IEEE 1637-2010 en Guide to Select Terminations for Shielded Alternating-Current Power Cable Rated 5 kV C 46 kV《额定电压5 kV - 46 kV交流电电力电缆用端子选择指南》.pdf
《IEEE 1637-2010 en Guide to Select Terminations for Shielded Alternating-Current Power Cable Rated 5 kV C 46 kV《额定电压5 kV - 46 kV交流电电力电缆用端子选择指南》.pdf》由会员分享,可在线阅读,更多相关《IEEE 1637-2010 en Guide to Select Terminations for Shielded Alternating-Current Power Cable Rated 5 kV C 46 kV《额定电压5 kV - 46 kV交流电电力电缆用端子选择指南》.pdf(26页珍藏版)》请在麦多课文档分享上搜索。
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2、g3g23g25g3g78g57g3g44g40g40g40g3g51g82g90g72g85g3g9g3g40g81g72g85g74g92g3g54g82g70g76g72g87g92g3g54g83g82g81g86g82g85g72g71g3g69g92g3g87g75g72g44g81g86g88g79g68g87g72g71g3g38g82g81g71g88g70g87g82g85g86g3g38g82g80g80g76g87g87g72g72g44g40g40g40g22g3g51g68g85g78g3g36g89g72g81g88g72g3g49g72g90g3g60g82g8
3、5g78g15g3g49g60g3g20g19g19g20g25g16g24g28g28g26g15g3g56g54g36g3g35g3Mayg3g21g19g20g19g20g25g22g26g55g48IEEE Std 1637-2010 IEEE Guide to Select Terminations for Shielded Alternating-Current Power Cable Rated 5 kV 46 kV Sponsor Insulated Conductors Committee of the IEEE Power +1 978 750 8400. Permissi
4、on to photocopy portions of any individual standard for educational classroom use can also be obtained through the Copyright Clearance Center. Introduction This introduction is not part of IEEE Std 1637-2010, IEEE Guide to Select Terminations for Shielded Alternating-Current Power Cable Rated 5 kV 4
5、6 kV. This guide was developed within the IEEE Insulated Conductors Committee of the Power the closer the lines, the higher the stress. The coaxial configuration of a shielded power cable keeps the electric stresses symmetrical and under control as long as the cable components are left intact. To fa
6、cilitate electric stress control at the end of a shielded-power cable, the insulation shield is removed axially for a distance sufficient to prevent interaction between the conductor and the insulation shield. When the insulation shield is ended, this leads to a concentration of electric stress at t
7、he shield terminus (see Figure 2). Shielded-power cable terminations are designed to relieve this concentration of electric stress at the insulation shield terminus. Figure 3 shows how this electric stress is overcome with a geometric type of electric stress control and Figure 4 shows how this elect
8、ric stress is overcome with non-linear types of electric stress control. Figure 1 Dielectric field sat shield terminus without gradient material 3 Copyright 2010 IEEE. All rights reserved. IEEE Std 1637-2010 IEEE Guide to Select Terminations for Shielded Alternating-Current Power Cable Rated 5 kV 46
9、 kV Figure 2 Dielectric field at shield terminus without gradient material Figure 3 Dielectric field at shield terminus with geometric electric stress control Figure 4 Dielectric field at shield terminus with gradient material electric stress control 4 Copyright 2010 IEEE. All rights reserved. IEEE
10、Std 1637-2010 IEEE Guide to Select Terminations for Shielded Alternating-Current Power Cable Rated 5 kV 46 kV 4.2 Parts of termination A shielded power cable termination may be comprised of several elements. All terminations must have an electric stress control component. In addition, terminations m
11、ay include the cable end seal, the connector, and electro-chemical track resistance on the surface of the termination between the insulation shield terminus and the cable conductor. 4.2.1 Cable end seal Class 1 terminations provide a seal to keep the environment out of the cable and when necessary,
12、keep any gas, liquid, or semi-solid in the cable. 4.2.2 Connector When terminating a shielded power cable, a connection has to be made from the cable conductor to a piece of equipment. Termination connections used for power cables are most commonly compression connectors, but can be soldered, welded
13、, bolted, or fastened by means of a set screw. It is imperative that prior to the installation of the connector, the cable conductor strands and connector be clean and free of contaminants and corrosion, including surface oxidation. This helps to make a solid, permanent connection. Regardless of wha
14、t type of connection is used, all terminations require a connector that is listed as follows: a) is compatible with the cable conductor metal b) seals the power cable conductor, in combination with other termination components, from the entry of environmental contaminants into the conductor or the l
15、eakage of fluids, when present, from the conductor 4.2.2.1 Compression Connectors Compression connectors are either copper, aluminum, or a combination of both (bimetallic). Copper cable conductors can use either a copper connector (CU rated) or a dual rated aluminum connector (AL/CU rated). Dual rat
16、ed connectors often employ an intermediate metal between the copper and aluminum, usually in the form of a tin and/or zinc coating on the aluminum connector. Only aluminum connectors or dual rated connectors are applied to aluminum cable conductors. In some cases, a transition from aluminum to coppe
17、r is needed. For example, aerial connections, where an aluminum cable conductor connects to a copper conductor, require a transition connector. In this instance, a bimetal connector provides the transition. A commonly used bimetal termination connector has an aluminum barrel with a copper stem. The
18、transition area of the connector may have an intermediate metal at the interface or the interface may be spun welded to eliminate access of air and moisture to the metal junction. This type of connector is sometimes referred to as a pin connector. Compression connectors for aluminum conductors requi
19、re an inhibitor to fill the area between the conductor strands and the interior connector wall. Inhibitor generally comes preinstalled within the connector and is critical to its function. Inhibitor should not be removed from a connector. Inhibitors are intended to limit the formation of oxidation o
20、n the metal surfaces within the connector and on the surfaces of the cleaned conductor strands. Inhibitors also serve to limit moisture intrusion into the connector and may include particles to enhance electrical contact between the metals. Because the inhibitor can contain conductive particles, exc
21、ess inhibitor squeezed out of the connector should be cleaned away in the area between the end of the connector and the cable insulation. This helps avoid contamination of the insulation 5 Copyright 2010 IEEE. All rights reserved. IEEE Std 1637-2010 IEEE Guide to Select Terminations for Shielded Alt
22、ernating-Current Power Cable Rated 5 kV 46 kV surface during termination assembly and helps avoid contamination of insulating fluids that may fill some types of terminations. Compression indents on a connector can create sharp metal protrusion off the edge of a connector, commonly referred to as fla
23、shing. In most cases, these protrusions should be removed to avoid damaging components within the termination during the assembly process. Once the proper connector is selected, the manufacturers recommendation for tooling and installation shall be carefully followed in order to provide a proper con
24、nection. It is very important to follow the tooling recommendations and installation procedures required for the connector. Selection of the proper tool and die combination is important to maximize electrical contact between the connector and the various strand layers within the conductor without ov
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