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Wuhan GeTe Electromechanical Equipment Co., Ltd
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Wuhan GeTe Electromechanical Equipment Co., Ltd

  • E-mail

    2623729929@qq.com

  • Phone

    13871140023

  • Address

    Baishazhou Fenghuo Steel Market in Hongshan District, Wuhan City

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New High Temperature Drying Cabinet

NegotiableUpdate on 01/09
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Overview
Wuhan GeTe's new high-temperature drying cabinet is an industrial enhanced version of a high-temperature oven, which combines drying and heat treatment functions. Its large capacity, high stability, and industry adaptability are the core advantages. When selecting, it is necessary to consider temperature requirements, material characteristics, and safety standards, and give priority to modular design to reduce maintenance costs.
Product Details

1. Definition and Basic Characteristics

New High Temperature Drying Cabinet(also known as high-temperature drying oven) is an industrial drying equipment with electric heating, hot air circulation or vacuum technology as its core. The temperature range usually covers 100 ℃ to 600 ℃, and some ultra-high temperature models can reach above 600 ℃.

Its core functions include:

Drying: Removing moisture or volatile components from materials (such as moisture proofing of electronic components and dehydration of food).

Heat treatment: such as metal annealing, ceramic sintering, resin curing, etc.

Sterilization and aging testing: suitable for dry heat sterilization and material durability testing of medical equipment and biological products.

Structural features:

The box is made of stainless steel or high-quality steel plate, lined with insulation material (such as aluminum silicate fiber) to improve energy efficiency.

Equipped with a forced air blowing system (fan+air duct) to ensure temperature uniformity (within ± 2.5%).

Intelligent temperature control systems (such as PID regulation) support precise temperature control and programmed operation.

2. Classification and industry adaptation

According to performance and industry requirements, high-temperature drying cabinets can be divided into the following types:

Low temperature (<100 ℃), medium temperature (100-250 ℃), high temperature (250-600 ℃), ultra-high temperature (>600 ℃)

Food drying (medium temperature), metal annealing (high temperature), special material sintering (ultra-high temperature)

Vacuum drying oven, explosion-proof drying oven, hot air circulation drying oven, programmable oven

Chemical raw materials (explosion-proof type), precision electronics (vacuum type), mass production (hot air circulation type)

Industry specific

Electronic industry drying oven, electroplating drying oven, pharmaceutical sterilization oven

Circuit board moisture-proof (electronic), coating curing (electroplating), medical device drying (pharmaceutical)

3. Differences from Similar Devices

High temperature oven vsNew High Temperature Drying Cabinet

Structural differences: Drying cabinets usually have larger capacity and are designed as double door or mobile trolley structures, suitable for batch processing; Ovens are mostly small laboratory equipment

Temperature control: Oven requires higher uniformity above 300 ℃, while drying cabinet pays more attention to the stability of industrial production

Drying oven vs. drying cabinet:

Functional focus: The drying oven emphasizes precise humidity control (such as laboratory sample dehydration), while the drying cabinet emphasizes high-temperature and rapid drying (such as industrial materials).

Technical specifications: The temperature uniformity of the drying oven is ± 2.5%, while high-temperature drying cabinets may require higher precision to meet heat treatment requirements.

4. Core application scenarios

Industrial sector:

Food processing: fruit dehydration, grain drying (medium temperature type).

Electronic manufacturing: PCB board moisture resistance, component aging testing (vacuum type is selected when oxygen free environment is required).

Chemical/Pharmaceutical: Raw material drying, instrument sterilization (high temperature+clean design).

Research fields: High temperature performance testing of materials, ceramic sintering (ultra-high temperature models).

5. Selection and usage suggestions

Key parameters:

Temperature range, uniformity, energy consumption (such as<120kW · h at 600 ℃).

Operating standards:

Do not bake flammable and explosive materials. They must be placed horizontally and grounded.

Gradually increase the temperature to avoid thermal shock.



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