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Air Cylinders(Stroke: L:1,000 Page2)

Air cylinders are mechanical parts that produce linear motion from compressed air. Air cylinders are usually considered to have a simpler mechanism and provide smoother drive than oil-based hydraulic cylinders. They are composed of a cylinder and piston, and prevent compressed air leaks using seals made of rubber or other materials. Air cylinders can be differentiated by the different ways they operate in combination with the motion of their spring. Examples of these different operation types include single-acting (push type), single-acting (pull type) and double-acting. Push-type single-acting cylinders have a valve that is normally kept open by the spring force and closes only when the cylinder is pressurized. Pull-type single-acting cylinders have a valve that is normally kept closed by the spring force and opens only when the cylinder is pressurized. Double-acting cylinders don't use the force of a spring. Instead, the pressure is divided between a top chamber and bottom chamber to open and close the valve. Different cylinders should be used for different operating environments since there are cylinders designed for use with specific conditions such as high speeds, high frequencies, ultra-low speeds, heat resistance, cleanrooms and vacuum. MISUMI handles several well-known brands such as SMC, CKD and Koganei.

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    Air Cylinder, Standard Type, Double Acting, Single Rod, Rechargeable Battery Compatible, 25A-MB Series

    Air Cylinder, Standard Type, Double Acting, Single Rod, Rechargeable Battery Compatible, 25A-MB Series

    SMC

    [Rechargeable Battery Compatible Series]· In order to reduce product defects in the rechargeable battery manufacturing process, materials containing copper (Cu) and zinc (Zn) as main components are not used.* Some aluminum alloys and aluminum die-cast materials contain small amounts of copper (Cu) and zinc (Zn) as added elements.· No electrolytic nickel plating or zinc plating with copper base is used.* Electroless nickel plating is used.· Low dew point compatible grease used, can be used at -70°C. Improved performance in low dew point environments.

    Cylinder I.D: D(Ø) Stroke: L(mm) Rod Operation Method Main Body Shape Cylinder Operation Method Additional Function Environment, Applications
    63 ~ 100 1,000 Single-Rod Standard Double Acting Standard Non-use of Copper-zinc Material
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    Cylinder With Guide, MGG Series, Air-Hydro Type

    Cylinder With Guide, MGG Series, Air-Hydro Type

    SMC

    [Low-Pressure Hydraulic Cylinder of 1.0 MPa or Lower]Use with the Air-Hydro Unit CC Series enables constant-speed and low-speed driving as well as intermediate stopping similar to those of a hydraulic unit while using pneumatic devices such as valves.

    CAD :
    2D / 3D
    Cylinder I.D: D(Ø) Stroke: L(mm) Rod Operation Method Main Body Shape Cylinder Operation Method Additional Function Environment, Applications
    50 ~ 63 1,000 Single-Rod With Guide Double Acting Standard / With Intermediate Stop Function Slow Speed
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    Non-Rotating Rod Type Air Cylinder (CA2KW Series Double Acting, Double Rod)

    Non-Rotating Rod Type Air Cylinder (CA2KW Series Double Acting, Double Rod)

    SMC

    A lightweight air cylinder that can be made up to 15% lighter by changing the shape of the rod cover and head cover. [Features] · Non-rotating rod type: double acting, double rod. · Easy air cushion control. · Various switches such as compact auto switches and strong magnetic field resistant switches can be mounted. · Without auto switch (CA2KW) or with auto switch (built-in magnet) (CDA2KW). · Bore size: 40 mm / 50 mm / 63 mm. · Port thread types: Rc, NPT, G. · Cushion: air cushion (Nil), no cushion (N).

