Page 19 - Autumn 2024
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Industry News


          Dr. Yuri Gogotsi, Distinguished University and Bach   Author of the paper Dr. Omid Niksan of the
          Professor at the Drexel College of Engineering,       University of British Columbia adds:
          and Co-author of the research, states:
                                                                “ Our goal here was to simultaneously improve the
          “ For wireless technology to support                  adjustability of antenna performance as well as
          advancements in fields like soft robotics and         create a simple manufacturing process for new
          aerospace, antennas need to be designed               microwave components by incorporating a versatile
          for tunable performance and with ease of              MXene nanomaterial with kirigami-inspired designs.
          fabrication. Kirigami is a natural model for a         The next phase of this research will explore new
          manufacturing process due to the simplicity with       materials and geometries for the antennas.”
          which complex 3D forms can be created from a          Reference: Gittins, C., ‘Harnessing the ancient Art of Kirigami to create
          single 2D piece of material.”                         Antennas’, IoT Insider, 20th. October.





                                                                                             Industry News
 KIRIGAMI INSPIRES


 CREATION OF ANTENNAS





          NEW MILESTONE FOR

          WIRELESS ELECTRIC


 Researchers from the University of British   MXenes are already widely used in   VEHICLE CHARGING
 Columbia in Canada and Drexel University in   electromagnetic shielding, biofiltration and
 the United States are now turning to the ancient   energy storage. They are also highly efficient
 Japanese art of kirigami, the art of cutting and   in transmitting radio waves and can be readily
 folding paper to create designs, as a model for   adjusted to block and allow the transmission of
 the future manufacturing of antennas.  electromagnetic waves, making them potentially
 suitable for telecommunications.
 Kirigami was used to turn a single sheet of
 acetate coated with conductive MXene ink into a   The methodology involved use of kirigami to
 flexible 3D microwave antenna, the transmission   make a series of parallel cuts in the MXene
 frequency of which was able to be changed by   coated surface. By tugging at the end of the   Researchers at the Oak Ridge National
 pulling or squeezing it, representing a new way   sheet an array of square shaped resonator   Laboratory, in collaboration with Volkswagen
 of quickly and cost-effectively manufacturing   antennas were enabled to spring from the 2D   Group of America, have successfully
 an antenna by coating MXene ink onto a clear,   surface, causing the angle of the array to shift.  demonstrated a wireless power transfer of
 elastic polymer substrate material.  270 kW to a Porsche Taycan, a new record for
 Two kirigami antenna arrays were tested and a
          wireless electric vehicle charging.
 Typically, microwave antennas are reconfigured   prototype of a co-planar resonator subsequently
 either electronically or by changing their shape.   created. Such a component was envisaged to be   Current industry standards for wireless charging
 Adding the necessary circuitry to control it   particularly useful in the development of  certain   systems for light-duty vehicles cap at 20 kW
 electronically tends to increase complexity with   types of sensors.  with efficiencies at 92 per cent. Now, by utilising
 the result that the antenna becomes bulkier,   uniquely designed lightweight polyphase
 The resulting antennas were found to be effective
 vulnerable to malfunction and more expensive to   electromagnetic coupling coils, a much higher
 at transmitting signals in the frequency bands of
 manufacture. That leaves changing the shape of   power density has become possible, reducing
 2-4 GHz, 4-8 GHz and 8-12 GHz. It was also found
 the antenna as the alternative.  the size and weight of the charging system that is
 that altering the geometry and direction of the
          integrated into the undercarriage of the vehicle.
 The researchers created a variety of shapes   substrate could enable the waves from each
 and forms with flexible, lightweight and durable   resonator to be redirected.  Omer Onar, Leader, Vehicle Power Electronics
 features that are important for moveable   Group at ORNL, says:
 Under test the frequency produced by the
 robotics and aerospace applications. MXene
 resonator was observed to shift by 400 MHz as   “ The receiver coil designed for the Porsche   Further research is looking at the use of rotating
 ink was coated onto a sheet of acetate where it
 its shape was changed, a useful property for   Taycan research vehicle can achieve eight to ten   electromagnetic fields to enhance efficiency and
 can adhere strongly to the substrate and can be
 potential use as a strain sensor for the monitoring   times higher power density compared to existing   reduce voltage issues.
 adjusted to the transmission specifications of the
 of infrastructure conditions.  systems.”
 antenna.                                                       Reference: ‘US Researchers achieve new Milestone for wireless EV
                                                                Charging’, Electrical Review, 2nd. August.
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