Automatic Low-Temperature Coating Machine

The automatic low-temperature film applicator controls the coating temperature through a refrigeration system, evenly applying the coating onto the substrate surface in a low-temperature environment. It is used to simulate low-temperature construction conditions and test the film-forming performance and adaptability of coatings in cold environments. It is commonly employed in the paint industry for quality control and research and development testing.
Selection
When selecting, focus on the temperature control range and accuracy to ensure coverage of the required testing conditions. Consider whether the coating width and thickness adjustment range match the sample dimensions. Check if the substrate clamping method is secure, and whether the energy consumption and noise of the refrigeration system comply with site restrictions. Confirm the ease of use of the operation interface and maintenance costs.

Terms

Instruments

Using fluorine-free refrigeration system and mirror stainless steel liner, temperature range -40~ 65 ℃, with microcomputer intelligent control and independent temperature limit alarm function, support multi-stage programming and RS-485 communication interface.

$ 5245.00

Adopt binary cascade refrigeration mode to achieve -40 ℃ low temperature control, Temperature Uniformity ≤ 2.0 ℃, equipped with mirror stainless steel inner wall and automatic energy-saving working condition adjustment system, to meet the standard environmental testing requirements.

$ 7219.00

Adjustable Blade Coating device to achieve 0.005-3mm thickness control, equipped with 200 ℃ heating roller and 1 Meter drying tunnel, support 1-10m/min continuous coating speed, with automatic correction function to ensure material alignment.

$ 19438.00

Using photoelectric detection and automatic dial display, the measurement range is +/- 45 °, the minimum reading is 0.001 °, and the low optical rotation sample can be accurately analyzed, and the operation is simple.

$ 1380.00

Adopt two-stage Compressor cascade refrigeration technology implementation -40 ℃ low temperature, PID temperature control with proportional refrigeration technology to improve the temperature Stability to +/- 0.5 ℃, DC brushless motor supports 100-1200RPM stepless speed regulation, with a variety of alarm and automatic recovery function.

$ 1805.00

Effective coating area 700 * 1300mm, heating temperature up to 180 ℃, drawdown Bar & Blade Vacuum chuck coating method, coating speed 5~ 180mm/s, accuracy +/- 0.02mm, with automatic feeding system, suitable for a variety of materials Moulding.

$ 21858.00

Platinum ElectRode Sensor ensures fast and stable measurement, supports 1 to 3 point calibrating and automatic temperature compensation, Measurement accuracy of +/- 1% F. S, with automatic end point locking and full waterproof performance.

$ 160.00

Adopt two-stage Compressor cascade refrigeration technology implementation -40 ℃ low temperature, equipped with PID temperature control technology to ensure Temperature Stability +/- 0.5 ℃, DC brushless motor supports 100-1200rpm stepless speed regulation, with automatic alarm and power failure recovery function.

$ 1805.00

With bar and drawdown blade two coating methods, Spreader thickness range 0~ 10mm, coating speed 5~ 200mm/s, support stepless speed and automatic feeding customization function.

$ 9755.00

Temperature range -20~ 100 ℃, Temperature Fluctuation ≤ +/- 0.01 ℃, using imported fully enclosed Compressor refrigeration system and intelligent PID adjustment, the shell is all stainless steel structure, can be connected to computer control.

$ 2331.00

80L studio volume with -20~ 150 ℃ wide temperature control, using fully enclosed low noise Compressor and automatic adjustment of refrigeration conditions, Temperature Uniformity ≤ 2.0 ℃ to ensure test stability.

$ 6299.00

The binary cascade refrigeration method is used to achieve low temperature of -70 ° C, Temperature Uniformity ≤ 2.0 ° C. It is equipped with a fully enclosed low-noise Compressor and an automatic energy-saving control system to ensure a stable and reliable test environment.

$ 8868.00

Temperature range -10~ 100 ℃, Temperature Uniformity +/- 0.05 ℃, no heat centrifugal circulation pump to reduce the influence of temperature field, U-shaped return circulation design to ensure uniform flow field and temperature field, with power-off protection and low water level alarm and other safety functions.

