Field of the Invention
The present invention relates to a method to manufacture composite fibers.
Description of the Prior Art
The textile nowadays is often blended with other materials to get extra functions, such as moisture absorption, antibacterial, deodorization, radiation absorption, warming, and etc.
However, the materials utilized to manufacture the composite fibers are mainly metal and chemicals, which are not recycled materials. Besides, different materials are hard to be blended well to be distributed evenly.
The main object of the present invention is to provide a method to manufacture composite fibers of rice husk and charcoal, which provides functional composite fibers having an appropriate ratio of rice husk and charcoal.
To achieve the above and other objects, the method to manufacture composite fibers of rice husk and charcoal includes the following steps.
Preparing first granules and second granules: heat a rice husk material at 300-800 degrees Celsius and grind the rice husk material. Blend the grinded rice husk material and PET to form first granules wherein the first granules comprise 15-20 wt % of the rice husk material. Heat a charcoal material at 800-1200 degrees Celsius and grind the charcoal material. Blend the grinded charcoal material and PET to form second granules wherein the second granules comprise 15-20 wt % of charcoal material. A mass fraction of rice husk material in the first granules is equal to a mass fraction of charcoal material in the second granules.
Blending the first granules and the second granules: blend the first granules and the second granules to form mixed granules.
Melting and blending: blend the mixed granules and PET and melt a mixture of the mixed granules and PET wherein the summation of mass fractions of the rice husk material and the charcoal material in the mixture is 0.2-2 wt %.
Filament making: form composite fibers from the melted mixture by a procedure of filament making.
Thereby, the composite fibers provided have improved performance.
The present invention will become more obvious from the following description when taken in connection with the accompanying drawings, which show, for purpose of illustrations only, the preferred embodiment(s) in accordance with the present invention.
The sole FIGURE is a flow chart of the present invention.
Please refer to the FIGURE, the method to manufacture composite fibers of rice husk includes the following steps.
Preparing first granules and second granules: heat a rice husk material 1 at 300-800 degrees Celsius and grind the rice husk material 1. Blend the grinded rice husk material 1 and PET 3 to form first granules 4 wherein the first granules 4 comprise 15-20 wt % of the rice husk material 1. Heat a charcoal material 2 at 800-1200 degrees Celsius and grind the charcoal material 2. Blend the grinded charcoal material 2 and PET 3 to form second granules 5 wherein the second granules 5 comprise 15-20 wt % of charcoal material 2. A mass fraction of rice husk material 1 in the first granules 4 is equal to a mass fraction of charcoal material 2 in the second granules 5. Preferably, the charcoal material 2 is selected from a group composed of binchotan and bamboo charcoal, and the grinded rice husk material 1 and the grinded charcoal material 2 have diameters in nano-scale. In the present embodiment, the rice husk material 1 is heated at 300 degrees Celsius, and the charcoal material 2 is heated at 800 degrees Celsius. Besides, the mass fraction of the rice husk material 1 in the first granules 4 is 15 wt %, and the mass fraction of the charcoal material 2 in the second granules 5 is also 15 wt %.
Blending the first granules and the second granules: blend the first granules 4 and the second granules 5 to form mixed granules 6.
Melting and blending: blend the mixed granules 6 and PET 3 and melt a mixture of the mixed granules 6 and PET 3 wherein the summation of mass fractions of the rice husk material 1 and the charcoal material 2 in the mixture is 0.2-2 wt %. Preferably, the mixed granules 6 and PET 3 are mixed at a mass ratio of 1:9.
Filament making: form composite fibers 7 from the melted mixture by a procedure of filament making. The composite fibers 7 can be utilized to be further weaved.
In conclusion, the two materials are granulated respectively and further blended to be granulated again so that the materials may be distributed evenly. In addition, the improved ratio of materials and PET results that the composite fibers still have good ductility and further has the functions of rice husk and charcoal.
Thus, the composite fibers are advantageous in absorbing radiation and heavy metal, absorbing moisture, deodorizing, providing anions, releasing far infrared, and antistatic.
Number | Date | Country | Kind |
---|---|---|---|
105104818 A | Feb 2016 | TW | national |
Number | Date | Country |
---|---|---|
105017733 | Nov 2015 | CN |
I273114 | Feb 2007 | TW |
Entry |
---|
TW I273114 (2007), machine translation, Taiwan Intellectual Property Office. |
CN 105017733 A (2015), machine translation, EPO espacnet. |
Number | Date | Country | |
---|---|---|---|
20170241046 A1 | Aug 2017 | US |