Distribution Measuring Instrument - メーカー・企業6社の製品一覧とランキング

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Distribution Measuring Instrumentのメーカー・企業ランキング

更新日: 集計期間:Aug 27, 2025~Sep 23, 2025
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  1. マイクロトラック・ベル Osaka//others
  2. シバタ ファインバブル事業部 Aichi//others
  3. ウェーブクレスト Saitama//Educational and Research Institutions
  4. 4 ナノシーズ Aichi//others
  5. 4 null/null

Distribution Measuring Instrumentの製品ランキング

更新日: 集計期間:Aug 27, 2025~Sep 23, 2025
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  1. [Data] Particle Size Distribution (Particle Diameter Distribution) and Particle Shape of Activated Carbon マイクロトラック・ベル
  2. Particle Size Distribution (Particle Diameter Distribution) and Particle Shape Measurement Device 'SYNC' マイクロトラック・ベル
  3. [Data] Cement and Particle Size Distribution (Grain Size Distribution) マイクロトラック・ベル
  4. Laser diffraction and scattering particle size distribution measurement device MT3000 II series マイクロトラック・ベル
  5. 5 [Data] Particle size distribution and particle shape of superabsorbent polymers マイクロトラック・ベル

Distribution Measuring Instrumentの製品一覧

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【Data】Micronization of Active Pharmaceutical Ingredients and Physical Property Evaluation

Measurement of particle size distribution of etenzamide and observation of particle shape using SEM.

This document discusses the suitable grinding conditions for a jet mill based on the particle size distribution measurements and SEM shape observations of the crystalline active pharmaceutical ingredient, ethenzamide. In the manufacturing of formulations, the control of the physical properties such as the fine particle size and shape of the active ingredient is an important factor for the enhancement of tablets (tensile strength, solubility, compaction properties). Since ethenzamide is a highly elastic organic compound, it was observed that the particles became rounded with smoothed edges due to the grinding in the jet mill. 【Contents】 ■ Overview ■ Jet Mill Performance Testing ■ Jet Mill Performance Confirmation (Particle Size Distribution) ■ Discussion *For more details, please refer to the PDF document or feel free to contact us.

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[Data] Evaluation of the particle size distribution (particle diameter distribution) and number concentration of microbubbles.

By setting the control pressure, we confirmed that we can efficiently generate bubbles!

This document introduces a case study evaluating the particle size distribution (particle diameter distribution) and changes in quantity through image analysis when varying the additional pressure conditions during bubble generation using a pressurized dissolution method bubble generator. Microbubbles are expected to have applications in various fields such as aquaculture, agriculture, environment, and industry, with many cases reported regarding their cleaning and purification effects. Methods for generating microbubbles include pressurized dissolution, shear method, two-phase flow swirling method, and ejector method, with differences in the generated bubble diameter and quantity arising from the control of pressure, rotational speed, mixed gases, and liquid temperature. 【Contents】 ■ Overview ■ Microbubble measurement methods ■ Tests confirming bubble diameter and generation number changes due to variations in bubble generation pressure ■ Discussion ■ Evaluation equipment *For more details, please refer to the PDF document or feel free to contact us.

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[Data] Cement and Particle Size Distribution (Grain Size Distribution)

Introducing an example of particle size distribution measurement using the Microtrack MT3300EXII!

This document presents information on cement and particle size distribution (particle diameter distribution). The specific surface area (Blaine value) is widely used as an indicator of the fineness (coarseness) of cement. Here, we will compare the particle size distribution and Blaine values of ordinary Portland cement and ultrafine cement, and examine the differences in physical properties based on their types. [Contents] ■ Overview ■ Measurement Results ■ Particle Size Distribution Displayed by Rosin-Rammler Diagram ■ Notes *For more details, please refer to the PDF document or feel free to contact us.

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[Data] The Frontline of 3D Printing and the Evaluation of Its Powder Properties

An explanation of the characteristics required for metal powder used in 3D printers and methods for evaluating those properties!

This document introduces the characteristics required for powders used in 3D printers and their evaluation methods, along with examples of actual measurements. 3D printers have become accessible devices for general consumers, allowing individuals to utilize manufacturing services for just a few thousand yen, and the market size is estimated to reach at least 2 trillion yen by 2030. Depending on the processing method, 3D printing can be categorized into several types, and the materials used vary not only from powders but also include liquids and sheets. However, technologies utilizing powders are particularly attracting attention, such as the establishment of the "Next Generation 3D Layered Manufacturing Technology Comprehensive Development Organization (TRAFAM)." [Contents (Excerpt)] ■ Overview ■ Powders used in 3D printers ■ Evaluation equipment ■ Measurement results ■ Discussion and summary of results *For more details, please refer to the PDF document or feel free to contact us.

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[Data] Evaluation of the physical properties of "spray droplets and powders: particulate matter flying in space."

