DURABLE SUPER-HYDROPHOBIC FABRIC AND PREPARATION METHOD THEREOF
20200063336 · 2020-02-27
Assignee
Inventors
- Hongqiang LI (Guangzhou City, CN)
- Xiaojing SU (Guangzhou City, CN)
- Xingrong ZENG (Guangzhou City, CN)
- Xuejun LAI (Guangzhou City, CN)
- Lin ZHANG (Guangzhou City, CN)
Cpc classification
D06M11/79
TEXTILES; PAPER
D06M2400/02
TEXTILES; PAPER
C09D5/00
CHEMISTRY; METALLURGY
C09D183/06
CHEMISTRY; METALLURGY
International classification
C09D183/06
CHEMISTRY; METALLURGY
Abstract
The invention discloses a durable super-hydrophobic fabric and a preparation method thereof. The preparation method comprises the following steps: soaking a fabric into a mixed solution of tetraethoxysilane and hydroxy-terminated polydimethylsiloxane; taking out the fabric and then placing it into a closed container filled with a hydrochloric acid solution and above the liquid level of the hydrochloric acid solution; reacting for 0.5-2 h under the temperature of 30-60 DEG C. to give the durable super-hydrophobic fabric. The fabric prepared according to the invention has a water drop surface static contact angle of more than 150 such that the water drop is easy to roll on the surface of the fabric, and has excellent chemical stability and mechanical durability. In addition, the preparation process is simple and pollution-free.
Claims
1. A preparation method of a durable super-hydrophobic fabric, characterized in that: the preparation method comprises the following steps: soaking a fabric into a mixed solution of tetraethoxysilane and hydroxy-terminated polydimethylsiloxane; taking out the fabric and then placing it into a closed container filled with a hydrochloric acid solution and above the liquid level of the hydrochloric acid solution; reacting for 0.5-2 h under the temperature of 30-60 C. to obtain a durable super-hydrophobic fabric.
2. The preparation method of a durable super-hydrophobic fabric according to claim 1, characterized in that: the hydroxy-terminated polydimethylsiloxane has a molecular weight of from 400 to 8,000.
3. The preparation method of a durable super-hydrophobic fabric according to claim 1, characterized in that: the mass ratio of the tetraethoxysilane to the hydroxy-terminated polydimethylsiloxane is from 2:1 to 5:1.
4. The preparation method of a durable super-hydrophobic fabric according to claim 1, characterized in that: the mass percentage of the hydrochloric acid solution is 10-20 wt %.
5. The preparation method of a durable super-hydrophobic fabric according to claim 1, characterized in that: the reacting for 0.5-2 h under the temperature of 30-60 C. is carried out by placing the closed container in an oven at a controlled temperature of 30-60 C.
6. The preparation method of a durable super-hydrophobic fabric according to claim 1, characterized in that: the fabric is a fabric of any one of polyester, cotton, wool, nitrilon, polyurethane, and nylon.
7. A durable super-hydrophobic fabric, characterized in that: it is prepared by the method according to any of claims 1-6.
8. The durable super-hydrophobic fabric according to claim 7, characterized in that: the fabric has a contact angle of from 150 to 165, and still remains super-hydrophobic after 168 h or more of organic solvent soaking, and 112 washes or 600 wears for testing.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0018]
[0019]
[0020]
DETAILED DESCRIPTION OF THE EMBODIMENTS
[0021] In order to make the invention better understood, the invention will be further described below in conjunction with examples; however, the embodiments of the invention are not limited thereto.
Example 1
[0022] Soaking a polyester fabric into a mixed solution of tetraethoxysilane and polydimethylsiloxane having a molecular weight of 400 at a mass ratio of 3:1; taking out the fabric and then placing it into a closed container filled with a hydrochloric acid solution (mass fraction: 20 wt %) and above the liquid level of the hydrochloric acid solution; placing the closed container in an oven and reacting for 1 h under the temperature of 45 C. to obtain the durable super-hydrophobic fabric.
[0023] A brief description of how to get
[0024]
[0025] In order to evaluate the chemical stability of the super-hydrophobic fabrics, they were respectively soaked in a 50 mL beaker containing 30 mL of acetone, ethanol, toluene and hexane, sealed with plastic wrap, soaked at room temperature for 168 h, and washed with ethanol, and then dried in a blast drying oven at 50 C. for 1 h; and the contact angle was measured. Table 1 lists the contact angles of the durable super-hydrophobic fabrics of this example measured after the fabrics had been respectively soaked in acetone, ethanol, toluene and hexane for 168 h and then dried. It can be seen from Table 1 that the water contact angle of the durable super-hydrophobic fabric prepared in this example did not change much after the fabric had been soaked in different solvents for a long time, indicating that the fabric had excellent chemical stability.
