- Glass-fiber cloth
- Carbon-fiber cloth
- Aramid fabric
- Flexible reinforcement materials
Glass and Carbon Fiber Cutting System
Cut glass-fiber and carbon-fiber reinforcement materials for composite layup.
A digital ply-cutting system for glass-fiber cloth, carbon-fiber cloth, aramid fabric and related flexible reinforcement materials.
Sales reference: This ZKZR code is an export-inquiry reference, not a manufacturer model number. The listed USD price is a baseline export reference for the described application configuration and excludes freight, duties, destination installation and application-specific options. The manufacturer, machine model and final technical scope are identified in the formal quotation.

Authorized equipment photograph. Cutting tools, working area and final configuration are confirmed in the quotation.
Material context for this cutting workflow.
The application photograph shows a typical material or finished-use context. Material handling, tools and machine configuration are selected for the actual requirement.

Workflow and key features
Reinforcement is supported and held flat while a rotary or oscillating tool follows nested digital ply patterns. Tooling, extraction, static control, backing protection and material collection are selected for fiber type, weave stability and resin condition.
- Mechanical cold cutting avoids thermal damage to reinforcement fibers
- Rotary and oscillating tools selected for dry fabric or prepreg
- Digital nesting supports ply kits and mixed composite parts
- Projection and marking options assist kit identification
- Extraction, static control and backing protection reviewed by material
- Fiber movement, edge fray and dimensional tolerance are verified by trial
Reference configuration
Published items describe the intended workflow and selectable configuration, not a fixed universal machine. Working area, tools, speed, cutting thickness, accuracy, total power, vacuum system, compressed-air demand, software and safety scope are confirmed after a material test and application review.
- Cutting process
- Die-free mechanical cold cutting from digital patterns
- Recommended tool set
- Powered rotary tool for dry woven reinforcement; oscillating or pneumatic tool for prepreg and thicker flexible composite
- Material handling
- Fixed vacuum table or conveyor feeding with roll support and ply-collection option
- Material hold-down
- Zoned vacuum adsorption selected for material porosity and usable width
- Positioning and recognition
- Digital origin with projection, camera or fiducial options for ply placement and kit identification
- Digital workflow
- CAD/CAM pattern import, path planning and nesting; supported file formats confirmed with the selected controller
- Working area
- Selected to the usable sheet or roll width and maximum part dimensions
- Performance release
- Cutting speed, thickness and accuracy confirmed by sample, geometry and selected tool
- Destination utilities
- Electrical supply, vacuum capacity and compressed-air demand confirmed for the selected tool set and destination
Test-method referencesReviewed for the selected applicationConfirm on request +
The public source material does not identify a reliable model-specific method list. Send the required method or acceptance procedure and we will confirm compatibility, fixtures, software and supplied verification documents before quotation.
- Material type, thickness and roll or sheet format
- Required working area and feeding method
- Cut geometry, file format and nesting workflow
- Destination utilities, throughput target and collection method
The quoted configuration remains the controlling specification.
Published items describe the intended workflow and selectable configuration, not a fixed universal machine. Working area, tools, speed, cutting thickness, accuracy, total power, vacuum system, compressed-air demand, software and safety scope are confirmed after a material test and application review. Delivery scope, warranty, lead time, calibration evidence and overseas service are stated in the formal offer.