Our Future is in Motion: Ford Motor Company Reflects on 20 Years in Sustainability with New Goals Ahead

DEARBORN, Mich.–(BUSINESS WIRE)–In 1999, Ford Motor Company published its first Sustainability Report – the first company in the industry to do so. Since then, Ford has spent the last two decades moving toward a more sustainable world. “We are committed to having a positive impact on the planet and the communities where we live and… Continue reading Our Future is in Motion: Ford Motor Company Reflects on 20 Years in Sustainability with New Goals Ahead

Ford Confirms Start of Consultation on Potential Closure of Bridgend Engine Plant in Support of Business Redesign

Consultation starts concerning the proposed end of engine production and closure of Bridgend Engine Plant in South Wales by late 2020 Proposal supports Ford’s redesign strategy to create a more efficient and focused business in Europe, with significant progress already being made Comprehensive plan includes an enhanced employee separation programme, plus measures to help employees… Continue reading Ford Confirms Start of Consultation on Potential Closure of Bridgend Engine Plant in Support of Business Redesign

06/06/2019MAHLE power electronics move electric vehicles

MAHLE power electronics move electric vehicles

Stuttgart/Germany, June 06, 2019 – MAHLE is unrivaled when it comes to components for power electronics in electric cars. During AC charging, the power flows through a MAHLE noise filter and a MAHLE onboard charger toward the battery. A MAHLE DC/DC converter supplies the 12-volt unit with power, and a MAHLE inverter ensures precise control of the traction motor and processes the energy obtained during the recuperation process.

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Press release [PDF; 153 KB]Press picture [JPG; 4312 KB] With its power electronics, traction motors, and charging infrastructure solutions, MAHLE offers a broad range of products for e-mobilityPower electronics from MAHLE stand out thanks to their robust design and high power density“Part of our dual strategy is the continuous expansion of our already broad product portfolio in the area of power electronics. Robustness and a high power density are central to our development activities,” says Dr. Jörg Stratmann, Chairman of the Management Board and CEO of MAHLE.
Power electronics are at the heart of modern electric vehicles. Noise filters are crucial for compliance with the strict rules on minimizing electrical interference. With minimal power loss, MAHLE noise filters cover a frequency band of 150 kilohertz to 300 megahertz with a voltage of 400 volts and are extremely robust and compact. They also identify the type of charging current and verify the quality of the ground connection.
Onboard chargers adjust the charging parameters during AC charging to match the requirements of the battery management system, speeding up the charging process while also saving power. However, the direct current required to charge the traction battery can usually only be found at DC charging stations on freeways. In contrast, urban charging stations or local household connections supply alternating current, which the onboard charger generates by means of rectifying and conversion. MAHLE’s onboard chargers have a particularly high power density and are protected against under- and overvoltage, overcurrent, and overheating from both a software and a hardware perspective.
Batteries in electric cars deliver a voltage level of well over 12 volts. Like the alternator in a vehicle with a combustion engine, the DC/DC converter provides a constant voltage and supplies power to consumers such as the air conditioning system, power steering, lighting, or the infotainment system. DC/DC converters from MAHLE separate the high- and low-voltage electrical systems safely and reliably. They are flexible in terms of installation space and design, and are also protected against under- and overvoltage, overcurrent, and overheating.
In modern electric cars, brushless electric motors are used. The rotating field needed to operate these motors has to be generated electronically. The inverter generates this rotating field and controls the electric motor depending on the position of the accelerator. If the motor acts as an alternator during the recuperation process, the inverter will rectify the generated AC voltage, which is then stored in the traction battery and can be made available again. MAHLE inverters are modular and scalable, cover a voltage range from 400 to 800 volts, and are compatible with all common types of traction motor.
About MAHLEMAHLE is a leading international development partner and supplier to the automotive industry as well as a pioneer for the mobility of the future. The MAHLE Group is committed to making transportation more efficient, more environmentally friendly, and more comfortable by continuously optimizing the combustion engine, driving forward the use of alternative fuels, and laying the foundation for the worldwide introduction of e-mobility. The group’s product portfolio addresses all the crucial issues relating to the powertrain and air conditioning technology—both for drives with combustion engines and for e-mobility. MAHLE products are fitted in at least every second vehicle worldwide. Components and systems from MAHLE are also used off the road—in stationary applications, for mobile machinery, rail transport, as well as marine applications.
In 2018, the group generated sales of approximately EUR 12.6 billion with more than 79,000 employees and is represented in more than 30 countries with 160 production locations. At 16 major research and development centers in Germany, Great Britain, Luxembourg, Spain, Slovenia, the USA, Brazil, Japan, China, and India, more than 6,100 development engineers and technicians are working on innovative solutions for the mobility of the future.
For further information, contact: MAHLE GmbH
Christopher Rimmele
Corporate Communications/Public Relations
Pragstraße 26–46
70376 Stuttgart/Germany
Phone: +49 711 501-12374
Fax: +49 711 501-13700
christopher.rimmele@mahle.com

