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5.7 Cable Bill of Materials

2022-10-04View Original

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│ ├─5.7 Cable General Information │ 10KV Cross-linked Cable Joint Manufacturing Procedure Guide.doc │ 10KV Cross-linked Cable Heat Shrinkage Procedures.doc │ 10KV Oil-Paper Insulated Cable.doc │ 10KV Oil-Paper Insulated Cable Joint Manufacturing.doc │ 10V Cable Project Electrical Construction Plan.doc │ FZ3Z321-2006-Ⅰ220KV High-Voltage Cable Laying Procedure Guide.doc │ Rules for Setting Up Outdoor Cable Trenches and Manholes.docx │ Key Points and Installation Methods for Cable Trays in Low-Voltage Construction.doc │ What Size of Wires and Cables Are Needed for Construction? A guide on how to calculate it.doc │ The most comprehensive information on wires and cables ever compiled │ Construction plan for outdoor power cables in a slum renovation project.doc │ Introduction to bridge-type cable trays │ Power cable inventory sheet.xls │ Installation techniques for electrical power systems 001_Cable laying techniques.doc │ Installation techniques for electrical power systems 002_Manufacturing processes for 10(6) kV outdoor terminal fittings for oil-paper insulated cables.doc │ Installation techniques for electrical power systems 003_Manufacturing processes for 10(6) kV indoor terminal fittings for oil-paper insulated cables.doc │ Installation techniques for electrical power systems 004_Manufacturing processes for joints of 10(6) kV oil-paper insulated cables.doc │ Installation techniques for electrical power systems 005_Manufacturing processes for heat-shrinkable terminal fittings for cross-linked polyethylene insulated cables.doc │ Installation techniques for electrical power systems 006_Manufacturing processes for heat-shrinkable joints for cross-linked polyethylene insulated cables.doc │ Installation techniques for electrical power systems 007_Manufacturing and installation techniques for low-voltage cable terminals.doc │ Installation techniques for electrical power systems 010Installation techniques for sliding connectors and flexible cables.doc │ Standards for electrical installation techniques 1.5_Cable threading through pipes.doc │ Standards for electrical installation techniques 1.6_Manufacturing of cable terminals.doc │ Standards for electrical installation techniques 3.3_Cable laying and installation in cable trenches and shafts.doc │ Standards for electrical installation techniques 4.1_Cable laying in cable trays.doc │ Comprehensive set of electrical construction standards Guidelines for selecting high-voltage cables.doc │ What are the national standard diameters for wires and cables? How to determine whether it meets the **standard? .doc │ Complete List of Cable Models │ Cable Phase Comparison: Using phase comparators, which can be wireless or wired. 1.doc │ Manufacturing of High-Voltage Cable Joints.doc │ ├─5.7 Cables Books │ Construction Drawings for Power Cable Lines of 10 kV and Below │ Construction Procedure Manuals for Cross-Linked Cables of 110 kV and Above │ Catalog of Chinese Mechanical and Electrical Products, Volume 16: Wires and Cables │ Cross-Linked Polyethylene Power Cable Lines │ Common Guiding Technical Documents and Standards for Power Supply Operations (Volume 5): Power Cables and Accessories │ Research on Remote Temperature Monitoring Systems for Power Cable Joints Based on Zigbee │ Protection Against Interference – K Series Recommendations; Protection for Cable Sheaths and Conduits – L Series Recommendations; Documents from the Seventh Plenary Session, 1984 Edition │ Cabling Techniques │ Stranding Techniques │ Series on Key Technologies for Smart Grids: High-Voltage DC Extruded Insulated Power Cable Systems and Their Engineering Applications, by Giovanni Mazanti (Italy) and Massimo Mariotti (Italy), 2019 Edition │ Catalog of Mechanical and Electrical Products, Volume 6: Wires and Cables (Part 1), published by Shenyang Municipal Bureau of Machinery and Electrical Industry, 1980 Edition │ Catalog of Mechanical and Electrical Products, Volume 7: Wires and Cables (Part 2), published by Shenyang Municipal Bureau of Machinery and Electrical Industry, 1980 Edition │ Underwater Power Cables: Design, Installation, Repair, and Environmental Impact │ Series on Undersea Cable Engineering: Techniques for Undersea Cable Route Surveying, in high-definition editable text format │ Practical Handbook on Production Processes and Quality Inspection Standards for Power Cables (Wires) and Accessories │ Power Cables and Wires │ Manufacturing of Power Cable Joints and Fault Location, 2nd Edition, 