Degradable tubular polymeric multipore foaming material and its preparation method
A technology of porous foam and polymer, applied in the direction of coating, etc., can solve the problems of easy degradation of polymers and harsh conditions, and achieve the effect of good reproducibility, good shape retention ability, and large-scale production
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Embodiment 1
[0046] Example 1, 0.3 grams of PLGA85 / 15 with a molecular weight of 300,000 was dissolved in 3 milliliters of chloroform, and 2.7 grams of sodium chloride particles with a particle size of 180-280 μm were added to the solution, stirred evenly, and the solvent was partially volatilized, and the solvent body was adjusted. The integral rate is about 38.0%, and the particle volume fraction is about 52.0%, forming a soft doughy polymer solution-porogen particle mixture; the mixture is filled into a small injection molding machine trough (see figure 1 ), the composite mold for injection molding with a tubular inner cavity shape is installed, and the polymer solution-porogen particle mixture is quickly filled into the mold cavity under the injection pressure; after demolding, the polymer solution-porogen particle mixture is obtained. For tubular products, part of the solvent is volatilized at room temperature, and then the remaining solvent is removed at room temperature and a vacuum ...
Embodiment 2
[0047] Embodiment 2, porogen particle sodium chloride particle size is 280-450 μ m, adjust solvent volume fraction about 43.4%, particle volume fraction is about 47.5%, other is the same as embodiment 1, makes tubular porous foam porosity 86.4%.
Embodiment 3
[0048] Example 3, 0.15 grams of PLGA85 / 15 with a molecular weight of 300,000 was dissolved in 3 milliliters of chloroform, and 2.85 grams of sodium chloride particles with a particle size of 180-280 μm were added to the solution, stirred evenly, and the solvent was partially volatilized, and the volume fraction of the solvent was adjusted. The ratio is about 42.4%, and the particle volume fraction is about 48.3%, forming a soft doughy polymer solution-porogen particle mixture; others are the same as in Example 1, and the obtained tubular porous foam has a porosity of 93.6%.
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