Characterization of TiO2 Nanoparticle-Reinforced Polymer Nanocomposite Materials Printed by Stereolithography Method

被引:13
|
作者
Aktitiz, Ismail [1 ,2 ]
Aydin, Kadir [2 ]
Topcu, Alparslan [2 ]
机构
[1] Adana Alparslan Turkes Sci & Technol Univ, Fac Engn, Dept Mech Engn, TR-01250 Adana, Turkey
[2] Cukurova Univ, Fac Engn, Dept Mech Engn, TR-01330 Adana, Turkey
关键词
nanoparticle; nanocomposite; photosensitive resin; TiO2; stereolithography;
D O I
10.1007/s11665-021-05574-x
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Additive manufacturing (AM) is a novel manufacturing technology group that revolutionizes the design and production processes behind material production. This approach is used in a wide range from simple prototypes to direct parts manufacturing in different industries such as aviation, automotive, energy, biomedical, and bioengineering. Stereolithography (SLA), fused deposition modeling, selective laser sintering, laser metal deposition approaches are the most widespread AM methods. SLA method is one of the most attractive approaches in the AM field as high-dimensional sensitivity is achieved by using liquid photosensitive resin and laser light. However, although it is possible to manufacture complex-shaped three-dimensional (3D) polymer structures with the SLA approach, the mechanical, thermal, and electrical properties are not at the desired levels. To develop more functional 3D polymer materials, various additives are dispersed into polymer structures such as metal nanoparticles, inorganic particles, fibre, carbon nanotube, and nanoclay. Titanium dioxide (TiO2) nanoparticles are a very appealing type of additive among these additives owing to their superior mechanical properties. In this study, the photosensitive resin was mixed with four different TiO2 nanoparticle concentrations (pure, 0.25, 0.5, and 1% reinforced). These slurries were then placed in the SLA device, and 3D polymer structures were fabricated. Scanning electron microscope (SEM), thermogravimetric analysis (TGA), differential scanning calorimeter (DSC), tensile tests, and Charpy impact tests were carried out to characterize mechanical, thermal, and morphological properties of developed polymer materials. It was observed that the particle size was below 1 mu m and some agglomerations occurred. The elasticity modulus of the 0.5% TiO2 nanoparticle reinforced sample was measured as 694 MPa and was found to be approximately 20% higher than the pure polymer sample. In addition, polymer structures exhibited more brittle behavior. It was noted that 5% weight loss was experienced at 337 degrees C in all samples. Besides, the existence of unreacted carbon-carbon bonds was proven by the DSC analysis.
引用
收藏
页码:4975 / 4980
页数:6
相关论文
共 50 条
  • [31] In situ synthesis of transparent TiO2 nanoparticle/polymer hybrid
    Asai, Toshihiko
    Sakamoto, Wataru
    Yogo, Toshinobu
    JOURNAL OF MATERIALS SCIENCE, 2013, 48 (21) : 7503 - 7509
  • [32] Synthesis of crystalline TiO2 nanoparticle by γ-irradiation method
    Han, HJ
    Kim, JI
    Nho, YC
    JOURNAL OF MACROMOLECULAR SCIENCE-PURE AND APPLIED CHEMISTRY, 2004, A41 (09): : 1051 - 1058
  • [33] Physical analysis of TiO2 and bentonite nanocomposite as adsorbent materials
    Bukit, Nurdin
    Ginting, Eva Martina
    Frida, Erna
    Bukit, Bunga Fisikanta
    REVIEWS ON ADVANCED MATERIALS SCIENCE, 2021, 60 (01) : 912 - 920
  • [34] Synthesis and characterization of kaolinite and TiO2 nanocomposites using the polymer precursor method
    Polzin de Melo, Ana Paula
    Sotiles, Anne Raquel
    Vetter Ferri, Elidia Aparecida
    Sikora, Mariana de Souza
    Budziak Parabocz, Cristiane Regina
    MATERIA-RIO DE JANEIRO, 2021, 26 (02):
  • [35] Evaluation of nanoparticle emission for TiO2 nanopowder coating materials
    Hsu, Li-Yeh
    Chein, Hung-Min
    JOURNAL OF NANOPARTICLE RESEARCH, 2007, 9 (01) : 157 - 163
  • [36] Evaluation of nanoparticle emission for TiO2 nanopowder coating materials
    Li-Yeh Hsu
    Hung-Min Chein
    Journal of Nanoparticle Research, 2007, 9 : 157 - 163
  • [37] Preparation and Characterization of Polymer Composite Materials Based on PLA/TiO2 for Antibacterial Packaging
    Segura Gonzalez, Edwin A.
    Olmos, Dania
    Angel Lorente, Miguel
    Velaz, Itziar
    Gonzalez-Benito, Javier
    POLYMERS, 2018, 10 (12)
  • [38] Thermal and Structural Characterization of TiO2 and TiO2/Polymer Micro Hollow Spheres
    Sgraja, Martin
    Bloemer, Jan
    Bertling, Juergen
    Jansens, Peter J.
    CHEMICAL ENGINEERING & TECHNOLOGY, 2010, 33 (12) : 2029 - 2036
  • [39] Investigating the effect of variation of TiO2 nanoparticle concentration on the performance of nylon/TiO2 nanocomposite-based teng
    Gulahmadov, O.
    Gahramanli, L.
    Muradov, M.
    Mamedov, H.
    Musayev, A.
    Gomez, C. Vacacela
    Bellucci, S.
    JOURNAL OF OVONIC RESEARCH, 2024, 20 (06): : 831 - 839
  • [40] Creep Properties in TiO2 Nanoparticle Reinforced Aluminum Matrix Composites
    Shin, Jaehyuck
    Bae, Donghyun
    ADVANCED ENGINEERING MATERIALS, 2013, 15 (11) : 1029 - 1033