Yes, processes like SLM and DMLS create fully dense parts with mechanical properties comparable to traditionally manufactured metal parts.
Elite Mold Tech offers state-of-the-art metal 3D printing services, perfect for creating complex, high-performance components with intricate geometries and minimal waste. Ideal for industries such as aerospace, automotive, and medical, our metal 3D printing process delivers parts that are strong, durable, and lightweight.
Using advanced techniques like Direct Metal Laser Sintering (DMLS) and Metal Binder Jetting, we print with a variety of metals including stainless steel, titanium, and aluminum alloys. Our 3D-printed parts are ready for functional testing or end-use applications, offering superior design flexibility compared to traditional manufacturing methods.
Push the limits of design. Upload your CAD file today and get a fast, competitive quote for your metal 3D printing project.
Metal 3D printing is an additive manufacturing process that uses metal powders, which are fused together layer by layer, to create complex, high-precision parts. This technology allows for the production of components with intricate geometries and high strength-to-weight ratios, making it ideal for industries like aerospace, automotive, and medical. Metal 3D printing offers design flexibility, rapid prototyping, and low-volume production of custom, durable metal parts with excellent mechanical properties.
Explore Direct Metal Laser Sintering (DMLS) 3D printed parts made by Elite Mold Tech, offering high-strength, complex geometries, and dense metal components with superior accuracy. Our DMLS technology is ideal for aerospace, medical, and industrial applications.
特徴 | 説明 |
---|---|
最大部品サイズ | Up to 12” x 12” x 16” (300 x 300 x 400 mm), depending on printer type and material. |
標準リードタイム | 1–2 weeks for printing; longer if heat treatment, machining, or surface finishing is required. |
一般公差 | ±0.010” to ±0.020” (±0.25 mm to ±0.50 mm) depending on part size, feature detail, and orientation. |
精密公差 | Critical features can achieve ±0.005” (±0.127 mm) or tighter through post-machining or precision calibration. |
最小フィーチャーサイズ | ~0.015” (0.4 mm); varies by printer type (DMLS, SLM, EBM) and material used. |
壁厚 | Recommended minimum: 0.030” (0.75 mm). Thicker sections improve part stability but increase weight and build time. |
表面仕上げ | As-printed: typically Ra 250–400. |
Explore metal 3D printing parts made by Elite Mold Tech, offering cutting-edge additive manufacturing solutions for complex metal components. Our metal 3D printing services deliver high precision, custom geometries, and strong, durable parts, perfect for industries that require advanced, high-performance solutions.
で エリート・モールド・テック, we offer precise surface finishing techniques to improve aesthetics, functionality, and dimensional accuracy, making metal-printed parts suitable for demanding industrial applications.
Retains the raw, slightly rough surface straight from the printer—ideal for internal features or early-stage testing.
CNC machining is used to refine critical dimensions and achieve tighter tolerances or smoother surfaces.
Improves fatigue resistance and surface uniformity by bombarding the part with small spherical media.
Removes micro-roughness and enhances corrosion resistance while producing a clean, shiny metal finish.
幅広い工程、材料、表面処理を考慮し、試作品製造に最適なソリューションを提供する。
価格、要件、納期を確認する。
製品の製造性と要件を迅速に検討し、必要に応じてエンジニアリングの支援を提供する。
生産発注を開始し、生産と納期の計画を確認する。
BOMとオリジナル仕様に基づいた品質検査を実施し、出荷承認のための鮮明な写真を提供する。
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Metal 3D printing is revolutionizing the manufacturing industry, offering innovative solutions for producing high-performance parts and components across various industries, including aerospace, automotive, healthcare, and more. As a leading provider of metal 3D printing services, Elite Mold Tech is at the forefront of this transformative technology. In this blog, we’ll explore the benefits, processes, and applications of metal 3D printing and how it is helping businesses enhance their production capabilities.
Metal 3D printing, also known as additive manufacturing (AM), is a process in which metal parts are created by adding material layer by layer. Unlike traditional subtractive manufacturing methods, which involve cutting away material from a solid block, metal 3D printing builds objects by precisely depositing molten metal or metal powder, allowing for complex geometries and intricate designs that would be difficult or impossible to achieve with traditional methods.
The process begins with a digital 3D model of the part, which is sliced into thin layers. The machine then uses advanced technology to melt or sinter the metal powder and build the part layer by layer. The result is a highly detailed, accurate, and durable metal component with excellent material properties.
デザインの柔軟性: Metal 3D printing enables the creation of highly complex and custom geometries that are not possible with traditional manufacturing methods. This opens up opportunities for innovative designs that optimize performance and reduce material waste.
リードタイムの短縮: Unlike traditional manufacturing processes that may require extensive tooling, molds, or machining, metal 3D printing can produce parts directly from digital files. This significantly reduces the time from concept to production, allowing businesses to meet tight deadlines.
材料効率: With metal 3D printing, material is deposited only where it is needed, reducing material waste compared to subtractive manufacturing methods, where large amounts of material are cut away.
カスタマイズ: Whether it’s a prototype, low-volume production, or a one-off custom part, metal 3D printing is ideal for creating tailor-made solutions to meet specific requirements. This flexibility allows for the production of parts with unique geometries, sizes, and material properties.
Cost-Effective for Small-Batch Production: While traditional methods may require expensive molds or tooling for large-scale production, metal 3D printing does not have these limitations. This makes it particularly cost-effective for producing small batches of complex parts.
High-Performance Materials: Metal 3D printing supports a wide range of high-performance materials, including stainless steel, titanium, aluminum, and other alloys. These materials are often used in industries that require parts to withstand extreme conditions, such as high heat, stress, and corrosion.
Improved Functionality: The ability to produce highly intricate and lightweight designs with metal 3D printing leads to enhanced part functionality. Complex internal geometries, such as cooling channels, can be integrated into the design, optimizing performance and reducing weight.
Several 3D printing processes are used to create metal parts, each offering unique advantages for specific applications. At Elite Mold Tech, we specialize in various metal 3D printing techniques:
Metal 3D printing is used across a wide range of industries for both prototyping and production of end-use parts. Some key applications include:
At Elite Mold Tech, we provide advanced metal 3D printing solutions designed to meet the highest standards of quality, precision, and reliability. Our team uses state-of-the-art 3D printing technologies to produce custom metal parts that meet the specific needs of our clients. Whether you need rapid prototyping, low-volume production, or complex geometries, our metal 3D printing services offer the flexibility and efficiency you need.
Metal 3D printing is a game-changer for industries seeking advanced, high-performance parts. At Elite Mold Tech, we are committed to providing top-tier metal 3D printing services to help your business stay ahead in today’s competitive market. Reach out to us for customized solutions that push the boundaries of what’s possible.
Yes, processes like SLM and DMLS create fully dense parts with mechanical properties comparable to traditionally manufactured metal parts.
Production time varies depending on the complexity and size of the part, but typically ranges from a few days to a week.
Metal 3D printing is more cost-effective for low to medium-volume production, where tooling and setup costs are prohibitive.
Metal 3D printing offers high precision, with tolerances typically ranging from ±0.1mm to ±0.05mm, depending on the process.
Metals like stainless steel, titanium, aluminum, cobalt-chrome, and Inconel are commonly used in 3D printing.