Polymeric materials based on epoxy oligomer DER-331 and hardeners of different physical and chemical nature for repairing of gas production equipment

O. Sapronov, V. Sotsenko, B. Antonio, S. Smetankin, K. Yurenin
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Abstract

The optimal content of PEPA and TETA hardeners and polymerization temperature during matrix formation on the basis of epoxy oligomer DER-331 were determined. The dynamics of dependence of hardener content on physical and mechanical properties of epoxy matrix was investigated. According to the results of the study, materials with the optimal content of hardener and temperature range of polymerization for the formation of a composition with high physical and mechanical properties and its further use for the repair of gas equipment are proposed. Developed polymeric materials containing the hardener TETA with a content of q = 8–10 weight parts per 100 weight parts of epoxy oligomer DER-331 are characterized by high physical and mechanical properties, in particular: the fracture stresses during the flexion are σfl = 80.0–95.1 MPa, the modulus of elasticity E = 2.8–2.9 GPa, impact strength W = 7.9–13.5 kJ/m2. The fracture structure of such composites is characterized by less deep branched chip lines with relatively uniform transitions, which makes it possible to state a slight stress state of the polymer, and hence its increased resistance to fracture.
以环氧低聚物DER-331为基材及不同物理、化学性质的硬化剂修补制气设备用高分子材料
以环氧低聚物DER-331为基体,确定了PEPA和TETA硬化剂的最佳用量和聚合温度。研究了硬化剂含量对环氧基体物理力学性能的影响规律。根据研究结果,提出了最佳硬化剂含量和最佳聚合温度范围的材料,以形成具有高物理力学性能的组合物,并进一步应用于燃气设备的维修。以环氧低聚物DER-331为原料,添加硬化剂TETA,其含量为q = 8-10重量件/ 100重量件,具有较高的物理力学性能,弯曲断裂应力为σfl = 80 - 95.1 MPa,弹性模量E = 2.8-2.9 GPa,冲击强度W = 7.9-13.5 kJ/m2。这种复合材料的断裂结构具有分支切屑线不深且过渡相对均匀的特点,这使得聚合物可以处于轻微的应力状态,从而提高了其抗断裂能力。
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