Find or Sell Used Cars, Trucks, and SUVs in USA

1957 Ford Fairlane 500 on 2040-cars

Year:1957 Mileage:0
Location:

Madison, Ohio, United States

Madison, Ohio, United States
Advertising:

UP FOR BID IS A 1957 FORD FAIRLANE CLUB SEDAN. THIS CAR WAS PULLED OUT OF A BARN OVER 15 YEARS AGO AND STORED IN A HEATED GARAGE EVER SINCE. IT WILL NEED RESTORED. THE CAR USED TO BE AN EX DRAG CAR FROM THOMPSON DRAGWAY. THE CAR DOES RUN AND HAS ONLY BEEN DRIVEN IN THE DRIVEWAY. HAS A 351 MODIFIED AND A C-6 TRANS, A 9" REAREND, OLD SCHOOL DRAGBARS AND OLD SCHOOL MICKEY THOMPSONS ON IT. THE FRONT FENDERS ARE FIBERGLASS (NOT SURE IF THESE WERE FROM THE FACTORY). HAVE PRETTY MUCH ALL OF THE TRIM IF NOT ALL OF IT AND HAVE THE BUMPERS (NEED REDONE). ALL THE GLASS IS GOOD EXCEPT THE DRIVERS DOOR. WE DON'T KNOW TOO MUCH ABOUT THIS CAR AND JUST NEVER GOT THE TIME TO GET INVOLVED WITH IT. OUR LOSS IS YOUR GAIN. THIS WOULD DEFINATELY MAKE A GREAT FATHER SON PROJECT OR DRAG CAR. PLEASE FEEL FREE TO ASK ANY QUESTIONS AND GOOD LUCK BIDDING. PLEASE SEND AN EMAIL WITH PHONE NUMBER AND QUESTIONS AND WILL GLADLY RETURN YOUR CALL.

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Auto blog

UK's Loughborough University improving Ford's 1.0-litre EcoBoost engine

Wed, May 21 2014

How much does it cost for college students to study zero emissions vehicles? At Loughborough University in the UK, a new Advanced Propulsion Centre (APC) is being built at a cost of a billion pounds ($1.7 billion US). The school has just announce that it will fund a number of grad student positions and is creating a new Chair in Advanced Propulsion Systems, which sounds like a fun job to us. We're weird like that. There will be a total of four professor-type positions in the new Center, including the chair, all focused on teaching students about low-carbon vehicle technologies, specifically electric and hybrid ones. The school is investing 1.5 million pounds ($2.5 million) for the new positions. There is a bigger picture as well, a 26-million pound ($44 million) Advanced Combustion Turbocharged Integrated Variable-valvetrain Engine (ACTIVE) project, which uses funds not only from the school but also from Ford and others. The point of ACTIVE is to study Ford's 1.0-liter EcoBoost engine and "improve further its efficiency and ensure it exceeds 2020 emission regulations." This is already a popular engine for the automaker, and it will need to stay at the bleeding edge of efficiency to remain as important in 2020 as it is today. Loughborough University has been working with automakers on advanced energy technologies for years, for example with Rolls-Royce and fuel cells in 2007 and the Lotus Hotfire engine in 2008. University invests GBP1.5M in advanced propulsion research to advance zero emissions vehicles challenge Loughborough University is investing GBP1.5M over five years in strategic research appointments, inspired by the global challenge to develop the new advanced propulsion technologies required for the move to zero emission vehicles. These appointments reinforce the University's world-class research in low-carbon vehicle technologies, adding new dimensions concerned with electric and hybrid drives. Four appointments will be made, including a Chair in Advanced Propulsion Systems, supported by a number of PhD studentships. The GBP1.5M investment is part of the University's commitment to the recently announced Advanced Propulsion Centre (APC) to support the development of new supply chains for low carbon vehicles. APC is an initiative established by the Automotive Council that will see GBP1 billion of investment from government and industry over the next 10 years.

