Javascript must be enabled to continue!
Novel tooling for direct melt impregnation of textile with variotherm injection moulding: Methodology and proof of concept
View through CrossRef
Thermoplastic compression resin transfer moulding coupled with injection moulding is an appealing process for the production of thermoplastic composites. However, its implementation at an industrial scale remains challenging as variotherm injection moulding could prevent solid skin formation in the parting line, making cavity sealing difficult. In this study, a tool for thermoplastic compression resin transfer moulding and the related methods and process parameters for an implementation at an industrial scale are presented. The validity of the concept is proved by producing and characterizing composite plates with elevated fibre volume fractions and advantageous mechanical properties at a range of production temperatures within a cycle time not exceeding 20 min. The best mechanical properties were obtained at a production temperature of 270°C with a bending strength of 477 MPa, a flexural modulus measured at 25.7 GPa and a fibre volume content of 67%.
Title: Novel tooling for direct melt impregnation of textile with variotherm injection moulding: Methodology and proof of concept
Description:
Thermoplastic compression resin transfer moulding coupled with injection moulding is an appealing process for the production of thermoplastic composites.
However, its implementation at an industrial scale remains challenging as variotherm injection moulding could prevent solid skin formation in the parting line, making cavity sealing difficult.
In this study, a tool for thermoplastic compression resin transfer moulding and the related methods and process parameters for an implementation at an industrial scale are presented.
The validity of the concept is proved by producing and characterizing composite plates with elevated fibre volume fractions and advantageous mechanical properties at a range of production temperatures within a cycle time not exceeding 20 min.
The best mechanical properties were obtained at a production temperature of 270°C with a bending strength of 477 MPa, a flexural modulus measured at 25.
7 GPa and a fibre volume content of 67%.
Related Results
Development and Evaluation of a Dynamic Mould Temperature Control System with Electric Heating for Variotherm Injection Moulding
Development and Evaluation of a Dynamic Mould Temperature Control System with Electric Heating for Variotherm Injection Moulding
Variotherm injection moulding process is a new injection moulding technology. In this process, the mould cavity surface is heated up to a high temperature, before the filling stage...
Comparing the Replication Fidelity of Solid Microneedles Using Injection Compression Moulding and Conventional Injection Moulding
Comparing the Replication Fidelity of Solid Microneedles Using Injection Compression Moulding and Conventional Injection Moulding
Polymer surfaces are increasingly being functionalized with micro- and nano- surface features using mass replication methods such as injection moulding. An example of these are mic...
Europa’s seafloor may not be silent
Europa’s seafloor may not be silent
AbstractEuropa is a primary candidate for habitability due to the presence of a liquid subsurface ocean in direct contact with its rocky mantle [1]. Chemical exchanges favored by h...
Timescale of pervasive melt migration in the continental crust
Timescale of pervasive melt migration in the continental crust
Movement of a large volume of granitic melt is an important factor in the compositional differentiation of the continental crust and the presence of melt in rocks profoundly influe...
Overview of Key Zonal Water Injection Technologies in China
Overview of Key Zonal Water Injection Technologies in China
Abstract
Separated layer water injection is the important technology to realize the oilfield long-term high and stable yield. Through continuous researches and te...
Earth Observation for Surface Melt Monitoring over Antarctic Ice Shelves: Opportunities and Challenges 
Earth Observation for Surface Melt Monitoring over Antarctic Ice Shelves: Opportunities and Challenges 
<p><span>Surface meltwater is becoming an increasing driver for ice shelf disintegration and consequent mass loss from the AIS. In this regard, monitori...
Estimating Antarctic surface melt rates using passive microwave data calibrated with weather station observations.
Estimating Antarctic surface melt rates using passive microwave data calibrated with weather station observations.
Surface melt is a critical boundary condition for the hydrological system of the Antarctic Ice Sheet, impacting processes such as mass balance and ice shelf stability. However, its...
Modelling subsurface melt of Swiss glaciers
Modelling subsurface melt of Swiss glaciers
Glacier subsurface melt, consisting of englacial and basal melt, is far less understood than surface mass balance. Yet it represents a potentially relevant component of glacier ret...

