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Bluex Pneumatic Accessories

Showing 9 out of 9 products

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₹23,599  
Bluex 2 HP Motor for Oil Free Air Compressor, BEI - 10004 An air compressor motor is the electrical component responsible for driving the operation of an air compressor. It converts electrical energy into mechanical energy that powers the compressor's pump or unit. The motor is a critical component of the air compressor, and its performance directly impacts its efficiency and functionality. Electric Motors: The most common type of motor used in air compressors is the electric motor. Electric motors can be single-phase or three-phase, depending on the power supply and the compressor's size and capacity. Gasoline or Diesel Engines: In portable and mobile air compressors, you may find gasoline or diesel engines that power the compressor. These engines provide the mobility needed for remote or on-site applications. Horsepower (HP): The motor's horsepower rating indicates its power output and capacity to drive the compressor. The HP requirement varies based on the compressor's size and intended use. Phase: Electric motors can be single-phase or three-phase. The choice depends on the electrical supply and the compressor's power requirements. RPM (Revolutions per Minute): The motor's RPM indicates its rotational speed. Compressor motors are typically designed for specific RPMs to achieve the desired compression ratio. Air compressor motors are often designed with particular enclosures to protect them from environmental factors. Standard sections include open drip-proof (ODP), totally enclosed fan-cooled (TEFC), and explosion-proof (XP) enclosures. Motor Mounting: Motor mounting refers to how the motor is physically attached to the compressor unit. Standard mounting methods include direct drive, belt drive, and base-mounted configurations. Maintenance and Lubrication: Proper motor maintenance is essential for longevity and performance. This includes checking and maintaining lubrication (if applicable), inspecting and tightening electrical connections, and cleaning the motor and surrounding components. Safety Precautions: When working with air compressor motors, safety precautions should be followed, such as disconnecting power sources during maintenance, ensuring proper grounding, and using appropriate personal protective equipment (PPE). Motor Selection: Choosing the correct motor for an air compressor involves considering factors such as the compressor's size, intended use, power supply, and motor specifications to ensure compatibility and optimal performance.
₹10,650  
BLUEX 1 HP Casting With Copper Motor For Oil Free Air Compressor An air compressor motor is the electrical component responsible for driving the operation of an air compressor. It converts electrical energy into mechanical energy that powers the compressor's pump or unit. The motor is a critical component of the air compressor, and its performance directly impacts its efficiency and functionality. Electric Motors: The most common type of motor used in air compressors is the electric motor. Electric motors can be single-phase or three-phase, depending on the power supply and the compressor's size and capacity. Gasoline or Diesel Engines: In portable and mobile air compressors, you may find gasoline or diesel engines that power the compressor. These engines provide the mobility needed for remote or on-site applications. Horsepower (HP): The motor's horsepower rating indicates its power output and capacity to drive the compressor. The HP requirement varies based on the compressor's size and intended use. Phase: Electric motors can be single-phase or three-phase. The choice depends on the electrical supply and the compressor's power requirements. RPM (Revolutions per Minute): The motor's RPM indicates its rotational speed. Compressor motors are typically designed for specific RPMs to achieve the desired compression ratio. Air compressor motors are often designed with particular enclosures to protect them from environmental factors. Standard sections include open drip-proof (ODP), totally enclosed fan-cooled (TEFC), and explosion-proof (XP) enclosures. Motor Mounting: Motor mounting refers to how the motor is physically attached to the compressor unit. Standard mounting methods include direct drive, belt drive, and base-mounted configurations. Maintenance and Lubrication: Proper motor maintenance is essential for longevity and performance. This includes checking and maintaining lubrication (if applicable), inspecting and tightening electrical connections, and cleaning the motor and surrounding components. Safety Precautions: When working with air compressor motors, safety precautions should be followed, such as disconnecting power sources during maintenance, ensuring proper grounding, and using appropriate personal protective equipment (PPE). Motor Selection: Choosing the correct motor for an air compressor involves considering factors such as the compressor's size, intended use, power supply, and motor specifications to ensure compatibility and optimal performance.
