| Literature DB >> 30696026 |
Yanchao Yue1, Moustafa Abdelsalam2, Dong Luo3, Ahmed Khater4, Josephine Musanyufu5, Tangbing Chen6.
Abstract
Due to rapid growth of traffic density, the phenomenon of overloading on high-grade highways causes various modes of distresses to the pavement such as rutting, thermal cracking, and water damage. Modification of asphalt mixes is the most common solution to improve the performance of asphalt pavement to mitigate its damages. This paper provides a review on the influence of diatomite or lignin fiber as a modifier in asphalt mixes. In order to assess the effectiveness of selected additives on asphalt mix performance, several tests, such as wheel tracking, indirect tensile, three points bending, freeze thaw splitting, and marshall immersion, were reviewed. The review indicated that the addition of diatomite increases the high temperature rutting resistance of asphalt mixes, but some researchers observed that it has a little improvement on the low temperature performance of asphalt mixes and the optimum amount of diatomite at 12⁻14% of asphalt binder can be added into the mix. In contrast, lignin fiber has a significant effect on the low temperature cracking resistance of asphalt mixes; however, its influence on the high temperature rutting resistance of asphalt mix is limited, and the optimum amount of lignin fiber is 0.2⁻0.4% per asphalt mix composition. The review also indicated that the single additives haven't the ability to enhance the overall performance of asphalt mix. Consequently, the utilization of double additives can improve the overall performance of asphalt mixes at the same time, but it is still in an early stage in the application of highway engineering due to all previous researches concentrated on the single modification. Moreover, this review suggests that the future use of diatomite and lignin fiber compound modified asphalt mix can improve the overall mix performance.Entities:
Keywords: asphalt mix; diatomite; lignin fiber; moisture damage; rutting; thermal cracking
Year: 2019 PMID: 30696026 PMCID: PMC6384685 DOI: 10.3390/ma12030400
Source DB: PubMed Journal: Materials (Basel) ISSN: 1996-1944 Impact factor: 3.623
Component of asphalt mixes modified with diatomite [15,16,17,18,19,20,21,22,23,24].
| Ref. | Asphalt Mix Type | Bitumen Type | O.A.C *% | Aggregate Type | Filler Type | Gradation of Asphalt Mix |
|---|---|---|---|---|---|---|
| [ | Coarse asphalt | Shell 70 | N/A | Basalt | Limestone | AC-13 |
| [ | Sand asphalt | Shell 70 | N/A | Basalt | Limestone | AC-13 |
| [ | Sand asphalt | PG64-22 | 5.80 | Rocky mountainous | N/A ** | Nominal maximum aggregate size of 19 mm |
| [ | Coarse asphalt | PG76 | 5.25 | N/A | N/A | Nominal maximum aggregate size of 14 mm |
| [ | Coarse asphalt | Shell 70 | 4.20 | limestone | N/A | AC-20 |
| [ | Coarse asphalt | Shell 90 | N/A | limestone | N/A | AC-13 |
| [ | Coarse asphalt | Shell 90 | 4.00 | limestone | N/A | AC 25 |
| [ | Coarse asphalt | Shell 90 | 4.20 | N/A | N/A | AC-20 |
| [ | Coarse asphalt | Shell 110 | N/A | Granite | Limestone | AC-13 |
| [ | Coarse asphalt | Shell 90 | 4.50 | N/A | Limestone | AC-20 |
* Optimum Asphalt Content; ** Not Available.
Part of summary of diatomite modified asphalt mix for improving pavement performance [15,16,17,18,19,20,21,22,23,24].
| Ref. | Modifier | High Temperature Performance (60 °C) | Low Temperature Performance (−10 °C) | Water Stability Performance | |||
|---|---|---|---|---|---|---|---|
| Modifier Type | Modifier Content (% of Asphalt Binder) | Dynamic Stability | Max. Tensile Stress (MPa) | Max. Tensile Strain (µƐ) | Residual Stability (%) | TSR (%) | |
| [ | Diatomite | 0 | 1645 | 7.91 | 1130.84 | 83 | 85 |
| 12 | 5625 | 8.14 | 1352.72 | 88 | 94 | ||
| [ | Diatomite + limestone powder | 0 + 16.2* | ---------- | 1.77 | ---------- | ---------- | --------- |
| 3.2* + 12.2* | 2.08 | ||||||
| 6.5* + 8.1* | 2.35 | ||||||
| 9.4* + 4.1* | 2.25 | ||||||
| 13* + 0 | 1.95 | ||||||
| [ | Diatomite + Basalt fiber | 0.0 | ---------- | 1.68 | 8350 | ---------- | --------- |
| 15 + 0.0 | 1.96 | 7390 | |||||
| 15 + 0.3 ** | 2.05 | 9430 | |||||
| [ | Diatomite | 2 | ---------- | ---------- | ---------- | ---------- | 91.9 |
| [ | Diatomite | 0 | 1027 | ---------- | ---------- | ---------- | 77.35 |
| 9 | 2075 | 86.76 | |||||
| 11 | 2496 | 87.88 | |||||
| 13 | 2865 | 90.31 | |||||
| 15 | 2633 | 87.85 | |||||
| [ | Diatomite + Glass fiber | 0.0 + 0.2 ** | 696 | 3.42 | 3000 | ---------- | --------- |
| 0.1 **+ 0.2 ** | 919 | 3.8 | 3175 | ||||
| 0.2 **+ 0.2 ** | 1088 | 3.55 | 3450 | ||||
| 0.3 ** + 0.2 ** | 1260 | 3.4 | 3300 | ||||
| [ | Diatomite + PE | 0 | ---------- | 8.4 | 887.8 | ---------- | --------- |
| 14 + 0 | 9.7 | 978.2 | |||||
| 14 + PE | 12 | 1248.6 | |||||
| [ | Diatomite | 0 | 1186 | ---------- | ---------- | ---------- | --------- |
| 6 | 2517 | ||||||
| [ | Diatomite | 0 | 1321 | ---------- | ---------- | 95.7 | 89.4 |
| 20 | 2051 | 98 | 98.6 | ||||
| [ | Diatomite | 0 | ---------- | 7.19 | 2000 | ---------- | --------- |
| 14 | 6.57 | 1875 | |||||
* Modifier content of the total mass of aggregate; ** Modifier content percent of the asphalt mixture.
