domingo, 26 de julho de 2026

 

FORD


Ford GTII analysis

First, since the road and race versions were developed in parallel, aerodynamics were crucial. As Jamal Hameedi, Ford Performance’s chief engineer, explains: “We wanted downforce, but it had to be efficient downforce—we didn’t want to pay a high price in terms of drag. That’s why we moved to a fixed seating position; it really allowed us to reduce the glass area and the frontal area.” So, you stay put in the cockpit while adjusting the pedals and steering wheel to your liking.

The compact, longitudinally mounted V6 engine sits close to the carbon-fiber structure's bulkhead, while the turbos feeding it are positioned further forward, beneath massive aerodynamic channels. The turbo intercoolers are located even further forward, within side structures that resemble a pod racer. Had the GT used a V8, it would have taken up more space and compromised the aerodynamics (not to mention adding weight). Just how much aerodynamics? How much downforce? Well, that is the one thing Ford won’t reveal, as it could allow rival teams to calculate the race version's downforce output.

Yet, you’ll find some form of aerodynamic device at every corner of the bodywork. The buttresses connecting the side structures to the central fuselage form a wing profile (they are also hollow, channeling intake air to the engine—a fascinating detail); the taillights are hollow to vent air from the intercoolers; and there is an underbody diffuser, a splitter, a flat undertray, and an active rear wing. As Hameedi points out, “You’d never have an opening unless it was feeding an intercooler.”

How strange would it be if this cutting-edge aerodynamic engineering were paired with a powerful, classic V8 engine? Well, it features an all-aluminum, dry-sump 3,497 cc V6 engine that develops 647 hp at 6,250 rpm and 746 Nm of torque at 5,900 rpm, sending all that power to the rear wheels via a seven-speed dual-clutch transmission. It uses a double-wishbone suspension setup at all four corners, featuring inboard spring/damper units. Braking is handled by carbon-ceramic discs—with six-piston Brembo calipers up front clamping 394 mm discs (and four-piston calipers on the 360 ​​mm rear discs)—and the steering is hydraulic rather than electric.

And then there’s Track Mode. Turn a knurled dial on the steering wheel to the "T" position, confirm with another button press, and the GT instantly drops by 50 mm. It’s as if the underside of the GT turns into a suction cup. It has a dry weight of 3,000 pounds, which likely means it weighs close to 1,500 kg when fully fueled and serviced. That makes it not much lighter than an Audi R8 V10 Plus, whereas a McLaren 675LT has a dry weight of 1,230 kg...

It is a sensational car to drive. Always agile, it is wonderfully balanced, precise, stable, and rewarding. It’s also thrilling. This isn't one of those relentlessly efficient cars that cares too much about lap times to be fun. Instead, it draws you into its world. It is joyful, exuberant, friendly enough to appeal to the less experienced, and capable enough to fascinate seasoned drivers.

No, the engine isn't particularly charismatic or exciting to use, but the power it delivers is undeniable. Just be aware that you’ll experience the thrill through touch, not sound. And if it didn't have this engine—if it had a V8—the design would be different, and the GT wouldn't have its unique edge. Because the aerodynamics, the buttresses, and those extravagant channels aren't just about instant visual recognition; they allow this car to carve out its own niche in the market. It is a fascinating machine.

 

Autonews

 

DOSSIER


AUTONEWS


Farnborough Airshow

From hybrid planes to new engines to long, slender wings, the aerospace industry is laser-focused on designing more efficient aircraft. 

At the Farnborough Airshow, this year’s version of the aerospace industry’s marquee trade event that alternates between London and Paris, the future of flight dominated the conversation this week.

The industry is always looking to reduce the amount of fuel needed to power its aircraft, both to reduce greenhouse gas pollution and to save on fuel costs. But this year saw a wave of optimism that these technologies, as well as an entirely new aircraft, could be coming soon. 

Demand is high across all segments of the aerospace industry — commercial, defense, space and private jets, as well as maintenance, repair and replacement parts. And, on the commercial side, major manufacturers and their suppliers say they are ready to ramp up.

That cautious optimism took hold last year, as Boeing showed promising signs that it was ready to increase production of its most popular and most lucrative plane, the 737 MAX, and solidified into real confidence this year, air show attendees and analysts said after the first days of the weeklong trade show. 

Analysts from Morgan Stanley wrote in a note to investors that the industry’s “upcycle remains in its early innings,” and companies are “investing for sustained growth rather than preparing for a cyclical slowdown.” 

