Velocity Plotters & Cutters

Precision for High-Value & High-Performance Materials

CAD Nesting, Digitizing & Cutting Machines for Carbon Fiber, Fiberglass & Technical Textiles

Technical textile and composite manufacturers work with advanced materials where accuracy and material utilization directly impact production costs. Velocity provides CAD nesting technology for optimizing material layouts, digitizing solutions that convert physical patterns into digital files, and precision cutting systems for carbon fiber, fiberglass, composite panels, laminates, and high-performance technical textiles.

Common Challenges in Technical Textile & Composite Manufacturing

Technical textiles and composites present unique cutting challenges due to their cost, structural properties, and the precision required for downstream assembly. Velocity Plotters addresses these demands with automated, digital cutting workflows.

High-Value Material Optimization

Carbon fiber, fiberglass, laminates, and composite materials can be expensive, making inefficient layouts and unnecessary scrap costly. Advanced nesting workflows help manufacturers improve material utilization before cutting begins.

Complex Shapes & Component Geometry

Composite components often involve irregular shapes, curved profiles, and complex geometries. Digital pattern preparation and precision cutting help maintain dimensional accuracy across intricate parts.

Multi-Layer & Specialized Materials

Technical textiles and composites may include multiple layers, reinforcements, coatings, and specialized material structures. Flexible production workflows help manufacturers manage different material requirements efficiently.

Materials We Cut for Technical Textiles & Composites

Velocity’s technology supports a broad range of advanced materials used in composite manufacturing and technical textile applications.

Carbon Fiber Cutting

Precision processing for carbon fiber sheets, fabrics, and reinforcement materials.

Fiberglass Cutting

Accurate cutting for fiberglass textiles and composite reinforcement materials.

Composite Panel Cutting

Consistent processing for composite sheets, panels, and engineered material structures.

Technical Textile Cutting

Precision processing for high-performance industrial fabrics and engineered textiles.

Phenolic & Specialized Board Cutting

Reliable cutting for phenolic boards and other specialized rigid materials.

Prepreg & Laminated Material Cutting

Support for layered and laminated composite materials used in advanced manufacturing.

Not sure if your material is compatible? Send us a sample and we’ll run a test cut.

From Digital Layout to Precision-Cut Components

1. Digitizing & Digital Pattern Preparation

Convert physical patterns or component shapes into digital files ready for production planning.

2. CAD Nesting & Material Optimization

Arrange components efficiently to maximize material yield and reduce unnecessary offcuts before cutting.

3. Precision Material Processing

Produce accurately prepared components ready for lamination, assembly, or downstream manufacturing processes.

Why Composite Manufacturers Choose Digital Production Workflows

Digital nesting and precision processing workflows help manufacturers improve material utilization and manage complex components more efficiently.

Preguntas Frecuentes

What should I consider when choosing a cutting machine for technical textiles and composites?

Manufacturers should consider the types, thicknesses, and construction of the materials being processed, production volume, cutting area, required accuracy, material utilization, and automation requirements. Carbon fiber, fiberglass, laminates, composite panels, and technical textiles can have very different cutting characteristics, so the equipment should be selected according to the specific materials and production workflow.

CAD nesting arranges digital pattern pieces within the available material area to maximize usable space before cutting. This can be especially valuable when working with higher-cost materials such as carbon fiber, fiberglass, laminates, and composite materials, where reducing scrap can significantly improve material utilization and production efficiency.

Yes. Digital workflows can connect CAD design and pattern development with nesting, digitizing, plotting, and cutting processes. Depending on the CAD platform and file formats used, digital files can be prepared and transferred to compatible production equipment through software, drivers, or file conversion workflows.

Digitizing converts physical templates, components, or shapes into digital files that can be stored, edited, reproduced, and incorporated into a digital production workflow. This can be useful when manufacturers need to reproduce existing components or transition physical templates into CAD-based nesting and cutting processes.

Depending on the cutting technology, applications may include carbon fiber, fiberglass, composite panels, laminates, and high-performance technical textiles. Material construction, thickness, density, surface characteristics, and production requirements should be evaluated to determine the appropriate cutting solution.

Accurate cutting helps maintain the intended dimensions and geometry of components before assembly, lamination, or further processing. Consistent cutting can also improve repeatability and reduce unnecessary material waste when producing components from high-cost technical textiles and composite materials.

The right cutting system depends on the material type, thickness, size, production volume, required cutting accuracy, nesting requirements, and overall manufacturing workflow. Manufacturers should evaluate the specific composite or technical textile being processed and determine the appropriate combination of CAD nesting, material preparation, and cutting technology.

Technical Textiles & Composites.

Talk with our team about CAD nesting, digitizing, and precision cutting technology designed for your materials, component geometries, and production requirements.

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