Fabrication Of Vertical AXIS Wind Turbine & Horizontal Axis Wind Mill

This Fabrication Of Vertical AXIS Wind Turbine & Horizontal Axis Wind Mill Mechanical Final Year Engineering Project has focused on to use the present wind resources and to decrease the use of non renewable energy means. The wind energy is the fastest developing renewable resource of energy. The wind industry is supported with incentives of market by policies of government supporting the sustainable resources of energy.

The wind ability based on large-scale is accessing the outcome rate of common power plants and manage the power quality is needed to decrease the unfavorable influence on integration based on the network.

India possesses large supply of renewable resources of energy. It possesses largest programs in the world to deploy systems and products of renewable energy of 3,700 MW from installed renewable sources.

Winds circulate particles in the air atmosphere generally begin by temperature variations as per the macro-meteorological way. The temperature gradients are because of irregular solar heating and equatorial region is illuminated.

The movement air is influenced by Coriolis forces and linked with the motion of the Earth. These forces turn the lower and upper flow towards east and west. The air passes based on large-scale which move in the atmosphere contain geostrophic winds.

The components utilized in this project are channels, angles, blades, shaft, bearings, pulley, and belt. The processes included in fabrication are Gas Cutting, Arc Welding, and Grinding.

Conclusion:

Fabrication Of Vertical AXIS Wind Turbine is concluded that wind-turbine generators are made on a broad range of power outcome from kilowatt to a thousand kilowatts and low power machine can produce enough electricity for the purpose of heating, cooling and domestic usage.

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Manufacturing Of PVC Pipe Bachelor Of Technology Mechanical Engineering Project

The Small Scale Industry is the growth of the country that is run by hired labour, machine, and power. Irrespective to the number of workers engaged in industry is known as small scale unit.

 In India, industries are developed to build SSI’s (Small Companies) by giving Bank Loans, Discount, land, suggestions etc. The strategy adopted by the government is: Public entrepreneurship remains confirmed to industries and sectors, efforts made seriously for the development of an industrial culture, to develop management education and industrial training, development of backward regions/areas which is a new challenge, mobilizing and fostering the new young business talent, economic administration must be improved, financial institutions must provide adequate, timely credit, and technical assistance.

 Small scale industry gives employment and SSI Sector in India is a largest employment opportunities for the Indian population and it is estimated from the research, the employment provided by the small scale industry was 171.58 lakh. Small Scale Industry increases the level of production in country. It is grown rapidly over the years and the growth rates are very impressive during the various plan periods.

 The export from SSI sector is clocking excellent growth rates this year. It is fuelled with the performance of garment, leather, and jewellery units.

Entrepreneur is the business owner who contributes the capital and bears the risk in business life. Entrepreneur is broadly classified into three groups. They are Risk bearer, Organizer, and Innovator.

 Conclusion:

 This Manufacturing Of PVC Pipe Project concludes that to start a small scale industry is not a very easy task but to start, first select a suitable sit to make a proper scheme and approve. The important steps are getting started, selection of industry, and preparation of scheme.

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Electronic magnetic Forming (EMF) Dept Of Mechanical Engg Final Year Project

Electronic Magnetic Forming (EMF) is a process to use electromagnetic forces to produce metal without using a tool or punch that come into contact with the part.  This is also an ideal process for joining mechanically or assembling metal components.  An electromagnetic coil is driven by an electric current in a sharp pulse to generate the force for metal forming.  The product produced by this method is free from toll marks and heat effects since there is no tool or abnormal heat.

 The process is suited best to form techniques on aluminum leave wrinkles on the job like spring back and poor reproducibility. Therefore, EMF process is a potential application in automobile to form sheet metal components.

  The line voltage supply charge the capacitors and the whole circuit is separated from the power source.  The charge stored in the capacitors flows like current through the work coil when the forming circuit switch gets closed. The current forms a strong magnetic field between the coil and the work piece which is called Lenze’s law. EMF is used to attach and assemble components.

 The main components of the machine are The structure, The Die, Hydraulic power-pack and hydraulic circuit, Machine Control Circuit, Electromagnetic coil with accessories, Capacitor, Voltage multiplier circuit for capacitor charging, Capacitor charging circuit, and Capacitor Discharging circuit.

 Conclusion:

 This Electronic Magnetic Forming (EMF) project concludes excellent technique for forming thin metals, good for mechanically joining metals or non-metals. It is quicker, easier, and easy to implement. It is easily automated and product formed is free from any defects and likely rapid growth of EMF machines.

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Electro Magnetic Crane Mechanical Project Report

This is a tough Electro Magnetic Crane project and is suitable at 11 or 12 grade level. The students need to interact with DC motor, stepping motor, H-Bridge, an LED, and an electromagnet. The aim is to transfer paperclips from one to another bowl with rotation of 90°.