UPDATE 1-France engaged constructively in failed FCA-Renault talks -Le Maire

(Adds detail, background) PARIS, June 6 (Reuters) – France’s finance minister said on Thursday following the collapse of merger talks between Fiat Chrysler (FCA) and Renault that the government had engaged constructively but failed to win the support of Renault’s Japanese partner, Nissan. “An agreement had been reached on three of the four conditions. What… Continue reading UPDATE 1-France engaged constructively in failed FCA-Renault talks -Le Maire

ASI President John Cross Named AGMA Chairman

John Cross, President, ASI Drives and Chairman, American Gear Manufacturers Association (AGMA)

An AGMA board member since 2013, Cross assumed the role of chair in April, 2019.

MONTGOMERYVILLE, PA, USA, 6-Jun-2019 — /EuropaWire/ — ASI Drives, a leading manufacturer of custom engineered gear drives since 1985, has announced that its President, John Cross, has been named chairman of the American Gear Manufacturers Association (AGMA).

An AGMA board member since 2013, Cross assumed the role of chair in April. He will hold that position for a two-year term.

The AGMA, which celebrated its centennial in 2016, is active in standards development of gears and power transmission products, offers a range of in-person and online courses, and hosts events, expositions and trade missions. Many of these activities drive the development of new technology to further the role that manufactured gears play in the ever-expanding industrial sector.

AGMA member companies currently number more than 470. They include gear manufacturers from the United States, Mexico, and Canada, as well as gearing interests from more than 30 countries around the world.

“ASI is honored to have John playing such a key role in a group as important as the AGMA,” said ASI CEO Doug Fastuca. “His work on the board has already done a great deal to benefit the industry as a whole, and as chairman he is in a position to really drive change and improvement among its membership and the industry as a whole.”

For his part, Cross says this marks the culmination of his more than 20-year involvement with AGMA.

“I have used AGMA standards since I began my career in 1985,” Cross said. “I began my association with AGMA in 1997 when I started working at ASI Drives, who is a 30-year AGMA member.

“Since I joined the board in 2013 I’ve been fortunate to have developed deep, lasting relationships with many high-level business leaders across various industries. Being the Chair of AGMA‘s Board of Directors affords me the opportunity to have meaningful discussions with industry leaders throughout the world about their strategic and business plans. Learning from their experience and knowledge allows me to better address the needs of the association and its members, as well as ASI and our customers.”

About ASI
Founded in 1985, ASI Drives is a U.S. manufacturer of custom engineered gear drive solutions to the global medical mobility, floor care, material handling, warehouse automation, and robotics industries. ASI’s relentless focus on innovation in engineering and manufacturing has led to the creation of numerous industry-leading products and solutions, as well as compact and efficient gear drives, brushless motor technology, advanced gear processing, lubrications and now, an AGV. ASI is ISO 9001:2015 certified. Learn more about ASI Drives at asidrives.com.

About AGMA
The American Gear Manufacturers Association (AGMA) is a voluntary association of companies, consultants, and academicians with a direct interest in the design, manufacture, and application of gears, couplings and related power transmission components and equipment. Founded in 1916, AGMA is a member- and market-driven organization, conducting programs and providing services to the gear industry and its customers.

Media contacts:

Curt Edwards
ASI Drives
1-215-661-1002
Cedwards@asidrives.com

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Do something for our planet, print this page only if needed. Even a small action can make an enormous difference when millions of people do it!

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As the source of substantial and rapidly growing greenhouse

gas emissions, transport must clearly be part of a global agreement to mitigate

climate change. In its current form, however, the Kyoto Protocol ignores the

international maritime and aviation sectors. The omission is perhaps not

surprising — after all, setting up a system to allocate international

transport’s emissions to individual countries is no easy task. But it is a

significant flaw, since the two sectors together account for around a quarter

of all transport emissions.

