Los codos soldados ofrecen un método económico para la fabricación en campo cuando se requieren giros angulares. Los codos están diseñados con chaflán para facilitar la soldadura. Disponible para ángulos de 30, 45, 60 y 90 grados.
3973c3309c1c4f8fb011f100d22695ce
1 230 kV Al. Welded Elbows © 2010, AFL, all rights reserved. PP-3-00523, Revision 5, 11.3.2022 Specifications are subject to change without notice. AFLglobal.com | 800.890.8878 230 kV Aluminum Welded Elbows Welded elbows offer an economical method for field fabrication where angular turns are required. Designed for 230 kV service. Elbows are designed with chamfer to provide ease of welding. WEPI-AA Material Aluminum Alloy Notes • For a 30°, add '-30'; for a 45°, add '-45'; and for a 60°, add '-60' to catalog number. Ex: WEPI75-45-AA • For Schedule 80, add 'E' to pipe size. Ex: WEPI75E-AA TYPE WEPI-AA, WEPI-30-AA, WEPI-45-AA, WEPI-60-AA Aluminum Welded Pipe Elbow WEPI-30-AA A B A B 30 ° WEPI-60-AA A B A B 60 ° WEPI-45-AA A B A B 45 ° A B WEPI-AA A B Ordering Information S.P.S. CATALOG NO. ANGLE DIMENSION IN INCHES E.H.P.S. CATALOG NO. ANGLE DIMENSION IN INCHES SCHEDULE 40 A B SCHEDULE 80 A B 3/4 WEPI75-AA 90° 1.11 0.75 3/4 WEPI75E-AA 90° 1.00 0.75 3/4 WEPI75-30-AA 30° 0.38 0.75 — — — — — 3/4 WEPI75-45-AA 45° 0.52 0.75 3/4 WEPI75E-45-AA 45° 0.56 0.75 3/4 WEPI75-60-AA 60° 0.69 0.75 — — — — — 1 WEPI100-AA 90° 1.19 0.75 1 WEPI100E-AA 90° 1.23 0.75 1 WEPI100-30-AA 30° 0.44 0.75 1 WEPI100E-30-AA 30° 0.48 0.75 1 WEPI100-45-AA 45° 0.58 0.75 1 WEPI100E-45-AA 45° 0.63 0.75 1 WEPI100-60-AA 60° 0.75 0.75 1 WEPI100E-60-AA 60° 0.80 0.75 1 1/4 WEPI125-AA 90° 1.38 1.00 1 1/4 WEPI125E-AA 90° 1.42 1.00 1 1/4 WEPI125-30-AA 30° 0.50 1.00 1 1/4 WEPI125E-30-AA 30° 0.56 1.00 1 1/4 WEPI125-45-AA 45° 0.68 1.00 1 1/4 WEPI125E-45-AA 45° 0.73 1.00 1 1/4 WEPI125-60-AA 60° 0.87 1.00 1 1/4 WEPI125E-60-AA 60° 0.92 1.00 1 1/2 WEPI150-AA 90° 1.57 1.00 1 1/2 WEPI150E-AA 90° 1.63 1.00 1 1/2 WEPI150-30-AA 30° 0.56 1.00 1 1/2 WEPI150E-30-AA 30° 0.63 1.00 1 1/2 WEPI150-45-AA 45° 0.76 1.00 1 1/2 WEPI150E-45-AA 45° 0.83 1.00 1 1/2 WEPI150-60-AA 60° 0.99 1.00 1 1/2 WEPI150E-60-AA 60° 1.05 1.00
© 2010, AFL, all rights reserved. PP-3-00523, Revision 5, 11.3.2022 Specifications are subject to change without notice. AFLglobal.com | 800.890.8878 2 230 kV Aluminum Welded Elbows 230 kV Al. Welded Elbows TYPE WEPI-AA, WEPI-30-AA, WEPI-45-AA, WEPI-60-AA Aluminum Welded Pipe Elbow Ordering Information S.P.S. CATALOG NO. ANGLE DIMENSION IN INCHES E.H.P.S. CATALOG NO. ANGLE DIMENSION IN INCHES SCHEDULE 40 A B SCHEDULE 80 A B 2 WEPI200-AA 90° 1.92 1.75 2 WEPI200E-AA 90° 1.98 1.75 2 WEPI200-30-AA 30° 0.64 1.75 2 WEPI200E-30-AA 30° 0.70 1.75 2 WEPI200-45-AA 45° 0.89 1.75 2 WEPI200E-45-AA 45° 0.96 1.75 2 WEPI200-60-AA 60° 1.17 1.75 2 WEPI200E-60-AA 60° 1.24 1.75 2 1/2 WEPI250-AA 90° 2.51 1.75 2 1/2 WEPI250E-AA 90° 2.54 1.75 2 1/2 WEPI250-30-AA 30° 0.78 1.75 2 1/2 WEPI250E-30-AA 30° 0.84 1.75 2 1/2 WEPI250-45-AA 45° 1.08 1.75 2 1/2 WEPI250E-45-AA 45° 1.14 1.75 2 1/2 WEPI250-60-AA 60° 1.42 1.75 2 1/2 WEPI250E-60-AA 60° 1.46 1.75 3 WEPI300-AA 90° 2.52 1.75 3 WEPI300E-AA 90° 2.56 1.75 3 WEPI300-30-AA 30° 0.89 1.75 3 WEPI300E-30-AA 30° 0.96 1.75 3 WEPI300-45-AA 45° 1.23 1.75 3 WEPI300E-45-AA 45° 1.31 1.75 3 WEPI300-60-AA 60° 1.52 1.75 3 WEPI300E-60-AA 60° 1.56 1.75 3 1/2 WEPI350-AA 90° 2.87 1.75 3 1/2 WEPI350E-AA 90° 2.96 1.75 