₹9,820  
BLUEX 0.75 HP Casting With Copper Motor For Oil Free Air Compressor An air compressor motor is the electrical component responsible for driving the operation of an air compressor. It converts electrical energy into mechanical energy that powers the compressor's pump or unit. The motor is a critical component of the air compressor, and its performance directly impacts its efficiency and functionality. Electric Motors: The most common type of motor used in air compressors is the electric motor. Electric motors can be single-phase or three-phase, depending on the power supply and the compressor's size and capacity. Gasoline or Diesel Engines: In portable and mobile air compressors, you may find gasoline or diesel engines that power the compressor. These engines provide the mobility needed for remote or on-site applications. Horsepower (HP): The motor's horsepower rating indicates its power output and capacity to drive the compressor. The HP requirement varies based on the compressor's size and intended use. Phase: Electric motors can be single-phase or three-phase. The choice depends on the electrical supply and the compressor's power requirements. RPM (Revolutions per Minute): The motor's RPM indicates its rotational speed. Compressor motors are typically designed for specific RPMs to achieve the desired compression ratio. Air compressor motors are often designed with particular enclosures to protect them from environmental factors. Standard sections include open drip-proof (ODP), totally enclosed fan-cooled (TEFC), and explosion-proof (XP) enclosures. Motor Mounting: Motor mounting refers to how the motor is physically attached to the compressor unit. Standard mounting methods include direct drive, belt drive, and base-mounted configurations. Maintenance and Lubrication: Proper motor maintenance is essential for longevity and performance. This includes checking and maintaining lubrication (if applicable), inspecting and tightening electrical connections, and cleaning the motor and surrounding components. Safety Precautions: When working with air compressor motors, safety precautions should be followed, such as disconnecting power sources during maintenance, ensuring proper grounding, and using appropriate personal protective equipment (PPE). Motor Selection: Choosing the correct motor for an air compressor involves considering factors such as the compressor's size, intended use, power supply, and motor specifications to ensure compatibility and optimal performance.
₹20,059  
BLUEX 1.5 HP Casting With Copper Motor For Oil Free Air Compressor An air compressor motor is the electrical component responsible for driving the operation of an air compressor. It converts electrical energy into mechanical energy that powers the compressor's pump or unit. The motor is a critical component of the air compressor, and its performance directly impacts its efficiency and functionality. Electric Motors: The most common type of motor used in air compressors is the electric motor. Electric motors can be single-phase or three-phase, depending on the power supply and the compressor's size and capacity. Gasoline or Diesel Engines: In portable and mobile air compressors, you may find gasoline or diesel engines that power the compressor. These engines provide the mobility needed for remote or on-site applications. Horsepower (HP): The motor's horsepower rating indicates its power output and capacity to drive the compressor. The HP requirement varies based on the compressor's size and intended use. Phase: Electric motors can be single-phase or three-phase. The choice depends on the electrical supply and the compressor's power requirements. RPM (Revolutions per Minute): The motor's RPM indicates its rotational speed. Compressor motors are typically designed for specific RPMs to achieve the desired compression ratio. Air compressor motors are often designed with particular enclosures to protect them from environmental factors. Standard sections include open drip-proof (ODP), totally enclosed fan-cooled (TEFC), and explosion-proof (XP) enclosures. Motor Mounting: Motor mounting refers to how the motor is physically attached to the compressor unit. Standard mounting methods include direct drive, belt drive, and base-mounted configurations. Maintenance and Lubrication: Proper motor maintenance is essential for longevity and performance. This includes checking and maintaining lubrication (if applicable), inspecting and tightening electrical connections, and cleaning the motor and surrounding components. Safety Precautions: When working with air compressor motors, safety precautions should be followed, such as disconnecting power sources during maintenance, ensuring proper grounding, and using appropriate personal protective equipment (PPE). Motor Selection: Choosing the correct motor for an air compressor involves considering factors such as the compressor's size, intended use, power supply, and motor specifications to ensure compatibility and optimal performance.
