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各种动态剪切流变仪测试方法对沥青流变性能测量结果的影响。

Effect of Various Dynamic Shear Rheometer Testing Methods on the Measured Rheological Properties of Bitumen.

作者信息

Sheidaei Maya, Gudmarsson Anders, Langfjell Michael

机构信息

Department of Technology and Society, Lund University, P.O. Box 118, 221 00 Lund, Sweden.

WSP AB, 121 77 Johanneshov, Sweden.

出版信息

Materials (Basel). 2023 Mar 29;16(7):2745. doi: 10.3390/ma16072745.

Abstract

A 2 factorial design experiment was conducted to study the influence of pre-heating temperature (HT) for manufacturing sample, bonding temperature (BT) onto rheometer, and trimming state (Trim) of the sample on complex shear modulus (G*) and phase angle (δ) using a dynamic shear rheometer on unmodified bitumen of types 50/70, 70/100, and two 160/220 from various sources. In addition, the black diagram and 2S2P1D model were used to evaluate the viscoelastic properties of bitumens. Findings show that the G* is more sensitive to the changes than the δ. Additionally, it was found that the 8 mm parallel plate diameter had a higher sensitivity to the trimming state than the 25 mm. The tested factor HT generally did not have a statistically significant impact on the results of the tested materials, except for 160/220_I. At practically all the temperatures tested for 50/70 and 160/220_II, the G* dropped by increasing the factor BT from a lower to a higher value. The Trim:BT interaction has the greatest impact on all materials and temperatures on G*, except for 160/220 at lower temperatures. However, in the case of δ, the Trim:BT interaction has the most significant effects for 70/100 and 160/220_II. The black diagrams show no discernible differences, which may be a result of the limited range of changes made to the variables.

摘要

进行了一项二因素设计实验,以研究使用动态剪切流变仪对来自不同来源的50/70、70/100和两种160/220型未改性沥青制造样品的预热温度(HT)、流变仪上的粘结温度(BT)以及样品的修整状态(Trim)对复数剪切模量(G*)和相位角(δ)的影响。此外,使用黑图和2S2P1D模型来评估沥青的粘弹性性能。结果表明,G比δ对变化更敏感。此外,发现8毫米平行板直径对比25毫米对修整状态更敏感。除了160/220_I之外,测试因素HT通常对测试材料的结果没有统计学上的显著影响。在50/70和160/220_II几乎所有测试温度下,随着因素BT从较低值增加到较高值,G下降。除了较低温度下的160/220之外,Trim:BT相互作用对所有材料和温度下的G*影响最大。然而,在δ的情况下,Trim:BT相互作用对70/100和160/220_II影响最为显著。黑图显示没有明显差异,这可能是变量变化范围有限的结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/81d4/10095605/15f93f1d0543/materials-16-02745-g001.jpg

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