Research on Damage Characteristics of Brick Masonry under Explosion Load

As the main structural component of partition wall or load-bearing wall, brick masonry has been widely used in construction engineering. However, brick and mortar are all brittle materials prone to crack. Nowadays, fireworks, gas stoves, high-pressure vessels, and other military explosives may explo...

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Main Authors: Jifeng Wei, Zhixin Du, Yonghui Zheng, Oundavong Ounhueane
Format: Article
Language:English
Published: Hindawi Limited 2021-01-01
Series:Shock and Vibration
Online Access:http://dx.doi.org/10.1155/2021/5519231
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spelling doaj-edc7f4bf42f648d4975d863a3ebdfd682021-09-06T00:01:24ZengHindawi LimitedShock and Vibration1875-92032021-01-01202110.1155/2021/5519231Research on Damage Characteristics of Brick Masonry under Explosion LoadJifeng Wei0Zhixin Du1Yonghui Zheng2Oundavong Ounhueane3State Key Laboratory of Explosion Science and TechnologyState Key Laboratory of Explosion Science and TechnologyState Key Laboratory of Explosion Science and TechnologyState Key Laboratory of Explosion Science and TechnologyAs the main structural component of partition wall or load-bearing wall, brick masonry has been widely used in construction engineering. However, brick and mortar are all brittle materials prone to crack. Nowadays, fireworks, gas stoves, high-pressure vessels, and other military explosives may explode to damage nearby structures. Many explosion casualties had shown that the load-bearing capacity of brick masonry decreased dramatically and cracks or fragments appeared. Previous studies mainly focused on noncontact explosion in which shock wave is the main damage element. In fact, the response and damage effect of brick masonry wall under contact explosion are more complex, which attracts more attention now. In order to explore the damage characteristics of brick masonry under explosion load, a series of simulations and verification experiments are conducted. RHT and MO granular material models are introduced to describe the behaviour of brick and masonry, respectively, in simulation. The combination effect of front compressive wave and back tensile wave are main factors influencing the breakage of masonry wall. The experimental results are well in accordance with the simulation results. The front cross section dimension of crater is closely related to the radius of spherical explosive charge. A power function predictive model is developed to express the relationship between the radius of hole and the radius of explosive. Furthermore, with increasing the quantity of explosive charge, the number and ejection velocity of fragments are all increased. The relationship between maximum ejection velocity and the quantity of explosive also can be expressed as a power function model.http://dx.doi.org/10.1155/2021/5519231
collection DOAJ
language English
format Article
sources DOAJ
author Jifeng Wei
Zhixin Du
Yonghui Zheng
Oundavong Ounhueane
spellingShingle Jifeng Wei
Zhixin Du
Yonghui Zheng
Oundavong Ounhueane
Research on Damage Characteristics of Brick Masonry under Explosion Load
Shock and Vibration
author_facet Jifeng Wei
Zhixin Du
Yonghui Zheng
Oundavong Ounhueane
author_sort Jifeng Wei
title Research on Damage Characteristics of Brick Masonry under Explosion Load
title_short Research on Damage Characteristics of Brick Masonry under Explosion Load
title_full Research on Damage Characteristics of Brick Masonry under Explosion Load
title_fullStr Research on Damage Characteristics of Brick Masonry under Explosion Load
title_full_unstemmed Research on Damage Characteristics of Brick Masonry under Explosion Load
title_sort research on damage characteristics of brick masonry under explosion load
publisher Hindawi Limited
series Shock and Vibration
issn 1875-9203
publishDate 2021-01-01
description As the main structural component of partition wall or load-bearing wall, brick masonry has been widely used in construction engineering. However, brick and mortar are all brittle materials prone to crack. Nowadays, fireworks, gas stoves, high-pressure vessels, and other military explosives may explode to damage nearby structures. Many explosion casualties had shown that the load-bearing capacity of brick masonry decreased dramatically and cracks or fragments appeared. Previous studies mainly focused on noncontact explosion in which shock wave is the main damage element. In fact, the response and damage effect of brick masonry wall under contact explosion are more complex, which attracts more attention now. In order to explore the damage characteristics of brick masonry under explosion load, a series of simulations and verification experiments are conducted. RHT and MO granular material models are introduced to describe the behaviour of brick and masonry, respectively, in simulation. The combination effect of front compressive wave and back tensile wave are main factors influencing the breakage of masonry wall. The experimental results are well in accordance with the simulation results. The front cross section dimension of crater is closely related to the radius of spherical explosive charge. A power function predictive model is developed to express the relationship between the radius of hole and the radius of explosive. Furthermore, with increasing the quantity of explosive charge, the number and ejection velocity of fragments are all increased. The relationship between maximum ejection velocity and the quantity of explosive also can be expressed as a power function model.
url http://dx.doi.org/10.1155/2021/5519231
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