28. Moreover, mixtures with PG 88-28 and 50% EA binders demonstrated improved resistance to rutting. Mixtures with 50% EA and PG 88-28 binders demonstrated improved durability, compared with mixtures with PG 76-22M for unaged and aged conditioning, as measured by Cantabro abrasion loss values.","PeriodicalId":517391,"journal":{"name":"Transportation Research Record: Journal of the Transportation Research Board","volume":"51 1","pages":""},"PeriodicalIF":0.0000,"publicationDate":"2024-07-30","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"Effect of High Polymer, Crumb Rubber, and Epoxy-Modified Asphalt Binders on Laboratory Performance of Open-Graded Friction Course Mixtures\",\"authors\":\"Anas Abualia, Jun Liu, Louay N. Mohammad, Samuel B. Cooper, Samuel B. Cooper\",\"doi\":\"10.1177/03611981241254387\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"Open-graded friction course (OGFC) is a thin asphalt mixture surface layer. 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引用次数: 0
摘要
开级配摩擦层(OGFC)是一种薄的沥青混合料面层。它采用高比例的粗集料进行间隙级配,这些粗集料的尺寸几乎均匀一致,从而产生了高比例的相互连接的空气空隙和沥青粘结剂,从而提高了抗滑性、能见度并降低了路面轮胎噪音。然而,路易斯安那州交通与发展部的施工人员报告说,与稀薄沥青混合料相比,传统的 OGFC 混合料存在耐久性问题,使用寿命较短。因此,对不同类型的沥青粘结剂对 OGFC 混合物性能的影响进行了评估。研究使用了五种沥青粘结剂:传统的苯乙烯-丁二烯-苯乙烯(SBS)沥青粘结剂 PG 76-22M;高 SBS 含量沥青粘结剂 PG 88-28;两种不同添加量(25% 和 50%)的稀释环氧沥青(EA)粘结剂;以及使用 SBS 和橡胶屑改性剂制备的混合改性沥青粘结剂 PG 76-22G。根据所需的最小气隙和粗集料中的空隙确定了最佳集料结构。为评估 OGFC 混合物的性能,进行了物理和机械测试,包括降水、渗透性、加载轮迹和 Cantabro 磨损率。结果表明,与含有 PG 76-22M 和 PG 88-28 的混合物相比,含有稀释 EA 粘结剂的 OGFC 混合物显示出较低的降水值。此外,含有 PG 88-28 和 50% EA 粘结剂的混合物的抗车辙能力也有所提高。与使用 PG 76-22M 的混合物相比,使用 50% EA 和 PG 88-28 粘结剂的混合物在未老化和老化条件下的耐久性有所提高,这是用 Cantabro 磨损率值来衡量的。
Effect of High Polymer, Crumb Rubber, and Epoxy-Modified Asphalt Binders on Laboratory Performance of Open-Graded Friction Course Mixtures
Open-graded friction course (OGFC) is a thin asphalt mixture surface layer. It is gap-graded with a high percentage of coarse aggregates that are nearly uniform in size, resulting in a high percentage of interconnected air voids and asphalt binder, which provides improved skid resistance, visibility, and decreased pavement–tire noise. However, construction personnel at the Louisiana Department of Transportation and Development reported that conventional OGFC mixtures have durability issues and shorter service life, compared with thin asphalt mixture lifts. Hence, effects of different asphalt binder types on the performance of OGFC mixtures were evaluated. Five types of asphalt binder were utilized: conventional styrene-butadiene-styrene (SBS) asphalt binder PG 76-22M; high SBS content asphalt binder PG 88-28; diluted epoxy asphalt (EA) binder with two different dosages (25% and 50%); and a hybrid modified asphalt binder prepared with SBS and crumb rubber modifier PG 76-22G. The optimal aggregate structures were determined based on minimum required air voids and voids in coarse aggregate. Physical and mechanical tests were conducted to assess the performance of OGFC mixtures, including draindown, permeability, loaded wheel track, and Cantabro abrasion loss. Results indicate that OGFC mixtures incorporating diluted EA binder exhibited lower draindown values than mixtures containing PG 76-22M and PG 88-28. Moreover, mixtures with PG 88-28 and 50% EA binders demonstrated improved resistance to rutting. Mixtures with 50% EA and PG 88-28 binders demonstrated improved durability, compared with mixtures with PG 76-22M for unaged and aged conditioning, as measured by Cantabro abrasion loss values.