Aerial Work Platform Outrigger Cylinder

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Aerial Work Platform Outrigger Cylinder

The aerial work platform outrigger cylinder is a vital component designed to enhance stability and safety in aerial work platforms. This specialized hydraulic cylinder plays a crucial role in extending and retracting the outriggers, which provide additional support and balance to the forum.

The aerial work platform outrigger cylinder is indispensable for ensuring stability and safety in elevated work environments. With its robust construction, reliable stability, smooth operation, and versatile adjustability, this hydraulic cylinder is crucial in extending and retracting the outriggers, providing a secure and level working platform. By following the recommended usage methods and maintenance practices, operators can maximize the longevity and performance of the aerial work platform outrigger cylinder, contributing to enhanced productivity, safety, and confidence in various elevated work applications. Invest in this essential hydraulic component to elevate your aerial work platform’s stability and unlock new levels of efficiency and safety in elevated work scenarios.

Aerial Work Platform Outrigger Cylinder Key Characteristics:

  1. Robust Construction:
  • The aerial work platform outrigger cylinder is built with high-quality materials, ensuring durability and longevity.
  • It is designed to withstand heavy loads and the rigors of demanding work environments.
  1. Reliable Stability:
  • This cylinder provides reliable stability by extending the outriggers, significantly increasing the platform’s footprint and preventing tipping or tilting during operation.
  • It enhances the overall stability of the aerial work platform, allowing operators to perform tasks safely and securely at elevated heights.
  1. Smooth Operation:
  • The hydraulic system of the aerial work platform outrigger cylinder ensures smooth and controlled extension and retraction of the outriggers.
  • It enables operators to position the outriggers precisely, adapting to uneven surfaces and providing a level working platform.
  1. Versatile Adjustability:
  • The outrigger cylinder offers adjustable extension lengths, allowing operators to adapt to various worksite conditions and space limitations.
  • It provides flexibility in positioning the outriggers to ensure maximum stability and balance on different terrains.

Aerial Work Platform Outrigger Cylinder Parameter:

Product NameAerial Work Platform Outrigger Cylinder
Features:Support the weight of the entire equipment when the crane is lifting
Bore diameter:45mm~200mm
Rod diameter:30mm~180mm
Stroke≤2000mm
Pressure:30MPa(Maximum pressure)
Outrigger Cylinder Applications:Aerial Work Platform

Aerial Work Platform Identification Diagram:

Usage Method Of Aerial Work Platform Outrigger Cylinder:

  1. Installation and Setup:
  • Follow the manufacturer’s instructions to install and set up the aerial work platform outrigger cylinder on the aerial work platform.
  • Ensure that the cylinder is securely mounted and aligned for optimal performance.
  1. Hydraulic Connection:
  • Connect the outrigger cylinder to the hydraulic system of the aerial work platform according to the provided guidelines.
  • Ensure that all hydraulic connections are secure and properly sealed to prevent leaks or loss of hydraulic fluid.
  1. Outrigger Operation:
  • Engage the control mechanisms on the aerial work platform to extend or retract the outriggers.
  • Follow the recommended procedures and safety guidelines during the outrigger operation.
  1. Positioning and Adjustment:
  • Position the outriggers to provide maximum stability and support to the aerial work platform.
  • Adjust the extension lengths of the outriggers as required to accommodate different worksite conditions and achieve a level platform.

How To Release Pressure On Hydraulic System?

Releasing pressure from a hydraulic system is essential for maintenance, repairs, or when working with hydraulic components. Here are some general steps to safely remove stress from a hydraulic system:

  1. Identify the Power Source:
    • Locate the power source that supplies pressure to the hydraulic system. This is typically a hydraulic pump or an engine-driven power unit.
    • Identify the power supply and ensure it is turned off or the engine is shut down to prevent accidental activation.
  2. Engage Control Levers:
    • Move any control levers or switches to their neutral or off positions. This helps prevent unintended movement of hydraulic components and reduces the risk of pressure buildup.
  3. Relieve Pressure at the Control Valve:
    • Locate the control valve or pressure relief valve in the hydraulic system. It is usually marked or labeled for easy identification.
    • Slowly turn or adjust the valve to its release or open position. This allows trapped hydraulic fluid to escape and reduces pressure in the system.
    • It is essential to release pressure gradually to avoid sudden movements or fluid discharge.
  4. Monitor Pressure Gauge:
    • Some hydraulic systems may have pressure gauges installed. If available, monitor the pressure gauge while releasing pressure.
    • As you open the control valve, observe the pressure gauge to ensure the pressure is decreasing steadily.
  5. Bleed Hydraulic Components:
    • After relieving pressure at the control valve, it is advisable to bleed the hydraulic components that may still hold residual pressure.
    • Start by loosening or removing any fittings or connections downstream of the control valve.
    • Slowly and carefully open the fittings to allow any remaining pressure to escape.
    • Use caution as hydraulic fluid may be under pressure and can spray or leak out.
  6. Verify Pressure Release:
    • Double-check that pressure has been effectively released from the system by confirming the pressure gauge reads zero or close to zero.
    • Inspect the hydraulic components to ensure no movement or signs of pressure remaining.

Kemampuan & Kapasitas Pabrik:

(1) Perakitan

Kami memiliki platform perakitan penelitian dan pengembangan independen kelas satu. Bengkel produksi silinder hidrolik memiliki empat jalur perakitan silinder pengangkat semi-otomatis dan satu jalur perakitan silinder kemiringan otomatis, dengan kapasitas produksi tahunan yang dirancang sebesar 1 juta keping. Bengkel silinder khusus dilengkapi dengan berbagai spesifikasi sistem perakitan pembersihan semi-otomatis dengan kapasitas produksi tahunan yang dirancang sebesar 200.000 dan dilengkapi dengan peralatan permesinan CNC yang terkenal, pusat permesinan, peralatan khusus pemrosesan silinder presisi tinggi, mesin las robot, mesin pembersih otomatis, mesin perakitan silinder otomatis, dan jalur produksi pengecatan otomatis. Peralatan penting yang ada lebih dari 300 set (set). Alokasi optimal dan penggunaan sumber daya peralatan yang efisien memastikan persyaratan akurasi produk dan memenuhi kebutuhan produk berkualitas tinggi.

(2) Pemesinan

Bengkel permesinan dilengkapi dengan pusat pembubutan rel miring yang disesuaikan, pusat permesinan, mesin pengasah berkecepatan tinggi, robot pengelasan, dan peralatan terkait lainnya, yang dapat menangani pemrosesan tabung silinder dengan diameter bagian dalam maksimum 400mm dan panjang maksimum 6 meter.

(3) Pengelasan

(4) Pengecatan & pelapisan

Dengan jalur pelapisan cat berbasis air otomatis silinder kecil dan menengah, untuk mencapai bongkar muat robot otomatis dan penyemprotan otomatis, kapasitas desain 4000 buah per shift;
Kami juga memiliki lini produksi cat semi-otomatis untuk silinder besar yang ditenagai oleh rantai daya, dengan kapasitas desain 60 kasus per shift.

(5) Pengujian

Kami memiliki fasilitas inspeksi kelas satu dan test bed untuk memastikan bahwa kinerja silinder memenuhi persyaratan.

 

 

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