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1Kraibut, A., Kaewsakul, W., Sahakaro, K., Saiwari, S., Noordermeer, JWM. and Dierkes, WK. (2024). Degradation during Mixing of Silica-Reinforced Natural Rubber Compounds. MATERIALS, 17(2)
Cited: 0 doi: https://doi.org/10.3390/ma17020341
2Kraibut, A., Saiwari, S., Kaewsakul, W., Noordermeer, JWM., Sahakaro, K. and Dierkes, WK. (2023). Dynamic Response and Molecular Chain Modifications Associated with Degradation during Mixing of Silica-Reinforced Natural Rubber Compounds. POLYMERS, 15(1)
Cited: 1 doi: https://doi.org/10.3390/polym15010160
3Aini, NAM., Othman, N., Hussin, MH., Sahakaro, K. and Hayeemasae, N. (2022). Effect of hybrid carbon black/lignin on rheological, mechanical and thermal stability properties of NR/BR composites. PLASTICS RUBBER AND COMPOSITES, 51(6), 293-305.
Cited: 7 doi: https://doi.org/10.1080/14658011.2021.1981718
4Aini, NAM., Othman, N., Hussin, MH., Sahakaro, K. and Hayeemasae, N. (2022). Efficiency 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. INDUSTRIAL CROPS AND PRODUCTS, 185
Cited: 13 doi: https://doi.org/10.1016/j.indcrop.2022.115167
5Ridho, MR., Agustiany, EA., Dn, MR., Madyaratri, EW., Ghozali, M., Restu, WK., Falah, F., Lubis, MAR., Syamani, FA., Nurhamiyah, Y., Hidayati, S., Sohail, A., Karungamye, P., Nawawi, DS., Iswanto, AH., Othman, N., Aini, NAM., Hussin, MH., Sahakaro, K., Hayeemasae, N., Ali, MQ. and Fatriasari, W. (2022). Lignin as Green Filler in Polymer Composites: Development Methods, Characteristics, and Potential Applications. ADVANCES IN MATERIALS SCIENCE AND ENGINEERING, 2022
Cited: 39 doi: https://doi.org/10.1155/2022/1363481
6Sattayanurak, S., Sahakaro, K., Kaewsakul, W., Dierkes, WK., Reuvekamp, LAEM., Blume, A. and Noordermeer, JWM. (2021). Elucidating the role of clay-modifier on the properties of silica- and silica/nanoclay-reinforced natural rubber tire compounds. EXPRESS POLYMER LETTERS, 15(7), 666-684.
Cited: 2 doi: https://doi.org/10.3144/expresspolymlett.2021.56
7Sattayanurak, S., Sahakaro, K., Kaewsakul, W., Dierkes, WK., Reuvekamp, LAEM., Blume, A. and Noordermeer, JWM. (2021). ENHANCING PERFORMANCE OF SILICA-REINFORCED NATURAL RUBBER TIRE TREAD COMPOUNDS BYAPPLYING ORGANOCLAYAS SECONDARY FILLER. RUBBER CHEMISTRY AND TECHNOLOGY, 94(1), 121-144.
Cited: 5 doi: https://doi.org/10.5254/rct.20.80373
8Jehsoh, N., Surya, I., Sahakaro, K., Ismail, H. and Hayeemasae, N. (2021). Modified palm stearin compatibilized natural rubber/halloysite nanotubes composites: Reinforcement versus strain-induced crystallization. JOURNAL OF ELASTOMERS AND PLASTICS, 53(3), 210-227.
Cited: 6 doi: https://doi.org/10.1177/0095244320928573
9Fathurrohman, MI., Rugmai, S., Hayeemasae, N. and Sahakaro, K. (2020). BETTER BALANCE OF SILICA-REINFORCED NATURAL RUBBER TIRE TREAD COMPOUND PROPERTIES BY THE USE OF MONTMORILLONITE WITH OPTIMUM SURFACE MODIFIER CONTENT. RUBBER CHEMISTRY AND TECHNOLOGY, 93(3), 548-566.
