Micro-injection moulding (µ-IM) is a fabrication method that is used to produce miniature parts on a mass production scale. This work investigates how the process parameter settings result in adiabatic heating from gas trapped and rapidly compressed within the mould cavity. The heating of the resident air can result in the diesel effect within the cavity and this can degrade the polymer part in production and lead to damage of the mould. The study uses Autodesk Moldflow to simulate the process and identify accurate boundary conditions to be used in a gas law model to generate an informed prediction of temperatures within the moulding cavity. The results are then compared to physical experiments using the same processing parameters. Findings...
Micro-injection moulding is one of the key technologies for micro-manufacture because of its mass-pr...
Microinjection moulding is a key enabling technology for replicating miniaturized components and par...
Process monitoring of microinjection moulding (µIM) is of crucial importance when analysing the effe...
YesThe application of vacuum venting for the removal of air from mould cavity has been introduced in...
The application of vacuum venting for the evacuation of air from the mould cavity has been introduce...
Fast time to market along with high level of automation and versatility made microinjection moulding...
Process monitoring of microinjection molding (µ-IM) is of crucial importance in understanding the ef...
Nowadays, the filling and solidification of macro-scale injection mouldings can be predicted using c...
The advances in micro engineering and especially micro products and micro components with functional...
The advances in micro engineering and especially micro products and micro components with functional...
Precise temperature control of the mould surface is a key factor for optimising product quality in m...
Accepted manuscriptThe melt flow dynamics of acrylonitrile-butadiene-styrene (ABS) and polypropylene...
YesIn polymer melt processing, the heat transfer coefficient (HTC) determines the heat flux across t...
Modelling and simulation of injection moulding process is an important technique that could shorten ...
Micro-injection moulding is one of the key technologies for micro-manufacture because of its mass-pr...
Microinjection moulding is a key enabling technology for replicating miniaturized components and par...
Process monitoring of microinjection moulding (µIM) is of crucial importance when analysing the effe...
YesThe application of vacuum venting for the removal of air from mould cavity has been introduced in...
The application of vacuum venting for the evacuation of air from the mould cavity has been introduce...
Fast time to market along with high level of automation and versatility made microinjection moulding...
Process monitoring of microinjection molding (µ-IM) is of crucial importance in understanding the ef...
Nowadays, the filling and solidification of macro-scale injection mouldings can be predicted using c...
The advances in micro engineering and especially micro products and micro components with functional...
The advances in micro engineering and especially micro products and micro components with functional...
Precise temperature control of the mould surface is a key factor for optimising product quality in m...
Accepted manuscriptThe melt flow dynamics of acrylonitrile-butadiene-styrene (ABS) and polypropylene...
YesIn polymer melt processing, the heat transfer coefficient (HTC) determines the heat flux across t...
Modelling and simulation of injection moulding process is an important technique that could shorten ...
Micro-injection moulding is one of the key technologies for micro-manufacture because of its mass-pr...
Microinjection moulding is a key enabling technology for replicating miniaturized components and par...
Process monitoring of microinjection moulding (µIM) is of crucial importance when analysing the effe...