Industrial 3D printing with high-performance plastics
Picture: Ensinger GmbH

Industrial 3D printing with high-performance plastics

Additive manufacturing is an advanced manufacturing technology that creates three-dimensional objects through the layer by layer manufacturing of material, based on a 3D digital model (CAD). This advanced processing technology has had a positive impact on the modern manufacturing landscape, enabling the creation of complex geometries, the reduction of material waste and the acceleration of prototype development.

Industrial 3D printing with high-performance plastics takes these benefits even further. High-performance plastics such as PEEK, PEI and PPSU offer exceptional mechanical properties, high temperature and chemical resistance, making them ideal for demanding applications, e.g. in the aerospace, medical and railway industries.

Ensinger's unique advantages in high performance plastics 3D printing

  • Comprehensive material portfolio: We offer a wide range of high-performance filaments tailored to the specific requirements of different industries.
  • Technological expertise: With in-depth knowledge and advanced technology, we help customers optimise the 3D printing process and improve product quality.
  • Customised solutions: We develop tailor-made solutions that are perfectly adapted to the customer's needs, from the choice of materials to the implementation of the printing process.

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Uncompromised quality, layer by layer

3D printed parts for industrial applications have to meet high-quality standards to fulfill the stringent requirements of various industries. Ensinger prioritizes key factors such as isotropic strength, surface finish as well as printed part density to ensure that our components provide exceptional performance and reliability.

Isotropic strength: Our high performance plastics maintain consistent strength and mechanical properties in all directions, known as isotropic strength & behaviour. This property is essential to ensure consistent performance and durability of parts under varying loads and stresses, making them suitable for demanding applications.

Surface finish: Our advanced 3D printing technology and meticulous process control result in parts with excellent surface finishes. Smooth and accurate surfaces are not only aesthetically pleasing, but also reduce friction and wear in mechanical applications, improving overall functionality and component life.

Print density: Our 3D printed parts achieve high print density & pressure tightness, ensuring components are robust and able to withstand harsh operating conditions. High print density contributes to the structural integrity and stability of the parts, making them ideal for use in environments where mechanical strength and durability are paramount.

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Precision and strength in every strand

With our TECAFIL portfolio, we offer a wide range of high temperature filaments tailored for industrial 3D printing, ensuring precision and compliance with strict quality standards. These filaments are designed for high performance applications and offer unique advantages such as precision, roundness and ovality. They are ideal for applications requiring high-temperature materials, offering cost effectiveness, customised solutions and resource efficiency. With a wide range of filaments available, we can meet a variety of material requirements precisely tailored to customer needs.

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We print your high performance plastic parts

Driven by a passion for innovation and a commitment to excellence, our state-of-the-art 3D printing service is at the forefront of manufacturing technology. With a focus on customisation and quality, we work closely with each customer to deliver bespoke solutions that meet their precise needs. Backed by industry expertise and a commitment to environmental sustainability, we ensure that every 3D printed part exceeds expectations and delivers unparalleled performance and reliability.

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Ready to rethink industrial 3D printing?

Our 3D experts will be pleased to advise you personally on applications and material selection: Marius Graf, Marc Damm-Ruttensperger , Christian Henne & Holger Sch?nhuth

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