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Elementum 3D and RPM Innovations, Inc., Successfully Collaborate with NASA to Advance Rocket Engine Design and Performance

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Elementum 3D, collaborating with RPM Innovations, Inc. as part of NASA’s RAMFIRE (Reactive Additive Manufacturing for the Fourth Industrial Revolution) project, designed, printed, and successfully tested a new additively manufactured rocket nozzle made from the company’s A6061-RAM2 aluminum powder. This breakthrough advances ongoing efforts to exceed current rocket performance and efficiency.

ERIE, Colo., July 25, 2024 /PRNewswire-PRWeb/ — Elementum 3D, a leading developer and supplier of metal additive manufacturing (AM) advanced materials, print parameters, and services, is pleased to share that, collaborating with RPM Innovations, Inc. as part of NASA’s RAMFIRE (Reactive Additive Manufacturing for the Fourth Industrial Revolution) project, designed, printed, and successfully tested a new additively manufactured rocket nozzle made from the company’s A6061-RAM2 aluminum powder. This breakthrough advances ongoing efforts to exceed current rocket performance and efficiency.

This breakthrough supports efforts to make large-scale nozzles, including aerospikes, available to industry. This successful project positive result allows aerospace/space engineers to see the nozzle as proof-of-concept that informs new component designs.

In October 2023, at the Marshall Space Flight Center, NASA performed what some thought was impossible: a successful hot-fire test of an additively manufactured aluminum rocket nozzle. The NASA-funded Reactive Additive Manufacturing for the Fourth Industrial Revolution (RAMFIRE) project’s goal was to transition rocket engine technology to a laser powder-directed energy deposition (LP-DED) process to enable large-scale production. The prior approach used lightweight, additively manufactured aluminum alloys printed with a laser-powder bed fusion (L-PBF) process capable of experiencing huge temperature gradients up to 6000 °F.

This breakthrough supports efforts to make large-scale nozzles, including aerospikes, available to industry. The RAMFIRE project printed a large-scale LP-DED aerospike demonstration nozzle with integral channels made of Elementum 3D’s A6061-RAM2. This successful project positive result allows aerospace/space engineers to see the nozzle as proof-of-concept that informs new component designs.

For nearly seven decades, rocket engineers have sought an alternate design to the standard bell-nozzle rocket engine. The aerospike design breaks free from the traditional design, which is efficient at only one point in the rocket’s trajectory.

Why is this innovative nozzle a sought-after option, especially since the bell nozzle is a proven design with adequate capabilities throughout the history of human spaceflight?

The aerospike’s inside-out rocket nozzle plume travels externally, rather than exiting from within a traditional bell-shaped nozzle. The main advantage is that, as the rocket climbs, atmospheric and airstream pressure keep the plume at optimum conditions along the entire trajectory. This allows highly efficient engine performance, including better performance over a range of pressures and altitudes, delivering higher payloads while decreasing overall rocket weight.

If rocket launches are more efficient using the aerospike nozzle design, why has it never been seriously tested on the launchpad?

The lack of actual flight test data has precluded use of these nozzles in current as well as next generation space launch vehicles.

Moreover, the aerospike nozzle configuration presents unique design and fabrication challenges. This and other factors have meant limited test opportunities and a dearth of actual flight test data, precluding use of the aerospike design on current and next generation launch vehicles.

Additive manufacturing has changed perspectives about the ability to test and implement the aerospike design in a cost-effective manner. NASA recently validated data from hot-fire tests on their 3D printed Rotating Detonation Rocket Engine (RDRE), which is not a traditional combustion engine, and reported that recent advancements in 3D printing can overcome some of the engine’s design challenges—specifically, how to manage its temperature. The ability to print the aerospike demonstration nozzle with a qualified high-strength, lightweight aluminum alloy is a significant step toward developing a larger version.

NASA commissioned Elementum 3D to work closely with their RAMFIRE project engineers and scientists and RPM Innovations, Inc., to develop and print a 36″-diameter aluminum aerospike rocket demonstration nozzle out of Elementum 3D’s A6061-RAM2 material. RPM Innovations performed the build with its large-format LP-DED process. DED uses a focused energy source to create 3D printed parts with powder or wire feedstock. With DED, metal deposition and fusion occur simultaneously. A nozzle deposits material into the focused beam of a high-power laser under tightly controlled atmospheric conditions. The feedstock melts and deposits as the tool path progresses.

REM Surface Engineering supported the RAMFIRE project’s post-production with its Extreme ISF Process. They uniformly removed ~400 µm of surface material from the aerospike nozzle surface, which reduced surface roughness/waviness and hot-wall thickness. The benefits of improving the hot wall surface texture include extending the nozzle’s fatigue life and creating a more uniform surface for heat transfer/heat pickup properties. The wall thickness reduction can also bring DED parts into final geometric tolerances. While not performed on this unit, internal channel finishing for rocket nozzles and similar components can reduce particle shedding and pressure drop caused by as-printed roughness.

