Precision Drying Oven

A precision oven heats the air inside the chamber using electric heating elements and maintains the set temperature with a temperature control system. It is used for drying, curing, or heat treatment of samples. It is suitable for scenarios requiring a stable temperature environment, such as laboratory material testing and industrial product aging tests.
Selection
When selecting, consider whether the temperature range and fluctuation match the sample requirements, ensure the chamber volume accommodates the size of the objects to be processed, and verify that the heating rate meets the process rhythm. Pay attention to the material's corrosion resistance, temperature uniformity data, and safety protection features such as over-temperature protection. Energy consumption and maintenance costs should be evaluated in conjunction with the frequency of use.

Terms

Standards

Instruments

Large LCD screen, Menu Operating interface, Temperature Fluctuation +/- 1 ℃, Mirror stainless steel liner for easy cleaning, Thickened box design low surface temperature, Thermal Power reduced by more than 25%.

$ 803.00

Precision PID control technology, Temperature Fluctuation +/- 1%, mirror stainless steel liner anti-acid and alkali corrosion, combined with good air duct design to ensure Temperature uniformity, suitable for applications with high Temperature uniformity requirements.

$ 403.00

Temperature range 10~ 200 ℃, Temperature Fluctuation +/- 1 ℃, equipped with LCD screen and test hole, support multi-stage programming and fault self-diagnosis function, easy to operate and data management.

$ 601.00

Precision PID Control Temperature Fluctuation +/- 1%, mirror stainless steel liner anti-acid and alkali corrosion, studio volume 130L, equipped with independent temperature controller interface to ensure the safety of high-value samples.

$ 649.00

Temperature range 10~ 200 ℃, Temperature resolution 0.1 ℃, mirror stainless steel liner is easy to clean, multi-stage programmable function supports automatic operation, independent temperature limit alarm ensures safety, energy saving design reduces Thermal Power by more than 25%.

$ 646.00

Application width 300mm, Spreader accuracy +/- 0.005mm, Drawdown blade can be quickly disassembled and cleaned, three independent temperature control oven to ensure uniform drying, suitable for a variety of substrates and Stock processing.

$ 24279.00

Infrared heat source for fast drying, Power 550W, metal material to ensure durability, built-in heating element to pRoduce uniform heat cycle, effective evaporation of water, suitable for drying various materials.

$ 159.00

Far infrared radiation heating technology, temperature control accuracy +/- 2 ℃, equipped with thermistor control thermoMeter, rapid low consumption drying, Inner Chamber dimensions 320 * 380 * 320mm.

$ 391.00

Adopt PID control technology to ensure Temperature Fluctuation +/- 1%, mirror stainless steel liner to prevent acid and alkali corrosion, Inner Chamber dimensions 420 * 450 * 350mm to facilitate sample access, combined with good air duct design to ensure Temperature uniformity.

$ 570.00

Intelligent PID control technology, Temperature Fluctuation +/- 1%, mirror stainless steel liner anti-acid and alkali corrosion, air duct design to ensure uniform temperature, with RS485 Communication interface and independent temperature limiter optional.

$ 729.00

Volume 80L, Temperature resolution up to 0.1 ℃, support multi-stage programmable control, with self-diagnosis and independent temperature limit alarm function, simplify the complex experimental process.

$ 740.00

Temperature control accuracy of +/- 1%, temperature resolution of 0.1 ℃, equipped with independent temperature limiting controller and RS-485 communication interface, support three-sided circulating air duct to ensure uniform and stable temperature, safe and reliable operation.

$ 751.00

Adopt PID control technology to ensure Temperature Fluctuation +/- 1%, mirror stainless steel liner to prevent acid and alkali corrosion, Inner Chamber dimensions 320 * 350 * 350mm, air duct design to ensure uniform temperature, with RS485 interface for easy communication.

$ 477.00

Far infrared radiation heating technology, Temperature range RT +~ 300 ℃, temperature fluctuation +/- 2 ℃, equipped with thermistor control thermoMeter, with fast, low consumption, easy adjustment and other advantages, suitable for drying a variety of samples.

$ 465.00

Far infrared radiation heating technology, equipped with thermistor control thermoMeter, Temperature range RT +~ 300 ℃, Temperature Fluctuation +/- 2 ℃, with fast drying and low energy consumption characteristics, suitable for a variety of Sample Handling.

$ 586.00

Articles

Research on the Stepwise Curing Process of Coatings Using Multi-Stage Temperature Control Ovens
This article investigates a novel process for achieving stepwise curing of coatings using a multi-stage temperature-controlled oven.
Evaluation of thermal aging life of hot melt adhesives using high-temperature oven method
This article introduces a method for evaluating the thermal aging life of hot melt adhesives using a high-temperature oven. The principle is based on the Arrhenius equation, where aging is accelerated by increasing the temperature to simulate performance changes under long-term use.
Thermogravimetric Analyzer for Determining the Solid Content of Coatings
Thermogravimetric analyzers determine the solid content of coatings by monitoring the change in sample mass with temperature, offering faster and more precise results compared to traditional oven methods.
What is the deviation between the moisture meter's rapid moisture measurement and the oven method?
This article primarily compares the differences between rapid moisture analyzers and traditional oven methods in measuring moisture. Understanding these differences helps in using rapid moisture analyzers more appropriately, ensuring data reliability while maintaining efficiency.
Key Technical Points for Determining Paper Moisture Using the 105℃ Oven Method
This article introduces the specific procedure for measuring paper moisture using the 105°C oven method. The process involves placing paper samples into a 105°C oven and drying them until their weight remains constant, then calculating the moisture content based on the weight difference before and after drying.
Oven combined with analytical balance for determination of solid content
This article introduces a method for determining the solid content of samples in the laboratory by combining an oven and an analytical balance.
Temperature gradient control in high-temperature ovens during thermal resistance testing.
The heat resistance test simulates the performance of materials under high temperatures using a high-temperature oven, and the accuracy of its results is highly dependent on the uniformity of temperature inside the oven. If the temperature gradient is poorly controlled, it can lead to uneven heating of samples from the same batch, compromising the validity of the test.
What are the differences between a vacuum oven and a conventional oven?
The main difference between a vacuum oven and a conventional oven lies in their working pressure. Conventional ovens operate at atmospheric pressure, heating through air convection, making them suitable for routine drying tasks. In contrast, vacuum ovens are evacuated to low pressure to reduce air presence, primarily relying on thermal radiation for heat transfer. This makes them ideal for processing heat-sensitive, oxidation-prone materials or those requiring thorough drying.
Natural Convection vs Forced Air Drying: What’s the Difference Between the Two "Schools" of Laboratory Ovens?
This article introduces two drying methods for laboratory ovens: natural convection and forced air drying. What are the differences between them?