Double-sided tape thickness Gauge

The double-sided tape thickness gauge applies a fixed pressure to the material through a contact measurement head and uses a displacement sensor to record changes in the distance between the pressure plate and the base. This instrument is used to measure the actual thickness of materials such as tapes and films, ensuring coating uniformity during quality inspection.
Selection
When selecting, ensure the measurement range covers the sample thickness and the accuracy meets process requirements. Contact probes should apply appropriate pressure to avoid material deformation, and the calibration method should be simple and reliable. The instrument structure must adapt to the production line environment, and the data output format should be compatible with the existing recording system.

Terms

Standards

Instruments

Using double-sided uniform tin plating process, the surface mass reaches class I, Hardness is T52, standard thickness is 0.28mm, to ensure accurate and reliable film test results.

$ 114.00

Double-sided different film Film thickness design, wet film thickness 150/200μm, Spreader width 80mm, wear-resistant corrosion-resistant alloy steel material, suitable for a variety of materials experimental film preparatory.

$ 146.00

Using silicon carbide Rod double-sided heating, rapid heating and high thermal efficiency; maximum temperature 1200 ℃, temperature control accuracy +/- 5% ℃; PID microcomputer control combined with K-type Thermocouple, temperature accuracy and stability.

$ 1119.00

Using CR12 molybdenum vanadium material double edge structure, film thickness 500μm/600μm, U-shaped design to achieve fast Spreader, effective application width 80mm, total length 100mm, suitable for wet-film preparatory.

$ 138.00

Double blade design can be prepared 75μm or 100μm two wet film thickness, effective application width 80mm, using molybdenum vanadium material, suitable for film proofing.

$ 138.00

Adopt double roller painting film structure, thickness adjustment range 0.001-2mm, Spreader accuracy +/- 5%, equipped with automatic deviation correction device and digital dial Meter, coating speed 0-20m/min adjustable, drying tunnel temperature up to 150 ℃.

$ 32347.00

Double-sided design provides 25/50μm two kinds of wet film thickness, Spreader width 80mm, wear-resistant corrosion-resistant alloy steel material to ensure long-term use Stability, suitable for a variety of material film experiments.

$ 146.00

Double-sided design can provide 75/150μm two kinds of wet film thickness, effective Spreader width 12.7mm, wear-resistant corrosion-resistant alloy steel material to ensure accurate control of film Film thickness, to ensure coating conformity and Repeatability.

$ 130.00

Made of wear-resistant and corrosion-resistant alloy steel, the double-sided design provides two film Film thicknesses of 70 and 100 μm, and the Spreader width is 80mm, which is suitable for experimental film preparation of various materials.

$ 146.00

The double-sided design provides 300 and 400 μm film Film thickness, made of wear-resistant and corrosion-resistant alloy steel, Spreader width 80mm, suitable for uniform film preparation and coating performance testing.

$ 146.00

Double-sided design can be completed at one time, using CR12 molybdenum vanadium material to improve corrosion resistance, wet film thickness of 300-400μm, effective application width of 80mm.

$ 138.00

The double-sided design can provide two wet film thicknesses of 38μm and 76μm, the effective Spreader width is 12.7mm, and the alloy steel material is wear-resistant and corrosion-resistant to ensure coating conformity and Repeatability.

$ 130.00

Using CR12 molybdenum vanadium material to ensure durability, providing 75-600μm multi-film thickness range, double-sided design can complete different thickness Spreader at one time, effective application width 80mm to meet the requirements of standard samples.

$ 293.00

The double-sided design can provide two film thicknesses of 150/300μm, using high-Hardness stainless steel material Hardness up to 50~ 55HRC, accuracy +/- 2μm and factory inspection report to ensure film accuracy.

$ 130.00

Measured value 500N, suitable for tape, PCB, adhesive tape and other materials disbonding force test, supporting the Force Gauge test bench.

$ 89.00

Articles

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.
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.
Discussion on the Relationship Between Speed Gradient and Film Thickness in Spin-Coating Film Formation
Spin coating is a common technique that uses centrifugal force to evenly spread droplets across a substrate to form a thin film. The film thickness is influenced by multiple factors, among which the gradient of spin speed and time is a key parameter. This study, based on fluid mechanics principles and experimental validation, analyzes the quantitative effect of the spin speed gradient on film thickness.
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.
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.
Application of Wet Film Wheel Gauge in Continuous Measurement of Wet Film Thickness for Large-Area Coatings
The wet film wheel gauge is a mechanical tool used to measure the thickness of wet coatings, operating based on the geometric relationship of three coaxial disks (two parallel outer wheels on the sides and an eccentric inner wheel in the middle).
Operating specifications for on-site measurement of coating wet film thickness using wet film combs
This article introduces the operational standards for on-site measurement of coating wet film thickness using a wet film comb gauge. First, it explains the measurement principle of the wet film comb gauge, which involves estimating the thickness by observing the extent to which the teeth of the gauge are coated with the paint.
Mechanical thickness gauge for measuring film thickness uniformity.
The mechanical thickness gauge assesses the uniformity of film thickness through contact measurement. During measurement, the probe contacts the sample under standard pressure, converting displacement into a thickness reading.
Selection of wet film thickness gauge range and accuracy requirements for comb teeth spacing.
When selecting a wet film thickness gauges, the key considerations are the measurement range and the accuracy of the comb teeth spacing. The range should cover the coating thickness with a slight margin to avoid being too small for measurement or too large, which could reduce resolution.
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.
The coating machine applies an anti-reflection coating on the surface of optical lenses.
A coating machine is a precision device used for depositing anti-reflection coatings on the surface of optical lenses. Based on the principle of light interference, it forms a thin film of specific thickness on the lens surface through physical or chemical methods to reduce light reflection and enhance light transmission performance.
The coating machine applies the OLED light-emitting layer onto ITO glass.
This article introduces the technique of using a coating machine to apply OLED luminescent layers onto ITO glass. The coating principle involves matching solution rheology with substrate surface energy, allowing control over film thickness by adjusting parameters such as viscosity and speed.
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.