Glass Dyne Pen

Glass Dyne Pens determine surface energy by applying a specific tension liquid to the tip and observing whether the liquid contracts or spreads on the glass surface. They are used to assess the wettability of glass substrates and guide adjustments in printing and coating process parameters.
Selection
Select the corresponding pen number based on the surface tension range of the glass to be tested. Start testing from the lowest number; if the liquid forms beads, switch to a higher number, and choose the number at which the liquid spreads evenly without breaking within 2 seconds. Keep the testing surface clean and dry.

Terms

Standards

Instruments

Fiber wear-resistant pen tip design to ensure smooth and durable ink, accuracy of +/- 0.5 dyne, can quickly detect a variety of materials Surface Energy, sealing pen cap extended shelf life.

$ 99.00

Fiber wear-resistant pen design, Test accuracy of +/- 0.5 dyne, 15ML large capacity can be tested multiple times, 2-4 seconds to quickly obtain results, suitable for a variety of materials Surface Energy testing.

$ 99.00

Using fiber wear-resistant pen design, width 5mm, Test accuracy +/- 0.5 dyne, ink smooth and detection only 4 seconds, suitable for a variety of materials surface tension test.

$ 99.00

The fiber wear-resistant pen tip is not easy to deform, and the writing is smooth; it can be accurate to +/- 0.5 dyne, and the test is accurate; 15ML large capacity, long shelf life; 38 dyne models are complete to meet various needs.

$ 99.00

Using fiber wear-resistant pen design, the accuracy can reach +/- 0.5 dyne, the results can be displayed 2-4 seconds after the test, equipped with 15ml large-capacity ink, support 28-70 kinds of tension value test requirements.

$ 99.00

The test results are fast without waiting, the full sealing pen cover has a long environmental protection life, is small in size and easy to carry, can accurately test the surface force Dyne Level, and the writing width is 7mm and the capacity is 7ml.

$ 89.00

Test results are fast, a wipe is available; full sealing pen design, long life and environmental protection; compact and portable, easy to disassemble and install; accurate test, can accurately determine the surface tension Dyne Level.

$ 89.00

The test results are fast without waiting, the full sealing pen cover has a long environmental protection life, is small in size and easy to carry, can accurately test the surface tension Dyne Level, and the writing width is 7mm and the capacity is 7ml.

$ 89.00

Adopt fiber wear-resistant pen head design, ink smooth and not easy to deform, Test accuracy of +/- 0.5, provide 38 dyne models to choose from, sealing pen cap to prevent volatilization, long service life and easy operation.

$ 99.00

Using fiber wear-resistant pen tip, ink smooth and not easy to deform, Test accuracy of +/- 0.5 dyne, 2-4 seconds after drawing the line to observe the results, suitable for a variety of substrates Surface Energy detection.

$ 99.00

The use of fiber wear-resistant pen to ensure smooth testing, Accuracy of +/- 0.5 dyne, 2-4 seconds after line film formation quickly display results, bright colors easy to observe details.

$ 99.00

No need to wait for a wipe to get the result, full sealing pen cover to ensure environmental protection and long life, 7ml capacity design portable and practical, can accurately test the surface tension Dyne Level, suitable for a variety of material detection.

$ 89.00

The fiber wear-resistant pen tip is used to ensure smooth ink output, the 15ml large-capacity design supports long-term use, and the Accuracy is up to +/- 0.5 dyne. A total of 38 models from 28 to 70 are provided to meet various testing needs, and the operation is simple and fast.

$ 99.00

Using fiber wear-resistant pen tip, size 138mm long, 15ml large capacity, Accuracy up to +/- 0.5 dyne, can test a variety of materials Surface Energy value and cleanliness, easy and fast operation.

$ 99.00

Fiber wear-resistant tip design is not easy to deform, Test accuracy of +/- 0.5 dyne, 2-4 seconds after drawing the line to observe the results, suitable for a variety of materials Surface Energy detection.

$ 99.00

Articles

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.
DSC analyzer measures the glass transition of degradable films.
This article explains how to use a differential scanning calorimeter to measure the glass transition temperature of a degradable film. It first clarifies that the glass transition is the process by which a material changes from a glassy state to a highly elastic state, which appears as a baseline shift on the curve.
Dyne Pen Selection, Surface Energy Test Range, and Pen Tip Lifespan
The dyne pen is used to evaluate the wettability of material surfaces, reflecting the effectiveness of treatments by measuring surface energy.
The film coater applies a conductive film onto transparent substrate test pieces.
This article introduces a method for uniformly coating conductive films on transparent substrates such as glass or plastic films using a film applicator.
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.
The polymer film is formed by blade coating on a glass substrate using a film applicator.
This article introduces the technique of using a film applicator to doctor-blade polymer films onto glass substrates.
Differential scanning calorimetry for determining the glass transition temperature of epoxy resin
Differential scanning calorimetry analyzes the thermal properties of materials by measuring the heat flow difference between the sample and a reference material.
Method for determining the dynamic viscosity of varnish using a falling ball viscometer
This article introduces a method for measuring the dynamic viscosity of varnish using a falling-ball viscometer. It is based on Stokes' law, which calculates viscosity by measuring the time required for a standard small ball to fall a fixed distance in a vertical glass tube filled with varnish.
Differential Scanning Calorimetry for Determining the Melting Point and Glass Transition Temperature of Hot Melt Adhesives
This article introduces the method of determining the melting point and glass transition temperature of hot-melt adhesives using a differential scanning calorimeter. Differential scanning calorimetry analyzes the thermal transition characteristics of materials by measuring the energy difference between the sample and a reference material.
Application of Gardner Colorimeter in the Determination of Oil and Fat Color
The Lovibond tintometer determines the color of oils and fats by visually comparing them with standard glass color standards, with results expressed as numerical codes. During operation, clarified oil samples are poured into the colorimetric cell and compared with color chips under a stable light source.