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Electric Discharge Impulse Crushing System

The electric discharge impulse crushing system uses a combination of electrical energy and specially formulated chemicals to create impulse forces capable of crushing materials such as bedrock and concrete. The system is designed to ensure crushing force control, minimal noise and vibration and high safety through non-explosive chemicals. The system consists of a power generator, electric discharge impulse generator, discharge cable, and discharge cartridge. The internal condenser is charged, then electrical energy is supplied to the thin wires of the cartridge over a period of just 1/10000 of a second to generate the impulse force.

Major applied fields

Excavation and construction work (civil engineering)

The Electric Discharge Impulse Crushing System is suitable for digging tunnels, vertical shafts and deep foundations and for construction works

Features

  • Destructive force equivalent to explosives for hard bedrock.
  • Safe construction with non-explosive and reduced CO2 generation.
  • Shortening construction period in small and narrow places is realized.
  • Protection of surrounding facilities and minimizing impact of construction work are realized with controlled crushing.

Demolition and repair work (civil engineering and architecture)

The Electric Discharge Impulse Crushing System is used for repairing elastic parts and replacing supports in roads and bridges; repairing dam facilities (such as discharge tubes); removing foundations of facilities, buildings and equipment; crushing concrete structures such as those in water treatment plants; crushing bedrock, and others.

Features

  • Low noise and low vibration work is realized with controlled crushing force.
  • Shortening construction period in small and narrow places is realized.
  • Refurbishment and redevelopment projects with controlled crushing.

Removal of fallen rocks and boulder stones (Disaster prevention)

Applied to the places where removal of fallen rocks, boulder stones and rocks and stones of a failed cliff are required for disaster prevention and disaster reduction.

Features

  • Removal of rocks in dangerous places is realized.
  • Protection of surrounding facilities and minimizing impact of construction work are realized with controlled crushing.
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