3D Printing
News Videos Newsletter Contact us
Home / 3D Printing Metal / 3D Printed Liquid Rocket Injector Head Reduces Weight, Heat, and Lead Times
qidi

3D Printed Liquid Rocket Injector Head Reduces Weight, Heat, and Lead Times

July 27, 2020

When the engineers at the German Aerospace Center (Deutsches Zentrum für Luft- und Raumfahrt, or DLR) Institute of Structures and Design were tasked with designing the liquid rocket engine injector head for the European Union Horizon 2020 project called SMall Innovative Launcher for Europe (SMILE Project), they turned to 3D printing knowing that it could easily handle the complex design.

3D Printed Liquid Rocket Injector Head Reduces
The metal printed injector head features a 30:1 parts count reduction and 10% weight reduction.

In rocketry, solid fuel is a common propellant because it burns more predictably than liquid fuels and it can be stored for long periods without much degradation. Modern rocketry has embraced reusability, and since solid fuels do significant damage to the rocket, liquid fuels are the preferred option for today’s reusable rockets. Refurbishing and reusing rockets allows DLR to offer more cost-effective options for small satellite launchers. But reusability comes at the cost of increased complexity, which is why the team turned to AM.

Managers of the DLR team Markus Kuhn and Ilja Müller partnered with 3D Systems’ Customer Innovation Center (CIC) in Leuven, Belgium to design the injector head. “Based on the success of space related initiatives involving DMP (Direct Metal Printing), we thought that 3D Systems was perfectly suited for providing the design-for-manufacturing aspects of the injector head, with an eye on new possibilities for sensor integration and fuel and coolant distribution,” said Kuhn. By 3D printing the injector head, they were able to reduce the assembly’s parts from 30 to 1, achieving a weight reduction of 10%. The monolithic component is not only stiffer and lighter but also includes cooling channels that improve efficiency and propulsion. As it’s printed in LaserForm Ni718 (A), an Inconel alloy, it’s resistant to oxidation and corrosion. That’s especially important because the injector head is where the fuel and the oxidizer enter the combustion chamber. The material performs well at cryogenic temperatures up to 700°C, which is equally important since it’ll be going into space.

Koen Huybrechts, a project engineer for 3D Systems, knew that their design had performance-enhancing features that could only be produced with a highly accurate metal 3D printer so he helped the DLR team choose the ideal technology – Direct Metal Printing.

  • Direct Metal Printing Design Guide Direct Metal Printing Design Guide

    This guide starts with the basics of how metal powder is sintered by lasers and expands on design techniques to drive efficiency.

    Learn More
  • NuVasive Taps AM Ecosystem to Optimize Spine Implant Technology NuVasive Taps AM Ecosystem to Optimize Spine Implant Technology

    Spinal device company goes from additive manufacturing novice to full product line of optimized 3D printed implants in one year.

    Learn More
  • Metal 3D Printed Conformally-Cooled Injection Mold Increases Production Rate by 30% Metal 3D Printed Conformally-Cooled Injection Mold Increases Production Rate by 30%

    3D Systems’ metal AM and Cimatron mold design software deliver mold inserts that dramatically reduce cooling cycles.

    Learn More
  • Optimize Fluid Dynamics with 3D Printing Optimize Fluid Dynamics with 3D Printing

    3D printing has enabled unprecedented improvements in fluid dynamics applications..

    Learn More

Beyond improving mechanical and thermal performance, consolidating the injector head down to a single part drastically shortened the lead time of production by bypassing the sourcing and assembling of all of those different parts. The benefits don’t stop there. Without the design restrictions imposed by traditional manufacturing methods, the engineers could implement coaxial injection techniques that optimize oxidizer-fuel mixing via a double-swirl shape. Such a shape would be next to impossible to manufacture without 3D printing.

Computational simulations indicated that the design produced favorable mixing and combustion efficiencies, and hot-fire testing of the printed part showed the same results, validating both the accuracy of simulating 3D printable designs and the functionality of the 3D printed injector head itself. Müller doesn’t mince words about the benefits of using AM for this project, stating, “We think we can safely say that the integrated functionalities of the 3D printed injector head are superior and the production times and costs lower when compared to state-of-the-art equivalent parts manufactured via conventional methods.”

Images courtesy of 3D Systems

Share:
WhatsApp Twitter Facebook LinkedIn Buffer Reddit E-mail
About the author | Cameron Naramore
Cameron is a 3D printer and CNC operator. He's fond of cooking, traveling, and science fiction.
Join our newsletter

Our newsletter is free & you can unsubscribe any time.

