Functional PDMS enhanced strain at fracture and toughness of DGEBA epoxy resin

被引:34
|
作者
Romo-Uribe, A. [1 ]
Santiago-Santiago, K. [2 ]
Reyes-Mayer, A. [2 ]
Aguilar-Franco, M. [3 ]
机构
[1] LNyC, Polymer Nanocomposites Lab, Cuernavaca 62230, Morelos, Mexico
[2] Univ Tecnol Emiliano Zapata Estado Morelos UTEZ, Ave Univ Tecnol 1, Emiliano Zapata 62760, Morelos, Mexico
[3] IFUNAM, Lab Cent Microscopia, Cd Univ, Mexico City 04510, DF, Mexico
关键词
Epoxy; DGEBA; Siloxane; Microdomains; Composites; Mechanical properties; COMPATIBILIZED LIQUID RUBBER; MECHANICAL-PROPERTIES; HYBRID NANOCOMPOSITES; DIGLYCIDYL ETHER; BISPHENOL-A; MORPHOLOGY; BLENDS; COMPOSITES; KINETICS; CURE;
D O I
10.1016/j.eurpolymj.2017.01.041
中图分类号
O63 [高分子化学(高聚物)];
学科分类号
070305 ; 080501 ; 081704 ;
摘要
The thermo-mechanical properties of diglycidyl ether of bisphenol-A (DGEBA) epoxy/silyldiglycidyl ether terminated polydimethyl siloxane (PDMS) composites have been investigated; PDMS concentration was increased up to 15 wt%. Differential scanning calorimetry (DSC) evidenced a phase separated microstructure as two glass transition temperatures, T-g, were detected: a high Tg at ca. 103 degrees C corresponding to DGEBA phase, and a lower Tg at ca. 40 degrees C. The lower Tg suggests interpenetration of PDMS into the DGEBA molecular network. SEM and AFM analyses confirmed the phase separated, droplet morphology, with well dispersed PDMS domains into the epoxy matrix. The PDMS droplets had diameters as small as 0.6 mu m, and the droplet size increased up to ca. 1.8 mu m at 15% PDMS content. Detailed EDS elemental mapping of the fractured composites evidenced siloxane residue in epoxy cavities suggesting incorporation of siloxane into the epoxy network, in agreement with DSC. Flexural testing showed a monotonic reduction of modulus (E) as PDMS content increased, as usually observed in rubber reinforced epoxy resins. However, strain at fracture and toughness increased twofold at about 10 wt% PDMS content. Water contact angle increased and then decreased as PDMS content increased, reaching maxima at ca. 10 wt% concentration. This behavior was apparently driven by surface roughness. The elastic mechanical modulus was found to scale with the droplet size of the rubbery phase.
引用
收藏
页码:101 / 118
页数:18
相关论文
共 50 条
  • [31] Enhanced fracture toughness and mechanical properties of epoxy resin with rice husk-based nano-silica
    Tien Duc Pham
    Cuong Manh Vu
    Hyoung Jin Choi
    Polymer Science, Series A, 2017, 59 : 437 - 444
  • [32] Catalytic Hydrothermal Depolymerization of DGEBA/EDA Epoxy Resin
    Zhang, Jianqiu
    Song, Chao
    Zu, Jianhua
    Ding, Hongbo
    Deng, Wuyan
    ADVANCES IN CHEMICAL ENGINEERING, PTS 1-3, 2012, 396-398 : 1558 - 1562
  • [33] High performance alumina epoxy composites with enhanced fracture toughness
    McGrath, LM
    Lenhart, JL
    Parnas, RS
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2005, 230 : U3605 - U3605
  • [34] Mechanical Properties and Fracture Toughness of Epoxy Resin Improved by Low-viscosity Hyperbranched Epoxy
    Zhang, Zhongwei
    Wang, Xiaolong
    Hu, Xiaoguang
    Xu, Ting
    Lin, Yanyan
    Tan, Yefa
    PROCEEDINGS OF THE 5TH INTERNATIONAL CONFERENCE ON ADVANCED DESIGN AND MANUFACTURING ENGINEERING, 2015, 39 : 1662 - 1666
  • [35] FRACTURE ENERGY OF EPOXY-RESIN UNDER PLANE STRAIN
    ANDREWS, EH
    STEVENSON, A
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 1978, 175 (MAR): : 1 - 1
  • [36] Bioinspired fracture toughness enhancement of a fully bio-based epoxy resin
    Schwaiger, Markus
    Waly, Christoph
    Huszar, Michael
    Oreski, Gernot
    Feuchter, Michael
    Arbeiter, Florian
    Resch-Fauster, Katharina
    POLYMER TESTING, 2023, 124
  • [37] Fracture toughness enhancement of epoxy resin reinforced with graphene nanoplatelets and carbon nanotubes
    Yao, Shan-Shan
    Ma, Chun-Liu
    Jin, Fan-Long
    Park, Soo-Jin
    KOREAN JOURNAL OF CHEMICAL ENGINEERING, 2020, 37 (11) : 2075 - 2083
  • [38] Miscibility, morphology and fracture toughness of epoxy resin/poly(vinyl acetate) blends
    Zheng, S
    Hu, Y
    Guo, Q
    Wei, J
    COLLOID AND POLYMER SCIENCE, 1996, 274 (05) : 410 - 417
  • [39] Effects of the media and ageing condition on the tensile properties and fracture toughness of epoxy resin
    Sugiman, Sugiman
    Putra, I. Ketut Pradnyana
    Setyawan, Paryanto Dwi
    POLYMER DEGRADATION AND STABILITY, 2016, 134 : 311 - 321
  • [40] Fracture toughness enhancement of epoxy resin reinforced with graphene nanoplatelets and carbon nanotubes
    Shan-Shan Yao
    Chun-Liu Ma
    Fan-Long Jin
    Soo-Jin Park
    Korean Journal of Chemical Engineering, 2020, 37 : 2075 - 2083