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ศูนย์ข้อมูลและสารสนเทศเพื่อการบริหารองค์กรสู่ความเป็นเลิศ


ผลงานวิชาการอื่น ๆ

กรอง
ของ : กรรณิการ์ สหกะโร
ผลงานตีพิมพ์ (ฐาน HRMIS เจ้าของผลงานเป็นผู้บันทึก)
ลำดับรายละเอียดผลงาน
1Degradation during Mixing of Silica-Reinforced Natural Rubber Compounds
SITISAIYIDAH SAIWARI : 25% KANNIKA SAHAKARO : 25%,JACQUES W.M. NOORDERMEER : 5%,WISUT KAEWSAKUL : 5%,WILMA K. DIERKES : 10%,AMMARIN KRAIBUT : 30% (2024).
Materials, 17(2 Article ), 1-16. Quartile: Q1
2Dynamic response and molecular chain modifications associated with degradation during mixing of silica-reinforced natural rubber compounds
อัมรินทร์ ไกรบุตร : 30% SITISAIYIDAH SAIWARI : 15%,WISUT KAEWSAKUL : 5%,JACQUES W.M. NOORDERMEER : 10%,KANNIKA SAHAKARO : 25%,WILMA K. DIERKES : 15% (2023).
Polymers, 15(1 Article ), 1-16. Quartile: Q1
3Effect of Hybrid Carbon Black/Lignin on Rheological, Mechanical and Thermal Stability Properties of NR/BR Composites
NOR ANIZAH MOHAMAD AINI : 30% NADRAS OTHMAN : 30%,M. HAZWAN HUSSIN : 10%,KANNIKA SAHAKARO : 15%,NABIL HAYEEMASAE : 15% (2022).
Plastics, Rubber and Composites, 51(6), 293-305. Quartile: Q3
4Efficiency of Interaction Between Hybrid Fillers Carbon Black/Lignin with Various Rubber-based Compatibilizer, Epoxidized Natural Rubber, and Liquid Butadiene Rubber in NR/BR Composites: Mechanical, Flexibility and Dynamical Properties
NOR ANIZAH MOHAMAD AINI : 30% NADRAS OTHMAN : 30%,M. HAZWAN HUSSIN : 10%,KANNIKA SAHAKARO : 15%,NABIL HAYEEMASAE : 15% (2022).
Industrial Crops & Products , 185(115167), 1-11. Quartile: Q1
5Lignin as Green Filler in Polymer Composites: Development Methods, Characteristics, and Potential Applications
MUHAMMAD RASYIDUR RIDHO : 2% ERIKA AYU AGUSTIANY : 2%,MUSLIMATUL RAHMI DN : 2%,ELVARA WINDRA MADYARATRI : 2%,MUHAMMAD GHOZALI : 2%,WITTA KARTIKA RESTU RESTU : 2%,FAIZATUL FALAH : 2%,MUHAMMAD ADLY RAHANDI LUBIS : 2%,FIRDA AULYA SYAMANI : 2%,YEYEN NURHAMIYAH : 2%,SRI HIDAYATI : 2%,ASMA SOHAIL : 2%,PETRO KARUNGAMYE : 2%,DEDED SARIP NAWAWI : 2%,APRI HERI ISWANTO : 2%,NADRAS OTHMAN : 15%,NOR ANIZAH MOHAMAD AINI : 15%,M. HAZWAN HUSSIN : 5%,KANNIKA SAHAKARO : 10%,NABIL HAYEEMASAE : 10%,MUHAMMAD QASIM ALI : 2%,WIDYA FATRIASARI : 10% (2022).
Advances in Materials Science and Engineering, 2022(Article nu), 1-33. Quartile: Q3
6Elucidating the role of clay-modifier on the properties of silica- and silica/nanoclay-reinforced natural rubber tire compounds
KANNIKA SAHAKARO : 40% SUPPACHAI SATTAYANURAK : 30%,WISUT KAEWSAKUL : 10%,W.K. DIERKES : 5%,L.A.E.M. REUVEKAMP : 5%,A. BLUME : 5%,J.W.M. NOORDERMEER : 5% (2021).