Why has it taken almost 70 years to successfully produce a lightweight, high-strength aluminum rocket engine?

For one thing, the design requires conformal cooling channels to flow cryogenic propellants that keep the nozzle well below the material’s melting temperature. Internal channels are an additive manufacturing specialty and are far too complex to create with traditional machining processes.

Second, metal additive manufacturing via laser melting processes only became industrialized in the past few decades as computer, automation, and laser technology grew more sophisticated and affordable.

Finally, the ability to additively manufacture aerospace-grade aluminum has only become possible in the past decade. Since 2014, Elementum 3D has gained extensive knowledge and experience developing “impossible-to-print” high-strength aluminum feedstock powders with its patented RAM (Reactive Additive Manufacturing) technology.

Standard aluminum alloys are highly prone to a type of cracking called hot tearing under the rapid heating and cooling conditions inherent to laser welding processes. Industry considers popular wrought aluminum alloys, including AA6061, un-weldable for this reason. Elementum 3D’s RAM chemistry controls the solidification process, producing crack-free, fine-grained microstructures and printed material with strength equal–and in some cases superior–to wrought aluminum.

Will the combination of A6061-RAM2’s optimized thermal and mechanical properties and the design freedom of additive manufacturing be the path to designing and manufacturing new, innovative rocket engines that rival the efficiency of an aerospike rocket engine?

Only time and further research can answer that question. The research data acquired from optimizing A6061-RAM2 aluminum alloy for large blown-powder DED improves engineers’ confidence in the ability to improve rocket efficiency to meet or exceed the aerospike’s performance.

About Elementum 3D, Inc.

Elementum 3D specializes in materials and process development and creating advanced metal alloys and metal ceramic composites. Elementum 3D developed and patented its reactive additive manufacturing (RAM) materials technology, enabling high-performance materials printing which has not been previously possible. The company has several novel feedstock powders with printing parameters available for purchase, and it excels in developing custom materials tailored for specific applications. Elementum3D provides the materials freedom to help companies around the world in their quest to increase product strength, durability, and performance, while reducing weight and cost. Find and follow Elementum 3D on Facebook, Twitter, LinkedIn, and YouTube.

Media Contact

Patrick Callard, Elementum 3D, 1 720-545-9016 37, patrick@elementum3D.com, www.elementum3D.com 

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“MLOVE” Rangers Speakers to be unveiled at Global Sources Consumer Electronics Show 2024.10

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SHENZHEN, China, Sept. 29, 2024 /PRNewswire/ — MLOVE, announces its participation in the Global Sources Consumer Electronics Show during October 11 to 14, 2024 in Hong Kong. We look very much forward to offering 7 original and pioneering Busking Speakers from MLOVE Rangers Series.

To further expand MLOVE on the global market and have more face-to-face communications with our customers and agents, we are scheduled to attend the Global Sources Consumer Electronics Show.

Come and Join Us at:
Booth No.: Hall1, 1D26
Time: October 11 – 14, 2024
Address: AsiaWorld-Expo • Hong Kong

About Global Sources Consumer Electronics Show

Global Sources Consumer Electronics show, the world’s largest export-centered electronics sourcing trade show, features over 3,100 booths offering a whole host of industry innovations, which cover 9 major product categories including smart wearables, TWS, AR/VR, energy storage, solar energy, and charging stations — all in high demand for the world’s buyers. Aside from their diversity, what these products share in common are strong branding, intelligence, and innovative design.

Introducing 7 New Masterpieces: Rangers Busking Speakers

MLOVE S3 Pro, S1, S5 ,D5, D4, D6, D8 Pro

Three Main Functions In One Speaker  

Playing Music Speaker
Sound is the soul of the speaker. We are committed to shaping the sound characteristics of our own style with deep and dynamic bass, clean and clear vocal, stable treble, bass, vocal, and treble balance so that every note is full of our persistence and passion, bringing users an unprecedented auditory feast.

Karaoke Speaker
Support 2 wireless UHF microphones,
high quality metal housing and cardioid voice collection Microphone
Multi channels timbre adjustment independently, customized your tone

Musical Instrument Amplifier
This function specially developed for musical instrument lovers
Portable size, you can make a street busk with your friends easily
Different musical instruments assigns independent impedance matching tap
Maximizes the musical instrument’s sound

Other Special Features:
100+ Connections Together
Reverse Charging other devices
Wireless/Wired Recording
OTG playing and charging
Wireless/Wired Live Streaming

About MLOVE

Established in 2008, the MLOVE factory is a national high-tech enterprise that integrates ID design, research and development, production, and sales and after-sales service. It is also a specialized and innovative enterprise in the Guangdong Province. MLOVE factory has a modern independent industrial park of 30,000 square meters, strategically cooperated with SMT and injection molding suppliers.

