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HCBM-2520-D Rockbreaker Boom

HCBM-2520-D Rockbreaker Boom

The HCBM-2520-D hydraulic arm integrates machinery, electricity and hydraulics for hazardous environments. Multi-functional attachments facilitate crushing, grabbing, excavating and more. Robust and durable, it prevents clogs in crushers and mills. In mines, it crushes ore chunks at hoppers. In steel plants it dismantles cases and bricks. Improving material flow and safety across industries like mining, cement, and emergency response, its automation enhances productivity and work conditions.

  • Item No :

    HCBM-2520-D
  • Weight :

    5500 kg
  • Power :

    37 kW
  • Pump flow :

    0-100 L/min
  • Transport Package :

    Steel bracket wooden cases
  • Warranty :

    1 Year

The HCBM-2520-D engineering robotic arm uses the impact force of a hammer and drill rod to break large, hard materials. HCBM-2520-D has a large crushing range. Capable of reaching a maximum distance of 7 meters for crushing work. HCBM-2520-D positioning is accurate. Quickly capture broken objects and hammering points in three-dimensional space. HCBM-2520-D is safe and efficient. Truly achieve human-machine separation. Effectively improve crushing efficiency while ensuring safety. HCBM-2520-D unblocks and crushes material blockages at various crusher inlet ports, chutes, screening ports, loading and unloading stations in mines and gravel aggregates. Of course, including the nuclear industry or special high-risk industries to carry out remote crushing, grasping, cutting, etc. Our HCBM-2520-D has always received unanimous praise.

 

The HCBM-2520-D hydraulic mechanical arm integrates advanced machinery, electricity and hydraulics into a durable system with multiple safety mechanisms. Hydraulically driven for environmentally-friendly high efficiency, its high power rating enables continuous heavy-duty operation. Interchangeable attachments facilitate multi-functional uses like crushing, clamping, shoveling, grabbing, excavating, hooking and prying. Its reinforced cylinders and high-strength steel construction withstand extreme, hazardous conditions.

 

Key Features:

  • Hydraulically driven with high efficiency and environmental friendliness.
  • High power and high safety. The hydraulic system provides stable and powerful mechanical energy. Multiple safety mechanisms ensure safe operation.
  • Multi-functional. Interchangeable attachments enable various functions like crushing, clamping, shoveling, grabbing, excavating, hooking, lifting and prying.
  • Heavy-duty and durable. High strength steel and reinforced hydraulic cylinders allow continuous operation in extreme conditions.

 

Applications:

  1. Quarries and gravel fields Used for secondary crushing of oversized materials at the inlet and outlet of cone crushers and rotary crushers, and for unclogging hoppers.
  2. Open-pit mines Mounted next to large cone crushers and rotary crushers to handle oversized materials at the inlet and unclog hoppers.
  3. Underground metal mines Used at the top of ore passes or hopper throats to quickly crush oversized materials or chunks.
  4. Steel plants Used for preliminary crushing of large smelting materials, breaking open steel cases, dismantling bricks and structures; remote operation in high-temperature and highly dusty environments.
  5. Other industries Construction, demolition, waste recycling, emergency response, and etc. Operates in dangerous areas where manual work is difficult or unsafe

 

The HCBM-2520-D replaces human workers in high-risk duties through an integrated system of advanced hydraulics, machinery and safety features. Powerfully and productively automating difficult or perilous tasks, its multi-functional attachments overcome diverse challenges across industries. A purpose-built solution for extreme conditions requiring heavy-duty mechanical arms, the HCBM-2520-D delivers efficient, safe productivity where risks are high.

 

A solution for automation in labor-intensive industries, the HCBM-2520-D prevents clogs in large crushers, mills and hoppers. In steel plants and mines it dismantles structures and crushes ore chunks, improving material flow and safety.  Mounted on fixed bases or mobile equipment, the HCBM-2520-D operates dependably in demanding environments.Reliable and adaptable, the robust HCBM-2520-D enhances productivity for applications like mining, cement production, demolition, and emergency response. Its heavy-duty and versatile design is suitable for clearing oversized materials, facilitating hazardous processes, and handling dangerous goods.  

