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High-Temperature Curing Chamber/Oven

The High-Temperature Curing Chamber, also known as a drying or baking curing room, is a high-performance industrial solution designed for large-scale thermal pr...

The High-Temperature Curing Chamber, also known as a drying or baking curing room, is a high-performance industrial solution designed for large-scale thermal processing. It utilizes an advanced forced-air hot vent circulation system to ensure uniform temperature distribution across the entire workspace. Whether you are performing surface curing, moisture removal, or thermal stress testing, this chamber provides a stable, high-capacity environment to accelerate the drying and hardening processes for various industrial materials and products.

Applications

High-Temperature Curing Chamber, also known as a drying and curing room, is an advanced hot air circulation system designed for curing large electrical components, motors, coatings, chemical products, and surfaces, as well as for drying moisture from food and various other products. It ensures uniform temperature distribution throughout the working chamber.

Standards

(1) GB 50052: Code for design of power supply and distribution systems.

(2) GB 50054: Code for design of low-voltage electrical installations.

(3) GB 50169: Code for construction and acceptance of grounding devices in electrical installations.

(4) GB 50243: Code for acceptance of construction quality of ventilation and air conditioning works.

(5) IEC 60068-2-2: Environmental testing - Part 2-2: Tests - Test B: Dry heat.

(6) ISO 9001: Quality management systems (Production compliance).

Features

1. Mechanical Structure: Primarily composed of an electrical control system, insulated chamber system, air circulation system, heating system, humidification and water circuit system, refrigeration and dehumidification system, etc.

2. Utilizes modular insulated chamber panels, allowing for arbitrary expansion of internal volume. Easy to assemble and disassemble, with dimensions customizable by the customer.

3. The interior features SUS#304 stainless steel panels, while the exterior utilizes Baosteel A3 powder-coated steel for an aesthetically pleasing finish. Insulation layers employ PU foam or rock wool.

4. The control system incorporates imported single-point or programmable controllers with a user-friendly interface, allowing flexible parameter settings for convenient operation.

5. Refrigeration units incorporate imported European/American compressors with eco-friendly refrigerants. A dual-circuit low-temperature system design employs separate compressors for different temperature zones, extending equipment lifespan.

6. Large observation windows in interior doors facilitate monitoring of test samples.

7. The left side of the unit features a 50mm diameter test port for connecting external power or signal cables (port size and quantity are optional).

8. Utilizes imported fan motors + high/low-temperature resistant aluminum alloy circulation fans. High-quality centrifugal fans ensure powerful air circulation, eliminating dead zones and achieving uniform temperature distribution throughout the test chamber.

9. Equipped with advanced safety and protection devices: earth leakage circuit breaker, over-temperature protector, phase failure protector, water shortage protector, low-water protection, short-circuit protection, current overload protection, along with audible/visual alarms and SMS alerts.

Parameters

Item Specification
Insulation Material PU or rock wool (choose one); thickness: 5cm, 7.5cm, 10cm, 15cm (choose one)
Temperature Range RT ~ +60°C ~ +85°C (up to ~300°C)
Temperature Fluctuation ±1°C
Heating Rate Average 3~5°C/min; Instrument resolution: 0.1°C
Operating Mode Temperature adjustable, constant operation (programmable operation available with programmable controller)
Heating Power Determined by the size of the aging chamber
Power Supply 380V; 50 Hz; If using 220V power supply, a minimum current of 120A is required for installation
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