NAVY MIL-DTL-32485-2013 CIRCUIT BREAKERS VACUUM TYPE (VCB) ELECTRIC POWER MEDIUM VOLTAGE ALTERNATING CURRENT DRAW-OUT REMOVABLE CONSTRUCTION WITHOUT INTERNAL OVERCURRENT PROTECTION.pdf
《NAVY MIL-DTL-32485-2013 CIRCUIT BREAKERS VACUUM TYPE (VCB) ELECTRIC POWER MEDIUM VOLTAGE ALTERNATING CURRENT DRAW-OUT REMOVABLE CONSTRUCTION WITHOUT INTERNAL OVERCURRENT PROTECTION.pdf》由会员分享,可在线阅读,更多相关《NAVY MIL-DTL-32485-2013 CIRCUIT BREAKERS VACUUM TYPE (VCB) ELECTRIC POWER MEDIUM VOLTAGE ALTERNATING CURRENT DRAW-OUT REMOVABLE CONSTRUCTION WITHOUT INTERNAL OVERCURRENT PROTECTION.pdf(29页珍藏版)》请在麦多课文档分享上搜索。
1、Comments, suggestions, or questions on this document should be addressed to: Commander, Naval Sea Systems Command, ATTN: SEA 05S, 1333 Isaac Hull Avenue, SE, Stop 5160, Washington Navy Yard DC 20376-5160 or emailed to CommandStandardsnavy.mil, with the subject line “Document Comment”. Since contact
2、information can change, you may want to verify the currency of this address information using the ASSIST Online database at https:/assist.dla.mil. AMSC N/A FSC 5925 INCH-POUND MIL-DTL-32485 8 November 2013 DETAIL SPECIFICATION CIRCUIT BREAKERS, VACUUM TYPE (VCB), ELECTRIC POWER, MEDIUM VOLTAGE, ALTE
3、RNATING CURRENT, DRAW-OUT REMOVABLE CONSTRUCTION, WITHOUT INTERNAL OVERCURRENT PROTECTION Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-MIL-DTL-32485 ii CONTENTS PARAGRAPH PAGE 1. SCOPE 1 1.1 Scope 1 2. APPLICABLE DOCUMENTS 1 2.1 General . 1 2.2 Go
4、vernment documents. 1 2.2.1 Specifications, standards, and handbooks 1 2.3 Non-Government publications . 2 2.4 Order of precedence . 2 3. REQUIREMENTS . 2 3.1 Qualification 2 3.2 Safety . 3 3.3 Construction and performance requirements. 3 3.3.1 Materials and coatings 3 3.3.1.1 Recycled, recovered, o
5、r environmentally preferable materials 3 3.3.1.2 Prohibited materials 3 3.3.1.2.1 Polyvinyl chloride (PVC) . 3 3.3.1.3 Non-preferred materials 3 3.3.1.4 Painting. 3 3.3.1.4.1 Restrictions on painting corrosion-resistant material 3 3.3.1.4.2 Powder coating . 3 3.3.2 Drawout-mounted construction 3 3.3
6、.3 Mounting and dimensions 3 3.3.4 Creepage and clearance distances. . 3 3.3.4.1 Creepage and clearance distances for non-primary conductors 3 3.3.4.2 Creepage and clearance distances for primary conductors . 3 3.3.5 Insulation 3 3.3.6 Current-carrying connections. 4 3.3.6.1 Silver plating 4 3.3.6.2
7、 Conductivity of current path . 4 3.3.7 Wiring 4 3.3.8 Electronic devices (see 6.4.1). 4 3.3.8.1 Electrostatic discharge susceptible items . 4 3.3.8.2 Conformal coating 4 3.3.8.3 Aluminum electrolytic capacitors . 4 3.3.9 Environmental performance requirements. 4 3.3.9.1 Temperature 4 3.3.9.1.1 Ambi
8、ent temperature 4 3.3.9.1.2 Temperature rise . 4 3.3.9.2 Shock 4 3.3.9.3 Vibration . 4 3.3.9.4 Electromagnetic interference (EMI) . 4 3.3.9.4.1 EMI test procedures and results 4 3.3.9.5 X-radiation . 4 3.3.10 Electrical performance requirements. . 5 3.3.10.1 Bi-directional operation (reversing line
9、and load) 5 3.3.10.2 Nominal frequency and frequency range 5 3.3.10.3 Rated maximum voltage . 5 3.3.10.4 Nominal operating voltage . 5 3.3.10.5 Power frequency withstand voltage 5 3.3.10.5.1 Power frequency withstand voltage application points. 5 3.3.10.5.1.1 Application points between circuit break
10、er poles, primary current carrying circuits and ground 5 Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-MIL-DTL-32485 iii 3.3.10.5.1.2 Application points on control wiring (excluding charging motor) and ground . 5 3.3.10.5.1.3 Application points on
11、charging motor control wiring, and ground . 6 3.3.10.6 Lightning impulse withstand voltage (BIL) . 6 3.3.10.7 Voltage spike 6 3.3.10.8 Nominal control voltage . 6 3.3.10.9 Rated continuous current 6 3.3.10.10 Rated load current switching capability . 6 3.3.10.11 Rated maximum short-circuit (interrup
12、tion) current rating and conditions 6 3.3.10.12 Short-time current duty cycle (withstand) rating and conditions 6 3.3.10.13 Endurance/manual cycling . 6 3.3.10.14 Functionality at less than rated values 6 3.3.11 Attachments . 7 3.3.11.1 Temperature rise . 7 3.3.11.2 Endurance . 7 3.3.11.3 Electric c
13、losing devices 7 3.3.11.4 Shunt trip device . 7 3.3.11.4.1 Opening response time . 7 3.3.11.5 Auxiliary switches 8 3.3.11.6 Secondary disconnecting devices . 8 3.3.11.7 Operations counter . 8 3.3.11.8 Mechanical position indicators . 8 3.3.12 Operating mechanisms. 8 3.3.12.1 Simultaneous operation 8
14、 3.3.12.2 Closing. 8 3.3.12.2.1 Manual closing . 8 3.3.12.2.2 Electric closing . 8 3.3.12.2.3 Manual operating close control . 8 3.3.13 Withdrawal interlock mechanism . 9 3.3.14 Racking mechanism positions 9 3.3.14.1 Connect position . 9 3.3.14.2 Test position . 9 3.3.14.3 Disconnect position 9 3.3.
