Rubber Friction Coefficient Measurement Device

The rubber friction coefficient measuring instrument works by sliding a slider in contact with the sample, with sensors recording the ratio of frictional force to normal pressure. It is used to evaluate the anti-slip performance of rubber surfaces and is applied in quality inspections for products such as tires, shoe soles, and conveyor belts.
Selection
Select the instrument with the corresponding range based on the rubber hardness; consider the speed and pressure requirements specified in the testing standards; for humid and hot environments, it is necessary to equip with temperature and humidity control accessories; the flat-plate type is suitable for sheet materials, while the roller type is ideal for testing curved surface samples.

Terms

Standards

Instruments

It can automatically measure the dynamic and static Coefficient of Friction at the same time, using high-precision ball screw drive, the total error of the force measurement system is less than +/- 2%, and the micro printer can print multiple sets of results and the average value.

$ 2007.00

Based on the national standard design, the static Coefficient of Friction and the dynamic Coefficient of Friction can be measured simultaneously, with a test accuracy of up to 0.001N, equipped with High Accuracy Sensor and special drive system to ensure smooth operation and accurate results.

$ 1516.00

Using microcomputer control to achieve automatic testing, equipped with High Accuracy force sensor accuracy of 0.001N, special drive system running smoothly, can simultaneously measure static friction and dynamic Coefficient of Friction.

$ 1482.00

Can simultaneously detect dynamic and static Coefficient of Friction, force range 0~ 5N, accuracy level 1, support microcomputer control and micro printer output test report.

$ 1542.00

Automatic measurement and display of dynamic and static Coefficient of Friction, Measurement accuracy +/- 1%, slider traverse speed 100mm/min, stable performance, accurate testing, complete functions, easy to operate.

$ 1364.00

High Accuracy Imported Sensor, Measurement accuracy up to 0.001N, test stroke 0-320mm adjustable, speed range 1-1200mm/min, support arbitrary slider mass setting, real-time display of force value Linear dispersion, automatic calculation of static and dynamic Coefficient of Friction.

$ 2712.00

Using microcomputer control to achieve automatic testing, equipped with High Accuracy force sensor accuracy of 0.001N, special drive system running smoothly, can simultaneously measure static friction and dynamic Coefficient of Friction.

$ 1516.00

The device can measure 0~ 1 range of Coefficient of Friction, test force accuracy of +/- 0.001N, support stepless speed regulation to 550mm/min, suitable for a variety of standard tests, easy to operate, accurate and reliable data.

$ 2203.00

Test accuracy up to 0.001N, stroke 0-320mm adjustable, speed range 0-1200mm/min, automatic control and real-time display of force value Linear dispersion to ensure high Repeatability and Stability.

$ 2292.00

Stepping motor control precision, low noise; force range 0.01~ 10N, resolution 0.01N; automatic reset and overload protection, support data communication.

$ 2074.00

Range 0-30N, accuracy 0.001N, support arbitrary slider mass and speed settings, real-time display of force value Linear dispersion, stable test without noise, suitable for a variety of material smoothness analysis.

$ 2712.00

Measurement accuracy of +/- 0.001N, support a variety of slider mass and speed adjustment, suitable for film, paper, Spinning & weaving and other material testing.

$ 2712.00

Adopt 0.5 High Accuracy Force Value Sensor, Force Value Acquisition Frequency 2ms, Support static friction and Kinetic COF simultaneous measurement, full digitalization system to ensure accurate and stable testing.

$ 1461.00

Support GB/ISO/ASTM standards, flexible transmission system to ensure smooth operation, Measurement accuracy +/- 0.02N, automatic analysis of slip state and dispersion, can save 6 test data.

$ 1719.00

Stepper motor control precision noise, force range 0.01~ 10N resolution 0.01N, automatic reset and overload protection, support data processing and RS232 Communication interface.

