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Aventics cylinder 0820402004 in stock

$392.37

Aventics cylinder 0820402004 in stock


Brand

AVENTICS/Germany

Actuation Method

Other

Application Areas

Chemical, Petroleum, Mining, Road/Rail/Marine, General

Aventics Cylinder Parameter Requirements:

Compressed Air Connection Size: Internal Thread

Working Pressure Range: 1.5 bar / 10 bar

Ambient Temperature Range: -20°C / +80°C

Medium Temperature Range: -20°C / +80°C

Medium: Compressed Air

Particle Size: max. 50 μm

Oil Content in Compressed Air: 0 mg/m³ - 5 mg/m³

Pressure for Piston Thrust: 6.3 bar

Cylinder Tubing: Aluminum, Anodized

Piston Rod: Stainless Steel

Front End Cap: Aluminum

Seal: Acrylic Resin

Special Nut for Piston Rod: Steel, Zinc Plated

Dust Ring: Acrylic Resin

Tannels: Spheroidal Graphite Cast Iron

Tie Rod: Stainless Steel Aventics cylinders come in two types: reciprocating linear motion and reciprocating oscillating motion (see figure). Reciprocating linear motion cylinders can be further divided into four types: single-acting cylinders, double-acting cylinders, diaphragm cylinders, and impact cylinders.

① Single-acting cylinder: Has a piston rod at only one end. Air is supplied from one side of the piston, generating pressure that pushes the piston outward, returning it to its original position by a spring or gravity.

② Double-acting cylinder: Air is supplied alternately from both sides of the piston, outputting force in one or two directions.

③ Diaphragm cylinder: Uses a diaphragm instead of a piston, outputting force in only one direction, and returning to its original position by a spring. It has good sealing performance but a short stroke.

④ Impact cylinder: This is a new type of component. It converts the pressure energy of compressed gas into the kinetic energy of the piston's high-speed (10-20 m/s) motion to do work.

⑤ Rodless cylinder: A general term for cylinders without a piston rod. There are two main categories: magnetic cylinders and cable cylinders.

A reciprocating oscillating cylinder is called an oscillating cylinder. Its internal cavity is divided into two by vanes, and air is alternately supplied to the two cavities, causing the output shaft to oscillate. The oscillation angle is less than 280°. Other types include rotary cylinders, pneumatic-hydraulic damping cylinders, and stepping cylinders.

The working principle of Aventics cylinders:

Aventics cylinders determine the thrust and pull forces on the piston rod based on the required force. Therefore, when selecting a cylinder, the output force should have a slight margin. If the cylinder diameter is too small, the output force will be insufficient, and the cylinder will not function properly; however, if the cylinder diameter is too large, it will not only make the equipment bulky and costly, but also increase air consumption, resulting in energy waste. In fixture design, force-multiplying mechanisms should be used as much as possible to reduce the size of the cylinder.

Aventics Cylinders

Below is the formula for calculating the theoretical output force of a cylinder:

F: Theoretical output force of the cylinder (kgf)

F′: Output force at 85% efficiency (kgf) -- (F′=F×85%)

D: Cylinder diameter (mm)

P: Working pressure (kgf/cm²)

Example: What is the theoretical output force of a cylinder with a diameter of 340mm and a working pressure of 3kgf/cm²? What is the actual output force?

Connect P and D, find the points on F and F′, and we get:

F=2800kgf; F′=2300kgf

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Cylinder 0820059412, TC15 series AVENTICS' main products include: actuators and accessories, gripping and vacuum systems, positioning technology, valves and accessories, valve islands and bus systems, proportional technology, air source processing units, pipe fittings and accessories, sensors and pressure switches, pneumatic system control technology, marine electronic control systems, and toothed chains.

A cylinder is a container in an internal or external combustion engine that houses a piston, allowing it to reciprocate up and down. It consists of a cylinder barrel, end caps, piston, piston rod, and seals. Cylinders are classified into two types: those that perform reciprocating linear motion and those that perform reciprocating oscillation. During operation, the piston is lubricated by oil mist in compressed air.

A pneumatic actuator is a pneumatic actuator that converts the pressure energy of compressed gas into mechanical energy. Cylinders are classified into two types: those that perform reciprocating linear motion and those that perform reciprocating oscillation (see figure). Cylinders that perform reciprocating linear motion can be further divided into four types: single-acting, double-acting, diaphragm, and impact cylinders.

① Single-acting cylinder: Has a piston rod at only one end. Air is supplied from one side of the piston, generating pressure that pushes the piston outward. It returns to its original position using a spring or gravity.

② Double-acting cylinder: Air is supplied alternately from both sides of the piston, outputting force in one or two directions.

③ Diaphragm cylinder: Uses a diaphragm instead of a piston, outputting force in only one direction and returning to its original position with a spring. It has good sealing performance but a short stroke.

④ Impact cylinder: This is a new type of component. It converts the pressure energy of compressed gas into the kinetic energy of the piston's high-speed (10-20 m/s) motion to do work.

⑤ Rodless cylinder: A general term for cylinders without a piston rod. There are two main categories: magnetic cylinders and cable cylinders.

A cylinder that reciprocates is called a swing cylinder. A vane divides the inner cavity into two parts. Air is supplied alternately to the two chambers, causing the output shaft to swing. The swing angle is less than 280°. In addition, there are rotary cylinders, pneumatic-hydraulic damping cylinders, and stepping cylinders, etc.

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