Possibilities of Integrated Fabrication of Insulation Systems in Electric Drives by Injection Molding of Thermosets
Abstract
:1. Introduction
2. Materials and Methods
2.1. Material
2.2. Fabrication of the Test Specimens
2.3. Characterization
2.3.1. Specific Heat Capacity c According to ISO 11357-4
2.3.2. Thermal Conductivity a According to DIN EN 821
2.3.3. Thermal Linear Expansion ΔL According to ISO 7991
2.3.4. Differential Scanning Calorimetry (DSC) According to ISO 11357
2.3.5. Determination of the Viscosity Using a Rotational Viscometer According to DIN EN 6043
2.3.6. Microscopy
2.3.7. Average of Partial Discharge and Partial Discharge Inception/Extinction Voltage
3. Results
3.1. Specific Heat Capacity c According to ISO 11357-4
3.2. Thermal Conductivity a According to DIN EN 821
3.3. Thermal Linear Expansion ΔL According to ISO 7991
3.4. Differential Scanning Calorimetry (DSC) According to ISO 11357
3.5. Determination of the Viscosity Using a Rotational Viscometer According to DIN EN 6043
3.6. Microscopy
3.7. Average Level of Partial Discharge and Partial Discharge Inception/Extinction Voltage
4. Conclusions
Author Contributions
Funding
Institutional Review Board Statement
Acknowledgments
Conflicts of Interest
References
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Material Property | Requirement | |
---|---|---|
fabrication process | specific heat capacity c | high |
reaction kinetics | - | |
viscosity | low | |
application | flow path | high |
insulation of the conductor | full and homogeneous | |
thermal conductivity a | high | |
thermal linear expansion ΔL | low | |
average of partial discharge | low | |
partial discharge inception/extinction voltage | high |
Material | Manufacturer | Density ρ [g/cm3] |
---|---|---|
EP 3162 EMG | Raschig GmbH | 1.77 |
XW 6640-1 | Duresco GmbH | 2.41 |
Process Parameters | Test Sample of Plate | Single Slot Sample |
---|---|---|
mass temperature [°C] | 85 | 85 |
mold temperature [°C] | 180 | 170 |
insert temperature [°C] | - | 23 |
holding pressure [bar] | 300 | 400 |
heating time [s] | 40 | 40 |
injection speed [mm/s] | 15 | 15 |
Material Property | Qualification of the Material | ||
---|---|---|---|
EP 3162 EMG | XW 6640-1 | ||
fabrication process | specific heat capacity c | x | - |
reaction kinetic | x | x | |
viscosity | x | - | |
application | flow path | x | x |
insulation of the conductor | x | x | |
thermal conductivity a | - | x | |
thermal linear expansion ΔL | - | x | |
average of partial discharge | x | - | |
partial discharge inception/extinction voltage | x | - |
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Rösel, U.; Kneidl, M.; Drummer, D.; Franke, J. Possibilities of Integrated Fabrication of Insulation Systems in Electric Drives by Injection Molding of Thermosets. Polymers 2022, 14, 5352. https://doi.org/10.3390/polym14245352
Rösel U, Kneidl M, Drummer D, Franke J. Possibilities of Integrated Fabrication of Insulation Systems in Electric Drives by Injection Molding of Thermosets. Polymers. 2022; 14(24):5352. https://doi.org/10.3390/polym14245352
Chicago/Turabian StyleRösel, Uta, Maximilian Kneidl, Dietmar Drummer, and Jörg Franke. 2022. "Possibilities of Integrated Fabrication of Insulation Systems in Electric Drives by Injection Molding of Thermosets" Polymers 14, no. 24: 5352. https://doi.org/10.3390/polym14245352
APA StyleRösel, U., Kneidl, M., Drummer, D., & Franke, J. (2022). Possibilities of Integrated Fabrication of Insulation Systems in Electric Drives by Injection Molding of Thermosets. Polymers, 14(24), 5352. https://doi.org/10.3390/polym14245352