1987 Mazda B2000 Base Extended Cab Pickup 2-door 2.0l on 2040-cars
Kansas City, Missouri, United States
Body Type:Extended Cab Pickup
Vehicle Title:Clear
Engine:2.0L 1998CC 122Cu. In. l4 GAS SOHC Naturally Aspirated
Fuel Type:GAS
For Sale By:Private Seller
Make: Mazda
Model: B2000
Warranty: Vehicle does NOT have an existing warranty
Trim: Base Extended Cab Pickup 2-Door
Options: Flatbed, Custom Headlights, CD Player
Drive Type: RWD
Mileage: 229,443
Disability Equipped: No
Sub Model: SE5
Exterior Color: Black
Weber 32/36: Accel Coil
Interior Color: Brown and Grey
H4 bulbs: Flatbed
Number of Cylinders: 4
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Auto blog
2015 Mazda3 shows its shape
Tue, 12 Feb 2013Mazda's new Kodo design language is set to quickly spread across the automaker's entire lineup, judging by these spy shots of the next-generation Mazda3 that show some very familiar styling cues. No matter, we're impressed with what Mazda has done on the CX-5 crossover and Mazda6 sedan in terms of design, and we're happy to see the C-segment hatchback ditching the smile-for-a-mile Nagare design.
It's unclear what sort of architecture is found below the new Mazda3 - our spy shooters suggest that the car could simply be using a heavily massaged version of the Ford C1 platform found under the current car. Our best guess is that it's actually a reworked version of the platform used in the CX-5 crossover, however, chocked full of weight-saving Skyactiv technologies. After all, the CX-5 plays in the compact CUV segment, and those vehicles are commonly based on C-segment platforms. And besides, there's probably some economic savings at work with the new chassis - both in terms of fuel efficiency and economies of scale. Still, no one is totally certain what lies under all that black-and-white paper at the moment.
The new Mazda3 is targeted to arrive for the 2015 model year, meaning we could see a final production car debut as early as this year. We expect the hatch you see here to debut along with a traditional four-door sedan, and unless we hear otherwise, we don't doubt that a Mazdaspeed version will be far behind.
Masamichi Kogai new Mazda president and CEO
Fri, 10 May 2013There's some executive rearranging going on in the top suite at Mazda Motor Corporation in Japan, with current CEO Takashi Yamanouchi telling reporters there "I'd like to hand over the work to younger people" now that the company has returned to profitability. Yamanouchi became CEO on November 19, 2008 of an independent Mazda that had to fight for its future in the immediate aftermath of the global financial crisis. What followed was four years of losses before finally getting back to black last year.
Masamichi Kogai (pictured) will be appointed the new president and CEO on June 25, pending approval at the company's annual general shareholders' meeting. Kogai assisted Seita Kanai with the production-efficiency initiative that Mazda called Mono Tsukuri Innovation, which worked to give export-dependent Mazda the best chance at profitability in spite of a rising yen. Kogai, lately in charge of production and purchasing, has been with the company since 1977 and worked in areas from R&D to logistics.
Kanai, who headed the Mono Tsukuri effort and was among the leadership on Skyactiv, will be promoted from executive vice president to vice chairman. Akira Marumoto will become executive VP of Mazda and assistant to new president Kogai. Yamanouchi will remain Chairman of the Board. There's a short press release below to make it official.
Mazda patent shows rotary placement in complex AWD hybrid layout
Sat, Apr 18 2020If we were playing alt-powertrain Bingo, a recent Mazda patent application filed in Japan would be one or two letters from victory. What's exciting about the patent, discovered by Japanese outlet T's Media via Motor Trend, is that while it makes a case for an internal combustion engine of any configuration, one of the drawings showing a rotary engine. The wild bit is that the whole powertrain comprises the ICE, a transaxle, two tiny in-wheel electric motors turning the front wheels, a third electric motor in the driveline, a capacitor, a lithium-ion battery, and three inverters. Motor Trend parsed the mechanics, and the way it reads, Doc Brown couldn't have done a better job. The rotary engine at the front turns the rear wheels, but not directly. Instead of a flywheel on back of the engine, the drawing shows a 25-kW electric motor and an inverter, then a driveshaft running to the transaxle. Along the axis of the transmission tunnel in a normal car, between the inverter and the transaxle, lies a 3.5-kWh battery running at 48 volts. MT writes that the electric motor can add its output to the ICE output to drive the rear wheels, or the e-motor can turn the rear axle on its own. Up front, two inverters and a double-layer capacitor join the ICE in the engine bay. The capacitor and tiny hub motors in the front wheels run at 120 volts, a higher voltage than the rest of the electrical system, so that the small in-wheel motors can generate the same torque as a larger motor running at a lower voltage. The AWD system acts on-demand. Given the signal, the capacitors discharge their energy to the wheel motors, and recover energy from braking. When the capacitors are at full charge, they send excess regen energy to the lithium-ion battery; conversely, the battery can recharge the capacitors when they're low and the front hub motors need power. The patent explains that the ICE works with the rear e-motor to drive the rear wheels at low speeds, the front motors called on to "generate an output only when a large output is required in the high vehicle speed range." The rather complicated system is focused on providing the benefits of a hybrid system and all-wheel drive, but at lower weight than one would expect. A rotary serves due to its compactness, but one of the drawings shows an engine with a V layout. Hub motors get dinged for adding unsprung weight, hence the small motors here.



