A kind of superelastic 3D printing nano-cellulose composite material and its preparation method
A nanocellulose, 3D printing technology, applied in the field of 3D printing materials, can solve the problems of high cost, non-compliance with environmental protection and sustainable development, and achieve the effect of cost saving, high elasticity, excellent fatigue resistance and compression performance, and broad application prospects.
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Embodiment 1
[0029] This embodiment provides a method for preparing a superelastic 3D printing nanocellulose composite material. The steps are as follows:
[0030] Step 1) prepare 100 grams of 6wt% microcrystalline nanocellulose solution;
[0031] Step 2) Add TiO to the prepared microcrystalline nanocellulose aqueous solution 2 Nanoparticles are 6 grams, homogenized by a high-speed homogenizer;
[0032] Step 3) It is directly used for 3D printing at room temperature, the printing speed is 2.5mm / s, the material extrusion speed is 1.5mL / h, and the diameter of the nozzle mouth is 0.41mm;
[0033] Step 4) Add a calcium chloride solution with a concentration of 0.5 mol / L to the molded sample dropwise for 5 min. After the sample is taken out, it is freeze-dried in liquid nitrogen and placed in a 40% humidity environment.
[0034] Nanocellulose / TiO prepared by Example 1 2 The nanoparticle composite 3D printing sample was subjected to 24 50% deformation compression tests at a compression rate o...
Embodiment 2
[0036] This embodiment provides a method for preparing a superelastic 3D printing nanocellulose material. The steps are as follows:
[0037] Step 1) dehydrate the nanocellulose aqueous solution prepared by TEMPO oxidation to a concentration of 2.0 wt% by vacuum drying, and take 100 grams;
[0038] Step 2) adding 18 grams of nano-montmorillonite to the dehydrated nano-cellulose aqueous solution, and using a high-speed homogenizer to homogenize;
[0039] Step 3) It is directly used for 3D printing at room temperature, the printing speed is 2.5mm / s, the material extrusion speed is 1.5mL / h, and the diameter of the nozzle mouth is 0.41mm;
[0040] Step 4) Add a calcium chloride solution with a concentration of 0.75 mol / L to the molded sample dropwise for 30 min. After the sample is taken out, it is freeze-dried in liquid nitrogen and placed in a 40% humidity environment.
experiment example 1
[0044] The composite materials in Example 2 and Comparative Example 1 were subjected to a mechanical compression test. When the compression deformation was 50%, 100% of the deformation of the sample of Example 2 was recovered, and the compression deformation of the sample of Comparative Example 1 was close to 40% and could not be recovered. It can be seen that , low concentrations of hygroscopic salts cannot make the material have resilience.
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