$ 1597.00

Polarographic coating ElectRode, Response Time no more than 30 seconds, automatic temperature compensation range 0~ 40 ℃, portable design for easy field operation, Measurement range 0.0~ 20.0mg/L, accuracy +/- 0.3mg/L.

$ 175.00

Temperature range -10~ 100 ℃, Temperature Uniformity +/- 0.05 ℃, the use of non-heat centrifugal pump to reduce the impact of temperature field, U-shaped reflux cycle to achieve a highly uniform temperature field, with power-off protection and low water level alarm and other safety functions.

$ 3146.00

Articles

Laboratory blade coating machine is used for analyzing the film-forming characteristics of high-viscosity slurries.
This article analyzes the characteristics of a laboratory doctor blade coater for forming films from high-viscosity slurries. It focuses on the impact of slurry rheological properties on film formation quality.
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.
Application of Laboratory Scraper Heating Coating Machine in Hot Melt Adhesive Coating
This article introduces the application of a laboratory blade heating coating machine in hot melt adhesive coating. It first explains the coating process and principles, including three stages—heat conduction, fluid shear, and surface wetting—as well as the influence of temperature on adhesive viscosity.
Application of Automatic Coating Machines in the Preparation of Ceramic Coatings for Lithium-Ion Battery Separators
This article discusses the application of automatic film coating machines in the preparation of ceramic coatings for lithium battery separators. Traditional manual coating methods often result in uneven coatings, which can adversely affect battery performance.
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.
Standard ink film preparation with a blade coater before tack testing of offset printing inks.
This article introduces the method of preparing a standard ink film using a blade coater before testing the tackiness of offset printing inks. It explains the principle of controlling ink film thickness by adjusting the blade gap and details the operational steps from securing the substrate and applying the ink to completing the coating process.
Application of Automatic Film Coating Machine in Waterproof Coating Finishing of Textiles
Automatic film coating machines are used for waterproof coating finishing on textiles, enabling precise control of coating thickness, improving uniformity and production efficiency.
Study on the Dispersion Uniformity of Blade Coating Machines in High-Load Electrode Slurry Coating
This article investigates how to optimize the dispersion uniformity of coatings by adjusting process parameters when using a blade coater to handle high-load electrode slurries.
Vacuum adsorption coating machine solves the flatness challenge in the transfer of ultra-thin graphene films.
The vacuum adsorption coating machine transfers graphene films smoothly onto target substrates through controlled negative pressure, solving issues such as wrinkling, tearing, and contamination often encountered with traditional methods.
Application of Laboratory Coating Machines in the Coating of Optical-Grade PET Anti-Reflection Coatings
This article discusses the application of laboratory coating machines in the preparation of anti-reflective coatings on optical-grade PET substrates. By controlling parameters such as coating speed and gap, the coating machine enables precise adjustment of coating thickness, thereby enhancing light transmittance and reducing reflection.
The wire bar coater with heating and vacuum adsorption is used for the preparation of perovskite solar cell layers.
This article introduces a new technique for preparing the light-absorbing layer of perovskite solar cells: a wire-bar coater with heating and vacuum adsorption capabilities.
Vacuum adsorption coating machine is used for the coating of proton exchange membrane fuel cell electrodes.
This article introduces the application of vacuum adsorption coating machines in the coating of proton exchange membrane fuel cell electrodes.
Application of Automatic Coating Machines in the Preparation of Ceramic Coatings for Lithium Battery Separators
This article introduces the application of automatic coating machines in the preparation of ceramic coatings for lithium battery separators. Traditional
The experimental sample of pressure-sensitive adhesive coated on the surface of PET labels using a film coater.
This article introduces the experimental method of applying pressure-sensitive adhesive to the surface of PET labels using a coating machine.
Preparation of composite films by coating mechanism for electrical performance experimental characterization
This article introduces the method of preparing composite films using a film coating machine and testing their electrical properties. The film coating machine evenly spreads the slurry with a blade, controlling thickness and uniformity. The preparation process includes raw material preparation, substrate treatment, coating, and curing.