Cited: 6 doi: https://doi.org/10.5254/rct.20.80407
10Aini, NAM., Othman, N., Hussin, MH., Sahakaro, K. and Hayeemasae, N. (2020). Effect of extraction methods on the molecular structure and thermal stability of kenaf (Hibiscus cannabinus core) biomass as an alternative bio-filler for rubber composites. INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES, 154, 1255-1264.
Cited: 10 doi: https://doi.org/10.1016/j.ijbiomac.2019.10.280
11Sattayanurak, S., Sahakaro, K., Kaewsakul, W., Dierkes, WK., Reuvekamp, LAEM., Blume, A. and Noordermeer, JWM. (2020). IMPROVEMENT OF SILICA-REINFORCED NATURAL RUBBER TIRE TREAD COMPOUNDS BY JOINT HYBRIDIZATION WITH SMALL AMOUNTS OF SECONDARY FILLERS AND POLYMERS. RUBBER CHEMISTRY AND TECHNOLOGY, 93(4), 652-671.
Cited: 3 doi: https://doi.org/10.5254/rct.20.79962
12Aini, NAM., Othman, N., Hussin, MH., Sahakaro, K. and Hayeemasae, N. (2020). Lignin as Alternative Reinforcing Filler in the Rubber Industry: A Review. FRONTIERS IN MATERIALS, 6
Cited: 64 doi: https://doi.org/10.3389/fmats.2019.00329
13Hayeemasae, N., Sahakaro, K. and Ismail, H. (2020). Maleated Natural Rubber Compatibilized Natural Rubber/Halloysite Nanotubes Composites. POLYMER-KOREA, 44(5), 596-602.
Cited: 1 doi: https://doi.org/10.7317/pk.2020.44.5.596
14Hayeemasae, N., Sensem, Z., Sahakaro, K. and Ismail, H. (2020). Maleated Natural Rubber/Halloysite Nanotubes Composites. PROCESSES, 8(3)
Cited: 11 doi: https://doi.org/10.3390/pr8030286
15Fathurrohman, MI., Hayeemasae, N. and Sahakaro, K. (2020). Mechanical and Dynamical Properties of Natural Rubber-Montmorillonite Nanocomposites by Using In Situ Organomodified and Latex Compounding Method. MACROMOLECULAR SYMPOSIA, 391(1)
Cited: 2 doi: https://doi.org/10.1002/masy.201900130
16Hayeemasae, N., Jehsoh, N. and Sahakaro, K. (2020). Promoting the Strain-induced Crystallization of NR/HNT Composites through the Use of Modified Palm Stearin. PROCEEDINGS OF THE 35TH INTERNATIONAL CONFERENCE OF THE POLYMER PROCESSING SOCIETY (PPS-35), 2205
Cited: 0 doi: https://doi.org/10.1063/1.5142974
17Hayeemasae, N., Sahakaro, K. and Ismail, H. (2020). Properties of Unmodified and Modified Natural Rubber/Halloysite Nanotubes Composites. 3RD INTERNATIONAL POSTGRADUATE CONFERENCE ON MATERIALS, MINERALS & POLYMER (MAMIP) 2019, 2267
Cited: 0 doi: https://doi.org/10.1063/5.0016132
18Hayichelaeh, C., Reuvekamp, LAEM., Dierkes, WK., Blume, A., Noordermeer, JWM. and Sahakaro, K. (2020). SILICA-REINFORCED NATURAL RUBBER TIRE TREAD COMPOUNDS CONTAINING BIO-BASED PROCESS OILS. I: ASPECTS OF MIXING SEQUENCE AND EPOXIDE CONTENT. RUBBER CHEMISTRY AND TECHNOLOGY, 93(2), 360-377.
Cited: 10 doi: https://doi.org/10.5254/rct.19.81462
19Hayichelaeh, C., Reuvekamp, LAEM., Dierkes, WK., Blume, A., Noordermeer, JWM. and Sahakaro, K. (2020). SILICA-REINFORCED NATURAL RUBBER TIRE TREAD COMPOUNDS CONTAINING BIO-BASED PROCESS OILS. II: INFLUENCE OF EPOXIDE AND AMINO FUNCTIONAL GROUPS. RUBBER CHEMISTRY AND TECHNOLOGY, 93(1), 195-207.
