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Copper-aluminum composite bar is a bimetallic conductive bar of copper-coated aluminum, which is a "new conductor material". It not only has excellent conductive properties of copper, but also has the characteristics of low density of aluminum. It is a "strategic emerging industry" supported by China.
The copper-aluminum composite bars produced by our company are different from the traditional production processes such as hydrostatic extrusion, rolling and pressing, cladding and welding, and sleeve rolling, etc. Instead, the original "horizontal continuous casting and efficient molding - rolling" technology is adopted to make the copper-aluminum composite bar bond interface reach a certain metallurgical bond, enhance the shear strength of the two metal interfaces, and ensure the mechanical and electrical properties of the products. Improve product stability.
1. Electrical Equipment Manufacturing: Mainly Including Low Voltage, Medium Voltage, High Voltage Power Distribution, Busbar System, Rectifier, Motor Winding, Etc.;
2. Crane Rail Supply System, Vacuum Switchgear, Generator Set, Substation, Bimetallic Connector In Aluminum Foil Wound Transformer, Etc.;
3. Wind Power, Solar Photovoltaic Field: Mainly Including Reactor, Inverter, Etc.;
4. Railway, Aerospace, High-speed Ferry, Etc.
1. Unique composite properties, copper-aluminum interface is metallurgical bonding, product performance is high, and it has the characteristics of copper conductivity and low aluminum density;
2. High interface bonding strength, excellent conductivity, excellent mechanical processing performance;
3. The copper layer thickness is large and adjustable, suitable for transmitting large currents;
4. Light weight, convenient transportation and installation;
5. Obvious economic benefits: saving copper resources and reducing production costs.
Name | Unit | Copper Bar | Copper-aluminum Composite Bar (VPcu=25%) | Aluminum Bar | |||
Hard Y | Soft state R | Hard Y | Soft R | Hard Y | Soft R | ||
Tensile strength | MN/m2 | - | ≥206 | ≥170 | ≥115 | ≥118 | ≥68.6 |
Elongation | % | - | ≥35 | ≥3 | ≥28 | ≥3 | ≥20 |
Maximum Resistivity | Ω·mm2/m | 0.01777 | 0.017241 | 0.02548 | 0.02498 | 0.029 | 0.028264 |
Minimum Volume Conductivity | %IACS | 97 | 97 | 67.7 | 69 | 59.5 | 61 |
Density | g/cm3 | 8.89 | 8.89 | 4.25 | 4.25 | 2.703 | 2.703 |
Linear Coefficient of Thermal Expansion | 1/℃ | 17×1010-6 | 17×1010-6 | 22.5×1010-6 | 22.5×1010-6 | 23×1010-6 | 23×1010-6 |
Temperature Coefficient of Resistance | 1/℃ | 3.81×1010-3 | 3.93×1010-3 | 3.9×1010-3 | 4.0×1010-3 | 3.93×1010-3 | 4.03×1010-3 |
Width /mm | Width Tolerance /mm | Thickness /mm | Thickness Tolerance /mm |
≤30.00 | ±0.50 | >3.00~6.00 | ±0.10 |
>30.00~100.00 | ±0.80 | >6.00~10.00 | ±0.15 |
>100.00 | ±1.20 | >10.00 | ±0.20 |
Coating Volume Ratio % |
Status | Density g/cm3 |
Interface Bonding Strength mpa |
Tensile Strength mpa |
Elongation % |
Maximum Dc Resistivity ω · Mm2/m |
Volume Conductivity Not Less Than %iacs |
20 | Hard Y | 3.94 | ≥40 | ≥160 | ≥3 | 0.02596 | 66.4 |
Soft state R | - | ≥110 | ≥25 | 0.0255 | 67.6 | ||
25 | Hard Y | 4.25 | ≥40 | ≥170 | ≥3 | 0.02548 | 67.7 |
Soft state R | - | ≥115 | ≥28 | 0.02498 | 69 | ||
30 | Hard Y | 4.56 | ≥40 | ≥180 | ≥3 | 0.02477 | 69.6 |
Soft state R | - | ≥120 | ≥30 | 0.02424 | 71.1 |
The AC carrying capacity of a single product is shown in the following table, and the DC carrying capacity should be appropriately increased by reference to the following table.
The data in the following table are indoor test data, and the influence of outdoor factors such as wind speed is not considered.
The data in the table is the AC current carrying capacity of the sample standing without coating. When the specimen is laid flat, width ≤ When 60.00mm, the data in the table should be multiplied by 0.95; When the width is greater than 60.00mm, the data in the table should be multiplied by 0.92.
The product works stably in an environment of 25 ° C, and the AC carrying capacity when the temperature rises to 50K, 65K and 75K.