EXPRESS POLYMER LETTERS, 15(7), 666-684. Quartile: Q1
7Enhancing performance of silica-reinforced natural rubber tire tread compounds by applying organoclay as secondary filler
KANNIKA SAHAKARO : 40% SUPPACHAI SATTAYANURAK : 30%,WISUT KAEWSAKUL : 10%,W.K. DIERKES : 5%,L.A.E.M. REUVEKAMP : 5%,A. BLUME : 5%,J.W.M. NOORDERMEER : 5% (2021).
RUBBER CHEMISTRY AND TECHNOLOGY, 94(1), 121-144. Quartile: Q3
8Modified Palm Stearin Compatibilized Natural Rubber/Halloysite Nanotubes Composites: Reinforcement versus Strain-induced Crystallization
NUREEYAH JEHSOH : 30% INDRA SURYA : 5%,KANNIKA SAHAKARO : 20%,HANAFI ISMAIL : 5%,NABIL HAYEEMASAE : 40% (2021).
JOURNAL OF ELASTOMERS AND PLASTICS, 53(3 Article ), 210-227. Quartile: Q3
9Better balance of silica-reinforced natural rubber tire tread compound properties by the use of montmorillonite with optimum surface modifier content
MOHAMMAD IRFAN FATHURROHMAN : 30% KANNIKA SAHAKARO : 40%,NABIL HAYEEMASAE : 25%,SUPAGORN RUGMAI : 5% (2020).
RUBBER CHEMISTRY AND TECHNOLOGY, 93(3), 548-566. Quartile: Q3
10Effect of Extraction Methods on the Molecular Structure and Thermal Stability of Kenaf (Hibiscus cannabinus core) Biomass as an Alternative Bio-filler for Rubber Composites
NADRAS OTHMAN : 30% NOR ANIZAH MOHAMAD AINI : 30%,M. HAZWAN HUSSIN : 10%,KANNIKA SAHAKARO : 15%,NABIL HAYEEMASAE : 15% (2020).
INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES, 154(-), 1255-1264. Quartile: Q1
11Improvement of silica-reinforced natural rubber tire tread compounds by joint hybridization with small amounts of secondary fillers and polymers
KANNIKA SAHAKARO : 40% SUPPACHAI SATTAYANURAK : 30%,WISUT KAEWSAKUL : 10%,W.K. DIERKES : 5%,L.A.E.M. REUVEKAMP : 5%,A. BLUME : 5%,J.W.M. NOORDERMEER : 5% (2020).
RUBBER CHEMISTRY AND TECHNOLOGY, 93(4), 652-671. Quartile: Q3
12Influence of Hydroxymethylated Lignin on Mechanical Properties and Payne Effect of NR/BR Compounds
NOR ANIZAH MOHAMAD AINI : 30% NADRAS OTHMAN : 30%,M. HAZWAN HUSSIN : 10%,KANNIKA SAHAKARO : 15%,NABIL HAYEEMASAE : 15% (2020).
Malaysian Journal of Analytical Sciences, 24(5), 810-819. Quartile: Q4
13Lignin as Alternative Reinforcing Filler in the Rubber Industry: A Review
NADRAS OTHMAN : 30% NOR ANIZAH MOHAMAD AINI : 30%,M. HAZWAN HUSSIN : 10%,KANNIKA SAHAKARO : 15%,NABIL HAYEEMASAE : 15% (2020).
FRONTIERS IN MATERIALS, 6(Article Nu), 1-18. Quartile: Q2
14Maleated Natural Rubber Compatibilized Natural Rubber/Halloysite Nanotubes Composites
NABIL HAYEEMASAE : 60% KANNIKA SAHAKARO : 25%,HANAFI ISMAIL : 15% (2020).
POLYMER-KOREA, 44(5), 596-602. Quartile: Q4
15Maleated Natural Rubber/Halloysite Nanotubes Composites
NABIL HAYEEMASAE : 40% ZAREEDAN SENSEM : 30%,KANNIKA SAHAKARO : 25%,HANAFI ISMAIL : 5% (2020).
