Rockwell Bench Hardness Tester

The bench-top Rockwell hardness tester applies a fixed load to the specimen surface through an indenter to create an indentation, and converts the depth difference of the indentation into a hardness value. It is used for hardness testing of materials such as metals and plastics, and is employed in laboratories for quality control and material comparison.

Instruments

High Accuracy Stepping Control system, support HR, HB, HV conversion scale, large test space, Built-in Printer and RS-232 interface, suitable for a variety of hardness of materials.

$ 3139.00

Suitable for medium Hardness rubber, thermal plasticity resilience and other materials, Measurement range 0-100HB, can be hand-held or matched with a fixed load test bench to ensure stable measurement.

$ 183.00

With three Adjustments, it can simultaneously measure Richter, Brinell, Rockwell and other Hardness values, indication Repeatability 6HLD, support 360 ° measurement direction, standard D-type Impact device and optional Miscellaneous type, anti-vibration Impact electromagnetic interference.

$ 348.00

Can be used with A type or C type Shore DuroMeter, fixed load weight mass 0.75 +/- 0.05kg, hardness Gauge clamping Rod connection size M7x0.5mm, improve hardness testing accuracy and Stability.

$ 180.00

Support six kinds of Hardness standard conversion, equipped with high luminance LED backlight, metal shell anti-interference, standby time up to 100 hours, can store 600 sets of data, adapt to various harsh environments.

$ 425.00

The device adopts D-type Impact device, supports 360 ° measurement, can display a variety of Hardness standards, has 600 sets of Data storage capacity, is small in size and weighs only 0.2kg, and has a standby time of 100 hours. It is suitable for small spaces and field environments.

$ 192.00

Suitable for medium hard resilience, rubber or microporous materials, Measurement range 0-100HE, more suitable for thinner or curved samples, can be used with handheld or supporting bench.

$ 183.00

The use of New material has a long life, stable fullness point and correction point, and can measure 0.6-8 mm thickness materials. Hardness value can be converted into Vickers, Rockwell and other standards.

$ 725.00

The use of New material has a long life, stable fullness point and correction point, Hardness value can be converted into Vickers Rockwell Brinell, the range is 0-20HW, and the accuracy is 0.5HW, which is suitable for workpieces with a thickness of 0.6-13 mm.

$ 725.00

The mechanical compression spring device is not easy to damage, the accuracy is up to 0.5HW, the film thickness 0.4-6 mm workpiece can be detected, and various Hardness values such as Brinell Rockwell can be obtained through the conversion table.

$ 477.00

Pressure is applied to the hardness Gauge by weight, with a total mass of about 5kg and a pressing speed of 3.2mm/s to ensure test Stability and High Precision, suitable for standard specimen adjustment.

$ 199.00

The Che design can be operated with one hand, the test range is equivalent to Brinell 25-135HB, and the measurement can be completed on one side without support. It has the function of extreme value retention and average calculation of 29 sets of data.

$ 735.00

It can directly display six Hardness standards, support 360-degree measurement direction, store 600 sets of data, and operate continuously for 10 hours with lithium battery power supply. It is compact and portable and weighs only 110 grams.

$ 202.00

Suitable for medium Hardness rubber, thermal plasticity resilience and other materials, Measurement range 0-100HDO, Indication Error ≤ +/- 1HDO, can be hand-held or matched with fixed load test bench, flexible operation.

$ 183.00

Adopt double-pointer design, pressure needle Travel 0~ 2.5mm, measurement error +/- 1HAO, can be handheld or used with the bench, suitable for stable and fast detection of low Hardness rubber materials.

$ 148.00

Articles

Shore Durometer Selection: Matching Principles of Hardness Models and Measurement Ranges
This article introduces the selection method for Shore durometers, with the core focus on ensuring that the hardness type matches the material's hardness range and rebound characteristics. When selecting, the principle that the measured value falls within 20% to 80% of the full scale should be followed to avoid data distortion.
Advantages of Barcol Hardness Tester in Rapid On-site Coating Hardness Testing
The Barcol hardness tester is a portable device suitable for rapid on-site measurement of coating hardness. It determines the hardness value by measuring the depth of penetration of the indenter, offering simple operation and test completion within seconds.
Brinell hardness tester is used for hardness testing of plastics and soft metal coatings.
This article introduces how a Brinell hardness tester is used to measure the hardness of plastics and soft metal coatings.
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.
Shore durometer measures the hardness of cured cast resin.
The Shore durometer measures hardness by pressing an indenter into the material surface, making it suitable for evaluating the properties of cast resin after curing.
Shore durometer measures the elastic modulus of flexible resin.
This article explores how to use a Shore rubber hardness tester to measure the hardness of flexible resins and estimate their elastic modulus through theoretical models and empirical formulas.
Pencil Hardness Tester for Rapid Evaluation of Coating Surface Hardness
The pencil hardness tester is a tool used for rapidly assessing the relative hardness of coating surfaces through standardized scratch tests. It employs a series of pencil leads with known hardness levels, which are drawn across the coating under a fixed load and angle. The hardness grade, ranging from 6B to 9H, is determined based on whether a permanent scratch is produced.
Buchholz indentation tester measures the indentation hardness of varnish.
The Buchholz indentation test is a method for measuring the indentation hardness of coatings such as varnishes. It involves applying a specific indenter to the coating surface under a standard load, and after unloading, the length of the residual indentation is measured. A longer length indicates lower hardness.
Pencil Hardness Plan Outstanding Paint Film Pencil Hardness Grade
The pencil hardness test is a method for evaluating the scratch resistance of paint films. It involves using a series of pencils with known hardness levels to scratch the coated surface under fixed conditions. The hardness grade of the coating is determined by observing whether permanent scratches are produced.
The pendulum hardness tester tests the scratch resistance limit of varnish.
The pendulum hardness tester measures the hardness of varnish by observing the attenuation of the pendulum's swing on the coating surface, with faster attenuation indicating a softer coating. The scratch resistance of varnish depends not only on hardness but also on elasticity and toughness. Hardness testing sets the basic threshold for scratch resistance.
Application of Film Pencil Hardness Tester in Coating Scratch Resistance Testing
The paint film pencil hardness tester is an instrument used to evaluate the scratch resistance of coatings. It works by scratching the surface of the coating with a pencil of known hardness under a fixed load, and then assessing the hardness grade based on whether scratches are produced.
Use of pendulum hardness tester for paint film curing degree assessment in the laboratory.
The pendulum hardness tester evaluates the hardness of a paint film by measuring the decay time of a pendulum swinging on the surface of the film, where a longer time indicates a harder film and a higher degree of curing.
Pendulum hardness tester measures the damping hardness of powder coatings.
This article introduces the method of testing the damping hardness of powder coatings using a pendulum hardness tester. The test is based on the principle of energy attenuation, where the hardness is reflected by the time it takes for the amplitude of the pendulum to decay as it swings on the coating surface, with a longer time indicating a harder coating.
Pendulum hardness tester measures coating damping hardness.
This article explains how a pendulum hardness tester measures the damping hardness of coatings. The principle involves evaluating the hardness and elasticity of the coating based on the time it takes for the amplitude of a pendulum's swing to decay on the coating surface. A longer decay time indicates a harder coating.
Classification standards for determining the hardness of coatings using a pencil hardness tester.
This article introduces the method of measuring the hardness of coatings using a pencil hardness tester. It involves using pencils of varying hardness to scratch the coating and observing whether scratches are produced to determine the hardness grade, ranging from 6B to 9H.