Fully Automatic Brick Machines Boost Full-process Automatic Upgrading of Building Brick Production
Driven by the industrial upgrading of the construction materials sector, fully automatic brick making machines equipped with integrated intelligent manufacturing technology have gradually replaced traditional manual and semi-automatic equipment and become mainstream production facilities in the brick manufacturing industry. In line with national construction machinery technical standards, a fully automatic brick machine is an integrated device composed of mechanical transmission, hydraulic regulation and electronic intelligent control modules. It autonomously completes full production procedures including raw material conveying, mixing, material distribution, compression molding and stacking with minimal manual intervention, which streamlines production workflows and reduces overall labor costs.
The equipment consists of a structural frame, PLC control unit, vibration system, hydraulic system and feeding system. Its standard operational process covers raw material storage, conveying and homogeneous mixing. The built-in intelligent system distributes prepared materials to molds, where stable hydraulic pressure compacts brick blanks before automatic brick discharging and stacking. Unlike traditional brick making devices, fully automatic models adopt static pressure molding with a working pressure ranging from 12 to 25 MPa. This standardizes brick compactness, ensures finished products meet industrial compressive strength criteria, and improves the consistency of batch products.
Commercially available fully automatic brick machines are categorized into three types: full hydraulic type, hydraulic-mechanical composite type and servo electric type. These devices can produce hollow bricks, permeable bricks, pavement bricks and other standard building brick products. Adopting a non-firing production method, the equipment forms qualified bricks through high-pressure molding combined with natural curing or steam curing without high-temperature sintering. This production mode reduces energy consumption and pollutant emissions, conforming to the green and low-carbon development trend of the construction materials industry. It is widely applied in municipal infrastructure construction, rural development and commercial brick manufacturing projects.
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