Fiber Length Analysis
Precise. Efficient. Indispensable.

Elevate your material analysis with FASEP® –
the industry-leading solution for accurate fiber length distribution measurement.​

Precision in Fiber Analysis – The Key to Innovation

The targeted development of fiber-reinforced plastic components begins with precise fiber length analysis.

With FASEP®, you have a powerful tool at your disposal that is suitable for virtually any type of fiber reinforcement. Whether glass, carbon, aramid, silicon carbide, steel, or selected natural fibers, reliable analyses provide critical insights for optimized material design and engineering.

Maximize quality, performance, and efficiency with a solid foundation of data-driven decisions.

Discover How FASEP® Can Advance Your Applications

Let’s explore how FASEP® can help optimize your material development, enhance quality control, and provide deeper insights into failure analysis.

Since 2006, leading companies around the globe have trusted FASEP® for automated fiber length distribution analysis in composite materials. As the pioneering automated solution in the field, FASEP® sets the benchmark for accuracy, reliability, and efficiency.

Where FASEP® Delivers Value – Key Applications Across Industries

Supporting Industry Leaders Worldwide

Plastics Processing: Pellets and Compounds

By analyzing fiber lengths, manufacturers can tailor the mechanical properties of the final product to meet specific performance requirements. Fiber length distribution provides valuable insights into the expected reinforcement effect, helping to optimize material performance. As a result, material waste can be minimized and production efficiency maximized.
With the FASEP® system, fiber length distributions can be determined accurately and reliably, making it an indispensable tool for innovation, process optimization, and quality assurance.

Construction Industry: Reinforced Concrete

Fiber length analysis plays a crucial role in the construction industry, particularly in the use of recycled steel for concrete reinforcement. By providing valuable data on fiber length distribution, it helps optimize the strength and durability of reinforced concrete, contributing to more sustainable construction projects.
In addition, fiber length analysis supports the quality assurance of recycled steel. Steel recovered from demolition and deconstruction projects can be reprocessed using advanced recycling technologies and, through reliable fiber length measurements, specifically selected and qualified for use in high-performance concrete.
This enables a more resource-efficient approach to construction while helping to reduce the construction industry’s CO₂ footprint.

Automotive Industry: Injection Molding

A precise understanding of fiber length distribution is key to developing structural automotive components that are both lighter and more durable.
Reliable analytical data enables targeted optimization of the quality, performance, and processing parameters of composite materials. In addition, fiber length analysis supports informed material selection and helps prevent costly production defects.
Improved energy efficiency and reduced emissions are central goals of modern vehicle development. Fiber length analysis provides the insights needed to achieve these objectives more effectively and efficiently.

Aerospace Industry: Carbon Fiber Recycling

Fiber length analysis plays a critical role in the aerospace industry, particularly in the recycling of carbon fiber mats recovered from decommissioned aircraft. By accurately determining fiber lengths, recycled carbon fibers can be qualified for further applications and used in the production of new high-performance components.
In addition, fiber length analysis opens up new opportunities for optimizing lightweight structures. Advanced carbon fiber technologies increasingly utilize recycled fibers to create lighter, more energy-efficient high-performance components, helping to reduce fuel consumption and lower emissions.
As a result, fiber length analysis supports both sustainability goals and technological innovation in modern aerospace engineering.

About Us

Focused on Innovation. Driven by Precision.

Our engineering company combines technical expertise with innovative thinking to continuously advance the field of fiber length analysis. Through close collaboration with researchers at universities, academic institutions, and industry partners, new insights are directly incorporated into the ongoing development of FASEP® to deliver highly accurate measurements and maximum efficiency.

The name FASEP® is derived from the german words FAser SEParation. It reflects the core challenge of automated fiber analysis: conventional image analysis systems often identify overlapping and entangled fibers as a single object. FASEP® is designed to reliably separate these fiber clusters into individual fibers and accurately measure their true fiber lengths.

The result is a powerful solution that delivers precise measurements, streamlined workflows, and dependable analytical results.

Our commitment is reflected in the satisfaction of customers worldwide, who value our combination of intelligent software, purpose-built hardware, and sound engineering expertise from a single source.

Together, we are shaping the future of fiber length analysis.

FASEP® drives innovation in fiber-reinforced plastics, empowering researchers worldwide with precise fiber length analysis.

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