Enfriador de moldeo por inyección de plástico

In injection molding, our chiller is the key. It precisely controls mold temp within ±1°C, eradicating defects. Speeds up cooling, boosting production by 30%. Its energy-efficient design cuts consumption by 40%. Reduces thermal stress, prolonging equipment life. Elevate your molding, outperform rivals with our chiller.

You need an APT water chiller for your plastic injection moulding machine.

APT Water Chiller for the molding mould of plastic processing/injection machinery can:

  • Greatly improve the surface finish of plastic products
  • Reduce the surface striation and internal stress of plastic products
  • Make the products Not Shrink or Deform
  • Facilitate the demoulding of plastic products
  • Accelerate the shaping of products, and greatly improve the production efficiency of plastic molding machine

How To Select The Appropriate Size Of Chiller According To The Mold Size Of Injection Molding Machine

1.Determine the Cooling Requirements of the Injection Molding Machine

  • Calculate the Heat Load:

During the operation of an injection molding machine, a large amount of heat is released when the plastic changes from a molten state to a cooled and solidified state. The formula for calculating the heat load (kW) is usually: , where is the mass of the plastic injected each time (kg), is the specific heat capacity of the plastic (kJ/(kg·°C)), and is the temperature difference between the melting temperature and the demolding temperature of the plastic (°C). For example, for common polypropylene (PP) plastic, the specific heat capacity is approximately . If 1 kg of PP plastic is injected each time, with a melting temperature of 200 °C and a demolding temperature of 40 °C, then the heat load . Since 1 kW = 1 kJ/s, assuming the cooling time is 10 s, the required cooling capacity is approximately.

  • Consider the Size and Complexity of the Mold:

Larger molds or those with complex internal structures require more cooling medium to ensure uniform cooling. Generally speaking, the larger the mold, the greater the cooling capacity required. For example, a small injection molding mold (with dimensions smaller than 300 mm×300 mm×300 mm) may require a cooling capacity of 35 kW, while a large injection molding mold for automotive parts (with dimensions larger than 1000 mm×1000 mm×1000 mm) may require a cooling capacity of 3050 kW.

2.Pay Attention to the Specification Parameters of the Injection Molding Machine

  • Clamping Force:

The clamping force is a key parameter of the injection molding machine, which is related to the size of the injection molding machine and the size of the products it can produce. Usually, the larger the clamping force, the larger the specification of the injection molding machine, and the greater the cooling capacity required for the chiller. For example, an injection molding machine with a clamping force between 100 and 300 tons may be paired with a chiller with a cooling capacity of 815 kW; while a large injection molding machine with a clamping force exceeding 1000 tons may require a cooling capacity of 3050 kW.

  • Injection Volume:

The injection volume reflects the amount of plastic injected by the injection molding machine each time. The larger the injection volume, the higher the energy required for cooling. Generally, it can be estimated according to the amount of cooling capacity required for each kilogram of plastic. For example, approximately 1015 kW of cooling capacity is needed to cool each kilogram of plastic (this is only a rough estimate, and it will actually vary depending on factors such as the type of plastic).

3.Consider Production Efficiency and Cycle Time

  • Production Speed:

If the injection molding machine has a high production speed and a short cycle time, then the number of cooling requirements per unit time will be high, and the requirements for the cooling capacity and response speed of the chiller will be high. For example, a high-speed injection molding machine that can complete 35 injection cycles per minute requires the chiller to be able to quickly remove heat to ensure the cooling effect of each cycle.

  • Proportion of Cooling Time in the Cycle:

It is important to understand the proportion of cooling time in the entire cycle during the injection molding process. If the cooling time accounts for a large proportion, a more powerful cooling capacity is needed to shorten the cooling time and improve production efficiency. For example, when the cooling time accounts for more than 50% of the cycle, it is necessary to ensure that the cooling capacity of the chiller can fully meet the need for rapid cooling during this period.

4.Requirements for Temperature Control Precision

  • Product Quality Requirements:

For some injection molded products with high requirements for dimensional accuracy and appearance quality, such as the casings of electronic products and precision optical parts, precise mold temperature control is required. In this case, a chiller with high temperature control precision should be selected, and generally, the temperature should be controlled within ±1±2 °C. For some products with relatively low requirements for dimensional and appearance accuracy, such as ordinary plastic toys, a temperature control precision within ±3±5 °C may be sufficient.

Ordinary, injection molding machine clamping force between 80 tons and 100 tons of machines equipped with the machine is 5HP

<<There is a table for your reference

Debes conocer los tipos de materias primas utilizadas y la cantidad utilizada por hora. Eso sería más preciso y no desperdiciaría eficiencia energética.

