Pizzi et al., 2017 - Google Patents
A Novel Tank Heater Based on PTC (Positive Temperature Coefficient) Plastic NanomaterialPizzi et al., 2017
- Document ID
- 166955599978129736
- Author
- Pizzi M
- Zorzetto M
- Barbano A
- Merlano P
- Vercellotti L
- Publication year
External Links
Snippet
The emission reduction in gasoline and diesel engines is driving the introduction of systems implementing additives in liquid form: in particular water for injection systems in gasoline engines and urea solutions (AD-blue) in SCR (Selective Catalytic Reduction) systems in …
- 239000004033 plastic 0 title abstract description 16
Similar Documents
Publication | Publication Date | Title |
---|---|---|
Li et al. | Scalable polymer nanocomposites with record high‐temperature capacitive performance enabled by rationally designed nanostructured inorganic fillers | |
Wang et al. | High‐temperature flexible nanocomposites with ultra‐high energy storage density by nanostructured MgO fillers | |
Kausar | Thermally conducting polymer/nanocarbon and polymer/inorganic nanoparticle nanocomposite: A review | |
Wang et al. | Polymer nanocomposites for electrical energy storage | |
Jiang et al. | Multifunctional high‐density polyethylene nanocomposites produced by incorporation of exfoliated graphene nanoplatelets 2: Crystallization, thermal and electrical properties | |
Finegan et al. | Electrical conductivity of vapor-grown carbon fiber/thermoplastic composites | |
Shen et al. | Thermal conductivity model of filled polymer composites | |
Liu et al. | Universal Control on Pyroresistive Behavior of Flexible Self‐Regulating Heating Devices | |
Azizi et al. | Electrical and thermal phenomena in low‐density polyethylene/carbon black composites near the percolation threshold | |
KR20160067335A (en) | Composite Composition for Electromagnetic Wave Shielding and Heat Dissipation | |
Mallette et al. | Carbon black‐filled PET/HDPE blends: Effect of the CB structure on rheological and electric properties | |
Zhu et al. | Electrical conducting behaviors in polymeric composites with carbonaceous fillers | |
Veena et al. | Characterization of nanosilica‐filled epoxy composites for electrical and insulation applications | |
KR20150043733A (en) | System for controlling thermal conducivity of electronic parts housing | |
Pizzi et al. | A Novel Tank Heater Based on PTC (Positive Temperature Coefficient) Plastic Nanomaterial | |
Russo et al. | Thermal conductivity and dielectric properties of polypropylene‐based hybrid compounds containing multiwalled carbon nanotubes | |
Panwar et al. | Dielectric analysis of high‐density polyethylene‐graphite composites for capacitor and EMI shielding application | |
CN104576986A (en) | Structure for power electronic parts housing of vehicle | |
CN110785823B (en) | PTC-effect composite material, corresponding production method and heater device comprising such a material | |
Jiang et al. | Positive temperature coefficient properties of multiwall carbon nanotubes/poly (vinylidene fluoride) nanocomposites | |
Xu et al. | Enhancement in thermoelectric properties using a P‐type and N‐type thin‐film device structure | |
Yang et al. | Electrical properties of poly (phenylene sulfide)/multiwalled carbon nanotube composites prepared by simple mixing and compression | |
Yuan et al. | Improved thermal conductivity of ceramic filler‐filled polyamide composites by using PA6/PA66 1: 1 blend as matrix | |
Yang et al. | Electrical properties and morphology of carbon black‐filled HDPE/EVA composites | |
Cheewawuttipong et al. | Thermal conductivity of polypropylene composites with hybrid fillers of boron nitride and vapor‐grown carbon fiber |