Temperature-sensitive adhesive

Temperature-sensitive labels contain thermochromic materials that change color when heated due to alterations in their molecular structure. They are used to monitor the surface temperature of objects and are commonly applied as temperature control indicators in electrical appliances and food packaging.

Instruments

Irreversible discoloration design, temperature accuracy 50 ℃, circular single grid structure, specification 2x2cm, Pressure sensitive adhesive to ensure firm paste, suitable for temperature monitoring in harsh environments.

$ 88.00

The irreversible discoloration feature ensures that the temperature record is permanently preserved, the 75 ° C accurate temperature measurement point is firmly pasted with the Pressure sensitive adhesive, the 2x2cm round design is easy to install and the protective film enhances the durability.

$ 89.00

Temperature-sensitive discoloration paint Color changes from white to transparent after overheating, discoloration is irreversible, Measuring temperature 50 ℃, suitable for rough oil surface, Net weight of plastic bottle 100 grams.

$ 131.00

Temperature sensitive discoloration paint after overheating Color from white to transparent, discoloration effect depends on the object surface Color, Measuring temperature 65 ℃, suitable for rough oil surface use.

$ 131.00

Temperature sensitive discoloration paint after overheating Color from white to transparent irreversible, Measuring temperature 120 ℃, suitable for rough oil surface, Net weight 100 grams of plastic bottles.

$ 131.00

Temperature sensitive discoloration paint Color from white to transparent after overheating, irreversible discoloration, suitable for rough oil surface, Measuring temperature 70 ℃, Net weight of plastic bottle 100 grams.

$ 131.00

Temperature sensitive discoloration paint after overheating Color from white to transparent, irreversible discoloration, suitable for rough oil surface, Measuring temperature 60 ℃, Net weight of plastic bottles 100 grams.

$ 131.00

Using irreversible discoloration technology, with three temperature windows, Temperature range 70 ℃ to 120 ℃, Back Pressure sensitive adhesive design is easy to paste, size is 12x30mm.

$ 150.00

Irreversible discoloration design, the temperature window display is clear; three temperature measurement points cover 70 ° C, 85 ° C and 120 ° C; size 12x30mm, 120 pieces each, with Pressure sensitive adhesive for easy sticking.

$ 150.00

Using irreversible discoloration technology, temperature accuracy up to 120 ℃, circular 2x2cm size with Pressure sensitive adhesive firmly pasted, surface protective film to enhance durability, suitable for harsh Ambient Temperature Monitoring.

$ 89.00

Using irreversible discoloration technology, temperature point 60 ℃, specification 2x2cm circular design, with Pressure sensitive adhesive to ensure firm paste, over temperature display red, black and other Color changes.

$ 88.00

Pressure sensitive adhesive paste, temperature point 70 ℃, specification 2x2cm, irreversible discoloration design, over temperature display a variety of Colors such as red, black, green or yellow, with protective film on the surface, suitable for harsh environments.

$ 88.00

Pressure sensitive adhesive paste firmly, 65 ℃ single point temperature measurement accuracy, irreversible discoloration characteristics can permanently record the overtemperature state, circular design for easy observation, 2x2cm specification suitable for small space installation.

$ 89.00

Measurement accuracy of 0.007mm, Graduation of 0.001mm, probe diaMeter Φ 5mm, maximum measurement depth 45mm, suitable for on-site rapid thickness detection.

$ 251.00

Temperature sensitive discoloration paint after overheating Color from white to transparent, discoloration effect depends on the object surface Color, Measuring temperature 55 ℃, suitable for rough oil surface use.

$ 131.00

Articles

The use of gravure proofing machines in the comprehensive evaluation of gravure ink printability and drying performance.
This article explores how a gravure proofing press can be used to comprehensively evaluate the printability and drying properties of gravure inks. The experiment tested the dot sharpness, transfer rate, and leveling properties of different inks using standard equipment, while recording drying times through the filter paper method and infrared temperature measurement.
Considerations for Channel Count and Temperature Endurance in Furnace Temperature Tracker Selection
When selecting a furnace temperature tracker, the main considerations are the number of channels and the temperature resistance duration. The number of channels is determined based on the quantity of temperature measurement points plus spare channels. Too few channels may lead to data loss, while too many channels can increase costs.
Temperature Paper Selection: Temperature Gradation and Response Speed Evaluation
This article mainly discusses how to choose the right temperature measurement paper. It points out that two key parameters should be considered during selection: the temperature steps and the response speed.
The coating machine applies the adhesive layer of the plaster patch onto the backing layer.
The coating machine applies adhesive evenly onto the backing material through steps such as feeding, coating, drying, and winding, forming a stable adhesive layer.
UV aging test chamber for evaluating the discoloration degree of resin weather resistance
This article introduces the method of using a UV aging test chamber to examine the degree of weather-induced discoloration in resins.
Cross-cut tester combined with adhesion test tape for evaluating coating peel-off.
The cross-cut test, paired with adhesion test tape, is a commonly used method for evaluating coating adhesion. It involves using a cross-cut knife to score a grid pattern on the coating surface, followed by the rapid peeling of specialized tape. The adhesion level is then assessed by observing the extent of coating detachment.
High Pressure Accelerated Aging Tester Evaluation of Paint Resistance to High Temperature, High Humidity, and High Pressure Environments
This article introduces how a high-pressure accelerated aging test machine evaluates the durability of colored paint under high temperature, high humidity, and high-pressure conditions. The test machine simulates these conditions to accelerate the aging of the coating and observe whether issues such as discoloration or blistering occur.
Adhesion Retention Tester Evaluates the Cohesive Strength of Hot Melt Adhesive
This article introduces how to use a tack retention tester to evaluate the cohesive strength of hot-melt adhesives. During testing, a sample coated with hot-melt adhesive is attached to a test plate, and a weight is hung to apply a continuous shear stress. The time until detachment or the displacement is recorded, which directly reflects the internal cohesion of the adhesive.
Constant Temperature and Humidity Chamber Testing for Ink Environmental Adaptability
This article introduces the method of testing the environmental adaptability of ink using a constant temperature and humidity chamber. Ink is prone to issues such as adhesion, discoloration, or reduced adhesion when exposed to changes in temperature and humidity.
Standard Procedure for Cross-Cut Test of Ink Adhesion
The cross-cut test is a standard method for testing ink adhesion. It involves cutting a grid pattern on the coated surface, applying and then peeling off adhesive tape, and observing the extent of ink peeling to evaluate the adhesion grade.
How to choose between the rolling ball method and the inclined plate method for initial tack testing instruments
The rolling ball method and the inclined plane method are two commonly used techniques for testing the initial tack of adhesive materials. When selecting an instrument, factors to consider include the material's application scenario (such as adhering to spheres or anti-slip on inclined surfaces), the requirements of industry testing standards, and the data needs (discrete grades or continuous numerical values).
Which is more practical for printing paper: the Bekk smoothness tester or the Bendtsen method?
This article introduces two main methods for measuring the smoothness of printing paper: the Bekk method and the Bendtsen method. In practical applications, the data from both methods can be combined, along with other indicators, to comprehensively evaluate the printability of the paper.
The 180-degree peel strength test for tape shows a 50% deviation in data due to misalignment of the sample.
In the 180-degree peel strength test of adhesive tape, if the sample is misaligned, the test data may drop by about half. This is because misalignment causes uneven force distribution during peeling, reducing the effective peel strength.