High strength femoral head plasticising material
A high-strength femoral head technology, applied in the field of medical materials, can solve the problems of low bending strength and inability to repair bone defects, and achieve the effects of simple preparation process, improved biocompatibility, and broad application prospects
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Embodiment 1
[0017] A kind of high-strength femoral head plasticized material is characterized in that, each component of raw material is divided into as follows according to weight:
[0018] 15 parts of stony coral with a micropore diameter of 200-400um, 6 parts of sea octopus, 2 parts of polymethyl methacrylate, 5 parts of hydroxyapatite, and micronized in an acrylate solution with an ester group concentration of 6 mol / g or more 1.2 parts of nanocellulose, 2 parts of polylactic acid, and 15 parts of 1,4-dioxane were obtained.
[0019] Dissolve polylactic acid in 1,4-dioxane to prepare a polylactic acid solution with a mass percent concentration of 3%, and then add natural coral blocks, hydroxyapatite, sea octopus, acrylic bone cement, and hydroxyphosphorus Limestone and nanocellulose were added to the prepared polylactic acid solution, stirred and blended, dried at a controlled temperature of 106° C. for 14 hours, and ground to obtain the femoral head material.
Embodiment 2
[0021] A kind of high-strength femoral head plasticized material is characterized in that, each component of raw material is divided into as follows according to weight:
[0022] 18 parts of stony coral with a micropore diameter of 200-400um, 7 parts of sea octopus, 3 parts of polymethyl methacrylate, 6 parts of hydroxyapatite, and micronized in an acrylate solution with an ester group concentration of 6 mol / g or more 1.3 parts of nanocellulose, 3 parts of polylactic acid, and 16 parts of 1,4-dioxane were obtained.
[0023] Dissolve polylactic acid in 1,4-dioxane to prepare a polylactic acid solution with a mass percent concentration of 4%, and then add natural coral blocks, hydroxyapatite, sea octopus, acrylic bone cement, and hydroxyphosphorus Limestone and nanocellulose were added to the prepared polylactic acid solution, stirred and blended, dried at a controlled temperature of 108° C. for 13 hours, and ground to obtain the femoral head material.
Embodiment 3
[0025] A kind of high-strength femoral head plasticized material is characterized in that, each component of raw material is divided into as follows according to weight:
[0026] 20 parts of stony coral with a micropore diameter of 200-400um, 8 parts of sea octopus, 4 parts of polymethyl methacrylate, 7 parts of hydroxyapatite, and micronized in an acrylate solution with an ester group concentration of 6 mol / g or more 1.5 parts of nanocellulose, 4 parts of polylactic acid, and 18 parts of 1,4-dioxane were obtained.
[0027] Dissolve polylactic acid in 1,4-dioxane to prepare a polylactic acid solution with a mass percent concentration of 4%, and then add natural coral blocks, hydroxyapatite, sea octopus, acrylic bone cement, and hydroxyphosphorus Limestone and nanocellulose were added to the prepared polylactic acid solution, stirred and blended, dried at a controlled temperature of 110° C. for 12 hours, and ground to obtain the femoral head material.
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