Very Dependabble Chevrolet Impala on 2040-cars
Hemet, California, United States
Engine:3.5L 3490CC 213Cu. In. V6 FLEX OHV Naturally Aspirated
Fuel Type:Gasoline
Exterior Color: Blue
Make: Chevrolet
Interior Color: Black
Model: Impala
Number of Cylinders: 6
Trim: LT Sedan 4-Door
Safety Features: Anti-Lock Brakes, Driver Airbag, Passenger Airbag, Side Airbags
Drive Type: FWD
Power Options: Air Conditioning, Cruise Control, Power Locks, Power Windows, Power Seats
Mileage: 159,000
4-Wheel Disc Brakes AM/FM Stereo Adjustable Steering Wheel Automatic Headlights Auxiliary Audio Input CD player Child Safety Locks Cloth Seats Cruise control Daytime Running Lights Driver Adjustable Lumbar Driver Vanity Mirror Emergency Trunk Release Engine Immobilizer Floor Mats Front Head Air Bag Front Wheel Drive Intermittent Wipers Keyless Entry Multi-Zone A/C | Passenger Vanity Mirror Power Door Locks Power Driver Seat Power Mirror(s) Power Steering Power windows Rear Bench Seat Rear Defrost Rear Reading Lamps Remote Engine Start Remote Trunk Release Security System Split Bench Seat Steel Wheels Telematics Temporary Spare Tire Tires - Front All-Season Tires - Rear All-Season Wheel Covers Woodgrain Interior Trim |
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This is your 2014 Chevrolet SS
Sat, 16 Feb 2013Think you've waited long enough for this? If so, then you'll want to savor the high-res photos we've so far been given of the 2014 Chevrolet SS, the first rear-wheel-drive performance sedan from The Bowtie in 17 years.
We all know its our version of the brand new VF-model Holden Commodore, but what's under the hood that earns the appellation "performance?" A 6.2-liter LS3 V8 engine producing 415 horsepower and 415 pound-feet of torque. That's 35 hp and lb-ft less than the same engine is expected to produce in the 2014 Chevrolet Corvette. Chevrolet says the sedan will get from 0-to-60 miles per hour "in about five seconds."
Shifting comes courtesy of a six-speed automatic with paddles on the steering wheel, while stopping arrive via four-piston Brembo calipers up front, a single sliding piston in back. The forged aluminum wheels are 19-inchers all around, each set supporting right around 50 percent of the sedan's weight, and the aluminum hood and trunk are meant to keep the center of gravity low.
Detroit 3 to implement delayed unified towing standards for 2015
Tue, Feb 11 2014Car buyers have a responsibility to be well-informed consumers. That's not always a very simple task, but some guidelines are self-evident. If you live in a very snowy climate, you generally know a Ford Mustang or Chevrolet Camaro might not be as viable a vehicle choice as an all-wheel drive Explorer or Traverse, for example. If you want a fuel-efficient car, it's generally a good idea to know the difference between a diesel and a hybrid. But what if it's kind of tough to be an informed consumer? What if the information you need is more difficult to come by, or worse, based on different standards for each vehicle? Well, in that case, you might be a truck shopper. For years, customers of light-duty pickups have had to suffer through different ratings of towing capacities for each brand. For 2015 model year trucks, though, that will no longer be a problem. According to Automotive News, General Motors, Ford and Chrysler Group have announced that starting with next year's models, a common standard will be used to measure towing capacity. The Detroit Three will join Toyota, which adopted the Society of Automotive Engineers' so-called SAE J2807 standards way back in 2011. The standard was originally supposed to be in place for MY2013, but concerns that it would lower the overall stated capacity for trucks led Detroit automakers to pass. Ford originally passed, claiming it'd wait until its new F-150 was launched to adopt the new standards, leading GM and Ram to follow suit. Nissan, meanwhile, has said it will adopt the new standards as its vehicles are updated, meaning the company's next-generation Titan should adhere to the same tow ratings as its competitors. While the adoption of SAE J2807 will be helpful for light-duty customers, those interested in bigger trucks will still be left with differing standards. There is no sign of the new tow standards being adopted for the heavy-duty market.
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.




