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Future Development Trends of Fully Automatic Wet Spraying Boom Trucks

Release time:

2026-04-08

Source:

Author:


Summary:

As the construction industry transitions toward intelligent and green practices, fully automated wet-spraying trolleys—key equipment for tunnel construction and rock mass support—are entering a critical phase of technological innovation. Future development trends will primarily focus on intelligence, environmental sustainability, and high efficiency and reliability, profoundly shaping equipment design philosophies and technological pathways.

I. Deep Integration of Intelligent Technologies

Comprehensive Application of Artificial Intelligence

Next-generation intelligent control system:

1.  Deep Learning Algorithms: Enabling Autonomous Jet-Path Planning and Real-Time Optimization

2.  Machine vision system: automatically identifies rock surface conditions and intelligently adjusts jetting parameters.

3.  Adaptive control technology: autonomously adjusts equipment operating conditions in response to changes in operating conditions.

4.  Intelligent Diagnostic and Early Warning: Predictive Maintenance System Based on Big Data Analytics

Unmanned Operation System

Development of Autonomous Construction Technology:

High-precision positioning and navigation: integration 5G , centimeter-level positioning achieved through technologies such as BeiDou

Multi-machine collaborative control: intelligent scheduling for clustered operations across multiple devices

Remote Monitoring and Operations: Cloud-Based Remote Operation and Maintenance

Automatic Obstacle Avoidance System: 3D Environmental Perception and Intelligent Obstacle Avoidance

II. Green and Environmental Protection Technological Innovation

New Energy Power System

Clean Energy Applications:

Electrification Trend: High-Capacity Batteries and Fast-Charging Technology

Hybrid Power System: Diesel-Electric Hybrid Optimizes Energy Consumption

Hydrogen Fuel Cells: A Zero-Emission Power Solution

Energy Recovery Technology: Braking Energy Recovery and Utilization

Eco-friendly materials and processes

Green Manufacturing Upgrade:

1.  Biodegradable Hydraulic Oil: An Environmentally Friendly Working Fluid

2.  Use of Recycled Materials: Key Components Made from Renewable Materials

3.  Low-Noise Design: Reducing Equipment Noise Through Structural Optimization

4.  Leak-Proof Technology: Comprehensive Enhancement of Sealing and Leak-Prevention Performance

III. Continuous Improvement in Performance and Efficiency

Breakthrough in Work Efficiency

Next-Generation High-Performance Systems:

Ultra-high-pressure jetting: operating pressure increased to 40MPa The above

Intelligent flow control: flow regulation accuracy reaches ± 1%

Fast reversing technology: Reversing time reduced to 0.5 Within seconds

Automatic Cleaning System: Rapid Self-Cleaning Function

Reliability Enhancement

Long-term reliable operation:

1.  Key Component Lifespan: Extended Service Life of Wear Parts 50%

2.  Failure Rate Control: The overall equipment failure rate has been reduced to 1% The following

3.  Environmental Adaptability: Stable Operation Under Extreme Conditions

4.  Maintenance Convenience: Modular Design Simplifies Maintenance Procedures

IV. Advancing Digital Management

Full Lifecycle Management

Digital Operations and Maintenance System:

Digital Twin Technology: Digital Management of the Entire Equipment Lifecycle

Intelligent O&M Platform: A Cloud-Based Intelligent O&M System

Remote Diagnostic Services: Real-Time Fault Diagnosis and Troubleshooting Guidance

Data-Driven Decision-Making: Operational Data Supports Management Decisions

Intelligent Service Platform

Comprehensive Service Upgrade:

1.  Online Monitoring System: Real-Time Equipment Status Monitoring

2.  Early Warning and Forecasting System: Fault Early Warning and Performance Forecasting

3.  Intelligent Dispatch System: Intelligent Allocation of Construction Tasks

4.  Training Simulation System: Virtual Simulation Training Platform

V. Standardization and Modularization

Technical standardization

Industry Standard Development:

Interface Standardization: Unified Device Interfaces and Data Formats

Performance Standardization: Unified Specifications for Key Performance Indicators

Safety Standardization: Unified and Standardized Safety Protection Requirements

Test Standardization: Unified Testing Methods and Evaluation Criteria

Modular design

Flexible configuration plan:

1.  Power Module: Multiple Power Source Options Available

2.  Control Module: Modular Design of the Control System

3.  Execution Module: Standardized Interface for the Operating Mechanism

4.  Auxiliary Module: Modular Configuration of Auxiliary Functions

VI. Application of New Materials and New Processes

Advanced Materials Applications

Materials Technology Breakthrough:

Nanomaterials: Nanoscale Surface Treatment of Wear-Resistant Components

Composite Materials: Applications in Lightweight Structural Components

Special Alloys: High-Performance Alloys for Critical Components

Smart Materials: Self-Healing and Self-Sensing Materials

Manufacturing Process Upgrade

Advanced Manufacturing Technology:

1. 3D Printing Technology: Rapid Manufacturing of Complex Components

2.  Laser Processing: High-Precision Machining Technology

3.  Robotic Welding: Automated Welding Processes

4.  Smart Assembly: Automated Assembly Production Line

VII. Industrial Ecosystem Reconstruction

Service Model Innovation

Value chain extension:

Equipment as a Service: Shifting from Equipment Sales to Service Delivery

Pay-as-you-go: A new business model billed based on usage

Shared Leasing: Equipment Sharing and Rental Services

All-Inclusive Service: End-to-End Construction Management Solution

Industrial chain collaboration

Industrial Ecosystem Development:

1.  Industry-University-Research Collaboration: In-Depth R&D Cooperation

2.  Supply Chain Optimization: Global Supply Chain Collaboration

3.  Platform-based Operations: Integration of Industry Platform Resources

4.  Internationalization: Expanding Global Market Presence

Conclusion

The future development of fully automated wet-spray trolleys will be characterized by intelligentization, green practices, and high efficiency. The deep integration of new technologies will continuously enhance equipment performance and drive innovation in service models. It is recommended that equipment manufacturers increase R&D investment and focus on breakthroughs in core technologies; that user organizations actively embrace new technologies to transform construction methods; and that industry associations strengthen standards-setting to promote the healthy development of the sector. With the concerted efforts of all stakeholders, fully automated wet-spray trolleys will deliver greater value to the construction industry.