Latest posts

Swiss Steel Group’s Ugitech Introduces Custom Wire for 3D Metal Printing

Swiss Steel Group and its French subsidiary Ugitech have launched UGIWAM wire, a new product designed for wire arc additive manufacturing (WAAM). The... read more »

3D Printing Metal
Swiss Steel Group's Ugitech Introduces Custom Wire for 3D Metal Printing

QIDI Launches Q2 3D Printer for Home Users with Industrial-Grade Features

QIDI Tech has introduced the QIDI Q2, a compact, beginner-friendly desktop 3D printer engineered to bring professional-grade capabilities into the home. Designed as... read more »

3D Printers
QIDI Launches Q2 3D Printer for Home Users with Industrial-Grade Features

Purdue University Partners with Thermwood to Integrate Simulation with Large-Scale 3D Printing

Purdue University's Composites Manufacturing and Simulation Center has partnered with Thermwood to combine predictive simulation technology with large-scale 3D printing for composite parts... read more »

News
Purdue University Partners with Thermwood to Integrate Simulation with Large-Scale 3D Printing

University of Wyoming Researcher Receives NSF Grant to Study 3D Printing of Soft Materials

Daniel Rau, an assistant professor of mechanical engineering at the University of Wyoming, has received a $198,932 grant from the National Science Foundation... read more »

Materials
University of Wyoming Researcher Receives NSF Grant to Study 3D Printing of Soft Materials

Researchers Develop Real-Time Control System for 3D Printing of Thermosetting Polymers

Researchers led by Mejia et al. have developed a real-time monitoring and control system for direct ink write (DIW) 3D printing of thermosetting... read more »

Materials
Researchers Develop Real-Time Control System for 3D Printing of Thermosetting Polymers

Central Saint Martins Graduate Creates 3D Printed Tennis Balls

Central Saint Martins graduate Noé Chouraqui has developed Point, a 3D-printed tennis ball made from bio-based, recyclable filament. The balls maintain the traditional... read more »

News
Central Saint Martins Graduate Creates 3D Printed Tennis Balls

ETH Zurich Develops 3D Printed Heart Patch That Integrates with Cardiac Tissue

Researchers at ETH Zurich and the University Hospital of Zurich have developed a new type of cardiac patch designed to both seal and... read more »

Medical
ETH Zurich Develops 3D Printed Heart Patch That Integrates with Cardiac Tissue

RAF Installs First In-House 3D Printed Component on Operational Typhoon Fighter Jet

The Royal Air Force has installed its first internally manufactured 3D printed component on an operational Typhoon fighter jet at RAF Coningsby this... read more »

Aerospace
RAF Installs First In-House 3D Printed Component on Operational Typhoon Fighter Jet

Researchers Study Mollusk Teeth Formation to Advance 3D Printing Materials

Researchers from the University of California, Irvine and Japan's Okayama and Toho universities have published findings about how chitons develop their exceptionally hard... read more »

Materials
Researchers Study Mollusk Teeth Formation to Advance 3D Printing Materials

3D Printed Modular Bridge Displayed at Venice Exhibition Features Demountable Design

A 3D-printed concrete bridge called Diamanti has been unveiled at the Time, Space, Existence exhibition in Venice as part of a research collaboration... read more »

Construction
3D Printed Modular Bridge Displayed at Venice Exhibition Features Demountable Design

Social

  • Facebook Facebook 3D Printing
  • Linkedin Linkedin 3D Printing
Join our newsletter

Our newsletter is free & you can unsubscribe any time.

Featured Industries

  • Automotive
  • Aerospace
  • Construction
  • Dental
  • Environmental
  • Electronics
  • Fashion
  • Medical
  • Military
  • QIDI Tech Q1 Pro

    • - Print size: 245 x 245 x 245 mm
    • - 600mm/s max speed
    More details »
    $449.00 QIDI Store
    Buy Now
  • QIDI Plus4

    • - Print size: 305 x 305 x 280 mm
    • - print temperature of 370°C
    More details »
    $799.00 QIDI Store
    Buy Now
  • Snapmaker Artisan Premium 3-in-1

    • - Print size: 400 x 400 x 400 mm
    • - comes with enclosure
    More details »
    $2,999.00 Snapmaker
    Buy Now
  • QIDI Tech X-Max 3

    • - Print size: 325 x 325 x 315 mm
    • - fully enclosed
    More details »
    $799.00 QIDI Store
    Buy Now

Company Information

  • What is 3D Printing?
  • Contact us
  • Join our mailing list
  • Advertise with us
  • Media Kit
  • Nederland 3D Printing

Blog

  • Latest News
  • Use Cases
  • Reviews
  • 3D Printers
  • 3D Printing Metal

Featured Reviews

  • Anycubic Photon Mono M5s
  • Creality Ender 5 S1
  • The Mole 3D Scanner
  • Flashforge Creator 3 Pro

Featured Industries

  • Automotive
  • Aerospace
  • Construction
  • Dental
  • Environmental
  • Electronics
  • Medical
  • Military
  • Fashion
  • Art
2025 — Strikwerda en Dehue
  • Home
  • Join our mailing list
  • Contact us
Blog
  • Latest News
  • Use Cases
  • Reviews
  • 3D Printers
  • 3D Printing Metal
Featured Industries
  • Automotive
  • Aerospace
  • Construction
  • Dental
  • Environmental
  • Electronics
  • Medical
  • Military
  • Fashion
  • Art
Company Information
  • What is 3D Printing?
  • Contact us
  • Join our mailing list
  • Advertise with us
  • Media Kit
  • Nederland 3D Printing