Drying Incubator

The drying incubator maintains a constant internal temperature through heating elements and a temperature control system, working in conjunction with an air circulation device to accelerate moisture evaporation. This allows samples to complete drying or cultivation processes at set temperature and humidity levels. It is used in laboratory settings for material drying, microbial cultivation, reagent storage, and other scenarios requiring a stable, dry environment.
Selection
When selecting, consider the sample size to determine the volume range, match temperature control precision based on the material's temperature resistance requirements, pay attention to heating rate and uniformity according to the experiment duration, choose the power specification based on power supply conditions, check whether the chamber material is corrosion-resistant, and confirm the presence of safety features such as overheat protection.

Terms

Standards

Instruments

Temperature range foster RT + 5~ 80 ℃, drying 80~ 220 ℃, Temperature Fluctuation +/- 0.5 ℃, mirror stainless steel liner is easy to clean.

$ 638.00

Temperature range foster RT + 5~ 80 ℃, drying 80~ 250 ℃, Temperature Fluctuation +/- 0.5 ℃ to +/- 1 ℃, forced warm air circulation to ensure uniform temperature, mirror stainless steel liner easy to clean.

$ 761.00

Temperature range foster RT + 5~ 80 ℃, drying 80~ 250 ℃, Temperature Fluctuation +/- 0.5 ℃, with forced warm air circulation to ensure uniform temperature, optional RS-485 interface to record temperature changes.

$ 971.00

Mirror stainless steel liner is easy to clean, Temperature range foster RT + 5~ 80 ℃, drying 80~ 250 ℃, Temperature Fluctuation +/- 0.5 ℃ or +/- 1 ℃, with forced warm air circulation and timing function to ensure uniform and stable temperature.

$ 470.00

Temperature range foster RT + 5~ 80 ℃, drying 80~ 220 ℃, using mirror stainless steel liner and forced convection technology to ensure uniform temperature, four corners and a half arc easy to clean, the door opens automatically stop heating.

$ 1125.00

With dual functions of drying and fostering, temperature control accuracy of +/- 0.5 ℃, forced warm air circulation to ensure temperature uniformity, mirror stainless steel liner design for easy cleaning and maintenance, optional RS-485 interface for data recording.

$ 528.00

Temperature range foster RT + 5~ 80 ℃, drying 80~ 220 ℃, Temperature Fluctuation +/- 0.5 ℃, forced warm air circulation to ensure uniform temperature, mirror stainless steel liner is easy to clean, the door opens automatically stop heating.

$ 553.00

With drying and foster dual mode automatic conversion function, Temperature Fluctuation foster +/- 0.5 ℃, drying +/- 1 ℃, using fan forced convection and autonomous air duct circulation system, improve Temperature uniformity and automatic discharge of water vapor.

$ 459.00

Integrated Incubator and Shaker functions, Oscillation Frequency 40~ 300rpm, Temperature range RT + 5~ 65 ℃, 304 stainless steel liner and microcomputer PID control, with UV sterilization and automatic storage setting paraMeters.

$ 1427.00

Integrated Incubator and Shaker functions, small footprint and large bottle load; Temperature range 4~ 65 ℃, Temperature Fluctuation +/- 0.2 ℃; 304 stainless steel liner for easy cleaning, quiet operation and support multi-stage programming.

$ 2315.00

Using 200g weight and 1cm ² bottom area design, in line with GB/T 1728 standard, through the filter paper test method to accurately determine the film surface drying and practical drying time, easy to operate, reliable results.

$ 114.00

Using 200 +/- 0.2 g weight and 1 square centiMeter bottom area design, the drying process of the paint film was accurately determined by the cotton ball method to distinguish between surface drying and actual stages in drying.

$ 115.00

The circular track is used to automatically record the film drying process continuously, equipped with 4 kinds of specifications to choose from, the track diaMeter is 100mm, and the measurement error is +/- 0.5%, which can intuitively analyze the stages in drying state.

$ 206.00

Mirror stainless steel liner is easy to clean, temperature control accuracy of +/- 0.5 ℃, with forced warm air circulation to ensure uniform temperature, support 1-9999 minutes timing and over-temperature protection function.

$ 611.00

Double station design can process two samples at the same time, Vacuum Level up to -0.098MPa, drying time only 4-6 minutes, suitable for rapid drying of wet paper samples with a diaMeter of no more than 200mm.