2012 │ Manufacturing of Power Cable Joints and Fault Location │ Practical Techniques for Power Cables │ New Practical Techniques for Power Cables: Construction, Installation, Operation, Maintenance, and Fault Diagnosis, 2014 │ Power Cable Workers │ Power Cable Projects │ Atlas of Power Cable Projects: Design, Processing, Installation │ Practical Handbook on Design, Installation, Operation, and Maintenance of Power Cable Projects │ Application Techniques for Power Cables, 2011 Edition │ Application Techniques for Power Cables │ Questions and Answers on Application Techniques for Power Cables │ Fault Detection Techniques for Power Cables │ Fault Testing Techniques and Waveform Analysis of Test Cases │ Fault Testing Methods and Case Studies for Power Cables │ Construction of Power Cables │ Construction Manual for Power Cables, by Li Zongyuan │ Construction Manual for Power Cables │ Maintenance and Installation of Power Cables │ Installation, Operation, and Fault Location of Power Cables │ Manual for Power Cable Lines: Design, Construction, Installation, Operation, and Maintenance │ Manual for Design and Construction of Power Cable Lines │ Manual for Design and Procurement of Power Cables │ Principles of Power Cable Design │ Testing and Inspection Techniques for Power Cables │ Selection and Laying of Power Cables │ Guidelines for Fire Prevention in Power System Cables │ Practical Handbook on Wires, Cables, and Their Accessories │ Practical Techniques Handbook for Wires and Cables │ Quick Reference Handbook of Common Data for Wires and Cables, 464 │ Wire and Cable Manual 1, 3rd Edition, by Mao Qingchuan, 2017 Edition │ Wire and Cable Manual 1, 3rd Edition, in high-definition editable text format │ Wire and Cable Manual 2, 3rd Edition, by Wu Changshun, 2017 Edition │ Wire and Cable Manual 2, 3rd Edition, in high-definition editable text format │ Wire and Cable Manual (2nd Edition), Volume 1 │ Wire and Cable Manual (2nd Edition), Volume 2 │ Wire and Cable Manual (2nd Edition), Volume 3 │ Series on Wire and Cable Technologies: Structural Design of Communication Cables, in high-definition editable text format │ Materials for Wires and Cables: Structure, Properties, and Applications, in high-definition editable text format │ Handbook on Quality Inspection and Application of Standards in the Production and Use of Wires and Cables │ Handbook on New Production Processes, Technologies, and Latest Domestic and International Standards for Wires and Cables │ Current-Carrying Capacity of Wires and Cables │ Practical Handbook on Cable Techniques (Installation, Maintenance, Repair) │ Cable Inspection Techniques │ Installation, Laying, and Operation Maintenance of Cables, 2011 Edition │ Maintenance and Fault Handling of Cable Lines, by Pan Shaoxun │ Chapter 9: Current-Carrying Capacity of Wires and Cables and Common Data for Its Calculation │ Chapter 8: Common Data and Information on Wires, Cables, and Cable Accessories │ Chapter 6: Installation, Operation, and Maintenance Techniques for Modern Coal Mine Power Cables and Overhead Lines │ Stranding Techniques │ Practical Handbook on New Technologies and Acceptance Criteria for the Design and Construction of Communication Optical Cable Lines │ Manual for Design and Procurement of Aluminum Alloy Cables │ Series of Manuals on Design and Procurement of Mechanical and Electrical Products │ Design and Calculation of High-Voltage Cross-Linked Polyethylene Cable Lines, 2013 Edition │ Technical Manual for High-Voltage Cable Project Construction, edited by Wu Jun, 2018 Edition │ ├─5.7 Cables Videos │ What current can wires with diameters of 1.52, 2.52, 42, and 62 carry? What power rating? Learn Something New.mp4 │ What power and current capacities do 1.5, 2.5, 4, 6, and 10 square millimeter wires have respectively? Essentials for Electricians.mp4 │ How much current is required for 1KW power? Such a simple question has stumped many novice electricians.mp4 │ 23be49351930624f2ff8a049e95554a1.mp4 │ What size cable should be used for a 3-phase motor? Save this video: Electric motors and cables – no need to ask anyone for help.mp4 │ How much current is required for a 1-kilowatt load? Such a simple concept, yet it poses a challenge for so many electricians.mp4 │ What is square copper wire? How to calculate the load capacity of square copper wire.mp4 │ What is the power rating of a standard household air conditioner? Which thickness of copper wire should be chosen? .mp4 │ Calculation Methods for Electrical Load in Industrial and Civil Projects – Standard Definition (270P).MP4 │ Video Tutorial on Building Electricity: Basics of Calculating