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ISO 5832-3 Certified Titanium Substrate for 3D Additive Manufacturing with Ti-6Al-4V (Grade 5) Alloy

    Buy cheap ISO 5832-3 Certified Titanium Substrate for 3D Additive Manufacturing with Ti-6Al-4V (Grade 5) Alloy from wholesalers
     
    Buy cheap ISO 5832-3 Certified Titanium Substrate for 3D Additive Manufacturing with Ti-6Al-4V (Grade 5) Alloy from wholesalers
    • Buy cheap ISO 5832-3 Certified Titanium Substrate for 3D Additive Manufacturing with Ti-6Al-4V (Grade 5) Alloy from wholesalers
    • Buy cheap ISO 5832-3 Certified Titanium Substrate for 3D Additive Manufacturing with Ti-6Al-4V (Grade 5) Alloy from wholesalers
    • Buy cheap ISO 5832-3 Certified Titanium Substrate for 3D Additive Manufacturing with Ti-6Al-4V (Grade 5) Alloy from wholesalers
    • Buy cheap ISO 5832-3 Certified Titanium Substrate for 3D Additive Manufacturing with Ti-6Al-4V (Grade 5) Alloy from wholesalers

    ISO 5832-3 Certified Titanium Substrate for 3D Additive Manufacturing with Ti-6Al-4V (Grade 5) Alloy

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    Brand Name : DLX
    Model Number : Titanium Substrate
    Certification : CE,ROHS,ISO9001
    Payment Terms : L/C,D/A,D/P,T/T,Western Union,MoneyGram
    Supply Ability : 500 tons per month
    Delivery Time : 7-15 Working Days
    • Product Details
    • Company Profile

    ISO 5832-3 Certified Titanium Substrate for 3D Additive Manufacturing with Ti-6Al-4V (Grade 5) Alloy

    The 3D Printing Titanium Substrate, certified under ISO 5832-3, is an advanced titanium alloy base material designed to meet the demanding requirements of industrial additive manufacturing. Known for its high strength-to-weight ratio, excellent corrosion resistance, and outstanding biocompatibility, this substrate is a preferred choice across industries like aerospace, automotive, energy, and medical equipment manufacturing.

    At DLX Alloy, we specialize in providing precision-engineered titanium substrates with exceptional consistency in microstructure and surface quality. Our production process includes vacuum melting, hot rolling, and fine polishing to ensure optimal performance for 3D printing applications.

    1.jpg Titanium Alloy Substrate for 3D Printing – High Strength and Corrosion Resistance Base Plate Ti-6Al-4V ELI (Grade 23) Aerospace Medical 第1张


    Applications

    Titanium substrates are used as foundational materials in:

    • Aerospace components: structural supports, turbine parts, and heat-resistant assemblies.

    • Medical implants: orthopedic plates, joint replacements, and dental implants.

    • Automotive engineering: lightweight and high-strength components for performance and fuel efficiency.

    • Energy and chemical sectors: corrosion-resistant plates and heat exchangers.

    • 3D additive manufacturing: baseplates for powder-bed fusion and sintering processes.

    Their exceptional thermal and mechanical stability makes them ideal for applications that require precise and repeatable printing accuracy under high temperatures.


    Material Comparison Table
    PropertyDLX Titanium Substrate (ISO 5832-3)Generic Titanium SubstrateStainless Steel SubstrateAluminum Substrate
    Material GradeTi-6Al-4V (Grade 5)Ti-6Al-4V equivalentSS316L6061-T6
    Density (g/cm³)4.434.437.982.70
    Tensile Strength (MPa)950–1000900600310
    Yield Strength (MPa)880850240270
    Corrosion ResistanceExcellentGoodModeratePoor
    BiocompatibilityExcellentVariableModeratePoor
    Thermal Conductivity (W/m·K)6.76.516167
    Printing StabilityHighModerateLowLow
    Surface Flatness≤0.01 mm tolerance±0.05 mm±0.1 mm±0.1 mm

    DLX’s titanium substrates provide tighter dimensional tolerance, improved surface uniformity, and consistent mechanical performance compared to standard alternatives.


