A kind of wear-resistant leather shoes and its processing technology
A wear-resistant and leather shoe technology, applied in the field of shoes, can solve the problems of leather shoes losing aesthetics, leather upper wear, resource waste, etc., and achieve the effects of avoiding poor performance, improving wear resistance, and enhancing adsorption force
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Embodiment 1
[0038] The invention discloses a wear-resistant leather shoe and its processing technology. The processing technology includes the following steps:
[0039] S1. Preparation of surface treatment agent; first, mix acrylic resin and triolein evenly, heat up to 110°C, add low-density polyethylene, linear low-density polyethylene, zinc stearate and N-hydroxysuccinimide and stir Reaction for 1h; lower the temperature to 80°C, continue to add rosin pentaerythritol ester, trimethylolpropane, xylene and dicumyl peroxide, and stir for 0.5h; after cooling down to 30°C, add linoleic acid and stir to uniform; after cooling to room temperature, add deionized water and mix uniformly; the parts by weight of linoleic acid account for 8% of rosin pentaerythritol ester;
[0040] S2. Surface treatment agent treatment of leather shoes; apply the surface treatment agent of S1 evenly on the leather upper to make it completely covered, dry at 70°C for 5 minutes, and repeat the coating and drying oper...
Embodiment 2
[0043] The invention discloses a wear-resistant leather shoe and its processing technology. The processing technology includes the following steps:
[0044] S1. Preparation of surface treatment agent; firstly mix acrylic resin and triolein evenly, heat up to 120°C, add low-density polyethylene, linear low-density polyethylene, zinc stearate and N-hydroxysuccinimide and stir React for 1.5h; lower the temperature to 90°C, continue to add rosin pentaerythritol ester, trimethylolpropane, xylene and dicumyl peroxide, and stir for 1h; after cooling down to 40°C, add linoleic acid and stir to uniform; after cooling to room temperature, add deionized water and mix uniformly; the parts by weight of linoleic acid account for 10% of rosin pentaerythritol ester;
[0045] S2. Surface treatment agent treatment of leather shoes; evenly apply the surface treatment agent of S1 on the leather upper to make it completely covered, dry at 80°C for 8 minutes, and repeat the coating and drying opera...
Embodiment 3
[0048] The invention discloses a wear-resistant leather shoe and its processing technology. The processing technology includes the following steps:
[0049] S1. Preparation of surface treatment agent; first, mix acrylic resin and triolein evenly, heat up to 117°C, add low-density polyethylene, linear low-density polyethylene, zinc stearate and N-hydroxysuccinimide and stir React for 1.5h; lower the temperature to 84°C, continue to add rosin pentaerythritol ester, trimethylolpropane, xylene and dicumyl peroxide, and stir for 1h; after cooling down to 36°C, add linoleic acid and stir to uniform; after cooling to room temperature, add deionized water and mix uniformly; the parts by weight of linoleic acid account for 9% of rosin pentaerythritol ester;
[0050] S2. Surface treatment agent treatment of leather shoes; evenly apply the surface treatment agent of S1 on the leather upper to make it completely covered, dry at 72°C for 7 minutes, repeat the coating and drying operation 3 t...
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