M-SEW Series Directional Poppet Hydraulic Valve With Solenoid Actuation

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M-SEW Series Directional Poppet Hydraulic Valve With Solenoid Actuation

The M-SEW series directional poppet hydraulic valve with solenoid actuation is an advanced hydraulic valve designed to provide precise control and optimal efficiency in hydraulic systems. With its innovative design, reliable performance, and integrated solenoid actuation, this valve offers enhanced fluid flow control, flexibility, and compatibility with various industrial applications.

The M-SEW series directional poppet hydraulic valve with solenoid actuation is a reliable and efficient solution for hydraulic systems. With its directional poppet design, integrated solenoid actuation, versatility, and high flow capacity, this valve offers precise control, enhanced efficiency, and compatibility with various applications. The M-SEW series valve delivers optimal performance and reliability by following the recommended usage methods and adhering to regular maintenance practices. Upgrade your hydraulic system with the m-sew series directional poppet hydraulic valve and experience enhanced control, efficiency, and productivity.

M-SEW Series Directional Poppet Hydraulic Valve With Solenoid Actuation Key Characteristics:

  • Directional Poppet Design:
    • The M-SEW Series Valve features a directional poppet design, ensuring reliable and efficient fluid flow control.
    • It allows for quick response times and precise regulation of fluid direction, enhancing overall system performance.
  • Solenoid Actuation:
    • Equipped with integrated solenoid actuation, this hydraulic valve provides remote and automated control capabilities.
    • The solenoid allows quick and accurate switching between different flow paths, improving operational efficiency.
  • Versatility and Compatibility:
    • The M-SEW Series Valve is highly versatile and compatible with various hydraulic systems and applications.
    • It can be seamlessly integrated into industrial machinery, mobile equipment, and automation systems, enhancing performance.
  • High Flow Capacity:
    • With its robust design and optimized flow paths, the M-SEW Series Valve offers high flow capacity.
    • It ensures efficient fluid transfer, reducing pressure drops and maximizing system throughput.

M-SEW Series Directional Poppet Hydraulic Valve With Solenoid Actuation Parameter:

SpecificationsNG6NG10
Installation position Optional
Environment temperature℃ -30  to  +50 (NBR seals)
 -20  to  +50 (FKM seals)
WeightTwo two-way solenoidic directional valveKg1.5/
Two three-way solenoidic directional valveKg1.52.0
Two four-way solenoidic directional valveKg2.33.5
Max. operating  pressurePort  P A Bbar420420
Port  T100100
Max. flow-rateL/min2540
Fluid Mineral oil suitable for NBR and FKM seal
 Phosphate ester for FKM seal
Fluid temperature range℃ -30  to  +50 (NBR seals)
 -20  to  +50 (FKM seals)
Viscosity rangemm2/s 2.8  to  500
Degree of contamination Maximum permissible degree of fluid contamination: Class 9. NAS 1638 or 20/18/15, ISO4406

M-SEW Series Directional Poppet Hydraulic Valve With Solenoid Actuation Advantages:

• Direct solenoid shutoff valve
• Installation face follow DIN 24340 A, ISO 4401 and CETOP-RP 121H
• No leak
• Responsive switching under high pressure
• Replacing the coil can be performed with pressure
• Solenoid coil can rotate 90°
• With manual emergency control

Usage Method Of M-SEW Series Directional Poppet Hydraulic Valve With Solenoid Actuation:

  • System Assessment:
    • Conduct a thorough assessment of the hydraulic system to determine the specific requirements and operational parameters.
    • Consider factors such as flow rates, pressure ratings, and compatibility with the M-SEW series valve.
  • Valve Selection:
    • Select the appropriate M-SEW series valve variant based on the system requirements and specifications.
    • Consider port size, voltage compatibility, and solenoid actuation parameters.
  • Installation:
    • Follow the manufacturer’s instructions for properly installing the M-SEW series valve in the hydraulic system.
    • Ensure secure mounting, proper alignment, and appropriate sealing to prevent leaks and ensure optimal performance.
  • Electrical Connections:
    • Connect the solenoid actuation wires to a suitable power source, following the recommended wiring guidelines.
    • Ensure proper polarity and insulation to prevent electrical malfunctions or safety hazards.

How Does A Hydraulic Directional Control Valve Work?

A hydraulic directional control valve is a fundamental component in hydraulic systems that regulates the flow and direction of hydraulic fluid. It enables the operator to control the movement and operation of hydraulic actuators, such as cylinders and hydraulic motors. The directional control valve determines the path that the hydraulic fluid takes within the system, allowing it to flow in specific directions and perform desired actions. Here’s a breakdown of how a hydraulic directional control valve works:

  1. Valve Structure:
    • A hydraulic directional control valve typically consists of a body with multiple ports, spools, or poppets and actuators such as manual levers, solenoids, or pilot pressure mechanisms.
    • The valve body contains various internal passages and chambers that direct the flow of hydraulic fluid.
  2. Fluid Flow Paths:
    • The directional control valve has multiple ports that connect to different hydraulic components in the system, such as the pump, reservoir, actuators, and other valves.
    • These ports include an inlet, outlet, and work ports, each serving a specific purpose in controlling the fluid flow.
  3. Spools or Poppets:
    • The valve body houses spools or poppets, which are movable elements that control the flow of hydraulic fluid.
    • Spools are cylindrical and slide within the valve body, while poppets are spring-loaded valves that open or close based on pressure differentials.
  4. Actuation Mechanisms:
    • Depending on the specific design and application requirement, hydraulic directional control valves can be actuated manually, electrically, or hydraulically.
    • Manual actuation involves levers or handles that the operator physically moves to position the spools or poppets.
    • Electrical actuation utilizes solenoids that receive electrical signals to shift the spools or poppets, allowing for remote control and automation.
    • Hydraulic actuation employs pilot pressure to move the spools or poppets, often in conjunction with electrical or manual control.
  5. Valve Positions:
    • Depending on the valve design, there are typically multiple positions that the spools or poppets can assume, each corresponding to a specific flow path.
    • Common positions include neutral, which blocks or isolates all ports, and various actuating positions that allow flow between specific ports.
    • As the spools or poppets shift, they align with specific ports, opening or closing passages and directing the hydraulic fluid accordingly.
  6. Operator Input:
    • The operator engages the directional control valve by actuating the manual lever, applying electrical signals to solenoids, or manipulating pilot pressure.
    • This input determines the desired valve position, which in turn determines the flow direction and the action of the hydraulic actuators.
  7. System Operation:
    • Once the directional control valve is in the desired position, hydraulic fluid flows through the appropriate passages and ports.
    • This flow of fluid powers the hydraulic actuators, such as cylinders or hydraulic motors, causing them to move or perform the intended task.

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.

 

 

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Como funciona o cilindro hidráulico da empilhadeira?

Cilindro hidráulico Aplicação:

Dois tipos básicos e princípios de funcionamento do cilindro hidráulico:

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