    Industry Analysis

    The global demand for titanium-based 3D printing materials continues to rise, especially in high-performance sectors. The ISO 5832-3 certification guarantees compliance with international mechanical and chemical standards, ensuring quality and safety.

    In aerospace, lightweight titanium components enable significant fuel savings and improved durability under extreme conditions.
    In medical applications, titanium substrates are preferred for their biocompatibility and ability to integrate with human tissue.
    In industrial additive manufacturing, titanium plates are essential for precision-layer printing where adhesion, heat resistance, and uniformity are critical.

    With additive manufacturing evolving rapidly, the focus is shifting toward materials that can endure repeated thermal cycles without deformation. DLX’s titanium substrates are engineered specifically for these needs, providing reliability and stability across production runs.


    DLX Company Advantages

    At DLX Alloy, our strength lies in advanced material processing and strict quality control. We manufacture titanium substrates using:

    • High-purity raw materials from verified supply chains.

    • Vacuum arc melting to ensure uniform alloy composition.

    • Precision rolling and annealing for excellent surface quality.

    • Ultrasonic flaw detection and flatness testing for 100% inspection before shipment.

    What sets DLX apart is our customization capability — we can supply titanium substrates in various dimensions, surface finishes, and grades according to clients’ 3D printer models or industry specifications.

    Our ISO 9001 and ISO 13485 certified production ensures that each titanium substrate meets the stringent mechanical and chemical performance requirements demanded by modern manufacturing industries.


    Technical Highlights
    • Grade: Ti-6Al-4V (ISO 5832-3)

    • Purity: ≥99.5%

    • Density: 4.43 g/cm³

    • Melting Point: 1660°C

    • Surface Treatment: Polished / Sandblasted / Custom

    • Thickness Range: 2–20 mm

    • Tolerance: ±0.01 mm

    • Heat Treatment: Stress relief annealed

    These properties make DLX titanium substrates a robust foundation for sintering, electron beam melting (EBM), and laser powder-bed fusion (LPBF) systems.


    Future Outlook

    As 3D printing transitions from prototyping to mass production, materials like titanium substrates are critical to ensuring scalability, precision, and mechanical consistency. The industry trend is moving toward sustainable, high-efficiency materials, and titanium — being recyclable and lightweight — fits this direction perfectly.

    DLX is actively investing in research to enhance substrate surface treatments that improve powder adhesion and reduce residual stress during printing. This positions us as a trusted long-term supplier for global additive manufacturing companies.

    2.jpg Titanium Alloy Substrate for 3D Printing – High Strength and Corrosion Resistance Base Plate Ti-6Al-4V ELI (Grade 23) Aerospace Medical 第2张

    3.jpg Titanium Alloy Substrate for 3D Printing – High Strength and Corrosion Resistance Base Plate Ti-6Al-4V ELI (Grade 23) Aerospace Medical 第3张4.jpg Titanium Alloy Substrate for 3D Printing – High Strength and Corrosion Resistance Base Plate Ti-6Al-4V ELI (Grade 23) Aerospace Medical 第4张

    6.jpg Titanium Alloy Substrate for 3D Printing – High Strength and Corrosion Resistance Base Plate Ti-6Al-4V ELI (Grade 23) Aerospace Medical 第5张

    7.jpg Titanium Alloy Substrate for 3D Printing – High Strength and Corrosion Resistance Base Plate Ti-6Al-4V ELI (Grade 23) Aerospace Medical 第6张

    About Us:

    Our 12,000㎡ factory is equipped with complete capabilities for research, production, testing, and packaging. We strictly adhere to ISO 9001 standards in our production processes, with an annual output of 1,200 tons. This ensures that we meet both quantity and quality demands. Furthermore, all products undergo rigorous simulated environment testing including high temperature, high pressure, and corrosion tests before being dispatched, ensuring they meet customer specifications.

    For all our clients, we offer timely and multilingual after-sales support and technical consulting, helping you resolve any issues swiftly and efficiently.

