Showing posts with label Made Easy Mechanical Notes. Show all posts
Showing posts with label Made Easy Mechanical Notes. Show all posts

Made Easy Heat and Mass Transfer Hand Written Class Notes Mechanical

Made Easy Heat and Mass Transfer Hand-Written Class Notes GATE Mechanical www.thefreestudy.com
Hello Friends, here we are sharing MADE EASY Delhi classroom Hand written notes of Mechanical Engineering Branch Paper. Which are very very important for your Exams like GATE, ESE(ENGINEERING SERVICES Examination), PSU, SSC JE, RRB JE/SSE, PSUs etc. You can download these Soft copy of mechanical gate notes and study material free of cost. These online PDF helps you a lot in upcoming exams.
Made Easy Publication Class notes of Mechanical Engineering for GATE, IES, PSUs, CAT and other Competitive Exams,

Here Made Easy Heat and Mass Transfer Hand Written Class Notes is available.

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Made Easy Fluid Mechanics Hand Written Class Notes Mechanical

Made Easy Fluid Mechanics Hand-Written Class Notes GATE Mechanical www.thefreestudy.com
Hello Friends, here we are sharing MADE EASY Delhi classroom Hand written notes of Mechanical Engineering Branch Paper. Which are very very important for your Exams like GATE, ESE(ENGINEERING SERVICES Examination), PSU, SSC JE, RRB JE/SSE, PSUs etc. You can download these Soft copy of mechanical gate notes and study material free of cost. These online PDF helps you a lot in upcoming exams.
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Here Made Easy Fluid Mechanics Hand Written Class Notes is available.

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Made Easy Industrial Engineering Hand Written Class Notes Mechanical

Made Easy Industrial Engineering Hand-Written Class Notes GATE Mechanical www.thefreestudy.com
Hello Friends, here we are sharing MADE EASY Delhi classroom Hand written notes of Mechanical Engineering Branch Paper. Which are very very important for your Exams like GATE, ESE(ENGINEERING SERVICES Examination), PSU, SSC JE, RRB JE/SSE, PSUs etc. You can download these Soft copy of mechanical gate notes and study material free of cost. These online PDF helps you a lot in upcoming exams.
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Here Made Easy Industrial Engineering Hand Written Class Notes is available.

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What is Industrial Engineering:
Industrial engineering is a branch of engineering which deals with the optimization of complex processes, systems or organizations. ... According to the Institute of Industrialand Systems Engineers, they figure out how to do things better, they engineer processes and systems that improve quality and productivity.

These study material are for information purpose and completely free. If you find these study material useful and want to join us whose study material we have provided here, you may refer our official website for more information & guidance related to GATE/IES/PSUs.

Industrial engineering Principles, Strategies Apparatuses and Procedures
A clarification says Principles are logical speculations or circumstances and end results connections. They are of perpetual nature until reconsidered because of observational reviews and ID of new certainties.
Strategies are general methodologies that utilization the logical guideline or Principles for helpful utilize. They are likewise of lasting nature.

Instruments are contemporaneous methods for actualizing strategies.

Fundamental Principles of Industrial Engineering
Changed Principles of Logical Administration and Industrial Engineering
1. Create science for every component of a man - machine framework's business related to effectiveness and efficiency.
2. Build strategies, procedures and operations to utilize the laws identified with the work of machines, man, materials and different assets.
3. Select or allocate laborers in light of predefined aptitudes for different sorts of man - machine work.
4. Prepare laborers, administrators, and specialists in the new strategies.
5. Join recommendations of administrators, chiefs and designers in the strategies update on a nonstop premise.
6. Arrange and oversee profitability at framework level.

(The above subsection - adjusted Principles is included 4 June 2016. Principles created by Narayana Rao in view of Principles of logical administration by F.W. Taylor)
Principles of Modern Engineering identified with different strategies for Industrial engineering are being gathered in these two articles
Principles of Human Exertion Engineering
Principles of Framework Proficiency Engineering
In a matter of seconds the accompanying are given as procedures of Industrial engineering (Modern Engineering). There is a need to change over these things into Principles, strategies and apparatuses system


