AEROSPACE AND DEFENSE

Metal 3D Printing Solutions for Aerospace and Defense Embark on a journey with Laseradd’s additive manufacturing solutions for Aerospace and Defense. Laseradd systems assist in achieving industry-standard certifications, enabling the production of intricate parts that are difficult to machine. This enhances component performance and functionality. Selective Laser Melting offers engineers the flexibility to consolidate parts, reducing both weight and cost. Ultimately, it enables strategic decisions regarding weight allocation.

Whether you are manufacturing a single unit or multiple units, the possibilities are boundless. We are committed to ensuring your success in metal additive manufacturing. Explore the wide range of manufacturing opportunities in the Aerospace and Defense sector using Laseradd’s SLM technology.

SUCCESSFUL STORIES
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    Key Component for a Bizjet from Safran
    Machine: Laseradd Di-Metal 650
    Material: Titanium
    In a collaborative effort, Safran Landing Systems and Laseradd Solutions conducted a pioneering test of Selective Laser Melting technology to manufacture a crucial component for a bizjet's nose landing gear. This groundbreaking endeavor marked the world's first attempt to produce such a large part using this method. The primary aim of this initiative was to showcase the feasibility of creating a key component through the Selective Laser Melting process. Consequently, the component underwent a redesign to optimize it for metal-based additive manufacturing. This not only resulted in time savings throughout the process but also achieved a substantial weight reduction of approximately 15% for the component.
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    Key Component for a Bizjet from Safran1
    Machine1: Laseradd Di-Metal 6501
    Material: Titanium1
    In a collaborative effort, Safran Landing Systems and Laseradd Solutions conducted a pioneering test of Selective Laser Melting technology to manufacture a crucial component for a bizjet's nose landing gear. This groundbreaking endeavor marked the world's first attempt to produce such a large part using this method. The primary aim of this initiative was to showcase the feasibility of creating a key component through the Selective Laser Melting process. Consequently, the component underwent a redesign to optimize it for metal-based additive manufacturing. This not only resulted in time savings throughout the process but also achieved a substantial weight reduction of approximately 15% for the component.

LASERADD MATERIALS FOR AEROSPACE & DEFENSE APPLICATIONS

Laseradd offers a comprehensive selection of materials tailored to meet the exacting standards of aircraft engine manufacturers in the aerospace industry for both metallographic and mechanical properties.

OUR MATERIAL PORTFOLIO COMPRISES

  • 1

    Nickel-Based Alloys: Laseradd IN625, Laseradd IN718, and Laseradd HX

  • 2

    Titanium-Based Alloys: Laseradd TiAl6V4

  • 3

    Aluminum-Based Alloys: Laseradd AlSi10Mg

OUR MATERIAL PORTFOLIO COMPRISES
Devices that you may interested
  • M500 Printer
    M500 Printer

    M450E: Domestic Laser 500W×2 M450ED: Domestic Laser 500W×4 M450H: IPG Laser 500W×2 M450HD: IPG Laser 500W×4

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  • M450 Series Printers
    M450 Series Printers

    M450E: Domestic Laser 500W×2 M450ED: Domestic Laser 500W×4 M450H: IPG Laser 500W×2 M450HD: IPG Laser 500W×4

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  • M50 Series Printer
    M50 Series Printer

    M50E: Domestic Laser 30W×1 M50H: IPG Laser 70W×1

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