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Showing posts with label car. Show all posts
Showing posts with label car. Show all posts

Friday

Lazier faces struggle with his car



Buddy Lazier is in familiar surroundings with a familiar team. He also faces an all-too-familiar uphill fight to drive a competitive entry in the Indianapolis 500.

Lazier, 40, has reunited with Hemelgarn Racing, the team with which he won the 1996 Indy 500 and 2000 IndyCar Series championship. The team was unable to get its car on the track Thursday and so has only today's practice to get ready for the final weekend of qualifying.

"We're running behind, but my guys have been doing all-nighters to try to get it done," Lazier said. "I'm not talking all-nighters like till 2 in the morning. I'm talking all night long. So I can't be upset when the guys are working that hard."

His crew has a lot of familiar faces, including a few who were part of the 1996 victory.

"The guys have put a nice car together considering six days ago it was just a pile of pieces," Lazier said. "I feel confident about what we can do on race day, but right now I'm a little nervous because we need time on the track just to make sure we can get it in the field."

Once on the track, the 15-time Indy starter is confident of being able to go fast despite not being in an Indy car since last year's 500. "It just comes right back," he said.

Lazier's win, which came only two months after he broke his back in a crash at Phoenix, began a five-year stretch in which he finished no worse than seventh and twice was the runner-up. But driving for a variety of teams since 2001 and not a regular in the series since 2003, his past seven efforts have produced only one finish above 12th. He was fifth in a Panther Racing car in 2005.

"I've had a lot of years here, a lot of struggles here, but also a lot of success here," he said. "I know what it feels like to finish last (in 1991 when, as a rookie, he was taken out in a first-lap crash) and I know what it feels like to win.

"The worst is to finish second (which he did in 1998 and 2000). Those are the ones that haunt you."

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NASCAR - Walker finding sprint car racing to his liking



Tyler Walker is making the ascension from the depths of NASCAR hell to sprint car heaven. Usually, it's the other way around for drivers in auto racing. Years of success in sprints, sometimes even a decade, often go by before the call to the proverbial big leagues comes in.

Walker has proven to be a little more old school. He has embraced a destiny toward dirt tracks, which has become clearer in recent weeks. His romp so far this season on the Golden State Challenege-King of California Series has made the circuit's swing through Silver Dollar Speedway on Saturday for the Dave Bradway Jr. Memorial the ideal opportunity for Walker to pick up his first win in Chico.

It marks a turnaround for the 28-year-old Southern California native after a failed drug test helped put an end to an already rough stint on NASCAR's Craftsman Truck Series at this time last year.

"I don't know if I could ever go back to NASCAR," Walker said. "I don't have any passion for stock car racing. I get enthusiastic when I talk about getting into the sprint car and how fun it is. Without it, I find myself looking forward to the next time I get to race one."

The romance has been freshened by the good performances in the Scott Chastain-owned No. 24 car to ring in his first year back on the Golden State Challenge leading into this weekend. In five of the last six races, Walker has either been the fastest qualifier or the feature winner.

His qualifying record at American Valley Speedway in Quincy earlier this month, victory last week at Tulare Thunderbowl and four fast-time marks for the season could be the momentum needed to earn the unusually large $1,200 prize that the top qualifier alone can earn at the Bradway on Saturday.

Walker's surge wouldn't shock most people. He was once viewed as a prodigy of sorts on the West Coast sprint car scene with his five California go-kart state titles from 1992-96 and is seen as being right at home with former King of California champions Brent Kaeding and Jonathan Allard in the current top three standings.

"I'm just having a blast and a good time with the rest of the team, that's the biggest thing," Walker said.

The short full-time stay Walker spent in NASCAR began in 2004. By then, he had been tabbed as an emerging talent in the national ranks with a World of Outlaws Gumout Series championship and United States Automobile Club Silver Crown Series Most Improved Driver award under his belt.

It earned him three appearances on the Busch Series with two different teams and eventually a more permanent gig with Akins Motorsports in 2005. After a lack of top-10 finishes, Walker was released.

No year, however, damaged Walker's reputation like 2007. He was the No. 1 driver for Davis Racing when the Craftsman Truck season began; six races in, he was relegated to share primary responsibilities with Ryan Mathews.

