Heating Applicator

The heating Coater uses an electric heating element to heat the coating head, allowing high-viscosity samples to spread evenly on the substrate. It is used for the preparation of film thickness in coatings and inks, and works in conjunction with testing instruments to analyze properties such as leveling and hiding power.
Selection
Select the temperature control range based on the sample viscosity, and consider matching the substrate size to the coating width. Precise constant temperature control is required for crystalline materials, with a focus on the coating thickness adjustment function. Ensure compatibility with laboratory space and power conditions.

Terms

Standards

Instruments

Spreader accuracy up to +/- 0.003mm, thickness range of 0~ 10mm, heating temperature up to 180 ℃, equipped with automatic feeding system and stepless speed control, support a variety of custom functions such as jet device and UV curing.

$ 16210.00

Spreader speed 5~ 200mm/s continuously variable speed, scraper Spreader accuracy +/- 0.003mm, support heating temperature RT +~ 180 ℃, baseplate heating method to ensure stable Spreader effect, improve experimental conformity.

$ 7658.00

Meyer Rod coating accuracy of +/- 0.001mm, heating Temperature range RT +~ 260 ℃, using clamshell drawdown blade and Touchscreen control, support Spreader speed 1~ 300mm/s stepless speed and application length free adjustment, easy to clean.

$ 4914.00

Coating speed 1~ 300mm/s stepless speed regulation, meyer Rod coating accuracy +/- 0.001mm, support heating temperature to 180 ℃, Vacuum chuck fixed substrate, Touchscreen control is easy to operate.

$ 4592.00

Spreader effective area of 600mm * 800mm, Heating Temperature range RT +~ 180 ℃, Spreader accuracy +/- 0.003mm, Spreader Film thickness 0~ 10mm adjustable, using automatic feeding system and stepless speed control, improve film uniformity and efficiency.

$ 12983.00

Adopt bar coating method, coating speed 1~ 300mm/s stepless speed regulation, film thickness control accuracy of +/- 0.001mm, equipped with Vacuum chuck and heating function, support Spreader length and speed free adjustment, suitable for a variety of substrate coating.

$ 3462.00

Spreader accuracy up to +/- 0.003mm, heating temperature up to 180 ℃, equipped with 3L stainless steel Mixing Tank, support infinitely variable speed and automatic feeding function, to meet the needs of different thickness Spreader.

$ 16210.00

Adopt drawdown Bar & Blade double coating method, Spreader accuracy up to +/- 0.003mm, heating Temperature range RT +~ 180 ℃, equipped with air knife function, ensure Spreader uniform and stable.

$ 3785.00

Spreader accuracy of +/- 0.005mm, the rate range of 5~ 180mm/s, heating Temperature Uniformity +/- 3 ℃, using removable drawdown blade and bar double coating method to ensure uniform and stable coating.

$ 5721.00

Coating speed 5~ 200mm/s, Spreader thickness range 0.001~ 10mm adjustable, using Vacuum chuck and heating function, improve Spreader accuracy and uniformity, support automatic feeding system.

$ 9110.00

Imported High Accuracy Mayer Rods, Spreader accuracy of +/- 0.003mm, speed range of 2~ 180mm/s, with heating and vacuum adsorption functions, support a variety of Spreader methods, improve film conformity and repRoducibility.

$ 5560.00

Spreader accuracy +/- 0.003mm, coating speed 5~ 200mm/s, heating temperature RT +~ 180 ℃, Vacuum chuck to ensure Spreader uniform stability, improve repRoducibility.

$ 6528.00

Using bar coating method, thickness range 1~ 571.5 μ m, Spreader accuracy +/- 0.001mm, with heating and Vacuum chuck function, suitable for different substrates, improve film repRoducibility and uniformity.

$ 5721.00

With heating and UV curing functions, Spreader thickness is adjustable from 0 to 10mm, speed is 5 to 200mm/s, support Touchscreen control and a variety of customization options.