Cited: 11 doi: https://doi.org/10.5254/rct.19.81461
20Sattayanurak, S., Sahakaro, K., Kaewsakul, W., Dierkes, WK., Reuvekamp, LAEM., Blume, A. and Noordermeer, JWM. (2020). Synergistic effect by high specific surface area carbon black as secondary filler in silica reinforced natural rubber tire tread compounds. POLYMER TESTING, 81
Cited: 67 doi: https://doi.org/10.1016/j.polymertesting.2019.106173
21Hayeemasae, N., Sensem, Z., Surya, I., Sahakaro, K. and Ismail, H. (2020). Synergistic Effect of Maleated Natural Rubber and Modified Palm Stearin as Dual Compatibilizers in Composites based on Natural Rubber and Halloysite Nanotubes. POLYMERS, 12(4)
Cited: 14 doi: https://doi.org/10.3390/polym12040766
22Fathurrohman, MI., Rugmai, S., Hayeemasae, N. and Sahakaro, K. (2019). Dispersion and properties of natural rubber-montmorillonite nanocomposites fabricated by novel in situ organomodified and latex compounding method. POLYMER ENGINEERING AND SCIENCE, 59(9), 1830-1839.
Cited: 8 doi: https://doi.org/10.1002/pen.25183
23Aini, NAM., Othman, N., Hussin, MH., Sahakaro, K. and Hayeemasae, N. (2019). Hydroxymethylation-Modified Lignin and Its Effectiveness as a Filler in Rubber Composites. PROCESSES, 7(5)
Cited: 33 doi: https://doi.org/10.3390/pr7050315
24Sattayanurak, S., Noordermeer, JWM., Sahakaro, K., Kaewsakul, W., Dierkes, WK. and Blume, A. (2019). Silica-Reinforced Natural Rubber: Synergistic Effects by Addition of Small Amounts of Secondary Fillers to Silica-Reinforced Natural Rubber Tire Tread Compounds. ADVANCES IN MATERIALS SCIENCE AND ENGINEERING, 2019
Cited: 51 doi: https://doi.org/10.1155/2019/5891051
25Hayichelaeh, C., Reuvekamp, LAEM., Dierkes, WK., Blume, A., Noordermeer, JWM. and Sahakaro, K. (2018). Enhancing the Silanization Reaction of the Silica-Silane System by Different Amines in Model and Practical Silica-Filled Natural Rubber Compounds. POLYMERS, 10(6)
Cited: 38 doi: https://doi.org/10.3390/polym10060584
26Hayichelaeh, C., Reuvekamp, LAEM., Dierkes, WK., Blume, A., Noordermeer, JWM. and Sahakaro, K. (2018). PROMOTING INTERFACIAL COMPATIBILITY OF SILICA-REINFORCED NATURAL RUBBER TIRE COMPOUNDS BY ALIPHATIC AMINE. RUBBER CHEMISTRY AND TECHNOLOGY, 91(2), 433-452.
Cited: 14 doi: https://doi.org/10.5254/rct.18.81630
27Sahakaro, K. (2017). Mechanism of reinforcement using nanofillers in rubber nanocomposites. PROGRESS IN RUBBER NANOCOMPOSITES, 75, 81-113.
Cited: 22 doi: https://doi.org/10.1016/B978-0-08-100409-8.00003-6
28Hayichelaeh, C., Reuvekamp, LAEM., Dierkes, WK., Blume, A., Noordermeer, JWM. and Sahakaro, K. (2017). REINFORCEMENT OF NATURAL RUBBER BY SILICA/SILANE IN DEPENDENCE OF DIFFERENT AMINE TYPES. RUBBER CHEMISTRY AND TECHNOLOGY, 90(4), 651-666.
Cited: 20 doi: https://doi.org/10.5254/rct.82.83708
29Sengloyluan, K., Sahakaro, K., Dierkes, WK. and Noordermeer, JWM. (2017). Silane grafted natural rubber and its compatibilization effect on silica-reinforced rubber tire compounds. EXPRESS POLYMER LETTERS, 11(12), 1003-1022.