Following the May 18 race at Lowe's Motor Speedway, Walker failed a random drug test administered by NASCAR. He was later cited by the sanctioning body for "actions detrimental to stock car racing" and put on indefinite suspension, with no additional details released. Davis Racing dropped Walker from its operation soon after.

"It wasn't difficult for me to leave behind," he said. "I set a goal for myself to get to NASCAR and I got there."

Walker's reaction underlies the genuine disinterest he said he held toward making the commitment to the famous lifestyle that television networks often portray about the nation's elite racing league.

"I don't like the politics that go with it," he said. "But the biggest thing is (that) there's no racing. You spend three days in one place and get to race one time. I want to get out there three times, four times a night if I can.

"I'd be coming down a backstretch, looking up and watching a plane go by. It was almost boring being on the track sometimes. I never got that excited about it. There was no thrill for me."

Walker finished the year racing 360-winged sprints in the south before returning to his family's home in Encino. He credits fellow California standout Bud Kaeding with alerting Chastain about his availability.

Meshing with pit crew leader Lee Lindgren and his staff has helped Walker stay confident about his free-wheeling approach despite sustaining a significant leg injury while break dancing and later breaking his arm racing in the months before the season began.

Following his first win at Antioch Speedway on April 5, Walker staked his comeback claim during the post-race interview over the public address system.

"I want to say sorry to all of the NASCAR fans whom won't ever see me there again," Walker told the crowd. "I love dirt and am glad to be back on it."

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Wednesday

Formula Drifting in Japan

Professional drifting was first officially created in United States in 2003, although it is sometimes said 2004. The Formula Drift Championship was created by Formula Drift, Inc. Although professional drifting is still considered a new sport in the United States, it is not new in Japan. In fact, drifting has always been popular in Japan, as in the United States, long before a professional series was developed. In Japan, that professional series is known as the D1 Grand Prix.

The D1 Grand Prix, also commonly referred to as Professional Drift or D1GP, was founded in 2000. It has one of the first professional drifting organizations in the entire world. In fact, its early development had led it to be known as one of the most well known, most popular, and most trusted of all drifting organizations. It has been said that all other professional drifting organizations or series turn to the D1 Grand Prix for guidance and more information on the sport.

The D1 Grand Prix was so popular in Japan that is skyrocketed the popularity of drifting. In fact, a large number of fans wanted to become drifters, themselves. Unfortunately, competition in the D1 Grand Prix was an expense that not many could afford. That was why the D1 Street Legal, also commonly known as D1SL, series was created. Unlike the D1 Grand Prix, which has a large number of rules and regulations, the D1 Street Legal series, which was created in 2005, allows the use of traditional street cars, or road vehicles. This only increased the popularity and the appeal of drifting in Japan, as well as in other areas of the world.

The D1 Grand Prix was created as a Japanese drifting series; however, it would later leave Japan. Although most of the events still take place in Japan, a fairly large number of events have been hosted outside of the country. Some of these events were hosted in the United States. In fact, when the D1 Grand Prix came to the United States, for the first time, they visited the Irwindale Speedway, in California. It has long been said that event was what helped to spark the development of a professional drifting series in the United States. In addition to the Formula Drift Championship, the D1 Grand Prix USA also exists; however, it is globally run. This means that not all competitions take place in the United States.

In addition to making its way into the United States, the D1 Grand Prix also made its way into Europe. This just recently occurred in the year 2005. Although the sport of drifting has been professional for only a short period of time in Europe, it is apparent that it is just as popular. The fan turn out for the first D1 Grand Prix event in Europe was larger than what was originally anticipated. That is one of the seasons why a D1 Grand Prix Series was also developed in Europe, as it was in the United States.

As previously mentioned, drifting existed in the United States before the professional Formula Drift Championship was established. However, the establishment of this championship series has not only made the sport more popular, but more enjoyable as well. Despite the fact that drifting did already exist in the United States, there is a good chance that without the influence of the D1 Grand Prix, professional drifting still may not exist today.

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What is Formula D Racing?

Are you a sports fan? What about a fan of racing? If so, there is a good chance that you have heard of Formula D Racing before. However, there are many individuals, even race fans, who have never heard of Formula D before, let alone even know what it is. Whether you have no idea what Formula D is or if you would like more information on the sport, you are in for a surprise. Despite what you may think, especially since Formula D is not as popular as other sports, it is a fun, exciting, and action packed sport. In fact, once you learn more about Formula D Racing, there is a good chance that you will become a lifelong fan of the sport.

