Generalized relation of bitumen stress at shear to its penetration in a range from softening point temperature to breaking point temperature

dc.contributor.authorZolotaryov, Victor
dc.contributor.authorЗолотарьов, Віктор Олександрович
dc.date.accessioned2022-05-27T14:30:19Z
dc.date.available2022-05-27T14:30:19Z
dc.date.issued2022
dc.description.abstractThe problem of assessing the quality of bitumen is in the fact that the common quality indicators are empirical. They do not allow the objective characterization neither the consistency of bitumen no its transition from one state of matter to other. Goal. The solution to this problem is based on the principle that the resistance of bitumen to the penetration of the needle is a shear characteristic under conditions of complete adhesion to the surface of the needle. Methodology. The practical confirmation of this approach is based on the Core & Laurent method, which takes into account the rate of the bitumen layer and the resistance force to this displacement based on the geometric parameters of the needle and the force applied to it. Attempts to estimate bitumen viscosity with the depth of needle penetration have failed for two reasons. Firstly, bitumen viscosity is principally a technological characteristic. Secondly, in the simple conversion of the penetration value into viscosity neither the shear rate nor flow anomalies and a units ratio were taken into account. Results. In this research work the shear stress at penetration at the softening point temperature and breaking point temperature is taken as a mechanical characteristic of the states of matter. This statement of the problem is based on the linearity of the relationship between the test temperature and log of penetration, established by Hekelom. Later, this relationship was supplemented with a temperature of equal penetration T31 as a midpoint of the plasticity interval of bitumen with the same penetration but different penetration indexes. Practical value of this work is results in finding the relation between penetration and the reverse pliability G*/sin φ, which is applied in the Superpave system to evaluate the bitumen component in the rutting resistance of asphalt concrete.uk_UK
dc.identifier.citationZolotaryov, V. Generalized relation of bitumen stress at shear to its penetration in a range from softening point temperature to breaking point temperature / Zolotaryov V. // Вiсник Харкiвського нацiонального автомобiльно-дорожнього унiверситету : зб. наук. пр. / М-во освiти i науки України, Харків. нац. автомоб.-дор. ун-т ; редкол.: А. Г. Батракова (гол. ред.) та iн. – Харкiв, 2022. – Вип. 96. – С. 121–130.uk_UK
dc.identifier.issn2219-5548
dc.identifier.urihttps://dspace.khadi.kharkov.ua/handle/123456789/5406
dc.language.isoenuk_UK
dc.publisherХарківський національний автомобільно-дорожній університетuk_UK
dc.subjectbitumenuk_UK
dc.subjectsoftening point temperatureuk_UK
dc.subjectpenetrationuk_UK
dc.subjectisopenetrationuk_UK
dc.subjectbreaking point temperatureuk_UK
dc.subjectcomplex modulusuk_UK
dc.subjectphase angleuk_UK
dc.subjectstressuk_UK
dc.subjectбітумuk_UK
dc.subjectтемпература розм’якшеностіuk_UK
dc.subjectпенетраціяuk_UK
dc.subjectізопенетраціяuk_UK
dc.subjectтемпература крихкостіuk_UK
dc.subjectкомплексний модульuk_UK
dc.subjectфазовий кутuk_UK
dc.subjectнапругаuk_UK
dc.subject.doi10.30977/BUL.2219-5548.2022.96.0.121uk_UK
dc.subject.udc665.775uk_UK
dc.titleGeneralized relation of bitumen stress at shear to its penetration in a range from softening point temperature to breaking point temperatureuk_UK
dc.title.alternativeУзагальнений взаємозв’язок напруження зсуву бітуму від його пенетрації в діапазоні від температури розм’якшеності до температури крихкостіuk_UK
dc.typeArticleuk_UK

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