Summary of the invention
The invention provides a kind of nylon fabrics mould inhibitor, for preventing going mouldy of nylon fabrics.
The invention provides a kind of nylon fabrics mould inhibitor, described mould inhibitor is made up of each component of following mass fraction: butyl titanate 4-6 part, sodium acetate 10-15 part, ammonium perchlorate 2-3 part, glycerine 3-5 part, vinylacetate 8-10 part, ethanol 30-40 part.
Preferably, described mould inhibitor is made up of each component of following mass fraction: 5 parts of butyl titanates, 12 parts of sodium acetates, 2.5 parts of ammonium perchlorate, 4 parts of glycerine, 9 parts of vinylacetates, 35 parts of ethanol.
Further, described mould inhibitor also comprises 2-3 part p-nitrophenol.
Second object of the present invention is to provide the preparation method of above-mentioned mould inhibitor, that butyl titanate 4-6 part, ethanol 30-40 part are heated to 80-90 DEG C, stir 1-2 hour, add successively again sodium acetate 10-15 part, ammonium perchlorate 2-3 part, stir after 0.5-1 hour, be cooled to 70-75 DEG C, add glycerine 3-5 part, vinylacetate 8-10 part to stir, be cooled to and obtain after room temperature.
The 3rd object of the present invention is to provide the preparation method of above-mentioned mould inhibitor, that butyl titanate 4-6 part, ethanol 30-40 part are heated to 80-90 DEG C, stir 1-2 hour, add successively again sodium acetate 10-15 part, ammonium perchlorate 2-3 part, p-nitrophenol 2-3 part, stir after 0.5-1 hour, be cooled to 70-75 DEG C, add glycerine 3-5 part, vinylacetate 8-10 part to stir, be cooled to and obtain after room temperature.
Apply the mouldization problem that mould inhibitor of the present invention can well solve nylon fabrics, can reach permanent mildew-resistant.And Heat stability is good, not easy to change, meet normal production technology temperature requirement.
Detailed description of the invention
Following embodiment is convenient to understand better the present invention, but does not limit the present invention.Experimental technique in following embodiment, if no special instructions, is conventional method.
embodiment 1
Nylon fabrics provided by the invention is as follows with mould inhibitor formula: butyl titanate 5kg, sodium acetate 12kg, ammonium perchlorate 2.5kg, glycerine 4kg, vinylacetate 9kg, ethanol 35kg.
Nylon fabrics provided by the invention is as follows by the preparation method of mould inhibitor: butyl titanate 5kg, ethanol 35kg are heated to 85 DEG C, stir 1.5 hours, add successively again sodium acetate 12kg, ammonium perchlorate 2.5kg, stir after 0.5 hour, be cooled to 72 DEG C, add glycerine 4kg, vinylacetate 9kg to stir, obtain nylon fabrics mould inhibitor of the present invention after being cooled to room temperature.
embodiment 2
Nylon fabrics provided by the invention is as follows with mould inhibitor formula: butyl titanate 4kg, sodium acetate 10kg, ammonium perchlorate 3kg, glycerine 5kg, vinylacetate 8kg, ethanol 40kg.
Nylon fabrics provided by the invention is as follows by the preparation method of mould inhibitor: butyl titanate 4kg, ethanol 40kg are heated to 80 DEG C, stir 2 hours, add successively again sodium acetate 10kg, ammonium perchlorate 3kg, stir after 1 hour, be cooled to 75 DEG C, add glycerine 5kg, vinylacetate 8kg to stir, obtain nylon fabrics mould inhibitor of the present invention after being cooled to room temperature.
embodiment 3
Nylon fabrics provided by the invention is as follows with mould inhibitor formula: butyl titanate 6kg, sodium acetate 15kg, ammonium perchlorate 2kg, glycerine 3kg, vinylacetate 10kg, ethanol 30kg.
Nylon fabrics provided by the invention is as follows by the preparation method of mould inhibitor: butyl titanate 6kg, ethanol 30kg are heated to 90 DEG C, stir 1 hour, add successively again sodium acetate 15kg, ammonium perchlorate 2kg, stir after 0.5 hour, be cooled to 70 DEG C, add glycerine 3kg, vinylacetate 10kg to stir, obtain nylon fabrics mould inhibitor of the present invention after being cooled to room temperature.
embodiment 4
Nylon fabrics provided by the invention is as follows with mould inhibitor formula: butyl titanate 6kg, sodium acetate 15kg, ammonium perchlorate 2kg, glycerine 3kg, vinylacetate 10kg, p-nitrophenol 2kg, ethanol 30kg.
Nylon fabrics provided by the invention is as follows by the preparation method of mould inhibitor: butyl titanate 6kg, ethanol 30kg are heated to 90 DEG C, stir 1 hour, add successively again sodium acetate 15kg, ammonium perchlorate 2kg, p-nitrophenol 2kg, stir after 0.5 hour, be cooled to 70 DEG C, add glycerine 3kg, vinylacetate 10kg to stir, obtain nylon fabrics mould inhibitor of the present invention after being cooled to room temperature.
embodiment 5
Nylon fabrics provided by the invention is as follows with mould inhibitor formula: butyl titanate 5kg, sodium acetate 12kg, ammonium perchlorate 2.5kg, glycerine 4kg, vinylacetate 9kg, p-nitrophenol 2kg, ethanol 35kg.
Nylon fabrics provided by the invention is as follows by the preparation method of mould inhibitor: butyl titanate 5kg, ethanol 35kg are heated to 85 DEG C, stir 1.5 hours, add successively again sodium acetate 12kg, ammonium perchlorate 2.5kg, p-nitrophenol 2kg, stir after 0.5 hour, be cooled to 72 DEG C, add glycerine 4kg, vinylacetate 9kg to stir, obtain nylon fabrics mould inhibitor of the present invention after being cooled to room temperature.
embodiment 6
Nylon fabrics provided by the invention is as follows with mould inhibitor formula: butyl titanate 4kg, sodium acetate 13kg, ammonium perchlorate 3kg, glycerine 3kg, vinylacetate 8kg, p-nitrophenol 3kg, ethanol 40kg.
Nylon fabrics provided by the invention is as follows by the preparation method of mould inhibitor: butyl titanate 4kg, ethanol 40kg are heated to 80 DEG C, stir 2 hours, add successively again sodium acetate 13kg, ammonium perchlorate 3kg, p-nitrophenol 3kg, stir after 1 hour, be cooled to 75 DEG C, add glycerine 3kg, vinylacetate 8kg to stir, obtain nylon fabrics mould inhibitor of the present invention after being cooled to room temperature.
Finally it should be noted that: the foregoing is only the preferred embodiments of the present invention, be not limited to the present invention, although the present invention is had been described in detail with reference to previous embodiment, for a person skilled in the art, its technical scheme that still can record aforementioned each embodiment is modified, or part technical characterictic is wherein equal to replacement.Within the spirit and principles in the present invention all, any amendment of doing, be equal to replacement, improvement etc., within all should being included in protection scope of the present invention.