Electrical Load in Residential Buildings – Standard Definition (270P).MP4 │ Electrical Knowledge: Converting 380V Motors to 220V – Working Principle and Illustrated Explanation.mp4 │ Electrical Knowledge: What Size Wire Should Be Used for 4KW Electrical Appliances? What size circuit breaker? What size is the circuit breaker? .mp4 │ Electrician knowledge: Three-phase four-wire electric meter wiring method, physical explanation.mp4 │ Electrician knowledge: Why can a master electrician know the working current of a load just by looking at the power.mp4 │ Tips for quickly estimating the current carrying capacity of a wire. Remember these 4 sentences and you can know the current carrying capacity by just looking at the wire.mp4 │ An old electrician can tell how much current a wire can withstand when he sees a wire. It turns out he has learned this tip from an electrician.mp4 │ ├─5.7 Cable Paper│ │ Analysis of the Causes of Insulation Damage of Cold Shrinkable Cable Heads of 35 kV Single-Core Cables│ │ Research on an underground power cable path detection system │ │ A new type of semi-conductive shielding water-blocking tape for power cables │ │ A new method for locating the insulation breakdown point of power cables │ │ Analysis of a 10kV cross-linked cable terminal explosion accident │ │ Analysis of a wind farm off-grid accident caused by a 35kV cable head failure │ │ Investigation and analysis of a PVC insulated sheathed power cable line failure│ │ Investigation and enlightenment of a power cable burnout accident│ │ Analysis of the cause of a cable intermediate head explosion accident│ │ Analysis of a main transformer near-zone failure caused by cable head breakdown│ │ Analysis and discussion of an isolated grid operation accident caused by cable head failure│ │ One of the design and manufacturing of three-core photoelectric composite submarine power cables - structural design│ │ Design and Manufacturing of Three-Core Optoelectronic Composite Submarine Power Cable Part 2_Process design and equipment │ │ Two-end limit method to calculate the outer diameter of low-voltage power cables │ │ Overview of domestic and foreign standards for medium- and low-voltage cross-linked polyethylene insulated power cables │ │ Analysis of the investment value of different cross-linking methods for medium-voltage cross-linked polyethylene power cables │ │ Qualification test of medium-voltage cross-linked polyethylene insulated power cables │ │ Preliminary study on the design of power cable tunnel lines in central urban areas │ │ Analysis of resistivity characteristics of semi-conductive shielding of medium and high voltage power cables │ │ Research on ethylene propylene rubber insulation materials for medium and high voltage power cables │ │ Analysis of structural characteristics of metal shielding of medium and high voltage power cables │ │ Development of medium and high voltage fire-resistant power cables │ │ One-step silane cross-linking process for ethylene propylene rubber power cable insulation │ │ Discussion on the structure of five-core plastic insulated power cables │ │ Structural design of five-core plastic insulated power cables │ │ New method for the design of tile-shaped structure of five-core power cables │ │ Structural design of AC 500kV submarine power cables │ │ Application of AC withstand voltage test in high-voltage XLPE insulated power cables │ │ Location of fault points of cross-linked power cables │ │ Analysis of conductor shielding defects of cross-linked power cables │ │ Mechanism, detection and prevention of water tree generation in cross-linked polyethylene power cables│ │ Insulation online monitoring technology of cross-linked polyethylene power cables│ │ Location of defective points at the end of cross-linked polyethylene power cables│ │ Analysis method of electrical tree in cross-linked polyethylene power cable insulation│ │ Improvement of cross-linked polyethylene insulated power cable head technology│ │ Quality control and improvement of cross-linked polyethylene insulated power cables│ │ Ultra-low frequency withstand voltage test method for cross-linked polyethylene insulated power cables │ │ Structural design and manufacturing process of cross-linked polyethylene insulated water-blocking power cables │ │ Vulcanization process of cross-linked polyolefin insulated rubber sheathed flexible cables │ │ Calculation of the maximum laying length and section selection of instrument signal cables │ │ Management practice of power cable trenches in enterprise power supply and distribution systems │ │ Calculation and analysis of several electrical