2015 Ford Transit

Wed, 11 Jun 2014

As a segment, fullsize vans are stealth-fighter invisible on most consumers' radar. Visit a dealership for any of the four brands that offer them and you'll be lucky to find even one on display. These are commercial vehicles primarily, even more so than pickup trucks. Vans are the shuttles for plumbers, caterers, carpenters, concrete layers, masons, electricians, florists and flooring, and a huge part of this country's productivity is accomplished using them. At the moment, Ford is the 800-pound gorilla in that room - fully 41 percent of commercial vehicles wear a Blue Oval. So when Ford announced three years ago it would be ditching its commercial bread-and-butter E-Series, it meant the Transit that would be replacing the Econoline had huge, 53-year-old shoes to fill.
We were still a bit nostalgic about Econoline vans going away until going directly from the Transit first drive in Kansas City to an E-350 airport shuttle. Climb up through the Econoline's tiny double doors and bang your head on the opening, crouch all the way to your seat then enjoy a loud, rattle-prone, creaky, harsh ride on beam-hard seats while struggling to see out the low windows. This is an experience nearly every traveler has had. By comparison, the Transits we'd just spent two days with were every bit of the four decades better they needed to be. It cannot be understated just how much better the Transit is in every single way. The load floor is barely more than knee high. There's a huge side door, and hitting your head on a door opening is nearly impossible. Stand up all the way if you're under six-foot, six-inches - no more half-hunching down the aisle. There are windows actually designed to be looked out of. The ride is buttery smooth, no booming vibration from un-restrained metal panels and no squeaks. Conversations can be held at normal levels rather than yelling over the roar of an ancient V8. The seats are comfortable. The AC is cold. There are cupholders.
Enough anecdote-laying, what's in a Transit? We're talking about a very fullsized unibody van that's enjoyed a 49-year history in Ye Olde Europe. This latest iteration is part of the "One Ford" initiative, so it was designed as a global offering from the get-go, eschewing the body-on-frame construction the E-Series has used since 1975. Instead, the Transit integrates a rigid ladder frame into an overall frame construction made of high-strength cold-rolled and boron steel. The suspension is a simple but well-tuned Macpherson strut array up front with a rear solid axle and leaf springs.

The next-generation wearable will be your car

Fri, Jan 8 2016

This year's CES has had a heavy emphasis on the class of device known as the "wearable" – think about the Apple Watch, or Fitbit, if that's helpful. These devices usually piggyback off of a smartphone's hardware or some other data connection and utilize various onboard sensors and feedback devices to interact with the wearer. In the case of the Fitbit, it's health tracking through sensors that monitor your pulse and movement; for the Apple Watch and similar devices, it's all that and some more. Manufacturers seem to be developing a consensus that vehicles should be taking on some of a wearable's functionality. As evidenced by Volvo's newly announced tie-up with the Microsoft Band 2 fitness tracking wearable, car manufacturers are starting to explore how wearable devices will help drivers. The On Call app brings voice commands, spoken into the Band 2, into the mix. It'll allow you to pass an address from your smartphone's agenda right to your Volvo's nav system, or to preheat your car. Eventually, Volvo would like your car to learn things about your routines, and communicate back to you – or even, improvise to help you wake up earlier to avoid that traffic that might make you late. Do you need to buy a device, like the $249 Band 2, and always wear it to have these sorts of interactions with your car? Despite the emphasis on wearables, CES 2016 has also given us a glimmer of a vehicle future that cuts out the wearable middleman entirely. Take Audi's new Fit Driver project. The goal is to reduce driver stress levels, prevent driver fatigue, and provide a relaxing interior environment by adjusting cabin elements like seat massage, climate control, and even the interior lighting. While it focuses on a wearable device to monitor heart rate and skin temperature, the Audi itself will use on-board sensors to examine driving style and breathing rate as well as external conditions – the weather, traffic, that sort of thing. Could the seats measure skin temperature? Could the seatbelt measure heart rate? Seems like Audi might not need the wearable at all – the car's already doing most of the work. Whether there's a device on a driver's wrist or not, manufacturers seem to be developing a consensus that vehicles should be taking on some of a wearable's functionality.