 The crane begins by moving the up and above the bowls. When the program begins then LED begins to flash. The crane leaves the magnet within the bowl. The magnet gathers the paperclips. The crane transports the paperclips and magnet. It makes 90° rotation.

 It brings the magnet to low position and brings clips within the second bowl. The magnet turns off and generates the paperclips. It transports the magnet back to its position. It moves back in the position of first bowl. The LED switches off if the crane starts moving.

 H-Bridge switches the DC motor in one way and makes the D2 high and D3 low. It switches the DC motor in opposite way and makes D2 low and D3 high. It prevents the motor and makes D2 and D3 low.

 The stepper motors function with transporting the repeating methods of bits to various coils. The Popsicle stick is tapped at the stepper motor with the help of protractor and it is the best method to calculate angle per step.

To create as many coils would result the magnet stronger. Magnet wire performs better since it is light and many coils are present. The soft iron creates the magnet function good.

Conclusion:

Electromagnetic crane is utilized to make eye-pleasing structure. It confirms the LED functions. It confirms the magnet switches to be on and off. It confirms final procedure accurately to manage the crane.

Download Electro Magnetic Crane Mechanical Project Report

Related Projects:

Electrodynamics Project

Effect of Rim Thickness on Bending Stresses in Low Addendum Large Spur Gears Project Paper

The finite element depends on the concept utilized to evaluate the influence of thickness of gear rim by tooth bending process in less addendum great spur gears. The gears are utilized in sugar mills, cement plants, coal mills, ball mills, kilns, copper converters, grinding mills, and anode furnaces etc. The concept is improved with ANSYS Parametric Design Language (APDL) to produce 1, 3, and 5 tooth sections of a spur gear.

 The finite element approach is identified in the regions of Highest Point of Single Tooth Contact (HPSTC). The 1, 3 and 5 segments are recognized by different β that is the ratio of thickness of rim of the gear. The influence of mesh can be found in the 3-D models.

 The bending and equivalent stresses are achieved for various β values in many models. The gear tooth and surface of rim stresses are presented in tables with the help of Microsoft Excel and program written in APDL and plots are produced by MATLAB program. Maximum von Mises plots and maximum bending are achieved with different β values in both dimensions models.

 The photoelastic method was broadly utilized since many years. The technique was tested for the stress influencing at the gear fillets. The technique has used to improve the fillet stress which includes unbalance pressure angle. It has developed by using realistic shapes in photoelastic models.

 Conclusion:

 The Effect of Rim Thickness on Bending Stresses in Low Addendum Large Spur Gears conclusion made on working of meshing concept is improved with mapped meshing abilities of ANSYS to produce two and three-dimensional element concepts of the gear. The managed meshing method is used to stop great stresses at load regions and to escape various elements in the low regions and to produce the web in the locations of the gear tooth.

Download Effect of Rim Thickness on Bending Stresses in Low Addendum Large Spur Gears Project Paper

Mech Major Project on Design of Mobile Phone Holder for Automobile Steering Wheel

There are many accidents happening with the four wheeler vehicles which are incrementing in our day to day life. The major reason behind such deadly accidents is the cell phone.

When driver utilizes his cell phone while driving, it changes his mind. To get rid of this issue, here we present a new kind of holder of mobile phone which climb the mobile phone and one can need not hold the mobile in hand.

The important approach of this Design of Mobile Phone Holder for Automobile Steering Wheel project is to keep the mobile on the stand on the steering since steering is the placed nearer to the face of driver while driving. Hence the driver is able to attend the call by using loudspeaker mode and without picking the mobile the driver is able to response to the call.

During the manufacturing of this mobile phone holder, there are few limitations such as steering wheel is the rotating component on which the mobile phone holder is joined and as it rotates, the holder also rotates which causes drop out of the phone. To overcome this problem, we have used the concept of bearing and to obtain this concept, stabilization of the inner race of the bearing is compulsory.

Conclusion:

It is very clear from the description that design of mobile holder is very essential part of research that solves various issues with the demand of the customer. Hence to get the solution for these problems, we have accepted to prosper new kind of the mobile phone holder that is climbed on the steering in the vehicle.

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Design & Fabrication of a Tension Less Two Wheeler Bike Mechanical Mini Project

An automobile is a wheeled motor vehicle which is used for transporting passengers has its own motor or engine. Motorcycles are most affordable means of motorized transport in the world and are most common kind of motor vehicle. There are about 200 million motorcycles used world widely.

 The lane splitting also called filtering which allows motorcycles to utilize the space between vehicles to travel through stationary or slow traffic. Major accidents happen because of carelessness among them forgot to have the side stand and start driving with side stand which leads to an accident.

 The aim of this Mechanical Mini Project is to decrease the tension of the driver of the vehicle because carelessness results in death so every time one must be aware of it. This mini project explains to reduce such kind of incidents. The main objective is to inflate the tyre in    emergency conditions when there is no one to help. This is one of the easiest and the cheapest methods.

