Výrobky Microtrac jsou nejen nejvyšší kvality, ale splňují také normy ASTM, DIN, ISO a USP. Velmi dbáme na to, aby naše výrobky splňovaly všechny potřebné požadavky, takže se můžete spolehnout, že dostáváte to nejlepší. Náš závazek ke kvalitě a dodržování předpisů se odráží v našem specializovaném týmu odborníků na kontrolu kvality, kteří dohlížejí na každý krok výrobního procesu. S našimi výrobky si můžete být jisti, že dostáváte výrobky, které jsou nejen odolné a spolehlivé, ale také splňují nejpřísnější průmyslové normy.
Princip měření | Normy | Standardní název | Relevantní model(y) |
---|---|---|---|
Adsorpce plynu | ASTM B922 | Standard Test Method for Metal Powder Specific Surface Area by Physical Adsorption | BELSORP MINI X, BELSORP MAX G, BELSORP MAX X |
Adsorpce plynu | ASTM B923 | Standard Test Method for Metal Powder Skeletal Density by Helium or Nitrogen Pycnometry | BELPYCNO, BELPYCNO L |
Adsorpce plynu | ASTM C1069 | Standard Test Method for Specific Surface Area of Alumina or Quartz by Nitrogen Adsorption | BELSORP MINI X, BELSORP MAX G, BELSORP MAX X |
Adsorpce plynu | ASTM C110 | Standard Test Methods for Physical Testing of Quicklime, Hydrated Lime, and Limestone | BELSORP MINI X, BELSORP MAX G, BELSORP MAX X, BELPYCNO, BELPYCNO L |
Adsorpce plynu | ASTM C1240 | Standard Specification for Silica Fume Used in Cementitious Mixtures | BELSORP MINI X, BELSORP MAX G, BELSORP MAX X, BELPYCNO, BELPYCNO L |
Adsorpce plynu | ASTM C1274 | Standard Test Method for Advanced Ceramic Specific Surface Area by Physical Adsorption | BELSORP MINI X, BELSORP MAX G, BELSORP MAX X |
Adsorpce plynu | ASTM C604 | Standard Test Method for True Specific Gravity of Refractory Materials by Gas-Comparison Pycnometer | BELPYCNO, BELPYCNO L |
Adsorpce plynu | ASTM D1993 | Standard Test Method for Precipitated Silica-Surface Area by Multipoint BET Nitrogen Adsorption | BELSORP MINI X, BELSORP MAX G, BELSORP MAX X |
Adsorpce plynu | ASTM D2638 | Standard Test Method for Real Density of Calcined Petroleum Coke by Helium Pycnometer | BELPYCNO, BELPYCNO L |
Adsorpce plynu | ASTM D3663-20 | Standard Test Method for Surface Area of Catalysts and Catalyst Carriers | BELSORP MINI X, BELSORP MAX G, BELSORP MAX X |
Adsorpce plynu | ASTM D3908 | Standard Test Method for Hydrogen Chemisorption on Supported Platinum Catalysts by Volumetric Vacuum Method | BELSORP MAX II (Chemisorption) |
Adsorpce plynu | ASTM D4222 | Standard Test Method for Determination of Nitrogen Adsorption and Desorption Isotherms of Catalysts and Catalyst Carriers by Static Volumetric Measurements | BELSORP MINI X, BELSORP MAX G, BELSORP MAX X |
Adsorpce plynu | ASTM D4284 | Standard Test Method for Determining Pore Volume Distribution of Catalysts and Catalyst Carriers by Mercury Intrusion Porosimetry | BELPORE LP, BELPORE MP, BELPORE HP |
Adsorpce plynu | ASTM D4365 | Standard Test Method for Determining Micropore Volume and Zeolite Area of a Catalyst | BELSORP MINI X, BELSORP MAX G, BELSORP MAX X |
Adsorpce plynu | ASTM D4404 | Standard Test Method for Determination of Pore Volume and Pore Volume Distribution of Soil and Rock by Mercury Intrusion Porosimetry | BELPORE LP, BELPORE MP, BELPORE HP |
Adsorpce plynu | ASTM D4567 | Standard Test Method for Single-Point Determination of Specific Surface Area of Catalysts and Catalyst Carriers Using Nitrogen Adsorption by Continuous Flow Method | BELSORP MR1 |
Adsorpce plynu | ASTM D4641 | Standard Practice for Calculation of Pore Size Distributions of Catalysts and Catalyst Carriers from Nitrogen Desorption Isotherms | BELSORP MINI X, BELSORP MAX G, BELSORP MAX X |
Adsorpce plynu | ASTM D4780 | Standard Test Method for Determination of Low Surface Area of Catalysts and Catalyst Carriers by Multipoint Krypton Adsorption | BELSORP MAX G, BELSORP MAX X |
