首页> 外文期刊>Journal of Adhesion Science and Technology: The International Journal of Theoredtical and Basic Aspects of Adhesion Science and Its Applications in All Areas of Technology >Improvement of adhesion performance between modified phenolic and stainless steels by titanate coupling agent treatment
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Improvement of adhesion performance between modified phenolic and stainless steels by titanate coupling agent treatment

机译:钛酸盐偶联剂治疗改善改性酚类和不锈钢之间的粘附性能

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摘要

Compared with the phenolic, the boron phenolic has a significant advantage due to its heat resistance and toughness as adhesive. Although silane and titanate coupling agents have widely proven to improve the compatibility of fillers with resins, the detailed effects of titanate coupling agent on improving the bonding interface between boron phenolic and steel have rarely been explored in this sense. This study has explored the adhesion between the phenolic adhesive and stainless steels (SS) by the surface modification of the SS with titanate coupling agents. Contact angle test, Fourier transform infrared spectroscopy (FTIR) and X-ray photoelectron spectroscopy (XPS) were used to characterize the surface properties of SS. Moreover, the adhesion strength was measured by the lap-shear tensile test. The results show that the polar part of the surface energy of the SS decreases after treatment by a titanate coupling agent. The adhesive strength increases from 26.21 to 35.37 MPa with increase in the concentration of the coupling agent and exhibits its ultimate adhesion strength of 39.56 MPa at 2%. With further increase in concentration, the adhesion strength gradually decreases. The increase in adhesion could be due to the reaction of the coupling agent with iron oxide or hydroxyl on the surface of the steel sheet to form a chemical bond, and thus a 'molecular bridge' between the adhesive and the steel.
机译:与酚醛相比,由于其耐热性和粘合剂,硼酚类具有显着的优势。虽然硅烷和钛酸钛酸酯偶联剂已被广泛证明提高填料与树脂的相容性,但在这种意义上很少探讨钛酸酯偶联剂对改善硼酚类和钢之间的粘合界面的详细效果。本研究通过用钛酸酯偶联剂的SS的表面改性探索了酚粘合剂和不锈钢(SS)之间的粘附性。接触角测试,傅里叶变换红外光谱(FTIR)和X射线光电子能谱(XPS)用于表征SS的表面性质。此外,通过搭接剪切拉伸试验测量粘合强度。结果表明,通过钛酸盐偶联剂处理后SS的表面能的极性部分降低。粘合强度从26.21〜35.37MPa增加,随着偶联剂的浓度增加,其最终粘附强度为39.56MPa为2%。随着浓度的进一步增加,粘合强度逐渐降低。粘合剂的增加可能是由于偶联剂与钢板表面上的氧化铁或羟基的反应形成化学键,因此粘合剂和钢之间的“分子桥”。

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