Analysts from RBC Capital opened their optimistic note to investors with the warning that “we have been down this path before,” only to be disappointed later, but admitted that this year “the industry has more confidence” and appears to have fewer risks lurking in the background. 

Stephanie Pope, head of Boeing Commercial Airplanes, told reporters just ahead of the air show, which concludes Friday, that the manufacturer had stabilized its operations, after two years of internal review following a catastrophic 2024, and is now ready to think about optimizing. 

All of that optimism freed attention to turn toward the next entirely new, “clean-sheet” airplane, something neither Boeing nor Airbus have undertaken in nearly three decades. Boeing CEO Kelly Ortberg shifted his tone from just a few weeks earlier, telling some reporters this week he expects the company will have the financial stability to introduce its new program in the next few years. 

Airbus CEO Guillaume Faury doubled down on his expectation that Airbus will launch its next narrowbody program by 2030. 

“We’re not there yet, we are maturing the technologies, but we have a road map,” he told reporters Tuesday.   

Lars Wagner, head of commercial aircraft for Airbus, described the process as a “push and pull.” Airbus is targeting 2030 but it also has to wait until the technology — like engines and digital architecture — that will make it a next-generation plane is ready. 

“If you want to launch such a game-changing product, you have to lay down some bricks,” he said. 

Airbus and Boeing secured just over 300 orders at this year’s air show, slightly above the order count at last year’s Paris air show and 30% higher than the tally at the 2024 Farnborough Airshow, according to aerospace analysts Vertical Research Partners. 

In 2024, Boeing was still reeling from a midair fuselage panel blowout that January and knew its Machinists union in the Puget Sound area, where it builds the majority of its commercial airplanes, was poised to strike later that year. 

This year, Boeing beat Airbus on the orders front, announcing 169 orders to Airbus’ 140. Brazilian manufacturer Embraer secured 58 orders. 

At Farnborough, the companies often marked order announcements with some fanfare and a signing ceremony in one of the temporary “chalets” that popped up around a usually quiet airport. The suburban English town filled with businesspeople clad in suits, cramming into four pavilions full of companies showing off their latest products between meetings with potential customers.

Heading into the show, Airbus was outpacing Boeing on yearly orders, with Airbus reporting 821 net orders from January through the end of June and Boeing reporting 386 net orders after cancellations and adjustments for accounting principles. 

Of the orders placed during the air show, aircraft lessor SMBC Aviation Capital made the largest commitment, ordering 100 narrowbody planes from Boeing and Airbus each. 

Boeing’s 777X program took the biggest hit during the show. The plane-maker said it had last year scrapped one of its first planes due to the amount of repair needed to incorporate design changes after a lengthy certification process. 

Then Tim Clark, president of Gulf carrier Emirates, said the airline wouldn’t accept the first 10 777X planes slated for delivery because of that rework, though he added he felt Boeing was now back on track with the long delayed aircraft family and its overall manufacturing philosophy. 

The next day, engine maker Rolls-Royce revealed that Airbus is considering a 777X rival by stretching its current widebody A350, according to media reports. 

Companies and suppliers vehemently highlighted one problem they do not have: demand. 

Whether the supply chain, which includes a global network of parts makers, can keep up is another question. 

“We’re not in an arena where we don’t have demand; we’re in an arena where we have to keep focused on how do we get better at what we do,” said Chris Raymond, the head of Boeing’s Global Services Division, which provides maintenance and aftermarket support to customers.

Pope, Boeing’s head of commercial airplanes, told reporters its supply chain “is still a little bit volatile,” though it is seeing improvement. 

Boeing and its suppliers face the same problems, Pope said, so Boeing has been working to incorporate the changes to its supply chain it has made over the two years since the 2024 midair fuselage blowout. 

“In many cases, we’re sending experts in to partner and help with them,” Pope said. “That’s something we’re going to have to continue to monitor.”

In a different corner of the industry, RTX’s senior vice president for supply chain Sarfraz Nawaz said at a supply chain-focused panel that companies earlier in the production cycle are lagging behind the industry’s recovery. RTX is a Virginia-based conglomerate that includes Pratt & Whitney, Raytheon and Collins Aerospace. 

Nawaz was referring to what’s known as second- and third-tier suppliers, companies serving companies who then make materials and products for major manufacturers like Boeing and Airbus. 

Those suppliers are struggling to find talented workers and financing to scale up. A slow regulatory process to bring new suppliers on board to fill those gaps is also standing in the way, as are ever-changing geopolitics, from the pandemic to tariffs to the war in Iran.