Specification(b×h)mm×mm | Current Carrying Capacity (25℃) /A | ||||||||
VPCu=20% | VPCu=25% | VPCu=30% | |||||||
50K | 65K | 75K | 50K | 65K | 75K | 50K | 65K | 70K | |
15.00×4.00 | 193 | 213 | 222 | 196 | 210 | 225 | 200 | 213 | 229 |
20.00×4.00 | 1250 | 276 | 288 | 254 | 273 | 293 | 259 | 277 | 298 |
25.00×4.00 | 310 | 341 | 355 | 314 | 339 | 363 | 321 | 345 | 370 |
30.00×4.00 | 326 | 361 | 375 | 336 | 362 | 387 | 347 | 372 | 399 |
30.00×5.00 | 425 | 453 | 476 | 438 | 453 | 489 | 450 | 466 | 503 |
30.00×6.00 | 486 | 538 | 562 | 499 | 539 | 579 | 514 | 554 | 595 |
30.00×8.00 | 579 | 643 | 678 | 596 | 644 | 697 | 613 | 662 | 717 |
30.00×10.00 | 638 | 711 | 724 | 658 | 712 | 745 | 676 | 733 | 767 |
40.00×4.00 | 453 | 498 | 517 | 465 | 500 | 532 | 479 | 513 | 547 |
40.00×5.00 | 538 | 604 | 633 | 554 | 605 | 652 | 570 | 622 | 670 |
40.00×6.00 | 612 | 677 | 708 | 630 | 679 | 728 | 649 | 698 | 750 |
40.00×8.00 | 725 | 805 | 847 | 746 | 806 | 873 | 767 | 829 | 897 |
40.00×10.00 | 790 | 894 | 949 | 814 | 896 | 977 | 837 | 921 | 1005 |
50.00×5.00 | 665 | 735 | 765 | 684 | 736 | 788 | 703 | 758 | 810 |
50.00×6.00 | 755 | 836 | 872 | 777 | 836 | 898 | 799 | 861 | 923 |
50.00×8.00 | 891 | 989 | 1042 | 918 | 990 | 1072 | 944 | 1019 | 1103 |
50.00×10.00 | 969 | 1061 | 1107 | 998 | 1061 | 1139 | 1026 | 1092 | 1172 |
60.00×5.00 | 759 | 856 | 892 | 781 | 858 | 918 | 804 | 882 | 945 |
60.00×6.00 | 861 | 952 | 995 | 886 | 953 | 1025 | 911 | 980 | 1053 |
60.00×8.00 | 1011 | 1123 | 1182 | 1041 | 1124 | 1216 | 1070 | 1156 | 1252 |
60.00×10.00 | 1093 | 1215 | 1279 | 1125 | 1218 | 1318 | 1157 | 1253 | 1355 |
80.00×6.00 | 1081 | 1197 | 1250 | 1113 | 1198 | 1284 | 1145 | 1232 | 1323 |
80.00×8.00 | 1265 | 1405 | 1479 | 1302 | 1407 | 1523 | 1340 | 1448 | 1566 |
80.00×10.00 | 1362 | 1505 | 1583 | 1402 | 1507 | 1629 | 1442 | 1550 | 1676 |
100.00×6.00 | 1283 | 1419 | 1483 | 1320 | 1422 | 1527 | 1358 | 1462 | 1571 |
100.00×8.00 | 1504 | 1669 | 1758 | 1548 | 1672 | 1811 | 1593 | 1719 | 1862 |
100.00×10.00 | 1620 | 1790 | 1883 | 1668 | 1793 | 1938 | 1716 | 1844 | 1993 |
120.00×8.00 | 1740 | 1932 | 2035 | 1791 | 1935 | 2095 | 1842 | 1990 | 2154 |
120.00×10.00 | 1890 | 2090 | 2197 | 1946 | 2094 | 2261 | 2002 | 2153 | 2326 |
140.00×8.00 | 1996 | 2216 | 2333 | 2054 | 2218 | 2402 | 2114 | 2282 | 2471 |
140.00×10.00 | 2199 | 2447 | 2556 | 2264 | 2452 | 2631 | 2329 | 2522 | 2706 |
160.00×8.00 | 2223 | 2468 | 2599 | 2289 | 2472 | 2660 | 2354 | 2543 | 2753 |
160.00×10.00 | 2449 | 2718 | 2846 | 2521 | 2730 | 2929 | 2594 | 2809 | 3014 |
180.00×8.00 | 2465 | 2736 | 2882 | 2538 | 2740 | 2967 | 2611 | 2819 | 3053 |
180.00×10.00 | 2717 | 3023 | 3157 | 2796 | 3029 | 3250 | 2877 | 3116 | 3343 |
180.00×12.00 | 2816 | 3156 | 3297 | 2902 | 3165 | 3398 | 2898 | 3258 | 3498 |
200.00×8.00 | 2701 | 2998 | 3157 | 2784 | 3007 | 3255 | 2866 | 3095 | 3330 |
200.00×10.00 | 2980 | 3317 | 3463 | 3069 | 3324 | 3566 | 3159 | 3422 | 3671 |
200.00×12.00 | 3093 | 3464 | 3627 | 3787 | 3474 | 3734 | 3282 | 3577 | 3840 |