PROCESSES, 8(3 Article ), 1-13. Quartile: Q2
16Mechanical and dynamical properties of natural rubber-montmorillonite nanocomposites by using in situ organomodified and latex compounding method
KANNIKA SAHAKARO : 50% MOHAMMAD IRFAN FATHURROHMAN : 30%,NABIL HAYEEMASAE : 20% (2020).
Macromolecular Symposia, 391(1 Article ), 1-5. Quartile: Q3
17Promoting the Strain-induced Crystallization of NR/HNT Composites through the Use of Modified Palm Stearin
NABIL HAYEEMASAE : 40% NUREEYAH JEHSOH : 35%,KANNIKA SAHAKARO : 25% (2020).
na, 2205(020059), 1-5. Quartile: Q4
18Properties of Unmodified and Modified Natural Rubber/Halloysite Nanotubes Composites
NABIL HAYEEMASAE : 60% KANNIKA SAHAKARO : 25%,HANAFI ISMAIL : 15% (2020).
AIP Conference Proceedings, 2267(020063), 1-4. Quartile: Q4
19Silica-reinforced natural rubber tire treads compounds containing bio-based process oils. I. Aspect of mixing sequence and oxygen oxirane content
KANNIKA SAHAKARO : 50% CHESIDI HAYICHELAEH : 30%,L.A.E.M. REUVEKAMP : 5%,W.K. DIERKES : 5%,A. BLUME : 5%,J.W.M. NOORDERMEER : 5% (2020).
RUBBER CHEMISTRY AND TECHNOLOGY, 93(2), 360-377. Quartile: Q3
20Silica-reinforced natural rubber tire treads compounds containing bio-based process oils. II. Influence of epoxide and amino functional groups
KANNIKA SAHAKARO : 50% CHESIDI HAYICHELAEH : 30%,L.A.E.M REUVEKAMP : 5%,W.K. DIERKES : 5%,ANKE BLUME : 5%,J.W.M. NOORDERMEER : 5% (2020).
RUBBER CHEMISTRY AND TECHNOLOGY, 93(1), 195-207. Quartile: Q3
21Synergistic effect by high specific surface area carbon black as secondary filler in silica reinforced natural rubber tire tread compounds
KANNIKA SAHAKARO : 40% SUPPACHAI SATTAYANURAK : 30%,WISUT KAEWSAKUL : 10%,W.K. DIERKES : 5%,L.A.E.M. REUVEKAMP : 5%,A. BLUME : 5%,J.W.M. NOORDERMEER : 5% (2020).
POLYMER TESTING, 81(Article Nu), 1-10. Quartile: Q1
22Synergistic Effect of Maleated Natural Rubber and Modified Palm Stearin as Dual Compatibilizers in Composites Based on Natural Rubber and Halloysite Nanotubes
NABIL HAYEEMASAE : 40% ZAREEDAN SENSEM : 30%,KANNIKA SAHAKARO : 25%,INDRA SURYA : 2.5%,HANAFI ISMAIL : 2.5% (2020).
POLYMERS, 12(4 Article ), 1-14. Quartile: Q1
23Dispersion and properties of natural rubber-montmorillonite nanocomposites fabricated by novel in situ organomodified and latex compounding method
KANNIKA SAHAKARO : 40% MOHAMAD IRFAN FATHURROHMAN : 30%,SUPAGORN RUGMAI : 5%,NABIL HAYEEMASAE : 25% (2019).
Polymer Engineering and Science, 59(9), 1830-1839. Quartile: Q2
24Hybrid filler benefits: Improving silica-reinforced natural rubber based tire treads with hybrid fillers
SUPPACHAI SATTAYANURAK : 30% KANNIKA SAHAKARO : 30%,J.W.M. NOORDERMEER : 10%,WISUT KAEWSAKUL : 15%,W.K. DIERKES : 5%,A. BLUME : 5%,L.A.E.M. REUVEKAMP : 5% (2019).
na, 2019(11), 44-46.
25Hydroxymethylation-Modified Lignin and Its Effectiveness as a Filler in Rubber Composites
NADRAS OTHMAN : 30% NOR ANIZAH MOHAMAD AINI : 30%,M. HAZWAN HUSSIN : 10%,KANNIKA SAHAKARO : 15%,NABIL HAYEEMASAE : 15% (2019).
