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ตาราง ผลงานตีพิมพ์ Scopus ของ ณัฐพงศ์ นิธิอุทัย
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1Chueangchayaphan N., Nithi-Uthai N., Techakittiroj K. and Manuspiya H. (2021). In-situ dielectric cure monitoring as a method of measuring the influence of cure temperature on natural rubber vulcanization. Polymer Bulletin, 78(6), 3169-3182.
Cited: 3 doi: https://doi.org/10.1007/s00289-020-03269-2
2Katueangngan K., Tulyapitak T., Saetung A., Soontaranon S. and Nithi-Uthai N. (2020). Interfacial Interactions of Silica and Natural Rubber Enhanced by Hydroxyl Telechelic Natural Rubber as Interfacial Modifier. Journal of Vinyl and Additive Technology, 26(3), 291-303.
Cited: 2 doi: https://doi.org/10.1002/vnl.21743
3Katueangngan K., Tulyapitak T., Saetung A., Soontaranon S. and Nithi-Uthai N. (2019). Improvement in the properties of silica-reinforced natural rubber with the sustainable interfacial modifier: Effect of molecular weight and content of interfacial modifier. Journal of Metals, Materials and Minerals, 29(4), 1-12.
Cited: 1 doi: https://doi.org/10.14456/jmmm.2019.41
4Teppinta W., Junhasavasdikul B. and Nithi-Uthai N. (2019). Properties of EPDM/PP thermoplastic vulcanizates produced by an intermeshing-type internal mixer comparing with a co-rotating twin-screw extruder. Journal of Polymer Engineering, 39(2), 143-151.
Cited: 0 doi: https://doi.org/10.1515/polyeng-2018-0162
5Chueangchayaphan N., Nithi-Uthai N., Techakittiroj K. and Manuspiya H. (2018). Evaluation of dielectric cure monitoring for in situ measurement of natural rubber vulcanization. Advances in Polymer Technology, 37(8), 3384-3391.
Cited: 3 doi: https://doi.org/10.1002/adv.22122
6Naebpetch W., Junhasavasdikul B., Saetung A., Tulyapitak T. and Nithi-Uthai N. (2017). Influence of filler type and loading on cure characteristics and vulcanisate properties of SBR compounds with a novel mixed vulcanisation system. Plastics, Rubber and Composites, 46(3), 137-145.
Cited: 6 doi: https://doi.org/10.1080/14658011.2017.1299419
7Naebpetch W., Nithi-Uthai N., Saetung A., Junhasavasdikul B. and Kaewsakul W. (2017). Utilisation of zinc dimethacrylate as coagent in sulfur-peroxide dual vulcanisation with different sulfur systems for styrene-butadiene rubber compounds. Journal of Rubber Research, 20(2), 71-86.
Cited: 0 doi: https://doi.org/10.1007/bf03449143
8Naebpetch W., Junhasavasdikul B., Saetung A., Tulyapitak T. and Nithi-Uthai N. (2016). Influence of accelerator/sulphur and co-agent/peroxide ratios in mixed vulcanisation systems on cure characteristics, mechanical properties and heat aging resistance of vulcanised SBR. Plastics, Rubber and Composites, 45(10), 436-444.
Cited: 5 doi: https://doi.org/10.1080/14658011.2016.1244029
9Issarayungyuen P., Nithi-Uthai N., Pichayakorn W. and Phaechamud T. (2014). Natural Rubber Latex foam loading with metronidazole. Advanced Materials Research, 844, 490-493.
Cited: 3 doi: https://doi.org/10.4028/www.scientific.net/AMR.844.490
10Teppinta W., Junhasavasdikul B. and Nithi-Uthai N. (2014). Processing of thermoplastic vulcanizates using high speed intermeshing-typed internal mixer: Influence of mixing patterns. Advanced Materials Research, 844, 117-121.
Cited: 2 doi: https://doi.org/10.4028/www.scientific.net/AMR.844.117
11Naebpetch W., Junhasavasdikul B., Saetung A., Tulyapitak T. and Nithi-Uthai N. (2014). The influence of zinc dimethacrylate on crosslink density, physical properties and heat aging resistance of sulfur vulcanized styrene butadiene rubber. Advanced Materials Research, 844, 45-48.
Cited: 2 doi: https://doi.org/10.4028/www.scientific.net/AMR.844.45
12Nithi-Uthai N. (2009). Extending fatigue life of McKibben artificial muscle actuators. The Minerals, Metals and Materials Society - 3rd International Conference on Processing Materials for Properties 2008, PMP III, 1, 453-456.
Cited: 4
13Nithi-Uthai N. and Manas-Zloczower I. (2003). Numerical simulation of sharkskin phenomena in polymer melts. Applied Rheology, 13(2), 79-86.
Cited: 4 doi: https://doi.org/10.1515/arh-2003-0006
14Nithi-Uthai N. and Manas-Zloczower I. (2002). Numerical studies of the effect of constitutive model parameters as reflecting polymer molecular structure on extrudate swell. Applied Rheology, 12(5), 252-259.
Cited: 3 doi: https://doi.org/10.1515/arh-2002-0014
รวม Scopus 14 รายการ 38 citations

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