Pre-mixed strontium silicate-based biological hydraulic cementing paste composition as well as preparation method and application thereof
A strontium silicate-based and cement technology, which is applied in the field of medicine, can solve the problems of insufficient strength and brittleness of calcium phosphate bone cement, and achieves the effects of insignificant heating of the reaction, short setting time, and convenience for doctors to operate.
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Embodiment 1
[0036] Preparation of Example 1 Suspension Stable Premixed Strontium Silicate-based Cement Paste
[0037] (1) Take each raw material according to the following weight percentages:
[0038] Component (a): 55% tristrontium silicate;
[0039] Component (b): polyethylene glycol 22%;
[0040] Component (c): Zirconia 23%.
[0041] (2) Put the components (a), (c) and (b) of step (1) into a glass container in turn, mechanically mix with a stainless steel stirring rod, and fully reconcile for 10 minutes;
[0042] (3) Afterwards, the mixed paste is transferred to a medical syringe equipped with an injection hose needle to obtain a premixed strontium silicate-based cement paste with stable suspension.
[0043] The material remains fluid under sealed conditions. Extruded samples are placed in a constant temperature and humidity chamber at 37°C and a humidity above 95% (or filled until the teeth are exposed to physiological fluids), hydration solidifies and hardens, hydration solidifies...
Embodiment 2
[0045]Preparation of Example 2 Suspension Stable Premixed Strontium Silicate-based Cement Paste
[0046] (1) Take each raw material according to the following weight percentages:
[0047] Component (a): Tristrontium silicate 18%;
[0048] Component (b): polyethylene glycol 27%;
[0049] Component (c): tantalum oxide 30%;
[0050] Component (d): anhydrous calcium dihydrogen phosphate 16%, tetracalcium phosphate 9%.
[0051] (2) Put the components (a), (c), (d) and (b) of step (1) into a glass container in turn, mechanically mix with a stainless steel stirring rod, and fully reconcile for 10 minutes;
[0052] (3) Afterwards, the mixed paste is transferred to a medical syringe equipped with an injection hose needle to obtain a premixed strontium silicate-based cement paste 2 with stable suspension.
[0053] The material remains fluid under sealed conditions, and the extrusion sample is placed in a constant temperature and humidity chamber at 37°C and a humidity above 95% (or ...
Embodiment 3
[0054] Example 3 Preparation of Suspension Stable Premixed Strontium Silicate-based Cement Paste
[0055] (1) Take each raw material according to the following weight percentages:
[0056] Component (a): 12% tristrontium silicate, 7% distrontium silicate;
[0057] Component (b): glycerin 29%;
[0058] Component (c): bismuth trioxide 32%.
[0059] Component (d): calcium dihydrogen phosphate 20%;
[0060] (2) Put the components (a), (c), (d) and (b) of step (1) into a glass container in turn, mechanically mix with a stainless steel stirring rod, and fully reconcile for 10 minutes;
[0061] (3) Afterwards, the mixed paste is transferred to a medical syringe equipped with an injection hose needle to obtain a premixed strontium silicate-based cement paste 3 with stable suspension.
[0062] The material remains fluid under sealed conditions. Extruded samples are placed in a constant temperature and humidity chamber at 37°C and a humidity above 95% (or filled until the teeth are ...
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