2011(11)explorer Limiited 4x4 Fact W-ty 22k Navi Lthr Back Up Sun Heat/cool Sts on 2040-cars
Bedford, Ohio, United States
For Sale By:Dealer
Engine:3.5L 3496CC 213Cu. In. V6 GAS DOHC Naturally Aspirated
Body Type:Sport Utility
Fuel Type:GAS
Transmission:Automatic
Warranty: Vehicle has an existing warranty
Make: Ford
Model: Explorer
Options: Leather
Trim: Limited Sport Utility 4-Door
Doors: 4
Drive Type: 4WD
Engine Description: 3.5L V6 SFI DOHC 24V
Mileage: 22,860
Drivetrain: 4-Wheel Drive
Sub Model: 4WD 4dr Limited
Exterior Color: Black
Number of Cylinders: 6
Interior Color: Black/brown
Ford Explorer for Sale
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Auto Services in Ohio
Westside Auto Service ★★★★★
Van`s Tire ★★★★★
Used 2 B New ★★★★★
T D Performance ★★★★★
T & J`s Auto Body & Collision ★★★★★
Skipco Financial ★★★★★
Auto blog
2020 Ford Escape hybrids vs other crossover fuel sippers: How they compare on paper
Wed, Apr 3 2019Along with a new generation of Escape, Ford also reintroduced the world to the 2020 Ford Escape Hybrid. And if that weren't enough, Ford is adding a plug-in hybrid version. This is a sign of the times: people are more crossover crazy than ever, but are also seeking ways to use less fuel, whether it's for environmental or purely money-motivated reasons. The Ford hybrids aren't the only fuel-efficient compact crossovers on the market. They will be going head-to-head with conventional hybrids including the 2019 Kia Niro, 2019 Nissan Rogue Hybrid and 2019 Toyota RAV4 Hybrid. There are other plug-in hybrids including the 2019 Subaru Crosstrek PHEV, 2019 Mitsubishi Outlander PHEV and the plug-in version of the 2019 Kia Niro. There are even a couple diesels in the form of the 2019 Chevy Equinox and 2019 GMC Terrain. So we've rounded up the details on all these crossovers to see who leads and lags in criteria such as power, fuel efficiency, space and price. Check out all their details below. 2019 Subaru Crosstrek Hybrid View 68 Photos How do their engines and fuel economy compare? Conventional Hybrids and Diesels Let's face it, if you're buying one of these crossovers, one of the things that matters most to you is just how frugal with fuel they are. We'll start off with the conventional hybrids and diesels, and the clear victor is the Kia Niro, which in base FE trim, manages to hit 50 mpg combined. This is thanks to it sharing its powertrain with the Hyundai Ioniq, the Hyundai equivalent of the Toyota Prius. Buyers should take note that only the FE returns such high fuel economy. The LX and EX drop to 49 mpg, and the S Touring and Touring get 43. Even then, the least efficient Niro is the most efficient of the normal hybrids and diesels. It is nearly the least powerful, though, with 139 horsepower. Just behind it is the Toyota RAV4 Hybrid. It delivers 40 mpg combined, and it has an ace up its sleeve: it comes standard with all-wheel drive. Every other vehicle in this powertrain group has front drive standard, and the Niro isn't available with all-wheel drive at all. If that weren't enough, the RAV4 Hybrid also boasts the most power at 219 horses. While we can't say anything about Escape Hybrid fuel economy, we do know that it will make 198 horsepower, which is close to the class-leading RAV4. The least powerful of these is the Equinox and Terrain, and they return the worst fuel economy at 32 mpg.
Check out Ford's fully automated self-parking car [w/video]
Wed, 09 Oct 2013As automakers continue to find uses for autonomous and semi-autonomous vehicle technology, Ford of Europe has announced that it is developing a self-parking system for future use. More advanced than the Active Park Assist already offered in many Ford products, the new Fully Assisted Parking Aid can take full control of the vehicle and can navigate angled and perpendicular parking spots.
While today's Active Park Assist can only parallel park with the driver controlling the gas, brake and gear selection, Fully Assisted Parking Aid can operate steering, gas, brake and gear selection all while making sure the car is properly parked in the intended space. As with APA, the driver pushes a button to make the car look for a proper spot (at speeds of up to 18 miles per hour), and when an adequate space is located, the operator pushes another button (either inside the car or outside via remote control) for the car to park itself - the button must be pressed throughout the whole parking maneuver. Even though Ford says that the car can effect gear selections on its own, the system must still start from Neutral, and the automaker isn't saying whether the car can put itself into Park when done or put itself in Drive when the operator is ready to go.
Ford is also taking the opportunity to announce its new Obstacle Avoidance technology. This automated system is able to detect objects - including pedestrians - in the road, warn drivers of said objects and, if needed, stop and steer automatically to avoid hitting the obstacle. Both systems are still in the prototype phase, so there is no word as to when we could see either on a production vehicle.
Nuclear-powered concept cars from the Atomic Age
Thu, 17 Jul 2014In the 1950s and early 60s, the dawn of nuclear power was supposed to lead to a limitless consumer culture, a world of flying cars and autonomous kitchens all powered by clean energy. In Europe, it offered the then-limping continent a cheap, inexhaustible supply of power after years of rationing and infrastructure damage brought on by two World Wars.
The development of nuclear-powered submarines and ships during the 1940s and 50s led car designers to begin conceptualizing atomic vehicles. Fueled by a consistent reaction, these cars would theoretically produce no harmful byproducts and rarely need to refuel. Combining these vehicles with the new interstate system presented amazing potential for American mobility.
But the fantasy soon faded. There were just too many problems with the realities of nuclear power. For starters, the powerplant would be too small to attain a reaction unless the car contained weapons-grade atomic materials. Doing so would mean every fender-bender could result in a minor nuclear holocaust. Additionally, many of the designers assumed a lightweight shielding material or even forcefields would eventually be invented (they still haven't) to protect passengers from harmful radiation. Analyses of the atomic car concept at the time determined that a 50-ton lead barrier would be necessary to prevent exposure.