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PJM Industrial | Construction Equipment P.J.M. Industrial has been operating since 1999 being able to offer the Construction industry a wide variety of Light to Heavy Jacking Equipment. Whether it's to be used in Bridge Construction, Concrete Precast Yards, or the Post or Prestressing Industries.
We have a minimum of 20 years experience in design and manufacture of all facets of Jacking Systems and Hydraulic Cylinder ...
A double acting cylinder is a type of hydraulic or pneumatic cylinder that uses pressurized fluid or air to move a piston back and forth in both directions. This means that the cylinder can perform work in both the extending and retracting strokes, making it useful for a wide range of applications such as lifting, pushing, pulling, and clamping. Double acting cylinders are commonly used in industrial machinery, construction equipment, and automation systems.
What are the advantages of using a double acting cylinder?
A double acting cylinder has several advantages over a single acting cylinder:
It can apply force in both directions, which allows for more precise control of the movement of the load.
It can move faster than a single acting cylinder because it does not need to wait for the return stroke.
It can be used in applications where the load needs to be held in a fixed position, as it can apply force in both directions to maintain the position.
It can be used in applications where the load needs to be moved in both directions, such as in a conveyor system.
It can be used in applications where the load needs to be lifted or lowered, as it can apply force in both directions to lift or lower the load.
Overall, a double acting cylinder is a versatile and efficient option for many industrial applications.
What are the different types of double acting cylinders available in Australia?
There are several types of double acting cylinders available in Australia, including:
Tie-rod cylinders: These are the most common type of double acting cylinder, with a tie-rod construction that allows for easy maintenance and repair.
Welded cylinders: These cylinders are designed for heavy-duty applications and are welded together for maximum strength and durability.
Telescopic cylinders: These cylinders have multiple stages that can extend and retract, making them ideal for applications where a longer stroke is required.
Compact cylinders: These cylinders are designed to be small and lightweight, making them ideal for applications where space is limited.
Roundline cylinders: These cylinders have a round body and are designed for applications where high side loads are present.
Mill-type cylinders: These cylinders are designed for heavy-duty applications and are typically used in steel mills and other industrial settings.
Rotary actuators: These cylinders are designed to provide rotary motion and are often used in robotics and automation applications.
What is the maximum pressure rating for a double acting cylinder?
The maximum pressure rating for a double acting cylinder depends on the specific model and manufacturer. It can range from a few hundred psi to several thousand psi. It is important to check the specifications provided by the manufacturer to ensure that the cylinder can handle the required pressure for the intended application.
What is the maximum stroke length for a double acting cylinder?
The maximum stroke length for a double acting cylinder depends on the specific model and manufacturer. However, in general, double acting cylinders can have stroke lengths ranging from a few millimeters to several meters.
What are the materials used to manufacture double acting cylinders?
Double acting cylinders are commonly used in hydraulic systems to provide linear motion. The materials used to manufacture double acting cylinders vary depending on the application and the environment in which they will be used. However, some of the common materials used include:
Steel: Steel is a popular material for manufacturing double acting cylinders due to its strength and durability. It is also resistant to corrosion and can withstand high pressure and temperature.
Aluminum: Aluminum is a lightweight material that is commonly used in applications where weight is a concern. It is also resistant to corrosion and can be easily machined.
Brass: Brass is a material that is commonly used in applications where corrosion resistance is required. It is also a good conductor of heat and electricity.
Stainless steel: Stainless steel is a material that is commonly used in applications where corrosion resistance is required. It is also strong and durable and can withstand high pressure and temperature.
Plastic: Plastic is a lightweight and corrosion-resistant material that is commonly used in applications where weight is a concern. It is also easy to machine and can be molded into complex shapes.
Overall, the choice of material for manufacturing double acting cylinders depends on the specific application and the environment in which they will be used.
What is the warranty period for a double acting cylinder?
It is best to check the manufacturer's website or product manual for information on the warranty period.
How do I choose the right size of double acting cylinder for my application?
Choosing the right size of double acting cylinder for your application involves considering factors such as the load to be moved, the required force, the stroke length, and the operating pressure. You should also consider the mounting options, the bore size, and the rod diameter. It is important to consult with a professional to ensure that you select the appropriate cylinder size for your specific application.
What is the lead time for delivery of a double acting cylinder?
It is best to contact the manufacturer or supplier directly for this information.
How do I install and maintain a double acting cylinder?
To install and maintain a double acting cylinder, follow these steps:
Choose the right cylinder for your application based on size, stroke length, and operating pressure.
Mount the cylinder securely using appropriate brackets and hardware.
Connect the cylinder to the hydraulic system using hoses or tubing.
Ensure that the cylinder is properly aligned and that the piston rod is centered in the bore.
Check for leaks in the hydraulic system and repair as necessary.
Lubricate the cylinder regularly with the recommended oil or grease.
Inspect the cylinder for damage or wear and replace any worn or damaged parts.
Test the cylinder for proper operation and adjust as necessary.
Follow the manufacturer's recommended maintenance schedule and procedures.
Train personnel on proper operation and maintenance of the cylinder.
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