Cited: 19 doi: https://doi.org/10.3144/expresspolymlett.2017.95
30Saramolee, P., Sahakaro, K., Lopattananon, N., Dierkes, WK. and Noordermeer, JWM. (2016). Compatibilisation of Silica-filled Natural Rubber Compounds by Functionalised Low Molecular Weight Polymer. JOURNAL OF RUBBER RESEARCH, 19(1), 28-42.
Cited: 7
31Saramolee, P., Sahakaro, K., Lopattananon, N., Dierkes, WK. and Noordermeer, JWM. (2016). Compatibilization of silica-filled natural rubber compounds by combined effects of functionalized low molecular weight rubber and silane. JOURNAL OF ELASTOMERS AND PLASTICS, 48(2), 145-163.
Cited: 13 doi: https://doi.org/10.1177/0095244314568469
32Kaewsakul, W., Sahakaro, K., Dierkes, WK. and Noordermeer, JWM. (2016). Factors influencing the flocculation process in silica-reinforced natural rubber compounds. JOURNAL OF ELASTOMERS AND PLASTICS, 48(5), 426-441.
Cited: 12 doi: https://doi.org/10.1177/0095244315580456
33Toh-ae, P., Junhasavasdikul, B., Lopattananon, N. and Sahakaro, K. (2016). Mechanical properties and stability towards heat and UV irradiation of natural rubber/nanotitanium dioxide composites. 5TH INTERNATIONAL CONFERENCE ON RECENT ADVANCES IN MATERIALS, MINERALS AND ENVIRONMENT (RAMM) & 2ND INTERNATIONAL POSTGRADUATE CONFERENCE ON MATERIALS, MINERAL AND POLYMER (MAMIP), 19, 139-147.
Cited: 1 doi: https://doi.org/10.1016/j.proche.2016.03.001
34Sengloyluan, K., Sahakaro, K., Dierkes, WK. and Noordermeer, JWM. (2016). REDUCED ETHANOL EMISSIONS BY A COMBINATION OF EPDXIDIZED NATURAL RUBBER AND SILANE COUPLING AGENT FOR SILICA-REINFORCED NATURAL RUBBER-BASED TIRE TREADS. RUBBER CHEMISTRY AND TECHNOLOGY, 89(3), 419-435.
Cited: 24 doi: https://doi.org/10.5254/rct.16.84813
35Sengloyluan, K., Dierkes, WK., Noordermeer, JWM. and Sahakaro, K. (2016). Reinforcement Efficiency of Silica in Dependence of different Types of Silane Coupling Agents in Natural Rubber-based Tire Compounds. KGK-KAUTSCHUK GUMMI KUNSTSTOFFE, 69(5), 44-53.
Cited: 12
36Sengloyluan, K., Sahakaro, K., Dierkes, WK. and Noordermeer, JWM. (2016). Synergistic Effects in Silica-Reinforced Natural Rubber Compounds Compatibilised by ENR in Combination with Different Silane Coupling Agent Types. JOURNAL OF RUBBER RESEARCH, 19(3), 170-189.
Cited: 3
37Sarkawi, SS., Kaewsakul, W., Sahakaro, K., Dierkes, WK. and Noordermeer, JWM. (2015). A Review on Reinforcement of Natural Rubber by Silica Fillers for Use in Low-Rolling Resistance Tyres. JOURNAL OF RUBBER RESEARCH, 18(4), 203-233.
Cited: 30
38Kaewsakul, W., Sahakaro, K., Dierkes, WK. and Noordermeer, JWM. (2015). Mechanistic Aspects of Silane Coupling Agents With Different Functionalities on Reinforcement of Silica-Filled Natural Rubber Compounds. POLYMER ENGINEERING AND SCIENCE, 55(4), 836-842.
Cited: 83 doi: https://doi.org/10.1002/pen.23949
39Petchkaew, A., Sahakaro, K., Dierkes, WK. and Noordermeer, JWM. (2015). Petroleum-based Safe Process Oils in NR and NR/SBR Blends: Part Ill. Effects of Oil Types and Contents on the Properties of Carbon Black Filled Compounds. KGK-KAUTSCHUK GUMMI KUNSTSTOFFE, 68(9), 20-29.
