UV (ultraviolet) cured high-rigidity wear-resistant flame-retardant coating material and preparation method
A flame retardant coating, high hardness technology, applied in the field of UV curing coating materials, can solve the problems of poor mechanical properties of coatings, high cost, complex synthesis process, etc.
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Embodiment 1
[0030] Embodiment 1 (the following are all in parts by mass), the components of functional sol and the proportioning ratio thereof are:
[0031] Composition Mass percentage content wt%
[0032] Ethyl Tetrasilicate 30%
[0033] Trimethyl borate 0%
[0034] Trimethyl phosphite 20%
[0035] Gamma-Methacryloxytrimethoxysilane 45%
[0036] Deionized water 5%
[0037] Acetic acid 0.5%
Embodiment 2
[0038] Embodiment 2 (below all in mass percentage), the component of functional sol and proportioning thereof are:
[0039] Composition Mass percentage content wt%
[0040] Ethyl Tetrasilicate 30%
[0041] Trimethyl borate 15%
[0042]Trimethyl phosphite 15%
[0043] Gamma-methacryloxytrimethoxysilane 35%
[0044] Deionized water 5%
[0045] Acetic acid 0.5%
Embodiment 3
[0046] Embodiment 3 (below all in mass percentage), the component of functional sol and proportioning thereof are:
[0047] Composition Mass percentage content wt%
[0048] Ethyl Tetrasilicate 20%
[0049] Trimethyl borate 15%
[0050] Trimethyl phosphite 15%
[0051] Gamma-Methacryloxytrimethoxysilane 45%
[0052] Deionized water 5%
[0053] Acetic acid 0.5%
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