Technical Characteristics Of Explosion-proof Materials

Sep 01, 2025

This product is an explosion suppression material made from a special aluminum alloy using a specialized processing technique. For years, people have been wary of flammable and explosive products like gasoline, liquefied petroleum gas, natural gas, propane, and methane, relying on passive caution and precautions. However, unforeseen and sudden events have caused explosions in chemical plants, refineries, gas stations, vehicles, oil tankers, oil depots, and storage tanks, causing irreparable damage to the nation and its people.

 

To meet market demands, countries around the world have developed various explosion suppression materials, such as polyurethane foam, paper-based materials, and film-based materials. However, these materials exhibit poor chemical stability in petroleum products and are easily cracked and shattered, causing liquid contamination and making them unsuitable for long-term use. For petroleum products to explode, three essential elements must be present: oxygen, combustible materials, and temperature. If even one of these elements is disrupted, the explosion will be prevented. After years of hundreds of repeated formulation experiments, various trace elements were added, and the chemical weight percentages were strictly controlled to create an optimal polygonal honeycomb mesh structure material.

 

The resulting product exhibits altered and uniform internal crystallization, increasing toughness, ductility, bendability, and elasticity. Because the mesh in the laminated layers of this material forms a unique honeycomb structure, the interior of the oil tank, oil tank, and gas cylinder is divided into thousands of tiny "compartments." These "compartments" effectively suppress the spread of flames. This unique structure also exhibits excellent thermal conductivity per unit volume, rapidly absorbing the vast majority of the heat released by combustion, significantly reducing the final temperature after the combustion reaction. The expansion process of the reaction gases is contraction, resulting in minimal increase in the container's pressure, which is consistent with the explosion suppression effect. This aluminum alloy material exhibits excellent explosion suppression properties.

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