重庆建筑
重慶建築
중경건축
CHONGQING ARCHITECTURE
2014年
12期
37-40
,共4页
再生沥青%掺量%强度%模量%性能
再生瀝青%摻量%彊度%模量%性能
재생력청%참량%강도%모량%성능
recycled asphalt%mixing amount%strength%modulus%property
该文通过再生沥青混合料和再生沥青的复合模量,探讨旧沥青混合料掺量对混合料以及再生沥青的影响。对于PG 64-22级沥青,考虑了15%,25%,40%三个旧料掺量水平;对于PG58-28,考虑了25%和40%两个旧料掺量水平;同时以PG64-22沥青,不添加旧料作为对照组。成型后的混合料试件在三个不同的温度下进行测试以确定其复合动态模量(|E*|)。同时分别在相同的温度下对抽提后的再生沥青,抽提后新沥青以及新沥青进行复合剪切模量测试(|G*|)。对混合料试件进行了低温蠕变和间接拉伸试验,以确定其低温蠕变柔量和间接拉伸强度,以用来预估路面的临界开裂温度。统计分析结果表明,旧料掺量为15%和25%时,其平均强度和动态模量没有显著差别。只有当温度较高时,对照组和旧料掺量为40%的混合料间存在一些差异。
該文通過再生瀝青混閤料和再生瀝青的複閤模量,探討舊瀝青混閤料摻量對混閤料以及再生瀝青的影響。對于PG 64-22級瀝青,攷慮瞭15%,25%,40%三箇舊料摻量水平;對于PG58-28,攷慮瞭25%和40%兩箇舊料摻量水平;同時以PG64-22瀝青,不添加舊料作為對照組。成型後的混閤料試件在三箇不同的溫度下進行測試以確定其複閤動態模量(|E*|)。同時分彆在相同的溫度下對抽提後的再生瀝青,抽提後新瀝青以及新瀝青進行複閤剪切模量測試(|G*|)。對混閤料試件進行瞭低溫蠕變和間接拉伸試驗,以確定其低溫蠕變柔量和間接拉伸彊度,以用來預估路麵的臨界開裂溫度。統計分析結果錶明,舊料摻量為15%和25%時,其平均彊度和動態模量沒有顯著差彆。隻有噹溫度較高時,對照組和舊料摻量為40%的混閤料間存在一些差異。
해문통과재생력청혼합료화재생력청적복합모량,탐토구력청혼합료참량대혼합료이급재생력청적영향。대우PG 64-22급력청,고필료15%,25%,40%삼개구료참량수평;대우PG58-28,고필료25%화40%량개구료참량수평;동시이PG64-22력청,불첨가구료작위대조조。성형후적혼합료시건재삼개불동적온도하진행측시이학정기복합동태모량(|E*|)。동시분별재상동적온도하대추제후적재생력청,추제후신력청이급신력청진행복합전절모량측시(|G*|)。대혼합료시건진행료저온연변화간접랍신시험,이학정기저온연변유량화간접랍신강도,이용래예고로면적림계개렬온도。통계분석결과표명,구료참량위15%화25%시,기평균강도화동태모량몰유현저차별。지유당온도교고시,대조조화구료참량위40%적혼합료간존재일사차이。
With the composite modulus of recycled asphalt mixture and recycled asphalt, the impact of mixing amount of old asphalt on recycled asphalt is discussed. To PG 64-22 asphalt, the three mixing amount levels of 15%,25%and 40%are taken into consideration;to PG58-28 asphalt, the two old mixing amount levels of 25%and 40%are considered;and PG64-22 asphalt with no old mixing for comparison. The finished mixing materials are tested under three different temperatures to determine its composite dynamic modulus (|E*|). Meanwhile, recycled asphalt extracted under the same temperature and the new asphalt are applied to do composite shear modulus test (|G*|). Low temperature creep and indirect tensile test are done to mixture test pieces;so that the temperature creep compliance and indirect tensile strength are determined to estimate the critical cracking temperature of the road. The analy-sis results show that there are no obvious differences in average strength and dynamic modulus when the old mixing amount is at 15%and 25%, but there are some differences when at 40%with higher temperature.