Steel Bar Wear Testing Machine

The steel rod abrasion tester measures material wear by rotating a steel rod against a sample to create friction. It is used to test the wear resistance of surfaces such as coatings and plastics, simulating real-world wear conditions.
Selection
When selecting, consider the matching degree with testing standards, the range of specimen dimensions, the precision of load adjustment, and the stability of rotational speed control. Pay attention to the durability of the equipment materials and the data recording methods to ensure they meet daily testing requirements.

Terms

Standards

Instruments

Made of stainless steel, suitable for 250mm long bar, making the Spreader process more stable and smooth, and improving the convenience of operation.

$ 89.00

Wet film thickness of 25.1 microMeters, made of stainless steel for wear and corrosion resistance. Available in two types: formed type and wound wire type. The formed type has no broken wires, is easy to clean, and less prone to clogging.

$ 186.00

With two test stations, the load range is 50~ 1000g, and three typical wear resistance tests of alcohol, eraser and pencil can be carried out, which is suitable for wear resistance evaluation of various coatings and materials.

$ 572.00

Made of wear-resistant and corrosion-resistant alloy steel, with a Hardness of 52 +/- 2HRC, it has upper and lower working surfaces to improve work efficiency and tool life.

$ 98.00

Spreader formed process to ensure uniform wear-resistant stainless steel material corrosion-resistant durable, wet film thickness of 450 μ m, effective application width of 300mm, without the handle directly grip operation.

$ 138.00

Using formed process, wear-resistant stainless steel material is easy to clean and anti-corrosion, the total length is 400mm, the effective application width is 300mm, and the wet film thickness is 550μm.

$ 138.00

Using formed process, wear-resistant stainless steel material is easy to clean and anti-corrosion, the total length is 400mm, the effective application width is 300mm, and it can be prepared with 275μm wet film thickness, without the handle directly holding the scraping.

$ 138.00

Stability is ensured by using stainless steel wear-resistant material, the application width is not less than 100mm, and a variety of thickness specifications from 25μm to 2000μm are provided.

$ 115.00

Using the formed process, wear-resistant stainless steel material is easy to clean and anti-corrosion, the total length is 250mm, the effective application width is 250mm, and the wet film thickness is 400μm, which is suitable for the experimental needs of preparing thicker films.

$ 122.00

Made of Hardness 52 +/- 2HRC alloy steel, with a range of 0-150μm and a Graduation of 7.5μm, it has wear and corrosion resistance and is suitable for Fineness measurement of various materials.

$ 172.00

Adopt Hardness 52 +/- 2HRC wear-resistant and corrosion-resistant alloy steel, double-channel design, range 0~ 100μm, Graduation 5μm, suitable for measurement of particle dispersion of various materials.

$ 194.00

With four film film thickness optional, Spreader width 160mm, wear-resistant corrosion-resistant alloy steel material, can precisely control wet-film or dry-film thickness, ensure coating conformity and Repeatability.

$ 217.00

Made of stainless steel wear-resistant material, the application width is not less than 100mm, providing a variety of film thickness options from 25μm to 2000μm, suitable for hiding power measurement and sample preparation.

$ 115.00

Using stainless steel wear-resistant material, the application width is not less than 100mm, providing a variety of film thickness options from 25μm to 2000μm, suitable for hiding power measurement and sample preparation.

$ 115.00

Using stainless steel wear-resistant material, the application width is not less than 100mm, providing a variety of film thickness specifications from 25μm to 2000μm, suitable for hiding power measurement and sample preparation.

$ 115.00

Articles

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Selection of abrasion testing machine is based on the wear form, choosing between linear or rotational types.
When selecting a wear testing machine, the first step is to determine based on the primary wear forms the material actually encounters.
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.
Wear testing machine evaluates the wear resistance performance of wood and floor coatings.
This article introduces how to use a wear testing machine to evaluate the wear resistance of wood and floor coatings.
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.
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.
Selection of Wear Testing Machine: Types of Abrasion Wheels and Load Setting Methods
The test results of the wear testing machine primarily depend on the type of grinding wheel and the load setting. Grinding wheels include rubber wheels, abrasive wheels, wire wheels, and fiber wheels, among others. The selection should be matched based on the material characteristics and the actual wear scenario.
Coulometric thickness gauge measures the sealing quality of anodic oxide films.
This article introduces a method for assessing the sealing quality of anodic oxide films using a coulometric thickness tester. The sealing quality affects the corrosion resistance and wear resistance of the oxide film. Based on electrochemical principles, the coulometric thickness tester evaluates the sealing effectiveness by measuring the electric charge required to dissolve the oxide film, providing objective and repeatable results.
Sand Abrasion Tester for detecting the wear resistance of thermal spray coatings
This article introduces the method of using a sand falling tester to evaluate the wear resistance of thermal spray coatings. Thermal spray coatings are widely used in fields such as machinery and aviation, with wear resistance being a critical performance indicator.
Sand Falling Test Apparatus for Measuring the Wear Resistance of Powder Coatings
The sand falling test instrument determines the wear resistance of powder coatings by simulating sand particle impact. During the test, abrasive material falls vertically from a specified height, continuously scouring the coating until the substrate is exposed. The wear resistance is evaluated based on the mass of abrasive material consumed.
Industry Applications of Printing Ink Abrasion Resistance Testers
The printing ink abrasion resistance tester evaluates the wear resistance of ink coatings by simulating friction, with its core function being to quantify the durability of ink under mechanical action.
Ink rub resistance tester evaluates scratch resistance performance.
The ink rub resistance tester is a device used to evaluate the scratch resistance of ink on printed surfaces. It simulates mechanical actions such as friction and scratching to assess the adhesion strength and durability of the ink, and is widely applied in quality control and research and development in industries such as packaging and labeling.
Rubber Wheel Method for Determining the Wear Resistance of Floor Coatings
This article introduces a test method for evaluating the wear resistance of floor coatings using the rubber wheel method. The method quantifies wear resistance by measuring the mass loss of the coating surface after a specified number of rotations under a defined load, where a rubber wheel rubs against the coating.
Evaluation of the Sand Abrasion Method in Assessing the Wear Resistance of Thick Paste Coatings
This article introduces the method of testing the abrasion resistance of thick slurry coatings using the sand-falling method. The sand-falling method involves allowing sand particles to fall from a fixed height to impact the coating, and measuring the amount of sand required to wear through the coating to evaluate abrasion resistance. The more sand used, the more abrasion-resistant the coating is.
Application of Sand Abrasion Tester in the Coatings Industry
The sand falling abrasion tester evaluates the wear resistance of coatings by allowing standard abrasives to fall from a fixed height to impact the coating surface and measuring the amount of abrasive required to wear away a certain thickness.