    CAD :
    2D / 3D
    Cylinder I.D: D(Ø) Stroke: L(mm) Rod Operation Method Main Body Shape Cylinder Operation Method Additional Function Environment, Applications
    50 ~ 63 1,000 Dual-Rod Standard Double Acting With Rod Rotation Stopper Function Standard
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BrandNhãn hiệu
Product SeriesDòng sản phẩm
CADCAD
From
Days to ShipSố ngày giao hàng
Cylinder I.D: D(Ø)
Stroke: L(mm)
Rod Operation Method
Main Body Shape
Cylinder Operation Method
Additional Function
Environment, Applications

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    Air Cylinder, Standard Type, Double Acting, Single Rod, Rechargeable Battery Compatible, 25A-MB Series

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        Cylinder With Guide, MGG Series, Air-Hydro Type

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            Non-Rotating Rod Type Air Cylinder (CA2KW Series Double Acting, Double Rod)
              BrandNhãn hiệu

              SMC

              SMC

              SMC

              Product SeriesDòng sản phẩm

              Air Cylinder, Standard Type, Double Acting, Single Rod, Rechargeable Battery Compatible, 25A-MB Series

              Cylinder With Guide, MGG Series, Air-Hydro Type

              Non-Rotating Rod Type Air Cylinder (CA2KW Series Double Acting, Double Rod)

              CADCAD
              • 2D / 3D
              • 2D / 3D
              From
              Days to ShipSố ngày giao hàng Quote Quote Quote
              Cylinder I.D: D(Ø)63 ~ 10050 ~ 6350 ~ 63
              Stroke: L(mm)1,0001,0001,000
              Rod Operation MethodSingle-RodSingle-RodDual-Rod
              Main Body ShapeStandardWith GuideStandard
              Cylinder Operation MethodDouble ActingDouble ActingDouble Acting
              Additional FunctionStandardStandard / With Intermediate Stop FunctionWith Rod Rotation Stopper Function
              Environment, ApplicationsNon-use of Copper-zinc MaterialSlow SpeedStandard

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              Application example related to this categoryVí dụ ứng dụng liên quan đến danh mục này

              Related Categories to Air CylindersDanh mục liên quan đến Air Cylinders

              FAQ Air Cylinders

              Question: What are the key specifications of general purpose cylinders?
              Answer: General purpose cylinders come with critical specifications that define their performance. Bore size, representing the internal diameter, directly influences the force output — a larger bore delivers more force but may impact speed. Stroke length, indicating the distance the cylinder travels, is pivotal for ensuring the cylinder can execute the required motion. Operating pressure, the force generated at a specific pressure, is crucial for determining the cylinder's capability.
              Question: How do I select the right cylinder model?
              Answer: Choosing the appropriate cylinder model involves a nuanced assessment. Understanding force requirements is paramount; the cylinder must deliver the necessary force for the application. Environmental factors, such as temperature and exposure to contaminants, should guide the selection. Additionally, considering space constraints ensures the chosen cylinder fits seamlessly into the designated area, with compact models being advantageous in confined spaces.
              Question: What applications do general purpose cylinders serve?
              Answer: General purpose cylinders find versatile applications across industries. In material handling, they play a pivotal role in conveyor systems and robotic arms for efficient movement of items. In clamping applications, these cylinders secure workpieces in fixtures, ensuring stability during various manufacturing processes. Their versatility extends to tasks requiring linear force, making them indispensable in pushing and pulling applications.
              Question: What materials are these cylinders made from?
              Answer: The materials used in general purpose cylinders impact their performance and longevity. Aluminum cylinders, owing to their lightweight nature and corrosion resistance, are ideal when weight is a critical consideration. Stainless steel cylinders, on the other hand, offer durability and corrosion resistance, making them suitable for applications in harsh environments where resilience is paramount.
              Question: What is the importance of cylinder I.D. and stroke length?
              Answer: Cylinder I.D. (Internal Diameter) and stroke length are pivotal considerations in the selection process. A larger I.D. results in more force output, but engineers must balance this with available pressure in system. Stroke length is equally crucial, determining the range of motion the cylinder can achieve. Engineers must ensure that both parameters align with the specific requirements of the task at hand to optimize the cylinder's functionality in the given application.