Impact Brinell Hardness Tester

The impact Brinell hardness tester uses a spring-driven impact body to strike the sample and measures the indentation diameter to convert it into a hardness value. It is used for rapid on-site hardness testing of metal materials and is suitable for large workpieces or components that are difficult to move.
Selection
When selecting, consider the thickness and hardness range of the material being tested, and ensure the impact device matches the sample dimensions. Temperature effects in the environment must be calibrated and compensated for, and check the equipment's certification documents and error range. Assess the level of operational training required and the subsequent maintenance costs.

Terms

Standards

Instruments

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

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

Impact energy 11mJ, impact mass 7.2g, ball head Hardness 1600HV, measurable maximum Hardness 950HV, suitable for asperity 1.6μm surface, support thin layer test.

$ 396.00

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

Impact energy 11mJ, Impact mass 7.8g, tungsten carbide ball head Hardness 1600HV, suitable for asperity 1.6μm surface, measurable minimum thickness 0.8mm hardened layer, indication Repeatability 12HLD + 15.

$ 167.00

Impact energy 11mJ, ball head Hardness up to 1600HV, can measure the minimum thickness of 5mm specimen, suitable for asperity 1.6μm surface, Che diaMeter minimum 0.35mm, to meet the needs of precision hardness testing.

$ 130.00

Impact energy 11mJ, ball head diaMeter 3mm tungsten carbide material, can measure the maximum Hardness 940HV, suitable for asperity 1.6μm surface, minimum test thickness 5mm, Che diaMeter and depth vary with Hardness.

$ 157.00

Impact energy 11mN, Impact device mass 80g, suitable for measurement of slender narrow groove, can meet the needs of different shapes and sizes of workpiece Hardness detection.

$ 1232.00

Impact energy up to 90Num, Impact device mass 250g, can measure surface roughness up to 30μm large heavy specimen, ball head using tungsten carbide material Hardness up to 1600HV.

$ 1138.00

Impact energy 11mJ, Ball Hardness 1600HV, contact surface slender lengthened design, suitable for measurement of grooves or concave surfaces, the minimum thickness of the specimen is 5mm, and the minimum depth of the hardened layer is 0.8mm.

$ 186.00

Impact energy 2.7mJ, Impact mass 3.0g, tungsten carbide ball head Hardness up to 1600HV, suitable for asperity 0.4um surface, providing accurate Hardness measurement.

$ 167.00

Impact energy 11N, Impact device mass 75g, suitable for general-purpose part measurement, can be measured with a minimum thickness of 3mm, and a minimum diaMeter of 0.35mm.

$ 703.00

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

Impact energy 90mJ, ball head diaMeter 5mm tungsten carbide material, suitable for heavy and rough surface casting and forging, the maximum hardness of the specimen 650HB, the minimum thickness of 10mm, hardening layer depth ≥ 1.2mm.

$ 364.00

The C-type Impact device has a small impact force and is suitable for surface hardening and thin-walled component testing; dual coil technology ensures +/- 6HL typical accuracy; built-in directional Sensor automatically compensates for errors; supports 5 Hardness standard conversions.

$ 180.00

Articles

Application of Drop Hammer Impact Testing Machine in Evaluating Impact Resistance of Composite Materials
This article introduces how the drop-weight impact testing machine evaluates the impact resistance of composite materials. The test releases a weight to strike the specimen, measuring parameters such as energy absorption, peak load, and damage area, simulating low-velocity impacts like tool drops.
Impact of the Fixture Design of a Drop Hammer Impact Tester on the Plastic Impact Strength Results
This article primarily discusses the impact of the fixture design of a drop-weight impact testing machine on the results of plastic impact strength tests. The geometric parameters of the fixture, clamping method, and contact surface material can alter the stress state and energy transfer of the specimen, thereby affecting the accuracy of the test data.
Transverse Burst Strength Tester for the Evaluation of Impact Resistance of Corrugated Cardboard
This article explains how a lateral bursting strength tester is used to evaluate the impact resistance of corrugated cardboard. It measures the energy absorbed by the cardboard at the point of rupture using the pendulum impact principle, requiring the preparation of specimens according to standards and the control of environmental conditions during testing.
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.
Thermal shock test chamber measures the thermal shock resistance of polymer films.
This article introduces how to test the thermal shock resistance of polymer films using a thermal shock test chamber. The test involves rapidly switching the film between high and low temperatures to simulate the drastic temperature changes that may occur in actual use, thereby generating thermal stress within the material.
Pendulum Impact Tester Evaluates Impact Strength of Glass Fiber Reinforced Nylon
This article introduces the use of a pendulum impact tester to evaluate the impact strength of glass fiber reinforced nylon. The test is based on the principle of energy conservation, where the energy absorbed by the material is calculated by measuring the height difference of the pendulum before and after impacting the specimen, thereby quantifying its impact resistance.
Charpy Impact Tester Evaluates Brittle Fracture of Carbon Fiber Plates
This article explains how to use a simply supported beam impact testing machine to evaluate the brittle fracture characteristics of carbon fiber plates. During the test, a pendulum impacts the sample, and the energy absorbed by the material during fracture is calculated based on the energy difference, which helps determine its tendency toward toughness or brittleness.
Thermal Shock Test Chamber Measures Film's Temperature Change Resistance
The thermal shock test chamber creates thermal stress inside the film by rapidly switching between high and low temperature environments, testing its resistance to temperature changes. During the test, key parameters such as temperature range and dwell time need to be set, and the film is observed for issues such as cracking or performance degradation.
Dart impact tester measures the toughness of packaging film.
The dart impact test evaluates the material's resistance to damage under dynamic impact, i.e., its toughness, by allowing a dart to fall freely and strike the packaging film. During the test, different impact energies are simulated by adjusting the weight of the dart or the drop height, and sensors are used to detect whether the film ruptures.
Selection of impact head diameter and drop hammer mass combination for paint film impact tester
When selecting the impactor diameter and drop hammer mass for a paint film impact tester, the key is to balance the impact energy and pressure.
Drop Ball Method of Impact Testing Machine for Evaluating the Impact Resistance of Varnish
This article introduces the use of the falling ball method with an impact testing machine to assess the impact resistance of varnish. The method involves dropping a steel ball of specified weight from a predetermined height onto a test panel coated with varnish to observe whether the coating cracks or peels off, thereby evaluating its impact resistance.
Selection Guide for Paperboard Puncture Strength Testers
This article introduces how to choose a cardboard puncture strength tester. The tester is used to measure the ability of cardboard to resist impact penetration, and multiple aspects should be considered during selection. First, check whether the instrument complies with relevant testing standards, such as national or international standards.
Standard Operating Procedure for Packaging Drop Tester
The packaging drop tester is used to evaluate the impact resistance of transport packages during vertical drops. Before operation, it is necessary to check the safety of the equipment, calibrate the drop height, and prepare the test specimens according to standards.
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.
Impact testing machine tests the impact resistance of powder coatings.
This article introduces the method of testing the impact resistance of powder coatings using an impact tester. The test simulates instantaneous impact through a falling weight or pendulum hammer, following ISO or ASTM standards.