parameters of low-voltage power cables │ │ Discussion on the minimum cross-section of cables calibrated according to voltage loss in low-voltage distribution systems │ │ Discussion on the TN grounding type of low-voltage distribution network and the selection of PE wires for five-core power cables │ │ Research on the flow capacity of low-voltage flame-retardant power cables │ │ Development of low-smoke halogen-free flame-retardant and fire-resistant high-voltage power cables │ │ Design, manufacture and use of optical fiber composite low-voltage power cables │ │ Optical fiber temperature-sensitive 220 kV XLPE insulated power cables and applications │ │ Opinions on the development of 1kV five-core power cables │ │ Method of detecting power cable faults using high-voltage bridge method │ │ Analysis of structural defects of low-voltage five-core power cables │ │ Analysis of type and price differences of instrument cables in chemical industry construction │ │ Analysis of transmission distance of chemical equipment instrument signal cables │ │ Single-circuit high-voltage single-core cable metal sheath induced voltage and restriction measures │ │ Design, manufacture and use of single-core 1000mm^2 XLPE power cable │ │ Discussion on the armored structure of single-core steel wire armored power cables │ │ Research on the induced current of the metal sheath of single-core high-voltage power cables - calculation and pre-control of the induced current │ │ Research on the induced current of the metal sheath of single-core high-voltage power cables - preparation and application of calculation procedures │ │ Experimental research on the current situation of Nanjing City Grid 10kV XLPE insulated power cable │ │ Development of concentric conductor low-voltage power cables │ │ Assessment and analysis of breakdown failure of domestic cross-linked polyethylene power cables │ │ Installation of prefabricated branch power cables in high-rise buildings │ │ Application and problems of power cables in urban and rural power grid transformation │ │ Optimization simulation of power cable production lines based on eM-Plant │ │ FPGA-based partial discharge online monitoring system for power cable joints │ │ Online fault location method for small current grounded power cables based on HHT │ │ Online fault location method for small current grounded power cables based on HHT│ │ Power cable joint temperature monitoring system based on ISM and GSM link│ │ Power cable joint temperature monitoring system based on ISM and GSM link│ │ Development of power cable ampacity calculation software system based on VC++│ │ Research on remote temperature monitoring system of power cable joints based on Zigbee│ │ Research on power cable fault location based on the principle of acousto-magnetic synchronization│ │ Research on power cable fault location based on the principle of acousto-magnetic synchronization│ │ Power cable fault detection technology based on traveling waves│ │ Analysis of copper wire sparse winding shielding of plastic insulated power cables│ │ Discussion on the cracking problem of polyethylene outer sheath of large outer diameter power cables│ │ Characteristics of the manufacturing process of large-section cross-linked polyethylene insulated power cables│ │ Selection of large cross-section ultra-high voltage cross-linked polyethylene power cable insulation extrusion mold │ │ Large length 35kV_Manufacturing of XLPE insulated submarine power cables │ │ Manufacturing of large-length submarine fiber optic composite power cables │ │ How to supervise power cable line projects │ │ Application of nylon 12 in termite-proof power cables │ │ Application of partial discharge fingerprint library in XLPE power cable testing │ │ Power cables with ground wires │ │ Structural design of power cables with ground wires │ │ Design and installation of open-body dredger power cables │ │ Quoting PDS data to realize batch annotation of instrument cable plane laying diagrams │ │ Main factors affecting partial discharge of large-section XLPE insulated power cables and preventive measures │ │ Prospects for the development of DC submarine power cables in my country │ │ The introduction of power cable technology in my country and the expectations for technology development in the 21st century│ │ The application and development of high-voltage and ultra-high-voltage cross-linked polyethylene insulated power cables in my country │ │ Solving the bending problem of sector-shaped aluminum core plastic insulated power cables │ │ Discussion on suppressing background interference in power cable partial discharge test systems │ │ Research on water tree-resistant medium-voltage power cables and materials │ │ Research on water tree-resistant cross-linked polyethylene insulated power cables │ │ Shielding of control system cables │ │ Measures to improve the quality of PVC insulated power cables │ │ Development of new five-core power cables │ │ Comprehensive analysis and evaluation of new agricultural directly buried power cables │ │ Development of new agricultural moisture-proof directly buried power cables │ │ Development of new photovoltaic composite power cables for coastal tidal flat wind farms │ │ Development of new DC low-inductance square power cables │ │ Manufacturing of halogen-free low-smoke oxygen barrier flame-retardant power cables │ │ Application of silicone rubber in power cable accessories │ │ Preliminary analysis of breakdown accident of 35kV cable head in a wind farm │ │ Common installation methods and comparison of European cable heads │ │ Design of floating power cables for horizontal transmission │ │ Discussion on leakage current detection methods of oil-impregnated paper insulated power cables │ │ Production of oil-impregnated paper insulated cable terminals │ │ Brief analysis of portable power cable head stripping and cutting device solutions │ │ Brief analysis of issues that should be paid attention to in preventive tests of power cables used in coal mines │ │ A brief analysis of the selection of aluminum alloy cables │ │ A brief discussion of the installation of 10kV high-voltage cables and the cable head production process │ │ A brief discussion of the causes of cross-linked cable head failures │ │ A brief discussion of the handover and preventive testing of cross-linked polyethylene power cables │ │ Analysis of submarine cross-linked polyethylene power cable laying failures │ │ Introduction to the mechanical performance test methods of submarine cross-linked polyethylene power cables │ │ Submarine optical fiber composite power cable trial production and mechanical performance test │ │ Submarine power cable radial water retaining layer │ │ Research and prospects of soft joints for submarine power cable repairs │ │ Mechanical strength analysis and design of submarine power cable armored structure │ │ Submersible pump circular power cable structural design and key processes │ │ Submersible pump power cable manufacturing and its main characteristics │ │ Introduction to the production process of heat-shrinkable cable terminals│ │ Use AutoCAD software to design power cable tile-shaped conductor molds │ │ Research on broadband electromagnetic coupling method for partial discharge detection of XLPE power cables │ │ Preliminary study on optimizing power cable cross-section selection from an economic point of view │ │ Calculation and discussion of the impact of electric traction section contact network on signal cables │ │ Discussion on the corrosion resistance of copper and aluminum materials in power cables │ │ Design of power cable layered compression sector conductor compression wheel │ │ Research on operating temperature monitoring technology of power cables and their joints │ │ Discussion of power cable nylon 12 sheath extrusion process │ │ Discussion of power cable partial discharge detection technology │ │ Selection and application of power cable power frequency voltage test equipment │ │ Development of power cable fault location instrument │ │ Analysis of power cable fault detection technology │ │ Research on power cable fault testing technology │ │ Diagnosis and detection analysis of power cable fault distance │ │ Research and improvement of power cable laying methods │ │ Performance analysis and selection of lubricants for power cable laying │ │ Real-time online monitoring of power cable temperature │ │ Development of peelable semiconductor electrical insulation shielding materials for power cables │ │ Finite element analysis of electric field of capacitive cone terminal of power cable│ │ Field test and diagnosis of power cable│ │ Water blocking technology of power cable│ │ Strength-deformation analysis of corrugated aluminum sheath of power cable│ │ Characteristics and location method of linear high resistance breakdown fault of power cable│ │ On-site measurement and analysis of power cable line parameters│ │ Questions about the selection method of economical current cross-section of power cables │ │ Research on the influence of power cable insulation extrusion expansion rate on its performance │ │ Research on low-frequency AC voltage superposition method in power cable insulation monitoring │ │ Research and development of power cable ampacity