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RXR-Q300L-AHHC Flood Drainage Robot

RXR-Q300L-AHHC Flood Drainage Robot

 

Driven by diesel engine and hydraulic system, and uses a variety of control methods, such as wireless remote control/wired remote control/vehicle body control. The robot adopts six-wheel walking, which can be quickly installed with tracks to achieve wheel-and-shoe compounding. It can be used for drainage and rescue in urban garages, subway stations, tunnels, culverts, urban narrow roads and other environments. When floods occur in cities, resulting in serious water storage in underground garages, subways, tunnels, etc., the robot (wheel-and-shoe compounding) can realize rapid flood discharge rescue. This product has functions such as drainage, audio & video reconnaissance, water leakage reconnaissance, and environmental reconnaissance in disaster areas. The tracks can be quickly disassembled and assembled to meet different use environments and road conditions.

  • Item No :

    RXR-Q300L-AHHC
  • Weight :

    1243 kg
  • Specifications :

    2181*1569*1395 mm
  • Climbing inclination :

    30°
  • Transport Package :

    Steel bracket wooden cases

Features:
Versatile functions :

  • Water Supply: It can supply water to fire trucks and also serve as a water intake module for remote water supply. There is no need for a water intake platform, and it can enter the water on its own. It has a large flow rate and a fast water supply speed.
  • Flood Drainage: It has a large drainage flow rate, can drain water over a long distance, is easy to operate, and can be quickly deployed in place.
  • Strong Adaptability: It has low requirements for water quality and can drain sewage containing small solid particles and other impurities.

Amphibious wheeled chassis : It adopts a 6*6 wheeled + tracked chassis, which is hydraulically driven and amphibious, enabling it to travel on all terrains. It can float and move on water, and is suitable for various rescue scenarios. The dual-purpose chassis of tires + tracks (the tracks can be quickly disassembled and assembled) allows it to easily cross obstacles and is suitable for complex terrain areas such as rough, muddy and narrow roads where large vehicles cannot enter.

Remote relay : It has a long drainage distance and a long continuous working time. If the water supply distance is too long, a water supply and drainage robot can be used to provide additional power in the middle.

Remote control start : It enables remote control with the separation of humans and the machine. The status parameters are observable and controllable, and it is safe and reliable.

Hydraulic interface : It has multiple hydraulic power output interfaces and an ultra-high-pressure hydraulic oil source, and can be externally connected to demolition tools such as hydraulic circular saws.

 

Widely applied in:

  • Flood drainage, emergency rescue and disaster relief in urban garages
  • Flood drainage and rescue in subway stations
  • Flood drainage and rescue in tunnel and culvert terrains
  • Flood drainage on narrow urban roads
  • Flood drainage and emergency rescue in reservoirs and ponds
  • As a water intake module for remote water supply



Machine  weight 1243 kg
Dimensions 2181*1569*1395 mm
Driving speed 0-4 km/h
Driving speed in water 0-2 km/h
Diesel fuel tank capacity 60 L
Hydraulic oil tank capacity 60 L
Remote control distance ≥500 m
Side tilt stability angle 25°
Climbing angle 30°
Ground clearance 113 mm
Max. distance of the drainage belt 500 mm
Drainage flow rate
2*600 m³/h  
Lift height
10 m
Duration on water
≥ 8 h
Winch traction force
6 kN



size:




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Our Cases
How Robotics Is Changing the Mining Industry
How Robotics Is Changing the Mining Industry
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Enhanced Worker Safety Demolition Robots eliminate exposure to falling debris, silica dust, and explosives. Rockbreaker Boom Systems allow operators to control breaks from a safe distance. Result: A 2019 study found mines using robotics saw a 45% drop in injury rates. 2. Operational Efficiency Metric Manual Operations Robotic Operations Drilling Accuracy ±15 cm deviation ±2 cm deviation (autonomous rigs) Downtime 8–12 hours/week 2–3 hours/week Output Consistency Variable due to human fatigue 24/7 operation with AI optimization 3. Cost Savings While initial investments are high, robotics reduces long-term expenses: Labor Costs: Autonomous fleets cut staffing needs by up to 40%. Fuel Consumption: Electric Demolition Robots use 60% less energy than diesel equivalents. Maintenance: Predictive analytics in Rockbreaker Boom Systems lower repair costs by 25%. 4. Environmental Sustainability Hydrodemolition robots produce no dust or vibrations, protecting ecosystems. Electric autonomous mining robots reduce greenhouse gas emissions by 35% compared to diesel machinery. The Future of Mining Robotics As AI and IoT evolve, mining robots will become smarter and more interconnected. For instance, Rockbreaker Boom Systems could integrate with drone-based mapping to preemptively target rock formations, while Demolition Robots might use machine learning to optimize demolition patterns. Leading manufacturers like Sandvik, Epiroc, and Hitech (www.hcrot.com) are pioneering these advancements, offering customizable solutions for mines of all scales. From Rockbreaker Boom Systems that keep crushers running smoothly to Demolition Robots that safeguard workers in hazardous zones, robotics is undeniably the future of mining. To explore cutting-edge robotic mining equipment tailored to your operations, visit www.hcrot.com and discover how automation can transform your productivity and profitability.
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