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Hydraulic Components
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manufacturer
3PCTS-3FJX
PCTS Couplings for Thermoplastic Hose, 3PCTS-3FJX
Gates
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MA1015
Retaining Ring; 75MM Inside Diameter X 85.217MM Outside Diameter; 20MM Width; Steel; For Size 1015 Cylindrical Roller Bearing
Loctite
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40GSM-63FLSHCF
GlobalSpiral™ Max Couplings, 40GSM-63FLSHCF 2.05 52 5.91 150 7.953 202 14.961 380 2.5 63.5 7.95 15 Steel 1 30.4348
Gates
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26265
Turbocharger Hose Kit 26265 TURBOCHARGER HOSE KIT GATR 6.25 159 .75 19.1.25 in. - 28 Male Pipe Thread .4375 in. Hex-Head 2.625 - 2.9375 66.7 - 74.6 75 .75 19.1.25 in. - 28 Male Pipe Thread
Gates
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24495
Hose; Coolant Type of Hose; 2" X 2" X 0.75" X 0.75" X 1" X 1.25" Inside Diameter; EPDM Inner Material; EPDM Outer Material; Black Color; -40 Deg F To 257 Deg F Operating Temperature Range; Engine Typical Use; Synthetic Fiber Knit Reinforcement; 18 Inch Le
Gates
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27582
Gates® Hybrid Air Hose 27582 3/8in X 4 FT HYBRID WHIP HOSE Male Ball Valve Female 1/4 in 1/4 in NPT .625 16 4 1.22 0.375 10 Air Hose (Hybrid) 300 1 0.68
Gates
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28625
Hose Clamps and Couplings Plastic Hose Connectors 28625 3/4 PLASTIC ELBOW Elbow Connector 5 0.03
Gates
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24691
Hose; Coolant Type of Hose; 1.25" Inside Diameter; EPDM Inner Material; EPDM Outer Material; Black Color; -40 Deg F To 257 Deg F Operating Temperature Range; Engine Typical Use; Synthetic Fiber Knit Reinforcement; 18.5 Inch Length
Gates
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25473
Hose; Coolant; Water Type of Hose; 1.5" Inside Diameter; 1.84" Outside Diameter; EPDM Inner Material; EPDM Outer Material; Black Color; -40 Deg F To 257 Deg F Operating Temperature Range; 30 PSI; 2 Bar Operating Pressure; Industry; Engine Typical Use; Vac
Gates
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24605
Hose; Coolant Type of Hose; 1.27" X 0.31" Inside Diameter; EPDM Inner Material; EPDM Outer Material; Black Color; -40 Deg F To 257 Deg F Operating Temperature Range; Engine Typical Use; Synthetic Fiber Knit Reinforcement
Gates
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24731
Hose; Coolant Type of Hose; 0.64" Inside Diameter; EPDM Inner Material; EPDM Outer Material; Black Color; -40 Deg F To 257 Deg F Operating Temperature Range; Engine Typical Use; Synthetic Fiber Knit Reinforcement; 16 Inch Length
Gates
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24FL-24MJ XBULK
Steel Adapters, 24FL-24MJ XBULK
Gates
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25528
Hose; Coolant; Water Type of Hose; 1.5" X 1.75" Inside Diameter; 1.84" X 2.09" Outside Diameter; EPDM Inner Material; EPDM Outer Material; Black Color; -40 Deg F To 257 Deg F Operating Temperature Range; 30 PSI; 2 Bar Operating Pressure; Industry; Engine
Gates
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24824
Hose; Coolant Type of Hose; 1.5" Inside Diameter; Silicone Inner Material; Silicone Outer Material; Blue Color; -75 Deg F To 350 Deg F Operating Temperature Range; 85 PSI; 6 Bar Operating Pressure; High Temperature Radiator; Heater and Coolant Transfer T
Gates
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26215
Hose; Turbocharger Type of Hose; 1.969" Inside Diameter; Silicone Inner Material; Silicone Outer Material; Black Color; Vehicle Typical Use; 305 MM Length
Gates
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24196
Hose; Coolant Type of Hose; 1.31" Inside Diameter; EPDM Inner Material; EPDM Outer Material; Black Color; -40 Deg F To 257 Deg F Operating Temperature Range; Engine Typical Use; Synthetic Fiber Knit Reinforcement; 25.4 Inch Length
Gates
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27230