calculation │ │ Windowing of power cable ampacity calculation │ │ Cable distributed capacitance and relay malfunction │ │ Temperature field calculation model of directly buried power cables│ │ Development of six-core composite submarine power cables for oil platforms│ │ Development of silicone rubber insulated silicone rubber sheathed inverter power cables│ │ Economical and convenient power cable identification method│ │ Development of cold-resistant cross-linked polyethylene insulated power cables│ │ Quality control of key processes of fire-resistant power cables│ │ The structure, technology and development trends of fire-resistant power cables │ │ Discussion on the structural design and production process of fire-resistant power cables │ │ Laigang’s measures to reduce power cable failure and outage time │ │ Analysis and calculation method of the impact of harmonics on power cable losses │ │ Characteristics of the manufacturing process of XLPE insulated power cables for rail transit │ │ Development and production of AC and DC power cables for rail transit │ │ Process control determines the product quality of high-voltage XLPE insulated power cables │ │ Selection of economical current cross-section of power cables for distribution lines │ │ Cause analysis and solutions for railway high-voltage power cable intermediate head failure │ │ Application of aluminum alloy power cables in grid-connected photovoltaic power stations │ │ Structural design of power cable tunnel in Zhenjiang Nanxu substation │ │ The main structure and key processes of water-blocking power cables │ │ Research on flame-retardant sticky impregnated paper insulated power cables │ │ Discussion and practice of introduction and protection of explosion-proof instrument cables │ │ Infrared measurement and analysis of hot spot temperature rise of cable heads under high-frequency harmonics - Xuetutu www.xuetutu.com │ │ Weidmüller creates new crimping tools and cable ends │ │ │ ├─Cable paper series with 7 episodes in total │ │ QQ pictures 20220907160140.png │ │ Number of files.txt │ │ The first volume of cable papers│ │ │ └─The first volume of cable papers│ Development of 0.6∕1kV fire-resistant silicone rubber insulated fire-resistant power cable│ Development of 0.6∕1kV low-smoke halogen-free fire-resistant power cable│ Discussion on the outermost twist direction of the sector conductor of 0.6∕1kV silane cross-linked polyethylene insulated power cable │ 10kV cold shrink cable head process manufacturing faults and countermeasures │ Introduction to the design of automatic selection program for power cables of 1kV and below │ Development of ethylene propylene rubber insulation material for 3300V optical fiber power composite flat stacker-reclaimer cable │ Development of 3300V optical power composite flat rubber sheathed flexible cable │ Failure analysis and preventive measures for heat shrinkable terminal heads of 35kV cross-linked polyethylene power cables │ 35kV capacitor group outdoor cable head insulation breakdown and voltage loss failure │ 35kV cable head failure analysis and treatment │ Causes and preventive measures for 35kV cable head fires │ Analysis of 35kV cable terminal heads and shielding discharge phenomena │ Characteristics of high-voltage power cables produced by CCV cross-linking process and control of insulation eccentricity │ Analysis of safety mechanism of 110kV cable terminal in GIS equipment│Application of INtools software in generating cable block diagram│Influence of NaCl solution on XLPE power cable power frequency breakdown characteristics and water tree│Application of SZ strand in power cable manufacturing│Fuzzy gray comprehensive evaluation method of XLPE power cable health│Current status and discussion of XLPE power cable partial discharge online testing│Design of XLPE power cable insulation online monitoring system│ Software design of XLPE power cable insulation online monitoring system│ Research on comprehensive insulation diagnosis strategy of XLPE power cable│ Treatment of internal residual voltage during storage and transportation of XLPE insulated power cable│ Test of semi-conductive shielding resistivity of Development of superconducting power cables │ Structural design of corrugated split conductors of ultra-high voltage power cables │ Research on detection of partial discharge in high-voltage power cables and joints by ultra-high frequency technology │ └─5.7 Cable courseware Cable fault diagnosis technology PPT 76 Cable insulation diagnosis technology PPT 40 High-voltage cable head production technology 57.ppt
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