15、14.4 Withdrawn position 9 3.3.15 Trip-free . 9 3.3.16 Anti-pump 9 3.3.17 Contact integrity . 9 3.3.18 Grounding contact 9 3.3.19 Designation and marking . 9 3.3.19.1 Markings for attachments and small components. 9 3.3.19.2 Identification plates 9 3.3.19.2.1 Additional attachment identification plat
16、e 9 3.3.19.3 Warning plate. 10 3.3.20 Lifting. 10 4. VERIFICATION 10 4.1 Classification of inspections 10 4.2 Qualification inspection . 11 4.2.1 Test enclosures . 11 4.2.2 Periodic retention of qualification 11 4.3 Conformance inspection 13 4.4 Comparison inspection. 13 4.4.1 Comparison test sequen
17、ces. 13 4.4.1.1 Comparison test sequence 1 . 13 4.4.1.2 Comparison test sequence 2 . 14 4.4.1.3 Comparison test sequence 3 . 14 4.4.2 Rotation of attachments 14 4.5 Tests . 15 Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-MIL-DTL-32485 iv 4.5.1 Gen
18、eral examination 15 4.5.2 Creepage and clearance distances. . 16 4.5.2.1 Creepage and clearance distances for non-primary conductors 16 4.5.2.2 Creepage and clearance distances for primary conductors . 16 4.5.3 Attachment operating characteristics . 16 4.5.3.1 Electric closing device operation. . 16
19、 4.5.3.1.1 Voltage range/closing time . 16 4.5.3.1.2 Charging motor stall test . 16 4.5.3.2 Shunt trip device voltage range/tripping current 16 4.5.3.3 Operations counter, mechanical position indicator, and auxiliary switch operation 16 4.5.3.4 Auxiliary switch and associated secondary disconnecting
20、 device rating verification 16 4.5.4 Trip-free operation and anti-pump operation. 17 4.5.4.1 Mechanical . 17 4.5.4.2 Electrical . 17 4.5.5 BIL . 17 4.5.6 Power frequency withstand voltage. 17 4.5.6.1 Test equipment . 17 4.5.6.2 Voltage magnitude. 17 4.5.6.2.1 Full voltage . 17 4.5.6.2.2 Reduced volt
21、age . 17 4.5.6.3 Voltage application/duration and pass/fail criteria . 17 4.5.6.3.1 Circuit breaker and attachments . 17 4.5.6.3.1.1 Circuit breaker poles and ground used as test points 17 4.5.6.3.1.2 Control wiring and ground used as test points. . 18 4.5.6.3.1.2.1 Charging motor . 18 4.5.6.3.1.2.2
22、 All other secondary disconnect control wiring 18 4.5.7 X-radiation . 18 4.5.8 Endurance. 19 4.5.8.1 Circuit breakers 19 4.5.8.1.1 Mechanical endurance. . 19 4.5.8.1.1.1 Test setup and method of cycling 19 4.5.8.1.1.2 Number and rate of operations 19 4.5.8.1.2 Electrical endurance 19 4.5.8.1.2.1 Tes
23、t setup and method of cycling 19 4.5.8.1.2.2 Number and rate of operations 19 4.5.8.2 Attachments 19 4.5.8.3 Maintenance . 19 4.5.9 Contact integrity . 19 4.5.10 Conductivity of current path 19 4.5.11 Temperature rise. 19 4.5.11.1 Circuit breaker temperature rise at rated current (pre-interruption a
24、nd post-interruption). 19 4.5.11.1.1 Test circuit 19 4.5.11.1.2 Sensor locations. . 20 4.5.11.1.2.1 Ambient chamber 20 4.5.11.1.2.2 Ambient compartment 20 4.5.11.1.2.3 Circuit breaker 20 4.5.11.1.3 Temperature stabilization and temperature rise determination . 20 4.5.11.1.4 Pass/fail criteria 20 4.5
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