Explosives

Explosives

When working with reactive materials with a large inherent amount of potential energy, the sudden release of which may produce an explosion, the tiniest deviation can affect massive repercussions. Therefore, a full understanding of explosives’ physical properties is essential for safe and efficient use. Find the measuring instrument that meets your particular needs in the instrument list below – or let us help you find the best solution by contacting us directly.

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Anton Paar Products

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Automated flow chemisorption analyzer:
ChemBET Pulsar

Automated Multipurpose Powder X-Ray Diffractometer:
XRDynamic 500

Automated representative sampler:
Micro Rotary Riffler

Automated tapped density analyzers:
Autotap Dual Station 110V / 60HZ

Automated tapped density analyzers:
Autotap Single Station 110V / 60HZ

Benchtop density meter:
DMA 4101

Benchtop density meter:
DMA 4501

Benchtop density meter:
DMA 5001

Compact digital density meter:
DMA 501

Compact digital refractometer:
Abbemat 3000

Compact digital refractometer:
Abbemat 3100

Compact digital refractometer:
Abbemat 3200

Compact inline density meter:
L-Dens 3300

Compact Raman spectrometers:
Cora 5001 Direct

Compact Raman spectrometers:
Cora 5001 Fiber

Digital heavy duty refractometer:
Abbemat 450

Digital heavy duty refractometer:
Abbemat 650

Domed Cooling Stage for Four-Circle Goniometers:
DCS 500

Domed Hot Stage for Four-Circle Goniometers DHS 1100 with graphite dome for high-temperature X-ray studies of polycrystalline samples and thin films from 25 to 1100 °C

Domed Hot Stage for Four-Circle Goniometers:
DHS 1100

Dynamic shear rheometer measuring head:
DSR 502

Five-station gas pycnometers for true density:
PentaPyc and PentaFoam 5200e

Five-station gas pycnometers for true density:
PentaPyc and PentaFoam 5200e Foam

Gas sorption analyzer:
QUADRASORB evo

High vacuum physisorption/chemisorption analyzers:
autosorb iQ C-AG

High vacuum physisorption/chemisorption analyzers:
autosorb iQ C-MP

High vacuum physisorption/chemisorption analyzers:
autosorb iQ C-XR

High vacuum physisorption/chemisorption analyzers:
autosorb iQ MP

High vacuum physisorption/chemisorption analyzers:
autosorb iQ XR

High-pressure volumetric gas sorption analyzer:
iSorb HP1 100

High-pressure volumetric gas sorption analyzer:
iSorb HP1 200

High-pressure volumetric gas sorption analyzer:
iSorb HP2 100

High-pressure volumetric gas sorption analyzer:
iSorb HP2 200

Mercury intrusion pore size analyzers:
PoreMaster 33

Mercury intrusion pore size analyzers:
PoreMaster 33GT

Mercury intrusion pore size analyzers:
PoreMaster 60

Mercury intrusion pore size analyzers:
PoreMaster 60GT

Micro Combi Tester:
MCT³

Microwave digestion platform:
Multiwave 5000

Microwave digestion system:
Multiwave GO Plus

Modular Compact Rheometer:
MCR 702e MultiDrive

Modular Compact Rheometer:
MCR 702e Space MultiDrive

Modular Compact Rheometer:
MCR 72/92 MCR 72

Modular Compact Rheometer:
MCR 72/92 MCR 92

Modular Compact Rheometer:
MCR 102e/302e/502e MCR 102e

Modular Compact Rheometer:
MCR 102e/302e/502e MCR 302e

Modular Compact Rheometer:
MCR 102e/302e/502e MCR 502e Power

Motorized alignment for XRD:
z-alignment stage

Nanoindentation tester:
NHT³

The RheolabQC is the quality control rheometer from Anton Paar. RheolabQC with temperature device C-PTD 180/AIR/QC and with Flexible Cup Holder.

Rotational Rheometer:
RheolabQC

Single-station gas pycnometers for true density:
Ultrapyc 3000

Single-station gas pycnometers for true density:
Ultrapyc 5000

Single-station gas pycnometers for true density:
Ultrapyc 5000 Foam

Single-station gas pycnometers for true density:
Ultrapyc 5000 Micro

Tensile Stage: TS 600 - sample stage for in-situ X-ray diffraction studies of stress/strain phenomena in fibers, foils and thin films

Tensile Stage:
TS 600

Ultra nanoindentation tester:
UNHT³ Standard

Vacuum and Flow Degasser:
FloVac

Vacuum Degasser:
XeriPrep

Vapor sorption volumetric gas sorption analyzer:
VSTAR 2 Station

Vapor sorption volumetric gas sorption analyzer:
VSTAR 2 Station Turbo

Vapor sorption volumetric gas sorption analyzer:
VSTAR 4 Station

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Anton Paar Applications

Can’t Etch This! Accurate Inline Process Concentration of Corrosive Acids

Can’t Etch This! Accurate Inline Process Concentration of Corrosive Acids

Relevant for acids, batteries, desiccants, dyes, explosives, fabrics, fertilizer, insecticides, picklingbBaths, plastics, plating baths, propellants, surfactants, titanium oxide, wood preservatives, and many more

Safe and Accurate Inline Sulfuric Acid Measurement Improves Quality and Production

Safe and Accurate Inline Sulfuric Acid Measurement Improves Quality and Production

Relevant for fertilizers, acid production, sulfates, sulfonates, glass, detergents, batteries, Pickling baths, and many more

Glycerol

Glycerol

Glycerol is used in various industries as a moisturizer, a thickener, as antifreeze or as a precursor for explosives. Its quality as well as its concentration in solution can be determined by using refractometry.

Concentration Measurement of Sodium Hydroxide Solutions by Refractive Index

The concentration of sodium hydroxide in water can be easily and quickly determined by refractive index measurement.

Refractive Index Measurement of Ionic Liquids

Ionic liquids are special designer solvents as they are nonvolatile and liquid at ambient temperature, leading to a wide range of applications. Their refractive index helps to control the quality and also to characterize them.

Nanoindentation approach to mechanical testing of extremely soft materials

Nanoindentation approach to mechanical testing of extremely soft materials

Nanotribological properties of Diamond like carbon thin flexible films on ACM rubber

Spherical Nanoindentation of Polyacrylamide Hydrogels using the Bioindenter (BHT)

Spherical Nanoindentation of Polyacrylamide Hydrogels using the Bioindenter (BHT)

The Ultra Nanoindentation Tester: New generation of thermal drift free indentation

The Ultra Nanoindentation Tester: New generation of thermal drift free indentation

An insight into the Structure of Copolymer Surfactants

An insight into the Structure of Copolymer Surfactants

The structure of inhomogeneous (core-shell) nanoparticles was studied with the SAXSpoint system. The internal structure of Pluronic P123 micelles in water was determined by calculating the radial electron density profile.

Safer and More Accurate Ammonia Measurement

Safer and More Accurate Ammonia Measurement

Relevant for production of fertilizers, refrigerants, nitrogenous production, cleaning agents

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