1990 Ford Ranger - Hot Rod V8 - 347 Crate Motor - Aod 53,770 Original Miles on 2040-cars
Port Orange, Florida, United States
Body Type:Extended Cab Pickup
Engine:4.0L 245Cu. In. V6 GAS OHV Naturally Aspirated
Vehicle Title:Clear
Fuel Type:GAS
For Sale By:Private Seller
Interior Color: Burgundy
Make: Ford
Number of Cylinders: 6
Model: Ranger
Trim: STX Extended Cab Pickup 2-Door
Drive Type: RWD
Mileage: 53,770
Exterior Color: Gray
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Auto Services in Florida
Yokley`s Acdelco Car Care Ctr ★★★★★
Wing Motors Inc ★★★★★
Whitt Rentals ★★★★★
Weston Towing Co ★★★★★
VIP Car Wash ★★★★★
Vargas Tire Super Center ★★★★★
Auto blog
2015 Ford Mustang EcoBoost
Fri, 16 May 2014Earlier this week, Ford invited us to Charlotte, NC, to ride in an all-new 2015 Mustang fitted with its turbocharged 2.3-liter EcoBoost four-cylinder. It's the first forced-induction, four-cylinder ponycar for the Blue Oval since the sun set on the 1986 Mustang SVO. We jumped at the opportunity, as only a handful of people have ever been in the passenger seat of this new car, and most automotive media won't get as close as we did until this fall.
As we revealed in our Deep Dive, Ford will slot this new turbocharged four as premium powerplant between its naturally aspirated 3.7-liter V6 and the naturally aspirated 5.0-liter V8. At last mention, the automaker said the direct-injected, all-aluminum engine will develop 305 horsepower and 300 pound-feet of torque, returning the best fuel economy of the three powerplants in the process. History buffs will note that those figures are appreciably stouter than the 200 horses and 240 lb-ft that the '86 SVO realized out of the same displacement, and the latter's figures were hugely impressive at the time. On paper, the new EcoBoost four looks to be a good fit for most owners who want to balance performance with efficiency - we were eager to see how it felt from the passenger seat.
Riding Notes
2020 Ford Explorer, Lincoln Aviator reportedly facing numerous QC issues
Mon, Sep 16 2019A lengthy report in the Detroit Free Press delves into a range of quality control issues confronting the 2020 Ford Explorer and its luxury platform sibling, the 2020 Lincoln Aviator. Freep says it's been following the issue for two months, tapping various unnamed sources for information on the automaker's unorthodox route to resolution. Seems the problem is Explorers and Aviators leaving the production line at the Chicago Assembly Plant with flaws in areas like the chassis, transmission and suspension, said vehicles trucked to Ford's Flat Rock Assembly Plant (FRAP) outside of Detroit for repair. The estimates range from 10,000 to 18,000 vehicles affected, numbers so high that Ford has sought help from Roush Engineering in nearby Allen Park, and brought workers and managers from other plants in the Midwest to FRAP to get vehicles repaired and shipped to dealers. Ford hasn't shared the nature of the problems with anyone outside the company, including dealers and customers. Freep's sources are said to include workers who have provided photos of certain vehicles and of tents used to house parts at the FRAP repair site. The Explorer chassis allegedly has an unidentified problem that engineers are using X-rays to diagnose, and the transmission is having problems sensing when it's in park or going into park. Both the Explorer and Aviator have come off the line with HVAC units that only blow hot air. And the Aviator's height-adjustable suspension enters failure mode for unknown reasons. These come on top of quotidian mishaps common to every new vehicle, but that are meant to be sorted in pre-production, like missing emblems and trim pieces. They also come on top of a recall in early August issued for the Explorer and Aviator concerning the instrument cluster and parking brake, and another at the end of August over rear seatbacks that could collapse in a crash. An automaker spokesperson told Freep, "Making updates to preproduction models based on all-new platforms as they roll off the assembly line – is standard industry practice." Except these aren't pre-production, these are early production vehicles that paying customers and dealers are waiting for, and some of the affected vehicles have been pulled off dealer lots. Dealers say they are fine waiting for the trucks to get sorted out, and they'd rather have Ford fix the problems before the SUVs go to customers.
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.