Despite its shortcomings, the COP-15 climate summit in

December 2009 succeeded in bringing transport closer to climate mitigation

discussions. Almost all participants recognised that international transport

emissions need to be addressed as part of broader efforts to mitigate climate

change. Co..

Building the future of mobility with Luxoft

Building the future of mobility with Luxoft MapboxBlockedUnblockFollowFollowingJun 5 By: Alex Barth Mapbox is focused on enabling developers and car makers to build sophisticated AI and AR in-car applications, with maps that understand the driver’s environment from both a street-level perspective and a bird’s-eye view. We are excited to expand our relationship with Luxoft to accelerate… Continue reading Building the future of mobility with Luxoft

Wed 05 Jun 2019

Gordon Murray Automotive reveals details for its new ‘T.50’: the purest, lightest, most driver-focused supercar ever

Designed to the same exacting engineering standards as the driver-focused McLaren F1; improves upon its iconic predecessor in every way

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H-pattern gearbox all key to a matchless experience behind the wheel

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Unique carbon fibre tub and a focus on minimising the weight of every component underpin ‘lightweighting’ strategy – overall weight is just 980kg

New model will set new standards for supercar packaging, providing driver and two passengers with exceptional comfort, safety, practicality and luggage space

Only 100 exclusive models to be produced costing in excess of £2m (before taxes); deliveries from early 2022.

Gordon Murray Automotive, sister-business of visionary vehicle design and engineering company Gordon Murray Design, has announced details of its first vehicle – the T.50 supercar. Conceived as the spiritual successor to the Murray-devised McLaren F1, the T.50 will be the purest, lightest, most driver-focused supercar ever built.

The development of T.50 is at an advanced stage, with full production and customer deliveries set to commence in early 2022. Just 100 owners of the T.50 will experience Murray’s vision – a supercar inspired by his 50 years at the pinnacle of Formula One and automotive industry engineering and design.

Professor Gordon Murray CBE, Chairman of Gordon Murray Group, said:“An unflinching dedication to lightweighting, highly-advanced active aerodynamics and world-leading standards of advanced engineering will ensure the T.50 rewrites the supercar rulebook. Our experienced team is applying the same uncompromising approach to design and engineering that shaped every facet of the F1, and they are able to deliver substantial improvements over that car in every meaningful way.”

The engineering planning, plus all interior and exterior styling of the new vehicle has been carried out by Gordon Murray Design. It will be manufactured in the UK by Gordon Murray Automotive – a new company first announced in late 2017 at the One Formula exhibition. The event celebrated 50 years of Murray’s career in motorsport and automotive design and engineering, plus it previewed plans to build a limited-run supercar – the T.50. Every race or road car penned by Murray so far has featured a ‘T’ designation; and the T.50 will be the 50th in a highly illustrious line.

The T.50 breaks from performance-car convention, just as the F1 did in 1992. It weighs significantly less than any other current supercar. It has the most advanced aerodynamics of any road car, and it relies on design and engineering excellence to deliver the purest, most driver-focused performance and dynamics of any road car since the F1.

It will be powered by a compact and light, naturally-aspirated, all-new V12 engine. The unit will be capable of an extraordinary 12,100rpm – unparalleled in a V12 road car – and 650hp to deliver unmatched power-to-weight. However, Murray says: “I have absolutely no interest in chasing records for top speed or acceleration. Our focus is instead on delivering the purest, most rewarding driving experience of any supercar ever built – but, rest assured, it will be quick.”

The T.50 adopts the same, iconic three-seat format that Murray pioneered for the F1, with the driver benefitting from a central ‘jet-fighter-style’ driving position. The new car builds on the F1’s highly-advanced aerodynamics, taking Murray’s ground-effect innovations to an all-new level with intelligent management of underbody airflow coupled with a 400mm fan at the rear. The fan actively controls underbody airflow – a feature Murray famously premiered on the Brabham BT46B Formula One ‘Fan Car’. This approach allows the upper surfaces of the car to retain purity and beauty, eschewing the exaggerated scoops and spoilers familiar in the segment and equipping the T.50 with the most advanced aerodynamics of any road car

All engineering, design and styling of the T.50 is by Gordon Murray Design and the car will be manufactured by Gordon Murray Automotive at a new, purpose-built facility in Surrey, UK. Furthermore, all major components will be bespoke and UK-sourced, including the powertrain, body and chassis. This will be a true British supercar.

The T.50, by Gordon Murray Automotive will be priced in excess of £2 million before taxes.