₹14,159  
Bluex 1 HP Motor for Oil Free Air Compressor, BEI - 10002 An air compressor motor is the electrical component responsible for driving the operation of an air compressor. It converts electrical energy into mechanical energy that powers the compressor's pump or unit. The motor is a critical component of the air compressor, and its performance directly impacts its efficiency and functionality. Electric Motors: The most common type of motor used in air compressors is the electric motor. Electric motors can be single-phase or three-phase, depending on the power supply and the compressor's size and capacity. Gasoline or Diesel Engines: In portable and mobile air compressors, you may find gasoline or diesel engines that power the compressor. These engines provide the mobility needed for remote or on-site applications. Horsepower (HP): The motor's horsepower rating indicates its power output and capacity to drive the compressor. The HP requirement varies based on the compressor's size and intended use. Phase: Electric motors can be single-phase or three-phase. The choice depends on the electrical supply and the compressor's power requirements. RPM (Revolutions per Minute): The motor's RPM indicates its rotational speed. Compressor motors are typically designed for specific RPMs to achieve the desired compression ratio. Air compressor motors are often designed with particular enclosures to protect them from environmental factors. Standard sections include open drip-proof (ODP), totally enclosed fan-cooled (TEFC), and explosion-proof (XP) enclosures. Motor Mounting: Motor mounting refers to how the motor is physically attached to the compressor unit. Standard mounting methods include direct drive, belt drive, and base-mounted configurations. Maintenance and Lubrication: Proper motor maintenance is essential for longevity and performance. This includes checking and maintaining lubrication (if applicable), inspecting and tightening electrical connections, and cleaning the motor and surrounding components. Safety Precautions: When working with air compressor motors, safety precautions should be followed, such as disconnecting power sources during maintenance, ensuring proper grounding, and using appropriate personal protective equipment (PPE). Motor Selection: Choosing the correct motor for an air compressor involves considering factors such as the compressor's size, intended use, power supply, and motor specifications to ensure compatibility and optimal performance.
₹23,599  
BLUEX 2 HP Casting With Copper Motor For Oil Free Air Compressor An air compressor motor is the electrical component responsible for driving the operation of an air compressor. It converts electrical energy into mechanical energy that powers the compressor's pump or unit. The motor is a critical component of the air compressor, and its performance directly impacts its efficiency and functionality. Electric Motors: The most common type of motor used in air compressors is the electric motor. Electric motors can be single-phase or three-phase, depending on the power supply and the compressor's size and capacity. Gasoline or Diesel Engines: In portable and mobile air compressors, you may find gasoline or diesel engines that power the compressor. These engines provide the mobility needed for remote or on-site applications. Horsepower (HP): The motor's horsepower rating indicates its power output and capacity to drive the compressor. The HP requirement varies based on the compressor's size and intended use. Phase: Electric motors can be single-phase or three-phase. The choice depends on the electrical supply and the compressor's power requirements. RPM (Revolutions per Minute): The motor's RPM indicates its rotational speed. Compressor motors are typically designed for specific RPMs to achieve the desired compression ratio. Air compressor motors are often designed with particular enclosures to protect them from environmental factors. Standard sections include open drip-proof (ODP), totally enclosed fan-cooled (TEFC), and explosion-proof (XP) enclosures. Motor Mounting: Motor mounting refers to how the motor is physically attached to the compressor unit. Standard mounting methods include direct drive, belt drive, and base-mounted configurations. Maintenance and Lubrication: Proper motor maintenance is essential for longevity and performance. This includes checking and maintaining lubrication (if applicable), inspecting and tightening electrical connections, and cleaning the motor and surrounding components. Safety Precautions: When working with air compressor motors, safety precautions should be followed, such as disconnecting power sources during maintenance, ensuring proper grounding, and using appropriate personal protective equipment (PPE). Motor Selection: Choosing the correct motor for an air compressor involves considering factors such as the compressor's size, intended use, power supply, and motor specifications to ensure compatibility and optimal performance.
₹20,059  
Bluex 1.5 HP Motor for Oil Free Air Compressor, BEI - 10003 An air compressor motor is the electrical component responsible for driving the operation of an air compressor. It converts electrical energy into mechanical energy that powers the compressor's pump or unit. The motor is a critical component of the air compressor, and its performance directly impacts its efficiency and functionality. Electric Motors: The most common type of motor used in air compressors is the electric motor. Electric motors can be single-phase or three-phase, depending on the power supply and the compressor's size and capacity. Gasoline or Diesel Engines: In portable and mobile air compressors, you may find gasoline or diesel engines that power the compressor. These engines provide the mobility needed for remote or on-site applications. Horsepower (HP): The motor's horsepower rating indicates its power output and capacity to drive the compressor. The HP requirement varies based on the compressor's size and intended use. Phase: Electric motors can be single-phase or three-phase. The choice depends on the electrical supply and the compressor's power requirements. RPM (Revolutions per Minute): The motor's RPM indicates its rotational speed. Compressor motors are typically designed for specific RPMs to achieve the desired compression ratio. Air compressor motors are often designed with particular enclosures to protect them from environmental factors. Standard sections include open drip-proof (ODP), totally enclosed fan-cooled (TEFC), and explosion-proof (XP) enclosures. Motor Mounting: Motor mounting refers to how the motor is physically attached to the compressor unit. Standard mounting methods include direct drive, belt drive, and base-mounted configurations. Maintenance and Lubrication: Proper motor maintenance is essential for longevity and performance. This includes checking and maintaining lubrication (if applicable), inspecting and tightening electrical connections, and cleaning the motor and surrounding components. Safety Precautions: When working with air compressor motors, safety precautions should be followed, such as disconnecting power sources during maintenance, ensuring proper grounding, and using appropriate personal protective equipment (PPE). Motor Selection: Choosing the correct motor for an air compressor involves considering factors such as the compressor's size, intended use, power supply, and motor specifications to ensure compatibility and optimal performance.
