In the rapidly developing world of electromobility, precision and efficiency play a decisive role in production technology. The HLC 150 H high-performance gear cutting machine from EMAG KOEPFER represents a revolutionary solution in this context. This machine, which is characterized by its universality, precision and performance, was specially designed for the demanding task of machining tooth profiles in electric car components. With the increasing demand for quiet and efficient electric vehicles, the requirements for the machining quality of the components are also increasing. The HLC 150 H meets these challenges with advanced technology and an impressive range of machining options. In this blog post, we take a look at the special features and technical innovations of this machine and shed light on how it is driving production in the e-car sector.
Tag:
E-Mobility
The monthly number of new registrations of e-cars in Europe is currently increasing – and with it the required quantities for the e-drive components. The example of the supplier Linamar Technology Hungary shows how the production task behind this can be solved effectively. The e-drive specialists have recently invested in EMAG machines for the production of shafts and gears. A conversation with István Bíró, Project leader at Linamar Technology Hungary, about the new solution at the site in Békécsaba.
As a mechanical engineering company, EMAG is making an important contribution to establishing electromobility: The specialists are developing the production technology that can manufacture central components of the electric motor – on a turnkey basis. A new production line for the rotor shaft of electric cars used by a German components supplier illustrates their approach. The solution was delivered at the end of last year. Here we have a conversation with Andreas Bucher, Key Account Manager at EMAG, and Michael Ihring from EMAG Systems about the reasons for this cooperation.
Particular precision is essential for the e-drive market: Many components require perfect surfaces – this ensures smooth running at the high torques of the electric motor. The example of “tooth flank grinding” with machines from EMAG SU shows how suppliers, general transmission manufacturers and OEMs can implement this requirement: The grinding specialists have, for example, a special axis concept in the G 160 machine that guarantees microscopically perfect surfaces. A conversation with Alexander Morhard from EMAG SU about EMAG SU’s mechanical engineering solutions for tooth flank grinding.
How stable is the current growth in the construction and utility vehicle industries?
by Markus Isgro
Whether excavators, trucks or buses – the market for construction machinery and utility vehicles has been on the upswing for a while now. Where does this success come from and what role will electric drives play in the future? We will examine this by exploring the current situation.
In the past year, for the first time ever, more than 2 million electric vehicles were sold worldwide as reported by the Center of Automotive Management (CAM). With 60% of the worldwide demand, China is the main driver of this development.
The transformation in the automotive industry is coming fast, and those affected should prepare now— this was the primary message at the 2019 EMAG Technology Forum. The event provided a lot of food for thought for attendees. Which key messages stood out?
Presentations at the EMAG Group’s 2019 Technology Forum
Part 3: Tomorrow’s Mobility—Connected Cars
A guest presentation by Prof. Stefan Bratzel, Center of Automotive Management
Over the next few weeks, this multi-part series will be detailing the contributions of our guest speakers at the EMAG Group’s Technology Forum, to be held on May 15 and 16 in Salach, Germany.
In this blog, we’d like to present the contribution made by Prof. Stefan Bratzel, Director of the Center of Automotive Management (CAM). The CAM is an independent scientific institute for empirical automotive and mobility research, as well as, for strategic advice at the FHDW (university of applied sciences) in Bergisch Gladbach, Germany. The institute’s research mainly focuses on questions for the future, such as e-mobility, networked vehicles, mobility services and autonomous driving. In addition, the Center of Automotive Management jointly awards the yearly AutomotiveINNOVATIONS Award together with PricewaterhouseCoopers (PwC) and thus rewards the year’s most innovative car manufacturer and supplier. The AutomotiveINNOVATIONS study identifies the future trends of automotive groups based on the CAM database of technical innovations in the automotive field.
Presentations at the EMAG Group’s 2019 Technology Forum
Part 4: Low-Emission Zones and Diesel Bans—Opportunities for an E-Mobile Future?
A guest presentation given by Prof. Matthias Klingner, Head of the Fraunhofer Institute for Transportation and Infrastructure Systems
Over the next few weeks, this multi-part series will be going into detail about the contributions of our guest speakers at the EMAG Group’s Technology Forum, to be held on May 15 and 16 in Salach, Germany.
In this blog, we’d like to present information about the contribution to be made by Prof. Matthias Klingner, Head of the Fraunhofer Institute for Transportation and Infrastructure Systems (IVI). The Fraunhofer IVI in Dresden, Germany, conducts research in the fields of vehicle and drive technology, as well as intelligent transport systems all the way to the areas of materials planning and logistics. The institute has also contributed to the development of the German mobile ticketing system, HandyTicket Deutschland, and has shown how e-mobility can be implemented in a meaningful way in public transportation with AutoTram® Extra Grand and the quick-charging electric bus.
One aspect that is often left out of the discussions about e-mobility is the corresponding transformation in car production: Planners must establish new solutions that enable efficient and holistic manufacturing of “e-components” in significantly higher unit volumes. EMAG Systems is prepared for this!
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