Industrial Motors Introduction to TMEIC Motors

Industrial Motors Introduction to TMEIC Motors

Industrial Motors Introduction to TMEIC Motors TMEIC combines the best of Toshiba and Mitsubishi- Electric’s experience in building motors that goes back over 100 years. TMEIC’s motor offering includes induction motors from a few hundred horsepower, up to synchronous motors over 100,000 hp, driving a wide range of industrial applications such as pumps, fans, grinding, conveyors, and compressors. In addition to applications directly connected to utility power, TMEIC motors can be matched with Variable Frequency Drives for ease of starting and for speed control. The VFD allows motor speeds as high as 12,000 rpm. This chart below and pages 4 & 5 illustrate the range of motors available. 100 Synchronous motors are best suited for very high power at lower speeds. Expansion of the oil and gas industry has created 80 Induction motors are best suited for demand for large motors to drive gas compressors and high speed. oil pumps. These motors are located in the production 70 Considerable over lap exists to allow a choice, but the induction motor areas and on interstate pipelines, and are usually usually has the price advantage in the designed with explosion protection. For special 60 overlap area. applications such as driving large compressors and blowers, motor ratings can reach or exceed 100,000 hp. 50 Synchronous Motors Meeting the demand for large motors for the metals Power (MW) 40 industry, TMEIC has produced large synchronous and Induction Motors induction motors for the operation of steel rolling mills. 30 The power levels for these motors go up to about 10 MW. 20 They are covered in a separate brochure. 10 0 0 3000 6000 9000 12000 15000 Rotating Speed (RPM) Features Benefi ts High Reliability resulting from use of proven design Many years of excellent trouble-free service technology, manufacturing expertise, wide use of under difficult working conditions robotics, tight quality control, and testing High Efficiency resulting from detailed analysis of Low electrical losses for high power conversion the electromagnetic field patterns and ventilating air efficiency flows High Strength Insulation applied by robotic Withstand surge and minimizes electrical shorts insulation winding and oversized epoxy resin and winding fatigue failure vacuum impregnation tanks creates strong support and insulation High Mechanical Strength through use of static and Minimizes mechanical deflection and vibration for dynamic strength analysis of stator frame, rotor, shaft longer equipment life and bearings. Motor shafts are made of forged steel with high tensile strength 2 High-Quality Design, Manufacturing, and Testing TMEIC produces high-quality motors by employing the Continuous Improvement best design, manufacturing, and test procedures. The manufacturing system has Advanced computer aided design and analysis allows specified standards, and the motor performance to be predicted in advance. The world actual performance is class manufacturing automation system produces high- measured against these. quality parts, on time, with no exceptions. These Continuous quality automated systems produce components and assemblies improvement is built in, with meeting the highest quality requirements, delivery product quality steadily schedule, and long life. improving as a natural outcome. Large Stator Assembly Excellent Motor Design Tools – Extensive CAD and Computerized Finite Element Analysis CAD Computer Aided Design TMEIC motor engineers make FEM Electromagnetic Analysis FEM Natural Frequency Analysis extensive use of computer aided design to produce their detail and Enhanced computerized Finite Element Analysis is used to analyze and assembly drawings, both two- optimize electromagnetic field strength, rotor stress and dynamics, frame dimensional and three-dimensional. natural frequencies, cooling air flow patterns, and internal temperatures. High-Quality Manufacturing – World-Class Motor Test Computer Control and Robotics Manufacturing procedures TMEIC’s fully instrumented make use of computer computer automated test control and robotics to (CAT) facilities allow motors increase the speed of the to be load and speed tested. work, maintain accuracy, The example facility shown and ensure repeatability of here was built to test large the operations. Examples motors and drives at high include: Robotic Stator Core speed. This back-to-back test Lamination Stacking arrangement used: • Air duct plate robotic assembly • Variable frequency drive to provide power and desired • Segmented core lamination robotic assembly speed to the test motor • Round core lamination robotic assembly • Generator to load the test motor • Rotor field core robotic assembly • Variable frequency drive to recycle power back to the • Computer controlled core stamping supply 3 TMEIC Motor Product Overview Induction Motors Product LV and MV MV Motors MV