$ 2034.00

Articles

Ozone Aging Test Chamber Evaluates Rubber SAE J2527 Cracking
This article introduces how to use an ozone aging test chamber to evaluate the cracking problem of rubber caused by ozone when used outdoors.
Rotating Rubber Wheel Abrasion Tester for Determination of Coating Taber Abrasion Index
This article introduces the method for determining the Taber abrasion resistance index of coatings using a rotating rubber wheel abrasion tester.
Friction and wear testing machine evaluates the wear resistance of self-lubricating polymer materials.
This article introduces how to use a friction and wear testing machine to evaluate the wear resistance of self-lubricating polymer materials. It explains the working principles of the testing machine, including the basic formulas for measuring the friction coefficient and wear rate.
Friction coefficient meter adjusts the control of film slip agent addition.
This article introduces how to use a coefficient of friction meter to adjust the amount of slip agent added in film production.
Shore hardness tester measures the hardness of rubber sealing rings.
This article introduces the method of measuring the hardness of rubber sealing rings using a Shore durometer. The Shore durometer presses a needle into the rubber surface under spring force and converts the indentation depth into a hardness value, commonly using the A scale.
Rubber non-rotor vulcanization tester measures vulcanization curve.
The rubber non-rotor vulcanization tester is used to measure the curve of torque versus time during the vulcanization process, in order to assess the crosslinking degree and vulcanization characteristics of rubber.
Rubber abrasion tester measures tire wear resistance.
The rubber abrasion tester evaluates wear resistance by simulating the friction between tires and road surfaces. It uses a grinding wheel to rub against rubber specimens under set conditions, measuring mass loss and converting it to volume loss to assess material performance.
Atomic Absorption Spectrometer for Measuring Heavy Metal Content in Rubber
This article introduces a method for determining the heavy metal content in rubber using atomic absorption spectrometry. It first explains that rubber may contain harmful elements such as lead and cadmium, which require accurate measurement.
Quantitative Measurement of Carbon Black Content in Rubber by Thermogravimetric Analyzer
Thermogravimetric analyzers measure changes in sample mass through programmed temperature control, enabling the quantitative determination of carbon black content in rubber. During the experiment, the rubber is first heated in an inert atmosphere to decompose it, leaving the carbon black intact. The atmosphere is then switched to an oxidizing environment to oxidize the carbon black. The carbon black content is calculated based on the mass loss.
Ozone Aging Test Chamber Evaluates Crack Resistance of Rubber
This article introduces how an ozone aging test chamber is used to evaluate the crack resistance of rubber. Ozone is a common factor that causes rubber aging. The test chamber simulates an ozone-containing environment, applies strain to rubber samples, and accelerates their aging process.
UV Aging Test Machine Evaluates Outdoor Lifespan of Rubber
This article introduces how ultraviolet aging test chambers assess the service life of rubber in outdoor environments. Rubber exposed outdoors is affected by factors such as sunlight, temperature, and humidity, leading to a gradual decline in its performance.
Colorimeter controls batch color difference in plastic and rubber films.
This article primarily discusses how to use a colorimeter to control color differences in the production of plastic and rubber films. It explains the working principle of the colorimeter, which involves converting colors into numerical values represented by L, a, and b values, and then calculating the color difference.
Insulation resistance tester measures rubber sealing gaskets.
This article introduces the method of using an insulation resistance tester to inspect rubber sealing gaskets.
Universal material testing machine measures the tensile modulus of rubber.
This article introduces how to measure the tensile modulus of rubber using a universal material testing machine. The tensile modulus is an important parameter that measures the ability of rubber to resist stretching under small deformations.
Friction Coefficient Tester Measures the Slip and Openability of Films
This article introduces how to use a coefficient of friction tester to measure the slipperiness and openability of films. Slipperiness refers to the sliding characteristics of the film surface, while openability indicates the ease of separation between film layers. Both are crucial for processing efficiency in industries such as packaging.