Disruptive Design Thermoregulator For Plastic Injection Mold
!!!Revolutionary Product !!!
Introduction of Non-contact Energy-saving Mold Temperature control Box
5 features:
1. Water and electricity separation design: Non contact energy-saving heater adopts a water and electricity separation structure, which is integrated by die-casting to avoid the risk of leakage caused by heater burnout and ensure safer electricity use.
2. Energy saving: With a full flow water circulation layout and a new patented design, the water storage capacity is only 3 liters, reducing ineffective heating energy loss and saving over 35% energy. Reduce ineffective water replenishment losses and save about 2 tons of water per month.
3. Anti dry burning: Designed with water and electricity separation, it has efficient anti dry burning performance and is not afraid of electric and thermal damage caused by low water pressure or water shortage.
4. Corrosion resistance: SUS304 stainless steel pipes are used, which are not easy to corrode and block waterways.
5. Reduce scale formation: Due to the use of integrated die-casting molding, the circulating water and electric heating are separated, and the heating area is increased by 170% compared to the thermal conductivity area directly heated by traditional heating tubes. During the heating process, it is more balanced, and the minerals contained in the circulating water are not easy to crystallize, thus avoiding the generation and accumulation of scale and preventing the mold from being blocked due to the formation of scale.
Others' Heater VS Ours Heater
1.Direct heating. 1. Indirect heating and water electricity separation are safer.
2.The heat pipe has a small thermal conductivity area and is highly 2. The heating area is large, and the temperature rise is more uniform.
susceptible to damage. 3. Not afraid of water quality requirements, not afraid of water pressure
3.Lack of water can easily cause dry burning and broken. requirements, more durable.
4.Easy to produce scale and block the mold waterway. 4. Less prone to scaling and smoother flow.
5.Low thermal conductivity and high energy consumption. 5. Controllable temperature range: oil machine 350 ºC, water machine 200 ºC.
6.There is a risk of water leakage and electric leakage. 6. Temperature control accuracy ± 0.1 ºC.
7. Overall insulation with low energy consumption and integrated molding to
prevent leakage.
Disadvantages of traditional heating tubes
Our heater needn't to be changed frequently and have much longer lifetime.
Product Specification:
Model |
Product Name |
Heating Medium |
Temperature Range |
Pump Power |
Pump Flow |
Mold inlet&outlet |
Heater |
Dimension |
QFXH-D6KW |
Microcomputer mold temperature controller (high temperature) |
Water |
45-160ºC |
0.5HP |
100L/MN |
3/8"x4 |
6kw |
550*300*620 |
QFXH- D9KW |
45-160ºC |
1HP |
165L/MN |
3/8"x4 |
9kw |
750*320*610 |
QFXH-D12KW |
45-160ºC |
1HP |
165L/MN |
3/8"x4 |
12kw |
750*320*610 |
QFXH-D18KW |
45-160ºC |
2HP |
235L/MN |
3/8"x4 |
18kw |
750*320*610 |
QFXH-D21 KW |
45-160ºC |
3HP |
315L/MN |
3/8"x6 |
21 kw |
800*340*630 |
QFXH-D24KW |
45-160ºC |
5HP |
367L/MN |
3/8"x8 |
24kw |
800* 340*630 |
QFXH-J6KW |
Computer Numerical control mold temperature controller |
45-160ºC |
0.5HP |
100L/MN |
3/8"x4 |
6kw |
550*300*620 |
QFXH-J9KW |
45-160ºC |
1HP |
165L/MN |
3/8"x4 |
9kw |
750*320*610 |
QFXH-J12KW |
45-160ºC |
1HP |
165L/MN |
3/8"x4 |
12kw |
750*320*610 |
QFXH-J18KW |
45-160ºC |
2HP |
235L/MN |
3/8"x4 |
18kw |
750*320*610 |
QFXH-J21KW |
45-160ºC |
3HP |
315L/MN |
3/8"x6 |
21 kw |
800*340*630 |
QFXH- J24KW |
45-160ºC |
5HP |
367L/MN |
3/8"x8 |
24kw |
800*340*630 |
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