2014 Chevrolet Camaro Z28 Callaway Sc652 1 Of 8 Sc652s Built! 652hp! A/c on 2040-cars
Independence, Missouri, United States
Fuel Type:Gasoline
For Sale By:Dealer
Engine:7.0L V8 652 HP
Body Type:2dr Car
Vehicle Title:Clean
VIN (Vehicle Identification Number): 2G1FS1EE0E9700198
Mileage: 92853
Interior Color: Black
Previously Registered Overseas: No
Number of Seats: 4
Horse Power: 652
Engine Size: 7 L
Exterior Color: White
Car Type: Collector Cars
Number of Doors: 2
Features: ENGINE, 7.0L V8 WITH DRY SUMP OIL SYSTEM
Power Options: --
Warranty: Unspecified
Trim: Z28 CALLAWAY SC652 1 of 8 SC652s Built! 652hp! A/C
Number of Cylinders: 8
Make: Chevrolet
Drive Type: 2dr Cpe Z/28
Service History Available: Yes
Model: Camaro
Chevrolet Camaro for Sale
2002 chevrolet camaro 35th anniversary(US $34,900.00)
1969 chevrolet camaro ss 396 l78 w/ muncie m22(US $98,000.00)
Rear bumper for a 78 - 81 camaro.(C $100.00)
1984 chevrolet camaro z28 coupe(US $500.00)
1997 chevrolet camaro(US $21,000.00)
1979 chevrolet camaro(US $32,999.00)
Auto Services in Missouri
West County Auto Body Repair ★★★★★
Villars Automotive Center ★★★★★
Tuff Toy Sales ★★★★★
T & K Automotive ★★★★★
Stock`s Underhood Specialist ★★★★★
Schorr`s Transmission, Auto & Truck Service ★★★★★
Auto blog
This 450-hp electric Lotus Evora is powered by Tesla and Chevrolet
Tue, May 9 2017When someone mentions an electric Lotus, the first thing that comes to mind is the Tesla Roadster, the California-based automaker's first vehicle. That car started life as an Elise before being heavily massaged and adapted by Tesla's engineers. In a similar spirit, the people at Onpoint Dyno are close to finishing Blue Lightning, a track-ready all-electric Lotus Evora. Blue Lightning uses a Tesla drive unit and a Chevrolet Volt battery pack, both mounted in the middle in place of the Evora's 3.5-liter Toyota V6. It's putting down about 450 horsepower at the wheels. The car was built for time attack sessions, so power is fed through custom forged wheels and super sticky Pirelli PZero Trofeo R tires, the same ones found on the last Chevrolet Camaro Z/28. There is a custom digital instrument cluster in place of the Lotus gauges. There's also a regen paddle on the left side of the steering wheel. With a full charge, Blue Lighting should go about 120 miles. While the car runs under its own power, it's only about 90 percent complete. It has no power steering, no firewall in between the seats and the motor and battery pack, no A/C, and a large hole where the shift lever used to be. Other final touches include fine-tuning the brakes and suspension. There is also a custom rear bumper coming that should make it look more like the new Lotus Evora 400. Onpoint Dyno expects the car to hit the track in the next month or so. Related Video:
'84 MotorWeek Cherokee, Bronco and Blazer comparison indulges your SUV nostalgia
Fri, Jan 16 2015These days, truck-based, full-frame SUVs are somewhat of a rarity on the auto landscape due to the rapid rise in popularity of easier-driving, car-based crossovers. Although, without the gradually building popularity of these chunky, high-riding vehicles decades ago, it's unlikely that America's roads would be filled with so many CUVs today. In its latest dig into the archives, MotorWeek has found a 1984 comparison test of a trio of these early Sport Utility Wagons, as long-time host John Davis called them, that helped get acceptance of this segment going. This is a red, white and blue test of the SUVs from American automakers at the time and pits the Chevrolet Blazer, Ford Bronco and Jeep Cherokee (specifically in Wagoneer guise) against each other. Driving manners and interior usability are considered in the evaluation, but Motorweek actually takes these vehicles off road, too. Among the bigger revelations is the improvement in on-road ability in the past 30 years. While specific 0-60 times aren't given, all three models take around 10 seconds just to get to around 50 miles per hour in the 500-feet on-ramp acceleration test. Check out this clip to see just how far this segment has progressed in the past three decades or just get a blast of nostalgia from these now vintage models. News Source: MotorWeek via YouTube Chevrolet Ford Jeep SUV Off-Road Vehicles Classics Videos Ford Bronco chevy blazer
Chevy confirms 2016 Camaro will have wheels, brakes
Thu, Apr 9 2015Good news, everyone! Chevrolet has issued yet another round of teaser images and information about the sixth-generation Camaro, set to debut in Detroit on May 16. This time around, Chevy's teaser images confirm that the new car will not only have wheels and tires (Goodyear Eagle F1s, no less), but brakes as well. On top of that, we now know that the new Camaro will be 28-percent stiffer than the outgoing model. "The more rigid body structure allowed the engineers to more precisely calibrate the steering and suspension systems because they didn't have to compensate for chassis flex. The lighter structure also enabled the size and mass of elements such as the wheels, tires and brakes to be scaled accordingly," GM said in a press release, which you can read below. We've already learned that the new coupe will be 200 pounds lighter than its predecessor, has a bunch of unique parts, and according to GM's Mark Reuss, will outperform the Ford Mustang in every way. Now, it's only a matter of time before we see the sixth-gen Camaro, but surely not before Chevy issues even more teasers and information. Related Video: 2016 Camaro is Stronger, Lighter and More Responsive Computer aided engineering contributes to 28 percent greater structural stiffness DETROIT – The engineering team spent 9 million hours of computational time honing the driving experience of the all-new 2016 Chevrolet Camaro before the first prototype turned a wheel. The structural modeling led to the Gen 6 Camaro being 28 percent stiffer than the current model. "The modeling abilities of computer aided engineering are advancing at incredible rates," said Jim Karlavage, Camaro program engineering manager. "Today, we can accurately model opportunities to add torsional strength without adding unnecessary mass. The result is a lighter, stiffer structure that benefits every aspect of the driving experience." The more rigid body structure allowed the engineers to more precisely calibrate the steering and suspension systems because they didn't have to compensate for chassis flex. The lighter structure also enabled the size and mass of elements such as the wheels, tires and brakes to be scaled accordingly. "The structural weight savings are compounded by opportunities to reduce un-sprung weight," said Karlavage.