Double Shield TBM Main Thrust Cylinder

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Double Shield TBM Main Thrust Cylinder

The double shield TBM main thrust cylinder is a cutting-edge hydraulic component designed to optimize the performance and efficiency of tunnel boring machines. This specialized cylinder is crucial in providing the necessary thrust force to propel the tunnel through a tedious process. This informative article will explore the key characteristics, usage methods, and maintenance guidelines for the double shield tbm main thrust cylinder.

The double shield TBM main thrust cylinder is a vital component that empowers tunnel boring machines to reach new levels of performance and efficiency. With its robust power, precision engineering, dual-acting design, and exceptional load-bearing capacity, this cylinder ensures the successful advancement of tunneling operations. By following the recommended usage methods and adhering to regular maintenance practices, the double shield tbm main thrust cylinder will continue to deliver outstanding performance, contributing to the success of tunneling projects. Experience the power and reliability of the double shield tbm main thrust cylinder, revolutionizing tunnel boring with unmatched performance and efficiency.

Double Shield TBM Main Thrust Cylinder Key Characteristics:

  1. Robust Power and Performance: The double shield TBM main thrust cylinder is engineered to deliver exceptional power and performance. With its high-pressure hydraulic system and precise control mechanisms, it generates the required thrust force to advance the tunneling process efficiently.
  2. Precision Engineering: This cylinder is meticulously crafted with precision engineering techniques, ensuring optimal alignment and performance. Its design incorporates high-quality materials and advanced manufacturing processes to withstand the demanding conditions encountered during tunnel boring operations.
  3. Dual-Acting Design: The double shield TBM main thrust cylinder features a dual-acting design, allowing it to exert force in both the extension and retraction directions. This capability enables versatile and controlled movement of the tbm, enhancing flexibility and adaptability during the tunneling process.
  4. Load-Bearing Capacity: The double shield TBM main thrust cylinder exhibits exceptional load-bearing capacity with its robust construction. It can withstand significant forces and pressures, ensuring stability and safety during tunneling.

Double Shield TBM Main Thrust Cylinder Parameter:

Product NameDouble Shield Tunnel Boring Machine Main Thrust Cylinder
Features:Provide the thrust of TBM forward tunneling
Bore diameter:220mm~380mm
Rod diameter:150mm~280mm
Stroke: 1100mm~1700mm
Pressure:up to 35MPa
Applications:Double Shield Tunnel Boring Machine

Double Shield TBM Cylinder Application:

Usage Method Of Double Shield TBM Main Thrust Cylinder:

  • Cylinder Installation: Install the double shield tbm main thrust cylinder according to the manufacturer’s guidelines and specifications. Ensure proper alignment and secure attachment to the TBM’s structure using suitable mounting brackets or accessories.
  • Hydraulic System Integration: Connect the cylinder to the TBM’s hydraulic system using compatible hoses and fittings. Ensure all connections are secure, leak-free, and adequately tightened for optimal hydraulic performance.
  • Control and Operation: Familiarize yourself with the TBM’s control system and the specific rules associated with the double shield TBM main thrust cylinder. Use these controls to activate and regulate the thrust force generated by the cylinder, adjusting it according to the required excavation speed and ground conditions.
  • Monitoring and Adjustment: Continuously monitor the TBM’s performance and the behavior of the double shield TBM main thrust cylinder. Make necessary adjustments to the thrust force, considering the ground conditions, geological variations, and other factors affecting the tunneling process.

How To Build A Hydraulic Cylinder Bench?

