Calculate adhesion strength of one particle using image analysis and statistical methods! [Contract Measurement]
We measure the adhesion force when a particle is subjected to an impact, causing it to separate from the desired plane due to the impact acceleration. It is possible to capture images of the particle's flight. The behavior of the particles flying in clumps can be observed. Additionally, temperature and humidity control is available as an option. Temperature and humidity are recorded automatically. 【Features】 ■ Measurement time is significantly reduced compared to the centrifugal method ■ Time for data processing comparison is also significantly reduced ■ Flight images of the toner can be captured ■ The behavior of particles flying in clumps can be confirmed ■ The adhesion plane can be grounded *For more details, please refer to the PDF document or feel free to contact us.
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【Other Features】 ■ Compared to the centrifugal method, the force acts rapidly and can be accurately adapted to phenomena such as electrophotography. ■ Automatically records images before and after measurement. *For more details, please refer to the PDF document or feel free to contact us.
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Independent Administrative Institution National Institute of Advanced Industrial Science and Technology Technology Transfer Company The concept of "measuring force" will undergo a significant change. The "small forces" that could not be measured with conventional measuring devices have become an accessible approach in research and development. NanoSeez provides cutting-edge measurement devices and measurement technologies that can assist in your research and development efforts. We are a solution company for measuring particle adhesion forces. Technology Introduction We offer measurement solutions focused on the measurement and analysis of adhesion forces, aggregation forces, and friction forces of particles in the micrometer range. Accurately understanding the physical properties of powders from various angles is crucial technical information for product development. It is possible to predict the behavior of powders in bulk, including flowability, compressibility, and stress relaxation, as well as the behavior of aggregates. Our measurement methods significantly clarify the evaluation of powder properties that have been difficult to understand in previous research and development. This enables rapid product development, quality control of products, and stabilization of manufacturing processes (such as achieving measured and managed powder properties).