AEROSPACE AND DEFENSE

Metal 3D Printing Solutions for Aerospace and Defense Explore Laseradd’s Metal 3D Printing Solutions for Aerospace and Defense, facilitating industry certifications and producing intricate, hard-to-machine parts. Our systems enhance component performance and functionality while enabling weight and cost reduction through Selective Laser Melting. Whether a single unit or multiple, our commitment ensures success in metal additive manufacturing for the Aerospace and Defense sector. Let’s discover limitless manufacturing opportunities with Laseradd’s SLM technology.

SUCCESSFUL STORIES
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    Key Component for a Bizjet from Safran
    Machine: Laseradd Di-Metal 650
    Material: Titanium
    Safran Landing Systems and Laseradd Solutions collaborated on a groundbreaking test of Selective Laser Melting (SLM) technology for a bizjet's nose landing gear component. This marked the world's first attempt at manufacturing such a large part through SLM printing techonique. The initiative aimed to demonstrate the feasibility of creating a key component via SLM, leading to a redesigned, optimized version for metal-based additive manufacturing. The result: significant time savings and a substantial 15% weight reduction for the component.
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    Monolithic Thrust Chamber - Laseradd
    Machine: Laseradd 280H
    Material: IN718
    Layer Thickness: 30µm
    Build Time: 3 days 5 hours 25 minutes (Maximized Build Chamber, 1 Unit)
    Monolithic Thrust Chamber printed by Laseradd's metal 3D printer incorporates an innovative lattice structure for improved functional cooling and enhanced stability. This efficient design consolidates multiple parts into a single component, reducing production time from months to days.
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    Gooseneck Kueger Flap Actuation Bracket - Laseradd
    Machine: Laseradd® 280HD
    Material:: Ti6Al4V
    Layer Thickness: 30µm
    Build Time: 1d 19h 11m (Maximized Build Chamber, 2 Units) Laseradd's Additive Manufacturing Efficiency
    • Achieved 31% weight reduction and shorter assembly time. • Innovative design integrates three parts into a single component. • Improved buy-to-fly ratio from 17 to 1.5. • Build time reduced by 42% compared to single-laser machines.

Laseradd Materials for Aerospace & Defense Applications

Laseradd provides a wide range of materials that meet the rigorous metallographic and mechanical properties of aircraft engine manufacturers in the aerospace industry.

OUR MATERIAL PORTFOLIO COMPRISES

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

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    Titanium-Based Alloys: Laseradd TiAl6V4

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    Aluminum-Based Alloys: Laseradd AlSi10Mg

OUR MATERIAL PORTFOLIO COMPRISES
Devices that you may interested
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