Motor Rotor Drying Tunnel Oven

The Motor Rotor Drying Tunnel Oven is a continuous industrial drying equipment specially designed for motor manufacturing and maintenance processes.It adopts a streamlined tunnel structure and uses...

Category:Tunnel Oven Production Line

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Introduction

The Motor Rotor Drying Tunnel Oven is a continuous industrial drying equipment specially designed for motor manufacturing and maintenance processes.It adopts a streamlined tunnel structure and uses hot air circulation heating or far-infrared heating technology to continuously heat, hold temperature, and cure motor rotors transported through the conveyor system.The equipment is mainly used for curing insulation varnish after rotor winding impregnation and removing moisture through controlled heating, improving the insulation performance and service life of motor components.

Applications

Insulation Varnish Curing

After motor rotor winding and impregnation processes, including:

Conventional varnish impregnation

Vacuum pressure impregnation (VPI)

the rotor is heated at a controlled high temperature for a certain period to fully cure the insulation varnish and improve:

Electrical insulation performance

Mechanical strength

Long-term reliability

Resin Hardening and Drip Coating Curing

Used for:

Drip coating processes of new energy vehicle motor rotors

Resin coating curing

Rapid surface hardening treatment

to improve coating adhesion and insulation protection.

Moisture Removal and Preheating

Used for:

Drying and dehumidifying rotors after machining or cleaning

Preheating before subsequent production processes

to ensure stable processing quality.

Standards

The equipment manufacturing and process implementation generally comply with the following standards:

GB/T 10067.1 / GB/T 10067.4

Basic Technical Requirements for Electric Heating Equipment — General Requirements and Indirect Resistance Furnace Requirements

GB 5226.1

Safety of Machinery — Electrical Equipment of Machines, Part 1: General Technical Conditions

JB/T 8439

Technical Specifications for Thermal Curing Process of High and Low Voltage Pre-Wound Motor Insulation

GB 20052

Minimum Allowable Values of Energy Efficiency and Energy Efficiency Grades for Three-Phase Distribution Transformers and Related Energy-Saving Evaluation Requirements

Explosion-Proof Standards (GB 3836 Series)

Since flammable volatile gases may be generated during varnish drying, the furnace structure must comply with industrial explosion-proof safety design requirements.

Features

Continuous Production Operation

Uses:

Tray chain conveyors

Stainless steel mesh belts

to connect with upstream and downstream automated production processes.

Advantages:

Large production capacity

Reduced manual operation

Improved production efficiency

Multi-Zone Precise Temperature Control

The furnace is usually divided into:

Preheating zone

High-temperature heating zone

Heat preservation zone

Cooling zone

Each zone adopts independent PLC temperature control.

Temperature uniformity can generally be controlled within ±5°C, ensuring stable curing quality.

Explosion-Proof Exhaust and Safety System

Equipped with:

High-volume ventilation system

Forced exhaust system

to quickly dilute and discharge volatile flammable gases generated during drying, reducing the risk of combustion and explosion.

High Efficiency and Energy Saving

Features include:

Optimized hot air circulation system

High-density thermal insulation layer

High heat utilization efficiency

Fast temperature recovery capability

These designs significantly reduce energy consumption during continuous operation.

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