Processes, 7(5 Article ), 1-21. Quartile: Q2
26Silanization efficiency of silica/silane in dependence of amines in natural rubber-based tire compounds
KANNIKA SAHAKARO : 50% CHESIDI HAYICHELAEH : 25%,L.A.E.M. REUVEKAMP : 5%,W.K. DIERKES : 5%,A. BLUME : 5%,J.W.M. NOORDERMEER : 10% (2019).
na, 548(1), 1-8. Quartile: Q4
27Silica reinforced natural rubber: Synergistic effects by addition of small amounts of secondary fillers to silica-reinforced natural rubber tire tread compounds
KANNIKA SAHAKARO : 35% SUPPACHAI SATTAYANURAK : 30%,J.W.M. NOORDERMEER : 10%,W. KAEWSAKUL : 15%,W.K. DIERKES : 5%,A. BLUME : 5% (2019).
Advances in Materials Science and Engineering, 2019(Article ID), 1-8. Quartile: Q3
28Enhancing the silanization reaction of silica-silane system by different amines in model and practical silica-filled rubber compounds
KANNIKA SAHAKARO : 50% CHESIDI HAYICHELAEH : 25%,L.A.E.M. REUVEKAMP : 5%,W.K. DIERKES : 5%,A. BLUME : 5%,J.W.M. NOORDERMEER : 10% (2018).
Polymers, 10(6 Article), 1-16. Quartile: Q1
29Improvement of natural rubber-silica interaction by silane-grafting of the polymer
KANNIKA SAHAKARO : 40% J.W.M. NOORDERMEER : 10%,KARNDA SENGLOYLUAN : 40%,W.K. DIERKES : 5%,A. BLUME : 5% (2018).
na, 259(3), 17-21. Quartile: Q4
30Promoting interfacial compatibility of silica-reinforced natural rubber tire compounds by aliphatic amine
KANNIKA SAHAKARO : 50% CHESIDI HAYICHELAEH : 25%,L.A.E.M. REUVEKAMP : 5%,W.K. DIERKES : 5%,A. BLUME : 5%,J.W.M. NOORDERMEER : 10% (2018).
Rubber Chemistry and Technology, 91(2), 433-452. Quartile: Q2
31Reinforcement of natural rubber by silica/silane in dependence of different amine types
KANNIKA SAHAKARO : 45% CHESIDI HAYICHELAEH : 35%,LOUIS A.E.M. REUVAKAMP : 5%,ANKE BLUME : 5%,JACQUES W.M. NOORDERMEER : 10% (2017).
Rubber Chemistry and Technology, 90(4), 651-666. Quartile: Q3
32Silane grafted natural rubber and its compatibilization effect on silica-reinforced rubber tire compounds
KANNIKA SAHAKARO : 50% KARNDA SENGLOYLUAN : 35%,W.K. DIERKES : 5%,JACQUES W.M. NOORDERMEER : 10% (2017).
Express Polymer Letters, 11(12), 1003-1022. Quartile: Q1
33Compatibilization of silica-filled natural rubber compounds by combined effects of functionalized low molecular weight rubber and silane
KANNIKA SAHAKARO : 40% PRACHID SARAMOLEE : 35%,NATINEE LOPATTANANON : 15%,WILMA K. DIERKES : 5%,JACQUES W.M. NOORDERMEER : 5% (2016).
Journal of Elastomers and Plastics, 48(2), 145-163. Quartile: Q4
34Compatibilization of silica-filled natural rubber compounds by functionalized low molecular weight polymer
KANNIKA SAHAKARO : 40% PRACHID SARAMOLEE : 35%,NATINEE LOPATTANANON : 15%,WILMA K. DIERKES : 5%,JACQUES W.M. NOORDERMEER : 5% (2016).
Journal of Rubber Research, 19(1), 28-42. Quartile: Q4
35Factors influencing the flocculation process in silica-reinforced natural rubber compounds
KANNIKA SAHAKARO : 40% WISUT KAEWSAKUL : 45%,WILMA K. DIERKES : 5%,J.W.M. NOORDERMEER : 10% (2016).