Adsorpce plynu | ASTM D4824 | Standard Test Method for Determination of Catalyst Acidity by Ammonia Chemisorption | BELCAT II, BELMASS II |
Adsorpce plynu | ASTM D4892 | Standard Test Method for Density of Solid Pitch (Helium Pycnometer Method) | BELPYCNO, BELPYCNO L |
Adsorpce plynu | ASTM D5160 | Standard Guide for Gas-Phase Adsorption Testing of Activated Carbon | BELCAT II, BELMASS II |
Adsorpce plynu | ASTM D5550 | Standard Test Method for Specific Gravity of Soil Solids by Gas Pycnometer | BELPYCNO, BELPYCNO L |
Adsorpce plynu | ASTM D5604-21 | Standard Test Methods for Precipitated Silica – Surface Area by Single Point B.E.T. Nitrogen Adsorption | BELSORP MINI X, BELSORP MAX G, BELSORP MAX X |
Adsorpce plynu | ASTM D5965 | Standard Test Methods for Density of Coating Powders | BELPYCNO, BELPYCNO L |
Adsorpce plynu | ASTM D6093 | Standard Test Method for Percent Volume Nonvolatile Matter in Clear or Pigmented Coatings Using a Helium Gas Pycnometer | BELPYCNO, BELPYCNO L |
Adsorpce plynu | ASTM D6226 | Standard Test Method for Open Cell Content of Rigid Cellular Plastics | BELPYCNO, BELPYCNO L |
Adsorpce plynu | ASTM D6556 | Standard Test Method for Carbon Black – Total and External Surface Area by Nitrogen Adsorption | BELSORP MINI X, BELSORP MAX G, BELSORP MAX X |
Adsorpce plynu | ASTM D6761 | Standard Test Method for Determination of the Total Pore Volume of Catalysts and Catalyst Carriers | BELPORE LP, BELPORE MP, BELPORE HP, BELPYCNO, BELPYCNO L |
Adsorpce plynu | ASTM D70 | Standard Test Method for Density of Semi-Solid Asphalt Binder (Pycnometer Method) | BELPYCNO, BELPYCNO L |
Adsorpce plynu | ASTM D8325 | Standard Guide for Evaluation of Nuclear Graphite Surface Area and Porosity by Gas Adsorption Measurements | BELSORP MINI X, BELSORP MAX G, BELSORP MAX X |
Adsorpce plynu | ASTM E2864 | Standard Test Method for Measurement of Airborne Metal Oxide Nanoparticle Surface Area Concentration in Inhalation Exposure Chambers using Krypton Gas Adsorption | BELSORP MINI X, BELSORP MAX G, BELSORP MAX X |
Adsorpce plynu | ASTM WK92393 | New Guide for Carbon Monoxide Chemisorption on Supported Platinum on Alumina Catalysts Using Dynamic Flow Method | BELCAT II, BELMASS II, BELSORP MINI X, BELSORP MAX G, BELSORP MAX X |
Adsorpce plynu | ASTM WK92395 | New Test Method for Acid Site Characterization on Zeolites Using Dynamic Flow Method | BELCAT II, BELMASS II |
Princip měření | Normy | Standardní název | Relevantní model(y) |
---|---|---|---|
Adsorpce plynu | DIN 66134 (1998-02) | Determination of the Pore Size Distribution and the Specific Surface Area of Mesoporous Solids by Means of Nitrogen Sorption – Method of Barrett, Joyner and Halenda (BJH) | BELSORP MINI X, BELSORP MAX G, BELSORP MAX X |
Adsorpce plynu | DIN 66135-1 (2001-06) | Particle Measurement Technology – Micropore Analysis Using Gas Adsorption – Part 1: Basics and Measurement Methods | BELSORP MINI X, BELSORP MAX G, BELSORP MAX X |
Adsorpce plynu | DIN 66135-2 (2001-06) | Particle Characterization – Micropore Analysis by Gas Adsorption – Part 2: Evaluation by Isotherms Comparison | BELSORP MINI X, BELSORP MAX G, BELSORP MAX X |
Adsorpce plynu | DIN 66135-3 (2001-06) | Particle Measurement Technology – Micropore Analysis Using Gas Adsorption – Part 3: Determination of the Micropore Volume According to Dubinin and Radushkevich | BELSORP MINI X, BELSORP MAX G, BELSORP MAX X |
Adsorpce plynu | DIN 66135-4 (2004-09) | Particle Size Analysis – Micropore Analysis by Gas Adsorption – Part 4: Determination of Pore Distribution According to Horvath-Kawazoe and Saito-Foley | BELSORP MINI X, BELSORP MAX G, BELSORP MAX X |
Princip měření | Normy | Standardní název | Relevantní model(y) |
