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Traction Motors(permanent Magnet Synchronous Motors, Brushless Dc Motors And Flux Motors) Manufacturing Business

The traction motor is the most important part of a locomotive. For the most part, this motor is a D.C. Series Commutator Motor. Traction motors are electric motors that create the necessary torque for the train's wheels to rotate. Traction motors produce turning force, which is transmitted to the wheels via the axle and drive gear unit. In trucks, traction motors are often installed where the wheels are. Traction motors, permanent magnet synchronous motors, brushless DC motors, and flux motors are used in a variety of industrial applications. The paper and pulp industry, mining, textiles, food processing, and pharmaceuticals are all businesses that use these motors. The stator core of a permanent magnet synchronous motor (PMSM) is built of ferromagnetic material (such as iron) rather than electromagnets. Some hybrid motor types use a permanent magnet in place of one pole face of each stator winding, while others eliminate one stator winding entirely. These motors are frequently designed to deliver high torque at a constant speed. Industrial applications include water pumps, fans, compressors, and conveyors, to name a few. They can also be used for traction, but only when extremely high starting torques or dynamic braking are required. An electric motor with solid-state inductance control is known as a brushless direct current (BLDC) motor. BLDC motors are commonly used in fans, blowers, pumps, electric machinery, and robotics. Inductance is often adjusted using variable voltages provided to switching devices such as transistors or power MOSFETs. Brushed DC motors, on the other hand, use mechanical brushes and commutators to control current flow through coils wound around an iron core. In general, BLDC motors are more efficient than brushed DC motors because they do not waste energy through commutator contact resistive losses. A flux motor is a permanent magnet synchronous motor with an electronically commutated array of field-oriented coils in place of the mechanical commutator (FOC). Brushless motors are utilised in the design of the Flux Motor, as they are in many modern variable-speed drive applications. Brushless motors can provide considerable amounts of power at rates as low as 0.1 Hz. This type of motor has been effectively used in industrial drives, packing machines, medical equipment, and HVAC systems. Uses and Applications: • Air conditioners • Refrigerators • AC compressors • Direct-drive washing machines • Automotive electrical power steering • Machine tools • Traction control • Data storage units • Servo drives • Electric vehicle drivetrain • Large power systems to improve leading and lagging power factor • Industrial applications such as robotics and aerospace For BLDC Motors: • Electric automobiles, hybrid vehicles, and electric bicycles • Industrial robots, CNC machine tools, and basic belt powered systems • Washing machines, compressors, and dryers • Computer hard drives and DVD/CD players • Fans, pumps and blowers Benefits of Starting a Traction Motor Manufacturing Business: There are a lot of benefits to starting your own traction motor manufacturing business. Being your own boss, having complete financial control, and being able to choose your own hours are just a few of the advantages. When it comes to owning a traction motor manufacturing company, the opportunities are virtually unlimited. This is due to the fact that you will be dealing directly with clients rather than working with multiple manufacturers. This means you can start a relationship with several clients at once. The third benefit of starting a traction motor manufacturing business is that it is quite inexpensive. All you need to do now is buy some equipment and hire some room to start selling your goods. There are various compelling reasons for someone to start their own traction motor manufacturing business. Market Size: The global automotive traction motor market is predicted to grow at a 33.7 percent CAGR from USD 4.1 billion in 2021 to USD 17.3 billion in 2026. Rising demand for electric vehicles, the development of high-performance motors, and favourable government laws are driving the market. The rising demand for traction motors is mostly attributable to advancements in electric vehicle technology. Electric vehicle manufacturers from all around the world are paying attention to this new technology. In October 2019, Magna International, for example, got the BMW Group's largest production order for transmission technologies. The multi-year contract covers all front-wheel drive dual-clutch transmissions, including hybrid transmissions. The global electric vehicle traction motor market is predicted to grow at a quick rate during the forecast period, owing to the increased use of electric vehicles around the world. Based on vehicle type, the battery electric vehicle sub-segment is expected to be the most profitable. The North American region is predicted to hold the largest share of the market during the analysis period. The market is predicted to increase at a high rate throughout the forecast period, owing to rising demand for electric vehicles around the world. Over the projected period, increased investments by major automotive firms around the world are expected to fuel the expansion of the electric vehicle traction motor market. Industry Major Market Players: • ABB • American Traction Systems • Hitachi, Ltd • HYUNDAI ROTEM COMPANY (subsidiary of Hyundai Motor Company) • CRRC • Mitsubishi Electric Corporation • Siemens • ŠKODA TRANSPORTATION • Toshiba International Corporation • Wabtec Corporation
Plant capacity: Permanent Magnet Synchronious Motors(5 KW, 48/72 Volt with 3000 RPM): 40 Nos/Day Brushless DC Motors (3 KW, 48/72 Volt with 3000 RPM): 40 Nos/Day Axial Flux Motors(10 KW, 48/72 Volt with 3000 RPM): 20 Nos/DayPlant & machinery: 114 Lakhs
Working capital: -T.C.I: Cost of Project: 510 Lakhs
Return: 30.00%Break even: 70.00%
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