JOURNAL OF ELASTOMERS AND PLASTICS, 48(5), 426-444. Quartile: Q4
36Mechanical properties and stability towards heat and UV irradiation of natural rubber/nanotitanium dioxide composites
KANNIKA SAHAKARO : 40% PORNSIRI TOH-AE : 35%,NATINEE LOPATTANANON : 20%,BANJA JUNHASAVASDIKUL : 5% (2016).
Procedia Chemistry, 19(1), 139-147.
37Reduced ethanol emissions by a combination of epoxidized natural rubber and silane coupling agent for silica-reinforced natural rubber-based tire treads
KANNIKA SAHAKARO : 50% KARNDA SENGLOYLUAN : 35%,WILMA K. DIERKES : 5%,J.W.M. NOORDERMEER : 10% (2016).
Rubber Chemistry and Technology, 89(3), 419-435. Quartile: Q3
38Reinforcement Efficiency of Silica in Dependence of Different Types of Silane Coupling Agents in Natural Rubber-based Tire Compounds
KANNIKA SAHAKARO : 50% KARNDA SENGLOYLUAN : 35%,WILMA K. DIERKES : 5%,JACQUES W.M. NOORDERMEER : 10% (2016).
KGK-Kautschuk Gummi Kunststoffe, 69(5), 44-53. Quartile: Q4
39Synergistic effects in silica-reinforced natural rubber compounds compatibilized by ENR in combination with different silane coupling agent types
KANNIKA SAHAKARO : 50% KARNDA SENGLOYLUAN : 35%,WILMA K. DIERKES : 5%,J.W.M. NOORDERMEER : 10% (2016).
Journal of Rubber Research, 19(3), 170-189. Quartile: Q4
40A review on reinforcement of natural rubber by silica fillers for use in low-rolling resistance tyres.
SALINA SARKAWI : 30% WISUT KAEWSAKUL : 35%,KANNIKA SAHAKARO : 25%,WILMA K. DIERKES : 5%,JACQUES W.M. NOORDERMEER : 5% (2015).
Journal of Rubber Research, 18(4), 203-233. Quartile: Q4
41Mechanistic aspects of silane coupling agents with different functionalities on reinforcement of silica-filled natural rubber compounds
KANNIKA SAHAKARO : 40% WISUT KAEWSAKUL : 45%,WILMA K. DIERKES : 5%,J.W.M. NOORDERMEER : 10% (2015).
na, 55(4), 836-842. Quartile: Q2
42Petroleum-based safe process oils in NR and NR/SBR blends: Part III. Effects of oil types and contents on the properties of carbon black filled compounds
KANNIKA SAHAKARO : 45% ANIDA PETCHKAEW : 25%,WILMA K. DIERKES : 5%,J.W.M. NOORDERMEER : 15% (2015).
KGK-Kautschuk Gummi Kunststoffe, 68(9), 20-29. Quartile: Q4
43Photocatalyic activity and properties of nanotitanium dioxide-filled natural rubber in the presence of coupling agents
KANNIKA SAHAKARO : 35% PORNSIRI TOH-AE : 40%,NATINEE LOPATTANANON : 20%,BANJA JUNHASAVASDIKUL : 5% (2015).
na, 659(2015), 474-478. Quartile: Q3
44Comparative properties of silica- and carbon black-reinforced natural rubber in the presence of epoxidized low molecular weight polymer
KANNIKA SAHAKARO : 40% PRACHID SARAMOLEE : 35%,NATINEE LOPATTANANON : 15%,WILMA K. DIERKES : 5%,J.W.M. NOORDERMEER : 5% (2014).
na, 87(2), 320-339.
45Cooperative effects of epoxide functional groups on natural rubber and silane coupling agents on reinforcing efficiency of silica
KANNIKA SAHAKARO : 45% WISUT KAEWSAKUL : 40%,WILMA K. DIERKES : 5%,J.W.M. NOORDERMEER : 10% (2014).
na, 87(2), 291-310.
46Optimization of Epoxidation Degree and Silane Coupling Agent Content for Silica-Filled Epoxidized Natural Rubber Tire Tread Compounds
KANNIKA SAHAKARO : 35% WISUT KAEWSAKUL : 45%,WILMA K. DIERKES : 5%,J.W.M. NOORDERMEER : 15% (2014).