---|---|---|---|
Adsorpce plynu | ISO 12154:2014 | Determination of Density by Volumetric Displacement – Skeleton Density by Gas Pycnometry | BELPYCNO, BELPYCNO L |
Adsorpce plynu | ISO 12800:2017 | Nuclear Fuel Technology – Guidelines on the Measurement of the Specific Surface Area of Uranium Oxide Powders by the BET Method | BELSORP MINI X, BELSORP MAX G, BELSORP MAX X |
Adsorpce plynu | ISO 15901-1:2016 | Evaluation of Pore Size Distribution and Porosity of Solid Materials by Mercury Porosimetry and Gas Adsorption – Part 1: Mercury Porosimetry | BELPORE LP, BELPORE MP, BELPORE HP |
Adsorpce plynu | ISO 15901-2:2022 | Pore Size Distribution and Porosity of Solid Materials by Mercury Porosimetry and Gas Adsorption – Part 2: Analysis of Nanopores by Gas Adsorption | BELSORP MINI X, BELSORP MAX G, BELSORP MAX X |
Adsorpce plynu | ISO 18753:2017 | Fine Ceramics (Advanced Ceramics, Advanced Technical Ceramics) – Determination of Absolute Density of Ceramic Powders by Pycnometer | BELPYCNO, BELPYCNO L |
Adsorpce plynu | ISO 18757:2003 | Fine Ceramics (Advanced Ceramics, Advanced Technical Ceramics) – Determination of Specific Surface Area of Ceramic Powders by Gas Adsorption Using the BET Method | BELSORP MINI X, BELSORP MAX G, BELSORP MAX X |
Adsorpce plynu | ISO 18852:2015 | Rubber Compounding Ingredients – Determination of Multipoint Nitrogen Surface Area (NSA) And Statistical Thickness Surface Area (STSA) | BELSORP MINI X, BELSORP MAX G, BELSORP MAX X |
Adsorpce plynu | ISO 4652:2020 | Rubber Compounding Ingredients – Carbon Black – Determination of Specific Surface Area by Nitrogen Adsorption Methods – Single-Point Procedures | BELSORP MINI X, BELSORP MAX G, BELSORP MAX X, BELSORP MR1, BELCAT II |
Adsorpce plynu | ISO 8008:2005 | Aluminium Oxide Primarily Used for the Production of Aluminium – Determination of Specific Surface Area by Nitrogen Adsorption | BELSORP MINI X, BELSORP MAX G, BELSORP MAX X, BELSORP MR1, BELCAT II |
Adsorpce plynu | ISO 8130-2:2021 | Coating Powders – Part 2: Determination of Density by Gas Comparison Pycnometer (Referee Method) | BELPYCNO, BELPYCNO L |
Adsorpce plynu | ISO 9277:2022 | Determination of the Specific Surface Area of Solids by Gas Adsorption – BET Method | BELSORP MINI X, BELSORP MAX G, BELSORP MAX X |
Princip měření | Normy | Standardní název | Relevantní model(y) |
---|---|---|---|
Adsorpce plynu | JIS K 6217-2:2017 | Carbon black for rubber industry -- Fundamental characteristics -- Part 2: Determination of specific surface area -- Nitrogen adsorption methods -- Single-point procedures | BELSORP MINI X, BELSORP MAX G, BELSORP MAX X, BELSORP MR1 |
Adsorpce plynu | JIS K 6217-7:2013 | Carbon black for rubber industry -- Fundamental characteristics -- Part 7: Rubber compounding ingredients -- Determination of multipoint nitrogen surface area (NSA) and statistical thickness surface area (STSA) | BELSORP MINI X, BELSORP MAX G, BELSORP MAX X |
Adsorpce plynu | JIS R 1620:1995 | Testing methods for particle density of fine ceramic powder | BELPYCNO, BELPYCNO L |
Adsorpce plynu | JIS R 1626:1996 | Measuring methods for the specific surface area of fine ceramic powders by gas adsorption using the BET method | BELSORP MINI X, BELSORP MAX G, BELSORP MAX X, BELSORP MR1 |
Adsorpce plynu | JIS Z 8830:2013 | Determination of the specific surface area of powders (solids) by gas adsorption -- BET method | BELSORP MINI X, BELSORP MAX G, BELSORP MAX X, BELSORP MR1 |
Adsorpce plynu | JIS Z 8831:2024 | Pore size distribution and porosity of solid materials by mercury porosimetry and gas adsorption -- Analysis of nanopores by gas adsorption | BELSORP MINI X, BELSORP MAX G, BELSORP MAX X |