$ 4914.00

Articles

The use of gravure proofing machines in the comprehensive evaluation of gravure ink printability and drying performance.
This article explores how a gravure proofing press can be used to comprehensively evaluate the printability and drying properties of gravure inks. The experiment tested the dot sharpness, transfer rate, and leveling properties of different inks using standard equipment, while recording drying times through the filter paper method and infrared temperature measurement.
The friction color fastness tester measures the amount of color transfer under dry and wet abrasion conditions for ink.
This article introduces a method for testing the amount of ink color transfer using a friction colorfastness tester, simulating both dry and wet rubbing conditions. Dry rubbing involves rubbing the ink surface with a dry white cotton cloth, while wet rubbing uses a white cotton cloth moistened with water.
Laboratory Drying Oven Model Selection - Difference Between Forced Air Convection and Non-Forced Air Convection
This article on the selection of laboratory drying ovens primarily introduces the differences between forced convection (air-blowing) and natural convection (non-air-blowing) drying ovens.
Incubator Selection: Applicability of Temperature Control Range and Function Configuration
This article mainly introduces the compatibility between temperature control range and functional configuration that need to be considered when selecting an incubator.
Surface Absorbency Tester for Predicting Drying Speed of Printing Ink on Coated Paper
This article explores how the surface absorbency tester predicts the drying speed of ink on coated paper. Traditional methods rely on actual printing tests, which are time-consuming and difficult to quantify.
Safety Considerations for Selecting Explosion-Proof vs. Ordinary Drying Ovens in Paint Laboratories
When selecting a drying oven in a paint laboratory, the type should be determined based on the safety risks of the samples and the environment.
The coating machine applies the adhesive layer of the plaster patch onto the backing layer.
The coating machine applies adhesive evenly onto the backing material through steps such as feeding, coating, drying, and winding, forming a stable adhesive layer.
The oral dissolving film is uniformly coated by a film applicator and then dried and formed.
Oral dissolving films are prepared by a coating mechanism, where a liquid containing film-forming materials is uniformly applied onto a substrate, followed by drying to remove the solvent and form a solid film.
Determination of dry matter content in pulp using an electric thermostatic drying oven.
This article introduces the method for determining the dry matter content of pulp using an electric thermostatic drying oven. Dry matter content is a key indicator for evaluating pulp quality. The principle of determination involves evaporating the moisture in the pulp through heating and calculating the content based on the mass difference before and after drying.
Zero-span tensile strength tester measures the tensile strength of wet pulp.
This article introduces the method of measuring the tensile strength of wet pulp using a zero-span tensile strength tester. Traditional testing is often conducted after the pulp is dried, but testing in the wet state can more directly reflect the bonding potential between fibers.
Application of Roll-to-Roll Coating Machines in the Energy Storage Field
A roll-to-roll coating machine is a continuous coating equipment. Its core process involves uniformly applying slurry onto the surface of a flexible substrate (such as metal foil or polymer film), followed by steps like drying and rolling to produce continuous coated materials.
Drying Time Determination: Simultaneous Verification of Surface Drying Test Method, Through-Drying Test Method, and Instrumental Test Method
This article discusses three methods for determining the drying time of materials such as coatings. Traditional methods are divided into surface drying and through drying measurements, which are simple to operate but rely on subjective judgment. Instrumental methods provide objective data by monitoring physical changes such as mass and resistance, offering higher precision but at a higher cost.
Preparation of Paint Film Test Panels
The standardized preparation of paint film test panels is fundamental for accurately assessing the performance of paint films. The entire process includes key steps such as substrate selection and pretreatment, paint preparation, coating, drying and curing, thickness measurement, and curing.
From aluminum foil and copper foil to electrode coating, the laboratory coating machine handles it all in one go.
A laboratory coating machine is a sample preparation device used for material research and development and quality control. It evenly applies slurry onto substrates such as aluminum foil and copper foil, forming a film of specific thickness by controlling the drying process.
The coating machine in the laboratory ensures a more stable functional layer on the surface of copper and aluminum foils.
The laboratory coating machine is used to apply functional layers on the surfaces of copper foil and aluminum foil. By precisely controlling parameters such as coating speed, slurry viscosity, and drying temperature, it enhances the uniformity and adhesion of the coatings.