Although Formula D Racing, also commonly referred to as Formula Drifting, is considered racing, racing is not all that is involved. Drifting is defined as a particular driving angle. It has been said that the correct drifting line will enable a driver to reach the highest speeds that their car is able to reach. Despite the fact that it may sound easy, it is difficult to do. It not only takes skill, but a large amount of practice, hard work, and determination to become a professional drifter. In fact, you need to excel at drifting to become a professional Formula D racer. This is because drivers are often judged based on their drifting skills.

Formula D Racing involves two different races. These races are known as traditional qualifying runs and tandem battles. When qualifying, drivers will complete courses on their own. Tandem battles involve two drivers, drifting and being scored at the same time. This scoring often involves the close examination, by professional judges. The drifting line taken, as well as the car’s speed, is taken into consideration. More is taken into consideration during tandem battles, such as passing and collisions.

Currently, the Formula Drift Championship is the only professional drifting series in the United States, well at least the only series that is sanctioned by SCCA Pro Racing. Essentially, this makes for better racing. When being sanctioned by a particular organization, such as SCCA Pro Racing, most sports need to abide by a particular set of rules. In addition to making drifting a more stabilized sport, this sanction has also allowed it to evolve. Thanks SCCA Pro Racing, as well as other Formula D Racing partners, drivers and crews are finding that the latest equipment is available to them. This not only makes the racing more exciting and competitive for the drivers, it also makes it nice for the fans.

Although Formula D Racing is relatively new to the United States, the first professional race took place in 2004; you will find that its popularity has continued to rise. Many fans are impressed with the action packed excitement, as well as the skills needed by drivers to maneuver their cars. Despite the fact that Formula D Racing is relatively unheard of in the United States, it is a sport that has received worldwide attention. In fact, Formula D is one of the most popular sports in Japan. Overtime, its popularity will likely to continue to rise all around the world, including in the United States.

If you are interested in watching a Formula D race, you will find that you have a number of different options. These racing events take place all across the country. Just of the few racing locations include California, Washington, Georgia, and New Jersey. In the event that you are unable to attend a live event, you should be able to watch a race on television. Formula Drift has partnered with G4TechTV, also commonly referred to as G4. Professional drifting events, as well as other informational shows, can easily be found by examining G4’s television schedule.

As you can easily see, Formula Drifting is a fun and exciting sport. As previously mentioned, if you are able to see a live event or even watch one on television, you are encouraged to do so. Once you see your first event, you will likely turn in for more. Formula D is one of the many sports that you can easily get hooked on.

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Hybrid Cars: With Every Advantage There are Always Disadvantages

Hybrid cars are considered as the car of the future. It is able to effectively conserve fuel and at the same time, it only produces low levels of toxic fumes. Because of these benefits, hybrid cars are now growing in popularity every single day. Many people are now considering getting rid of their conventional cars and purchase a hybrid car to help in cutting fuel consumption cost.

Hybrid cars have two engines for it to effectively conserve fuel consumption. It has the traditional gasoline engine and it also has an electric motor and batteries. The two engines work together in order to cut fuel consumption. With this technology, you will be able to cut fuel usage by more than half. Just imagine, with a hybrid car, you will be able to go more than 60 miles to the gallon. With this kind of savings, hybrid cars are definitely the car of the future.

Hybrid car owners virtually don’t feel the increasing cost in fuel prices. This is the main advantage of the hybrid car. There are other advantages that a hybrid car can give you. Recently, the President of the United States has signed an agreement that hybrid car buyers will be able to enjoy tax incentives. This means that by owning a hybrid car, you will be able to save money on taxes.

There are other benefits that the government imposes on hybrid car owners, such as free parking, and free entry to car pool lanes. Some even offer discounted fees on toll gates.

The braking in hybrid cars is also configured to capture the energy released and uses it to charge the batteries inside the hybrid car. This means that unlike electric cars, hybrid cars don’t actually need to be charged from your home electric outlet.

