Abstract: An adhesive bonding method for the shoe making, which includes the following continuous operations: heating an electromagnetic polarized solid adhesive to melt it into glue; using a glue spraying device spray a thin layer of the melted adhesive glue to the surface of the shoe outsole; put a vamp (the bottom already includes the shoe midsole) onto the shoe outsole; fix the shoe vamp and the shoe outsole with a jig fixture; put the shoe vamp and shoe outsole together with the jig into an electromagnetic polarization device; and the effect of polarization is to eliminate the crystallization caused by the hydrogen bonds in the adhesive polymer, thereby forming a tight and firm bond between the vamp and the shoe outsole; when the shoe is taken out, the unreacted isocyanide at both ends of the adhesive molecular structure formula, the acid functional group then reacts with the water molecules in the air, returns to the original crystalline molecular formula, and forms hydrogen bond cross-linking with the molecules
Abstract: The present invention relates to a continuous polarization adhesive bonding and transmission apparatus for shoemaking. A polarizing device is provided inside a polarization chamber, and a conveyor belt capable of conveying materials is provided below said polarization chamber. The entrance side and the exit side of said polarization channel is respectively provided with a wave blocking tunnel, and said conveyor belt is installed through said wave blocking tunnel. The conveyor belt is provided with spaced electromagnetic protection plates, and the material to be polarized is provided between the two electro magnetic protection plates. When the material conveyed by the conveyor belt is polarized through the polarization chamber, the spaced electromagnetic protection plates can prevent the leakage of polarized waves.