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Development of Test Procedures to Measure Tracking Resistance of Non-Tracking Tack Coat

机译:开发试验程序,以测量非跟踪钉涂层的跟踪电阻

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Non-tracking tacks, recently introduced to the paving industry, bond pavement layers while avoiding the tracking problems associated with traditional tacks. Initially, there was only one supplier of non-tracking tack in Texas, but now multiple producers are bringing products to the market. Performance to date has been good, but there are no established methods to test tackiness/tracking resistance of current and new products. The objective of this research, therefore, was to develop and assess three tests for measuring tracking resistance: the modified no-pick-up time test, the TTI sand adhesion test, and the modified DSR tackiness test. These methods were evaluated on four tack materials, three curing temperatures, and at 10-minute curing time intervals. The results from the modified no-pick-up time test were clearly influenced by curing time and curing temperature. The TTI sand adhesion test could discern among different tack materials. Track free time may be defined as less than 2 g of sand adhesion. The modified DSR tackiness test showed measurable differences among the tack types and different temperatures and times. Of these test methods, the researchers recommend adoption of the modified no-pick-up time test for routine tracking resistance testing. "Track-free time" should be defined as less than 10% tracking in 40°C curing. Testing of this and other tests should continue, especially with other conventional and non-tracking tacks.
机译:最近引入铺路行业的非跟踪钉,债券路面层,同时避免与传统粘性相关的跟踪问题。最初,德克萨斯州只有一个供应商的非跟踪大头钉,但现在多个生产商正在将产品带到市场上。迄今为止的表现已经很好,但没有建立的方法来测试当前和新产品的粘性/跟踪阻力。因此,本研究的目的是开发和评估三次测量跟踪电阻的测试:改性的无拾取时间测试,TTI砂粘附试验和改性的DSR粘性测试。这些方法在四个粘性材料,三个固化温度和10分钟的固化时间间隔中评估。通过固化时间和固化温度清楚地影响改性无拾取时间测试的结果。 TTI沙子粘附试验可能在不同的粘性材料中辨别出来。轨道自由时间可以定义为小于2g的沙子粘附。改性的DSR粘性测试显示了粘性类型和不同温度和时间的可测量差异。在这些测试方法中,研究人员建议采用改进的无拾取时间测试,以进行常规跟踪电阻测试。 “无轨时间”应定义为40°C固化的追踪不到10%。应继续测试和其他测试,特别是与其他常规和非跟踪粘性。

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