50 results on '"Kvasničáková, Andrea"'
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2. Sulfur and peroxide curing of NBR based rubber compounds filled with kraft lignin and calcium lignosulfonate
3. Sulfur and Peroxide Vulcanization of Rubber Compounds Based on SBR, EPDM and Their Combinations
4. The Electrical Conductivity, EMI Absorption Shielding Performance, Curing Process, and Mechanical Properties of Rubber Composites
5. Electrical Conductivity, EMI Absorption Shielding Performance, Curing Process and Mechanical Properties of Rubber Composites
6. Analysis of selected magnetic characteristics of Europium substituted LiZnTi spinel ferrites
7. Sulfur and Peroxide Vulcanization of the Blends Based on Styrene–Butadiene Rubber, Ethylene–Propylene–Diene Monomer Rubber and Their Combinations.
8. Peroxide curing systems applied for cross-linking of rubber compounds based on SBR
9. Electromagnetic absorption shielding effectiveness and physical‐mechanical properties of rubber composites
10. Cross-Linking of Rubber Matrices with Dicumyl Peroxide and Zinc Dimethacrylate. Part I: Effect of Co-Agent Content
11. Cross-Linking of Rubber Matrices with Dicumyl Peroxide and Zinc Dimethacrylate. Part II: Effect of Peroxide Content
12. Rubber Magnetic Composites Cross-Linked with Peroxide Curing Systems
13. Electromagnetic absorption shielding effectiveness and physical‐mechanical properties of rubber composites.
14. Combined Sulfur and Peroxide Vulcanization of Filled and Unfilled EPDM-Based Rubber Compounds
15. Curing, Properties and EMI Absorption Shielding of Rubber Composites Based on Ferrites and Carbon Fibres
16. Application of Plasticizer Glycerol in Lignosulfonate-Filled Rubber Compounds Based on SBR and NBR
17. Calcium-Lignosulfonate-Filled Rubber Compounds Based on NBR with Enhanced Physical–Mechanical Characteristics
18. Influence of Mixed Sulfur and Peroxide Curing Systems on Cross‐Linking and Properties of Rubber Compounds Based on EPDM
19. Influence of curing system composition and aging on the performance of rubber magnets based on NBR and EPDM
20. Influence of curing system composition and aging on the performance of rubber magnets based on NBR and EPDM
21. Electromagnetic absorption characteristics of manganese-zinc ferrite and multiwalled carbon nanotube-filled composites based on NBR
22. Application of Sulfur and Peroxide Curing Systems for Cross-Linking of Rubber Composites Filled with Calcium Lignosulfonate
23. Influence of curing system composition and aging on the performance of rubber magnets based on NBR and EPDM.
24. The effect of temperature and peroxides content on cross-linking and properties of EPDM-based rubber matrix
25. ELECTROMAGNETIC ABSORPTION CHARACTERISTICS OF MANGANESE–ZINC FERRITE AND MULTIWALLED CARBON NANOTUBE–FILLED COMPOSITES BASED ON NBR
26. Mechanical, Thermal, Electrical Characteristics and EMI Absorption Shielding Effectiveness of Rubber Composites Based on Ferrite and Carbon Fillers
27. Mechanical, thermal, electrical characteristics and emi absorption shielding effectiveness of rubber composites based on ferrite and carbon fillers
28. Electromagnetic interference shielding and physical‐mechanical characteristics of rubber composites filled with manganese‐zinc ferrite and carbon black
29. Cross-linking, mechanical, dynamical, and EMI absorption shielding effectiveness of NBR based composites filled with combination on ferrite and carbon based fillers
30. Influence of combined sulfur and peroxide curing systems and ageing on the properties of rubber magnets
31. Rubber Composites Able to Efficiently Shield the Electromagnetic Radiation
32. Cross‐linking, mechanical, dynamical, and EMI absorption shielding effectiveness of NBR based composites filled with combination on ferrite and carbon based fillers
33. Electromagnetic Interference Shielding and Physical-Mechanical Characteristics of Rubber Composites Filled with Manganese-Zinc Ferrite and Carbon Black
34. Rheological Properties and Fillers Dispersion State in the Elastomer Magnetic Composites
35. Influence of Combined Sulfur and Peroxide Curing Systems and Ageing on the Properties of Rubber Magnets
36. Progress in polymers and polymer composites used as efficient materials for EMI shielding
37. Combined sulfur and peroxide curing systems applied in cross-linking of rubber magnets
38. Combined sulfur and peroxide curing systems applied in cross-linking of rubber magnets
39. Low frequency electromagnetic shielding efficiency of composites based on ethylene propylene diene monomer and multi‐walled carbon nanotubes
40. Influence of dicumyl peroxide and Type I and II co-agents on cross-linking and physical–mechanical properties of rubber compounds based on NBR
41. Rubber magnets based on NBR and lithium ferrite with the ability to absorb electromagnetic radiation
42. Combined sulfur and peroxide curing systems applied in cross-linking of rubber magnets.
43. Rubber magnetic composites cross-linked with peroxide curing systems
44. Rubber magnets cured with peroxide and coagents
45. Rubber magnets cured with peroxide and coagents
46. Magnetic composites based on NR and strontium ferrite
47. Application of Peroxide Curing Systems in Cross-Linking of Rubber Magnets Based on NBR and Barium Ferrite
48. Rubber magnets cured with peroxide and coagents.
49. Thermo-oxidative stability of rubber magnetic composites cured with sulfur, peroxide and mixed curing systems
50. Progress in polymers and polymer composites used as efficient materials for EMI shielding.
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