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Comparison of Unconventional and Conventional HMA Mixes' Performance in North Dakota

机译:北达科他州非传统和常规HMA混合的比较

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Due to its extreme weather conditions of long cold winters and short hot rainy summers, asphalt pavement design and construction in North Dakota has been challenging. Therefore, special modifiers are needed to provide HMA mixes with stability, durability, and acceptable compaction workability during late summer paving. The main objective of the study was to test the performance of a typical (conventional) North Dakota HMA mix with a special additive (Titan 1867) and compare it to the performance of the conventional mix without the additive (control mix). The asphalt pavement analyzer (APA T 340), AASHTO T 283, and compaction aid tests were performed to determine the mixes' stability (rutting resistance), durability (moisture sensitivity, i.e., stripping), and late season paving (workability), respectively. A total of 12, 16, and 18 specimens were used for rutting resistance, moisture sensitivity, and compaction aid tests, respectively. Specimens for compaction aid were compacted at 275℉, 245℉, and 215℉. Research results showed that mixes with Titan 1867 proprietary additive outperformed the conventional mixes (without additives) in all three performance measures. The unconventional mix (Titan 1867) did better than the control mix in rutting and moisture sensitivity resistances by 4.7% and 22.4%, respectively. For compaction aid, the unconventional mix consistently had lower air voids than the control mix at same compaction temperatures, indicating better compactibility.
机译:由于其长寒冷冬季的极端天气条件和炎热的雨季夏季,北达科他州的沥青路面设计和建筑一直在具有挑战性。因此,需要特殊的改性剂来提供HMA混合,在夏季铺路期间具有稳定性,耐用性和可接受的压实可加工性。该研究的主要目的是测试典型(常规)北达科他州HMA混合的典型(常规)北达科他菌(Titan 1867)的性能,并将其与常规混合物的性能进行比较,而无需添加剂(对照组合)。进行沥青路面分析仪(APA T 340),AASHTO T 283和压实辅助试验,以确定混合的稳定性(车辙抗性),耐久性(湿度敏感性,即剥离)和晚期铺路(可加工性) 。共有12,16和18个标本用于分别用于抵抗,湿度敏感性和压实助剂试验。压实助剂的标本压实在275‰,245‰和215‰。研究结果表明,在所有三种性能措施中,与泰坦1867年专有添加剂的混合优于常规混合物(无添加剂)。非传统的混合物(泰坦1867)的控制混合物分别优于控制和水分敏感性的控制混合物4.7%和22.4%。为了压实助剂,非常规的混合物始终比对照混合在相同的压实温度下的空隙率较低,表明更好的紧密性。

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