Strategies and Procedures of Industrial Engineering 

Human Exertion Engineering - Systems
1. Principles of Movement Economy
2. Movement Ponder
3. Workstation Outline
4. Use of Ergonomics and Biomechanics
5. Weariness Thinks about
6. Efficiency/Well-being/Comfort Gadget Outline
7. Institutionalization of Administrator Strategies
8. Administrator preparing
9. Motivator Frameworks
10. Work Assessment
11. Learning impact catch
12. Work Estimation - Time Contemplate, PMTS


Productivity Change Strategies of Industrial engineering Technique Think about
1. Prepare Examination
2. Operation Investigation
3. Incline Six Sigma
4. Esteem engineering
5. Factual quality control , Measurable Process Control, Handle Change utilizing Measurable information
6. Factual stock control and ABC Order Based Stock Systems
7. Six sigma
8. Operations look into
9. Assortment lessening
10. Institutionalization
11. Squander lessening or disposal
12. Movement based administration
13. Business prepare change
14. Engineering economy investigation
15. Learning impact catch and nonstop change (Kaizen, Quality circles and recommendation plans)
16. Standard costing and Kaizen Costing
17. 5S
18. SMED
19. Incline frameworks
_________________________________________________________________
Rule of Reasonable Day's Worth of effort
Building up a gauge of reasonable day's worth of effort makes arranging, coordinating and control of the work of a man precise.
Technique
Work Estimation: Different undertakings are to be measured for the time taken to finish them by a normal gifted or prepared laborer.
Device
Stop watch time consider, MTM, Standard information techniques


Principles of Movement Economy 
Rundown of Principles of Movement Economy
Strategy
Movement examination
Instruments
Recording of work
Principles of Industrial Engineering
Taylor's Principles of Logical Administration
To begin with. The advancement of a genuine science (of work or operation or errand).
Second. The logical choice of the laborer.
Third. His logical instruction and advancement.
Fourth. Imply benevolent participation between the administration and the men.

Harrington Emerson's Principles of Productivity
1. Obviously characterized goals.
2. Judgment skills
3. Able guidance
4. Teach
5. The reasonable arrangement
6. Dependable, prompt and satisfactory records
7. Dispatching
8. Models and timetables
9. Institutionalized conditions
10. Institutionalized operations
11. Composed standard-rehearse directions
12. Proficiency remunerate

Gilbreth's Principles of Movement Economy
Principles of Movement Economy - Some More Points of interest
Principles of Movement Economy - YouTube Recordings
Standard: There ought to be a clear and settled place for all devices and materials
Standard: Format must encourage productivity
Strategy: 5S
Instruments: 5S review
Rule: The hands ought to be diminished of all work that should be possible all the more beneficially by a dance, an apparatus, or a foot-worked gadget.
Technique: Dance and Installation plan

ECRS Technique :
Dispense with, Join, Rework, Streamline - ECRS Strategy - Barnes
Miles' Principles of Significant worth Engineering
Maintain a strategic distance from simplifications
Get every single accessible cost
Utilize data from the best source
Impact make and refine
Utilize genuine inattentiveness
Recognize and beat barricades
Utilize industry specialists to augment specific information
Get a dollar sign on key resistances
Use sellers' accessible useful items
Use and pay for sellers' aptitudes and learning
Use claim to fame forms
Use appropriate models
Utilize the foundation, "would I spend my cash along these lines?

Principles of Ergonomics
1. Work in unbiased stances
2. Diminish unreasonable strengths
3. Continue everything in simple reach
4. Work at legitimate statures
5. Lessen exorbitant movements
6. Minimize weakness and static load
7. Minimize weight focuses
8. Give leeway
9. Move practice and extend
10. Keep up an agreeable situation
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Made Easy Internal Combustion Engine Hand Written Class Notes Mechanical

Hello Friends, here we are sharing MADE EASY Delhi classroom Hand written notes of Mechanical Engineering Branch Paper. Which are very very important for your Exams like GATE, ESE(ENGINEERING SERVICES Examination), PSU, SSC JE, RRB JE/SSE, PSUs etc. You can download these Soft copy of mechanical gate notes and study material free of cost. These online PDF helps you a lot in upcoming exams.
Made Easy Publication Class notes of Mechanical Engineering for GATE, IES, PSUs, CAT and other Competitive Exams,

Here Made Easy Internal Combustion Engine Hand Written Class Notes is available.