 

 

 

 

Performance  
Weight of Machine excluding attachment 3600 kg
Main arm length 2500 mm
Second arm length 2000 mm
Machine height 3940 mm
Oil cylinder  Double swing oil cylinder
Slewing degrees 150°
Hydraulic system  
Pump type Axial piston variable displacement pump
Pump flow 0-105 L/min
System pressure 21 MPa
Hydraulic oil tank capacity 370 L
Dynamical System  
Drive Type/Model Motor Drive/AC380 V, 50 Hz
Power/Speed 37 kW
Current/Voltage 380 V
Workspace Level  
Working height, max. 7180 mm
Working depth, max. 4745 mm
Working radius, max. 7030 mm
Vertical working radius, max. 5010 mm
Vertical working radius, min. 870 mm
  • #
  • #

 

 
Hydraulic hammer
Model HC75 HC85
HC100
HC125
Chisel diameter 75 mm 85 mm
100 mm
125 mm
Weight 458 kg 591 kg
880 kg
1472 kg
Working flow rate 50-90 L/min 50-100 L/min
80-110 L/min
90-120 L/min
Working pressure 12-15 MPa 13-16 MPa
15-17 MPa
15-17 MPa
Impact frequency 400-800 bpm 400-800 bpm
350-700 bpm
350-650 bpm

 

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Our Cases
How Robotics Is Changing the Mining Industry
How Robotics Is Changing the Mining Industry
The mining sector is undergoing a seismic shift, driven by advancements in robotic mining equipment and autonomous mining robots. These technologies are not only enhancing efficiency but also addressing long-standing challenges like worker safety and environmental impact. Among the most transformative innovations are Rockbreaker Boom Systems and Demolition Robots, which are redefining material extraction and site preparation. This article explores the rise of mining robotics, their applications, and measurable benefits, with a focus on how these machines are shaping the future of mining. What Are the Mining Robots? Mining robots are autonomous or semi-autonomous machines engineered to perform high-risk, repetitive, or precision tasks in mining operations. From drilling and blasting to demolition and material handling, these systems reduce human intervention while maximizing productivity. Key categories include: Autonomous Mining Robots These self-guided machines, such as driverless haul trucks and drilling rigs, use AI and GPS to navigate complex terrains. Companies like Rio Tinto and BHP have deployed them to optimize ore extraction in remote locations. Demolition Robots Designed for hazardous environments, Demolition Robots like Hitech’s HCR and Brokk’s electric-powered machines or Husqvarna’s DXR series excel in breaking down concrete structures in confined underground spaces. Their precision minimizes collateral damage, making them ideal for tunnel renovations or mine expansions. Hydrodemolition Robots Using ultra-high-pressure water jets (up to 40,000 psi), Hydrodemolition robots remove concrete without vibrations, preserving structural integrity in sensitive areas like mine shafts or processing plants. Rockbreaker Boom Systems A Rockbreaker Boom System is a hydraulic attachment mounted on excavators (creating a rock breaker excavator) or fixed near crushers. Equipped with a hydraulic rock breaker, it fragments oversized rocks that could clog machinery, ensuring continuous operation. What Machines Are Used in Mining? Modern mining combines traditional heavy machinery with robotics to tackle diverse challenges. Below, we spotlight two game-changers: Rockbreaker Boom Systems and Demolition Robots. Rockbreaker Boom Systems: Powering Productivity A Rockbreaker Boom System consists of a robust boom arm, a hydraulic rock breaker, and a power pack. These systems are critical for: Primary Breaking: Fragmenting large rocks at excavation sites. Secondary Breaking: Reducing oversized debris post-blasting. Crusher Blockage Clearance: Preventing downtime by dislodging jammed materials. Applications and Advantages Feature Traditional Methods Rockbreaker Boom System Efficiency Manual labor slows operations Processes 50–100 tons/hour Safety High risk of flyrock injuries Operators work remotely Cost Frequent equipment downtime Reduces crusher jams by 70% Precision Inconsistent fragmentation Adjustable force for targeted breaks Demolition Robots: Redefining Safety Demolition Robots, such as concrete demolition robots or concrete removal robots, are compact, remote-controlled machines equipped with breakers, crushers, or drills. They excel in: Underground Mining: Dismantling aging infrastructure without risking workers. Surface Mining: Clearing concrete barriers or overburden. Emergency Response: Safely managing collapses or blockages. What Are the Benefits of Mining Robots? The adoption of robotic mining equipment delivers measurable advantages across safety, efficiency, and sustainability. 1. 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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Demolition robots Application In The Security And Rescue
Demolition robots Application In The Security And Rescue
Demolition robots play a crucial role in the field of security and rescue and are suitable for quick demolition operations at disaster sites, such as removing debris from collapsed buildings and breaking through barrier walls to rescue trapped individuals. Compared to traditional manual demolition tools, demolition robots have higher operational efficiency and stronger demolition capabilities, which can quickly open up rescue passages, reduce rescue risks, and improve rescue success rates. At the same time, its precise operational control also reduces secondary damage to the surrounding environment, providing strong support for subsequent rescue and reconstruction work. Clearing of ruins Disaster site demolition Work in hazardous and old environments Search and rescue of trapped individuals Specially designed for safety emergency, fire rescue, and military defense applications. Equipped with remote video control, multi-sensor fusion, intelligent demolition, cutting, grabbing, obstacle clearing, fire extinguishing and other functions, greatly enhancing emergency rescue capabilities and ensuring safety and efficiency.
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