LAPSE:2023.18797
Published Article

LAPSE:2023.18797
Aging Characteristics of Contact Electrodes of Low Voltage DC Switches
March 8, 2023
Abstract
With the present state of the direct current (DC) distribution market, securing the safety of the DC distribution system is emerging as a major issue. Like AC distribution systems, DC switches and circuit breakers are one of the main means to ensure safety. However, in the DC system, since there is no current zero point in the load current, the phenomenon occurring when the circuit is cut off is different from that of the AC system, so technical research is required to cope with this. In this study, the aging characteristics of the contact electrode of a 400 V class low voltage DC (LVDC) switch is studied for the development of wall-mount switches or circuit breakers for residential houses. As an arc extinguishing method to break DC load current, a prototype experimental circuit breaker that uses a magnetic extinguishing method that is effective for blocking low voltage low power DC is invented, and an automated experiment system is established. The DC switch test repeats the operation of turning it on and off 13,000 times, and continuously evaluates the performance of the electric contacts by calculating the voltage drop between the electrode contacts and the corresponding Ohmic resistance value when conducting every 500 times. This paper tests six contact materials to compare the aging characteristics of them by evaluating contact resistance during the test period. AW18-Cu composite material showed the most stable and excellent contact performance for LVDC switches during the entire test operation period.
With the present state of the direct current (DC) distribution market, securing the safety of the DC distribution system is emerging as a major issue. Like AC distribution systems, DC switches and circuit breakers are one of the main means to ensure safety. However, in the DC system, since there is no current zero point in the load current, the phenomenon occurring when the circuit is cut off is different from that of the AC system, so technical research is required to cope with this. In this study, the aging characteristics of the contact electrode of a 400 V class low voltage DC (LVDC) switch is studied for the development of wall-mount switches or circuit breakers for residential houses. As an arc extinguishing method to break DC load current, a prototype experimental circuit breaker that uses a magnetic extinguishing method that is effective for blocking low voltage low power DC is invented, and an automated experiment system is established. The DC switch test repeats the operation of turning it on and off 13,000 times, and continuously evaluates the performance of the electric contacts by calculating the voltage drop between the electrode contacts and the corresponding Ohmic resistance value when conducting every 500 times. This paper tests six contact materials to compare the aging characteristics of them by evaluating contact resistance during the test period. AW18-Cu composite material showed the most stable and excellent contact performance for LVDC switches during the entire test operation period.
Record ID
Keywords
aging of contact surface, contact electrode, low voltage DC (LVDC) switches, magnetic extinguishing method
Subject
Suggested Citation
Kim H. Aging Characteristics of Contact Electrodes of Low Voltage DC Switches. (2023). LAPSE:2023.18797
Author Affiliations
Kim H: Division of Electric Electronic & Control Engineering, Kongju National University, 275 Budae, Cheonan 310-80, Chungnam, Korea [ORCID]
Journal Name
Energies
Volume
14
Issue
20
First Page
6838
Year
2021
Publication Date
2021-10-19
ISSN
1996-1073
Version Comments
Original Submission
Other Meta
PII: en14206838, Publication Type: Journal Article
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LAPSE:2023.18797
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https://doi.org/10.3390/en14206838
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[v1] (Original Submission)
Mar 8, 2023
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Mar 8, 2023
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