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首页> 外文期刊>Construction and Building Materials >Fluxing as a new tool for bitumen rheological characterization and the use of time-concentration shift factor (a(c))
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Fluxing as a new tool for bitumen rheological characterization and the use of time-concentration shift factor (a(c))

机译:Fluxing作为沥青流变学表征和时间浓度漂移因子(a(c))使用的新工具

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The concept of temperature shift factor (a(T)) as defined by Doolittle, relating the free volume of a vis-coelastic material at the current and reference states is briefly examined together with the resultant William-Landel-Ferry equation. This paper highlights the fact that change in free volume arise not only from temperature variations but can also result from the absorption of solvents and thus a generalized Doolittle relation may also be applied to a solvent concentration shift factor (a(c)). To validate this concept, a small scale laboratory investigation was carried out by blending 40160 penetration grade bitumen with various proportions of one type of cooking oil and conducting dynamic shear rheometer frequency sweeps at a range of temperatures. By applying time-concentration superposition to each flux content, it was possible to shift horizontally (a(c)) each set of complex modulus data measured at each test temperature, so that all sets superimpose onto the master curve of the base bitumen at a preselected reference temperature. A direct relationship between conventional time-temperature shift and the proposed time concentration shift factors was thus demonstrated using a sample of penetration grade bitumen and one type of vegetable oil. Further experimentation with other bitumen-flux combinations is necessary prior to recommending general adoption of the proposed tool. (C) 2017 Elsevier Ltd. All rights reserved.
机译:杜利特尔(Doolittle)定义了温度漂移因子(a(T))的概念,该概念与当前状态和参考状态下的粘弹性材料的自由体积相关,并与由此产生的威廉-兰德尔-费里方程一起进行了简要研究。本文强调了这样一个事实,自由体积的变化不仅是由于温度变化引起的,而且还可能是由于溶剂的吸收而引起的,因此,广义的Doolittle关系也可以应用于溶剂浓度变化因子(a(c))。为了验证这一概念,通过将40160渗透级沥青与各种比例的一种食用油混合,并在一定温度范围内进行动态剪切流变仪扫频,进行了小型实验室研究。通过对每个助焊剂含量应用时间浓度叠加,可以水平移动(a(c))在每个测试温度下测量的每组复数模量数据,从而使所有组都可以叠加到基础沥青的主曲线上。预选参考温度。因此,使用渗透级沥青和一种类型的植物油样品证明了常规时间-温度变化与建议的时间浓度变化因子之间的直接关系。在建议普遍采用该工具之前,有必要对其他沥青-助焊剂组合进行进一步的试验。 (C)2017 Elsevier Ltd.保留所有权利。

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