Nanomechanical Testing Market Size, Share, Growth, Trends, Indus - FOX21- Entertaining Delmarva One Click at a Time

Nanomechanical Testing Market Size, Share, Growth, Trends, Industry Report, and Forecast to 2025


Nanomechanical testing market is expected to gain traction as the application of nanomechanical testing methods have become more and more important in materials research fields such as glasses, polymers, metals, ceramics, coatings, composites, and biomaterials. Nanomechanical testing helps improve the understanding of the basic of mechanical properties of thin-film systems and the importance of the nanoscale behavior on their performance. Currently used nanomechanical testing methods include thin-film testing methods, compression, tension, and bending tests. Nanomechanical testing studies helps in improving the understanding of the complex mechanical behavior of advanced materials.

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Development of new technology such as nanoindentation testing also called instrumented indentation testing is the major factor that will anticipate the growth of the nanomechanical testing market. Factors such as growing use of the connected devices, developments in the MEMS-based devices and technologies and demand for the accurate reading product for nanomechanical testing are driving the nanomechanical testing industry. Additionally, rising demand for the testing numerous materials to understand the nanoscale properties and behavior of the material will also propel the growth of the nanomechanical testing market. Inadequate understanding regarding nanomechanical testing and its benefits and occurrence of strain-softening while testing the bulk solid will hinder the nanomechanical testing market size to a certain extent.

Regionally, North America dominates the nanomechanical testing industry due to the rapid industrialization coupled with the early adoption of these technologies in the region. Other factors that will anticipate the growth of the market in the region include the presence of renowned and thriving engineering institutes, increasing demand for the nanomechanical testing devices and increased investments in the research and development of nanomechanical testing.

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Asia-Pacific region is anticipated to show the highest growth in the near future. The growth in the region is due to the rising industrialization attracting more investments for technological advancements and increased R&D activities by the engineering firms. Bruker Corp., Micro Material Ltd., and KLA Corp. are prominent companies engaged in the nanomechanical testing market. Other active players in the global nanomechanical testing market include Alemnis GmbH, Bangalore Integrated System Solutions (P) Ltd., FemtoTools, MTS Systems Corp., Nanoscience Instruments and Park Systems among others.

Current Market Trends Covered in the market report:

  • Development in the nanomechanical testing methods such as nanoindentation.
  • New improvements in the existing technology such as attaining the local testing conditions at high strain rates as well as low temperatures.
  • The use of different spectroscopy techniques such as photon, phonon, electron, ion, or combinations, to understand deformation processes in advanced structural materials will propel the nanomechanical testing market.

Industry Key Players

The major players that contribute to the growth of the nanomechanical testing market include Bruker Corp., Micro Materials, Ltd., Alemnis GmbH, MTS Systems Corporation, KLA Corp., Nanomechanics, Inc., and others. These market players are contributing to the market by adopting various market approaches including product launch and approvals, merger and acquisition, partnerships, collaborations, and others for gaining a strong position in the market.

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Recent Developments

In February 2018, Bruker Corp. has acquired IRM2, a developer of high-speed infrared (IR) imaging microscopes based on quantum cascade laser (QCL) technology. The acquisition facilitated the company to expand its product portfolio and increase the market opportunities for IR microscopy, with applications in biological tissue analysis and materials science, and future potential in tissue diagnostics.

In June 2019, Micro Materials Ltd. has developed a high-frequency acoustic emission (AE) monitoring system that is able to detect AE during nanomechanical tests such as nanoindentation, nano-scratch, and nano-impact along with many others.

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