DocumentCode
1955565
Title
Concrete assurance system technology (CAST) metrology system for an industrial environ
Author
Hollandsworth, Paul
fYear
2001
fDate
2001
Firstpage
62
Lastpage
67
Abstract
This paper presents both an adoptive and adaptive ultrasonic transducer sensor system operating in a hostile industrial environment. The transducer experiences a environment that is made up of: electromagnetic interferences, quick temperature fluctuations, heavy relative humidity changes, high decibel levels, staid cultural changes, manual operating procedures, dirty and dusty air environment, vibration, pallet kickback and pallet material build-up. This system has been designed to be self-diagnostic every three seconds and to create a new zero-base measurement for each pallet accounting for the material build-up. This system provides between 200 to 300 measurements every six seconds. The transducer system furnishes the block manufacturer criteria for cost savings and better quality control leading to a better final product to the customer
Keywords
adaptive systems; concrete; environmental factors; quality control; ultrasonic materials testing; ultrasonic transducers; CAST metrology system; EMI; adaptive US transducer sensor system; block manufacturer criteria; concrete assurance system technology; conveyor system mounted sensors; dusty air; electromagnetic interference; environmental factors; heavy relative humidity changes; high decibel levels; hostile industrial environment; pallet kickback; pallet material build-up; quality control; quick temperature fluctuations; self-diagnostic system; ultrasonic transducer sensor system; vibration; zero-base measurement; Concrete; Cultural differences; Electromagnetic interference; Electromagnetic measurements; Fluctuations; Humidity; Metrology; Sensor systems; Temperature sensors; Ultrasonic transducers;
fLanguage
English
Publisher
ieee
Conference_Titel
Sensors for Industry, 2001. Proceedings of the First ISA/IEEE Conference
Conference_Location
Rosemont, IL
Print_ISBN
0-7803-6659-X
Type
conf
DOI
10.1109/SFICON.2001.968500
Filename
968500
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