An experimental and analytical study of the sound wave propagation in beam formed from rubberized concrete material

被引:2
作者
Mohamed, Salhi [1 ]
Omar, Safer [1 ]
Mouloud, Dahmane [2 ,3 ]
Nouria, Hassene Daouadji [1 ]
Li, Alex [4 ]
Amar, Benyahia [1 ,5 ]
Toufik, Boubekeur [1 ,6 ]
Abdelhak, Badache [7 ,8 ]
机构
[1] Univ Relizane, Innovat Mat Lab & Renewable Energies, Relizane, Algeria
[2] Univ Hassiba Benbouali Chlef, Fac Civil Engn & Architecture, Dept Civil Engn, Lab Struct Geotech & Risks, Chelf, Algeria
[3] Higher Natl Sch Hydraul, Dept Planning & Hydraul Engn, Blida 9000, Algeria
[4] Univ Reims, Mat & Mech Engn, Reims, France
[5] Univ Saad Dahleb, Blida, Algeria
[6] Tissemsilt Univ, BP 182, Tissemsilt 38000, Algeria
[7] ENPO Maurice Audin, LABMAT Lab, BP 1523, El Mnaouer 31000, Oran, Algeria
[8] Univ Relizane, Dept Civil Engn, Bourmadia, Algeria
关键词
higher-order shear; mode frequency; mode velocity; rubberized concrete; waste rubber; wave propagation; HIGHER-ORDER SHEAR; CRUMB RUBBER; ELASTIC FOUNDATIONS; AGGREGATE CONCRETE; TIRE RUBBER; DISPERSION PROPERTIES; MECHANICAL-PROPERTIES; VIBRATION RESPONSE; CEMENT COMPOSITE; FG-BEAMS;
D O I
10.12989/eas.2024.27.2.127
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
The amount of wave propagation through a rubber concrete construction is the subject of the current investigation. Rubber tire waste was used to make two different types of cement mixtures. One type contains sand substitute in amounts ranging from 15% to 60% of the total volume, while the other has gravel with diameters of 3/8 and 8/15 and 15% sand in the same mixture. A wide variety of concrete forms and compositions were created, and their viscous and solid state characteristics were assessed, along with their short-, medium-, and long-term strengths. Diffusion, density, mechanical strength resistance to compressive force, and ultrasound wave propagation were also assessed. The water-to-cement ratio and plasticizer were used in this investigation. In the second part of the study, an analytical model is presented that simulates the experimental model in predicting the speed of waves and the frequencies accompanying them for this type of mixture. Higher order shear deformation beam theory for wave propagation in the rubberized concrete beam is developed, considering the bidirectional distribution, which is primarily expressed by the density, the Poisson coefficient, and Young's modulus. Hamilton's concept is used to determine the governing equations of the wave propagation in the rubberized concrete beam structure. When the analytical and experimental results for rubber concrete beams were compared, the outcomes were very comparable. The addition of rubber gravel and sandy rubber to the mixture both resulted in a discernible drop in velocities and frequencies, according to the data.
引用
收藏
页码:127 / 142
页数:16
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