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First File Size : 15.15 MB
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These study material are for information purpose and completely free. If you find these study material useful and want to join us whose study material we have provided here, you may refer our official website for more information & guidance related to GATE/IES/PSUs. Internal-combustion engine, one in which combustion of the fuel takes place in a confined space, producing expanding gases that are used directly to provide mechanical power. Such engines are classified as reciprocating or rotary, spark ignition or compression ignition, and two-stroke or four-stroke; the most familiar combination, used from automobiles to lawn mowers, is the reciprocating, spark-ignited, four-stroke gasoline engine. Other types of internal-combustion engines include the reaction engine (see jet propulsion, rocket), and the gas turbine. Engines are rated by their maximum horsepower, which is usually reached a little below the speed at which undue mechanical stresses are developed.


Reciprocating Engines :
The most common internal-combustion engine is the piston-type gasoline engine used in most automobiles. The confined space in which combustion occurs is called a cylinder. The cylinders are now usually arranged in one of four ways: a single row with the center-lines of the cylinders vertical (in-line engine); a double row with the center-lines of opposite cylinders converging in a V (V-engine); a double zigzag row somewhat similar to that of the V-engine but with alternate pairs of opposite cylinders converging in two Vs (W-engine); or two horizontal, opposed rows (opposed, pancake, flat, or boxer engine). In each cylinder a piston slides up and down. One end of a connecting rod is attached to the bottom of the piston by a joint; the other end of the rod clamps around a bearing on one of the throws, or convolutions, of a crankshaft; the reciprocating (up-and-down) motions of the piston rotate the crankshaft, which is connected by suitable gearing to the drive wheels of the automobile. The number of crankshaft revolutions per minute is called the engine speed. The top of the cylinder is closed by a metal cover (called the head) bolted onto it. Into a threaded aperture in the head is screwed the spark plug, which provides ignition. Two other openings in the cylinder are called ports. The intake port admits the air-gasoline mixture; the exhaust port lets out the products of combustion. A mushroom-shaped valve is held tightly over each port by a coil spring, and a camshaft rotating at one-half engine speed opens the valves in correct sequence. A pipe runs from each intake port to a carburetor or injector, the pipes from all the cylinders joining to form a manifold; a similar manifold connects the exhaust ports with an exhaust pipe and noise muffler. A carburetor or fuel injector mixes air with gasoline in proportions of weight varying from 11 to 1 at the richest to a little over 16 to 1 at the leanest. The composition of the mixture is regulated by the throttle, an air valve in the intake manifold that varies the flow of fuel to the combustion chambers of the cylinders. The mixture is rich at idling speed (closed throttle) and at high speeds (wide-open throttle), and is lean at medium and slow speeds (partly open throttle).

The other main type of reciprocating engine is the diesel engine, invented by Rudolf Diesel and patented in 1892. The diesel uses the heat produced by compression rather than the spark from a plug to ignite an injected mixture of air and diesel fuel (a heavier petroleum oil) instead of gasoline. Diesel engines are heavier than gasoline engines because of the extra strength required to contain the higher temperatures and compression ratios. Diesel engines are most widely used where large amounts of power are required: heavy trucks, locomotives, and ships.


Rotary Engines :
The most successful rotary engine is the Wankel engine. Developed by the German engineer Felix Wankel in 1956, it has a disk that looks like a triangle with bulging sides rotating inside a cylinder shaped like a figure eight with a thick waist. Intake and exhaust are through ports in the flat sides of the cylinder. The spaces between the sides of the disk and the walls of the cylinder form combustion pockets. During a single rotation of the disk each pocket alternately grows smaller, then larger, because of the contoured outline of the cylinder. This provides for compression and expansion. The engine runs on a four-stroke cycle.

The Wankel engine has 48% fewer parts and about a third the bulk and weight of a reciprocating engine. Its main advantage is that advanced pollution control devices are easier to design for it than for the conventional piston engine. Another advantage is that higher engine speeds are made possible by rotating instead of reciprocating motion, but this advantage is partially offset by the lack of torque at low speeds, leading to greater fuel consumption.


Engine Operation :

The Four-Stroke Cycle :
In most engines a single cycle of operation (intake, compression, power, and exhaust) takes place over four strokes of a piston, made in two engine revolutions. When an engine has more than one cylinder the cycles are evenly staggered for smooth operation, but each cylinder will go through a full cycle in any two engine revolutions. When the piston is at the top of the cylinder at the beginning of the intake stroke, the intake valve opens and the descending piston draws in the air-fuel mixture.

