Thin Film Preparation Machine

The film preparation machine forms a uniform coating on the substrate surface through methods such as coating, blade coating, or spin coating, and is used for producing sample film layers in the laboratory. Its principle involves controlling the spreading and curing of liquid materials on the substrate, making it suitable for film formation testing and quality control of coatings and inks.
Selection
When selecting a film preparation machine, considerations include matching the coating method with material viscosity, ensuring substrate dimensions are compatible with machine specifications, verifying control precision meets thickness requirements, ensuring operational convenience aligns with experimental habits, and evaluating maintenance costs and availability of spare parts.

Terms

Standards

Instruments

Adopting the formed preparation 1.5μm wet-film, stainless steel material is durable and easy to clean, suitable for a variety of Coating and chemical fields, application width 60mm.

$ 120.00

Using extrusion process and chrome plating surface, the wet film thickness can be as low as 1.5 μ m, and the groove design is wide to improve the Coating Weight, which solves the problem of traditional steel wire loosening and cleaning difficulties, and realizes stable ultra-thin Spreader.

$ 477.00

The wet film thickness can be as low as 1.5μm to achieve ultra-thin Spreader; the bottom of the groove is wider, and the Coating Weight is larger; the extrusion process is adopted to avoid the problem of loose wire and broken wire, and it is easy to clean.

$ 477.00

Adopt scale differential head to adjust film Film thickness, Graduation 10 μ m, film range 0~ 5000 μ m, accuracy +/- 5 μ m, drawdown blade straightness +/- 2 μ m, die steel drawdown blade wear resistance corrosion resistance.

$ 280.00

Adopt scale differential head to adjust film thickness, Graduation 10 μ m, film range 0~ 5000 μ m, drawdown blade straightness +/- 2 μ m, die steel drawdown blade has high Hardness and Abrasion Resistance.

$ 315.00

Adopt scale differential head to adjust film Film thickness, Graduation 10μm, film range 0~ 5000μm, accuracy +/- 2μm, drawdown blade straightness +/- 2μm, die steel material to ensure wear resistance and corrosion resistance.

$ 477.00

Adopt scale differential head to adjust film thickness, Graduation 10 μ m, film range 0~ 5000 μ m, drawdown blade straightness +/- 2 μ m, die steel drawdown blade wear resistance corrosion resistance, aluminum frame light and durable.

$ 332.00

Travel 0-1.25 mm, measurement error +/- 1HAM, suitable for thin rubber samples with a thickness of 1.5mm or more. Sensitivity is high, and it needs to be used with a constant load measuring rack to ensure Precision.

$ 921.00

The continuous groove structure is made by extrusion process, the thickness of Spreader is 0 μ m, the total length is 400mm and the application width is 300mm. 304 stainless steel is easy to clean.

$ 178.00

Echo-echo technology implementation of 0.15mm ultra-thin part measurement, resolution of 0.001mm, can penetrate 0.5mm coating measurement substrate Film thickness, support sound speed calibrated and difference mode settings.

$ 1655.00

Using a formed pRoduction process, the film Film thickness is as thin as 4.6μm, the accuracy is up to 0.1 micron, and the effective Spreader width is 30cm. It can be used with an automatic Film Applicator and has the advantage of continuous wire.

$ 186.00

Linear dispersion surface is formed by cold extrusion processing technology, no risk of wire loosening, wet film thickness 50 μ m, can achieve ultra-thin film Spreader, smooth surface and easy to clean.

$ 267.00

Wet film thickness can be as low as 1.5μm, support ultra-thin Spreader; use extrusion process and chrome plating surface to reduce clogging and disconnection problems, groove design to optimize Coating Weight, adapt to a variety of substrate needs.

$ 477.00

Using formed pRoduction process, wet film thickness 0 μ m, film accuracy of 1 μ m, special groove structure to ensure uniform Spreader and easy to clean.