However, with all the advantages that a hybrid car can give you, there are also disadvantages. The main disadvantage of hybrid cars is that the retail price is quite expensive. Only people who have enough money can purchase hybrid cars. However, the twist in all this is that hybrid cars are actually cheaper when compared to conventional cars in the long run. If you compute the total fuel consumption of both cars, you will actually see that you can save a lot more money on hybrid cars.

The only thing is that hybrid cars are expensive right from the car lot.

Hybrid cars are relatively heavy because of the heavy batteries installed inside the car. This is why hybrid car manufacturers integrates smaller internal combustion engines and are constructed with light materials and should be aerodynamic in order to maximize efficiency. This means that hybrid cars can never really go fast.

Another issue about hybrid cars is that it is very risky in accidents. What makes a hybrid car work effectively is also what makes it risky if it ever gets involved in an accident. This is because hybrid cars stores high amount of voltage in its batteries. This means that there is a high chance of getting electrocuted when you get involved in an accident. This also means that it is relatively difficult for rescuers to get the drivers and passengers out of the hybrid cars because of the dangers of high voltage in the car.

These are the advantages and the disadvantages of hybrid cars. Car manufacturers today are now looking for ways to get rid of the disadvantages of hybrid cars. In the near future, you will see that hybrid cars will be lighter and also contains less risk due to high voltage dangers.

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Thursday

The 2008 Nissan Fairlady 350Z



The 2008 Nissan 350Z, a sports car with supeior performance, technology and design.
It's begging to be driven. And from the moment you turn the key, you'll feel it jumping out of its 230kW skin. Designed and built without compromise, the Nissan 350Z has raised the bar in terms of V6 power, performance and style. Built upon the world-famous VQ-series V6 engine, the VQ35HR engine boasts 358Nm of torque, and can move the 350Z from 0 -100kph in just 5.7 seconds. With sleek, aerodynamic styling and a cockpit tailored for performance, sitting behind the wheel is an absolute blast.

Key Features
  • 3.5 litre, V6 VQ35HR engine
  • 230kW power, 358Nm torque
  • Drilled aluminium pedals
  • 5-spoke, 18" aluminium-alloy wheels
  • Carbon-fibre composite driveshaft
  • BOSE audio system (240 watt) with 6-disc in-dash CD changer and 7 speakers including subwoofer
  • ABS Brakes with Brake Assist (BA) & Electronic Brake Distribution (EBD)
  • Dual front, side & curtain airbags (Curtain airbags on Coupe models only)
  • Leather, power, heated sports seats
  • Traction Control System (TCS)

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Agency Power Racing Downpipe Subaru WRX/STI 02+


Continually developing and enhancing the Subaru WRX and STI cars has been the goal of Agency Power. With a complete line up to make your Subaru the best in it's competition, Agency Power has just released their all new Racing Downpipe. This downpipe fits all Subaru WRX or STI cars from 2002 and up. The downpipe is full stainless steel with a cast bell mouth upper section. The thich flanges ensure a tight and strong seal. The downpipe deletes both your catalytic converters and bolts to all factory style turbos. The downpipes precision welds and polished piping give the AP Racing Downpipe that cutting edge. Each downpipe includes a bung for an aftermarket air/fuel sensor as well as a bung for the factory O2 sensor.

When adding an Agency Power Racing Downpipe to your Subaru WRX or STI, you will gain more horsepower and overall performance. The downpipe allows for better flow of the turbine and wastegate gasses. Unlike the factor downpipe that blocks the wastegate gasses from being released in an efficient manner, the AP downpipe has a large bell mouth which allows for both to flow smoothly out and down the pipe. The 3 inch diameter piping is the perfect size for the turbo cars from stock hp to 500 whp. The bellmouth will also allow for a little boost increase since there is less restriction. Mate this downpipe up with your aftermarket catback exhaust or one of our Agency Power catbacks for an amazing sound and almost 25 wheel horsepower gain.

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Tuesday

Saab Aero X


The two seater Saab Aero X is a concept car that might make the future a little cleaner. Style like a luxury jet with cockpit canopy instead of doors and fueled by 100% bioethanol and. V6 engine produces 400 hp.


The Aero X also draws from the Scandinavian automaker’s aviation roots by featuring a cockpit canopy like a fighter jet that lifts up the “doors” and windshield together. Since there are no windshield pillars, the driver enjoys a full 180-degree view of the road ahead.


