Browse > Article
http://dx.doi.org/10.14346/JKOSOS.2020.35.1.1

A Study on the Development of Explosion Proof ESD Detector and Intrinsic Safety Characteristics Analysis  

Byeon, Junghwan (Occupational Safety and Health Institute, Korea Occupational Safety and Health Agency)
Choi, Sang-won (Occupational Safety and Health Institute, Korea Occupational Safety and Health Agency)
Publication Information
Journal of the Korean Society of Safety / v.35, no.1, 2020 , pp. 1-11 More about this Journal
Abstract
Article 325 (Prevention of Fire Explosion due to Electrostatic) of the Rule for Occupational Safety and Health Standard specifies that in order to prevent the risk of disasters caused by static electricity, fire, explosion and static electricity in the production process, However, in order to do this, it is absolutely necessary to use a pre-detection technology and a detector for antistatic discharge prediction, which is a precautionary measure by static electricity in a fire / explosion hazard place, but in Korea, And there is no technical standard for the application of the technology of the explosion proof structure of the related equipment. Research methods include domestic and overseas electrostatic discharge detection technology and literature investigation of related equipment explosion proofing technology, domestic and foreign electrostatic discharge detection device production and use situation investigation, advanced foreign technology data analysis and benchmarking. In particular, we sought to verify the results of empirical experiments using electrostatic discharge detection technology through sample purchase and analysis of related major products, development of optimization technology through prototype production, evaluation, and supplementation, and expert knowledge through expert consultation. The results of this study were developed and fabricated two prototypes of electrostatic discharge detector based on the technology / standard related to electrostatic discharge detection technology in Korea and abroad through development of electrostatic discharge detection technology and development and production of detector. In addition, based on the development of electrostatic discharge detection technology, we developed an intrinsic safety explosion proof ib class explosion proof technology applicable to the process of using and handling flammable gas and flammable liquid vapor and combustible dust. In the case of the over voltage and minimum voltage are supplied to the explosion-proof structure ESD detector, check the state of the circuit and the transient and transient currents generated by the coil and capacitor elements during the input and standby of the signal pulse voltage. Explosion-proof equipment-Part 11: Intrinsically safe explosion proof structure The comparative evaluation with the reference curve in Annex A of "i" confirms that the characteristics of the intrinsically safe explosion protection structure are met.
Keywords
electrostatic; detector; explosion proof; ESD(Electrostatic Discharge);
Citations & Related Records
Times Cited By KSCI : 5  (Citation Analysis)
연도 인용수 순위
1 S. W. Choi , "A Study on the Development of Simulating Tool for Evaluation of Electrostatic Discharge", J. Korean Soc. Saf., Vol. 26, No. 3, pp.15-22, 2011.   DOI
2 J. H. BYEON, "A Study on the Improvement Plan of Electrostatic Safety Management Level through Injury Analysis", J. Korean Soc. Saf., Vol. 34, No. 5, pp. 37-45, 2019.
3 D. H. Kim et. al., "Electrostatic Safety", Donghwa Publication, pp. 262-264, 2001.
4 D. H Lee and J. H. BYEON, "A Study on the Measurement and Comparison(IEC 60079-32-2) of Flammable Liquid Conductivity", J. Korean Soc. Saf., Vol. 34, No. 4, pp. 22-31, 2019.
5 The Korea Occupational Safety and Health Agency (KOSHA), Industrial Accident Statistics, 2000-2017.
6 S. W. Choi and J. H. BYEON, "A Study on the Development of Safety Evaluation Standard/Guidelines for Electrostatic Discharge Devices", 2017-OSHRI-1077, 2017.
7 http://www.trekinc.com/products/901HS.asp
8 J. H. BYEON, "A Study on the Development of Electrostatic Discharge Detection and Related Equipment Explosion Proof Technology", 2018-OSHRI-898, 2018.
9 N. Jacksen, Magneto Optical Static Event Detector, IEEE, Electrical Overstress/Electrostatic Discharge Symposium, pp. 233-244, 1998.
10 Static Event Detection System, Product Sheet, 3M Company Distribution, pp. 1-7
11 AN9003 - A Users Guide to Intrinsic Safety (Cooper Crouse Hinds), MINIMUM IGNITION CURVES (TECHNOLOGY FOR SAFETY)
12 https://www.electrotechsystems.com/products/electrostaticinstumentation/electrostatic-discharge-simulators/electrostatic-discharge-simulator-esd-generator/
13 IEC 61340-4-7 2011(Electrostatics-Part 4-7: Standard Test Methods for Specific Applications-ionization)
14 KS C IEC 60079-11 [Explosive Atmospheres-Part 11: Intrinsically Safe Circuit "i"]
15 S. W. Choi, "A Study on the Development of an Electrostatic Eliminator and Evaluating Method of Protection Explosion-Construction", J. Korean Soc. Saf., Vol. 29, No. 6, pp. 49-54, 2014.   DOI
16 https://www.onsemi.com/products/standard-logic/logic-gates/mc74hc00a