BZ805-10 High Efficiency And Energy-Saving Excavator
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Engine Power: 336KW/1800rpm Overall Weight: 77.2T Bucket Capacity: 4m³(3.5~5.5m³optional) TECHNICAL SPECIFICATIONS UNIT SPECIFICATION Working Quality (T) 77.2 Bucket Capacity (m³) 3.5-5 Engine Model Cummins QSX15 Power (kw/r/min) 336/1800 Engine Capacity (L) 15 Number of Engine Cylinders 6 Engine Emission Standards National Standard II Comply with National Environmental Protection Certification? Conform Fuel Tank Capacity (L) 950 Walking Speed(high/low) (km/h) 4.8/3.0 Swing Speed (r/min) 7.2 Climbing Ability (°) 35 Bucket Excavation Force (KN) 328 Arm Digging Force (KN) 260 Ground Specific Pressure (Kpa) 100 Traction Force (KN) 553 Hydraulic Pump Model K3V280DT Max Displacement (L/min) 490*2 Workingpressure (MPa) 34.3/37 Hydraulic Tank Volume (L) 335 Overall Size (mm) BZ805-10 A-Overall Length 13104 B-Overall Width 4256 C-Overall Height(tope of boom) 5269 D-Overall Height (tope of cab) 3530 E-Gap from Counterweight to Ground 1600 F-Min Ground Clearance 898 G-Tail Swing Radius 4500 H-Length of Track on Ground 4720 J-Track Length 5957 K-Gauge 2750/3350 L-Width of Track 3400/4000 M-Widthof Trackshoe 650 N-Width of Turning Table 3995 Arm Length 3020 Boom Length 7100 Scope of Work (mm) BZ805-10 O-Max. Digging Height 11673 P-Max. Dumping Height 7642 Q-Max.diggingdepth 6868 R-Maximum Vertical Wall Excavation Depth 5727 S-Maximum Excavation Distance of 2.5m Horizontal Surface 6710 T-Maximum Excavation Distance 11762 U-Maximum Excavation Distance on the Ground 12064 V-Minimum Turning Radius 5070 W-Maximum Height at Minimum Turning Radius 9890 X-Distance from the Center of Rotation to the Rear End 4500 Y-Track Tooth Thickness 50 Z-Counterweight Height 2900 A1-Grounding Length(during transportation) 7394 
The High Efficiency and Energy-Saving Excavator is an innovative product in modern construction, incorporating advanced technologies to provide an ideal solution for a wide range of engineering tasks.
1. Application of Energy-Saving Technologies
Advanced Power System
The High Efficiency and Energy-Saving Excavator utilizes cutting-edge engine technology, achieving efficient fuel utilization through precise fuel injection and an intelligent control system. Compared to traditional excavators, fuel consumption is significantly reduced for the same workload. For example, its electronically controlled fuel injection system precisely adjusts the injection amount based on the actual load, avoiding fuel waste.
The engine also features an automatic idle function. When the excavator is temporarily inactive, the engine speed automatically decreases to idle, reducing unnecessary fuel consumption. Once the equipment is resumed, it quickly returns to normal operating speed.
2. Efficient Operational Performance
Powerful Digging Capacity
Despite its energy efficiency, the digging force remains uncompromised. Its optimized hydraulic system, combined with the mechanical structure, ensures stable and efficient operation even in tough materials. For example, during initial excavation in mining or foundation excavation for large-scale construction projects, the excavator can quickly penetrate materials and improve excavation efficiency.
Flexible Operation
The design of the working device is more rational, ensuring smooth and coordinated movement of the boom, arm, and bucket. Operators can precisely control every movement, making it easy to handle both delicate excavation operations and large-scale earthwork transfers. This enables efficient operation even in confined construction sites or complex terrain.
3. Durability and Reliability
High-Quality Components
The High Efficiency and Energy-Saving Excavator utilizes high-strength steel for its structure, ensuring it can withstand the immense pressure and impact forces without deformation in harsh working environments such as mines and large-scale construction sites. Key components undergo rigorous quality testing and have a long service life.
Seals, oil pipes, and other components in the hydraulic system are made of high-quality materials to prevent hydraulic oil leakage, ensure stable system operation, and reduce the frequency of failures, thereby improving equipment reliability.
4. Environmental Protection and Economical Efficiency
Environmental Advantages
Thanks to the application of energy-saving technologies, exhaust emissions are significantly reduced, meeting increasingly stringent environmental standards. This is particularly advantageous for construction in urban areas or other areas with high environmental requirements.
Economical Efficiency
The High Efficiency and Energy-Saving Excavator's low fuel consumption and minimal maintenance costs significantly reduce operating costs throughout its lifecycle, delivering significant economic benefits to users.
BZ805-10 High Efficiency And Energy-Saving Excavator
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