METHOD FOR PREPARING WEAR-RESISTANT-HYBRID
20200377642 ยท 2020-12-03
Inventors
- Chang-Lun Lee (Taichung City, TW)
- Bei-Huw Shen (Taichung City, TW)
- Chih-Chia Chen (Taichung City, TW)
- Wen-Yen Hsieh (Miaoli County, TW)
- Chin-Lung Chiang (Changhua County, TW)
Cpc classification
C08G18/755
CHEMISTRY; METALLURGY
C08G18/10
CHEMISTRY; METALLURGY
C08G18/3895
CHEMISTRY; METALLURGY
C08G18/3895
CHEMISTRY; METALLURGY
C08G18/10
CHEMISTRY; METALLURGY
International classification
Abstract
A method for preparing a wear-resistant hybrid, includes (A) providing nano-silica with hydroxyl groups on its surface to react with an isocyanate-based silane to form silica with silyl groups; (B) subjecting the silica with silyl groups to a hydrolytic condensation reaction by using a sol-gel technology to form highly bifurcated Si-HB nanoparticles with hydroxyl groups; (C) providing a diisocyanate to react with a polyol to form a urethane pre-polymer; and (D) subjecting the Si-HB nanoparticles with hydroxyl groups to an addition reaction with the urethane pre-polymer and with a chain-extending reagent to form a hybrid of Si-polyurethane (PU/Si-HB), whereby a wear-resistant hybrid of Si-polyurethane is prepared.
Claims
1. A method for preparing a wear-resistant hybrid, comprising: (A) providing nano-silica with hydroxyl groups on its surface to react with an isocyanate-based silane to form silica with silyl groups; (B) subjecting the silica with silyl groups to a hydrolytic condensation reaction by using sol-gel technology to form highly bifurcated Si-HB nanoparticles with hydroxyl groups; (C) providing a diisocyanate to react with a polyol to form a urethane pre-polymer; (D) subjecting the Si-HB nanoparticles with hydroxyl groups to an addition reaction with the urethane pre-polymer and with a chain-extending reagent to form a hybrid of Si-polyurethane (PU/Si-HB).
2. The method for preparing a wear-resistant hybrid according to claim 1, wherein the isocyanate-based silane in the step (A) is 3-isocyanatopropyltriethoxysilane (IPTS).
3. The method for preparing a wear-resistant hybrid according to claim 1, wherein the silica with silyl groups in the step (A) or in the step (B) is triethoxysilylated silica.
4. The method for preparing a wear-resistant hybrid according to claim 1, wherein the diisocyanate in the step (C) is selected from a group consisting of aliphatic isocyanates and aromatic isocyanates.
5. The method for preparing a wear-resistant hybrid according to claim 1, wherein the diisocyanate in the step (C) is isophoronediisocyanate (IPDI).
6. The method for preparing a wear-resistant hybrid according to claim 1, wherein the polyol in the step (C) is selected from a group consisting of polyether polyols and polyester polyols.
7. The method for preparing a wear-resistant hybrid according to claim 1, wherein a molar equivalent ratio of the diisocyanate to the polyol in the step (C) is 2:1.
8. The method for preparing a wear-resistant hybrid according to claim 1, wherein the chain-extending reagent in the step (D) is 1,4-butanediol.
9. The method for preparing a wear-resistant hybrid according to claim 1, wherein a weight of the Si-HB nanoparticles in the step (D) is 1% to 3% of a total weight of the hybrid of Si-polyurethane (PU/Si-HB).
10. The method for preparing a wear-resistant hybrid according to claim 1, wherein a reaction temperature of the step (C) or of the step (D) is between 70 C. and 90 C.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION
[0023] The embodiments of the present invention are described below by some specific examples, and those skilled in the art can readily appreciate the advantages and functions of the present invention from the disclosure of the specification.