“Every six months something else is happening,” Nawaz said. “Even though one (challenge) goes away, something else will come up and take its place.” 

Boeing is looking at ways to add redundancy to its supply chain and ensure it doesn’t have a single source for crucial parts and components, in case something goes awry, William Ampofo, a senior vice president for the Global Services Division, said at the panel.

The pandemic limited redundancy in Boeing’s supply chain, Ampofo said. Now, it’s setting up a “heat map” to spot areas of concern before a problem develops. 

In Washington state, home to more than 1,500 aerospace-related companies according to the state’s Commerce Department, suppliers are seeing the increased demand — and that translated to a very successful air show. 

“If you have capacity, somebody wants it,” said Elizabeth Brane, a vice president with aerostructures company Aernnova and board chair for the Pacific Northwest Aerospace Alliance.

Gretchen Reimbold, chief operating officer for Washington-based Mid-Mountain Materials, shared the optimism, speaking at Washington state’s booth during a cheerful happy hour at the end of the third day of the show.

“The aerospace community,” she said, “is rebounding.”

Boeing, opens new tab ​edged Airbus, opens new tab in a subdued series of order announcements at the Farnborough Airshow this week, as the global aerospace industry ‌focuses on fixing lingering supply constraints and catching up on record order backlogs.

The deals — worth tens of billions of dollars — were in line with expectations within the industry for just over 300 orders, reported by Reuters ahead of the event, but fell short of some bullish external forecasts reaching as high as 800 aircraft.

The once-addictive buzz surrounding orders ​at air shows has been fading in recent years as planemakers avoid giving jarring messages at a time when they are ​struggling industrially, and as airlines digest a record number of aircraft still on order.

"I didn't have high expectations of ⁠big commercial orders at the show, not particularly because of the current macro or geopolitical climate, but because a lot of large orders ​are already out there," airline analyst John Strickland said.

Boeing announced firm and preliminary orders for 173 aircraft, helped by a mix of narrowbody ​and widebody deals, while its European rival announced 154 firm and provisional orders, for a total of 327, according to a Reuters tally.

After excluding deals already in manufacturer order books without the buyer initially being named — including Boeing's half of a big lessor order — the overall tally was 218 aircraft.

That's up slightly on the previous Farnborough ​event in 2024, but well below the 2018 cyclical peak of 1,109 orders for the two dominant manufacturers.

Following years of supply-chain disruptions, labour ​shortages and manufacturing setbacks, Airbus and Boeing have amassed order books stretching well into the next decade.

With manufacturers focused on increasing output and airlines facing long ‌waits for ⁠new jets, air shows are generating fewer headline-grabbing orders and even planes than in the past.

"Demand is not the issue," Boeing Commercial Airplanes CEO Stephanie Pope told reporters on the eve of the show.

Airbus showed off its A350-1000 as it considers stretching the jet to counter Boeing's delayed 777X.

Boeing did not bring any of its major commercial variants, three of which are in the process of being certified.

The ​week's biggest commercial deal came from ​the world's second-largest lessor SMBC ⁠Aviation, which split an order for 200 single-aisle jets evenly between the two main planemakers, buying 100 Boeing 737 MAX and 100 Airbus A320neo-family jets.

The deal underscored still-strong demand for narrowbody aircraft, the workhorses of short- ​and medium-haul travel, despite scarce delivery slots and supplier bottlenecks.

Other deals included continued demand for widebody jets, ​with Riyadh Air and Philippine ⁠Airlines shopping at both manufacturers and leasing giant AerCap buying more Boeing 787s.

Away from the main aircraft stands, a key feature of the show was a record order for more than 1,000 LEAP-1A engines from CFM International to ⁠power 500 ​previously ordered Airbus jets.

A previous aircraft order boom stoked in part by low interest ​rates has placed high industrial demands on the engine industry, leading to parts shortages and maintenance delays.

Both CFM and Pratt & Whitney, the main supplier affected, said the industrial situation was ​improving steadily.

sábado, 25 de julho de 2026


SUZUKI


Suzuki eVITARA for 265 euros per month

The Suzuki eVITARA is the first fully electric SUV in the brand's history and brings a combination of advanced technology, SUV practicality and reliability for which Suzuki is recognized worldwide.

Up front, the headlights stand out with their LED technology and highly modern look. It is worth noting that the e-Vitara shares the same platform and bodywork as the Toyota Urban Cruiser; the two models also share the same electrical system and are assembled in India.