Building a hydraulic cylinder bench requires a basic understanding of hydraulic systems, access to the necessary tools and materials, and adherence to safety protocols. Here’s a step-by-step guide on how to build a hydraulic cylinder bench:

  1. Gather the Required Materials and Tools:
    • Steel or aluminum tubing for the bench frame
    • Hydraulic cylinder mounting brackets
    • Welding equipment (if welding is required)
    • Hydraulic hoses and fittings
    • Hydraulic pump and control valve
    • Pressure gauge
    • Wrenches, sockets, and other hand tools
    • Safety equipment (gloves, goggles, etc.)
  2. Design and Plan:
    • Determine the desired size and dimensions of the hydraulic cylinder bench based on the types of cylinders you intend to work on.
    • Sketch out a design that includes the frame structure, mounting brackets, and space for the hydraulic pump and control components.
  3. Build the Frame:
    • Cut the steel or aluminum tubing to the desired lengths for the bench frame.
    • Weld or bolt the tubing together to create the frame structure according to your design.
    • Ensure the frame is sturdy and stable, capable of supporting the weight of hydraulic cylinders during testing and maintenance.
  4. Mounting Brackets:
    • Attach the hydraulic cylinder mounting brackets to the frame using welding or bolting methods.
    • Ensure the brackets are securely fastened and properly aligned to accommodate different sizes and types of hydraulic cylinders.
  5. Hydraulic System Installation:
    • Following the manufacturer’s instructions, install the hydraulic pump and control valve onto the bench frame.
    • Connect the hydraulic hoses and fittings to the pump and control valve, ensuring proper sealing and tightness.
    • Attach a pressure gauge to monitor the hydraulic pressure during cylinder testing and maintenance.
  6. Safety Measures:
    • Ensure the hydraulic system is grounded correctly and that all electrical connections are secure.
    • Place safety guards or shields around moving parts or potential pinch points to prevent accidents or injuries.
    • Wear appropriate safety equipment, including gloves and goggles, when working with hydraulic systems.
  7. Test and Calibration:
    • Before using the hydraulic cylinder bench, conduct a thorough check of all connections and fittings to ensure there are no leaks or loose components.
    • Connect a hydraulic cylinder to the bench using the mounting brackets and hydraulic hoses.
    • Operate the hydraulic pump and control valve to extend and retract the cylinder, checking for smooth and controlled movement.
    • Use the pressure gauge to verify the accuracy of the hydraulic pressure.

Tehase võimekus ja suutlikkus:

(1) Kokkupanek

Meil on esmaklassiline sõltumatu teadus- ja arendustegevuse montaažiplatvorm. Hüdrosilindrite tootmistöökojas on neli poolautomaatset tõstesilindrite koosteliini ja üks automaatne kallutussilindrite koosteliin, mille kavandatud aastane tootmisvõimsus on 1 miljon tükki. Spetsiaalsete silindrite töökoda on varustatud erinevate spetsifikatsioonidega poolautomaatse puhastusmontaažisüsteemiga, mille kavandatud aastane tootmisvõimsus on 200 000 ja mis on varustatud kuulsate CNC-töötlemisseadmete, mehaanilise töötlemise keskuse, suure täpsusega silindrite töötlemise eriseadmete, robotkeevitusmasina, automaatse puhastusmasina, automaatse silindri kokkupanemise masina ja automaatse värvimise tootmisliiniga. Olemasolevad kriitilised seadmed rohkem kui 300 komplekti (komplekti). Seadmete ressursside optimaalne jaotamine ja tõhus kasutamine tagavad toodete täpsusnõuded ja vastavad toodete kvaliteedinõuetele.

(2) Töötlemine

Töödeldav töökoda on varustatud kohandatud kallutatud rööpse treipingi keskuse, mehaanilise keskuse, kiire lihvimismasina, keevitusroboti ja muude seotud seadmetega, mis suudavad töödelda silindritorusid, mille maksimaalne siseläbimõõt on 400 mm ja maksimaalne pikkus on 6 meetrit.

(3) Keevitamine

(4) Värvimine ja katmine

Väikese ja keskmise suurusega silindri automaatse veepõhise värvipinnakattega liinide abil, et saavutada automaatne robotlaadimine ja mahalaadimine ning automaatne pihustamine, projekteerimisvõimsus 4000 tükki vahetuse kohta;
Meil on ka poolautomaatne suurte balloonide värvimise tootmisliin, mis töötab jõukettaga ja mille projekteerimisvõimsus on 60 kasti ühe vahetuse kohta.

(5) Testimine

Meil on esmaklassilised kontrolliseadmed ja katsestendid, et tagada silindri jõudlus vastavus nõuetele.

 

 

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