Porosimetry analyzer Micromeritics AccuPore
laboratorypore sizehigh-speed

Porosimetry analyzer - Micromeritics AccuPore - Malvern Panalytical - laboratory / pore size / high-speed
Porosimetry analyzer - Micromeritics AccuPore - Malvern Panalytical - laboratory / pore size / high-speed
Porosimetry analyzer - Micromeritics AccuPore - Malvern Panalytical - laboratory / pore size / high-speed - image - 2
Porosimetry analyzer - Micromeritics AccuPore - Malvern Panalytical - laboratory / pore size / high-speed - image - 3
Porosimetry analyzer - Micromeritics AccuPore - Malvern Panalytical - laboratory / pore size / high-speed - image - 4
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Characteristics

Measured entity
porosimetry
Application domain
laboratory
Measured value
pore size
Other characteristics
high-speed

Description

The easiest, most accurate and versatile measurement of through-porosity The Micromeritics AccuPore measures through-porosity using capillary flow porometry, a fast, reliable method to determine the size and relative abundance of throughpores in sheets and membranes. Features Flexible easy-to-use sample chamber for simple sample loading, including samples from 13 mm to 47 mm diameter Intuitive Breeze interface makes it easy to measure samples and review results with or without a PC Convenient USB access for data transfer or peripheral device integration - with even more ports at the back of the instrument High-speed control, collection, and data processing provides the most accurate pressure control, highest curve resolution, and most detailed pore size distribution by processing measurements at up to 20 Hz MIC Net empowers your lab to operate as one by synchronizing results and methods across AccuPore instruments. Laboratory network connection provides simple data retrieval and LIMS integration Auto-switching gas supply reduces cost of operation by using low pressure compressed air when suitable, allowing high pressure bottled gas tanks to last longer Capillary Flow Porometry — also known as Gas Liquid Porometry — is a fast, reliable method to determine the size and relative abundance of through-pores in sheets and membranes. This pressure-based technique measures the minimum diameter of a pore, averaging over a significant test area, without the need for model-fitting or image processing. Measurements are fast, sample preparation takes less than 30 seconds, and no mercury is involved.

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