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MCE 2026
Tuesday, January 20, 2026
JEC WORLD 2026

ATLAS COPCO COMPACTOR ATTACHMENTS

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Advancing Prefabrication 2026

Six hydraulic compactors from Atlas Copco are for use on carriers ranging from 2,205 to 88,185 pounds. The housing attachment is offset at 15 degrees, which the company says improves the force distribution on the plate and reduces the stress and wear on the compactor. PermaLube system keeps the bearing flooded with lubricating oil. An integrated control valve regulates flow and pressure to prevent motor overload. Use requires standard adapter plates and attachment brackets.

Compactor Specifications

HC 1050

Carrier weight class: 44,092 – 88,185 pounds

Operating weight: 2,491 pounds

Oil flow: 40 gpm

Operating pressure: 2,176 psi

Force: 23,149 pounds

Work area: 1,395 square inches

HC 1055

Carrier weight class: 44,092 – 88,185 pounds

Operating weight: 2,502 pounds

Oil flow: 50 gpm

Operating pressure: 2,176 psi

Force: 25,133 pounds

Work area: 1,395 square inches

 

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Smart Construction Equipment Driving Jobsite Productivity

The integration of intelligent systems within heavy machinery is fundamentally altering how infrastructure is built, focusing on the synergy between automated controls and data-driven insights to maximize efficiency. By leveraging the power of connected assets, project managers can now achieve levels of precision and speed that were once considered unattainable in the traditional building environment.

Sustainable Construction Machinery for Low Emission Sites

Reducing the carbon footprint of the building sector requires a total reimagining of engine technology and energy consumption, leading to the rise of specialized machinery that balances power with environmental stewardship. By prioritizing low emission operation and energy-efficient designs, contractors are meeting the dual challenge of fulfilling ambitious infrastructure goals while adhering to increasingly stringent global climate regulations.

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Removing the physical limitations of manual operation through sophisticated control logic allows heavy machinery to achieve tolerances and safety standards that were previously impossible, defining the new era of autonomous building. By transitioning toward self-correcting systems and remote-controlled assets, the sector is ensuring that complex infrastructure can be delivered with surgical precision and minimal human risk.

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