1971 Ford Bronco on 2040-cars
Roy, Montana, United States
For further questions email me : ru7payneultraconserv@europamel.net
You Are On A 1971 Ford Bronco 4x4. Has A Built 351 Windsor With Headers (< 20k Miles) 300+ Hp. Brand New (< 20 Miles) C4 Transmission With Slapstick Shifter, 4.56 Gears Twin Sticks For Off-roading. 5 Inch Suspension Lift, 3 Inch Body Lift, 38 Inch Super Swamper Bogger Tires With 98% Tread. Detroit Lockers, Brand New Corbeau Seats (front & Rear), Dual Fuel Tanks. Body Is In Excellent Condition - 98% Rust Free, Winch Front Bumper, Toms Bronco Front And Rear Bumpers And Split Windows In Rear, Runs Like A Top.
Ford Bronco for Sale
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Auto Services in Montana
Top End Auto Glass ★★★★★
Elite Auto Center LLC ★★★★★
Brake Shop ★★★★★
Bennett Motors ★★★★★
Tri-City Auto Wrecking ★★★★
Solar Pros ★★★★
Auto blog
Exceptionally rare '65 Ford GT40 Roadster prototype up for auction
Sat, 14 Jun 2014Think of mid-engined supercars and your mind is bound to gravitate towards Europe, but the United States has been known to make a handful from time to time - exceptional vehicles from the likes of Vector, SSC, Mosler, Hennessey, and Saleen. But long before any of those came around, Ford famously became obsessed with beating Ferrari at its own game, leading to the development of the iconic GT40.
The story is well known, sending Ford to the checkered flag at Le Mans four times in a row in the late 1960s. Ford and Shelby also built over 100 for public consumption, but just four of them were roadsters. Of those only one remains in original condition, and now that exceedingly rare example going up for auction.
Consigned to RM Auctions for its mid-August sale during Pebble Beach weekend in Monterey, California, this 1965 model is the first GT40 Roadster built. It was used as a development and demonstration vehicle for Ford and Shelby. Carroll Shelby himself drove Henry Ford II in this very car during one of many test and demo events, this time held for Ford's board of directors in Los Angeles.
UK's Loughborough University improving Ford's 1.0-litre EcoBoost engine
Wed, May 21 2014How 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.
Ford finds flex-fuel engine design plays big role in emissions output
Mon, Jan 6 2014How bad is ethanol for your engine? There's been a lot of debate on this issue as the US considers upping the biofuel content in the national gasoline supply from 10 percent (E10) to 15 percent (E15). The ethanol industry and some scientists say higher ethanol blends show no "meaningful differences" in new engines while the oil industry says ethanol creates health risks. Researchers working at the Ford Research and Innovation Center decided to take a closer look at how a wide range of gas-ethanol blends - E0, E10, E20, E30, E40, E55 and E80 - affected the emissions coming out of a flex-fuel 2006 Mercury Grand Marquis. To see the full report, printed in the journal Environmental Science & Technology, requires payment, but there is an abstract and Green Car Congress has some more details. The gist is that, "with increasing ethanol content in the fuel, the tailpipe emissions of ethanol, acetaldehyde, formaldehyde, methane, and ammonia increased." At least NOx and NMHC emissions decreased. The researchers say that the effects are due to the fuel and "are expected for all FFVs," but that the way that a manufacturer calibrates the engine will affect NOx, THC, and NMOG emissions. It's this last bit that's important, since the researchers found, "Higher ethanol content in gasoline affects several fundamental fuel properties that can impact emissions. ... These changes can have positive or negative effects that can depend on engine design, hardware, and control strategy. In addition to direct emissions impacts, higher ethanol content fuel can also provide more efficient combustion and overall engine operation under part-load conditions and under knock-limited higher-load conditions." So, as we head towards more ethanol in our fuel supply (maybe), manufacturers are going to need to learn how to burn it most efficiently.