₹10,383  
Bluex 0.75 HP Motor for Oil Free Air Compressor, BEI - 10018 An air compressor motor is the electrical component responsible for driving the operation of an air compressor. It converts electrical energy into mechanical energy that powers the compressor's pump or unit. The motor is a critical component of the air compressor, and its performance directly impacts its efficiency and functionality. Electric Motors: The most common type of motor used in air compressors is the electric motor. Electric motors can be single-phase or three-phase, depending on the power supply and the compressor's size and capacity. Gasoline or Diesel Engines: In portable and mobile air compressors, you may find gasoline or diesel engines that power the compressor. These engines provide the mobility needed for remote or on-site applications. Horsepower (HP): The motor's horsepower rating indicates its power output and capacity to drive the compressor. The HP requirement varies based on the compressor's size and intended use. Phase: Electric motors can be single-phase or three-phase. The choice depends on the electrical supply and the compressor's power requirements. RPM (Revolutions per Minute): The motor's RPM indicates its rotational speed. Compressor motors are typically designed for specific RPMs to achieve the desired compression ratio. Air compressor motors are often designed with particular enclosures to protect them from environmental factors. Standard sections include open drip-proof (ODP), totally enclosed fan-cooled (TEFC), and explosion-proof (XP) enclosures. Motor Mounting: Motor mounting refers to how the motor is physically attached to the compressor unit. Standard mounting methods include direct drive, belt drive, and base-mounted configurations. Maintenance and Lubrication: Proper motor maintenance is essential for longevity and performance. This includes checking and maintaining lubrication (if applicable), inspecting and tightening electrical connections, and cleaning the motor and surrounding components. Safety Precautions: When working with air compressor motors, safety precautions should be followed, such as disconnecting power sources during maintenance, ensuring proper grounding, and using appropriate personal protective equipment (PPE). Motor Selection: Choosing the correct motor for an air compressor involves considering factors such as the compressor's size, intended use, power supply, and motor specifications to ensure compatibility and optimal performance.
₹11,091  
Bluex 0.75 HP Motor for Oil Free Air Compressor, BEI - 10001 An air compressor motor is the electrical component responsible for driving the operation of an air compressor. It converts electrical energy into mechanical energy that powers the compressor's pump or unit. The motor is a critical component of the air compressor, and its performance directly impacts its efficiency and functionality. Electric Motors: The most common type of motor used in air compressors is the electric motor. Electric motors can be single-phase or three-phase, depending on the power supply and the compressor's size and capacity. Gasoline or Diesel Engines: In portable and mobile air compressors, you may find gasoline or diesel engines that power the compressor. These engines provide the mobility needed for remote or on-site applications. Horsepower (HP): The motor's horsepower rating indicates its power output and capacity to drive the compressor. The HP requirement varies based on the compressor's size and intended use. Phase: Electric motors can be single-phase or three-phase. The choice depends on the electrical supply and the compressor's power requirements. RPM (Revolutions per Minute): The motor's RPM indicates its rotational speed. Compressor motors are typically designed for specific RPMs to achieve the desired compression ratio. Air compressor motors are often designed with particular enclosures to protect them from environmental factors. Standard sections include open drip-proof (ODP), totally enclosed fan-cooled (TEFC), and explosion-proof (XP) enclosures. Motor Mounting: Motor mounting refers to how the motor is physically attached to the compressor unit. Standard mounting methods include direct drive, belt drive, and base-mounted configurations. Maintenance and Lubrication: Proper motor maintenance is essential for longevity and performance. This includes checking and maintaining lubrication (if applicable), inspecting and tightening electrical connections, and cleaning the motor and surrounding components. Safety Precautions: When working with air compressor motors, safety precautions should be followed, such as disconnecting power sources during maintenance, ensuring proper grounding, and using appropriate personal protective equipment (PPE). Motor Selection: Choosing the correct motor for an air compressor involves considering factors such as the compressor's size, intended use, power supply, and motor specifications to ensure compatibility and optimal performance.
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