Cited: 6
40Saramolee, P., Sahakaro, K., Lopattananon, N., Dierkes, WK. and Noordermeer, JWM. (2014). COMPARATIVE PROPERTIES OF SILICA- AND CARBON BLACK-REINFORCED NATURAL RUBBER IN THE PRESENCE OF EPOXIDIZED LOW MOLECULAR WEIGHT POLYMER. RUBBER CHEMISTRY AND TECHNOLOGY, 87(2), 320-339.
Cited: 25 doi: https://doi.org/10.5254/rct.13.86970
41Kaewsakul, W., Sahakaro, K., Dierkes, WK. and Noordermeer, JWM. (2014). COOPERATIVE EFFECTS OF EPOXIDE FUNCTIONAL GROUPS ON NATURAL RUBBER AND SILANE COUPLING AGENTS ON REINFORCING EFFICIENCY OF SILICA. RUBBER CHEMISTRY AND TECHNOLOGY, 87(2), 291-310.
Cited: 40 doi: https://doi.org/10.5254/RCT.13.86990
42Kaewsakul, W., Sahakaro, K., Dierkes, WK. and Noordermeer, JWM. (2014). Optimization of Epoxidation Degree and Silane Coupling Agent Content for Silica-Filled Epoxidized Natural Rubber Tire Tread Compounds. ADVANCES IN RUBBER, 844, 243-+.
Cited: 6 doi: https://doi.org/10.4028/www.scientific.net/AMR.844.243
43Saramolee, P., Lopattananon, N. and Sahakaro, K. (2014). Preparation and some properties of modified natural rubber bearing grafted poly(methyl methacrylate) and epoxide groups. EUROPEAN POLYMER JOURNAL, 56, 1-10.
Cited: 43 doi: https://doi.org/10.1016/j.eurpolymj.2014.04.008
44Saramolee, P., Sahakaro, K., Lopattananon, N., Dierkes, WK. and Noordermeer, JWM. (2014). Property Enhancement of Silica-filled Natural Rubber Compatibilized with Epoxidized Low Molecular Weight Rubber by Extra Sulfur. ADVANCES IN RUBBER, 844, 235-+.
Cited: 1 doi: https://doi.org/10.4028/www.scientific.net/AMR.844.235
45Sengloyluan, K., Sahakaro, K. and Noordermeer, JWM. (2014). Silica-Reinforced Natural Rubber Compounds Compatibilized Through the Use of Epoxide Functional Groups and TESPT Combination. ADVANCES IN RUBBER, 844, 272-+.
Cited: 4 doi: https://doi.org/10.4028/www.scientific.net/AMR.844.272
46Sengloyluan, K., Sahakaro, K., Dierkes, WK. and Noordermeer, JWM. (2014). Silica-reinforced tire tread compounds compatibilized by using epoxidized natural rubber. EUROPEAN POLYMER JOURNAL, 51, 69-79.
Cited: 161 doi: https://doi.org/10.1016/j.eurpolymj.2013.12.010
47Toh-ae, P., Junhasavasdikul, B., Lopattananon, N. and Sahakaro, K. (2014). Surface Modification of TiO2 Nanoparticles by Grafting with Silane Coupling Agent. ADVANCES IN RUBBER, 844, 276-+.
Cited: 10 doi: https://doi.org/10.4028/www.scientific.net/AMR.844.276
48Kaewsakul, W., Dierkes, WK., Noordermeer, JWM. and Sahakaro, K. (2014). Use of disulfide-based Silane Coupling Agents with Compensation of Sulfur in Silica-reinforced natural Rubber Compounds. KGK-KAUTSCHUK GUMMI KUNSTSTOFFE, 67(5), 33-39.
Cited: 1
49Kaewsakul, W., Sahakaro, K., Dierkes, WK. and Noordermeer, JWM. (2014). Verification of Interactions between Silica and Epoxidised Squalene as a Model for Epoxidised Natural Rubber. JOURNAL OF RUBBER RESEARCH, 17(3), 129-142.