3 1/2 WEPI350-30-AA 30° 0.95 1.75 3 1/2 WEPI350E-30-AA 30° 1.04 1.75 3 1/2 WEPI350-45-AA 45° 1.33 1.75 3 1/2 WEPI350E-45-AA 45° 1.42 1.75 3 1/2 WEPI350-60-AA 60° 1.76 1.75 3 1/2 WEPI350E-60-AA 60° 1.85 1.75 4 WEPI400-AA 90° 3.02 2.06 4 WEPI400E-AA 90° 3.08 2.06 4 WEPI400-30-AA 30° 1.12 2.00 4 WEPI400E-30-AA 30° 1.23 2.00 4 WEPI400-45-AA 45° 1.60 2.00 4 WEPI400E-45-AA 45° 1.70 2.00 4 WEPI400-60-AA 60° 1.81 2.06 4 WEPI400E-60-AA 60° 1.87 2.06 5 WEPI500-AA 90° 3.82 2.44 5 WEPI500E-AA 90° 3.94 2.44 5 WEPI500-30-AA 30° 1.24 2.44 5 WEPI500E-30-AA 30° 1.35 2.44 5 WEPI500-45-AA 45° 1.75 2.44 5 WEPI500E-45-AA 45° 1.87 2.44 5 WEPI500-60-AA 60° 2.33 2.44 5 WEPI500E-60-AA 60° 2.45 2.44 6 WEPI600-AA 90° 4.31 2.75 6 WEPI600E-AA 90° 4.38 2.75 6 WEPI600-30-AA 30° 1.29 2.75 6 WEPI600E-30-AA 30° 1.36 2.75 6 WEPI600-45-AA 45° 1.89 2.75 6 WEPI600E-45-AA 45° 1.97 2.75 6 WEPI600-60-AA 60° 2.57 2.75 6 WEPI600E-60-AA 60° 2.64 2.75 8 WEPI800-AA 90° 5.64 1.00 — — — — — 8" O.D. WEPI800R-AA 90° 5.50 2.00 — — — — — 8" O.D. WEPI800R-30-AA 30° 1.88 2.00 — — — — — 8" O.D. WEPI800R-60-AA 60° 3.38 1.00 — — — — —
3 Bus Conductors © 2011, AFL, all rights reserved. PP-3-00213, Revision 3, 8.9.2022 Specifications are subject to change without notice. AFLglobal.com | 800.890.8878 Bus Conductors Welding of aluminum in electrical construction offers a superior and economical means of joining conductors. Electric arc welding using an inert gas shield produces mechanically and electrically sound joints requiring no flux or special surface preparation other than the cleaning of the surface to be welded. A welded connection that is mechanically satisfactory is also electrically satisfactory. With welded connections, there is an essentially homogeneous union that gives a permanent stable connection. It is not necessary to try to produce a connection with the same resistance as bus itself in order to have a stable permanent joint. There are bus connectors where it is important to insure a resistance ratio of unity with the conductor itself. Small differences in resistance can affect the current distribution in some bus systems. Some bus systems require equalization bars. Welded connections are an ideal solution to both problems. Such connections can be made by following procedures outlined in The American Welding Society Handbook “Welding Aluminum.” Welding Aluminum Bus to Aluminum Connectors
© 2011, AFL, all rights reserved. PP-3-00213, Revision 3, 8.9.2022 Specifications are subject to change without notice. AFLglobal.com | 800.890.8878 4 Bus Conductors Bus Conductors General Welding Specifications for Tubular Aluminum Bus Conductor The following items cover key points that should be included in specifications for welding aluminum bus conductors. It is recommended that the references be reviewed in the preparation of proprietary welding specifications. 1. The welding process and all welding operators should be qualified in accordance with the Aluminum Association, “Aluminum Construction Manual” Section 7.2.4 “Qualification of Welding Procedure and Welding.” 