Adsorpce plynu | JIS Z 8837:2018 | Determination of density by volumetric displacement -- Skeleton density by gas pycnometry | BELPYCNO, BELPYCNO L |
Princip měření | Normy | Standardní název | Relevantní model(y) |
---|---|---|---|
Adsorpce plynu | USP 267 | Porosimetry by Mercury Intrusion | BELPORE LP, BELPORE MP, BELPORE HP |
Adsorpce plynu | USP 268 | Porosity by Nitrogen Adsorption-Desorption | BELSORP MINI X, BELSORP MAX G, BELSORP MAX X |
Adsorpce plynu | USP 699 | Gas Pycnometric Density of Solids | BELPYCNO, BELPYCNO L |
Adsorpce plynu | USP 846 | Specific Surface Area | BELSORP MINI X, BELSORP MAX G, BELSORP MAX X, BELSORP MR1, BELCAT II |
Princip měření | Normy | Standardní název | Relevantní model(y) |
---|---|---|---|
Particle Size & Shape | AASHTO M247 | Standard Glass Beads Used in Traffic Markings | CAMSIZER |
Particle Size & Shape | AASHTO PP 74-13 | Determination of size and roundness of glass beads used in traffic markings by means of computerized optical method | CAMSIZER |
Princip měření | Normy | Standardní název | Relevantní model(y) |
---|---|---|---|
Particle Size & Shape | ASTM B822-20 | Standard Test Method for Particle Size Distribution of Metal Powders and Related Compounds by Light Scattering | SYNC |
Particle Size & Shape | ASTM C1070-01(2020) | Standard Test Method for Determining Particle Size Distribution of Alumina or Quartz by Laser Light Scattering | SYNC |
Particle Size & Shape | ASTM D4456-17 | Standard Test Methods for Physical and Chemical Properties of Powdered Ion Exchange Resins | SYNC |
Particle Size & Shape | ASTM D4464-15(2020) | Standard Test Method for Particle Size Distribution of Catalytic Materials by Laser Light Scattering | SYNC |
Particle Size & Shape | ASTM D5861-07 (2017) | Standard Guide for Significance of Particle Size Measurements of Coating Powders | SYNC, CAMSIZER |
Particle Size & Shape | ASTM D7928-21e1 | Standard Test Method for Particle-Size Distribution (Gradation) of Fine-Grained Soils Using the Sedimentation (Hydrometer) Analysis | SYNC |
Particle Size & Shape | ASTM D7681-11 | Standard Test Method for Measuring Gradation of Glass Spheres Using a Flowing Stream Digital Image Analyzer | CAMSIZER |
Particle Size & Shape | ASTM D7971-20 | Standard Guide for Measuring Roundness of Glass Spheres Using a Flowing Stream Digital Image Analyzer | CAMSIZER |
Particle Size & Shape | ASTM D8090-24 | Standard Test Method for Particle Size Distribution and Shape Analysis of Paints and Pigments Using Dynamic Imaging Methods | SYNC, CAMSIZER |
Particle Size & Shape | ASTM E1617-09(2019) | Standard Practice for Reporting Particle Size Characterization Data | SYNC, CAMSIZER |
Particle Size & Shape | ASTM F1877-24 | Standard Practice for Characterization of Particles | CAMSIZER |
Particle Size & Shape | ASTM F3571 – 22 | Standard Guide for Additive Manufacturing – Feedstock – Particle Shape Image Analysis by Optical Photography to Identify and Quantify the Agglomerates/Satellites in Metal Powder Feedstock | SYNC, CAMSIZER |
Particle Size & Shape | ASTM UOP856-07 | Particle Size Distribution of Powders by Laser Light Scattering | SYNC |
Princip měření | Normy | Standardní název | Relevantní model(y) |
---|---|---|---|
Particle Size & Shape | DIN 66165-1 | Particle size analysis - Sieving Analysis - Part 1: Fundamentals | CAMSIZER |
Particle Size & Shape | DIN 66165-2 | Particle size analysis - Sieving Analysis - Part 2: Procedure | CAMSIZER |
Particle Size & Shape | DIN EN 14955 | Surfaces for sports areas – Determination of composition and particle shape of unbound mineral surfaces for outdoor sports areas | CAMSIZER |
Particle Size & Shape | DIN EN 933-3 | Tests for geometrical properties of aggregates - Part 3: Determination of particle shape - Flakiness index | CAMSIZER |
