Jinan Weihua Machinery & Equipment Co., Ltd · Jinan Shandong China
Cutting fabric with laser cutter showing the mesh belt platform
Nonmetal CO2 Engraving and Cutting Machines

Fabric Laser Cutting Machine

The WH-1630T is a CO2 laser cutting machine with automatic feeding, designed for textile and leather processing. It features a 1600 x 3000 mm work area and a stainless steel mesh belt platform that supports high breathability and heat resistance.

Product Overview

What This Machine Is Built To Do

The WH-1630T is a CO2 laser cutting machine with automatic feeding, designed for textile and leather processing. It features a 1600 x 3000 mm work area and a stainless steel mesh belt platform that supports high breathability and heat resistance. The machine uses a dual pressure feeding system and an automatic tracking corrector to maintain material alignment during operation. Laser power options include 80 W, 100 W, 130 W, 150 W, and 180 W, allowing you to match the source to your specific fabric thickness. With a repeatability of ±0.01 mm and a cutting speed up to 30,000 mm/min, it handles continuous rolls of non-woven fabric, polypropylene, and artificial leather. The system is controlled by a default Ruida DSP controller and is built for workshops that need to cut large volumes of soft materials without manual layering.

  • Automatic tracking corrector adjusts for material deviation during feeding to keep cuts on the pattern
  • Dual pressure feeding rollers hold fabric flat and prevent shifting during high-speed cutting
  • Stainless steel mesh belt with large aperture reduces heat buildup and protects delicate synthetic materials
  • Three independent exhaust outlets allow you to tune smoke removal for different fabric densities
  • Ruida control system supports direct file output from AutoCAD and CorelDRAW for easy workflow
  • Five laser power options from 80 W to 180 W let you select the right source for your material mix
Where It Is Used

Application Scenarios

  • Car seat cushion and seat cover manufacturers cutting large panels of artificial leather
  • Home textile producers cutting non-woven fabric and polypropylene for bags or insulation
  • Footwear factories processing blended fabric and imitation leather for uppers and linings
  • Advertising workshops cutting large format soft signage and fabric banners
  • Garment producers automating the cutting of kit materials and pattern pieces
Buyer Fit

Who It Is For

  • Textile subcontractors replacing manual knife cutting for synthetic fabrics
  • Automotive interior suppliers needing consistent edge quality on seat covers
  • Machine dealers looking for an auto-feeding CO2 laser for the garment industry
  • Home textile manufacturers processing rolls of non-woven or polypropylene material
Process Problems

Problems It Solves

  • Manual feeding causes fabric to stretch or shift, resulting in misaligned pattern pieces
  • Traditional knife cutting creates fraying edges on synthetic materials like polypropylene
  • Heat buildup on standard conveyor belts melts or deforms delicate non-woven fabrics
  • Smoke and fumes from burning synthetic materials linger if exhaust is not controlled independently
  • Inconsistent feeding speed reduces production efficiency and increases labor costs
Engineering

Technical Features

  • Automatic tracking corrector for real-time material deviation adjustment
  • Dual pressure feeding function to secure fabric position during cutting
  • Stainless steel mesh belt platform with large aperture for heat dissipation
  • Three large-diameter exhaust outlets with independent control
  • Y-axis driven by double step motors with Leadshine drivers
  • Ruida DSP control system with multi-language support
  • Pure water cooling system for the CO2 laser tube
Specifications

Published Figures For Fabric Laser Cutting Machine

Every value below is taken from the machine data sheet. Where a range is given the exact figure depends on the model and power you order.

ModelWH-1630T
Work Size1600 x 3000 mm
Optional Sizes1300 x 2500 mm / 1600 x 2600 mm / 2000 x 3000 mm / 2000 x 6000 mm
Laser Power80 W / 100 W / 130 W / 150 W / 180 W
Laser TypeCO2 Laser Tube
Laser Wavelength10.6 um
Cooling MethodPure Water Cooling
Repeatability±0.01 mm
Rated Power<=1500 W
Motor and DriverStep Motor and Leadshine Driver
Y AxisDouble Motors
Control SystemDSP Control, Ruida Control System as Default
File FormatsPLT, DST, DXF, DWG, AI, LAS
Package Size4300 x 2200 x 1350 mm
Gross Weight1300 kg
Materials

Materials It Handles

  • Artificial leather
  • Textile fabrics
  • Non-woven fabric
  • Polypropylene
  • Blended fabric
  • Imitation leather
  • Various kit materials
Working Process

From File To Finished Part

Load the roll of fabric or leather onto the automatic feeding system

Enable the dual pressure feeding rollers to secure the material

Import the pattern file (PLT, DXF, or AI) into the Ruida control system

Set the laser power and speed parameters based on the material thickness

Activate the automatic tracking corrector to manage material deviation

Run the cutting job while the independent exhaust outlets remove smoke

Quality Control

Quality Control Before Shipment

  • Repeatability is checked at ±0.01 mm before shipping
  • Automatic tracking corrector function is tested for deviation adjustment
  • Dual pressure feeding rollers are inspected for even tension
  • Exhaust outlets are tested for independent control functionality
  • Water cooling system is verified for stable laser tube temperature
Options

Customisation Options

  • Choose from five laser power options: 80 W, 100 W, 130 W, 150 W, or 180 W
  • Select alternative work sizes: 1300 x 2500 mm, 1600 x 2600 mm, 2000 x 3000 mm, or 2000 x 6000 mm
  • Configure the Ruida control system for your preferred language
  • Adjust the voltage and plug type for your local power grid
Comparison

How It Compares With The Alternatives

Manual fabric cuttingThe auto-feeding system maintains consistent tension and speed, reducing operator fatigue and material waste
Static bed CO2 laserThe conveyor belt design allows for continuous cutting of long rolls, whereas static beds require loading sheet by sheet
Ultrasonic cuttingThe laser provides a sealed edge on synthetics and allows for complex vector patterns that ultrasonic dies cannot easily replicate
Operating Notes

Use Guide

  • Ensure the pure water cooling system is filled and circulating before starting the laser
  • Adjust the dual pressure rollers to match the thickness of the fabric to prevent slipping
  • Clean the stainless steel mesh belt regularly to remove residue and maintain breathability
  • Use the independent exhaust controls to increase suction when cutting thicker or denser materials
  • Check the automatic tracking corrector alignment if the material shifts during the first few cuts
Buyer Questions

Fabric Laser Cutting Machine FAQ

What is the maximum work size?
The standard work size is 1600 x 3000 mm. Optional sizes include 1300 x 2500 mm, 1600 x 2600 mm, 2000 x 3000 mm, and 2000 x 6000 mm.
Which laser powers are available?
You can select from 80 W, 100 W, 130 W, 150 W, or 180 W CO2 laser tubes depending on your cutting requirements.
What materials can this machine cut?
It is designed for artificial leather, textile fabrics, non-woven fabric, polypropylene, blended fabric, imitation leather, and various kit materials.
How does the machine handle fabric deviation?
The machine uses an automatic tracking corrector and dual pressure feeding function to detect and adjust for material deviation during operation.
What control system is used?
The machine comes with a Ruida DSP control system as default, which supports multiple languages and direct file output from AutoCAD and CorelDRAW.
How is the machine packaged for shipping?
The machine is packed in a wooden box with dimensions 4300 x 2200 x 1350 mm and a gross weight of 1300 kg.
What is the cooling method?
The CO2 laser tube uses a pure water cooling method to maintain stable operation during long cutting runs.

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