Water Cooling Box Type Industrial Water Chiller For Injection Molding Machine​

water cooled industrial chiller-20HP1
water cooled industrial chiller-20HP2

Estructura compacta, larga vida útil, alta eficiencia de ahorro de energía

  • Compresor original: protección del medio ambiente, alta estabilidad, larga vida útil, ahorro de energía y ahorro de energía [Daikin, Copeland, nacional, maneurop, Sanyo];
  • Bomba de agua de bajo consumo de energía: gran caudal y gran altura, para satisfacer las condiciones del agua de diversos equipos;
  • Controlador de presión de alta precisión: protege el compresor y los componentes principales de forma precisa y rápida;
  • Controlador de temperatura por microordenador: puede controlar la temperatura del agua de + 3 ° C a + 25 ° C con una precisión de visualización de 0,1 ° C;
  • Condensador de carcasa y tubos: el tubo de cobre en espiral tiene una gran eficiencia de transferencia de calor, una larga vida útil, una fácil limpieza y mantenimiento y es el componente principal del aire acondicionado central tradicional;
  • Evaporador tipo serpentín con tanque de agua de acero inoxidable: fácil de limpiar y mantener, comprensión clara de la situación real del equipo de agua;
  • Dispositivo de protección: subtensión de voltaje, pérdida de fase de suministro de energía, protección de fase incorrecta, protección de sobrecarga de corriente del compresor, protección de sobrecarga de corriente de la bomba, protección de alta y baja presión, protección anticongelante, flujo de agua de refrigeración insuficiente, protección de flujo de agua enfriada insuficiente y arranque retrasado , etc. El dispositivo de protección de seguridad puede emitir una alarma y mostrar fallos.

Parámetro técnico para enfriadora enfriada por agua 3-100HP

Modelo APTBL-3WCS APTBL-5WCS APTBL-8WCS APTBL-10WCD APTBL-12WCD APTBL-15WCD APTBL-20WCD
Enfriamiento Capacidad W. 9000 15000 24000 30000 36000 45000 60000
Motor del compresor kilovatios 2.5 4.5 6.4 8.2 9.6 12 16
Flujo de agua de refrigeración l/min 34 56 88 114 146 169 220
Tubería de entrada/salida de agua de refrigeración pulgada 1" 1" 1.5" 1.5" 1.5" 1.5" 2"
Flujo de agua congelada l/min 25 43 69 86 104 130 173
Tubería de entrada/salida de agua congelada pulgada 1/2" 1/2" 1" 1.5" 1.5" 1.5" 2"
Motor de bomba caballos de fuerza 0.5 0.5 1 1 2 2 3
Capacidad del tanque de agua l/min 45 50 120 120 160 200 250
Peso neto kilos 100 140 280 350 400 480 600
Dimensión L*An*Al (mm) 850*520*900 850*520*900 1300*700 *1200 1300*700 *1200 1300*700 *1300 1300*700 *1300 1600*750 *1500
Fuente de alimentación 3N-380V/50Hz
Refrigerante R22/R407c/R410a/R134a
Dispositivo de aceleración Tubo capilar/válvula de expansión
Condensador Condensador de carcasa y tubos
Evaporador Stainless steel water tank copper coil evaporator / Shell and tube evaporator for over 60HP
Modelo APTBL-25WCD APTBL-30WCD APTBL-40WCD APTBL-50WCD APTBL-60WCD APTBL-80WCD APTBL-100WCD
Enfriamiento Capacidad W. 75000 90000 120000 150000 180000 240000 300000
Motor del compresor kilovatios 20 24 32 41 49.2 65,6 82
Flujo de agua de refrigeración l/min 290 337 450 580 700 900 1200
Tubería de entrada/salida de agua de refrigeración pulgada 2.5" 2.5" 3" 3" 3" 4" 4"
Flujo de agua congelada l/min 216 260 345 430 517 690 870
Tubería de entrada/salida de agua congelada pulgada 2" 2.5" 3" 3" 3" 4" 4"
Motor de bomba caballos de fuerza 3 3 5.5 7 7 10 10
Capacidad del tanque de agua l/min 300 350 500 800 800 1000 1200
Peso neto kilos 700 800 980 1100 1200 1400 1500
Dimensión L*An*Al (mm) 1900*900 *1500 1900*900 *1500 2300*1000 *1600 2300*1000 *1600 2500*1000 *1600 3000*1300 *1600 2800*1500 *1600
Fuente de alimentación 3N-380V/50Hz
Refrigerante R22/R407c/R410a/R134a
Dispositivo de aceleración Tubo capilar/válvula de expansión
Condensador Condensador de carcasa y tubos
Evaporador Stainless steel water tank copper coil evaporator / Shell and tube evaporator for over 60HP

1. La capacidad de refrigeración se basa en las siguientes condiciones de temperatura estándar:

1) Temperatura de retorno del agua enfriada 12 ° C, Temperatura de salida del agua enfriada 7 ° C

2) Temperatura de entrada del agua de refrigeración 30 ° C, Temperatura de entrada del agua de refrigeración 35 ° C

2. Alcance de la temperatura de trabajo

1) Temperatura de salida del agua de refrigeración de 22 °C a 37 °C, diferencia de temperatura del agua de refrigeración de 3,5 °C a 6,5 ​​°C

2) Temperatura de salida del agua enfriada de 5 °C a 20 °C, diferencia de temperatura de salida del agua enfriada de 2,5 °C a 7 °C

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