Allicdata Part #: | 81545013-ND |
Manufacturer Part#: |
81545013 |
Price: | $ 29.46 |
Product Category: | Industrial Controls |
Manufacturer: | Crouzet |
Short Description: | VAC GEN PRES OPERATED FREE HANG |
More Detail: | Pressure Operated Vacuum Generator Free Hanging (... |
DataSheet: | 81545013 Datasheet/PDF |
Quantity: | 1000 |
1 +: | $ 26.78760 |
For Use With/Related Products: | -- |
Mounting Type: | Free Hanging (In-Line) |
Features: | -- |
Ingress Protection: | -- |
Operating Temperature: | -- |
Mechanical Life: | -- |
Approvals: | ATEX |
Weight: | 0.055 lb (24.95g) |
Series: | -- |
Part Status: | Active |
Type: | Vacuum Generator |
Function: | Pressure Operated |
Actuator Type: | -- |
Operating Pressure: | 30 ~ 116 PSI (2 ~ 8 bar) |
Orifice Diameter: | -- |
Fluid Type: | Air, Inert Gas |
Connection Method: | Push-In Connection for Tubing 6.00mm Dia |
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Pneumatic
Pneumatics is a method of power transmissions which utilizes pressurized air to either generate or control motion. It is widely used in industry, engineering, and robots, and has the advantage of being clean, quiet, reliable, and with no risk of electric shock. Generally, compressed air is stored in either tanks or bottles, and then transferred to the machine as the source of power. This type of power source is especially suited for applications where electricity either does not exist or is hazardous.
In terms of 81545013 application field and working principle, pneumatic machines are used to control and transmit power in many industrial fields. In general, pneumatic machines utilize compressed air as the source of power, either through direct or indirect applications. A direct application involves controlling a single actuator, such as an air cylinder, which is powered by the compressed air from the tank. An indirect application might involve using an air compressor and air filter to power multiple mechanisms.
An example of a pneumatic machine involves a compressed air cylinder, which converts pressurized air into linear power for a variety of applications. The compressed air cylinder utilizes a pressure chamber, piston, and an exhaust chamber to generate the linear motion. The pressure chamber holds air at a predetermined pressure, and the piston is pushed against the pressure chamber by the force of the air. A series of valves and seals control the flow of the air within the cylinder, allowing for the precise positioning of the piston for controlling linear motion. The exhaust chamber releases the air pressure when it is no longer required, allowing the system to reset and prepare for the next cycle.
The main advantage of using pneumatics is the reliable, clean, and efficient power transmission with minimal risk. Since compressed air is used as the power source, no external electricity is required and there is no risk of electric shock. Additionally, the absence of combustion makes pneumatics a safer power option in hazardous environments. Furthermore, pneumatic machines are highly precise and usually require very little maintenance, making them an excellent choice for industrial applications.
Hydraulic
Hydraulics is a power transmission system based on liquid pressure, wherein liquid force is used to generate or control motion. It is widely used in industry, construction, and automobiles, and has the advantage of being durable, powerful, and with high energy efficiency. Generally, a hydraulic system comprises of an oil pump, tank, and hydraulic cylinders, which all work together to transmit the power.
In terms of 81545013 application field and working principle, hydraulic machines are commonly used to control and transmit power in many industrial fields. A hydraulic system is driven by a hydraulic pump, which pumps hydraulic fluid from a reservoir and into the different components of the system. The pressure from the pump is then used to power the applications through hydraulic cylinders, valves, hoses, and other components. Hydraulic pumps are typically powered by electricity, engines, or pneumatics.
An example of a hydraulic machine involves a hydraulic cylinder, which converts pressure into linear power for a variety of applications. The cylinder utilizes a pressure chamber, piston, and a hydraulic fluid to generate the linear motion. The pressure chamber holds the fluid at a predetermined pressure, and the piston is pushed against the pressure chamber by the force of the fluid. A series of valves and seals control the flow of the fluid within the cylinder, allowing for a precision positioning of the piston for controlling linear motion. The return line then releases the fluid in the cylinder, allowing the system to reset and prepare for the next cycle.
The main advantages of using hydraulics are that it has a high power output, with a great degree of control over the linear motion. Furthermore, the transmission is relatively quiet, and the source of power does not require external sources. As the power source is derived from the liquid pump, it inherently has a higher energy efficiency than many other types of power transmission systems. Additionally, the system utilizes few moving parts, resulting in minimal maintenance costs.
The specific data is subject to PDF, and the above content is for reference
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