Language
Home > CKD > Air Pressure Cylinders
Rodless cylinder DGC-K-63-500-PPV-A-GK

CKD Rodless cylinder DGC-K-63-500-PPV-A-GK

Brand:CKD Model:DGC-K-63-500-PPV-A-GK

The festo rodless cylinder DGC-K-63-500-PPV-A-GK does not work when the differential piston 2 is in the upper limit position under the action of spring 3. Technological advancements in pressure reducing valves and other specialized devices have made it possible to realize electrical control of various systems in construction vehicles, such as gear shifting, steering, braking, and working devices. ...

The festo rodless cylinder DGC-K-63-500-PPV-A-GK does not work when the differential piston 2 is in the upper limit position under the action of spring 3. Technological advancements in pressure reducing valves and other specialized devices have made it possible to realize electrical control of various systems in construction vehicles, such as gear shifting, steering, braking, and working devices. Pressure reducing valves play a very important role in the automatic control of modern chemical plants, where production depends on the correct distribution and control of flowing liquids and gases. These controls, whether it's the exchange of energy, reduction of pressure, or simple filling of containers, require certain final control elements to be completed. The final control elements can be considered the 'muscle' of automatic control. Between the low energy level of the regulator and the high energy level function required to control the flow of fluids, the final control elements complete the necessary power amplification. ①NO control valve: electromagnetic force = spring force + fluid force; ②NC control valve: spring force = electromagnetic force + fluid force. 3. Installation error issues Installation errors, such as incorrect installation direction, wiring errors, etc., can cause the pressure reducing valve to not work properly, and in severe cases, can lead to damage to the pressure reducing valve components, such as damage to the valve core or other interfaces. The working principle diagram of the rodless air filter. The rodless air filter is a type of hydraulic pump that axially arranges multiple piston pumps around a common filter body, with the centerline of the piston and the centerline of the filter body being parallel. There are two structural forms of axial piston pumps: straight shaft (swash plate type) and inclined shaft (swing filter type). The advantages of axial piston pumps are: compact structure, small radial dimensions, low inertia, high volumetric efficiency, and the current maximum pressure can reach 40MPa or even higher, generally used in high-pressure systems such as construction machinery and presses. However, its axial size For example, the isolation bypass shown in Figure 1 is a typical installation method, which requires配 three manual valves, where manual valve 1 is the bypass valve, manual standby. Manual valves 2 and 3 are isolation valves, ensuring the online maintenance of automatic control valve 5. Of course, two three-way connectors 4 and a coupling 6 are also needed. This piping system takes up a lot of space, is time-consuming to install, and prone to leakage. The ZDF series multi-functional pressure reducing valve cleverly eliminates these additional accessories while still having the function of an isolation bypass, thus winning the Geneva International New Technology Gold Award. Automatic control valves require a filter to be installed in front. The joint use of multiple automatic control valves often requires the installation of a check valve to prevent interference between pipelines. Single-stage pressure reducing valves, combined pressure reducing valves, and pressure reducing valves with filters have all played a role in simplifying the piping. (Our company has also launched a back-flushing filter valve, which combines the functions of switching and filtering, and allows the filter element to be flushed without removing the valve, earning a US and Chinese patent.) 2. Fast filtration speed: generally 40m/h, up to 60m/h, which is more than three times faster than ordinary sand filters; Pneumatic laboratory wraps packing on the appropriate sized shaft, or uses a calibrated packing ring cutting machine; according to the requirements, cut the packing neatly into对接 (square) or 斜接 (30-45 degrees), cut one ring at a time, and use the shaft or valve rod to check if the size is appropriate. The material of the rotary clamping air filter sealant: in the early stage of weighing sensors with insufficient welding technology and equipment

Rodless cylinder DGC-K-63-500-PPV-A-GK belongs to the Air Pressure Cylinders series under CKD company, model number DGC-K-63-500-PPV-A-GK. To purchase or inquire about Rodless cylinder DGC-K-63-500-PPV-A-GK, you can directly contact 158 0047 0089 (Mr. He).

FAQ

  • What is the basic function of CKD pneumatic components?
    CKD pneumatic components use compressed air as a power source to transmit and convert forces. They can be used to control machine movements, transmit force, or achieve automation. Common pneumatic components include cylinders, pneumatic valves, and pneumatic motors.
  • What are the main types of CKD pneumatic components?

    1. Cylinders: Used to convert the energy of compressed air into mechanical energy to produce linear motion.

    2. Pneumatic valves: Used to control the direction, speed, and pressure of airflow, regulating the operation of pneumatic systems.

    3. Pneumatic motors: Devices that convert compressed air into rotary motion.

    4. Air tubes and connectors: Used to connect various components in pneumatic systems and transmit air.

  • Do CKD pneumatic components require regular maintenance? If yes, what are the key points?

    Yes, CKD pneumatic components require regular maintenance to ensure normal operation and extend service life. Key maintenance points include:

    - Regularly check and replace seals and gaskets to prevent air leakage.

    - Inspect and clean filters to ensure clean air quality.

    - Lubricate moving parts to reduce wear and improve efficiency.

    - Check air tubes and connectors to ensure secure and undamaged connections.

  • How to choose the right CKD pneumatic components?

    When selecting the appropriate CKD pneumatic components, consider the following factors:

    Application requirements: Understand the specific working environment and tasks, such as load, speed, and stroke.

    Air source conditions: Ensure that the pressure and flow of the air source meet the component’s requirements.

    Installation space: Confirm available space and choose components of suitable size.

    Environmental factors: Consider the temperature, humidity, and potential corrosiveness of the working environment to select suitable materials and designs.

  • What are common faults in CKD pneumatic component systems and how to troubleshoot?

    Common pneumatic system faults include:

    Air leakage: Causes efficiency decline; check seals, connections, and tubes, find leak points, and repair or replace.

    Stuck cylinder piston: Possibly caused by dirt or insufficient lubrication; clean the piston and add lubricant.

    Valve failure: Check electrical control signals, ensure smooth airflow, and verify if the valve itself is damaged.

    Insufficient pressure: Inspect air source pressure, filters, and piping to ensure no blockage or leakage.

Related Products