In profile, the SUV has a muscular appearance with large wheel arches housing 19-inch alloy wheels on the top-of-the-line variant.

The entry-level version of the 2026 Suzuki Vitara features a front-mounted electric motor delivering 144 hp and front-wheel drive. The mid-range version offers 174 hp. Finally, the top-of-the-line model features dual motors producing 184 hp and all-wheel drive.

Despite being a "mass-market" SUV, the electric 2026 Suzuki Vitara boasts a premium interior finish, featuring a leather-clad dashboard and Piano Black accents.

The equipment list is also impressive; the e-Vitara comes standard with a multimedia system and a digital instrument cluster—both featuring 12-inch screens—as well as a wireless smartphone charger, digital climate control, an electronic parking brake, a 360-degree camera system, six airbags, and a comprehensive ADAS package that includes adaptive cruise control (ACC), autonomous braking, and lane-keeping assist.

Produced in India...Although it is a Japanese brand, Suzuki currently operates its main factory in India through a partnership with the local brand Maruti. The new 2026 e-Vitara is sold in markets ranging from Europe to Japan, with production based in Gujarat, India—on the same assembly line as its twin, the Toyota Urban Cruiser.

Developed on the brand-new HEARTECT-e platform, the eVITARA was designed from the very beginning as an electric vehicle. The lightweight and rigid construction ensures excellent stability, safety and efficiency, while batteries with a capacity of up to 61 kWh provide a range ready for everyday duties, but also longer trips.

The interior is dominated by a modern digital cockpit with large integrated screens that unite all the most important functions of the vehicle. The modern cabin design, high level of comfort and quality materials create a pleasant environment for the driver and passengers, while advanced connectivity and intuitive control bring a completely new driving experience.

Suzuki has transferred its many years of experience in all-wheel drive to the electric era through the ALLGRIP-e system with two electric motors, which provides additional safety, traction and stability in all driving conditions. Thanks to improved NVH optimization, noise and vibration are minimized, so the eVITARA provides an exceptionally quiet, smooth and premium ride.

The compact exterior makes it easy to use in the city, while the spacious cabin and SUV character provide comfort and functionality for the whole family.

The promotion for the all-new Suzuki e Vitara at €265 per month refers to a financing offer available through official dealerships like Euro Sumar - Suzuki Sérvia- Vojislava Ilića 145 Niš, highway, Belgrade 11000, Serbia

Offer breakdown starting:

Cash price: From €26,250 (this calculation includes a standard €5,000 state eco-subvention for electric vehicles).

Down payment: A mandatory initial deposit of €7,875 is required to lock in this specific monthly tier.

Monthly Installment: €265 per month.

Warranty Included: Covered by the Suzuki Pro Warranty for up to 10 years or 200,000 km.

The price of the eVITARA starts at €26,250 (including a €5,000 state subsidy for electric vehicles)

Pay €7,875 and drive the eVITARA for €265 per month.

* The Suzuki eVITARA is now available at the Euro Sumar showroom, at Vojislava Ilića 145.

* Suzuki Pro Warranty up to 10 years or 200,000 km. 

 

Autonews


TOYOTA


2027 Toyota Tundra

Toyota is introducing an updated Tundra for the 2027 model year, giving its pickup truck a more purposeful exterior design, upgraded in-vehicle technology and a new Trailhunter package aimed at drivers looking for factory-installed off-road capabilities.

The refreshed Tundra gets a redesigned front end courtesy of Toyota’s North American teams, including CALTY Design Research in Michigan. Its styling features a more squared-off front profile, a wider stance, rectangular fog lights and a new hexagonal grille treatment tailored to different trim levels. Toyota says the changes are intended to give the truck a more modern and refined look without straying from the rugged character associated with the Tundra. One of the most notable additions is the Trailhunter package, which will be offered on the SR5 trim level. Designed as a more affordable, adventure-ready option, the package includes Michelin LTX Trail all-terrain tires, 18-inch bronze wheels and an upgraded suspension.

Also included are front tow hooks, additional underbody protection, and exclusive Trailhunter badging.

The Trailhunter package adds several off-road electronic systems to complement its mechanical enhancements. These include Multi-Terrain Select, Crawl Control, and a rear differential lock, which are designed to improve traction and vehicle control on rough terrain. Together, the equipment positions the package as a factory-developed choice for buyers interested in trail driving and camping without upgrading to the more specialized TRD Pro trim level.

