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| Description | Unit | Value |
|---|---|---|
| INJECTION UNIT | ||
| Shot volume | cm3 | 128 |
| Shot weight | g | 122 |
| Shot speed | mm/s | 200 |
| Screw diameter | mm | 32 |
| Injection pressure | MPa | 250 |
| Screw L:D ratio | -- | 21 |
| CLAMPING UNIT | ||
| Clamping force | kN | 1300 |
| Opening Stroke | mm | 380 |
| Space between tie bars | mm x mm | 420 x 420 |
| Mold thickness(min) | mm | 150 |
| Mold thickness(max) | mm | 450 |
| Hydraulic ejection stroke | mm | 130 |
| Hydraulic ejection force | kN | 45 |
| POWER UNIT | ||
| Pump motor | kW | 49 |
| Heating capacity | kW | 7.5 |
| GENERAL | ||
| Oil tank capacity | L | 0 |
Platen Dimension
For a Container with a Height of 100mm, What Would be the Minimal Opening Stroke of the Injection Molding Machine?
As we know, for the IML production of a container, the robot will do the actions of parts picking and label inserting in the mold, which means that the system will request a much larger in mold space compared to non-IML production. While selecting an injection molding machine for your IML project, the opening stroke of the injection molding machine would be a very important parameter to be taken into consideration. The basic formular for the opening stoke caculation would be heigh of the parts x 3 + 150mm, the potential injection molding machine must have a larger opening stroke, or the robot may not able to pick the parts and insert the labels symtaneously.
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