[0026] In order to evaluate the wash resistance of the super-hydrophobic fabric, the fabric was washed according to the 2 A conditions of AATCC Test Method 61-2006, with the specific method as follows: Adjusting the water color fastness tester (SW-12A, Wenzhou Fangyuan Instrument Co., Ltd.) to a water temperature of 49 C., and adding to a steel cup of 90200 mm in size 150 mL of deionized water, 0.015 g of detergent, and 50 steel balls of 6 mm in diameter and 1 g in mass. Two minutes after preheating the steel cup, placing a fabric of 50150 mm in size in the steel cup, and restarting the instrument to operate at 402 rpm for 45 min Finally, taking out the sample, washing it three times with ethanol, and drying it in an oven at 60 C. Table 2 lists the contact angles measured after 112 washes of the durable super-hydrophobic fabric of this example in accordance with the 2 A conditions of AATCC Test Method 61-2006.
[0027] In order to evaluate the wear resistance of the super-hydrophobic fabric, the fabric was tested using a device as shown in
[0028] Table 2 lists the water contact angle of the fabric after it had been worn for 600 times. It can be seen from Table 2 that the durable super-hydrophobic fabric prepared in this example could maintain the water contact angle of 150 or more even after 112 washes and 600 wears, indicating that it had excellent wash and wear resistance.
[0029] Referring to
Example 2
[0030] Soaking a cotton fabric into a mixed solution of tetraethoxysilane and polydimethylsiloxane having a molecular weight of 8000 in a mass ratio of 2:1; taking out the fabric and then placing it into a closed container filled with a hydrochloric acid solution (mass fraction: 10 wt %) and above the liquid level of the hydrochloric acid solution; placing the closed container in an oven and reacting for 2 h under the temperature of 30 C. to obtain the durable super-hydrophobic fabric.
[0031] Table 1 lists the contact angles of the durable super-hydrophobic fabrics of this example measured after they had been respectively soaked in acetone, ethanol, toluene and hexane for 168 h, and then washed and dried. Table 2 lists the water contact angles measured after the durable super-hydrophobic fabric of this example was washed 112 times in accordance with the 2 A conditions of AATCC Test Method 61-2006 and worn 600 times in accordance with
Example 3
[0032] Soaking a nylon fabric into a mixed solution of tetraethoxysilane and polydimethylsiloxane having a molecular weight of 2000 in a mass ratio of 5:1; taking out the fabric and then placing it into a closed container filled with a hydrochloric acid solution (mass fraction: 15 wt %) and above the liquid level of the hydrochloric acid solution; placing the closed container in an oven and reacting for 1.5 h under the temperature of 45 C. to obtain the durable super-hydrophobic fabric.
[0033] Table 1 lists the contact angles of the durable super-hydrophobic fabrics of this example measured after they had been respectively soaked in acetone, ethanol, toluene and hexane for 168 h, and then washed and dried. Table 2 lists the water contact angles measured after the durable super-hydrophobic fabric of this example was washed 112 times in accordance with the 2 A conditions of AATCC Test Method 61-2006 and worn 600 times in accordance with
Example 4
[0034] Soaking a acrylic fabric into a mixed solution of tetraethoxysilane and polydimethylsiloxane having a molecular weight of 5000 in a mass ratio of 4:1; taking out the fabric and then placing it into a closed container filled with a hydrochloric acid solution (mass fraction: 20 wt %) and above the liquid level of the hydrochloric acid solution; placing the closed container in an oven and reacting for 0.5 h under the temperature of 60 C. to give the durable super-hydrophobic fabric.
[0035] Table 1 shows the water contact angle of the durable super-hydrophobic fabric of the example of the invention after immersion in different solvents for 168 h. Table 1 lists the contact angles of the durable super-hydrophobic fabrics of this example measured after they had been respectively soaked in acetone, ethanol, toluene and hexane for 168 h, and then washed and dried. Table 2 lists the water contact angles measured after the durable super-hydrophobic fabric of this example was washed 112 times in accordance with the 2 A conditions of AATCC Test Method 61-2006 and worn 600 times in accordance with
TABLE-US-00001 TABLE 1 Solvent Sample Acetone Ethanol Toluene Hexane Example 1 158.5 158.0 156.5 154.0 Example 2 156.0 155.5 157.0 155.0 Example 3 154.5 156.5 154.5 153.0 Example 4 155.0 153.0 155.5 154.5 Note: The test was carried out using the DSA100 contact angle tester from KRUSS, Germany. An average value was taken from 5 points for each sample.
[0036] Table 2 lists the water contact angles measured after the durable super-hydrophobic fabric of this example of the invention was washed 112 times in accordance with the 2 A conditions of AATCC Test Method 61-2006 and worn 600 times in accordance with
TABLE-US-00002 TABLE 2 Wash resistance test Wear resistance test Sample 112 times 600 times Example 1 155.0 155.5 Example 2 153.5 152.0 Example 3 151.0 154.0 Example 4 152.5 155.0 Note: The wash resistance test was carried out according to the 2A conditions of AATCC
Test Method 61-2006, and the wear test was carried out according to