Motors TM21™-FII TM21-MII TM21-L Typical View 37-1,400 kW Up to 3,550 kW Up to 18,500 kW Power (50-1,870 hp) (4,750 hp) (25,000 hp) Speed Up to 3,600 rpm Up to 3,600 rpm Up to 3,600 rpm Voltage Up to 6,600 V 2.3 –11 kV 2.3 –13.8 kV Open Drip Proof – ODP/IP22 Open Drip Proof – ODP/IP22 Weather Protected II-WPII/ Weather Protected IP24W II-WPII/IP24W Totally Enclosed Air to Air Totally Enclosed Air to Air Totally Enclosed Enclosure Cooled – TEAAC/IP55 Cooled – TEAAC/IP55 Fan Cooled –TEFC/IP55 Totally Enclosed Water to Air Totally Enclosed Water to Air Cooled – TEWAC/IP55 Cooled – TEWAC/IP55 Totally Enclosed Separately Totally Enclosed Separately (Pipe) Ventilated – TESV/IP55 (Pipe) Ventilated – TESV/IP55 Classifi ed Exn, Extc, Exd Exn, Exe, Exp, ExtD Exn, Exe, Exp, ExtD Area (optional) Aluminum die cast rotor, or Aluminum die cast rotor Rotor Copper rotor bars Copper rotor bars Optional copper rotor bars Ball and roller bearings, Ball and roller bearings, Bearing Ball and roller bearings, grease lubrication grease lubrication Options grease lubrication Sleeve bearings Sleeve bearings Available IEC, NEMA, BS, AS, IEC, NEMA, BS, AS, IEC, NEMA, BS, AS, Standards CSA, API CSA, API CSA, API Fans, Blowers, Fans, Blowers, Major Fans, Blowers, Compressors, Mills, Compressors, Mills, Applications Compressors, Conveyors Conveyors Conveyors 4 Induction Motors Synchronous Motors High Speed Vertical Motors Medium-High Power High-Speed (Custom design) TM21-VL & VLL (Custom design) (Custom design) Up tp 8,000 kW 300-6,500 kW Up to 80,000 kW Up to 80,000 kW (10,720 hp) (8,700 hp) (107,240 hp) (107,240 hp) Up to 11,900 rpm Up to 28 poles, option > Very low speed up to Up to 6,200 rpm on VFD power than 30 poles 3,600 rpm on VFD power 2.3 -11 kV 2.3 –13.8 kV 3.3 –13.8 kV 3.3-13.8 kV Open Drip Proof – ODP/IP22 Totally Enclosed Air to Air Weather Protected Totally Enclosed Air-Air Cooled–TEAAC/IP55 II-WPII/IP24W Cooled–TEAAC/IP55 Totally Enclosed Water to Totally Enclosed Water to Totally Enclosed Air to Air Totally Enclosed Water to Air Cooled – TEWAC/IP55 Air Cooled – TEWAC/IP55 Cooled – TEAAC/IP55 Air Cooled – TEWAC/IP55 (Blower ventilated) Totally Enclosed Water to Air Cooled – TEWAC/IP55 Exn, Exe, Exp Exn, Exe, Exp Exp Exp Cylindrical solid rotor for Cylindrical solid rotor, Aluminum alloy rotor bars Copper rotor bars two-pole, salient pole two-pole all others Sleeve bearings Magnetic bearings Antifriction bearings Sleeve bearings Tilting pad bearings Tilting pad bearings Tilting pad bearings Magnetic bearings IEC, NEMA, BS, AS IEC, NEMA, BS, AS IEC IEC Gearless Mills, Blowers, Pumps, Blowers, Gearless Pumps Compressors Compressors Compressors 5 TM21-M and TM21-L Series Induction Motors TMEIC offers a range of medium voltage induction motors fabricated steel frames. Aluminum rotor bars are standard for larger Industrial applications such as fans, blowers, on the TM21-M, and copper rotor bars are standard on the pumps, mills, compressors and conveyors. These motors TM21-L. Both series can be customized with different top offer higher efficiency and higher power factor than any enclosures for selected types of protection and cooling. previous design. The TM21-M and TM21-L have rugged The arrows in the illustrations below indicate airflow. Totally-Enclosed Air-Water- Totally-Enclosed Air-Air Open Drip Proof Type ODP/IP22 Cooled Type TEWAC/IP55 Cooled Type TEAAC/IP55 A drip-proof type motor has a Includes an air-to-water heat In a corrosive or harmful cooling air intake and hot air exchanger in the air housing environment, a totally-enclosed exhaust window located at the above the motor. fan-cooled motor can be applied. top of the hood. An external fan directs fresh air A drain in the air housing through the pipes in the air Openings are covered by screens protects the motor from housing above the motor. The and enclosure is constructed to damage caused by water pipes serve as a heat exchanger prevent intrusion of water drips leakage. in which outside fresh air passing and other foreign materials into through cools the hot air inside. the motor and meets NEMA WP-I requirements. NEMA Weather-Protected WPII/IP24 This motor is designed for outdoor operation. The air housing is in accordance with NEMA WPII, and features three right-angled turns for air intake, dropping velocity below 3 m/sec (600 ft/min.), trapping water, dust, and foreign materials. TM21-M TM21-L Fundamental Building Block 21-M and 21-L Power 50 HZ 160 - 2,800 kW 450 - 16,500 kW • IC01, IC61 and IC81W cooling per IEC Standard (210 - 3,750 hp) (600 - 22,000 hp) construction are available by changing the top- 60 HZ 200 - 3,550 kW mounted air housing. (270 - 4,750 hp) 450 - 18,500 kW • The main terminal box can be rotated every 90°, and (600 - 25,000 is large enough for easy cable connection. hp) • International standards such as IEC, NEMA, Voltage 2.3 kV - 11 kV 2.3 kV - 13.8 kV BS, AS, etc.

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