
EI Core Three-Phase Lamination
Description
Technical Parameters
Henan GNEE Electric Co., Ltd. is one of the leading manufacturers and suppliers of ei core three-phase lamination in China, also supports customized service with low price. Welcome to buy discount ei core three-phase lamination for sale here from our factory. If you have any enquiry about pricelist, please feel free to email us.
Three-phase EI Lamination is typically used to manufacture high-power motors and three-phase transformers, such as industrial equipment and transportation devices. Three-phase EI lamination is made by the silicon steel strip. the model of three-phase EI lamination is from three-phase (20) to three phase (100), and the hole size is from Φ4.5 to Φ14, the gap sizes of transformer lamination core can be customized.
Three-phase EI lamination is made by the silicon steel strip. The model of three-phase EI lamination is from three-phase(20) to three-phase(100), and the hole size is from Φ4.5 to Φ14. The gap sizes of transformer lamination core can be customized.
GNEE STEEL specializes in the production of transformer lamination, transformer core and lamination core, such as three-phase EI lamination.
EI Core Three Phase Lamination Scope:Engineering Transformer and High-power Transformer in AC voltage mode.
•Determine the required core dimensions from transformer specifications.
•Choose laminations that fit the winding and bobbin size.
•Optimize core size for low core loss and reduced heat generation.
•Consider the stacking factor to maximize winding space and improve efficiency.
•Balance size and weight to achieve desired performance while maintaining manufacturability.
EI Core Three-Phase Lamination Products show
3 Phase lamination cores are used in the manufacturing of three-phase transformers. In transformers with 3 UI lamination cores, each of the three lamination core arms bears a coil body. In contrast to the EI sheets, the 3UI sheets cannot be welded since the joints of the E and I sheets are within the coil body. The E and I sheets therefore have to be nested reciprocally during transformer manufacturing. As a result, either one or multiple identical sheets are slid in from one side of the coil body. Nesting machines are available for the nesting of 3UI sheets, which can significantly reduce manufacturing times.



3PEI-17.5 to 3PEI-120 transformer lamination core Sizes
| Type | a | b | c | d | e | Holes | Aperture(Φ) |
| 3PEI-17.5 | 87.5 | 17.5 | 17.5 | 17.5 | 52.5 | 4 | 6 |
| 3PEI-20 | 100 | 20 | 20 | 20 | 50 | 6 | 6 |
| 3PEI-20* | 100 | 20 | 20 | 20 | 60 | 4,6 | 6 |
| 3PEI-22 | 110 | 22 | 22 | 22 | 66 | 4 | 8 |
| 3PEI-22.2 | 122 | 22 | 28 | 22.2 | 61 | 4 | 6 |
| 3PEI-25 | 125 | 25 | 25 | 25 | 75 | 4 | 8 |
| 3PEI-27 | 135 | 27 | 27 | 27 | 81 | 4 | 8 |
| 3PEI-28 | 140 | 28 | 28 | 28 | 84 | 4 | 8 |
| 3PEI-29 | 145 | 29 | 29 | 29 | 72.5 | 4 | 8 |
| 3PEI-30 | 150 | 30 | 30 | 30 | 90 | 6 | 7 |
| 3PEI-30.5 | 152 | 30.5 | 30.5 | 30.5 | 76.25 | 6 | 6 |
| 3PEI-32 | 160 | 32 | 32 | 32 | 80 | 4 | 8 |
| 3PEI-32* | 160 | 32 | 32 | 32 | 96 | 4 | 8 |
| 3PEI-35 | 175 | 35 | 35 | 35 | 105 | 4 | 8 |
| 3PEI-36 | 180 | 36 | 36 | 36 | 90 | 6 | 8 |
| 3PEI-38 | 190 | 38 | 38 | 38 | 95 | 4,6 | 8,10.5 |
| 3PEI-38* | 190 | 38 | 38 | 38 | 114 | 6 | 8 |
| 3PEI-40 | 200 | 40 | 40 | 40 | 100 | 4 | 10.5 |
| 3PEI-40* | 200 | 40 | 40 | 40 | 120 | 4,6 | 10 |
| 3PEI-44 | 220 | 44 | 44 | 44 | 132 | 6 | 8,10.5,12.5 |
| 3PEI-45 | 225 | 45 | 45 | 45 | 135 | 4 | 10 |
| 3PEI-50 | 250 | 50 | 50 | 50 | 150 | 4,6 | 8,10.5 |
| 3PEI-56 | 280 | 56 | 56 | 56 | 168 | 4 | 12 |
| 3PEI-60 | 300 | 60 | 60 | 60 | 180 | 6 | 12 |
| 3PEI-61* | 288 | 61.3 | 52 | 61.3 | 144 | 4,6 | 12 |
| 3PEI-61 | 305 | 61 | 61 | 61 | 152.5 | 4,6 | 14 |
| 3PEI-70 | 350 | 70 | 70 | 70 | 210 | 6 | 13 |
| 3PEI-80 | 400 | 80 | 80 | 80 | 240 | 6 | 14 |
| 3PEI-90 | 450 | 90 | 90 | 90 | 270 | 6 | 14 |
| 3PEI-100 | 500 | 100 | 100 | 100 | 300 | 6 | 16 |
| 3PEI-120 | 600 | 120 | 120 | 120 | 320 | 6 | 16 |
Three Phase Ei Transformer Lamination Three Phase Ei Lamination Core Packing


3PH lamination Features
1
Low core loss:
Low core loss reduces heat generation, resulting in improved efficiency andlonger lifespan.

2
Stacking factor:
High stacking factor provides more space for winding and increases the overall efficiency of the motor or generator.

3
Magnetic flux density:
High magnetic flux densityensures efficient energy transfer in AC motors and generators.

4
Insulation coating:
Insulation coatings protect against short circuits, reducing the risk of damageand increasing safety.

5
High permeability:
High permeability enables stronger magnetic fields and better performance in AC motors and generators.

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