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Backed by 26 years of professional OEM&ODM advanced manufacturing experience and ISO 9001, IATF 16949, and ISO 13485 certifications, Dawang Precision is a trusted provider of Custom Metal 3D Printed Lattice Structure Component for high-performance industrial, aerospace, and medical equipment enterprises. Manufactured via industry-leading SLM/DMLS metal additive manufacturing, this advanced lightweight component delivers an exceptional strength-to-weight ratio, optimized thermal performance, and design flexibility unmatched by conventional machining.
Our Metal 3D printed lattice structure components are built directly from your STEP/STL 3D models, with full topology optimization tailored to your specific load, thermal, and environmental requirements. Through custom gyroid or honeycomb internal lattice geometry, we achieve 30-70% weight reduction compared to solid machined equivalents, while maintaining superior stiffness and structural integrity for the most demanding applications.
Dawang Precision excels in metal additive manufacturing, producing ultra-lightweight lattice structure components using advanced SLM/DMLS technology. This titanium part features an internal honeycomb lattice for exceptional stiffness while reducing weight by up to 70% compared to solid machined equivalents—perfect for high-performance applications requiring minimal mass and maximum durability.
Fully customizable from your 3D models (STEP/STL), we optimize topology for your specific load and thermal requirements. Dawang transforms complex lightweight design challenges into reliable, high-value solutions.
Parameters | Specification | Notes |
|---|---|---|
Material | Ti-6Al-4V Titanium Alloy (Grade 5) | Aluminum, Inconel options available |
Manufacturing Method | SLM/DMLS Metal 3D Printing | Post-processing optional |
Lattice Type | Gyroid/Honeycomb (customizable) | Topology optimized |
Wall Thickness | 0.3-1.0mm (typical) | Ultra-thin for weight reduction |
Tolerance | ±0.05-0.1mm | High precision |
Surface Finish | As-printed or polished (Ra 1.6-6.3) | Heat treatment available |
Weight Reduction | 30-70% vs traditional parts | Depending on design |
Custom Size | Up to 300x300x400mm build volume | Larger via assembly |
Our Topology optimized aerospace part features custom-engineered lattice infill, delivering dramatic weight savings without sacrificing load-bearing capacity. This ultra-lightweight design reduces inertial load, improves energy efficiency, and enhances payload capacity for aerospace and automotive applications, while meeting strict structural safety standards.
Available in premium Ti-6Al-4V (Grade 5) titanium alloy, AlSi10Mg aluminum, and Inconel 718, our Lightweight titanium component offers exceptional high-temperature resistance, corrosion protection, and fatigue strength. We provide optional heat treatment and surface polishing (Ra 1.6-6.3) to meet the strict material and finish requirements of aerospace, medical, and industrial applications.
Our Custom metal 3D printing service unlocks unlimited design freedom, enabling complex internal geometries and organic shapes impossible to produce with traditional machining. We integrate built-in mounting flanges and precision holes for seamless assembly, eliminating multi-part welding and cutting your assembly costs. With rapid prototyping capabilities, we turn your digital design into a finished part in days, accelerating your product development cycle.
Our SLM lattice part and additive manufactured components are widely used by leading manufacturers in high-stakes industries:
Ideal for Additive manufactured bracket applications, including aerospace structural brackets, satellite components, and heat exchanger cores, where weight reduction and high structural performance are critical.
Perfect for lightweight chassis components, electric vehicle battery supports, and motor housing parts, improving energy efficiency and crash safety while reducing overall vehicle weight.
Widely used in orthopedic implants, prosthetic components, and surgical instruments, with biocompatible titanium materials and custom lattice structures that promote osseointegration and reduce patient recovery time.
Suitable for industrial heat exchangers, filtration systems, and fluid control components, with custom Gyroid lattice structure designs that optimize thermal transfer and flow efficiency for industrial processing equipment.