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Sumitomo Demag Plastics Machinery .
Built for high speed and precision, this latest 180t all-electric injection molding machine is also proven to be of the highest repeatability and cleanline.
The machine is aimed directly at high-volume manufacturers of medical plastic parts and is designed for ultra-narrow tolerance applications requiring fast cycle times of 3 to 1
As an all-electric model, the IntElect S-Series is cleaner, cooler, faster, quieter and more energy efficie.
The layout of the mold space ensures the absence of contaminants, particles and lubricants, which makes the IntElect S GMP compliant and therefore an ideal machine choice for applications in medical cleanroom environmen.
In addition to a clean environment, fast cycle times and unmatched process stability, the IntElect S heralds a new era of molding sustainability, energy savings and total cost of ownership (TC.
Sumitomo Demag Product Manager Peter Gladigau confirms: “We have done extensive machine and component life durability testing of the IntElect S against comparable all-electric injection molding machines on the market, and these tests have confirmed our commitment to high-performance driv.
“Even when the clamping spindle was tested under the most difficult conditions, there were no visible signs of wear after millions of cycl.
With a dry cycle time of 2s, the Model S model outperforms the previous generation IntElect machine in terms of die motion as well as metering speed and ejector moti.
Peter added: “The extended tie-rod distance and greater mold height mean that multi-cavity molds can be used in combination with small injection units, which is especially beneficial for molders producing precision medical produc.
To demonstrate the impressive performance of the new IntElect S, Sumitomo Demag will be running a production cell on site at K 2019, where pipette tips will be moulded in a 64-cavity mou.
The high-speed production cell also includes an efficient automation system for taking out the formed product and placing it in the corresponding hold.