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Relative humidity effects on the surface electrical properties of resistive plate chamber melaminic laminates uncoated and coated with polymerized linseed oil film

Academic Article
Publication Date:
2007
abstract:
Relative humidity is an important quantity to control in many manufacturing environments such as semiconductor industry. Humidity and moisture can affect many electronic devices, generally rendering their operation worse. In this study we present results showing that in some specific applications, humidity can improve the performance of an electronic device. Resistive plate chambers are used as trigger detectors of the muon system in LHC (large hadron collider) experiments ATLAS (a toroidal LHC apparatus), CMS (compact muon solenoid) and ALICE (a large ion collider experiment) and as detector in cosmic rays experiment ARGO (astrophysical radiation with ground-based observatory). These detectors are made of phenolic-melaminic laminate electrodes, coated with a polymerized linseed oil film delimiting the gaseous sensitive volume. The loss of some of the detector capability can be progressive in time and due to the intrinsic limits of the detector materials. One of these effects is due to an increase of the total plate resistance, that is correlated to ion migration and relativity humidity phenomena. Our purpose is to understand the relative humidity (RH) influence on the conduction mechanisms on the electrodes surface. Results of amperometric measurements on laminate samples kept at a fixed temperature of 22 degrees C, cycling RH between 10% and 90% are here presented.
Iris type:
01.01 Articolo in rivista
Keywords:
Relative Humidity; resistive plate chamber; muon; arge hadron collider; lineseed-oil
List of contributors:
Bearzotti, Andrea
Authors of the University:
BEARZOTTI ANDREA
Handle:
https://iris.cnr.it/handle/20.500.14243/45511
Published in:
JOURNAL OF APPLIED PHYSICS
Journal
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