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Analysis of Cycle Time and Shot Count in the Injection Moulding Process Using eMoldino Sensor.
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Authors
Prasetio, Ilham
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Politeknik Negeri Batam
Abstract
The injection moulding process requires proper control of
cycle time and shot count to maintain production efficiency and
mould service life. This study aims to analyze cycle time and
shot count using the eMoldino sensor as an Internet of Things
(IoT)-based production monitoring system. Data were collected
through an eight-week monitoring period and analyzed using
the Failure Mode and Effects Analysis (FMEA) method to
identify potential failures and determine improvement priorities
within the production process. The results indicate that several
factors contributed to production instability, including an
inefficient mould cooling system, excessive use of regrind
material, prolonged barrel charging time, inappropriate cooling
time settings, and delays in cycle time data acquisition by the
eMoldino sensor. The implementation of improvement actions
successfully reduced the Risk Priority Number (RPN) values of
the prioritized failure factors, resulting in improved process
stability. Monitoring results after the implementation of
improvements showed an average actual cycle time of 29.07
seconds, with an average deviation of 1.59% from the approved
cycle time of 28.62 seconds. In addition, the total shot count
recorded during the observation period reached 1,949,046
shots, with an average of 243,631 shots per week or 34,804
shots per day. These findings demonstrate that the use of the
eMoldino sensor combined with the FMEA approach is
effective in supporting production monitoring, cycle time
evaluation, shot count control, and the implementation of
improvement actions in the injection moulding process.
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