Wow! 3lt,auto,navigation,magnetic Ride,pwr Top,polished Whls,black/tan,1-owner!! on 2040-cars
Addison, Texas, United States
For Sale By:Dealer
Engine:6.0L 5967CC 364Cu. In. V8 GAS OHV Naturally Aspirated
Body Type:Convertible
Fuel Type:GAS
Transmission:Automatic
Warranty: Vehicle does NOT have an existing warranty
Make: Chevrolet
Model: Corvette
Trim: Base Convertible 2-Door
Disability Equipped: No
Doors: 2
Drive Type: RWD
Drive Train: Rear Wheel Drive
Mileage: 31,330
Number of Doors: 2
Sub Model: Convertible
Exterior Color: Black
Number of Cylinders: 8
Interior Color: Tan
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Auto Services in Texas
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Auto blog
Leaked GM document shows GMC Sierra I6 diesel is more powerful than F-150's
Thu, Oct 4 2018GM told us earlier this year that the 2019 GMC Sierra would be getting a 3.0-liter I6 diesel option, but it never mentioned power or fuel economy figures. Hold the phone though, because a leaked GM Canada document just showed up online that lists out the details we've been waiting for. Originally published by TFL Truck, the 3.0-liter oil-burner supposedly makes 282 horsepower and 450 pound-feet of torque. For those who are counting, that's more than the Ford F-150's 250 horsepower and 440 pound-feet from its 3.0-liter diesel. It soundly bests the 240 horsepower and 420 pound-feet of torque from Ram's 3.0-liter diesel as well. Fuel economy is another story, though. The promotional material states that it will get 28 mpg on the highway, which is 2 mpg short of the F-150's 30 mpg — mind you, it's only capable of that magical 30 mpg figure in rear-wheel drive form. There's another caveat here, too; these are numbers for Canada, so they're not exactly finalized EPA figures. However, we wouldn't expect drastic differences between the two when the American numbers come out. The leaked documents also state the diesel Sierra will be capable of towing 7,800 pounds. That number seems remarkably low when compared to the F-150, which can tow up to 11,400 pounds with its diesel. Extra power and torque would have us assume that GM could get even better numbers than Ford, so we're going to hold our final judgment for official word. A 10-speed automatic will do the shifting on the diesel, just like on the 6.2-liter V8. Since the Chevy Silverado is also expected to get this engine, we can assume the figures would be almost, if not identical, to those we see here. We recently drove the 2019 Sierra and Silverado without the diesel engines, so go check those reviews out if you'd like to know more of our thoughts on the redesigned GM trucks. Related video:
Camaro SS facelift and dune-riding the new Mercedes-Benz GLS | Autoblog Podcast #579
Fri, May 3 2019In this week's Autoblog Podcast, Editor-in-Chief Greg Migliore is joined by Road Test Editor Reese Counts and Associate Editor Joel Stocksdale. First, they talk about the newly refreshed Chevy Camaro SS. Then they dish on the cars they've been driving, including the Lexus UX, Lexus GS F and Volvo V90, as well as riding in the new Mercedes-Benz GLS. After that, they ask the question, how many AMG cars is too many? Finally they turn to car buying, and suggest potential vehicles for a shopper on Reddit for the "Spend My Money" segment. Autoblog Podcast #579 Get The Podcast iTunes – Subscribe to the Autoblog Podcast in iTunes RSS – Add the Autoblog Podcast feed to your RSS aggregator MP3 – Download the MP3 directly Rundown 2020 Camaro SS facelift Cars we're driving: 2019 Lexus UX 2019 Lexus GS F 2019 Volvo V90 Cross Country 2020 Mercedes-Benz GLS ride How many AMGs is too many? Spend My Money Feedback Email – Podcast@Autoblog.com Review the show on iTunes Related Video:
How GM engineers are using diaper 'snow' to keep you warm
Thu, Jan 8 2015Testing how snow affects General Motors' vehicles isn't really a problem right now for the company's engineers, but in the dog days of summer the process isn't exactly easy. The only real option is for them to book time at the automaker's climatic wind tunnel. However, a flash of brilliance from an engineer allows snow to be simulated regardless of the temperature outside, and the discovery is all because of his daughter's wet diaper. The realization came to GM Thermal Systems engineer Nicholas Jahn while he was swimming with his daughter and noticed how her diaper ballooned in size in the water. He found out the substance that makes this possible is called sodium polyacrylate. When the material gets wet it grows and forms fluffy flakes that are a close imitation of snow. Best of all, the stuff can be prepared easily any time of the year, and it's reusable. The engineering team uses the material to test the effectiveness of the heating systems of GM's vehicles. They spread the sodium polyacrylate over the inlets at the base of the windshield to obstruct the airflow and then crank the heater. After some time, they can see how much is being sucked into the system and design more efficient systems in the future. See how the process works in the video above and read about the diaper discovery in GM's press release below. Diapers Change Chevy Cruze Winter Warm-up Time GM validation engineer uses diaper material "snow" to reduce frigid drives 2015-01-06 DETROIT – An item commonly found on an infant's changing table is helping General Motors' engineers simulate snow year round, ensuring heating systems in cars like the 2015 Chevrolet Cruze can quickly and efficiently warm its interior. Packed snow can prevent air from entering the inlet panel at the bottom of the windshield, obstructing the flow of air into the heating system and reducing the amount of air it can push out. This can lead to less efficient warming of the car's interior and windshield defrosting. "The last thing anyone wants to do when it's freezing cold out is scrape their windshield," said Nicholas Jahn, GM Vehicle Thermal Systems engineer. "The testing we perform on the Chevrolet Cruze with the diaper material allows us to maximize the car's heating capabilities." Ironically, Jahn stumbled upon his diaper-based testing method in the middle of summer. During a swim with his daughter, he noticed her diaper multiplied in size when it came into contact with water.