The technology inside the truck also gets a significant update. Every 2027 Tundra comes with a standard 14-inch display powered by Toyota’s latest audio-visual system. The new interface uses a smartphone-style layout with customizable widgets, faster responses to “Hey Toyota” voice commands, and available AT&T 5G connectivity.

A built-in dash cam will also be standard. When activated, the system uses the truck’s exterior cameras to record 20-second video clips during manually selected or automatically triggered events. Enhanced digital key functionality will allow compatible smartphones to lock, unlock, start and control the vehicle via supported apps.

Other enhancements include a grille-mounted LED light bar, available RIGID fog lights and optional front tow hooks.

Toyota will continue to offer the Tundra with twin-turbo V6 gasoline and i-FORCE MAX hybrid powertrains. The 2027 lineup will include SR, SR5, Limited, Platinum, 1794 Edition, TRD Pro and Capstone trim levels, with Trailhunter available as a package rather than a separate trim level.

Safety equipment will include Toyota Safety Sense 4.0 as standard. The package offers features such as pedestrian detection assist, adaptive cruise control, lane departure warning with steering assist, lane keeping assist, automatic high beams, traffic sign recognition, and proactive driver assistance.

Toyota has not yet released full specifications or pricing for the updated pickup truck. Additional information about the 2027 Tundra is expected to be released in the fall of this year.

 

Autonews


AUTONEWS


Tracking a flight path to a green aviation future

An Adelaide University-led study has mapped out a route to advance the commercial aviation industry towards a net-zero emissions future, powered by green hydrogen.

Aviation is one of the fastest growing producers of greenhouse gas emissions,  generating around 14% of transport emissions – second to road transport. It is also one of the world's hardest-to-decarbonise industries. Unlike conventional jet fuel, hydrogen produces no direct carbon dioxide emissions during operation and, when generated from renewable energy sources, has the potential to transform the sector.

The comprehensive research, undertaken in collaboration with Hong Kong Polytechnic University, analysed 138 international studies published between 2015 and 2025 to consolidate how far the production of green hydrogen has progressed, and understand what’s needed to see it become commercially viable as a jet fuel solution.

Adelaide University PhD candidate Zahra Jaffary, lead author of the study, said green hydrogen is a viable technology but there are significant uncertainties around its feasibility, deployment and broader sector implications.

“Our research identified the current research trends and the immediate priorities that are needed to fill the gaps in understanding,” Jaffary said.

“There is a need for airport-specific case studies to assess hydrogen infrastructure needs, comparing onsite, offsite and hybrid supply chain models.

“We also need to urgently understand the future demand for fuel at airports, including spatial constraints and what refuelling systems could look like.

“And we need to identify the policy frameworks and regulatory measures needed to enable a successful transition to hydrogen power at the airport level.

"Additionally, hydrogen introduces safety considerations. Its wide flammability range, low ignition energy and need for careful handling require revised systems including design standards, leak detection and operational procedures for both aircraft and airport environments." 

With airport operators set to play a pivotal role in a hydrogen transition, detailed knowledge is essential to inform the significant decisions and investments required, and long-term planning should start soon.

“Much effort is focused on improving the cost and efficiencies of hydrogen production,” Jaffary said.

“Our research has identified what else we need to know, implement and cost in order to make hydrogen jet fuel a reality, particularly given the long lead times for investment and infrastructure development.”  

Co-researcher, Adelaide University’s Professor Shane Zhang, said the report’s findings highlight the need for government intervention and incentives to reduce the growing environmental impact of the sector.

“Without clear signals from airlines and governments, airports have little commercial incentive to invest in costly hydrogen infrastructure,” Professor Zhang said.

“Targeted policies, incentives and regulatory frameworks will be essential to provide certainty for investment and accelerate the adoption of clean hydrogen fuel.

Australia has an incredible opportunity to become a leader in a future hydrogen aviation economy given its abundant renewable energy resources and green hydrogen ambitions, and we need to start getting the ducks in a row.”

Green flight paths could unlock sustainable aviation...‘Green flight paths’ between key global locations could help to fast-track fully decarbonised aviation, according to research funded by IDRIC and led by an international team based at Heriot-Watt University and the American University of Sharjah in the United Arab Emirates.

The research, published in the Royal Society of Chemistry’s top international journal, Energy and Environmental Science, recommends that a small number of long-haul flights with high passenger volumes, such as London to Dubai, could be used to establish these green flight paths by demonstrating and reporting on sustainable aviation fuels (SAF).

