Thermoplastic degradable fabric woven bracket and preparation method thereof
A technology that degrades fibers and thermoplastics. It is used in stents, medical science, and surgery. It can solve the problems of debris blocking the lumen and weakness of urinating muscles, and achieve or relieve irritation, eliminate irritation, and facilitate adhesion.
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Embodiment 1
[0047] The lactide-glycolide copolyester fiber with a diameter of 0.1mm was cross-woven into a tube with an inner diameter of 3mm with a network structure, and then the tube was sheathed on a metal rod with an outer diameter of 3mm and placed After 5 minutes in an oven at 80°C, the fibers are bonded to each other at the intersections, and then cooled and taken off to obtain a tube with no loose fibers. The radial support force per cm of this stent is 1300 cN.
Embodiment 2
[0049] The lactide-glycolide copolyester fiber with a diameter of 0.6mm is cross-woven into a tube with an inner diameter of 36mm with a network structure, and then this tube is sheathed on a metal rod with an outer diameter of 36mm and placed After 5 minutes in an oven at 80°C, the fibers are bonded to each other at the intersections, and then cooled and taken off to obtain a tube with no loose fibers. The radial support force per cm of this stent is 345 cN.
Embodiment 3
[0051] The lactide-glycolide copolyester fiber with a diameter of 0.1mm is cross-woven into a tube with an inner diameter of 36mm with a network structure, and then the tube is placed on a metal rod with an inner diameter of 36mm. After 5 minutes in an oven at 80°C, the fibers are bonded to each other at the intersections, and then cooled and taken off to obtain a tube with no loose fibers. The radial support force of this stent per cm is 167 centiN.
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