Electric Furnace Lifting Cylinder

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Electric Furnace Lifting Cylinder

The electric furnace lifting cylinder is a state-of-the-art product designed to enhance efficiency and productivity in industrial furnace operations. This cutting-edge cylinder provides a reliable and powerful mechanism for lifting and positioning furnace components, optimizing material handling processes, and improving overall workflow.

The electric furnace lifting cylinder revolutionizes industrial furnace operations by providing precise positioning control and high lifting capacity. With its robust construction, advanced control system, electric actuation, and precise positioning capabilities, this cylinder streamlines material handling, optimizes workflow, and enhances productivity. By following the recommended usage methods and maintenance practices, you can ensure the optimal operation and longevity of the electric furnace lifting cylinder, contributing to seamless and efficient furnace operations in your industrial setting.

Electric Furnace Lifting Cylinder Key Characteristics:

  1. Robust Construction:
    • The electric furnace lifting cylinder is built with high-quality materials, ensuring exceptional durability and longevity.
    • Its robust construction allows it to withstand heavy loads and harsh industrial environments without compromising performance.
  2. High Lifting Capacity:
    • This cylinder boasts a high lifting capacity, making it suitable for handling heavy furnace components with ease.
    • Its impressive lifting power enables efficient material handling and positioning, optimizing workflow and reducing manual labor requirements.
  3. Precise Positioning:
    • The electric furnace lifting cylinder offers precise and accurate positioning control for enhanced operational efficiency.
    • Its advanced control system allows operators to lift and position furnace components precisely, minimizing errors and optimizing workflow.
  4. Electric Actuation:
    • This cylinder operates through an electric actuation system, eliminating the need for manual lifting or cumbersome hydraulic systems.
    • The electric actuation provides convenience, speed, and precise control, streamlining furnace operations and reducing downtime.

Electric Furnace Lifting Cylinder Parameter:

Product NameElectric Furnace Lifting Cylinder
Bore diameter:100mm
Rod diameter:70mm
Pressure:14MPa
Thrust force:Maximum 53KN
Electric Furnace Lifting Cylinder Applications:Electric Furnace
Thrust force:
Maximum 53KN(Bore diameter: 100mm/Rod diameter: 70/pressure14MPa)

Electric Furnace Cylinder Factory:

Usage Method Of Electric Furnace Lifting Cylinder:

  • Installation:
    • Begin by securely and properly mounting the Electric Furnace Lifting Cylinder onto the furnace structure.
    • Follow the manufacturer’s guidelines and specifications for correct positioning and attachment.
    • Ensure that all connections, such as electrical wiring, are properly secured and free from loose connections.
  • Electrical Connection:
    • Connect the electric furnace lifting cylinder to the power supply, following the manufacturer’s instructions and electrical codes.
    • Verify that all electrical connections are secure and insulated to prevent potential hazards or malfunctions.
  • Lifting and Positioning:
    • Activate the electric furnace lifting cylinder using the control panel or switch designated for lifting operations.
    • The cylinder will lift and position furnace components smoothly and precisely, ensuring optimal alignment and material handling.
    • Monitor the lifting and positioning process closely and make any necessary adjustments to achieve the desired height or position.
  • Integration with Control Systems:
    • The electric furnace lifting cylinder can seamlessly integrate into existing furnace control systems.
    • Consult a qualified technician or refer to the manufacturer’s guidelines to ensure proper integration and compatibility with your specific furnace setup.

How A Hydraulic Cylinder Works?

A hydraulic cylinder is a mechanical device that converts hydraulic energy into linear force and motion. It operates based on the principles of fluid dynamics and Pascal’s law. Here’s a simplified explanation of how a hydraulic cylinder works:

  1. Basic Components:
    • Cylinder Barrel: A cylindrical tube that houses the piston and fluid.
    • Piston: A solid, cylindrical component that divides the cylinder barrel into two chambers.
    • Piston Rod: A rod attached to the piston that extends outside the cylinder barrel.
    • Seals: Specialized components that prevent fluid leakage between the piston and cylinder barrel.
  2. Hydraulic Fluid:
    • Hydraulic cylinders utilize a specialized fluid, typically hydraulic oil or fluid, which is stored in a reservoir.
    • The fluid is pumped from the reservoir into the cylinder through hydraulic hoses or pipes.
  3. Two Chambers:
    • The cylinder barrel is divided into two chambers by the piston: the rod side (or head end) and the cap side (or blind end).
    • When pressure is applied to one side of the piston, it causes movement in the opposite direction.
  4. Extension Stroke:
    • In the extension stroke, hydraulic fluid is pumped into the rod side of the cylinder.
    • The pressure of the fluid pushes against the piston, causing it to move outward, extending the piston rod.
    • As the piston extends, the volume of the cap side chamber increases, and the fluid from that chamber returns to the reservoir.
  5. Retraction Stroke:
    • In the retraction stroke, hydraulic fluid is pumped into the cap side of the cylinder.
    • The pressure of the fluid pushes against the piston, causing it to move inward, retracting the piston rod.
    • As the piston retracts, the volume of the rod side chamber increases, and the fluid from that chamber returns to the reservoir.
  6. Control Valves:
    • Hydraulic cylinders are controlled by valves that regulate the flow of hydraulic fluid into and out of the cylinder.
    • Directional control valves determine the direction of movement (extension or retraction) of the piston.
    • Flow control valves regulate the speed of movement by adjusting the flow rate of hydraulic fluid.
  7. Force and Work:
    • The force generated by a hydraulic cylinder is directly proportional to the pressure of the hydraulic fluid and the effective area of the piston.
    • By increasing the pressure or the effective piston area, greater force can be generated.
    • This force can be utilized to perform work, such as lifting heavy loads, pushing or pulling objects, or actuating mechanical components.
  8. Sealing System:
    • Seals are incorporated into the hydraulic cylinder to prevent leakage of hydraulic fluid between the piston and cylinder barrel.
    • These seals ensure that the pressure generated by the hydraulic fluid is maintained and that the cylinder operates efficiently.
  9. Maintenance:
    • Proper maintenance of hydraulic cylinders is crucial for optimal performance and longevity.
    • Regular inspection of seals, checking for fluid leaks, and maintaining the appropriate hydraulic fluid level and cleanliness are important maintenance practices.

Aptidão e capacidade da fábrica:

(1) Montagem

Temos uma plataforma de montagem de pesquisa e desenvolvimento independente de primeira classe. A oficina de produção de cilindros hidráulicos tem quatro linhas de montagem semiautomáticas de cilindros de elevação e uma linha de montagem automática de cilindros de inclinação, com uma capacidade de produção anual projetada de 1 milhão de peças. A oficina de cilindros especiais é equipada com várias especificações de um sistema de montagem de limpeza semiautomática com uma capacidade de produção anual projetada de 200.000 peças e equipada com famosos equipamentos de usinagem CNC, um centro de usinagem, um equipamento especial de processamento de cilindros de alta precisão, uma máquina de solda robotizada, uma máquina de limpeza automática, uma máquina de montagem automática de cilindros e uma linha de produção de pintura automática. O equipamento crítico existente é de mais de 300 conjuntos (conjuntos). A alocação ideal e o uso eficiente dos recursos do equipamento garantem os requisitos de precisão dos produtos e atendem às necessidades de alta qualidade dos produtos.

(2) Usinagem

A oficina de usinagem é equipada com um centro de torneamento de trilho inclinado personalizado, um centro de usinagem, uma máquina de brunimento de alta velocidade, um robô de soldagem e outros equipamentos relacionados, que podem lidar com o processamento de tubos de cilindros com diâmetro interno máximo de 400 mm e comprimento máximo de 6 metros.

(3) Soldagem

(4) Pintura e revestimento

Com linhas de revestimento de tinta à base de água automáticas de cilindros de pequeno e médio porte, para obter carregamento e descarregamento automáticos de robôs e pulverização automática, a capacidade projetada é de 4.000 peças por turno;
Também temos uma linha de produção de tinta semiautomática para cilindros grandes, acionada por uma corrente elétrica, com capacidade de projeto de 60 caixas por turno.

(5) Testes

Temos instalações de inspeção e bancos de teste de primeira classe para garantir que o desempenho do cilindro atenda aos requisitos.

 

 

We are one of the best hydraulic cylinder manufacturers. We can offer comprehensive hydraulic cylinders. We also provide corresponding caixas de câmbio agrícolas. Exportamos nossos produtos para clientes em todo o mundo e conquistamos uma boa reputação devido à qualidade superior de nossos produtos e ao serviço pós-venda. Convidamos clientes nacionais e estrangeiros a entrar em contato conosco para negociar negócios, trocar informações e cooperar conosco!

Faça um tour pela nossa fábrica de RV:

Faça um tour pela nossa fábrica de RV com o seguinte

Como funciona o cilindro hidráulico da empilhadeira?

Cilindro hidráulico Aplicação:

Dois tipos básicos e princípios de funcionamento do cilindro hidráulico:

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