1971 Ford F-100 Ranger Xlt..302 Ci V8..auto..1 Owner..#'s Match..52k Miles.. on 2040-cars
Shawsville, Virginia, United States
Body Type:Pickup Truck
Engine:302 CI V8
Vehicle Title:Clear
Fuel Type:Gasoline
For Sale By:Virginia Dealer
Interior Color: Red
Make: Ford
Number of Cylinders: 8
Model: F-100
Trim: 2-Door
Cab Type (For Trucks Only): Regular Cab
Drive Type: RWD
Mileage: 52,398
Sub Model: Ranger XLT
Exterior Color: Black
Warranty: Vehicle does NOT have an existing warranty
Ford F-100 for Sale
1968 ford f-100 ranger xlt.. 68k miles .. a/c .. v8.. automatic ... must see..
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Auto Services in Virginia
Virgil`s Automotive ★★★★★
Valley Collision Repair Inc ★★★★★
Valley Collision Repair Inc ★★★★★
Transmissions of Stafford ★★★★★
Tonys Auto Repair & Sale ★★★★★
The Body Works of VA INC ★★★★★
Auto blog
Which electric cars can charge at a Tesla Supercharger?
Sun, Jul 9 2023The difference between Tesla charging and non-Tesla charging. Electrify America; Tesla Tesla's advantage has long been its charging technology and Supercharger network. Now, more and more automakers are switching to Tesla's charging tech. But there are a few things non-Tesla drivers need to know about charging at a Tesla station. A lot has hit the news cycle in recent months with regard to electric car drivers and where they can and can't plug in. The key factor in all of that? Whether automakers switched to Tesla's charging standard. More car companies are shifting to Tesla's charging tech in the hopes of boosting their customers' confidence in going electric. Here's what it boils down to: If you currently drive a Tesla, you can keep charging at Tesla charging locations, which use the company's North American Charging Standard (NACS), which has long served it well. The chargers are thinner, more lightweight and easier to wrangle than other brands. If you currently drive a non-Tesla EV, you have to charge at a non-Tesla charging station like that of Electrify America or EVgo — which use the Combined Charging System (CCS) — unless you stumble upon a Tesla charger already equipped with the Magic Dock adapter. For years, CCS tech dominated EVs from everyone but Tesla. Starting next year, if you drive a non-Tesla EV (from the automakers that have announced they'll make the switch), you'll be able to charge at all Supercharger locations with an adapter. And by 2025, EVs from some automakers won't even need an adaptor. Here's how to charge up, depending on which EV you have: Ford 2021 Ford Mustang Mach-E. Tim Levin/Insider Ford was the earliest traditional automaker to team up with Tesla for its charging tech. Current Ford EV owners — those driving a Ford electric vehicle already fitted with a CCS port — will be able to use a Tesla-developed adapter to access Tesla Superchargers starting in the spring. That means that, if you own a Mustang Mach-E or Ford F-150 Lightning, you will need the adapter in order to use a Tesla station come 2024. But Ford will equip its future EVs with the NACS port starting in 2025 — eliminating the need for any adapter. Owners of new Ford EVs will be able to pull into a Supercharger station and juice up, no problem. General Motors Cadillac Lyriq. Cadillac GM will also allow its EV drivers to plug into Tesla stations.
2015 Ford Mustang [w/videos]
Thu, 05 Dec 2013
It'd be unwise to bet against the sixth generation of this legendary nameplate.
The 2015 Ford Mustang is assuredly the most anticipated new vehicle of the year. The redesigned Pony Car has been the subject of frantic gossiping and covert spy photos covering everything from the way it looks to the tech it will include, its performance, mechanicals and a bevy of other aspects of Ford's performance icon.
Ford will add lots of carbon fiber to new vehicles
Sat, Apr 18 2015With BMW receiving a bunch of positive press for its usage of carbon fiber to build its i3 and i8 plug-in vehicles, Ford is jumping into that game as well. The US automaker has reached a manufacturing agreement with Dow Chemical to speed up the use of that material in Blue Oval vehicles. Carbon fiber usage will cut weight from Ford's new products, boosting fuel efficiency as a result. Ford will work with DowAksa, a 50/50 joint venture between Dow Chemical and Turkey-based Aksa Akrilik Kimya Sanayii A.S, on a manufacturing partnership. The goal is to speed up technology research to make it cheaper to make cars and trucks with carbon fiber materials. Ford's light-weighting efforts received a boost of sorts this week when its aluminum-body 2015 F-150 was awarded a five-star Overall Vehicle Score in the National Highway Traffic Safety Administration's testing, making this year's version the safest to date. The new body construction cut 700 pounds from the truck's curb weight. Take a look at Ford's press release about DowAksa below. FORD, DOWAKSA TO JOINTLY DEVELOP CARBON FIBER FOR HIGH-VOLUME AUTOMOTIVE LIGHT-WEIGHTING APPLICATIONS Ford and DowAksa formalize agreement to advance the adoption of cost-effective carbon fiber components through technology validation and proof of concept to reduce vehicle weight and increase fuel efficiency without sacrificing strength Agreement provides pathway for a high-volume manufacturing partnership New joint development agreement accelerates joint research announced in January in partnership under new U.S. composites manufacturing institute Ford and DowAksa today signed a joint development agreement (JDA) to formally advance research on cost-effective, high-volume manufacturing of automotive-grade carbon fiber, a material poised to play a significant role in the drive to make vehicles lighter for greater fuel efficiency, performance and capability. The agreement, between Ford Motor Company, Ford Global Technologies and DowAksa – a 50/50 joint venture between The Dow Chemical Company and Aksa Akrilik Kimya Sanayii A.S – will combine DowAksa's feedstock capacity, carbon fiber conversion and downstream intermediates production capabilities with Ford's expertise in design, engineering and high-volume manufacturing. The goal is to produce materials that make cost-effective carbon fiber composite parts that are much lighter than steel but meet automotive strength requirements.
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