Highest quality, fast production, limitless possibilities
Precision meets innovation: metal production with SLM technology
"Discover the world of precise metal production with our SLM technology. Achieve the highest quality, speed up your production and unleash limitless possibilities for your products."
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Advantages of SLM technology
Advantage | Why you should use SLM |
---|---|
Precise manufacturing | Achieve maximum precision and attention to detail in the production of your components. |
. Fast production | Speed up your production process and shorten the time-to-market of your products. |
Complex geometries | Realize highly complex and intricate components with ease and precision. |
Material efficiency | Use materials efficiently and minimize material waste during production |
Design freedom | Benefit from almost unlimited design possibilities and realize innovative products. |
Weight optimization | Reduce the weight of your components and improve material efficiency. |
Functionality | Integrate complex functions and cavities directly into your components for optimum performance. |
Cost savings | Reduce your production costs through efficient processes and material utilization. |
Why SLM technology?
Revolutionary possibilities in metal production with SLM technology.
From precise prototypes to series production, we offer you first-class solutions.
Jörg Willmann
Founder, CEO of Additive Willmann
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The future of 3D printing in metal: efficient production, high-quality components and innovative applications
Wide range of materials
Materials in SLM technology
SLM technology enables the use of a wide range of materials, including metals, alloys, ceramics and composites. This diversity opens up numerous application possibilities in various industrial sectors such as aerospace, automotive, medical technology and more.
Stainless steel
Stainless steel offers high corrosion resistance and strength, making it ideal for applications in the food industry, medical technology and construction.
Aluminum
Aluminum is a lightweight yet strong metal that is widely used in various industrial sectors, such as aerospace and automotive engineering.
Titanium
Titanium is characterized by its high strength, lightness and corrosion resistance and is used in areas such as aviation, medical technology and the manufacture of sports equipment.
Special materials
We also offer the processing of special materials such as superalloys to meet the requirements of demanding applications.
Tool steels
Tool steels are characterized by their exceptional hardness and wear resistance, which makes them indispensable in a wide range of demanding applications. They are crucial for the manufacture of precision tools and components that have to withstand extreme loads.
Cobalt-chromium alloys
Cobalt-chromium alloys are known for their remarkable corrosion resistance and temperature resistance. They are used in demanding environments such as the aerospace and medical industries and offer outstanding mechanical strength and reliability.
Nickel-based alloys
Nickel-based alloys are characterized by their exceptional resistance to corrosion and heat. They are widely used in key industries such as the chemical industry and aerospace and offer first-class mechanical properties and durability.
Why we should talk
Our services in the field of SLM technology
Customized solutions for your requirements
You can rely on our many years of experience and expertise in the field of SLM technology. We offer you comprehensive services from consulting to implementation.
Step 1
Consulting and feasibility studies
Step 2
Prototype production
Step 3
Small series production
Step 4
Material selection
Step 5
Quality control
Areas of application for SLM technology
Industries and products
Aerospace
Production of lightweight components, turbine components, satellite structures
Medical technology
Production of lightweight components, turbine components, satellite structures
Automotive industry
Engine components, body components, prototypes
Lightweight construction, prototype production
Mechanical engineering
Complex components, wear parts,
tools
Energy
Turbine blades, components for renewable energy systems
Architecture & Design
Architectural models, customized design objects
Electronics
Enclosures for electronic components,
Heat sinks
Development
Prototypes for new technologies and
products
For buyers & customers
Technical information
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Data formats
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Requirements
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AGBs
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Technical data of the SLM technology
Technologies | Technical data |
---|---|
Maximum component dimension (X,Y,Z) | Typically up to Typically up to 500x500x1000 mm |
Accuracy | +/- 0.15 mm |
Layer thickness (from - to) | 30 µm - 100 µm |
Minimum wall thickness | 1 mm |
Surface structure | Slightly rough surface, may require reworking |
Center roughness value (Ra) | 10 µm - 50 µm |
Quality in SLM technology
Our quality management ensures compliance with high standards and the delivery of components of first-class quality. We rely on precise process control to achieve the desired results.
Frequently asked questions about SLM technology
Here you will find answers to the most frequently asked questions about SLM technology, from material selection to cost structure.
The production time depends on various factors, including component size, complexity and quantity. However, SLM technology enables relatively fast production compared to traditional manufacturing methods, as no complex tool changes or set-up times are required.
Your contact persons
Ready for your breakthrough with 3D printing? Do you have any questions or need more information? Feel free to contact us, we are always at your disposal.
Jörg Willmann
Managing Director
- Joerg.Willmann@additive-willmann.de
- +49 7654 - 681 400-1
- Talstraße 7 | 79843 Löffingen
Carina Willmann
Key Accounting & Marketing
- Carina.Willmann@additive-willmann.de
- +49 7654 - 681 400-1
- Talstraße 7 | 79843 Löffingen