Enhanced far infrared antibacterial low-temperature thermoplastic material and preparation method thereof
A low-temperature thermoplastic and far-infrared technology, applied in the field of materials, can solve the problems of insufficient firmness and insufficient strength, and achieve the effects of shortening the recovery time, preventing the growth of bacteria, and promoting blood circulation.
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Embodiment 1
[0027] Embodiment 1: Preparation of enhanced far-infrared antibacterial low-temperature thermoplastic material
[0028] Raw material weight ratio:
[0029] Polycaprolactone, 70 parts; Nano far-infrared ceramic powder, 25 parts; Modified glass fiber, 15 parts; Nano silver antibacterial agent, 10 parts; Modified talcum powder, 30 parts; Diffusion oil, 12 parts.
[0030] The preparation method of the modified glass fiber is as follows: first soak and clean the glass fiber in boric acid solution, then soak it in ammonium persulfate solution to wet the surface, finally add coupling agent to ultrasonic vibration, and dry it. The mass concentration of the boric acid solution is 15%, the mass concentration of the ammonium persulfate solution is 35%, and the coupling agent consists of 30wt% isopropyl tris(dodecylbenzenesulfonyl) titanate and 70wt% % isopropyl tris (dioctyl pyrophosphate acyloxy) titanate, the mass ratio of coupling agent to glass fiber is 1:1.
[0031] The preparatio...
Embodiment 2
[0040] Embodiment 2: Preparation of enhanced far-infrared antibacterial low-temperature thermoplastic material
[0041] Raw material weight ratio:
[0042] Polycaprolactone, 60 parts; Nano far-infrared ceramic powder, 20 parts; Modified glass fiber, 10 parts; Nano silver antibacterial agent, 5 parts; Modified talcum powder, 20 parts; Diffusion oil, 8 parts.
[0043] The preparation method of the modified glass fiber is as follows: first soak and clean the glass fiber in boric acid solution, then soak it in ammonium persulfate solution to wet the surface, finally add coupling agent to ultrasonic vibration, and dry it. The mass concentration of the boric acid solution is 10%, the mass concentration of the ammonium persulfate solution is 25%, and the coupling agent consists of 30wt% isopropyl tris(dodecylbenzenesulfonyl) titanate and 70wt% % isopropyl tris (dioctyl pyrophosphate acyloxy) titanate, the mass ratio of coupling agent to glass fiber is 0.5:1.
[0044] The preparatio...
Embodiment 3
[0053] Embodiment 3: Preparation of enhanced far-infrared antibacterial low-temperature thermoplastic material
[0054] Raw material weight ratio:
[0055]Polycaprolactone, 80 parts; Nano far-infrared ceramic powder, 30 parts; Modified glass fiber, 20 parts; Nano silver antibacterial agent, 15 parts; Modified talcum powder, 40 parts; Diffusion oil, 16 parts.
[0056] The preparation method of the modified glass fiber is as follows: first soak and clean the glass fiber in boric acid solution, then soak it in ammonium persulfate solution to wet the surface, finally add coupling agent to ultrasonic vibration, and dry it. The mass concentration of the boric acid solution is 20%, the mass concentration of the ammonium persulfate solution is 45%, and the coupling agent consists of 30wt% isopropyl tris(dodecylbenzenesulfonyl) titanate and 70wt% % isopropyl tris (dioctyl pyrophosphate acyloxy) titanate, the mass ratio of coupling agent to glass fiber is 1.5:1.
[0057] The preparati...
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