Component of asphalt mixes modified with lignin fiber [14,25,26,27,28,29,30].
| Ref. | Asphalt Mix Type | Bitumen Type | O.A.C *% | Aggregate Type | Filler Type | Gradation of Asphalt Mix |
|---|---|---|---|---|---|---|
| [ | Coarse asphalt | Shell 70 | 4.3 (0.00% CRM) | Limestone | Limestone | AC-13 |
| [ | Coarse asphalt | Shell 70 | 4.5 (AC-13) | Limestone | Limestone | AC-13 & AC-16 |
| [ | Coarse asphalt | Shell 90 | N/A ** | Basalt | N/A | AC-16 |
| [ | SMA | Shell 90 | 4.0 | Basalt | Limestone | AC-13 |
| [ | Coarse asphalt | Shell 90 | 5.6 | N/A | N/A | AC-13 |
| [ | SMA | Shell 70 | 5.8 (0.26% L.F) | Limestone | Limestone | AC-16 |
| [ | SMA | Shell 90 | 6.0 | Limestone | Limestone | AC-16 |
* Optimum Asphalt Content; ** Not Available.
Part of summary of lignin fiber modified asphalt mix for improving pavement performance [14,25,26,27,28,29,30].
| Ref. | Modifier | High Temperature Performance | Low Temperature Performance (−10 °C) | Water Stability Performance | |||
|---|---|---|---|---|---|---|---|
| Modifier Type | Modifier Content (% of Asphalt Mixes) | Dynamic Stability | Max. Tensile Stress (MPa) | Max. Tensile Strain (µƐ) | TSR (%) | Residual Stability (%) | |
| [ | CRM | 0.0 | ---------- | ---------- | ---------- | 80.8 | 88.2 |
| 0.4 | ↑3.0 times | ↑34.6% | ↑34.40% | 91.5 | 93.9 | ||
| 0.8 | ↑5.6 times | ↑32.43% | ↑38.10% | 89.7 | 90.3 | ||
| 1.2 | ↑8.0 times | ↑30.25% | ↑32.49% | 83.7 | 89.3 | ||
| [ | Only Lignin Fiber | 0.0 | ---------- | ---------- | ---------- | 82.9, 82.5 | 88.13, 87 |
| 0.36 | Effect is not obvious | ---------- | ↑1.98, 2.04 times | 84, 83.7 | 88.5, 89.7 | ||
| Lignin fiber + Anti-rutting agent | 0.36 + 0.40 | ↑7.9, 8.4 times | ---------- | ↑2.00, 2.10 times | 93, 90.7 | 91.9, 95.45 | |
| [ | Lignin Fiber | 0.0 | ---------- | ---------- | ---------- | 77.5 | ---------- |
| 0.3 | ↑11.1% | ↑12.2% | ↑9.00% | 80.4 | ---------- | ||
| [ | Lignin Fiber + Rubber powder | 0.0 + 0.13 | 4272 | 11.17 | 2616.02 | 73.67 | 82.31 |
| 0.2 + 0.13 | 4634 | 13.77 | 3105.42 | 82.56 | 88.71 | ||
| 0.25 + 0.13 | 5112 | 14.06 | 3264.70 | 88.00 | 90.35 | ||
| 0.3 + 0.13 | 5480 | 14.17 | 3473.47 | 77.74 | 80.16 | ||
| [ | Lignin Fiber | 0.0 | ---------- | ---------- | ---------- | 78.8 | ---------- |
| 0.3 | Rutting depth | ↑6% | 68.1 | ---------- | |||
| [ | Lignin Fiber (L.F) | 0.26 | 5875 | ---------- | ---------- | ---------- | 84.73 |
| 0.30 | 7172 | 89.53 | |||||
| 0.34 | 6554 | 88.05 | |||||
| 0.38 | 5249 | 85.36 | |||||
| [ | Lignin Fiber | 0.3 | 5877 | ---------- | ---------- | 63.6 | 93.1 |