List of Dispersion/emulsification equipment/homogenizer products

  • classification:Dispersion/emulsification equipment/homogenizer

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Achieves high collection efficiency through electrostatic methods. Offers a wide range of products from large to small sizes. Also compatible with water-soluble oil mist.

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  • air conditioning

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Reproducibility of slurry dispersion is created from process design.

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  • IKA+shibuya .png
  • インライン固液混合パイロットプラント.jpg
  • IPROS29562848587318290804.png
  • Emulsifier/Disperser
  • Vacuum degassing machine
  • Dispersion/emulsification equipment/homogenizer

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What are the reasons for the inability to disperse high-viscosity slurries? The mechanisms behind poor dispersion and design points for solutions.

In the dispersion process of high-viscosity slurries, issues such as "not being dispersed despite being mixed" and "remaining clumps" occur. The main cause of these problems is that the increase in viscosity reduces fluidity, preventing dispersion energy from being evenly transmitted throughout the system. Generally, dispersion breaks apart agglomerated particles through shear force, but in a high-viscosity state, the flow becomes localized, leading to differences between areas experiencing shear and those that do not. As a result, undispersed areas and agglomerates remain, causing variations in particle size distribution and quality issues. Furthermore, the higher the viscosity, the weaker the circulation within the equipment, making it difficult for particles to pass uniformly through the processing area, which also decreases reproducibility. In batch processing, variations in residence time and mixing state become particularly pronounced, making it easier for lot differences to occur. To achieve stable dispersion in high-viscosity systems, not only shear enhancement but also flow design and ensuring circulation are important. By simultaneously controlling flow and shear, as in inline continuous processing, uniform and highly reproducible dispersion can be achieved. Additionally, the wettability of the powder and the method of introduction during the initial dispersion are also crucial; if the initial dispersion is insufficient, the subsequent breaking efficiency decreases.

Thanks to our unique dispersion system, mixing and dispersing fine powders can be achieved in a short time without causing clumping! We can accommodate both continuous and batch processes.

  • IKA+shibuya .png
  • インライン固液混合パイロットプラント.jpg
  • Emulsifier/Disperser
  • Vacuum degassing machine
  • Dispersion/emulsification equipment/homogenizer

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Thanks to our unique dispersion system, we can achieve the mixing and dispersion of fine powders in a short time without generating clumps! We can accommodate both continuous and batch processes.

  • IKA+shibuya .png
  • インライン固液混合パイロットプラント.jpg
  • IPROS29562848587318290804.png
  • Emulsifier/Disperser
  • Vacuum degassing machine
  • Dispersion/emulsification equipment/homogenizer

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Even for first-time users, after inserting the sample, emulsification and dispersion processing can be performed simply by tapping the operation screen four times, using shear force from high pressure...

  • Emulsifier/Disperser
  • Dispersion/emulsification equipment/homogenizer
  • Other emulsification and dispersion equipment

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The dispersion quality of battery materials is determined by the process. A solid-liquid mixing dispersion system that suppresses agglomeration and aggregation.

  • カーボン混合液.jpg
  • IKA+shibuya .png
  • インライン固液混合パイロットプラント.jpg
  • IPROS29562848587318290804.png
  • Emulsifier/Disperser
  • Vacuum degassing machine
  • Dispersion/emulsification equipment/homogenizer

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What are the causes and countermeasures for quality variation in dispersed engineering? An explanation of design points to prevent instability in particle size distribution and reduced reproducibility.

In dispersion processes, issues such as unstable particle size distribution and quality variation between batches occur in many settings. These quality variations are caused not only by equipment performance but also by variations in dispersion conditions, flow states, and process design. For example, when shear energy is uneven, differences arise in the disintegration state of particles, leading to a wider particle size distribution and residual agglomeration. Additionally, in batch processing, variations in mixing uniformity and residence time can cause fluctuations in dispersion state between batches, making it difficult to ensure reproducibility. Particularly in high-viscosity systems or high solid content slurries, even slight variations in conditions can significantly impact quality. To suppress quality variations, it is crucial to design processes that maintain consistent dispersion energy and flow conditions. By stabilizing conditions, as in inline continuous processing, it becomes possible to reduce inter-batch differences and achieve stable dispersion quality. Furthermore, in dispersion processes, not only the performance of the equipment itself but also operating conditions such as input order, residence time, and flow control greatly affect quality. Inline continuous processing makes it easier to maintain these conditions consistently, ensuring stable dispersion even in high-viscosity slurries. By designing the entire process, it is possible to fundamentally suppress quality variations.

Even for first-time users, after inserting the sample, emulsification and dispersion processing can be performed simply by tapping the operation screen four times, using shear force from high pressure...

  • Emulsifier/Disperser
  • Dispersion/emulsification equipment/homogenizer
  • Other emulsification and dispersion equipment

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Even for first-time users, after inserting the sample, emulsification and dispersion processing can be performed simply by tapping the operation screen four times, using shear force from high pressure...

  • Emulsifier/Disperser
  • Dispersion/emulsification equipment/homogenizer
  • Other emulsification and dispersion equipment

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Even for first-time users, after inserting the sample, emulsification and dispersion processing can be performed simply by tapping the operation screen four times, using shear force from high pressure...

  • Emulsifier/Disperser
  • Dispersion/emulsification equipment/homogenizer
  • Emulsifying and dispersing machine

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Even for first-time users, after inserting the sample, emulsification and dispersion processing can be performed simply by tapping the operation screen four times, using shear force from high pressure...

  • Emulsifier/Disperser
  • Dispersion/emulsification equipment/homogenizer
  • Emulsifying and dispersing machine

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Even for first-time users, after inserting the sample, you can perform emulsification and dispersion processing simply by tapping the operation screen four times, thanks to the shear force generated b...

  • Emulsifier/Disperser
  • Cell dispersion reagent
  • Dispersion/emulsification equipment/homogenizer

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The settings allow for simple operation with just output adjustment! Being handheld, it enables easy crushing processing!

  • Dispersion/emulsification equipment/homogenizer
  • Homogenizer
  • Cell Disruption Equipment

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Compact and lightweight body! Stable oscillation can be achieved even when the load changes due to crushing.

  • Dispersion/emulsification equipment/homogenizer
  • Homogenizer
  • Cell Disruption Equipment

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I've never seen an ultrasonic homogenizer like this! Integrated stand ultrasonic homogenizer.

  • Dispersion/emulsification equipment/homogenizer
  • Emulsifier/Disperser
  • Cell Disruption Equipment

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