Hose; Vacuum Type of Hose; 0.34375" Inside Diameter; EPDM Inner Material; EPDM Outer Material; Black Color; -40 Deg C To +257 Deg C Operating Temperature Range; 85 PSI; 6 Bar Operating Pressure; Passenger Car; Light Truck Typical Use; 30 Inch HG Vacuum Ra
Gates
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27461
Gas Pump Hose 27461 1 X 14FT SOFTWLL GAS PUMP 1-11 1/2NPT 1.46875 37 14 4.27 8 203 1 25Gas Pump Hose (Retractable Cable) 125Not recommended for reel type dispensers. 1 8.65
Gates
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25474
Hose; Coolant; Water Type of Hose; 1.5" Inside Diameter; 1.84" Outside Diameter; EPDM Inner Material; EPDM Outer Material; Black Color; -40 Deg F To 257 Deg F Operating Temperature Range; 30 PSI; 2 Bar Operating Pressure; Industry; Engine Typical Use; Vac
Gates
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27008
Hose; Multi Purpose Type of Hose; 0.625" Inside Diameter; PVC Inner Material; PVC Outer Material; Black Color; -40 Deg F To 257 Deg F Operating Temperature Range; 35 PSI; 2 Bar Operating Pressure; Diesel Fuel Injection System Typical Use; Spiral Reinforce
Gates
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Hydraulic Components
General Guide & Overview
Hydraulic components are at the heart of a hydraulic system, playing a vital role in its operation. These components, collectively known as the components of a hydraulic system, are essential for the efficient and reliable performance of hydraulic systems in various applications.
The components of a hydraulic system can be broadly categorized into four main types: hydraulic pumps, control valves, actuators, and hydraulic accessories. Each of these components serves a specific purpose in ensuring the smooth functioning of the hydraulic system.
Hydraulic pumps are responsible for providing the necessary hydraulic oil to meet the system's requirements. They play a crucial role in converting mechanical energy into hydraulic energy, ensuring a continuous flow of hydraulic fluid.
Control valves are another crucial element of hydraulic systems, as they regulate and control pressure, direction, and flow in the system. These valves enable precise control and manipulation of the hydraulic fluid, allowing for smooth operation of the system.
Actuators, such as hydraulic cylinders and motors, convert the hydraulic energy provided by the hydraulic pump into linear or rotary motion. These components are responsible for the physical work performed by the hydraulic system, such as lifting or moving objects.
Hydraulic accessories complement the main components of the system, performing supporting roles. These accessories include seals, filters, accumulators, and coolers, among others, ensuring the proper functioning and longevity of the hydraulic system.
Understanding the characteristics and classification of hydraulic components is crucial for designing, maintaining, and troubleshooting hydraulic systems. By gaining knowledge about the components of a hydraulic system, individuals can optimize the performance of hydraulic systems and ensure their efficient operation.
Hydraulic Pumps - The Power Element of Hydraulic Systems
Hydraulic pumps are the vital components that provide the power needed for hydraulic systems. These pumps convert mechanical energy into hydraulic energy by supplying the necessary hydraulic oil to the system. Understanding the different types of hydraulic pumps is crucial for selecting the most suitable pump for specific applications.
There are three main types of hydraulic pumps:
1. Gear Pumps
Gear pumps are widely used in hydraulic systems due to their simplicity and cost-effectiveness. They consist of two meshing gears that create a vacuum, drawing in hydraulic oil and transferring it to the system.
2. Vane Pumps
Vane pumps offer higher efficiency and lower noise levels compared to gear pumps. They use vanes that slide in and out of slots to create suction and discharge, ensuring a continuous flow of hydraulic oil.