Specifications :

Chassis

Sports Coupe two seater, monocoque stell construction, rear opening cockpic canopy, carbon fiber bodywork.

Engine

Saab Bio Power 2.8 liter V6 turbo, 24 valve, four OHC.

Max. Power

400 hp @ 5,000 rpm (EEC)

Max Torque

368 lb. ft. @ 2,000-5,000 rpm (EEC)

Transmission

5 speed, automatic manual with doube clutch system.

Wheels/Tyres

Front : 22 x 9.0” multi spoke aloy/265/30

Rear : 23x11.5 “multi spoke aloy/325/25

Weight

3307 lbs (projected)

Length

184.1 inchi

Width

75.5 inchi

Height

50.2 inchi

Track

63 inchi (f) 62.2 inchi ( r )

More about saab please visit: http://www.saabusa.com/

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Monday

Electronic Fuel Injection (EFI)



If there's one thing that's critical in a high performance engine, then it's fuel control. Think about it: the whole objective of adding a turbocharger, of installing NOS, even of installing a free flow exhaust system, is to improve fuel delivery into the combustion chamber. It is also events in the combustion chamber that can and will destroy a high performance race engine if it's not controlled properly. Here we're talking about controlling the combustion process. Now I've heard many arguments as to why sidedraft carburetors provide better performance than fuel injection and engine management, and vice versa but I always say: it's not about performance, it's about reliability and there's no better system for fuel control than electronic fuel injection. Any endurance race car from INDY Car Racing, to Formula 1, to the World Rally Championship, to the Le Mans Series uses electronic fuel injection (EFI) systems, not just for reliability but because ensuring that the correct amount of fuel is delivered under every condition, will provide the best performance.

EFI is central to engine management. It relies on an engine control unit (ECU) which processes a number of inputs from various sensors on the engine to deliver the correct amount of fuel at a particular RPM and air-flow rate/air density combination. The fuel is delivered through an injector, which is an electronically actuated solenoid valve. The amount of fuel that is delivered is dependent on the fuel pressure, which is usually a constant 30 psi above intake manifold pressure, and the pulse duration of the injector, i.e., the length of time the injector is held open.

Most EFI systems have a standard set of sensors. These include:

* The Barometric Pressure (BARO) Sensor, which provides the ECU with the atmospheric air pressure reading.

* The Engine Coolant Temperature (ECT) Sensor, which provides the ECU with the engine's current operating temperature. This is important because fuel vaporization varies for different engine temperatures. A cold engine requires more fuel while a hot engine requires less.

* The Intake Air Temperature (IAT) Sensor, which the ECU needs to take into account when determining pulse duration.

* The Mass Air Flow (MAF) Sensor, which is a tube positioned after the air filter in the air intake duct. The MAF sensor has a fine platinum wire that spans across the tube. The wire is heated by electrical current to maintain a constant temperature above ambient. The air flow past the wire cools the wire and more current is required to maintain the constant temperature. Thus, the amount of current required to maintain the constant temperature indicates the air flow rate. The air flow rate is divided by RPM to determine the pulse duration.

* The Manifold Absolute Pressure (MAP) Sensor, which uses manifold vacuum to measure engine load. An EFI system that uses a MAP sensor does not require a MAF sensor as it can use the input from the MAP sensor to determine the required pulse duration.

* The Oxygen Sensor (O2S), which is used to measure the amount of oxygen that is not consumed during combustion. This is important for the correct operation of the catalyst converter and is used for emissions control rather than performance or economy. The O2S is located in the exhaust system and is an after-the-fact measure of the air/fuel ratio. Too much unburnt fuel in the exhaust indicates a lean mixture while too little oxygen indicates a rich mixture.

* The Crankshaft Position (CKP) Sensor, which is important for timing purposes as it tells the ECU which spark plug to fire and which injector to open at any given point in the Otto cycle.

* The Throttle Position (TP) Sensor, which is another important sensor as the throttle position and the rate of change in the throttle position indicates the what the diver wants the car to do.

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Thursday

New turbo Mitsubishi Lancer coming 2008



This was a long time coming, Mitsubishi finally made the official announcement, revealing the 2008 Lancer Evolution X to the world. A collective sigh of relief was heard clear cross the globe, followed by a few droplets of drool.Mitsubishi Lancer: new turbo will face the WRX like the STi takes on Evo. The front end is distinctly more aggressive than the rather subdued rear, but -- as expected -- the overall design and lines draw heavily on the Concept X, as well as the garden variety Lancer which will serve as its everyday stablemate.