At the bottom of the stroke the intake valve closes and the piston starts upward on the compression stroke, during which it squeezes the air-fuel mixture into a small space at the top of the cylinder. The ratio of the volume of the cylinder when the piston is at the bottom to the volume when the piston is at the top is called the compression ratio. The higher the compression ratio, the more powerful the engine and the higher its efficiency. However, in order to accommodate air pollution control devices, manufacturers have had to lower compression ratios.

Just before the piston reaches the top again, the spark plug fires, igniting the air-fuel mixture (alternatively, the heat of compression ignites the mixture). The mixture on burning becomes a hot, expanding gas forcing the piston down on its power stroke. Burning should be smooth and controlled. Faster, uncontrolled burning sometimes occurs when hot spots in the cylinder preignite the mixture; these explosions are called engine knock and cause loss of power. As the piston reaches the bottom, the exhaust valve opens, allowing the piston to force the combustion products�mainly carbon dioxide, carbon monoxide, nitrogen oxides, and unburned hydrocarbons�out of the cylinder during the upward exhaust stroke.

The Two-Stroke Cycle :
The two-stroke engine is simpler mechanically than the four-stroke engine. The two-stroke engine delivers one power stroke every two strokes instead of one every four; thus it develops more power with the same displacement, or can be lighter and yet deliver the same power. For this reason it is used in lawn mowers, chain saws, small automobiles, motorcycles, and outboard marine engines.

However, there are several disadvantages that restrict its use. Since there are twice as many power strokes during the operation of a two-stroke engine as there are during the operation of a four-stroke engine, the engine tends to heat up more, and thus is likely to have a shorter life. Also, in the two-stroke engine lubricating oil must be mixed with the fuel. This causes a very high level of hydrocarbons in its exhaust, unless the fuel-air mixture is computer calculated to maximize combustion. A highly efficient, pollution-free two-stroke automobile engine is currently being developed by Orbital Engineering, under arrangements with all the U.S. auto makers.


Cooling and Lubrication of Engines :
Most small two-stroke engines are air-cooled. Air flows over cooling fins around the outside of the cylinder and head, either by the natural motion of the vehicle or from a fan. Many aircraft four-stroke engines are also air-cooled; larger engines have the cylinders arranged radially so that all cylinders are directly in the airstream. Most four-stroke engines, however, are water-cooled. A water jacket encloses the cylinders; a water pump forces water through the jacket, where it draws heat from the engine. Next, the water flows into a radiator where the heat is given off to the air; it then moves back into the jacket to repeat the cycle. During warm-up a thermostatic valve keeps water from passing to the radiator until optimum operating temperatures are attained.

Four-stroke engines are lubricated by oil from a separate oil reservoir, either in the crankcase, which is a pan attached to the underside of the engine, or in an external tank. In an automobile engine a gear pump delivers the oil at low pressure to the bearings. Some bearings may depend on oil splashed from the bottom of the crankcase by the turning crankshaft. In a two-stroke engine the lubricating oil is mixed with the fuel.

Environmental Considerations in Engine Design :
In order to meet U.S. government restrictions on exhaust emissions, automobile manufacturers have had to make various modifications in the operation of their engines. For example, to reduce the emission of nitrogen oxides, one modification involves sending a certain proportion of the exhaust gases back into the air-gasoline mixture going into the engine. This cuts peak temperatures during combustion, lessening the amount of nitrogen oxides produced. In the stratified charge piston engine two separate air-fuel mixtures are injected into the engine. A small, rich mixture that is easily ignited is used to ignite an exceptionally lean mixture that drives the piston. This results in much more efficient burning of the gasoline, further reducing emissions. Another device, the catalytic converter, is connected to the exhaust pipe; exhaust gases travel over bars or pellets coated with certain metals that promote chemical reactions, reducing nitrogen oxide and burning hydrocarbons and carbon monoxide.
For many years engine knock (rapid uncontrolled burning that sometimes occurs when hot spots in the cylinder preignite the mixture causing loss of power) was fought through the introduction of lead into gasoline. However, concern over air pollution and lead's destructive effect on catalytic converters forced its removal. The state of California, with the worst air pollution in the United States, has instituted a series of measures designed to reduce automobile emissions; these include special gasolines, different air-gas mixtures, and higher compression ratios. All cars, trucks, and gasolines sold in California must comply with these regulations.

