Allicdata Part #: | 966-1128-ND |
Manufacturer Part#: |
81513011 |
Price: | $ 27.12 |
Product Category: | Industrial Controls |
Manufacturer: | Crouzet |
Short Description: | SUB-BASE END DIN RAIL |
More Detail: | Sub-Base, End DIN Rail |
DataSheet: | 81513011 Datasheet/PDF |
Quantity: | 9 |
1 +: | $ 24.65190 |
10 +: | $ 23.49270 |
50 +: | $ 22.40920 |
100 +: | $ 21.75400 |
Specifications
Series: | -- |
Part Status: | Active |
Type: | Sub-Base, End |
Function: | -- |
Actuator Type: | -- |
Operating Pressure: | -- |
Orifice Diameter: | -- |
Fluid Type: | -- |
Connection Method: | Push-In Connection for Tubing 6.00mm Dia |
For Use With/Related Products: | Control Valve |
Mounting Type: | DIN Rail |
Features: | -- |
Ingress Protection: | -- |
Operating Temperature: | -- |
Mechanical Life: | -- |
Approvals: | -- |
Weight: | 0.19 lb (86.18g) |
Description
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Pneumatics
Pneumatics is an application field of engineering dealing with the study and application of pressurized gas to generate mechanical motion. It can be most closely related to the mechanism of air compression. Using pressurized gas, pneumatic components are used to generate force in a contained and controlled directional manner. Common applications involving pneumatics include controlling of industrial, chemical, and energy-related processes, as well as automation and operation of sophisticated machinery and other equipment such as robots.Pneumatic components converted mechanical energy into fluid dynamics energy, allowing for the generation of controlled motion. Pressure can be generated in the form of compressed air or other inert gases; these can be used to convert the potential energy of compressed gasses into kinetic energy.Pneumatic systems are classified as either positive displacement systems or momentum transfer systems. Positive displacement systems work by using pressure to move the components of a system in a particular direction, while momentum transfer systems create a powerful thrust by releasing pressurized air in a rapid and sudden manner.The common components associated with pneumatics are referred to as valves, cylinders, and actuators. Valves are the controlling agent of the pneumatics system, as they are responsible for directing the flow of air and controlling the pressure. Cylinders, on the other hand, provide the motion by changing direction or path of motion. Actuators are the devices in pneumatic systems that convert pressure into useful motion. This can involve anything from a simple linear motion to a combination of rotary and linear motion.Hydraulics
Hydraulics is another application field of engineering dealing with the study and application of pressurized liquid to generate mechanical motion. It is closely related to the mechanism of hydrostatic forces and the transmission of energy by means of pressurized liquid. Common applications of hydraulics include machine-tool manufacturing, automotive engineering, construction machinery, and aviation operations.Unlike pneumatics, which uses pressurized gases to create controlled motion, hydraulics uses pressurized liquids to achieve the same. Pressure can be generated by using hydraulic fluids; these can be used to convert the potential energies of pressurized liquid into kinetic energy.Hydraulic systems are classified as either positive displacement systems or fluid transmission systems. Positive displacement systems use a confined volume of liquid to create a pressure drops over a given area, while fluid transmission systems transmit pressure and force in one direction or multiple directions.Common hydraulic components associated with the system include pumps, motors, cylinders, gearboxes, filters, valves, actuators, and hydraulic oils. Pumps are used to generate pressure and force over a given area, while motors provide the motion by changing direction of the motion. Cylinders utilize this pressurized force to create a powerful thrust, while gearboxes are used for transferring power from one point to another. Valves are the controlling agents of the hydraulic system, responsible for regulating and controlling the pressure, while actuators are the devices in hydraulic systems that convert pressure into useful motion. Finally, hydraulic oil is used to both lubricate the system and reduce the amount of friction between its components.Hydraulic systems are often more efficient than pneumatic systems, as they are capable of generating more power and force than their pneumatic counterparts. Hydraulic systems are also typically more reliable, as they are less susceptible to air leakage and other mechanical defects associated with pneumatic systems.The specific data is subject to PDF, and the above content is for reference
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