Under the hood of this S-AWC (Super All-Wheel Control) vehicle is a 200hp turbocharged 2.0L engine, paired with either a five-speed manual or a sequential manual gearbox. the S-AWC system is said to provide active steering and electronic yaw control. Now we just have to see how it performs on the track.

AN AFFORDABLE turbo Mitsubishi Lancer will take on the mighty Subaru WRX.




Mitsubishi already has a full-on rally racer, the EVO Lancer, but a less expensive, sporty model will add spice to a new Lancer line-up, which will start arriving here in September 2008.

The boosted all-wheel-drive Lancer, expected to carry the Ralliart name, will slot into the line-up below the red-hot EVO model.

The Lancer range will be similar to Subaru's Impreza stable, which has a turbo AWD WRX as the main performance model and a faster, more expensive STI as the hero car.



It will be the first time Mitsubishi has had an affordable WRX rival since the cult GSR Lancer was cut from the local line-up 10 years ago.

The sketch shows the car will look much more aggressive than the existing model.

It has many similarities to the Concept X that was shown at the Frankfurt Motor Show in September last year.

The first of the new Lancers, which will be slightly bigger than existing cars, are expected to arrive in Australia in September 2008.

A standard model will be the first on sale. It will have a new-generation 2.0-litre four-cylinder engine that is expected to produce about 120kW.

A miserly 1.5-litre four-cylinder petrol engine and a new diesel will be offered in Europe, but it's unlikely either will make it to Australia to start with.

The performance turbo AWD model, which will compete with the WRX, is expected to join the range in the first half of 2008, along with the full-on EVO model.

Mitsubishi now offers a wagon version of the Lancer, but it is unclear whether a similar load hauler is part of the next Lancer plan.

It is more likely a sporty five-door hatch will be part of the line-up, according to Mitsubishi sources.






Engine Type: Turbocharged Inline-4
Displacement cu in (cc): 122 (1997)
Power bhp (kW) at RPM: 295(220) / n.a.
Torque lb-ft (Nm) at RPM: 300(407) / 3500
Redline at RPM: n.a.
Brakes & Tires
Brakes F/R: ABS, vented disc/vented disc
Tires F-R: 245/40 R18
Driveline: All Wheel Drive
Exterior Dimensions & Weight
Length × Width × Height in: n.a.
Weight lb (kg): n.a.
Performance
Acceleration 0-62 mph s: 5.0
Top Speed mph (km/h): n.a.
Fuel Economy EPA city/highway mpg (l/100 km): n.a.

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Designing and Building an Exhaust System


The main purpose of an exhaust system is undoubtedly to route the bunt air/fuel mixture out of the car's engine. Along the way it may be used to drive a turbocharger and now-a-days it will most definitely incorporate a catalyst converter to reduce carbon dioxide emissions. But on a high performance car, such as a modified street car, or a modified race car, the exhaust system does much more than that as it also affects engine performance and engine tuning!

An exhaust system generally consists of an exhaust manifold (which is also called an exhaust header), a front pipe, a catalyst converter, a main muffler or silencer, and a tail pipe. Of these items, the muffler is the easiest to deal with — simply replace the stock muffler with a performance muffler, such as a Flowmaster muffler, to create a free flow exhaust system. However, the performance muffler must have an inlet and an outlet that is the same size (diameter) as your front pipe and your tail pipe. Your front pipe and your tail pipe should be the same size. The rest of the exhaust system is complicated by questions of back pressure, your engine's power band, and your engine's maximum usable RPM.

BACK PRESSURE

Back pressure is an important consideration because too much back pressure will adversely affect top-end engine performance as it will restrict the flow rate of the exhaust gasses at high RPM. The car's engine will not be able to expel the burnt air/fuel mixture at the required rate. The burnt air/fuel mixture remaining in the cylinder at the next intake stroke will contaminate the fresh air/fuel mixture and will rob the engine of power. Thus, fitting a 1 inch pea-shooter to your engine in place of the exhaust pipe is not a good idea! But then neither is fitting a 10 inch sewage pipe. If the exhaust pipe is too large, you will get reduced flow velocity of the exhaust gasses. The flow velocity of the exhaust gasses assists with the scavenging of the exhaust fumes as well as the amount of air/fuel mixture that can be drawn into the combustion chamber on the next intake stroke. This is because the flow velocity of the exhaust creates a low pressure immediately behind it that sucks more gasses out of the combustion chamber.