    Incoloy 800 Plate for High-Temperature Furnace Corrosion Resistance High-Strength Grade 5 Titanium Tube Aerospace Applications Aerospace-Grade Aircraft Structural Parts Ultra-Thin 2 Foil Component Manufacturing AMS 4911 Alloy Components ASTM F2063 Compliant Nitinol Wire Surgical Implants Superelastic NiTi High-Performance Medical Tools Spring Wire: Top Grades Shape Memory Substrate 3D Printing – High Strength and Base Ti-6Al-4V ELI (Grade 23) 第7张

    Client Visits

    Building Stronger Partnerships

    Incoloy 800 Plate for High-Temperature Furnace Corrosion Resistance High-Strength Grade 5 Titanium Tube Aerospace Applications Aerospace-Grade Aircraft Structural Parts Ultra-Thin 2 Foil Component Manufacturing AMS 4911 Alloy Components ASTM F2063 Compliant Nitinol Wire Surgical Implants Superelastic NiTi High-Performance Medical Tools Spring Wire: Top Grades Shape Memory Substrate 3D Printing – High Strength and Base Ti-6Al-4V ELI (Grade 23) 第8张

    We support all kinds of testing:

    Incoloy 800 Plate for High-Temperature Furnace Corrosion Resistance High-Strength Grade 5 Titanium Tube Aerospace Applications Aerospace-Grade Aircraft Structural Parts Ultra-Thin 2 Foil Component Manufacturing AMS 4911 Alloy Components ASTM F2063 Compliant Nitinol Wire Surgical Implants Superelastic NiTi High-Performance Medical Tools Spring Wire: Top Grades Shape Memory Substrate 3D Printing – High Strength and Base Ti-6Al-4V ELI (Grade 23) 第9张

    Incoloy 800 Plate for High-Temperature Furnace Corrosion Resistance High-Strength Grade 5 Titanium Tube Aerospace Applications Aerospace-Grade Aircraft Structural Parts Ultra-Thin 2 Foil Component Manufacturing AMS 4911 Alloy Components ASTM F2063 Compliant Nitinol Wire Surgical Implants Superelastic NiTi High-Performance Medical Tools Spring Wire: Top Grades Shape Memory Substrate 3D Printing – High Strength and Base Ti-6Al-4V ELI (Grade 23) 第10张

    FAQs:

    1. What makes ISO 5832-3 titanium suitable for 3D printing?
    It offers excellent mechanical strength, high corrosion resistance, and thermal stability, ensuring dimensional accuracy during high-temperature printing.

    2. Can DLX provide custom sizes or surface finishes?
    Yes, DLX manufactures titanium substrates tailored to your printer bed dimensions, with polished, sandblasted, or coated finishes available.

    3. How does titanium substrate compare with stainless steel plates for printing?
    Titanium has better strength-to-weight ratio and resists oxidation at high temperatures, making it ideal for repeat 3D printing cycles.

    4. What is the maximum operating temperature?
    DLX titanium substrates can withstand up to 500–600°C continuous exposure without warping or loss of mechanical integrity.

    5. Are DLX titanium substrates reusable?
    Yes, they maintain flatness and structural stability after multiple printing runs, reducing long-term production costs.

    6. How is surface flatness controlled?
    Each substrate is CNC-ground and laser-checked for flatness tolerance within ±0.01 mm, ensuring perfect powder spreading.

    7. What industries use DLX titanium substrates most?
    Aerospace, automotive, medical device manufacturing, and energy sectors are major users of DLX titanium products.

    8. How does DLX ensure quality consistency?
    Through 100% inspection, traceable batch records, and compliance with ISO 9001 and ISO 5832-3 certifications.


    Conclusion

    DLX Alloy’s ISO 5832-3 certified titanium substrates deliver the reliability and precision that modern 3D printing demands. With unmatched surface quality, mechanical stability, and customization options, DLX provides a solid foundation for industries looking to scale additive manufacturing to industrial production levels. Whether in aerospace, healthcare, or advanced manufacturing, our titanium substrates ensure every printed part meets the highest standards of performance and durability.

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