Princip měření | Normy | Standardní název | Relevantní model(y) |
---|---|---|---|
Particle Size & Shape | ISO 11277:2020 | Soil Quality – Determination of Particle Size Distribution in Mineral Soil Material – Method by Sieving and Sedimentation | SYNC |
Particle Size & Shape | ISO 12103-1:2024 | Road Vehicles – Test Contaminants for Filter Evaluation – Part 1: Arizona Test Dust | SYNC |
Particle Size & Shape | ISO 13320:2020 | Particle Size Analysis – Laser Diffraction Methods | SYNC |
Particle Size & Shape | ISO 13322-1:2014 | Particle Size Analysis – Image Analysis Methods – Part 1: Static Image Analysis Methods | CAMSIZER |
Particle Size & Shape | ISO 13322-2:2021 | Particle Size Analysis – Image Analysis Methods – Part 2: Dynamic Image Analysis Methods | SYNC, CAMSIZER |
Particle Size & Shape | ISO 13503-2:2024 | Measurement of properties of proppants used in hydraulic fracturing and gravel-packing operations | CAMSIZER |
Particle Size & Shape | ISO 14488 | Particulate materials - Sampling and sample splitting for the determination of particulate properties | General requirement |
Particle Size & Shape | ISO 17190-11:2001 | Urine-Absorbing Aids for Incontinence – Test Methods for Characterizing Polymer-Based Absorbent Materials – Part 11: Determination of Content of Respirable Particles | SYNC |
Particle Size & Shape | ISO 17190-3 | Urine-Absorbing Aids for Incontinence – Test Methods for Characterizing Polymer-Based Absorbent Materials – Part 3: Determination of particle size distribution by sieve fractionation | CAMSIZER |
Particle Size & Shape | ISO 24235:2007 | Fine Ceramics (Advanced Ceramics, Advanced Technical Ceramics) – Determination of Particle Size Distribution of Ceramic Powders by Laser Diffraction Method | SYNC |
Particle Size & Shape | ISO 2591-1 | Test Sieving | Sieving, CAMSIZER |
Particle Size & Shape | ISO 3310-1 | Test sieves - Technical requirements and testing - Test sieves of metal wire cloth | Sieving |
Particle Size & Shape | ISO 4365:2005 | Liquid Flow in Open Channels – Sediment in Streams and Canals – Determination of Concentration, Particle Size Distribution and Relative Density | SYNC |
Particle Size & Shape | ISO 8130-13:2019 | Coating Powders – Part 13: Particle Size Analysis by Laser Diffraction | SYNC |
Particle Size & Shape | ISO 9276-1 | Representation of results of particle size analysis | General requirement |
Particle Size & Shape | ISO 9276-2:2014 | Representation of results of particle size analysis. Part 2: Calculation of average particle sizes/diameters and moments from particle size distributions | General requirement |
Particle Size & Shape | ISO 9276-3:2008 | Representation of results of particle size analysis. Part 3: Adjustment of an experimental curve to a reference model | General requirement |
Particle Size & Shape | ISO 9276-4:2001 | Representation of results of particle size analysis. Part 4: Characterization of a classification process | General requirement |
Particle Size & Shape | ISO 9276-5:2005 | Representation of results of particle size analysis. Part 5: Methods of calculation relating to particle size analyses using logarithmic normal probability distribution | General requirement |
Particle Size & Shape | ISO 9276-6 | Descriptive and quantitative representation of particle shape and morphology | CAMSIZER, SYNC |
Particle Size & Shape | ISO EN 1423 | Road marking materials – Drop on materials-Glas beads, antiskid aggregates and mixtures of the two | CAMSIZER |
Particle Size & Shape | ISO/ASTM 52907:2019 | Additive Manufacturing – Feedstock Materials – Methods to Characterize Metal Powders | SYNC, CAMSIZER |
Particle Size & Shape | ISO 24218-1:2023 | Fine Bubble Technology – Characterization of Fine Bubbles – Part 1: Evaluation of Size and Concentration Indices by Laser Diffraction Method | SYNC |