We are introducing particle measurement of sprays and mists!

This document introduces the evaluation of the physical properties of "spray droplets (spray mist) and powders flying in space" using the particle size distribution measurement device "AerotracII." The "AerotracII," with its features of an <open optical platform> and <ultra-fast sampling>, can accommodate various applications. In measurements with spray cans, the changes in particle size of droplets flying from the nozzle are measured at intervals of 0.2 msec. It is observed that the particle size stabilizes 2.4 msec after particle detection. [Contents] ■ Overview ■ Measurement Examples ■ Specifications *For more details, please refer to the PDF document or feel free to contact us.

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[Data] Micronization and Dispersion Effects of Titanium Dioxide Using a Bead Mill

This is a document on the dispersion evaluation of titanium oxide, focusing on the microparticle production by bead milling and the dispersion effects of polymer dispersants!

This document introduces the dispersion evaluation of titanium dioxide, the micronization using a bead mill, and the dispersion effects of polymer dispersants. Here, using titanium dioxide, we present measurement cases that evaluate the effects of dispersants and the dispersion state achieved by a wet bead mill, using the laser diffraction/scattering method and dynamic image analysis particle size distribution measurement device "Microtrac Sync," the dynamic light scattering (DLS) particle size distribution measurement device "Nanotrac Wave II," and the streaming potential measurement device "Stabino." [Contents] ■ Overview ■ Experiments ■ Measurement Results *For more details, please refer to the PDF document or feel free to contact us.

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Specific surface area/pore distribution measurement device "BELSORP MINI X"

Quickly, easily, and accurately measure the specific surface area of carbon ceramic materials and more using our unique technology!

We would like to introduce our surface area/porosity distribution measurement device, the 'BELSORP MINI X'. It features a new capability for high throughput with the ability to measure up to 4 samples simultaneously and significantly reduced measurement time through multi-link technology. The new measurement software enhances user productivity by allowing for tracking of measurement progress, scheduling of maintenance, and sending measurement results via email. Additionally, the new analysis software (BELMasterTM7) enables a broader evaluation of material structures than ever before. 【Features】 ■ High precision with simultaneous measurement of up to 4 samples ■ Significant reduction in measurement time ■ Equipped with Gas Delivery Optimization (GDO) function ■ Automatic measurement of adsorption isotherms through minimum condition settings ■ Improved measurement accuracy and reproducibility with AFSM *For more details, please refer to the PDF document or feel free to contact us.

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Dynamic Image Analysis Particle Shape and Size Distribution Measurement Device 'S3500 SI'

Demo/analysis now available. Diverse measurement results unique to image analysis! Equipped with a freely combinable particle supply system.

The "S3500 SI" is a dynamic image analysis-based particle shape and particle size distribution (granulometry) measurement device that achieves wide-range measurement using a high-performance camera. It outputs volume-based and number-based particle size distributions from particle image information. In the case of highly transparent particles, the light from the light source passes through the particles, resulting in holes in the imaging results. However, it can analyze without recognizing these holes. 【Features】 ■ Outputs volume-based and number-based particle size distributions from particle image information ■ Diverse measurement results unique to image analysis ■ Filling processing for cavity images ■ Automatic exclusion of "blurry" particle images ■ Freely combinable particle supply system *For more details, please refer to the PDF materials or feel free to contact us.

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Dynamic Image Analysis Particle Shape and Size Distribution Measurement Device "PARTAN 3D"

Demo/analysis now available! Measuring range from 22μm to 35mm! It is possible to measure with high precision over a very wide range.

"PARTAN 3D" is a dynamic image analysis device capable of analyzing 40 types of particle characteristic parameters, such as particle size, particle shape, surface roughness, transparency, and 3D analysis, in a single measurement. It can measure a very wide range from 22μm to 35mm with high precision. The principle involves capturing the projected image of the sample, which is freely dropped from a sample supply feeder, using a CMOS camera. The captured image information is then processed and combined to output the particle size distribution and shape. 【Features】 ■ Three-dimensional (3D) image analysis - Achieves 3D image analysis through a unique measurement mechanism - In addition to conventional planar images (XY axis), it allows evaluation of particle thickness (Z axis) - Enables evaluation of sphericity in addition to circularity ■ High correlation with sieves - Achieves a high correlation with sieves through the evaluation of the Z axis (thickness) *For more details, please refer to the PDF document or feel free to contact us.

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Evaluation of the flowability, compactness, and coarse particles of metal powders - particle size distribution and particle shape.

Demo/analysis available: particle size distribution (broad/sharp), roundness, detection of coarse particles that cause defects. Dynamic image analysis method for dry measurement of large quantities of particles.

