Method for preparing carbon fiber reinforced polylactic acid/hydroxy apatite composite material
A technology of hydroxyapatite and composite materials, applied in medical science, prosthesis, surgery, etc., can solve the problems of molecular weight loss, affecting material strength, uneven distribution, etc., to avoid molecular weight reduction, good mechanical properties, and preparation The effect of simple process
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Embodiment 1
[0011] Mix pre-dried 7.5g lactide and 2.2g hydroxyapatite, add 0.05g stannous octoate, mix evenly, put it into a mold with 0.3g carbon fiber, compact it, vacuumize it, and heat it at 150°C After 48 hours of reaction, the molecular weight of polylactic acid was measured to be 120,000, the flexural strength of the material was 412MPa, and the flexural modulus was 23.3Gpa.
Embodiment 2
[0013] Mix 8.5g of pre-dried lactide and 1.4g of hydroxyapatite, add 0.1g of stannous octoate, mix well, put it into a mold with 0.1g of carbon fiber, compact it, vacuumize it, and heat it at 130°C React for 24 hours. After the reaction, the molecular weight of polylactic acid was measured to be 52,000, the bending strength of the material was 331MPa, and the bending modulus was 18.1Gpa.
Embodiment 3
[0015] Mix 8g of pre-dried lactide and 1.8g of hydroxyapatite, add 0.07g of stannous octoate, mix well, put it into a mold with 0.2g of carbon fiber, compact it, vacuumize it, and react at 140°C 36 hours. After the reaction, the molecular weight of polylactic acid was measured to be 76,000, the bending strength of the material was 363MPa, and the bending modulus was 21Gpa.
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