Leeb Metal Hardness Tester

The Leeb metal hardness tester measures the hardness value by calculating the ratio of the rebound velocity to the impact velocity when an impact body strikes the metal surface. It is used for rapid on-site hardness testing of metal materials and is suitable for hardness testing of large workpieces and components that are difficult to move.

Instruments

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

Can be connected to Leeb Hardness Tester directly print measurement data, support a variety of surface Measurement range including R10-R50 cylindrical surface and SR10-SR30 sphere, easy data recording.

$ 219.00

Impact energy 11mJ, Impact device mass 50g, ball head diaMeter 3mm, Hardness measurement hole or cylinder, suitable for a variety of metal hardness of materials testing.

$ 162.00

D type High Accuracy Impact device, Measurement accuracy is stable, can measure 7 kinds of Hardness values and automatically switch, Data storage up to 500 groups, with indication software Adjustment, fully sealed metal shell has excellent anti-vibration and electromagnetic interference ability.

$ 512.00

Impact energy 11mJ, ball head diaMeter 3mm tungsten carbide material, can measure a variety of metal hardness of materials, Che diaMeter minimum 0.35mm, suitable for conventional Hardness testing needs.

$ 154.00

The integrated structure is compact and portable, and the dual-coil technology is used to ensure good Repeatability and Measurement accuracy. The built-in Direction Sensor automatically compensates for errors, and supports a variety of Hardness standard conversions.

$ 180.00

Using D type High Accuracy Impact device, Measurement range 30~ 110HS, can detect cast steel roll, forged steel roll and cast iron roll three kinds of hardness of materials, with anti-Impact and anti-electromagnetic interference ability, support 7 kinds of Hardness standard automatic conversion.

$ 554.00

Dimensions of special-shaped support ring, suitable for HM6560 Leeb Hardness Tester, ensure stable support on complex surfaces, improve Measurement accuracy and applicability.

$ 238.00

Adopt D-type Impact device and optional Miscellaneous six Impact devices, automatic identification and replacement without calibrating; can store 600 sets of measurement data, support seven Hardness standards automatic conversion, Measurement range covers 30~ 110HS to 80~ 976HV.

$ 340.00

Built-in thermal printer supports on-site printing, can be equipped with 7 kinds of Impact device automatic identification and replacement, Measurement accuracy +/- 6HLD, support 360 ° omni-directional measurement and a variety of Hardness standard conversion.

$ 353.00

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

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

Support 7 kinds of Impact device automatic identification, realize 6 kinds of Hardness standard conversion, Measurement range 170-960HLD, can store 100 sets of data and set the upper and lower limit alarm, suitable for a variety of metal material detection.

$ 267.00

Measurement range 0~ 1250 microns, wear-resistant material design, suitable for LEEB221 and LEEB222 models, suitable for nonmagnetic metal substrate insulation coating detection.

$ 157.00

Adopting the principle of magnetic Induction Thickness Measurement range 0~ 1250 microns, suitable for LEEB242 models, can be connected to the printer output data, suitable for nonmagnetic Coating thickness detection on magnetic metal substrates.

$ 219.00

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.
Difference between Black Panel Temperature and Black Standard Temperature in Light Aging Test Chambers
In the light aging test chamber, black panel temperature and black standard temperature are two distinct temperature indicators. The black panel temperature is measured using a black metal panel sensor, reflecting the immediate heating effect on the material surface under light exposure and is significantly influenced by air convection.
Cup Test Instrument for Coating Tests the Impact and Deformation Resistance of Coatings on Metal Substrates.
This article introduces how the coating cupping tester measures the resistance to stamping deformation of coatings on metal substrates.
T-bend tester for coatings is used to determine the T-bend grade of metal sheet coatings.
This article introduces how the T-bend tester for paint films is used to evaluate the flexibility and adhesion of coatings on metal sheet surfaces.
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.
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.
Controllable Coating of Composite Separator Coatings for Lithium Metal Batteries
This article primarily explores the controllable coating technology for composite separator coatings in lithium metal batteries.
Preparation of metal thin films by the coating method for mechanical property studies.
This paper discusses the key process parameters in the preparation of metal thin films using a film coater and their effects on mechanical properties. The film coater forms metal thin films on a substrate through solution deposition, with its uniformity and repeatability directly influencing film quality.
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.
Application of Coating Thickness Gauges in Electroplating Thickness Detection
Coating thickness gauges are used to measure the thickness of electroplated layers, primarily employing the electromagnetic induction method for measuring non-magnetic coatings on magnetic substrates, or the eddy current method for measuring insulating coatings on non-magnetic metal substrates.
Eddy current thickness gauge measures metal coatings on non-conductive substrates.
The eddy current thickness gauge utilizes the principle of electromagnetic induction, generating an alternating magnetic field through the probe coil to induce eddy currents in the metal coating, thereby measuring thickness based on changes in coil impedance.
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.