3. Axial Piston Pumps
Axial piston pumps are known for their high-pressure capabilities and precise control. They use pistons arranged in an axial configuration to deliver hydraulic oil to the system. These pumps are often used in applications that require high forces and accurate control, such as heavy machinery and industrial equipment.
Hydraulic pumps can also be classified based on pressure levels. Low-pressure pumps are suitable for applications where a lower pressure is sufficient. Medium and low-pressure pumps strike a balance between pressure and flow requirements. High-pressure pumps, as the name suggests, are designed to handle demanding applications that require high forces.
Additionally, hydraulic pumps can have different displacement capabilities. Displacement refers to the volume of hydraulic oil displaced per revolution of the pump. Pumps with larger displacements are used in applications that require higher flow rates, while smaller displacement pumps are suitable for applications with lower flow requirements.
Some hydraulic pumps have a fixed displacement, meaning the amount of hydraulic oil delivered per revolution remains constant. On the other hand, variable displacement pumps allow for adjustment, enabling the system to control the flow and pressure according to its needs.
In conclusion, hydraulic pumps are the power elements that drive hydraulic systems. Gear pumps, vane pumps, and axial piston pumps are the main types of pumps used in various applications. Understanding the different types, pressure levels, and displacement capabilities of hydraulic pumps is essential for selecting the right pump and ensuring optimal performance of hydraulic systems.
Control Valves - Regulating Pressure, Direction, and Flow
Control valves play a crucial role in hydraulic systems by regulating and controlling the pressure, direction, and flow of hydraulic fluid. These valves ensure the proper operation and efficiency of the system.
Pressure valves, such as overflow valves, pressure reducing valves, and sequence valves, are responsible for controlling the pressure levels within the system. These valves prevent damage and maintain the system's integrity.
Directional valves, including reversing valves and one-way valves, control the flow direction in the hydraulic circuit. By opening or closing these valves, the on-off control of hydraulic actuators is enabled.
Flow valves, such as speed control valves and throttle valves, regulate the flow rate to control the movement speed of hydraulic actuators. These valves allow for precise control over the actuator's motion.
The failure of control valves can result in pressure imbalances, improper sequencing of actions, and loss of control in the hydraulic system. Therefore, proper maintenance and monitoring of control valves are essential for the reliable operation of hydraulic systems.
By selecting the appropriate control valves and ensuring their proper functioning, engineers and technicians can optimize the performance and longevity of hydraulic systems.
Hydraulic components are the lifeline of hydraulic systems, enabling them to function seamlessly and efficiently. This comprehensive guide has provided valuable insights into the various hydraulic components that make up a hydraulic system, including hydraulic pumps, control valves, actuators, and hydraulic accessories.
By understanding the characteristics, classification, and roles of these components, individuals can design, maintain, and troubleshoot hydraulic systems with confidence. Hydraulic pumps ensure a steady supply of hydraulic oil, while control valves regulate and control fluid flow. Actuators convert hydraulic energy into mechanical motion, and hydraulic accessories provide essential support to the overall system operation.
Proper selection, installation, and maintenance of hydraulic components are crucial in achieving optimal performance and reliability in various applications. With the knowledge gained, individuals can navigate the world of hydraulic components and optimize the performance of hydraulic systems in their specific industries.
Remember, hydraulic components are the backbone of hydraulic systems. Through careful consideration and implementation, the right combination of hydraulic components can deliver efficient and reliable performance, ensuring smooth operations and maximized productivity.
FAQ
What are hydraulic components?
Hydraulic components are the basic components of a hydraulic system. They include hydraulic pumps, control valves, actuators, and hydraulic accessories.
What is the role of hydraulic pumps in a hydraulic system?
Hydraulic pumps are responsible for providing hydraulic oil to meet the system's requirements. They convert mechanical energy into hydraulic energy.
What are the main types of hydraulic pumps?
The main types of hydraulic pumps are gear pumps, vane pumps, and axial piston pumps.
What are the functions of control valves in a hydraulic system?
Control valves regulate and control the pressure, direction, and flow of hydraulic fluid in a system.
What are the different types of control valves?
The different types of control valves include pressure valves, directional valves, and flow valves.