Investigation of the Shear Behavior between Layers of Foamed Asphalt Cold-Recycled Pavement

2021 ◽  
Vol 33 (4) ◽  
pp. 04021050
Author(s):  
Lei Fan ◽  
Junyan Yi ◽  
Yan Feng ◽  
Decheng Feng
2004 ◽  
Author(s):  
Libo Ren ◽  
Bazle A. Gama ◽  
John W. Gillespie ◽  
Yen Jr. ◽  
Chian-Fong
Keyword(s):  

Author(s):  
Shi-Jin Feng ◽  
Jia-Liang Shi ◽  
Yang Shen ◽  
Hong-Xin Chen ◽  
Ji-Yun Chang

Materials ◽  
2021 ◽  
Vol 14 (9) ◽  
pp. 2313
Author(s):  
Maria Luisa Beconcini ◽  
Pietro Croce ◽  
Paolo Formichi ◽  
Filippo Landi ◽  
Benedetta Puccini

The evaluation of the shear behavior of masonry walls is a first fundamental step for the assessment of existing masonry structures in seismic zones. However, due to the complexity of modelling experimental behavior and the wide variety of masonry types characterizing historical structures, the definition of masonry’s mechanical behavior is still a critical issue. Since the possibility to perform in situ tests is very limited and often conflicting with the needs of preservation, the characterization of shear masonry behavior is generally based on reference values of mechanical properties provided in modern structural codes for recurrent masonry categories. In the paper, a combined test procedure for the experimental characterization of masonry mechanical parameters and the assessment of the shear behavior of masonry walls is presented together with the experimental results obtained on three stone masonry walls. The procedure consists of a combination of three different in situ tests to be performed on the investigated wall. First, a single flat jack test is executed to derive the normal compressive stress acting on the wall. Then a double flat jack test is carried out to estimate the elastic modulus. Finally, the proposed shear test is performed to derive the capacity curve and to estimate the shear modulus and the shear strength. The first results obtained in the experimental campaign carried out by the authors confirm the capability of the proposed methodology to assess the masonry mechanical parameters, reducing the uncertainty affecting the definition of capacity curves of walls and consequently the evaluation of seismic vulnerability of the investigated buildings.


2021 ◽  
Vol 25 (4) ◽  
pp. 1353-1368
Author(s):  
Yulin Zhan ◽  
Siji Lu ◽  
Yuanbiao Zheng ◽  
Haijun Jiang ◽  
Shaohui Xiong

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