A parametric study of cohesive particle agglomeration in a shear flow—numerical simulations by the discrete element method

2016 ◽  
Vol 38 (5) ◽  
pp. 611-620 ◽  
Author(s):  
Aslak S. Hellestø ◽  
Maryam Ghaffari ◽  
Boris V. Balakin ◽  
Alex C. Hoffmann
2020 ◽  
Vol 4 ◽  
pp. 100050
Author(s):  
Hideya Nakamura ◽  
Hiroharu Takimoto ◽  
Naoki Kishida ◽  
Shuji Ohsaki ◽  
Satoru Watano

Materials ◽  
2020 ◽  
Vol 13 (19) ◽  
pp. 4329
Author(s):  
Xin Tan ◽  
Zhengbo Hu ◽  
Wengui Li ◽  
Suhua Zhou ◽  
Tenglong Li

This paper investigates the failure processes of recycled aggregate concrete by a model test and numerical simulations. A micromechanical numerical modeling approach to simulate the progressive cracking behavior of the modeled recycled aggregate concrete, considering its actual meso-structures, is established based on the discrete element method (DEM). The determination procedure of contact microparameters is analyzed, and a series of microscopic contact parameters for different components of modeled recycled aggregate concrete (MRAC) is calibrated using nanoindentation test results. The complete stress–strain curves, cracking process, and failure pattern of the numerical model are verified by the experimental results, proving their accuracy and validation. The initiation, growth, interaction, coalescence of microcracks, and subsequent macroscopic failure of the MRAC specimen are captured through DEM numerical simulations and compared with digital image correlation (DIC) results. The typical cracking modes controlled by meso-structures of MRAC are concluded according to numerical observations. A parameter study indicates the dominant influence of the macroscopic mechanical behaviors from the shear strength of the interfacial transition zones (ITZs).


2017 ◽  
Vol 8 (6) ◽  
pp. 572-576
Author(s):  
Irina Grinbergienė ◽  
Audrius Čereška

The article includes particles agglomeration principles analysis. Forces describes with the equations operating particle of its moving in the vibes. It presents equations of particle movement speed and trajectory estimation. It have performed agglomerations simulation of two identical (5 mm and 5 mm) and different (5 mm and 10 mm) diameters particles in the acoustic field using the discrete element method (DEM). The results showed that the two equal diameter particle agglomeration gravity affects at 8 kHz acoustic signal frequency. Straipsnyje pateikta dalelių aglomeracijos dėsnių analizė. Lygtimis aprašytos jėgos, veikiančios dalelę, judančią terpėje. Pateiktos dalelės judėjimo greičio ir trajektorijos nustatymo lygtys, atliktas dviejų vienodų (5 m ir 5 m) ir skirtingų (5 m ir 10 m) skersmenų dalelių aglomeracijos akustiniame lauke modeliavimas, taikant diskrečiųjų elementų metodą (DEM). Gavus rezultatus nustatyta, kad dviejų vienodo skersmens dalelių aglomeracijai gravitacija turi įtakos tik esant 8 kHz akustinio signalo dažniui.


2009 ◽  
Author(s):  
J.-F. Jerier ◽  
B. Harthong ◽  
D. Imbault ◽  
F.-V. Donzé ◽  
P. Dorémus ◽  
...  

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