[0024] Please refer to
[0025] In one embodiment of the present invention, the isocyanate-functional-group-containing 3-isocyanatopropyltriethoxysilane (IPTS) is subjected to an addition reaction with the nano-silica which has hydroxyl groups. Then, the sol-gel technology is used to carry out a hydrolytic condensation reaction to form highly bifurcated Si-HB nanoparticles with hydroxyl groups. Next, by means of another addition reaction, the highly bifurcated Si-HB nanoparticles with hydroxyl groups react with the urethane pre-polymer to form a hybrid of Si-polyurethane (PU/Si-HB) with excellent wear characteristics.
EXAMPLE
[0026] Example 1: In this example, nano-silica SiO.sub.2 with hydroxyl groups on its surface (1.12 g) is first dissolved in tetrahydrofuran (THF) in a bottle, then 3-isocyanatopropyltriethoxysilane (IPTS) (2.23 g) is introduced into the bottle, and the two are uniformly mixed with a magnet at a temperature of 80 C. for a reaction time 1.5 hour to form a solution of the silica with silyl groups. It is called solution A, and the reaction mechanism is shown in
[0027] Example 2: In this example, a fixed amount of deionized water (DI water) is added to tetrahydrofuran (THF) and hydrochloric acid (HCl) is further added to adjust the pH value to 4 to be solution B. Solution B is slowly added dropwisely into solution A at a temperature of 50 C. to carry out the hydrolytic condensation reaction, and stirred for 4 hours to obtain the Si-HB nanoparticles. The reaction mechanism is shown in
[0028] Example 3: In this example, isophoronediisocyanate (IPDI) (9.66 g) and a polyol (Arcol polyol 1007) (20 g) are placed in a four-neck cylindrical reaction flask, filled with nitrogen, heated at 80 C. and mechanically stirred for 12 hours to prepare a urethane pre-polymer. A molar equivalent ratio of the diisocyanate to the polyol (NCO:OH) is 2:1. Gradually the Si-HB nanoparticles solution is added according to the total weight ratio of the product of 1%, 2%, 3%. Stirring the reaction continues for 4 hours, and finally the chain-extending reagent 1,4-butanediol (1,4BD) (0.5 g) is gradually added dropwisely to continue the reaction for 2 hours. Then, the synthesized PU/Si-HB product is applied onto a plate by a blade or by dip, and then it is dried in a vacuum oven for 12 hours at a temperature of 70 C. After 12 hours, the finished product is taken out and allowed to stand cool at room temperature, to complete the preparation of the hybrid of the Si-polyurethane (PU/Si-HB). The reaction mechanism is shown in
[0029] Please refer to
TABLE-US-00001 TABLE 1 Sample no. T.sub.max ( C.) R.sub.max (wt %/min) char (wt %) Pure PU 354.1 27.3 0.598 1% 351.0 26.5 1.21 2% 354.2 26.2 1.406 3% 355.5 25.8 2.295 T.sub.max: maximum decomposition temperature; R.sub.max: maximum decomposition rate; Char: charcoal residual.
[0030] Please refer to
[0031] The present invention discloses a method for preparing a wear-resistant hybrid by using a highly active and non-toxic nano-silica to reinforce a polymeric substrate, to assist the formation of a transfer film on the contact surfaces to improve the wear resistance of the polyurethane elastomer material. And the compatibility between the inorganic silica particles and the organic polymeric substrate is enhanced by the grafting reaction. Further, the hydrolytic condensation reaction is carried out by the sol-gel technology to form highly bifurcated Si-HB nanoparticles with active hydroxyl groups to have reactive bonding with organic polymeric elastomer substrate to improve the overall performance of the material. Through the addition reaction, the hydroxyl highly bifurcated nanoparticles (Si-HB) may react with the urethane pre-polymer to form a Si-polyurethane organic-inorganic hybrid to improve the wear resistance and the mechanical properties of the material, and to make it have wider applications in the future.
[0032] Those skilled in the art will readily observe that numerous modifications and alterations of the device and method may be made while retaining the teachings of the invention. Accordingly, the above disclosure should be construed as limited only by the metes and bounds of the appended claims.