Cited: 7
50Kaewsakul, W., Sahakaro, K., Dierkes, WK. and Noordermeer, JWM. (2013). Alternative Secondary Accelerator for Silica-Filled Natural Rubber Formulations. KGK-KAUTSCHUK GUMMI KUNSTSTOFFE, 66(9), 33-38.
Cited: 1
51Toh-Ae, P., Pongprayoon, T., Lopattananon, N. and Sahakaro, K. (2013). Comparison of Properties of Admicellar Polymerization Surface Modified Silica- and Conventional Fillers-Reinforced Tyre Tread Compounds. ASIAN JOURNAL OF CHEMISTRY, 25(9), 5226-5232.
Cited: 2 doi: https://doi.org/10.14233/ajchem.2013.F23
52Kaewsakul, W., Sahakaro, K., Dierkes, WK. and Noordermeer, JWM. (2013). OPTIMIZATION OF RUBBER FORMULATION FOR SILICA-REINFORCED NATURAL RUBBER COMPOUNDS. RUBBER CHEMISTRY AND TECHNOLOGY, 86(2), 313-329.
Cited: 41 doi: https://doi.org/10.5254/RCT.13.87970
53Petchkaew, A., Sahakaro, K. and Noordermeer, JWM. (2013). Petroleum-based Safe Process Oils in NR, SBR and their Blends: Study on Unfilled Compounds. Part I. Oil Characteristics and Solubility Aspects. KGK-KAUTSCHUK GUMMI KUNSTSTOFFE, 66(4), 43-47.
Cited: 11
54Petchkaew, A., Sahakaro, K. and Noordermeer, JWM. (2013). Petroleum-based Safe Process Oils in NR, SBR and their Blends: Study on Unfilled Compounds. Part II. Properties. KGK-KAUTSCHUK GUMMI KUNSTSTOFFE, 66(5), 21-27.
Cited: 14
55Saramolee, P., Sahakaro, K., Lopattananon, N., Dierkes, WK. and Noordermeer, JWM. (2013). Silica-Reinforced Natural Rubber with Epoxidized Low Molecular Weight Rubber as a Compatibilizer. MULTI-FUNCTIONAL MATERIALS AND STRUCTURES IV, 747, 522-+.
Cited: 2 doi: https://doi.org/10.4028/www.scientific.net/AMR.747.522
56Narathichat, M., Kummerl?we, C., Vennemann, N., Sahakaro, K. and Nakason, C. (2012). Influence of epoxide level and reactive blending on properties of epoxidized natural rubber and nylon-12 blends. ADVANCES IN POLYMER TECHNOLOGY, 31(2), 118-129.
Cited: 25 doi: https://doi.org/10.1002/adv.20243
57Kaewsakul, W., Sahakaro, K., Dierkes, WK. and Noordermeer, JWM. (2012). OPTIMIZATION OF MIXING CONDITIONS FOR SILICA-REINFORCED NATURAL RUBBER TIRE TREAD COMPOUNDS. RUBBER CHEMISTRY AND TECHNOLOGY, 85(2), 277-294.
Cited: 121 doi: https://doi.org/10.5254/rct.12.88935
58Sahakaro, K. and Beraheng, A. (2011). EPOXIDIZED NATURAL OILS AS THE ALTERNATIVE SAFE PROCESS OILS IN RUBBER COMPOUNDS. RUBBER CHEMISTRY AND TECHNOLOGY, 84(2), 200-214.
Cited: 39 doi: https://doi.org/10.5254/1.3577518
59Narathichat, M., Sahakaro, K. and Nakason, C. (2010). Assessment Degradation of Natural Rubber by Moving Die Processability Test and FTIR Spectroscopy. JOURNAL OF APPLIED POLYMER SCIENCE, 115(3), 1702-1709.
Cited: 31 doi: https://doi.org/10.1002/app.31194
60Kalkornsurapranee, E., Sahakaro, K., Kaesaman, A. and Nakason, C. (2010). Influence of Reaction Volume on the Properties of Natural Rubber-g-Methyl Methacrylate. JOURNAL OF ELASTOMERS AND PLASTICS, 42(1), 17-34.