The "CAMSIZER X2" is a powerful and versatile particle characterization device that combines new camera technology with flexible sample dispersion options. Based on the principle of dynamic image analysis (ISO 13322-2), it accurately determines particle size and shape for powders, granules, and suspensions over a wide measurement range of 0.8μm to 8mm. It generates a flow of particles in a dry powder or suspension state and continuously captures particle images at a frame rate of 300 images per second using a high-brightness strobe light source and two high-resolution digital cameras. 【Features】 ■ Captures hundreds of thousands to millions of particle images in a short measurement time of 1 to 3 minutes ■ Enables comprehensive and reliable characterization of samples ■ Complies with ISO 13322-2 dynamic image analysis ■ Utilizes unique dual camera technology to accommodate a wide measurement range (0.8μm to 8mm) ■ High-resolution measurements of sharp particle size distributions (granulometric distributions) and multiple peak distributions *For more details, please refer to the PDF document or feel free to contact us.

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Particle Size Distribution and Shape Index Data Collection 'CAMSIZER PART I'

Demo/analysis now accepting for fertilizers, food, and building materials! Evaluation of particle size distribution (granulometric distribution) and shape index using dynamic image analysis methods.

This document is a collection of data from "CAMSIZER," which introduces the world of millimeters through images. It includes applications related to fertilizers, food, and building materials, as well as evaluations of particle size distribution and shape indices using dynamic image analysis methods. The information is summarized clearly using tables and figures, so please take a moment to read it. 【Contents (excerpt)】 ■ Fertilizers (large particles) ■ Fertilizers (small particles) ■ Comparison of fertilizers (particle size distribution and shape) ■ Fertilizers (pellets) ■ Sugar (medium granulated sugar) *For more details, please refer to the PDF document or feel free to contact us.

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[Data] Particle Size Distribution (Particle Diameter Distribution) and Particle Shape of Activated Carbon

The particle size distribution and particle shape of activated carbon, which greatly influence the characteristics of the filter.

The document introduces the particle size distribution and particle shape of activated carbon. Activated carbon is used as a filter material to adsorb gases, bacteria, odors, and more in various industrial fields. The characteristics of the filter are greatly influenced by the particle shape and particle size distribution of the activated carbon. The 'CAMSIZER P4' provides reliable information on both aspects and is suitable for quality control and production management. [Contents (excerpt)] ■ Applications ■ Dynamic image analysis CAMSIZER P4 ■ Measurement of fine particles in activated carbon ■ Reproducibility ■ Data consistency with sieving *For more details, please refer to the PDF document or feel free to contact us.

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[Data] Granule size distribution (particle size distribution) and particle shape of proppants

A sharp particle size distribution aligned with the cracks in the rock, and spherical particles.

This document introduces the particle size distribution (granulometry) and particle shape of proppants. The role of proppants contained in fracturing fluids is to keep the cracks in the rock open and maintain the permeability of oil and gas. Proppants include sand, resin-coated sand, and ceramic beads, and to achieve good permeability, the particle size must match the size of the cracks, and the particle size distribution must be narrow. [Contents] ■ Applications ■ Quality control of proppants ■ Dynamic image analysis CAMSIZER P4 ■ Features of CAMSIZER P4 *For more details, please refer to the PDF document or feel free to contact us.

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[Data] Particle Size Distribution (Particle Diameter Distribution) and Particle Shape of Pharmaceuticals

You can evaluate the properties of granules and raw materials within 3 minutes.

This document introduces the particle size distribution (particle diameter distribution) and particle shape of pharmaceutical products. In the pharmaceutical field, evaluating the characteristics of the constituent particles is very important. For measuring the particle size distribution of active ingredients and excipients, methods such as sieving and laser diffraction/scattering are used, but these methods also have drawbacks. The image analysis of the 'CAMSIZER X2' is an alternative measurement method that overcomes these drawbacks. With a wide measurement range from 0.8μm to 3000μm, it allows for the evaluation of the characteristics of granules and powders within 3 minutes. [Contents] ■ Introduction ■ Measurement Example 1: Starch ■ Measurement Example 2: Active Ingredients ■ Summary ■ CAMSIZER X2: Features *For more details, please refer to the PDF document or feel free to contact us.

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[Data] Grain size distribution (particle size distribution) and particle shape of abrasives and grinding materials.

It is possible to evaluate the characteristics of a wide range of particle sizes, from fine abrasive particles to relatively large abrasive grains!

This document introduces the particle size distribution (particle diameter distribution) and particle shape of abrasives and grinding grains. The "CAMSIZER X2" is based on dynamic image analysis and can measure not only high-precision particle size distribution but also particle shape. With very simple operation, the measurement time is only 2 to 3 minutes. It can evaluate the characteristics of both macrograins and micrograins. [Contents (excerpt)] ■ Applications ■ Quality control of abrasives ■ Measurement example 1: Measurement of micrograins using compressed air dispersion ■ Measurement example 2: Comparison with macrograins_sieving ■ Measurement example 3: Detection of coarse particles *For more details, please refer to the PDF document or feel free to contact us.

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