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How Can The Logistics Warehouse Be Aseismatic
Feb 02, 2018

When an earthquake occurs, the logistics and warehousing center in the disaster-stricken area will inevitably be affected. After the earthquake, it will still be able to operate and there will be serious damage to the logistics equipment caused by the earthquake. How to ensure that the logistics center has a certain seismic capacity to reduce the design and manufacture of loopholes caused by the loss of the logistics and storage industry has become the focus of attention.

It is understood that the current seismic warehousing center focuses on how seismic civil warehouses warehouse, how the design of three-dimensional seismic warehouse, as well as warehouse shelves and stacker how to withstand earthquakes, and other low-level equipment such as pallets, forklifts, transportation Line displacement generated in the earthquake, the logistics center has little effect.

1, Earthquake-resistant buildings

Seismic capacity of civil engineering warehouses directly related to the seismic capacity of the entire logistics center. Once the building collapses, the equipment must not be spared. The seismic resistance of civil construction is the most important factor in the earthquake resistance of the logistics center.

At present, there is no specific seismic design code for logistics buildings. The seismic design of logistics and logistics buildings refers to the regulations in Code for Design of Seismic Design of Buildings. According to the building seismic fortification intensity, our country will be mainly divided into A, B, C, D four categories. According to the traditional view, a single-storey warehouse was identified as a small building. However, due to the rapid development of the logistics industry in recent years, there have been many high-rise three-dimensional libraries of important functions that are several times as tall as conventional warehouses. In fact, such storage centers can no longer be regarded as small buildings, Seismic design requirements of buildings.

Seismic fortification is usually achieved through the following steps: Determining the seismic fortification requirements, that is, determining the building's ability to resist earthquake disasters; Seismic design, taking foundation and structural measures to meet the seismic requirements; Seismic construction in strict accordance with the seismic design and construction , To ensure the quality of construction; seismic management, the use of buildings are not free to change the internal structure of the building.

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