Currently, MLOVE product line includes Rangers Karaoke and musical instrument speaker series, retro home speaker series, and portable outdoor speaker series.

We will continue to pursue excellence and provide customers with higher quality products and services.

Thank you for your attention. We look forward to establishing a long-term and stable cooperative partnership with customers all over the world.

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Good Media: Two Guinness World Records Set! Shenzhen’s stunning drone show kicks off National Day celebrations

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SHENZHEN, China, Sept. 29, 2024 /PRNewswire/ — On the evening of September 26, Shenzhen hosted a spectacular drone show themed “City of Sky, Maybe Shenzhen” above Shenzhen Bay Park. A total of 10,197 drones took to the sky simultaneously, setting two Guinness World Records: “The most multirotor/drones airborne simultaneously from a single computer (outdoors)” and “The largest aerial image formed by multirotors/drones”.

The drone light show was a breathtaking spectacle. A vast array of drones came together to form a stunning starry sky, making the audience feel as though they were floating in an endless universe. What truly amazed the crowd was the sight of a floating “Sky City” materializing in midair, intertwined with iconic Shenzhen elements like the city’s landmarks, light shows, and scenes of Wing Chun, all symbolizing the limitless future of Shenzhen. Following this, dazzling “cyber fireworks” lit up the night, painting a vibrant picture of Shenzhen as a “City of Miracles, City of Innovation, City of Future”. 

The drones’ kaleidoscopic display in the night sky was not just a technological and visual feast but also a vivid demonstration of Shenzhen’s limitless potential as a “Sky City” for global visitors. 

It is worth noting that this drone show was just the beginning. During the National Day Holiday, Shenzhen will continue the drone performances for seven consecutive days. Daily shows will feature 10,000 drones across five districts in a relay format. 

To welcome global tourists to experience low-altitude tourism, starting from September 23, Shenzhen has been offering special holiday packages for seven consecutive days. This includes 10,000 low-altitude flight experience vouchers, allowing visitors to enjoy helicopter rides and take in the stunning urban landscapes, mountains, and coastal vistas of Shenzhen from above. 

In addition, Shenzhen will host over 300 highlight cultural and tourism activities. It will also offer more than 40,000 discounted attraction tickets, 2,000 free admission tickets, and 1,000 Shenzhen Airlines upgrade vouchers, inviting tourists from around the world to join in this grand autumn tourism celebration.

 

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SOURCE Good Media

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Huawei and Shenzhen Welkin School Unveil the All-Scenario Wi-Fi 7 Smart Campus Showcase

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SHANGHAI, Sept. 29, 2024 /PRNewswire/ — September 21, 2024, during HUAWEI CONNECT 2024, the Huawei Commercial Market Summit was held with the theme of “Joining Hands with Partners to Amplify Intelligence for SMEs”. At this event, Tang Xingchu, Vice Principal of Shenzhen Welkin School, China, shared their unique design-based research practices, and unveiled the all-scenario Wi-Fi 7 smart campus showcase together with Huawei.

Shenzhen Welkin School is a platform-centric school known for new teaching paradigms directly under the Shenzhen Municipal Education Department, China. As its innovative cloud-based teaching requires best-in-class network infrastructure, the school ultimately singled out Huawei’s High-Quality Campus Network Solution to inspire more digital innovations and practices.

Huawei’s solution offers full Wi-Fi 7 coverage with high bandwidth, low latency, and high concurrency needed for always-smooth interactive teaching. It also leverages cutting-edge technologies, such as intelligent application identification and “VIP FastPass”, to achieve HD video at low bit rates and lip synchronization in cloud-based classrooms.

Another notable highlight is intelligent operations and maintenance (O&M) with iMasterNCE-CampusInsight. The resulting benefits include campus network visualization, easy management, full visibility into connection and experience status, fast fault locating in minutes, and zero network complaints from staff and students.

Tang Xingchu spoke highly of Huawei’s High-Quality Campus Network Solution, saying that Huawei’s solution enables ultimate experience and has provided strong support for the school’s future-proof digital journey.

Also at the event, Tang Xingchu and Huawei executives jointly unveiled the all-scenario Wi-Fi 7 smart campus showcase. This showcase is located at the Shuxiang Experimental School in Bantian, Shenzhen, where visitors can experience the unique benefits of Wi-Fi 7 in diverse scenarios, such as classrooms, auditoriums, and office buildings. This showcase is expected to be officially opened at the end of September 2024. All education players, including customers and partners, are welcomed to reserve a visit to this showcase.

 

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SOURCE Huawei

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