2. All Joints to be welded should be free of moisture and hydrocarbon. Moisture can be removed thermally, but the temperature applied should not exceed 250 o F (121 o C). Degreasing should be done with a non-toxic solvent so as to leave a minimum of residual on the parts. Sufficient time must be allowed for evaporation of the solvent prior to welding. Wire brushing with a stainless steel wire brush should be employed after solvent cleaning to remove thick heat-treat oxide films, water stains, etc., to permit optimum fusion and soundness of the weld. 3. All welds should be made by the gas metal-arc (MIG) or the gas tungsten-arc (TIG) welding process. Reversed polarity direct current should be used for MIG welding, whereas alternating current should be used for TIG welding. The shielding gas should be welding grade Argon, Helium, or a mixture of the two. Filler alloy 4043 should be used. 4. The working area should be substantially draft free and should be protected from atmospheric contamination. 5. All connections should be checked before, during and after the weld is made. Before the weld is begun, visually inspect the connection to determine proper edge preparation and alignment. During the weld, maintain a smooth and continuous flow of metal into the joint and maintain a constant current setting on the welding station. When several passes are to be made, check the previous pass before laying down the next one to enable detection of poor fusion or cracks. Defective areas should be removed with a dry chisel prior to application of subsequent weld passes. After the weld has been complete, it should be visually inspected again for quality and to insure the weld bead is of the correct size. The cross sectional area of the weld should not be less than that of the smallest member being joined. 6. Members being joined should be tack welded in place to prevent misalignment during the welding process.
Características:
- Aleación de aluminio
- Disponible con diferentes ángulos
- Cumple las normas NEMA CC1
Aplicaciones:
- Calificada para 230 kV
- Subestación
- Tubo bus de aluminio
Los codos soldados ofrecen un método económico para la fabricación en campo cuando se requieren giros angulares
. Los codos están diseñados con chaflán para facilitar la soldadura. Disponible para ángulos de 30, 45, 60 y 90 grados.
Acopladores de compresión de aluminio de 230 kV,Conectores en T de compresión de aluminio de 230 kV,Conectores de Terminal de Compresión de Aluminio de 230 kV,Conectores de terminales de compresión de aluminio de 230 kV,Acopladores de tubería de aluminio soldado de 230 kV,Soportes de tubería de aluminio soldado de 230 kV,Conectores en T y en V para tubos de aluminio soldados de 230 kV,Conectores de terminales de tubería de aluminio soldado de 230 kV,Acopladores de aluminio soldado para cables de 230 kV,Tubería de aluminio soldada de 230 kV a T de cable,Terminal de cable soldado de aluminio de 230 kV,Tapones de aluminio soldados de 230 kV,Varilla de tierra soldada de aluminio de 230 kV,Derivaciones de tubos soldados de aluminio de 230 kV,Acopladores de aluminio soldado de 230 kV a tubería de bus
193
Codos de aluminio soldados para tubos de bus de 230 kV
Close
Codos de aluminio soldados para tubos de bus de 230 kV
Características:
- Aleación de aluminio
- Disponible con diferentes ángulos
- Cumple las normas NEMA CC1
Aplicaciones:
- Calificada para 230 kV
- Subestación
- Tubo bus de aluminio
PRODUCT DESCRIPTION
Los codos soldados ofrecen un método económico para la fabricación en campo cuando se requieren giros angulares
. Los codos están diseñados con chaflán para facilitar la soldadura. Disponible para ángulos de 30, 45, 60 y 90 grados.