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Development of a smartphone app and device to reduce tack coat tracking

机译:开发智能手机应用程序和设备以减少粘性涂层追踪

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摘要

In this study, tracking (the pick-up of tack coats by construction vehicle tires during construction activities) resistance of Oregon slow-setting grade and "New" engineered emulsions were investigated. Tracking reduces the amount of tack coat in particular areas and creates a non-uniform tack coat distribution between the two construction lifts. This non-uniform tack coat distribution leads to localised distresses and even complete failure of the bond between lifts. Oregon tack coat curing times, tracking resistance, and the factors that influence them were determined and evaluated in this study. Tracking resistance was evaluated by developing a wheel tracking device that can be used in the field as a visual tool or by collecting weight data via the removable rubber "tires". Evaporation tests were used to create a linear regression model to predict in-situ curing times and develop a smartphone app using the created model. Prediction of in-situ curing times, along with the wheel tracking device, will reduce tracking and improve current tack coat quality-control and quality-assurance procedures.
机译:在这项研究中,研究了俄勒冈慢固化级和“新型”工程乳液的跟踪性能(在施工活动中施工车辆轮胎对粘性涂层的吸收)。跟踪减少了特定区域的粘涂量,并在两个施工举升机之间产生了不均匀的粘涂分布。这种不均匀的粘性涂层分布会导致局部应力,甚至导致升降机之间的粘合完全失效。在这项研究中确定并评估了俄勒冈粘性涂料的固化时间,耐痕迹性以及影响它们的因素。通过开发可在现场用作视觉工具的车轮跟踪装置或通过可移动橡胶“轮胎”收集重量数据来评估跟踪阻力。蒸发测试用于创建线性回归模型,以预测原位固化时间并使用创建的模型开发智能手机应用。对原位固化时间的预测以及车轮跟踪设备将减少跟踪,并改善当前的粘性涂层质量控制和质量保证程序。

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