Advanced Materials Research , 844(-), 243-246.
47Preparation and Some Properties of Modified Natural Rubber Bearing Grafted Poly(methyl methacrylate) and Epoxide Groups
KANNIKA SAHAKARO : 45% PRACHID SARAMOLEE : 40%,NATINEE LOPATTANANON : 15% (2014).
European Polymer Journal, 56(-), 1-10.
48Property Enhancement of Silica-filled Natural Rubber Compatibilized with Epoxidized Low Molecular Weight Rubber by Extra Sulfur
KANNIKA SAHAKARO : 40% PRACHID SARAMOLEE : 35%,NATINEE LOPATTANANON : 15%,WILMA K. DIERKES : 5%,J.W.M. NOORDERMEER : 5% (2014).
Advanced Materials Research , 844(-), 235-238.
49Silica-reinforced natural rubber compounds compatibilized through the use epoxide functional groups and TESPT combination
KANNIKA SAHAKARO : 45% KARNDA SENGLOYLUAN : 40%,J.W.M. NOORDERMEER : 15% (2014).
Advanced Materials Research , 844(-), 272-275.
50Silica-Reinforced Tire Tread Compounds Compatibilized by Using Epoxidized Natural Rubber
KANNIKA SAHAKARO : 40% KARNDA SENGLOYLUAN : 40%,WILMA K. DIERKES : 5%,J.W.M. NOORDERMEER : 15% (2014).
European Polymer Journal, 51(2), 69-79.
51Surface Modification of TiO2 Nanoparticles by Grafting with Silane Coupling Agent
KANNIKA SAHAKARO : 40% PORNSIRI TOH-AE : 35%,BANJA JUNHASAVASDIKUL : 5%,NATINEE LOPATTANANON : 20% (2014).
Advanced Materials Research , 844(-), 276-279.
52Use of Disulfide-based Silane Coupling Agents with Compensation of Sulfur in Silica-Reinforced Natural Rubber Compounds
KANNIKA SAHAKARO : 40% WISUT KAEWSAKUL : 40%,WILMA K. DIERKES : 5%,J.W.M. NOORDERMEER : 15% (2014).
KGK-Kautschuk Gummi Kunststoffe, 67(5), 33-39.
53Verification of Interactions between Silica and Epoxidized Squalene as a Model for Epoxidized Natural Rubber
KANNIKA SAHAKARO : 45% WISUT KAEWSAKUL : 40%,WILMA K. DIERKES : 5%,J.W.M. NOORDERMEER : 10% (2014).
Journal of Rubber Research, 17(3), 129-142.
54Alternative secondary accelerator for silica-filled natural rubber formulations
WISUT KAEWSAKUL : 40% KANNIKA SAHAKARO : 35%,WILMA K. DIERKES : 5%,J.W.M. NOORDERMEER : 20% (2013).
Kautschuk Gummi Kunststoffe, 66(9), 33-38.
55Comparison of properties of admicellar polymerization surface modified silica- and conventional fillers-reinforced tire tread compounds
KANNIKA SAHAKARO : 50% PORNSIRI TOH-AE : 30%,NATINEE LOPATTANANON : 15%,THIRAWUDH PONGPRAYOON : 5% (2013).
Asian Journal of Chemistry, 25(9), 5226-5232.
56Optimization of Rubber Formulation for Silica-Reinforced Natural Rubber Compounds
KANNIKA SAHAKARO : 40% WISUT KAEWSAKUL : 40%,WILMA K. DIERKES : 5%,J.W.M. NOORDERMEER : 15% (2013).
Rubber Chemistry and Technology, 86(2), 313-329.
57Petroleum-based Safe Process Oils in NR, SBR and their Blends: Study on Unfilled Compounds. Part I. Oil Characteristics and Solubility Aspects
ANIDA PETCHKAEW : 35% KANNIKA SAHAKARO : 45%,J.W.M. NOORDERMEER : 20% (2013).
Kautschuk Gummi Kunststoffe, 66(4), 43-47.
