the proccess for bandit suzuki will be disscuss complete. noe we share about it please follow this step
1. make sure the bike is completely cool before starting the installation. Check if the bike is secure on the sidestand or, ideally, a tour service from the rear.
2. remove the original silencer, taking care not to damage exhaust gasketthe. If you damage the Board you can get a new one from
your local Suzuki dealer. In most cases you can reuse the original junta.
3. install the support of "Y" black as shown by removing the rear passenger foot bolt allen and replace it with the supplied allen screws 8 x 55 mm. Tighten firmly the 8 mm x 55 mm screws. Then attach the BRACKET "Y" for the extra segment using the finger nylock nut and washer only tight.
Now attach the bottom half of the bracket y using the supplied 8 x 50 mm allen bolt, nylock nut and washer.
Now securely tighten the entire set.
4. Remove bumper rubber Center tour of his original tube and install it on the s-bend tube TBR. 5. slide TBR s-curve in exactly as the original header, but do not tighten the clip yet.
6. slide the silencer to the s tube and attach the silencer for the support of "Y" with silencer clamp using the supplied 8 x 25 mm allen bolt, nut and washers, nylock. Note: both ears must press clip together and ride on the outside of the "Y".
Suzuki Bandit 600 slip-on exhaust system Installation Manual Download
Wednesday, March 23, 2016
Suzuki Bandit 600 slip-on exhaust system Installation Manual
Sunday, February 28, 2016
Types of Gear
- Helical Gear
- Herringbone Gear
- Bevel Gear
- Worm Gear
- Rack and Pinion
- Internal and External Gear
- Face Gear
- Sprcokets
1) Spur Gear-Parallel and co-planer shafts connected by gears are called spur gears. The arrangement is called spur gearing.
Spur gears have straight teeth and are parallel to the axis of the wheel. Spur gears are the most common type of gears. The advantages of spur gears are their simplicity in design, economy of manufacture and maintenance, and absence of end thrust. They impose only radial loads on the bearings.
Spur gears are known as slow speed gears. If noise is not a serious design problem, spur gears can be used at almost any speed.
These gears are usually thought of as high speed gears. Helical gears can take higher loads than similarly sized spur gears. The motion of helical gears is smoother and quieter than the motion of spur gears.
Single helical gears impose both radial loads and thrust loads on their bearings and so require the use of thrust bearings. The angle of the helix on both the gear and the must be same in magnitude but opposite in direction, i.e., a right hand pinion meshes with a left hand gear.
Spiral Bevel gears: In these Spiral Bevel gears, the teeth are oblique. Spiral Bevel gears are quieter and can take up more load as compared to straight bevel gears.
Zero Bevel gear: Zero Bevel gears are similar to straight bevel gears, but their teeth are curved lengthwise. These curved teeth of zero bevel gears are arranged in a manner that the effective spiral angle is zero.
Gears may also be classified according to the position of axis of shaft:
a.Parallel
1.Spur Gear
2.Helical Gear
3.Rack and Pinion
b. Intersecting
Bevel Gear
c. Non-intersecting and Non-parallel
worm and worm gears
Sunday, February 7, 2016
Owners Manual Books Harley Davidson Softail Digital Speedometer Installation
Sections 1 : Introduction
Sections 2 : Speedometer Installation
Sections 3 : Speedometer Operation
Sections 4 : Speedometer Configuration
Sections 5 : Caring of your Speedometer
Wednesday, January 27, 2016
ACURA NSX 2004 user manual
Owners of manual for (2004) ACURA NSX Download
Saturday, January 9, 2016
General Engineering
1. The probability of hitting a target from one gun 9/10, from another gun is 7/10. If both gun are fired at the same time, the probability of hitting the target is
(A) 2/20
(B) 63/100
(C) 16/20
(D) 63/20
(A) Zero
(B) Non-Zero
(C) Unity
(D) None of these
(A) average velocity
(B) velocity at the instant of collision
(C) initial velocity
(D) all of these
(A) 1µm
(B) 100 µm
(C) 1mm
(D) 1 Å
(A) the frequency heard by the observer is less than that of the source
(B) the frequency heard by the observer is greater than that of the source
(C) the frequency heard by the observer is unchanged
(D) the wavelength of sound heard is greater than that of the sound emitted
(A) electric field only
(B) magnetic field only
(C) both of these
(D) none of these
(A) sound waves (B) X-ray
(C) Alpha particles (D) neutrons
(A) meson
(B) anti proton
(C) positron
(D) muon
(A) 155 mm of Hg
(B) 310 mm of Hg
(C) 465 mm of Hg
(D) 162 mm of Hg
(A) electrical energy is converted into chemical energy
(B) chemical energy is converted into electrical energy
(C) mechanical energy is converted into potential energy
(D) potential energy is converted into kinetic energy
(A) the mass of the body
(B) zero
(C) the weight of the body
(D) the force required to stop it
(A) half
(B) 1/4th
(C) double
(D) four times
(A) the material of the bodies in contact
(B) the quality of surface finish of the bodies
(C) the presence of foreign matter between the surface
(D) all of these
(A) Nms
(B) Ns
(C) Nm/s
(D) Ns/m
(A) Chromium and nickel
(B) Chromium and carbon
(C) Nickel and carbon
(D) Chromium and manganese
(A) Brittleness
(B) Hardness
(C) Toughness
(D) Resilience
(A) Creep
(B) Fracture
(C) Fatigue
(D) Brittle Fracture
(A) Capacitor
(B) Inductor
(C) Amplifier
(D) Transducer
(A) independent of the path
(B) zero along the direction of the field
(C) measured in Joules per metre
(D) measure in Volt per metre
(A) Paper
(B) Ceramic
(C) Polyester (D) Mica
(A) In an extremely high forward bias
(B) In an extremely low reverse bias
(C) In an extremely low forward bias
(D) In a reverse bias higher than laid down voltage
(A) Rate of discharge
(B) Operating temperature
(C) State of charge
(D) Life expectancy
(A) Acts at a point on a beam
(B) Spreads uniformly over the whole length of a beam
(C) Varies uniformly over the whole length of a beam
(D) loads the beam from one end only
(A) Flywheel
(B) Eccentric
(C) Connecting rod
(D) Governor
(A) Ammonia
(B) Carbon dioxide
(C) Freon – 11
(D) Freon – 22
(A) Path functions
(B) Properties of a substance
(C) Point functions
(D) Absolute units