This mini project comprises of two things. They are Side Stand Indicator Modulation and A Compressor Weight is very low. Who is going to drive byke must know how important these two things and how successful are these two.

The side stand is the most founded thing by senior engineer which is attached to bike not to the centre stand and people mostly use only side stand of the bike because it is easy to use when compared to centre stand. With the lack of this small forgiveness it may lead to accident, death, or loose of any organ of the body.

Conclusion:

The goal of this Design & Fabrication of a Tension Less Two Wheeler Bike project is to make us feel tensionless while driving a two wheeler and to avoid accidents. Few bikes like yahama, fazer and sports bike use engine guard which helps a lot to avoid accidents.

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Design & Execution of Hydraulic Operated Fixture Mech Project Documentation

The HMT machine is the foremost machine tool in the world for constructing houses in Bangalore. The HMT generates products such as general purpose machines, special purpose machines, wrist watches, lamps, and tractors.

 In this Design & Execution of Hydraulic Operated Fixture Project, HMT has described the detailed information on gears. Gear is common word for a mechanical plan and the work is signified by prepared adjective like the steering gears. There are different kinds of gears like spur gear, helical gears, double helical gears, crossed helical gears, parallel helical gears, and straight bevel gears.

 Some of the applications of gear are turbine driving generator, motor driving generator, aircraft, general purpose drives; aircraft gear drives, automotive drive gears, marine gears, railway gears, tractors, agitators, electric motors, blowers, compressor, and elevators.

 The grinding wheel is selected based on the following variables namely abrasive, grit size, and grade or hardness and structure. The tooth grinding of gears is divided into two important processes. They are generative grinding and form grinding.

 To choose the best concept of generating gears, the size of batch and accuracy should be considered. There are two methods present are finish machining of gears in after heat and green states.

 Conclusion:

 Gears are created by many processes such as casting, powder metallurgy, machining, stamping, and extruding. As a result, the machining process is the concept of mass generation of the great quality gears. The gears are made by form cutter method, generation method, and production of gears with the help of dies to make the process.

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Design of Tesla Turbine Mechanical Engineering Project Report

The Design of Tesla Turbine project is about the Tesla turbine which is a bladeless turbine with centripetal flow controlled by Nikola Tesla. It is defined like a bladeless turbine since it utilizes boundary layer in a common turbine.

 The Tesla turbine is also called the cohesion-type turbine, boundary layer turbine, and Prandtl layer turbine. Bioengineering scientists have mentioned it like a centrifugal pump of multiple disks.

 There were two kinds of engines in the starting of 20th century namely bladed turbines and piston engines. Bladed turbines work with motion of water or steam produced from hot water and piston engines function by gases generated with the gasoline combustion. The former is a kind of reciprocating engine and rotary engine. These engines were confused machines which were tough and required lot of time to form.

The new engine of Tesla is in the form of bladeless turbine that utilizes fluid like the energy vehicle and yet will be more effective to transform fluid energy into motion.

 As per Nikola Tesla, there are three important effective objective points of turbine. They are inlet nozzle, disk geometry, and outlet nozzle. There are two important components in the turbine. They are rotor and stator.

Conclusion:

The aim of Mechanical Engineering Project Report an engine transforms energy into mechanical energy from the fuel source. The input energy taken is a fluid if at all natural means is coal, air, water, or petroleum. As a result, the liquids and gases are fluids that could be demonstrated with water. The water in the form of liquid, gases, or steam works like a fluid.

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Mechanical Final Year Project Report on Design of Boiler Stack

Chimney is the part of a system that uses flue gas like IC engines, feoiler, has an important part to maintain draft, efficiency, etc, and decrease the pollution in the atmosphere.

The Mechanical Final Year Project Report on Design of Boiler Stack describes the HOCL boiler plant which makes use of LSHS (low Sulphur heavy stock) like a fuel. The project is about the boiler stack based on standard methods described in IS 6533-1971 and the norms of Kerala State Pollution Control Board.

The design of boiler stack contains design of base plate, holding down bolts, foundation etc. The model is test with stability, sliding, earthquake, and it is observed that the aesign is secure with these factors. The dynamic analysis is taken place to make sure the protection of the model. Ultimately, it includes a CAD drawing of the boiler stack.

The Design of Boiler Stack project needs to gather the needed information for the boiler stack model. It includes study of the design procedures, stoichiometry measurements, model calculations, checking the result achieved, dynamic analysis, and making drawings.

The important parameters of the boiler are boiler make, continuous rating (100% MCR) -24.25TPA, Steam temperature- 214°C, feed water temperature, fuel fired-LSFO, and construction type – Bi drum type.

Conclusion:

The Mechanical Project conclusion made on boiler which is manufactured for coal on grate like the important fuel with heavy oil for the purpose of warm up, support, and alternate fuel. The coal fire has not being used since many years and the boiler are worked with oil like the fuel. There were issues such as furnace floor, kingering on the burners, and chocking of burner.

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