$ 120.00

Using oil Bath heating medium, Temperature range from room temperature to 200 ℃, temperature control accuracy +/- 0.5 ℃, equipped with sample clamping grid to ensure temperature stability, suitable for various film thermal cissing rate tests.

$ 1510.00

Articles

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.
Differential Scanning Calorimetry for Measuring the Melting Temperature of Thin Films
Differential scanning calorimetry analyzes thermal transitions in materials by measuring the heat flow difference between the sample and a reference. When determining the melting temperature of thin films, the sample must be uniformly prepared, with a mass between 3 and 10 milligrams. Testing is typically conducted at heating rates ranging from 5 to 20°C/min under a nitrogen protective atmosphere.
Heating and blade coating of gel electrolyte films for zinc-ion batteries.
This article introduces the heating doctor-blade coating method for preparing gel electrolyte films in zinc-ion batteries. The method involves spreading a slurry onto a substrate using a doctor blade, followed by heating to evaporate the solvent and form a film.
Blade-coating preparation of hole transport layers for perovskite solar cells.
This article introduces the method of preparing the hole transport layer for perovskite solar cells using the doctor-blade coating technique. The doctor-blade coating method involves spreading the solution evenly on the substrate with a blade to form a thin film, making it suitable for large-scale production.
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.
Heating coating machine is used for the doctor-blade coating of gel electrolyte films in zinc-ion batteries.
This article introduces the blade coating process for preparing gel electrolyte films for zinc-ion batteries using a heated coating mechanism. By controlling parameters such as temperature, coating speed, and gap height, this method enables the fabrication of films with uniform thickness and smooth surfaces.
Preparation of metal thin films by the coating method for mechanical property studies.
This paper discusses the key process parameters in the preparation of metal thin films using a film coater and their effects on mechanical properties. The film coater forms metal thin films on a substrate through solution deposition, with its uniformity and repeatability directly influencing film quality.
Multilayer functional films are constructed by layer-by-layer coating using a coating machine.
This article introduces a method for preparing multilayer functional films using a coating mechanism. By sequentially coating different materials layer by layer, it enables precise control over the thickness and structure of each layer, thereby adjusting the optical, electrical, and other properties of the films.
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.
The laboratory coating machine provides a uniform coating solution for the preparation of optical thin films.
The laboratory coating machine is a device used for the research and development of optical thin films and small-batch preparation. It forms uniform thin films on substrates by precisely controlling parameters such as coating speed and material viscosity.
Copper nanowire and zinc oxide thin film preparation coater
The coating machine is a key device for preparing copper nanowires and zinc oxide thin films, which uniformly coats slurry onto a substrate through methods such as blade coating to form a thin film.
The laboratory coating machine provides uniform coating for OCA optical adhesive and AR coating.
The laboratory film coater is a precision instrument used to prepare uniform thin films on substrates, playing a crucial role in the research and development of OCA optical adhesives and AR coatings. It ensures consistent film thickness and prevents defects by precisely controlling parameters such as coating speed, gap distance, and solution viscosity.
The laboratory film applicator provides a uniform coating solution for the preparation of optical thin films.
The quality of optical thin film preparation directly affects the performance of optical components, such as transmittance, reflectivity, and durability. Laboratory coating machines, through precise control of the coating process, provide critical support for the research, development, and small-scale production of optical thin films.
Application of Coating Machines in the Fabrication of Functional Layers for Perovskite Solar Cells
This article introduces the application of coating machines in the preparation of functional layers for perovskite solar cells. The performance of perovskite cells depends on the uniformity and quality of thin films, such as the electron transport layer and the light-absorbing layer, which are primarily prepared through solution-based coating methods.
The laboratory coating machine is used for perovskite battery research and development.
The laboratory film coater is a key piece of equipment in the research and development of perovskite solar cells, used for the precise preparation of perovskite functional layer thin films. By controlling parameters such as coating speed and blade gap, it influences the thickness and uniformity of the wet film, thereby determining the crystallization quality of the film and the final performance of the solar cell.