58Petroleum-based Safe Process Oils in NR, SBR and their Blends: Study on Unfilled Compounds. Part II. Properties
ANIDA PETCHKAEW : 35% KANNIKA SAHAKARO : 45%,J.W.M. NOORDERMEER : 20% (2013).
Kautschuk Gummi Kunststoffe, 66(5), 21-27.
59Petroleum-based Safe Process Oils: Solubility Aspect and their Influence on the Properties of Unfilled NR, SBR and their Blends
ANIDA PETCHKAEW : 30% KANNIKA SAHAKARO : 50%,J.W.M. NOORDERMEER : 20% (2013).
na, 154(-), 66-70.
60Silica-Reinforced Natural Rubber with Epoxidized Low Molecular Weight Rubber as a Compatibilizer
KANNIKA SAHAKARO : 40% PRACHID SARAMOLEE : 35%,NATINEE LOPATTANANON : 15%,WILMA K. DIERKES : 5%,J.W.M. NOORDERMEER : 5% (2013).
Advanced Materials Research, 747(-), 522-525.
61Influence of epoxide level and reactive blending on properties of epoxidized natural rubber and nylon-12 blends
CHAROEN NAKASON : 40% KANNIKA SAHAKARO : 10%,MASWANEE NARATHICHAT : 30%,NORBERT VENNEMANN : 10%,CLAUDIA KUMMERLOWE : 10% (2012).
Advances in Polymer Technology, 31(2), 118-129.
62Optimization of mixing conditions for silica-reinforced natural rubber tire tread compounds
WISUT KAEWSAKUL : 40% KANNIKA SAHAKARO : 35%,WILMA K. DIERKES : 5%,J.W.M. NOORDERMEER : 20% (2012).
Rubber Chemistry and Technology, 85(2), 277-294.
63Epoxidized natural oils as the alternative safe process oils in rubber compounds
KANNIKA SAHAKARO : 80% AMNUWA BERAHENG : 20% (2011).
Rubber Chemistry and Technology, 84(2), 200-214.
64Mechanical, dynamic and swelling properties of NR/EPDM blends
KANNIKA SAHAKARO : 65% KARNDA SENGLOYLUAN : 25%,J.W.M. NOORDERMEER : 10% (2011).
na, 6(2), 108-113.
65การใช้น้ำมันปาล์มอิพอกซิไดซ์และน้ำมันถั่วเหลืองอิพอกซิไดซ์ทดแทนน้ำมันอะโรมาติกในสูตรยางคอมปาวด์ที่ใช้สารตัวเติมเขม่าดำ
กรรณิการ์ สหกะโร : 80% อัมนูวา บือราเฮง : 20% (2011).
na, 6(1), 45-58.
66Assessment degradation of natural rubber by moving die processability test and FTIR spectroscopy
CHAROEN NAKASON KANNIKA SAHAKARO,MASSAVANEE NARATHICHART (2010).
Journal of Applied Polymer Science , 115(3), 1702-1709.
67Influence of Reaction Volume on the Properties of Natural Rubber-g-Methyl Methacrylate
CHAROEN NAKASON : 40% KANNIKA SAHAKARO : 15%,AZIZON KAESAMAN : 15%,EKVIPOO KARNKORNSURAPRANEE : 30% (2010).
Journal of Elastomers and Plastics, 42(1), 17-34.
68Mechanische, dynamische und Quelleigenschaften von NR/EPDM-Verschnitten
KANNIKA SAHAKARO : 65% KARNDA SENGLOYLUAN : 25%,JACQUES W.M. NOORDERMEER : 10% (2010).
GAK - Gummi Fasern Kunststoffe, 63(12), 775-781.
69เงื่อนไขการแปรรูปที่เหมาะสมสำหรับสูตรยางธรรมชาติเสริมแรงด้วยซิลิกา
กรรณิการ์ สหกะโร : 60% ณฐินี โล่ห์พัฒนานนท์ : 20%,ซาฟาอี ซีเดะ : 20% (2010).
na, 5(1), 49-60.