Evolution of the Internal-Combustion Engine:
The first person to experiment with an internal-combustion engine was the Dutch physicist Christian Huygens, about 1680. But no effective gasoline-powered engine was developed until 1859, when the French engineer J. J. �tienne Lenoir built a double-acting, spark-ignition engine that could be operated continuously. In 1862 Alphonse Beau de Rochas, a French scientist, patented but did not build a four-stroke engine; sixteen years later, when Nikolaus A. Otto built a successful four-stroke engine, it became known as the "Otto cycle." The first successful two-stroke engine was completed in the same year by Sir Dougald Clerk, in a form which (simplified somewhat by Joseph Day in 1891) remains in use today. George Brayton, an American engineer, had developed a two-stroke kerosene engine in 1873, but it was too large and too slow to be commercially successful.

In 1885 Gottlieb Daimler constructed what is generally recognized as the prototype of the modern gas engine: small and fast, with a vertical cylinder, it used gasoline injected through a carburetor. In 1889 Daimler introduced a four-stroke engine with mushroom-shaped valves and two cylinders arranged in a V, having a much higher power-to-weight ratio; with the exception of electric starting, which would not be introduced until 1924, most modern gasoline engines are descended from Daimler's engines.
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Made Easy Refrigeration and Air Conditioning Hand Written Class Notes Mechanical

Made Easy Refrigeration and Air Conditioning Hand-Written Class Notes GATE Mechanical www.thefreestudy.com
Hello Friends, here we are sharing MADE EASY Delhi classroom Hand written notes of Mechanical Engineering Branch Paper. Which are very very important for your Exams like GATE, ESE(ENGINEERING SERVICES Examination), PSU, SSC JE, RRB JE/SSE, PSUs etc. You can download these Soft copy of mechanical gate notes and study material free of cost. These online PDF helps you a lot in upcoming exams.
Made Easy Publication Class notes of Mechanical Engineering for GATE, IES, PSUs, CAT and other Competitive Exams,

Here Made Easy Refrigeration and Air Conditioning Hand Written Class Notes is available.

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REFRIGERATION : The preservation of winter ice, principally for cooling drinks in summer, was practiced from antiquity, when ice was stored in insulated caves. Ice cooling was so popular in America that, within a decade of the Revolution, the United States led the world in both the production and consumption of ice. As the use of ice was extended to the preservation of fish, meat, and dairy products, ice production became a major industry in the northern states, and ice was shipped not only to the southern states but to the West Indies and South America. By 1880 the demand in New York City exceeded the capacity of 160 large commercial ice houses on the Hudson River. This industry reached its peak in 1886, when 25 million pounds were "harvested" by cutting lake and river ice with horse-drawn saws. The advent of mechanical refrigeration in the nineteenth century began a slow decline in the ice trade. The natural ice industry had expired by 1920.
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Made Easy Power Plant Engineering Hand Written Class Notes Mechanical

Made Easy Power Plant Engineering Hand-Written Class Notes GATE Mechanical www.thefreestudy.com
Hello Friends, here we are sharing MADE EASY Delhi classroom Hand written notes of Mechanical Engineering Branch Paper. Which are very very important for your Exams like GATE, ESE(ENGINEERING SERVICES Examination), PSU, SSC JE, RRB JE/SSE, PSUs etc. You can download these Soft copy of mechanical gate notes and study material free of cost. These online PDF helps you a lot in upcoming exams.
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Here Made Easy Power Plant Engineering Hand Written Class Notes is available.

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File Size : 10.499 MB


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Made Easy Thermodynamics Hand Written Class Notes Mechanical

Made Easy Thermodynamics Hand-Written Class Notes GATE Mechanical www.thefreestudy.com
Hello Friends, here we are sharing MADE EASY Delhi classroom Hand written notes of Mechanical Engineering Branch Paper. Which are very very important for your Exams like GATE, ESE(ENGINEERING SERVICES Examination), PSU, SSC JE, RRB JE/SSE, PSUs etc. You can download these Soft copy of mechanical gate notes and study material free of cost. These online PDF helps you a lot in upcoming exams.
Made Easy Publication Class notes of Mechanical Engineering for GATE, IES, PSUs, CAT and other Competitive Exams,

Here Made Easy Thermodynamics Hand Written Class Notes is available.

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First File Size : 11.9 MB
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