Thermal Insulation Felt Hot Air Circulation Drying Line

The Thermal Insulation Felt Hot Air Circulation Drying Line is a high-efficiency continuous drying equipment specially developed for insulation materials such as aluminum silica...

Introduction

The Thermal Insulation Felt Hot Air Circulation Drying Line is a high-efficiency continuous drying equipment specially developed for insulation materials such as aluminum silicate fiber felt, aerogel insulation felt, and fiberglass felt.The system adopts multi-zone independent temperature control combined with hot air circulation technology, allowing high-temperature air to penetrate the material precisely, quickly removing internal moisture and volatile components. It ensures uniform drying performance while preventing deformation of insulation felt materials.

Applications

1. Material Drying

Suitable for drying various insulation materials, including:

Needle-punched insulation felt

Aerogel insulation felt

Ceramic fiber felt

2. Coating Curing

Used for drying and curing surface coatings, such as:

Dust-proof coatings

Hydrophobic coatings

Other functional protective coatings

3. Forming and Heat Treatment

Used for dehydration, drying, and high-temperature shaping of various composite thermal insulation materials.

Product Parameters

Parameter Item Technical Specification
Production Line Length 15 – 60 m (Customized according to production capacity)
Mesh Belt Width 1200 – 3000 mm
Operating Temperature Room Temperature – 350℃
Heating Method Natural gas / Steam / Electric heating / Biomass heating
Conveyor Speed 0.5 – 8 m/min (Variable frequency speed control)
Control System PLC programmable control combined with touchscreen interface

Features

1. Strong Penetration Drying

High-pressure hot air penetrates the material from both upper and lower directions, ensuring rapid and uniform moisture removal.

2. Energy Efficient Operation

The hot air circulation system enables heat reuse, reducing overall energy consumption by approximately 30% compared with traditional drying methods.

3. Precise Temperature Control

Multiple drying zones are independently controlled, with temperature differences maintained within ±2℃, ensuring stable drying quality.

4. Stable Material Conveying

The equipment adopts a high-temperature resistant mesh belt conveyor system with stable operation, effectively preventing stretching and deformation of insulation materials.

5. Safety Protection System

Equipped with automatic moisture exhaust and over-temperature alarm systems to improve operational safety and reliability.

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