• RTPQ18-Horizontal-foam-vacuum-cutting-machine(for-car-roof)
  • RTPQ18-Horizontal-foam-vacuum-cutting-machine(for-car-roof)

RTPQ18

The RTPQ18 Car Roof PU Foam Vacuum Horizontal Cutting Machine is designed for high-precision horizontal reciprocating slicing of polyurethane rigid foam, automotive headliner PU, insulation boards, and high-density foams. The powerful vacuum system holds the material firmly on the table, ensuring stable cutting, consistent thickness, and improved product quality.

  • Vacuum table for stable material holding
  • 2–40 mm precision thin-sheet cutting
  • Servo-controlled cutting with fast and precise thickness adjustment
  • Optional automatic folding system for labor saving

Foam vacuum cutting machine for car roof (RTPQ18)

For manufacturers producing automotive headliner PU foam, stable quality and production efficiency are critical. The RTPQ18 minimizes material movement and thickness deviation, reduces waste, and ensures consistent output quality.
With optional automatic folding, it further lowers labor costs and improves delivery capability—helping you take on larger orders with confidence.

 

With the optional automatic folding system, labor costs are greatly reduced, making the RTPQ18 a highly efficient and profitable investment for automotive interior, footwear, and insulation manufacturers.

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Technical Data

 

 

ModelRTPQ18
Cutting Foam SizeW1800 × L3000 × H1200 mm
Cutting Thickness2–40 mm
Cutting Speed0–40 m/min
Total Power27.29 kW
Blade Length7800 mm
Machine Weight3800 kg
Machine Dimension (L×W×H)9000 × 4500 × 2500 mm

 

Four Unique Advantages

RTPQ18-Dual-Vacuum-Suction-System
Strong & Stable Foam Fixing

Powerful Vacuum Suction System

The high-efficiency vacuum suction system firmly holds PU foam during cutting, preventing material movement and thickness deviation. It ensures stable slicing quality, reduces material waste, and helps you maintain consistent production results in automotive headliner manufacturing.

Smooth & Uniform Slicing

High-Precision Reciprocating Cutting Structure

The reinforced cutting structure with servo-driven reciprocating motion delivers smooth and precise slicing.
It ensures uniform thickness and clean cutting surfaces, enabling you to meet higher quality standards for automotive interior and insulation materials.

RTPQ18-Large-Working-Table
RTPQ18-Precision-Cutting-Head
Support for Large PU Foam Blocks

Large & Stable Working Table

The enlarged and rigid working table easily handles large-size automotive PU foam blocks. It provides stable material support during cutting, expands processing capability, and improves production flexibility for various foam specifications.

Lower Labor Cost & Higher Efficiency

Optional Automatic Folding Device

The optional automatic folding device neatly stacks foam sheets after cutting, reducing manual handling and labor dependency. It improves production efficiency and helps you achieve a more automated and cost-effective workflow.

RTPQ18-Automatic-Folding-Device
How to solve PU foam moving and uneven thickness during cutting?

Our powerful vacuum suction system firmly fixes the foam on the table, preventing movement during high-speed slicing and ensuring uniform thickness for every sheet.

How to meet strict quality requirements for automotive headliner PU foam?

Our high-precision reciprocating cutting structure ensures smooth slicing, minimal deviation, and clean cutting surfaces that meet automotive interior standards.

How to improve production efficiency and handle large-volume orders?

Our machine supports cutting speeds up to 40 m/min with stable performance, helping you significantly increase output and handle large orders with confidence.

How to reduce labor cost caused by manual stacking after cutting?

Our optional automatic folding device automatically stacks foam sheets after cutting, reducing labor dependency and improving overall efficiency.

How to process large-size automotive PU foam blocks efficiently?

Our enlarged and reinforced working table easily supports large PU foam blocks, improving processing flexibility and machine utilization.

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