Article
  • Effects of Nucleating Agents on the Scratch and Gloss Properties of Polypropylene Composites
  • A Rom Oh, Gyeong Cheol Yu*, Jeong Jin Park**, Dae Sik Kim, Kyung Min Yu, Sun Young Lee**, Jae Min Lee***, and Seung Goo Lee*,†

  • Research & Development Division, Hyundai Motor Company, Hwaseong, 18280, Korea
    *Department of Applied Organic Materials Engineering, Chungnam National University, Daejeon 34134, Korea
    **Applied Chemistry and Biological Engineering, Chungnam National University, Daejeon 34134, Korea
    ***Samyang Chemical R&D center, Daejeon 34055, Korea

  • 핵제가 폴리프로필렌 복합재의 스크래치와 광택 특성에 미치는 영향
  • 오아롬 · 유경철* · 박정진* · 김대식 · 유경민 · 이선영** · 이재민*** · 이승구*,†

  • 현대자동차 연구개발본부, *충남대학교 유기응용재료공학과, **충남대학교 바이오응용화학연구소, ***삼양사 화학연구소

  • Reproduction, stored in a retrieval system, or transmitted in any form of any part of this publication is permitted only by written permission from the Polymer Society of Korea.

References
  • 1. Vaidya, U. K.; Chawla, K. K. Processing of Fibre Reinforced Thermoplastic Composites. Int. Mater. Rev. 2008, 185-218.
  •  
  • 2. Maddah, H. A. Polypropylene as a Promising Plastic: A Review. Am. J. Polymer Sci. 2016, 6, 1-11.
  •  
  • 3. Zhang, Z.; Tao, Y.; Yang, Z.; Mai, K. Preparation and Characteristics of Nano-CaCO3 Supported β-Nucleating Agent of Polypropylene. Eur. Polymer J. 2008, 44, 1955-1961.
  •  
  • 4. Premphet, K.; Horanont, P. Phase Structure of Ternary Polypropylene/Elastomer/Filler Composites: Effect of Elastomer Polarity. Polymer. 2000, 41, 9283-9290.
  •  
  • 5. Martial, F.; Huguet, J.; Bunel, C. Development of a Quantitative Analysis Method for Polypropylene Additives Using On-Line SFE/SFC. Polymer Int. 1999, 48, 299-306.
  •  
  • 6. Jiang, H.; Browning, R.; Sue, H. J. Understanding of Scratch-Induced Damage Mechanisms in Polymers. Polymer (Guildf) 2009, 50, 4056-4065.
  •  
  • 7. O’brien, W. J.; Johnston, W. M.; Fanian, F.; Lambert, S. The Surface Roughness and Gloss of Composites. J. Dent. Res. 1984, 63, 685-688.
  •  
  • 8. Szilágyi, C.; Seeger, P.; Moneke, M.; Stengler, R. In-Situ Optical Scratch Analysis and Correlation Between Tangential Force and Scratch Behavior of Thermoplastic Injection Molded Plates. Macromol. Symp. 2017, 373, 1600125.
  •  
  • 9. Wong, M.; Lim, G. T.; Moyse, A.; Reddy, J. N.; Sue, H. J. A New Test Methodology for Evaluating Scratch Resistance of Polymers. Wear 2004, 256, 1214-1227.
  •  
  • 10. Lin, L.; Blackman, G. S.; Matheson, R. R. A New Approach to Characterize Scratch and Mar Resistance of Automotive Coatings. Prog. Org. Coat. 2000, 40, 85-91.
  •  
  • 11. Kennedy, M. A.; Peacock, A. J.; Mandelkern, L. Tensile Properties of Crystalline Polymers: Linear Polyethylene. Macromolecules 1994, 27, 5297-5310.
  •  
  • 12. Zhang, W.; Wang, Q.; Wang, G.; Liu, S. The Effect of Isothermal Crystallization on Mechanical Properties of Poly(Ethylene 2,5-Furandicarboxylate). E Polymer. 2021, 22, 1-11.
  •  
  • 13. Kobori, Y.; Akiba, I.; Akiyama, S. Crystallization in Blends of Isotactic Polypropylene with Polyethylene-b-Poly(Ethylene-Co-Butylene)-b-Polyethylene Block Copolymer. Polym. Bull. 1999, 43, 285-289.
  •  
  • 14. Zheng, Q.; Shangguan, Y.; Yan, S.; Song, Y.; Peng, M.; Zhang, Q. Structure, Morphology and Non-Isothermal Crystallization Behavior of Polypropylene Catalloys. Polymer (Guildf) 2005, 46, 3163-3174.