BASIC DESIGN

Generally speaking, when designing an exhaust system for a 4-cylinder engine, a 2¼ inch exhaust pipe is ideal but for a 6-cylinder engine, a 2½ inch pipe is ideal, though a 2000cc 4-cylinder race engine could do with a 3 inch exhaust pipe. The size of the exhaust header primary pipes of also influences back pressure and flow velocity, while the length of the primary pipes affect the power band of your engine. The size and length of the primary pipes and your exhaust header design depends on your engine's power band, displacement and maximum usable RPM.

The Exhaust Header


As I've mentioned in our introduction to exhaust systems, the exhaust manifold design, or exhaust header design can have a major affect on engine performance. The primary pipe diameter and primary pipe length of the exhaust header has a significant affect on the engine's power band and peak power. When design the exhaust header, you need to take into account the number of cylinders, the engine capacity, and the maximum usable RPM.

NORMALLY ASPIRATED STREET CAR

When designing the exhaust header, remember that a 1600cc 4-cylinder or 2400cc 6-cylinder normally aspirated street racer with a maximum usable RPM of 5,500 should have a header with a primary pipe diameter of about 1½ inch and a primary pipe length of 34-36 inches, while a 2000cc 4-cylinder normally aspirated race engine should have a header with a primary pipe diameter of about 1¾ inch and a primary pipe length of about 32 inches that feeds into a 2½ inch collector. The primary pipe lengths should be within 2 inches of each other and all four primary pipes on a 4-cylinder should join together in a single collector before feeding into the exhaust pipe. A 6-cylinder engine should have two collectors with cylinders 1, 2, and 3 joining into one collector and cylinders 4, 5, and 6 joining into the other collector. A Y-pipe could then be used to join the two collectors before feeding into the exhaust pipe.

ALL ROUND RACE PERFORMANCE

For all round race performance, a header with 1⅝ inch primaries that are 32 inches in length usually provides the best power curve over the widest RPM range. Shorter primary pipes provide better low-end torque while longer primary pipes provide better top-end power but at the expense of acceleration. On a turbo engine, a header with short primary pipes will help with acceleration until boost pressure is reached and the turbo kicks in.

ANTI-REVERSION

Each primary pipe should at least match the exhaust port diameter or should be slightly larger. A primary pipe that is slightly larger than the exhaust port is better as it inhibits reversion, which is the flow of exhaust gasses back into the combustion chamber when the downward movement of the piston creates a vacuum in the cylinder. The exhaust valve is still open when the intake stroke begins. Preventing reversion will reduce the contamination of the air/fuel mixture by exhaust fumes. An anti-reversion (AR) header that is designed to inhibit reversion would be your best choice. AR headers have a built-in lip that restrict exhaust gas flow back into the cylinder.

Ultimately, determining the correct primary pipe diameter and primary length that provides the best engine characteristics and performance will require that you have your car dyno-tuned.

Turbo Exhaust Systems

The same rules regarding the exhaust header design that apply to normally aspirated engines also apply to turbo engines but with a few rather significant twists.

An exhaust header with equal length primary pipes that joint together in a collector is always better than a log-type header in which short primary pipes branch into a thicker log pipe. However, on a turbo engine, space limitations may necessitate the use of a log-type header. In addition, the primary pipes of the header will be determined by the size of the turbine inlet.

A major twist in the header design of a turbo exhaust system is the integration of the wastegate. The wastegate is used to control boost pressure and to prevent over boosting. For this reason, the wastegate should be integrated into the header so that it is exposed to as much of the pressure in the exhaust as possible. This means that the wastegate should be located at or after the collector where all the primary pipes join together, or after the last exhaust port on a log-type header. Also, the wastegate should be located at an angle that does not restrict exhaust gas flow. The exhaust gas must be able to flow to the wastegate so that the wastegate can experience the correct exhaust pressure in the system.