SAF are non-petroleum-based fuels that emit significantly fewer greenhouse gas emissions than traditional fossil-based jet fuels.

Dubai and London Heathrow airports are two of the busiest airports in the world and the first and second highest ranked in the world terms of CO₂ emissions from international flights, as well as total international passengers. London Heathrow is already a world leader in SAF ambition and is working towards a target of incorporating 11% of SAF into its overall fuel usage by 2030.

SAF is compatible with existing aviation fuel systems and can be used in current aircraft engines and infrastructure without requiring any modifications. This makes SAF easier to implement since airlines can use it with their current fleets, the study noted.

The green flight paths would encourage the “dedicated large-scale investment” needed to encourage the worldwide adoption of SAF.

Professor Steve Griffiths, Vice Chancellor for Research at the American University of Sharjah, is a sustainable energy expert and lead author of the paper. He said: “The UAE and UK are both highly dependent on long-haul flights, so have a compelling opportunity to lead the establishment of green flight paths, to demonstrate and deploy sustainable aviation fuels. Establishing green flight paths has the potential to not only drive decarbonisation of the aviation sector, but also lead to international cooperation for the development of SAF, and the related clean technologies needed to achieve net-zero by 2050 on a global scale.”

Professor John Andresen, Associate Director of the Research Centre for Carbon Solutions (RCCS) at our University, co-authored the paper and is a chemical engineer with an expertise in fuel processing technology. He said: “The concept of green flight paths is inspired by green shipping corridors, which are paving the way for net-zero shipping. A similar framework for prioritising long-haul flight segments is becoming increasingly urgent, to drive the global production and use of net-zero SAF technologies.”

Currently, widely available sustainable flights are a long way from being a reality. SAF provide a potential route to changing this. Since the chemical and physical characteristics of SAF are almost identical to conventional fuels, they can be safely mixed. However, figures from 2022 show SAF production is way off track, currently sitting at 0.1% of the 2050 net zero goal that has been set by the international community.

There are a number of reasons for this lack of progress, many of which are economic, the researchers explain. SAF production is costly and in its infancy, so significant investment is needed to de-risk and reduce the costs of production. Unlocking investment is key to developing the scalable solutions that will lead to much wider uptake of SAFs.

Targeting a small number of high-volume, long-haul routes would demonstrate the economic viability of the green flight path model because it would speed up the development of commercially viable SAF supply chains, the researchers say. These targeted global locations often lie geographically close to industry clusters already working towards decarbonisation.

Coupling plans for green flight paths with the growing agenda for decarbonising whole clusters of the economy – for example, industry or transport – offers the opportunity to tackle challenges in a coordinated, holistic way, the researchers add.

The research paper also makes a strong case for the ‘climate justice’ of green flight paths. This is because only about 10% of the world’s population currently take flights, so green flight paths rightly place the onus on countries benefiting the most from aviation to develop solutions to make it sustainable. Solutions that can be scaled will also become increasingly important as worldwide incomes rise, along with a likely increase in demand for flights.

Adelaide University

sexta-feira, 24 de julho de 2026

 

RENAULT


Renault Clio Hybrid covers more than 1,100 kilometers on a single tank of fuel

Electric car range tests are commonplace these days, but how far can a modern full hybrid go without refueling? That's exactly the question Renault wanted to answer, as it organized an interesting challenge together with two famous German automotive YouTubers.

Bernd Konrad and Alexander Schäfer were given identical copies of the Renault Clio Full Hybrid E-Tech 160 with a 39-liter tank. Their task was simple - to cover at least 1,000 kilometers on a single tank of fuel in real-world driving conditions.

The Clio Full Hybrid E-Tech 160 develops 158 hp, is equipped with an automatic transmission, and according to factory data, average consumption is 3.9 l/100 km according to the WLTP cycle.

Konrad set off from Cologne towards Lake Garda in Italy, driving on motorways, regional roads and over Alpine passes, while Schäfer from Heilbronn travelled through France, visiting several Renault Group production sites along the way.

Unlike classic "hypermiling" challenges, the aim was not to use extreme fuel-efficient driving techniques. Both drivers drove in line with the flow of traffic, without disturbing other participants. On motorways, they generally maintained a speed of around 100 km/h, while on other sections they respected the legal limits.

The results exceeded expectations. Konrad covered 1,112 kilometres on a single tank of fuel with an average consumption of just 3.59 l/100 km, while Schäfer finished the drive after 1,101 kilometres with an almost identical average consumption of 3.64 l/100 km.

