Hanaman type microhardness tester

Metallographic map 1155 19/06/2023 1065 Sophie

The Nanoindenter G200 brings the power of nano-scale hardness testing to research labs and production facilities everywhere. The Nanoindenter G200 is a precision instrument capable of measuring the hardness and elastic modulus of materials on the nanoscale. Its ability to measure nanoscale hardnes......

The Nanoindenter G200 brings the power of nano-scale hardness testing to research labs and production facilities everywhere. The Nanoindenter G200 is a precision instrument capable of measuring the hardness and elastic modulus of materials on the nanoscale. Its ability to measure nanoscale hardness and elastic modulus enables the study of micron-sized samples with unprecedented accuracy, in a fraction of the time and cost of previous methods.

In research and development, the Nanoindenter G200 is a powerful tool for assessing mechanical properties of materials in the micro- and nanoscale range. As a highly versatile instrument, it can be used to measure the hardness of various materials such as metals, ceramics, sapphires, and composites, as well as the elastic modulus. The Nanoindenter G200 can also be used to measure the surface hardness of coatings and thin films, and assess the adhesion between two different layers.

In production and quality control, the Nanoindenter G200 provides quick and reliable data on the mechanical properties of components, which can be used to fine-tune parameters to increase performance and productivity. Quality control can be conducted quickly, easily, and on-site.

The Nanoindenter G200 features an optimized force range allowing measurements of hardness levels between 1 to 1000 mN. The indenter has the ability to measure the depth of indentation, which is a type of displacement measurement, in a range from 0 to 500 nm. Finally, the instrument has resolution capability up to 10 nm, which enables the measurement of very small samples and coatings.

The Nanoindenter G200 is a user-friendly system that can be used in a wide variety of experimental settings. The system measures both nanoindentation and nano scratch hardness, and it can be operated with either optical or scanning electron microscopes. The indenter is compatible with a variety of sample surfaces and is designed to minimize sample damage. It also offers a wide range of accessories, such as a stage adapter and environmental chamber, for expanding the system’s capabilities according to the needed application.

The Nanoindenter G200 is an ideal choice for laboratories working with nano-scale measurements. The combination of accuracy, ease of use and cost-effectiveness, makes it a great tool for research and production settings.

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Metallographic map 1155 2023-06-19 1065 Whispering_Breeze

Hanneman Type Microhardness Tester is one of the common mechanical instruments used in metallographic (hardness) testing. This device is mainly used to measure the hardness of metal samples on the cross-section, and can be used to measure the surface and cross-section of the sample. Hardness value......

Hanneman Type Microhardness Tester is one of the common mechanical instruments used in metallographic (hardness) testing. This device is mainly used to measure the hardness of metal samples on the cross-section, and can be used to measure the surface and cross-section of the sample. Hardness value.

The working principle of the Hanneman type microhardness tester is based on the fact that the force applied to the indenter (diamond cone or Vicker diamond, etc.) is proportional to the force applied and the surface area when it penetrates into the sample surface, and the measurement result can be obtained. The edge portion of the indenter leaves traces on the surface of the sample (under a certain actual force). The Vickers microhardness tester is generally used for measurements with forces in the range of 0.1-1200gf and Vickers diagonal length about 0.3 - 250 μm.

The Hanneman type microhardness tester itself is composed of a host machine and a single test assembly. The single-test assembly is composed of a load cell, a load lock, an indenter, a measuring microscope, and a specimen positioning mechanism.

The load cell includes a compression cylinder and a system for applying and measuring the force to be tested. The load lock is used to fix the force applied to the indenter. The indenter consists of a diamond cone (cone-shaped) head and a Vickers pyramid head. The upper end of the indenter is connected with the measuring environment of the microscope and is effectively driven by the mechanical, hydraulic and pneumatic components located on the host computer. The position of the indenter and the calibration of the microscope are all adjusted by the position adjustment mechanism.

The Hanneman type microhardness tester is suitable for research, process control and quality inspection in metallographic (hardness) testing, as well as hardness measurements of small samples in the fields of electronics, machinery, chemistry and automobiles.

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13/06/2023