  •  
  • 15. Labour, T.; Gauthier, C.; Se, R.; Âla, Â.; Vigier, G.; Bomal, Y.; Orange, G. Influence of the b Crystalline Phase on the Mechanical Properties of Unfilled and CaCO-filled Polypropylene. I. Structural and Mechanical Characterisation. Polymer 2001, 42, 7127-7135.
  •  
  • 16. Xiang, C.; Sue, H. J.; Chu, J.; Masuda, K. Roles of Additives in Scratch Resistance of High Crystallinity Polypropylene Copolymers. Polymer Eng. Sci. 2001, 41, 23-31.
  •  
  • 17. Kuroda, S.; Mizutani, A.; Ito, H. Effect of Talc Size on Surface Roughness and Glossiness of Polypropylene Injection Molding Application to Automotive Plastics. Polymer Eng. Sci. 2020, 60, 132-139.
  •  
  • 18. Sigalas, N. I.; Anogiannakis, S. D.; Theodorou, D. N.; Lyulin, A. V. A Coarse-Grained Model for Capturing the Helical Behavior of Isotactic Polypropylene. Soft Matter 2022, 18, 3076-3086.
  •  
  • 19. Paukkeri, R.; Lehtinen, A. Thermal Behaviour of Polypropylene Fractions: 1. Influence of Tacticity and Molecular Weight on Crystallization and Melting Behaviour. Polymer. 1993, 34, 4075-4082.
  •  
  • 20. Wong, M.; Moyse, A.; Lee, F.; Sue, H.-J. Study of Surface Damage of Polypropylene under Progressive Loading. J. Mater. Sci. 2004, 39, 3293-3308.
  •  
  • 21. Pérez, E.; Angulo, I.; Blázquez-Blázquez, E.; Cerrada, M. L. Characteristics of the Non-Isothermal and Isothermal Crystallization for the β Polymorph in PVDF by Fast Scanning Calorimetry. Polymers (Basel) 2020, 12, 2708.
  •  
  • 22. Chrissafis, K.; Paraskevopoulos, K. M.; Stavrev, S. Y.; Docoslis, A.; Vassiliou, A.; Bikiaris, D. N. Characterization and Thermal Degradation Mechanism of Isotactic Polypropylene/Carbon Black Nanocomposites. Thermochim. Acta 2007, 465, 6-17.
  •  
  • 23. Cheng, S.; McKenna, G. B. Isothermal Crystallization and Time-Temperature Transformation of Amorphous Nifedipine: A Case of Polymorphism Formation and Conversion. Mol. Pharm. 2021, 18, 2786-2802.
  •  
  • 24. Sharma, D.; Parfitt, D.; Chen, B.; Roebuck, B.; Venero, D. A.; Kada, S. R.; Fabijanic, D.; Fitzpatrick, M. E. Influence of Cooling Rate on the Precipitation Kinetics of Nanoscale Isothermal ω-Phase in Metastable β-Ti Alloy, Ti-5Al-5Mo-5V-3Cr. J. Alloy. Comp. 2021, 859, 15782.
  •  
  • 25. Fenghui, A.; Bo, L.; Deqin, Z.; Jinlong, L.; Yuhui, S. Recrystallization Kinetics of Fe-3%Si after Deformation at High Strain Rate and High Temperature. Mater. Res. 2019, 22, e20180746.
  •  
  • 26. Hinrichs, V.; Kalinka, G.; Hinrichsen, G. An Avrami-Based Model for the Description of the Secondary Crystallization of Polymers. J. Macromol. Sci. Phys. 1996, 35, 295-302.
  •  
  • 27. Bockhorn, H.; Hornung, A.; Hornung, U.; Schawaller, D. Kinetic Study on the Thermal Degradation of Polypropylene and Polyethylene. J. Anal. Appl. Pyrolysis 1999, 48, 93-109.
  •  
  • Polymer(Korea) 폴리머
  • Frequency : Bimonthly(odd)
    ISSN 0379-153X(Print)
    ISSN 2234-8077(Online)
    Abbr. Polym. Korea
  • 2022 Impact Factor : 0.4
  • Indexed in SCIE

This Article

  • 2024; 48(2): 171-178

    Published online Mar 25, 2024

  • 10.7317/pk.2024.48.2.171
  • Received on Sep 27, 2023
  • Revised on Dec 7, 2023
  • Accepted on Dec 21, 2023

Correspondence to

  • Seung Goo Lee
  • Department of Applied Organic Materials Engineering, Chungnam National University, Daejeon 34134, Korea

  • E-mail: lsgoo@cnu.ac.kr