An interesting and relevant aspect regarding the Clio's handling—which was not previously among the most fun-to-drive compact cars—is the increase in track width (the distance between wheels on the same axle), specifically by 4 cm at the front. This change, combined with a quicker steering ratio—reducing the number of turns from lock to lock from 3.3 to 2.6—results in better cornering behavior.

It continues to use the CMF-B platform, which has been employed for several generations and features MacPherson strut suspension at the front and a torsion beam at the rear—a typical setup for compact hatchbacks. It also comes with ventilated disc brakes at the front and solid discs at the rear.

Regarding engines, the Clio offers two main powertrains. The first is the three-cylinder 1.2 TCe, delivering up to 120 hp.

The hybrid version combines a naturally aspirated, 16-valve, four-cylinder 1.8 E-Tech gasoline engine (of Geely origin) with two electric motors (one generator and one traction motor) powered by a 1.4 kWh battery. The combined output is 158 hp and 27 kgfm of torque. On its own, the front electric traction motor provides 49 hp and 20.9 kgfm, making the new Clio E-Tech significantly more powerful than the Toyota Yaris Cross Hybrid (111 hp) and even the Corolla or Corolla Cross Hybrid (122 hp).

It is worth noting that the gasoline engine operates on the Atkinson cycle—where intake valves remain open longer to recirculate some of the intake air and lower the compression ratio, thereby improving energy efficiency. This engine is paired with an automatic transmission known as "Multimode," which uses actuators instead of traditional clutches; it combines four mechanical gears linked to the 1.8 engine with two electric gears, resulting in 15 combined gear ratios. Thus, regarding fuel consumption, Renault states that the hybrid system allows the gasoline engine to remain in the background for 80% of the time during urban driving.

Renault points out that these results were achieved thanks to the efficient full hybrid drive, which in urban and suburban driving often uses the electric motor, while the battery is charged through regenerative braking. A moderate driving style with a steady pace also contributed to this.

This test shows that for more than 1,000 kilometers of autonomy, it is not necessary to choose a diesel car. Modern standard hybrids, with sensible driving, can offer extremely low consumption and a range that was until recently reserved almost exclusively for diesel cars.

The official maximum single-tank range for the Renault Clio E-Tech Full Hybrid is up to 1,000 kilometers, though achieving over 1,100 kilometers is possible under real-world hypermiling conditions or by configuring specific bi-fuel variants.

According to official Renault Group Technical Data, the full-hybrid powertrain delivers excellent fuel economy but is officially marketed with a 900 to 1,000-kilometer total limit due to its compact tank size.

Range breakdown by engine type:

-E-tech full hybrid (145 hp / 160 hp): This model features a 39-liter fuel tank. With an official combined consumption of 3.9 to 4.2 liters per 100 km, the math yields a theoretical maximum range of roughly 928 to 1,000 kilometers. Drivers can exceed 1,100 km primarily in urban environments, where the car operates in zero-emissions electric mode up to 80% of the time.

-TCe 100 LPG (Bi-Fuel): If you heard the "1,100+ km" figure directly from a dealership, you might be thinking of the Renault Clio LPG variant. This version utilizes two separate fuel tanks (petrol and liquefied petroleum gas) to achieve a combined driving range of 1,100 to 1,200 kilometers without stopping.

-Larger hybrid models: The 1,100 km single-tank milestone is officially claimed by Renault's larger E-Tech hybrid SUVs, such as the Renault Rafale, which pairs a highly efficient 200 hp hybrid engine with a much larger 55-liter fuel tank.

Why Renault E-tech hybrids are so efficient:

Renault's E-Tech system, which leverages technology derived directly from Formula 1 engineering, maximizes fuel economy through a series-parallel setup:

Urban dominance: The system allows the car to run on pure electric power for up to 80% of city driving time.

Regenerative braking: The 1.2 kWh to 1.4 kWh battery self-recharges automatically whenever the vehicle slows down or brakes. No plug is required.

Intelligent gearbox: A multi-mode clutchless dog gearbox automatically shifts between 15 different operational combinations to keep the engine in its most efficient power band.

Low consumption: It achieves a certified WLTP combined fuel economy starting from 3.9 to 4.2 liters per 100 km.

 

Autonews


DUCATI


Ducati Formula 73: a modern tribute to the 750 SS Desmo at a surprising price

Ducati is celebrating its centenary. In 1926, the Bologna-based company manufactured radios and electrical components, soon establishing itself in Borgo Panigale. After World War II—during which its facilities were destroyed by bombing—the company returned, but this time producing something far better suited to Italy at the time: small combustion engines designed to be fitted to ordinary bicycles. The initiative was a success, marking Ducati's transition into a motorcycle manufacturer.