Cited: 10 doi: https://doi.org/10.1177/0095244309345410
61Kalkornsurapranee, E., Sahakaro, K., Kaesaman, A. and Nakason, C. (2009). From a Laboratory to a Pilot Scale Production of Natural Rubber Grafted with PMMA. JOURNAL OF APPLIED POLYMER SCIENCE, 114(1), 587-597.
Cited: 21 doi: https://doi.org/10.1002/app.30529
62Sahakaro, K., Pongpaiboon, C. and Nakason, C. (2009). Improved Mechanical Properties of NR/EPDM Blends by Controlling the Migration of Curative and Filler via Reactive Processing Technique. JOURNAL OF APPLIED POLYMER SCIENCE, 111(4), 2035-2043.
Cited: 10 doi: https://doi.org/10.1002/app.29193
63Pechurai, W., Sahakaro, K. and Nakason, C. (2009). Influence of Phenolic Curative on Crosslink Density and Other Related Properties of Dynamically Cured NR/HDPE Blends. JOURNAL OF APPLIED POLYMER SCIENCE, 113(2), 1232-1240.
Cited: 22 doi: https://doi.org/10.1002/app.30036
64Thitithammawong, A., Nakason, C., Sahakaro, K. and Noordermeer, JWM. (2009). Multifunctional Peroxide as Alternative Crosslink Agents for Dynamically Vulcanized Epoxidized Natural Rubber/Polypropylene Blends. JOURNAL OF APPLIED POLYMER SCIENCE, 111(2), 819-825.
Cited: 12 doi: https://doi.org/10.1002/app.29129
65Sahakaro, K. and Pantupon, N. (2008). Improving the mechanical properties of ENR/NBR blends via masterbatches with initial accelerator concentration gradients. INTERNATIONAL POLYMER PROCESSING, 23(2), 140-145.
Cited: 1 doi: https://doi.org/10.3139/217.2020
66Sahakaro, K. and Beraheng, S. (2008). Reinforcement of maleated natural rubber by precipitated silica. JOURNAL OF APPLIED POLYMER SCIENCE, 109(6), 3839-3848.
Cited: 51 doi: https://doi.org/10.1002/app.28483
67Pechurai, W., Nakason, C. and Sahakaro, K. (2008). Thermoplastic natural rubber based on oil extended NR and HDPE blends: Blend compatibilizer, phase inversion composition and mechanical properties. POLYMER TESTING, 27(5), 621-631.
Cited: 34 doi: https://doi.org/10.1016/j.polymertesting.2008.04.001
68Thitithammawong, A., Nakason, C., Sahakaro, K. and Noordermeer, J. (2007). Effect of different types of peroxides on rheological, mechanical, and morphological properties of thermoplastic vulcanizates based on natural rubber/polypropylene blends. POLYMER TESTING, 26(4), 537-546.
Cited: 73 doi: https://doi.org/10.1016/j.polymertesting.2007.02.002
69Thitithammawong, A., Nakason, C., Sahakaro, K. and Noordermeer, JWM. (2007). NR/PP thermoplastic vulcanizates: Selection of optimal peroxide type and concentration in relation to mixing conditions. JOURNAL OF APPLIED POLYMER SCIENCE, 106(4), 2204-2209.
Cited: 29 doi: https://doi.org/10.1002/app.25935
70Lopattananon, N., Panawarangkul, K., Sahakaro, K. and Ellis, B. (2006). Performance of pineapple leaf fiber-natural rubber composites: The effect of fiber surface treatments. JOURNAL OF APPLIED POLYMER SCIENCE, 102(2), 1974-1984.
Cited: 148 doi: https://doi.org/10.1002/app.24584
71Nakason, C., Pechurai, W., Sahakaro, K. and Kaesaman, A. (2006). Rheological, thermal, and curing properties of natural rubber-g-poly(methyl methacrylate). JOURNAL OF APPLIED POLYMER SCIENCE, 99(4), 1600-1614.
Cited: 25 doi: https://doi.org/10.1002/app.22518
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