There are also a few important aspects of a turbo engine that you must take into account with regards to your tail pipe. Firstly, the turbo increases the amount of air/fuel mixture that is fed into the combustion chamber and consequently increases the amount of exhaust gas that must be expelled from the engine. Secondly, the exhaust gasses of the turbo engine are much higher than a normally aspirated engine; therefore the exhaust on a turbo engine will be more prone to heat expansion. The flange that is attached to the turbine outlet can experience temperatures of up to 1500°F! For this reason the flange should be beefed up and a minimum flange thickness off a ½ inch with additional bracing is recommended. The rest of the exhaust system needs to make allowance for heat expansion and should incorporate swaged joints

The size of the tailpipe is also complicated by the size of your turbo and the boost you are running. Some tuners recommend a tail pipe that is 10% larger than the turbine outlet. This takes turbo size into account but not boost pressure! I personally prefer basing my tail pipe size on the bhp produced by the engine. As with normally aspirated cars, arriving at the ideal tail pipe diameter, as well as the ideal primary pipe diameter and length, will require some time on the dyno-tuner.

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Wednesday

Nissan Skyline

The Nissan Skyline GT-R is an iconic Japanese sports coupé in the Nissan Skyline range. The Skyline name originated with the Prince automobile company which developed and sold the Skyline line of sedans before merging with Nissan-Datsun. The GT-R abbreviation stands for Gran Turismo Racer. The Japanese chose to use English as their first language when naming the car, as most cars made in Japan at that time used American abbreviation to further enhance sales. The earliest predecessor of the GT-R, the S54 2000 GT-B, came second in its first race in 1964 to the purpose-built Porsche 904 GTS race car. The next development of the GT-R, the 4-door PGC10 2000 GT-R , later to be superseded by the 2-door KPGC10 version, scored 33 victories in the one and a half years it raced and by the time it attempted its 50th consecutive win, its run was ended by a Mazda Savanna RX-3. The car took 1000 victories by the time it was discontinued in 1972. The last of the original GT-Rs, the KPGC110 2000GT-R, used an unchanged S20 160 hp (120 kW) inline-6 engine from the earlier 2000 GT-R and only sold 197 units due to the worldwide energy crisis. This model was the only GT-R to never participate in a race despite only having one built which now resides in Nissan's former factory turned storage unit for historical cars in Zuma.

The Skyline model became popular largely because it remained rear wheel drive, while most other manufacturers' models were front wheel drive (which had certain complexities inherent in achieving high performance in power or handling when compared to a rear-wheel drive car).




The Nissan Skyline R range houses the RB engine. Generally, R32s have RB20's and R33's and R34's have RB25s. Some later model R32s came with a non turbo RB25.




The Nissan Skyline GTR is one of the most loved performance cars to come out of japan. When the R32 GTR came out in 1989 it was considered to be way ahead of it time with the powerfull RB26DETT.

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Saturday

Turbo Charger vs Super Charger

Turbocharger

Turbochargers are a type of forced induction system. They compress the air flowing into the engine. The advantage of compressing the air is that it lets the engine squeeze more air into a cylinder, and more air means that more fuel can be added. Therefore, you get more power from each explosion in each cylinder. A turbocharged engine produces more power overall than the same engine without the charging. This can significantly improve the power-to-weight ratio for the engine. In order to achieve this boost, the turbocharger uses the exhaust flow from the engine to spin a turbine, which in turn spins an air pump. The turbine in the turbocharger spins at speeds of up to 150,000 rotations per minute (rpm) -- that's about 30 times faster than most car engines can go. And since it is hooked up to the exhaust, the temperatures in the turbine are also very high. Turbochargers are powered by the mass-flow of exhaust gases driving a turbine.


Supercharger

Another way to add power is to make a normal-sized engine more efficient. You can accomplish this by forcing more air into the combustion chamber. More air means more fuel can be added, and more fuel means a bigger explosion and greater horsepower. Adding a supercharger is a great way to achieve forced air induction. In this article, we'll explain what superchargers are, how they work and how they compare to turbochargers. A supercharger is any device that pressurizes the air intake to above atmospheric pressure. Both superchargers and turbochargers do this. In fact, the term "turbocharger" is a shortened version of "turbo-supercharger," its official name. Superchargers are powered mechanically by belt- or chain-drive from the engine's crankshaft.

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