T.50 IN DETAIL

Setting new standards in lightweighting, the T.50 supercar weighs significantly less than any existing supercar

“Automotive enthusiasts and road-test editors have discussed the concept of ‘peak supercar’ for some time,” says Murray. “The reality of chasing top speeds only adds weight, notably through ever-more powerful engines, which increase the requirement for larger, heavier ancillaries. We are taking a very different approach.”

Ingrained in the approach of the Gordon Murray Automotive product development strategy is a fastidious commitment to minimise weight – in every component. “This is the key to achieving enhanced performance and dynamics, and refocusing the supercar on the driver and the thrill of driving. We’re not interested in simply chasing numbers, and never will be,” asserts Murray.

Gordon Murray Automotive will produce the world’s lightest, most driver-focused supercar through sophisticated use of advanced carbon fibre engineering and this fanatical dedication to purging the vehicle of every unproductive gram.

The T.50 supercar will weigh just 980kg – around a third lighter than the average supercar – making it, by far, the lightest supercar ever.

With a clear driver-focus, the external proportions are highly compact (smaller than the footprint of a Porsche 911 at just 4,380mm long and 1,850mm wide) to optimise handling, while the interior is nonetheless spacious and comfortable for three, with ample dedicated space for luggage.

The most advanced aerodynamics of any road car

In rewriting the supercar rulebook, Gordon Murray Automotive set out to equip the T.50 supercar with the most advanced aerodynamics of any road car. The new model will feature intelligent under-body active aerodynamics, which employs continuous, dynamic and interactive underbody ground-effect systems to optimise the driving experience.

Uniquely, the supercar will feature a 400mm ground-effect fan, similar to that on Murray’s famous Brabham BT46B Formula One ‘Fan Car’. The Gordon Murray Automotive team has established a new technical partnership with a Formula One team, which will make its rolling-road wind tunnel available to develop the aerodynamics of the T.50.

With all of the car’s intelligent aerodynamic sophistication housed beneath the car, the upper surfaces are free from unsightly wings, outlets, vents and bulges, safeguarding the purity and beauty of the exterior design. The sense of drama, even when stationary, is amplified by the striking dihedral doors that hark back to the F1 – where they first appeared on a supercar.

An engineering work of art with bespoke powertrain and running gear

Through exquisite engineering, every part of the T.50 is refined to create the purest, most focused supercar ever made – “We expect this to be the last, and the greatest, ‘analogue’ supercar ever built,” says Murray.

The T.50 features a bespoke, mid-mounted, all-new V12 engine that has been designed, developed and built exclusively for Gordon Murray Automotive by Cosworth Powertrain.

The V12 3.9-litre ‘Cosworth Gordon Murray Automotive’ engine will rev to an unparalleled 12,100rpm and develops 650hp and 450Nm torque. Paired with the car’s extraordinary lightness (980kg), it achieves a power-to-weight of 663hp/ton exceeding that of any other naturally-aspirated sports car designed for the road.

The V12 Cosworth GMA engine delivers more power from four litres than the F1 produced with 6.1 litres in 1992, an achievement aided by the inclusion of roof-fed ram-air induction, which increases horsepower to around 700hp.

Cosworth Managing Director, Powertrain, Bruce Wood, said: “We are tremendously excited to be part of the T.50 supercar project, and to have the opportunity to work alongside Gordon Murray Automotive. It is a real privilege to play such a key role in the T.50 with an all-new V12 3.9-litre engine, designed, developed, manufactured and assembled by Cosworth’s industry-leading powertrain division.

“Developing an engine that delivers superlative performance, while meeting stringent emissions targets, is a challenge that demonstrates Cosworth’s unique capabilities. To be so intrinsically aligned with a supercar that puts engine performance, response and light weighting at the very heart of the driving experience is the ultimate accolade and underscores Cosworth’s reputation and capabilities as a leading OEM tier one powertrain partner.”

The Gordon Murray Automotive team was focused on producing the purest driving experience so rejected the use of turbos or electrified powertrain assistance, instead applying attention to engine response.

Murray adds: “By working with the team at Cosworth Powertrain we have created the greatest naturally-aspirated engine ever designed for the road. It is the highest revving, highest power density, lightest and fastest-responding naturally-aspirated V12 ever made for a road car.”

Power is transferred to the rear wheels via a bespoke, lightweight six-speed transmission designed in conjunction with British transmission technology specialists Xtrac. In the furtherance of maximum driver reward and low weight, Murray has specified the T.50 with a newly-designed and developed ‘H-pattern’ six-speed gearbox –..

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