Particle Size & Shape | ISO/TR 19997:2018 | Guidelines for good practices in zeta-potential measurement | NANOTRAC II with Zeta |
Princip měření | Normy | Standardní název | Relevantní model(y) |
---|---|---|---|
Particle Size & Shape | JIS K 5600-9-3 | Testing methods for paints- Part 9:Coating powders-Section 3:Particle size analysis by laser diffraction - related to ISO 8130-13:2001 | SYNC |
Particle Size & Shape | JIS R 1629 | Determination of particle size distributions for fine ceramic raw powders by laser diffraction method | SYNC |
Particle Size & Shape | JIS R 1657 | Testing methods of continuous ceramic fibers for continuous fiber- reinforced ceramic matrix Composites | SYNC |
Particle Size & Shape | JIS R 7607 | Carbon fiber – Determination of filament diameter and cross-sectional area - related to ISO 11567 | SYNC |
Particle Size & Shape | JIS Z 3284-2 | Solder paste – Par 2: Test methods for solder particle shape, surface condition Judgment, and particle size distribution - related to IEC 61189-6:2206 | SYNC |
Particle Size & Shape | JIS Z 3285 | Solder paste for micro-joining-Characteristic test methods for solder paste using fine particles | SYNC |
Particle Size & Shape | JIS Z 8825 | Particle size analysis - laser diffraction methods - related to ISO 13320:2020 | SYNC |
Particle Size & Shape | JIS Z 8828 | Particle size analysis - Dynamic Light Scattering (DLS) - related to ISO 22412:2017 | NANOTRAC |
Princip měření | Normy | Standardní název | Relevantní model(y) |
---|---|---|---|
Particle Size & Shape | USP 1430.2 | Analytical Methodologies Based on Scattering Phenomena – Light Diffraction Measurements of Particle Size | SYNC |
Particle Size & Shape | USP 1787 | Unknown Title | SYNC |
Particle Size & Shape | USP 429 | Laser Diffraction Measurement of Particle Size | SYNC, CAMSIZER |
Particle Size & Shape | USP 776 | Optical Microscopy (Particle Size Characterization) | SYNC |
Princip měření | Normy | Standardní název | Relevantní model(y) |
---|---|---|---|
Particle Size & Shape | VDI 3405 Blatt 2.3 / Part 2.3 | Additive manufacturing processes, rapid manufacturing, Beam melting of metallic parts, Characterisation of powder feedstock | CAMSIZER, SYNC |
Princip měření | Normy | Standardní název | Relevantní model(y) |
---|---|---|---|
Stability & Dispersibility | ISO 13099-2 | Colloidal systems -Methods for zetapotential determination - Part 2: Optical methods | NANOTRAC |
Stability & Dispersibility | ISO 13317 | Determination of particle size distribution by gravitational liquid sedimentation methods | TURBISCAN |
Stability & Dispersibility | ISO 22412 | Particle size analysis — Dynamic light scattering (DLS) | NANOTRAC |
Stability & Dispersibility | ISO TR 18811:2018 | Cosmetics — Guidelines on the stability testing of cosmetic products | TURBISCAN |
Stability & Dispersibility | ISO TR13097:2013 | Guidelines for the characterization of dispersion stability | TURBISCAN |
Stability & Dispersibility | ISO TS 21357:2022 | Nanotechnologies — Evaluation of the mean size of nano-objects in liquid dispersions by static multiple light scattering (SMLS) | TURBISCAN |
Stability & Dispersibility | ISO TS 22107:2021 | Dispersibility of solid particles into a liquid | TURBISCAN |
Stability & Dispersibility | ISO/TR 22814 | Good practice for DLS measurements | NANOTRAC |
Princip měření | Normy | Standardní název | Relevantní model(y) |
---|---|---|---|
Stability & Dispersibility | JIS R 1638 | Test methods of iso-electric point of fine ceramic powders | STABINO ZETA |
Stability & Dispersibility | JIS Z 8836 | Colloidal systems-Methods for zeta-potential determination-Optical methods - related to ISO 13099-2:2021 | STABINO ZETA |