Gap Preparer

The gap Coater forms a uniform wet film coating on the substrate by adjusting the distance between the blade and the substrate. It is used for the preparation of film thickness for samples such as coatings and inks, facilitating subsequent performance tests such as hiding power and drying time.
Selection
Consider the substrate type and size when selecting, ensuring the coating thickness range covers testing requirements. Focus on the wear resistance of the scraper material and the precision of gap adjustment. The equipment should be compatible with typical sample volumes in the lab, with a clear operation interface for quick parameter adjustments.

Terms

Standards

Instruments

The gap wide-wound design is adopted, and the wet film thickness reaches 365.8 μm, which reduces fluid blockage and eliminates scratches. The wide and shallow cavity promotes the flow of thick coatings and improves the wetting effect.

$ 178.00

The gap wire-wound structure is adopted, the wide and shallow cavity design makes the thick coating flow more smoothly, the smaller wire diaMeter reduces the flow interruption, and the wet film thickness reaches 400.1 μm to improve the wetting effect of high viscosity fluid.

$ 178.00

The gap wire-wound structure is adopted, the wet film thickness is 514.4 μ m, and the wide and shallow cavity design makes the flow of high viscosity Coatings smoother and effectively reduces the interruption of coatings.

$ 178.00

Using gap wire-wound structure, wet film thickness 251.5 μ m, diaMeter 9.52 mm, through the wide and shallow cavity design to make the thick coating flow more smoothly, effectively reduce Spreader interruption.

$ 178.00

The gap wire-wound structure is used to reduce blockage and scratches, the wide and shallow cavity design supports the flow of 308.6 μm thick coatings, and the smaller wire reduces the flow interruption to improve the wetting effect.

$ 178.00

The gap wire-wound structure is adopted, and the wet film thickness reaches 331.5 μm. The thick coating flows more smoothly through the wide and shallow cavity design, which effectively reduces the fluid interruption phenomenon.

$ 178.00

The gap wide-wound design, wet film thickness 354.3 μ m, can reduce fluid blockage and scratches, wide and shallow cavity to promote thick coating flow, improve wetting effect.

$ 178.00

The gap wire-wound structure is used to reduce blockage and scratches, and the 205.7 μm wet film thickness is combined with the wide and shallow cavity design to promote better flow and complete wetting of high viscosity fluids.

$ 178.00

Using gap wire-wound process, wet film thickness of 377.2 μ m, wide and shallow cavity design to promote high viscosity fluid flow, reduce interruption to achieve complete wetting, application width 300mm.

$ 178.00

The gap wire-wound structure is adopted, the wide and shallow cavity design makes the thick coating flow more smoothly, the smaller wire diaMeter reduces the flow interruption, and the wet film thickness is 262.9μm, which effectively improves the coating wettability.

$ 178.00

The gap wire-wound structure is used to reduce blockage, the wide and shallow cavity design promotes the flow of high viscosity fluid, the wet film thickness is 240 μm to ensure uniform coating, and the wire winding process improves the wetting effect.

$ 178.00

Using gap wire-wound process, wet film thickness 194.3 μ m, application width 300mm, through the shallow cavity design to promote high viscosity fluid flow, reduce coating interruption, improve wetting effect.

$ 178.00

The gap wire-wound structure is used to reduce blockage and scratches, the wide and shallow cavity design supports high viscosity fluid flow, the wet film thickness is up to 422.9 μm, and the wire is small to optimize the coating wetting effect.

$ 178.00

The gap wire-wound structure is used to reduce blockage and scratches, the wide and shallow cavity design promotes the flow of thick coatings, and the 217.2 μm wet film thickness cooperates with smaller wires to reduce flow interruption and improve the effect of coating wetting.

$ 178.00

Using gap wire-wound design, wet film thickness 274.3μm, application width 300mm, reduce flow interruption through smaller wire, promote coating complete wetting, suitable for high viscosity fluids.

$ 178.00

Articles

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 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.
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.
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 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.
The difference between a wire bar coater and a gap-type wet film applicator.
The wire-wound drawdown bar directly quantifies the coating through the gap between wires, making it suitable for thin coating preparation with high precision, particularly for low-viscosity fluids. In contrast, the gap-type wet film applicator indirectly controls film thickness through the groove depth, with the actual coating thickness significantly influenced by material properties, making it more suitable for high-viscosity coatings and thick film preparation.