a baby diaper
A technology for diapers and babies, which is applied in the field of daily necessities, can solve problems such as poor leak-proof performance and poor air permeability of waterproof materials, and achieve the effects of increasing load capacity, good electrostatic adsorption, and preventing side leakage
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Embodiment 1
[0043] Such as Figure 1 to Figure 5 As shown, a baby diaper includes a front part 6, a middle part 1 and a back part 2. The front part 6 is connected to the middle part 1, the middle part 1 is connected to the back part 2, and the front part 6 is provided with Velcro 4 and a number of Velcro holes 7 on the surface of the Velcro 4, the middle part 1 includes a urine pad; the back part 2 includes a back waist 10, a first Velcro 3 and a second Velcro 5, the back The waist 10 is provided with two extension sections. The first velcro 3 and the second velcro 5 are respectively located at the ends of the two extension sections of the back waist 10. The first velcro 3 and the second velcro 5 Fastened in conjunction with the magic button hole 7, the urine pad has a layered structure, and the layered structure consists of an adsorption layer, an absorption layer, a first expansion layer, a second expansion layer, and a leak-proof layer from top to bottom. The adsorption layer is woven b...
Embodiment 2
[0045] Such as image 3 As shown, the modified nano-polyvinyl alcohol electrostatic wire is prepared by the following steps:
[0046] Step 1: Weigh 1 part of cellulose, take an appropriate amount of deionized water and stir to dissolve, add tetramethylpiperidine oxide to the solution according to the molar ratio of cellulose: tetramethylpiperidine oxide of 1:0.05, according to cellulose: The molar ratio of sodium hypochlorite is 1:1. Add sodium hypochlorite to the solution, adjust the pH of the system to 10.3, and stir for 24h at room temperature;
[0047] Step 2: Disperse the system through a homogenizer to a gel state, undergo ultrasonic treatment for 10 minutes, filter and freeze-dry to obtain nanocellulose;
[0048] Step 3: Weigh 1 part of polyvinyl alcohol, take an appropriate amount of deionized water, heat to 80°C and maintain a constant temperature, and stir for 2 hours to completely dissolve;
[0049] Step 4: Naturally cool to room temperature, dilute the polyvinyl alcohol so...
Embodiment 3
[0052] Such as Figure 4 to Figure 5 As shown, the flexible absorbent fiber is prepared by the following steps,
[0053] Step 1: Weigh 1 part of xanthan gum, add an appropriate amount of deionized water, stir to dissolve the volume ratio of xanthan gum solution: acrylic acid solution=1:2.5 to xanthan gum solution, add 85% neutralization degree of acrylic acid After stirring all the solution, add the acrylic acid solution to the mixed solution by volume: acrylamide solution=1:1, and add the acrylamide solution to the mixed solution;
[0054] Step 2: Heat the mixed solution to 70°C, mix the solution according to the volume ratio: crosslinking agent=1:0.05, add the crosslinking agent N,N-methylenebisacrylamide, and keep stirring at 70°C for 1h;
[0055] Step 3: Heat to 85°C, and add the initiator potassium persulfate solution to the solution according to the volume ratio of cross-linking agent: initiator=1:1, and continue to stir at 85°C for 2 hours and then end the reaction;
[0056] S...
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