Double Shield TBM Support Shoe Cylinder

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Double Shield TBM Support Shoe Cylinder

The double shield TBM support shoe cylinder is a cutting-edge hydraulic component designed to enhance tunnel boring operations’ efficiency and safety. This specialized cylinder plays a crucial role in supporting the shield of a double-shield tunnel boring machine (TBM), ensuring stability and protection during excavation. This informative article will explore the key characteristics, usage methods, and maintenance guidelines for the double shield tbm support shoe cylinder.

The double shield TBM support shoe cylinder is a vital component that enhances the efficiency and safety of double shield tunnel boring operations. With its improved stability, precise control, dual-acting design, durability, and reliability, this cylinder ensures secure support and protection of the TBM shield during excavation. By following the recommended usage methods and adhering to regular maintenance practices, the double shield tbm support shoe cylinder will continue to deliver outstanding performance, contributing to the success of tunneling projects. Experience the efficiency and safety of the double shield tbm support shoe cylinder, revolutionizing tunnel boring operations with advanced technology and reliability.

Double Shield TBM Support Shoe Cylinder Key Characteristics:

  • Enhanced Stability and Load Bearing: The double shield TBM support shoe cylinder is engineered to provide exceptional stability and load-bearing capacity to the TBM shield. Its robust construction and precise engineering ensure that the shield remains securely in place during excavation, minimizing the risk of ground collapse and ensuring the safety of the tunneling crew.
  • Precise Control and Positioning: Equipped with advanced hydraulic control systems, this cylinder offers precise control over the positioning of the support shoes. This allows operators to adjust the shoe’s orientation and alignment to match the specific ground conditions, ensuring accurate and efficient excavation.
  • Dual-Acting Design: The double shield tbm support shoe cylinder features a dual-acting design, which means it can exert force in both the extension and retraction directions. This capability allows for versatile and controlled movement of the support shoes, providing optimal support and stability during the tunneling process.
  • Durability and Reliability: Built with high-quality materials, the double shield tbm support shoe cylinder is designed to withstand the demanding conditions encountered during tunneling operations. It can withstand heavy loads, vibrations, and shocks, providing long-term durability, minimizing downtime, and reducing maintenance costs.

Double Shield TBM Support Shoe Cylinder Parameter:

Product NameDouble Shield Tunnel Boring Machine Support Shoe Cylinder
Features:Provides the thrust of cutterhead tunneling
Bore diameter:320mm~700mm
Rod diameter:220mm~500mm
Stroke: 300mm~1200mm
Pressure:up to 35MPa
Applications:Double Shield Tunnel Boring Machine

Double Shield TBM Cylinder Application:

Usage Method Of Double Shield TBM Support Shoe Cylinder:

  • Cylinder Installation:  Install the double shield tbm support shoe cylinder according to the manufacturer’s instructions. Use suitable mounting brackets or accessories to ensure proper alignment and secure attachment to the TBM’s support shoe structure.
  • Hydraulic System Integration: Connect the cylinder to the TBM’s hydraulic system using compatible hoses and fittings. Verify that all connections are secure, leak-free, and adequately tightened to ensure optimal hydraulic performance.
  • Control and Positioning:  Familiarize yourself with the rules specific to the double shield tbm support shoe cylinder. Use these controls to adjust the support shoes’ position, alignment, and angle as necessary. Follow the TBM manufacturer’s guidelines and recommendations for optimal support shoe positioning based on the ground conditions.
  • Safety Precautions:  Adhere to all safety protocols and guidelines provided by the TBM manufacturer. Ensure that operators are trained in the safe operation of the tbm and the double shield tbm support shoe cylinder. Regularly inspect safety mechanisms and perform maintenance as recommended to ensure proper functioning.

How To Build A Hydraulic Cylinder?

Building a hydraulic cylinder requires advanced engineering knowledge, specialized equipment, and access to high-quality materials. Due to the complexity and precision involved, it is typically a task undertaken by professional manufacturers. However, here is a general overview of the steps involved in building a hydraulic cylinder:

  1. Design and Engineering:
    • Determine the specific requirements and specifications of the hydraulic cylinder, such as stroke length, bore diameter, operating pressure, and load capacity.
    • Use computer-aided design (CAD) software to create a detailed plan that includes the cylinder’s dimensions, internal components, and seals.
  2. Material Selection:
    • Choose high-quality materials for hydraulic applications, such as steel or aluminum for the cylinder barrel, piston, and end caps.
    • Select appropriate seals, such as O-rings or piston seals, that can withstand the operating conditions and fluid compatibility.
  3. Machining:
    • Use precision machining equipment, such as lathes, mills, and grinders, to fabricate the cylinder components according to the design specifications.
    • Machine the cylinder barrel, end caps, piston, rod, and other internal components to the required dimensions and tolerances.
  4. Assembly:
    • Clean all components thoroughly to remove any contaminants or debris.
    • Install seals into the designated grooves on the piston, end caps, and rod.
    • Carefully insert the piston into the cylinder barrel, ensuring proper alignment and clearance.
    • Attach the end caps to the cylinder barrel, ensuring a secure and leak-free connection.
    • Insert the rod into the piston and secure it with appropriate fasteners.
    • Attach hydraulic fittings or ports to the end caps for fluid connections.
  5. Testing and Quality Control:
    • Conduct pressure testing to ensure the cylinder can withstand the specified operating pressure without leaks or failures.
    • Verify the proper functioning of the cylinder by extending and retracting it under controlled conditions.
    • Inspect all components for defects or imperfections, ensuring they meet the required specifications.
    • Perform quality control checks to ensure the cylinder meets safety and regulatory requirements.

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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