$ 8465.00

Servo motor to ensure stable operation, film accuracy of +/- 0.001mm, equipped with heating function Temperature Uniformity +/- 1 ℃, Vacuum chuck fixed substrate, improve Spreader uniformity and efficiency.

$ 4108.00

Articles

How to choose a laboratory coater? Which one should you buy: wire bar, scraper, or slot die?
This article introduces three methods for selecting laboratory coating machines: wire bar coating is suitable for low-viscosity coatings, offering low cost and simple operation; blade coating is ideal for medium-to-high viscosity slurries or those containing particles, with a wide range of film thickness control; slot-die coating provides the highest precision and is suitable for high-end applications such as electronic films.
Standard Test Method for Measuring Optical Haze of Transparent Coated Films Using a Haze Meter
This article introduces the standard method for measuring the optical haze of transparent coated films using a haze meter. First, the instrument must be calibrated according to the standard, and the sample needs to be conditioned in a constant temperature and humidity environment. The measurement involves four steps, including air zeroing, measuring total transmission and scattered light flux, and finally calculating the haze value.
The effect of the substrate fixing method on coating uniformity in a vacuum adsorption blade coating tester.
This article discusses the impact of different substrate fixing methods on coating uniformity in a vacuum-assisted knife-over-roll coating tester. It compares four methods—vacuum adsorption, electrostatic adsorption, mechanical clamping, and adhesive fixing—focusing on their mechanical principles and limitations.
Comparison of Coating Accuracy between Laboratory Blade Coater and Slot Die Coater
This article compares the coating precision of blade coaters and slot-die coaters in the laboratory. Blade coaters are suitable for thick coatings, with simple operation but relatively large uniformity errors; slot-die coaters offer higher precision and better uniformity for thin coatings. The choice of equipment depends on coating thickness and precision requirements.
Process optimization of heating coater in lithium battery electrode preparation
This article introduces process optimization methods for heating coaters in the preparation of lithium battery electrodes.
Effect of Different Coating Speeds on Film Thickness Consistency in an Adjustable Film Applicator
This paper studies the influence of coating speed of an adjustable film applicator on film thickness uniformity. In the experiment, the coating blade gap was fixed at 100 μm, and a resin solution with a viscosity of 200 mPa·s was used to prepare films at five speeds ranging from 10 to 80 mm/s, followed by thickness measurements.
The Stripe Issue Caused by Tension Fluctuations in Roll-to-Roll Laboratory Coaters and Its Solutions
This paper analyzes the causes of and countermeasures for coating streaks resulting from tension fluctuations in roll-to-roll laboratory coaters.
Analysis of Common Defects in Laboratory Coating Machine Blade Coating and Adjustment Methods for Process Parameters
This article introduces common defects in the blade coating process of laboratory coaters, such as streaks, orange peel, bubbles, uneven thickness, and missed coating. It analyzes the causes of these issues, which are primarily related to material properties, operating parameters, and environmental factors.
Laboratory rod coater for submicron wet film preparation of photoresist.
This article introduces the process of using a laboratory bar coater to prepare submicron wet films of photoresist.
Application of Perovskite Coater in the Preparation of Intermediate Layers in Tandem Solar Cells
This article introduces the application of perovskite coating machines in the preparation of the intermediate layer of tandem solar cells.
Using a spray coater to achieve the preparation of functionally graded films.
This paper introduces a method for preparing functionally gradient films using a spray coating machine.
Application of Spray Coating Machines in the Encapsulation of Flexible Electronic Devices
This paper introduces the application of spray coating machines in the encapsulation of flexible electronic devices.
Roll-to-Roll Preparation of Perovskite Coaters for Flexible Perovskite Solar Cells
This article introduces the roll-to-roll fabrication method of flexible perovskite solar cells.
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.
Automatic coating machines are used for the uniform application of conductive silver paste onto ITO glass.
This article explores the technique of uniformly coating conductive silver paste on ITO glass using an automatic coating machine. By controlling parameters such as coating speed and pressure, the automatic coating machine replaces traditional manual methods, thereby enhancing the consistency and repeatability of the coating process.