To mark its centenary, Ducati is launching a very special motorcycle that revives one of the happiest moments in its history. It embodies the spirit of a bike and an era that helped forge the Ducati legend and inspired the principles that still guide the company today. The Ducati Formula 73 pays tribute to the Ducati 750 Super Sport Desmo, the first street-legal Ducati V-Twin equipped with a valve actuation system that positively controls both opening and closing—meaning the closing phase does not rely on spring action.

This prevents unwanted valve float—a phenomenon occurring at high RPMs where the valve fails to return to its seat in time and is literally struck by the piston during its upward stroke. One can easily imagine the resulting engine damage.

The name "Desmo" is short for "desmodromic," a term derived from two Ancient Greek roots: *desmos* (meaning bond or link) and *dromos* (meaning course or track). The Ducati 750 Super Sport was, in fact, a road-going replica of the Ducati 750 Imola Desmo ridden to victory by Paul Smart and Bruno Spaggiari at the 1972 Imola 200—the first European race for production-based motorcycles, a formula that would eventually give rise to today's Superbike racing in the 1980s. That historic victory at Imola—with Smart finishing first and Spaggiari second—and the subsequent birth of the 750 Super Sport Desmo marked the first pivotal chapter in Ducati’s saga of production-based motorcycle racing, a journey that has since achieved a world-record tally of over 400 race wins, sixteen riders' titles, and twenty-one manufacturers' titles.

The Ducati 750 Super Sport Desmo emerged during a decade of great change and contrast, defined by intense cultural creativity. It was a period marked by societal transformation and a widespread desire for renewal. Extraordinary artistic vitality influenced music, cinema, fashion, and thought, making the 1970s a complex and deeply significant era.

The Ducati Formula 73—a contemporary reinterpretation of the legendary 1973 750 Super Sport Desmo—was created as a tribute to that era and that motorcycle, embodying the values ​​of style, sophistication, and performance that have inspired Ducati ever since. The Ducati Formula 73 is dedicated to the brand's enthusiasts. Its silver and teal livery draws inspiration from the original 750 Super Sport Desmo; the vertical gold stripe on the tank echoes the unpainted strip found on the Ducati 750 Imola Desmo—a transparent section of the fuel tank that allowed the team to quickly check fuel levels during endurance races without complicating the bike or adding extra instrumentation. Like all limited-edition Ducati motorcycles, the Formula 73 features its model name and serial number on the upper triple clamp; each bike comes with a certificate of authenticity, as well as a collection of period-style images and sketches created by the Ducati Style Centre, presented in a special box.

The new livery revives the silver and teal color scheme of the 750 SS Desmo, along with a vertical gold stripe on the tank inspired by the 750 Imola Desmo. Rounding out the package are clip-on handlebars with bar-end mirrors, a small windscreen, a sporty tail section, and various machined aluminum components—such as levers, foot controls, and the fuel cap—manufactured by Rizoma.

The Ducati Formula 73’s 803 cc Desmodue engine is an L-twin—effectively a 90° V-twin—featuring desmodromic valve actuation and two valves per cylinder. Euro 5+ compliant, it remains true to the technical standards upon which Ducati built its legend during the 1970s and 1980s. Delivering 73 hp at 8,250 rpm, this authentic engine defines the Formula 73’s character, serving as a fundamental element of both its styling and the riding experience.

Buyers of the Ducati Formula 73 who wish to complement their look with technical gear inspired by the collector bike's original aesthetic can choose a helmet and sports jacket that echo the Formula 73’s livery. The Ducati Formula 73 will be produced in a numbered series limited to 873 units; it will be available in Europe within a few months, reaching the rest of the world shortly thereafter.

Each unit will feature an identification plate with its serial number and come with a certificate of authenticity, as well as a special box containing historical images and sketches created by the Ducati Style Center. The brand has also developed a helmet in collaboration with Arai and a sports jacket featuring the same livery as the motorcycle.

The Ducati Formula 73 will be produced in a limited run of 873 units and priced at €17,290; it is set to arrive in Europe in the spring of 2026, with sales in other markets beginning later that same year.

Autonews

  FORD Ford GTII analysis First, since the road and race versions were developed in parallel, aerodynamics were crucial. As Jamal Hameedi, F...