Self-healing polymer and its preparation method and application
A self-healing, polymer technology, applied in the polymer field, can solve the problems of poor mechanical properties, limited use, high water content, and achieve the effects of improving stability, prolonging service life, and low production costs
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[0016] Correspondingly, the embodiment of the present invention also provides a method for preparing the above-mentioned self-healing polymer. This preparation method comprises the steps:
[0017] According to the molar ratio of basic monomer, acidic monomer and neutral monomer three monomers is (5-50): (5-50): (0-90) ratio will described basic monomer, acidic monomer Solution polymerization or bulk polymerization can be carried out under the conditions of thermal initiation or photoinitiation of monomers and neutral monomers.
[0018] Among them, the types and preferred mixing molar ratios of the basic monomers, acidic monomers and neutral monomers in the above method are the same as the basic monomers, acidic monomers and neutral monomers described in the self-healing polymer above. The type of body and the preferred mixing molar ratio. In order to save space, details are omitted here.
[0019] In the above method steps, under the conditions of thermal initiation or photo...
Embodiment 1
[0025] This embodiment provides a self-healing polymer, which is a copolymer of dimethylaminoethyl methacrylate, acrylic acid and n-butyl acrylate monomers.
[0026] Its preparation method is as follows:
[0027] In terms of mole fractions, 10 parts of dimethylaminoethyl methacrylate, 10 parts of acrylic acid, 79.9 parts of n-butyl acrylate, 0.1 part of 2-hydroxy-4'-(2-hydroxyethoxy)-2-methyl Propiophenone was added into the flask, stirred in a nitrogen atmosphere for 30 minutes, then transferred into a mold, and reacted under 365nm UV-LED irradiation for 1 hour to obtain the self-healing polymer. It is measured that the tensile strength of the self-healing polymer provided by Example 1 is 1.3 MPa, the modulus is 1 MPa, the elongation at break is 280%, and the self-healing efficiency is 85% in terms of strength.
Embodiment 2
[0029] This embodiment provides a self-healing polymer, which is a copolymer of diethylaminoethyl methacrylate, methacrylic acid and n-ethyl acrylate monomers.
[0030] Its preparation method is as follows:
[0031]In terms of mole fractions, 10 parts of diethylaminoethyl methacrylate, 15 parts of methacrylic acid, 74.9 parts of n-ethyl acrylate, and 0.1 part of 2,4-diethylthiazolone were added to the flask, and in a nitrogen atmosphere Stir for 30 minutes, then transfer into a mold, and react under 365nm UV-LED irradiation for 1 hour to obtain the self-healing polymer. The tensile strength of the self-healing polymer provided by Example 2 is 1.7 MPa, the modulus is 1.4 MPa, the elongation at break is 310%, and the self-healing efficiency is 80% in terms of strength.
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