详情描述

    During the starting of an asynchronous motor under rated voltage, the initial starting current is very high, often exceeding many times the rated current (usually 5 to 7 times). To reduce the starting current and prevent impact on the power grid, the motor is typically started by lowering the voltage. Common methods for voltage reduction include using reactors or autotransformers. The starting process of an AC motor is short (usually a few seconds to two minutes), and after starting, the reactor or autotransformer used for voltage reduction is disconnected. This product is designed based on the starting characteristics of high-voltage asynchronous motors and is compatible with motor power ratings of 220 to 1400 kW.

    Structural Features:

    1. The core of the QKSG type dry iron core reactor is made of imported silicon steel sheets, with the core column divided into uniform small segments by multiple air gaps. The air gaps are insulated using epoxy boards, and high-temperature, high-strength adhesive is used to ensure that the air gaps do not change during the operation of the reactor.

    2. The core end faces are treated with silicon steel sheet end face glue, which securely binds the silicon steel sheets together, significantly reducing operating noise and offering excellent corrosion resistance.

    3. The coil is structured with a winding package, featuring a main insulation made of glass fiber impregnated with epoxy resin. After thermal curing, it is vacuum-dipped in high-temperature insulating varnish. This coil boasts excellent insulation properties and high mechanical strength, capable of withstanding the high current surge and thermal shock during motor startup without cracking.

    Starter reactor parameters and dimensions:

    Starting Reactor Model

    Starting KVA (kvar)

    Starting Current (A)

    Per-phase Reactance (Ω)

    Reactive Component Dimensions (L×W×H)

    Motor Starter

    Model

    Power (kW)

    QKSG-400/6

    395

    123

    8.667

    865×330×700

    Y355-4

    220

    QKSG-450/6

    445

    139

    7.669

    895×340×730

    Y355-4

    250

    QKSG-500/6

    495

    154

    6.992

    910×345×740

    Y355-4

    280

    QKSG-550/6

    555

    173

    6.162

    925×350×760

    Y355-4

    315

    QKSG-630/6

    620

    194

    5.496

    940×355×785

    Y400-4

    355

    QKSG-700/6

    700

    219

    4.868

    955×360×800

    Y400-4

    400

    QKSG-800/6

    785

    246

    4.333

    975×360×820

    Y400-4

    450

    QKSG-850/6

    855

    267

    3.993

    1015×385×840

    Y400-4

    500

    QKSG-1000/6

    965

    301

    3.542

    1030×385×880

    Y400-4

    560

    QKSG-1100/6

    1080

    338

    3.154

    1090×390×905

    Y450-4

    630

    QKSG-1250/6

    1215

    380

    2.805

    1105×390×920

    Y450-4

    710

    QKSG-1400/6

    1365

    427

    2.496

    1120×410×970

    Y450-4

    800

    QKSG-1600/6

    1540

    481

    2.216

    1135×410×1015

    Y450-4

    900

    QKSG-1900/6

    1845

    499

    2.469

    1150×420×1060

    Y500-4

    1000

    QKSG-2100/6

    2040

    552

    2.232

    1170×430×1095

    Y500-4

    1120

    QKSG-2300/6

    2275

    615

    2.003

    1125×440×1120

    Y500-4

    1250

    QKSG-2600/6

    2545

    688

    1.791

    1250×445×1145

    Y500-4

    1400


      Terms of Use:

      1. Altitude not exceeding 1,000 meters.

      Operating temperature range is -25℃ to +45℃.

      3. Install in indoor areas without severe vibration, no harmful gases or dust, and no flammable or explosive materials.

      4. After a start-up time of 2 minutes (cumulative of one or multiple starts), the equipment should be cooled for 6 hours before restarting.

      Section 3: Performance Parameters:

      1. The dry-type starting reactor is smaller in size compared to traditional oil-immersed reactors and air-core reactors. It features light weight, minimal space occupation, simple structure, and easy installation.

      2. Temperature rating reaches H class (180℃); during normal operation, the core temperature rise of the dry-type core reactor does not exceed 85K, and the coil temperature rise does not exceed 95K.

      3. The dry-type core reactor has lower loss than the oil-immersed reactor. 4. The noise of the dry-type core reactor does not exceed 50dB standard.


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