70From a Laboratory to a Pilot Scale Production of Natural Rubber grafted with PMMA
KANNIKA SAHAKARO : 40% CHAROEN NAKASON : 30%,AZIZON KAESAMAN : 15%,EKWIPOO KALKORNSURAPRANEE : 15% (2009).
Journal of Applied Polymer Science, 114(1), 587-597.
71การใช้สารตัวเติมซิลิการ่วมกับเขม่าดำในสูตรดอกยางรถยนต์
กรรณิการ์ สหกะโร : 80% นิตา สุพรรณชนะบุรี : 20% (2009).
วิจัยยางพารา เล่มที่ 4 โครงการวิจัยแห่งชาติ: ยางพารา ฝ่ายอุตสาหกรรม, 4(1), 41-52.
72ยางธรรมชาติต้านการเสื่อมจากยางธรรมชาติเบลนด์กับยางอีพีดีเอ็มเมื่อใช้สารตัวเติมซิลิกา
กรรณิการ์ สหกะโร : 80% นิรมล แซ่นุ่น : 20% (2009).
na, 4(1), 53-67.
73Blending of NR/BR/EPDM by reactive processing for tire sidewall applications. I. Preparation, cure characteristics and mechanical properties.
KANNIKA SAHAKARO NITYANANDA NASKAR,RABIN N. DATTA,JACQUES W. M. NOORDERMEER
na
74Blending of NR/BR/EPDM by reactive processing for tire sidewall applications. II. Characterization.
KANNIKA SAHAKARO AUKE G. TALMA,RABIN N. DATTA,JACQUES W. M. NOORDERMEER
na
75Blending of NR/BR/EPDM by reactive processing for tire sidewall applications. III. Assessment of the blend ozone- and fatigue-resistance in comparison with a conventional NR/BR compound.
KANNIKA SAHAKARO RABIN N. DATTA,JOHAN BAAIJ,JACQUES W. M. NOORDERMEER
na
76Effect of different types of peroxides on rheological, mechanical, and morphological properties of thermoplastic vulcanizates based on natural rubber/polypropylene blends
CHAROEN NAKASON KANNIKA SAHAKARO,ANOMA THITITHAMMAWONG,JWM NOORDERMEER
na
77Improved mechanical properties of NR/EPDM blends by controlling the migration of curative and filler via reactive processing technique
KANNIKA SAHAKARO CHARARAT PONGPAIBOON,CHAROEN NAKASON
na
78Improving the mechanical properties of ENR/NBR blends via masterbatches with initial accelerator concentration gradients.
KANNIKA SAHAKARO NETCHANOK PANTUPON
na
79Influences of Phenolic Curative on Crosslink Density and Other Related Properties of Dynamically Cured NR/HDPE Blends
CHAROEN NAKASON KANNIKA SAHAKARO,WORAWAN PECHURAI
na
80NR/PP thermoplastic vulcanizates: Selection of optimal peroxide type and concentration in relation to mixing conditions
CHAROEN NAKASON ANOMA THITITHAMMAWONG,KANNIKA SAHAKARO,JWM NOORDERMEER
na
81Reactive blending, reinforcement and curing of NR/BR/EPDM compounds for tire sidewall applications
KANNIKA SAHAKARO N. NASKAR,R.N. DATTA,J.W.M. NOORDERMEER
na
82Reaktives Mischen, Verstarken und Vernetzen von NR/BR/EPDM fur Reifenseitenwande
KANNIKA SAHAKARO N. NASKAR,R. N. DATTA,J.W.M. NOORDERMEER
na
83Reinforcement of maleated natural rubber with precipitated silica
KANNIKA SAHAKARO SUMSURIYA BERAHENG
na
84Thermoplastic natural rubber based on oil extended NR and HDPE blends: Blend compatibilizer, phase inversion composition and mechanical properties
CHAROEN NAKASON KANNIKA SAHAKARO,WORAWAN PECHAURAI
na
85Thermoplastic vulcanizates based on epoxidized natural rubber/polypropylene blends: Selection of optimal peroxide type and concentration in relation to mixing conditions
CHAROEN NAKASON KANNIKA SAHAKARO,ANOMA THITITHAMMAWONG,JWM NOORDERMEER
na
รวม 85 รายการ

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