The invention relates to the device for production of nanofibres through electrostatic spinning of polymer matrices in electrostatic field of high intensity induced through difference of potentials between the spinning electrode and the collecting electrode, which comprises a cylindric body, while the nanofibres are deposited on substrate material conducted between the spinning electrode and the collecting electrode.
Next to this the invention relates to the collecting electrode of the device for production of nanofibres through electrostatic spinning of polymer matrices, which comprises the cylindric body.
The device for production of layer of nanofibres through electrostatic spinning of polymer matrices comprises the spinning electrode and the collecting electrode, which is usually formed of a rod or a metal plate connected to the opposite pole of high voltage source than the spinning electrode or is grounded.
In CZ 294 274 are, next to others, described also cylindric rod-shaped collecting electrodes, which are towards the spinning electrode positioned behind the substrate material, which does not touch their surface. Electric field is induced between the cylindric spinning electrode and individual rods forming the collecting electrode. The resultant electric field is not homogenous and it may be unstable in time. During the process and on the nanofibrous layer is this reflected especially by drop of production and by increase in non-uniformity of performance.
Further is from CZ PV 2006-477 known the collecting electrode which comprises a conductive thin-walled body of electrode, in whose face is performed at least one opening, around whose perimeter is arranged the border, while in the inner space of electrode body there is mounted at least one holder of electrode interconnected with at least one brace fastened in the spinning chamber, while the holder of electrode is arranged behind the opening border and it is electrically non-conducting. This embodiment of collecting electrode does not produce any corona and field induced through the collecting electrode is influenced only by shape of the collecting electrode. At this embodiment of the collecting electrode, elimination or compensation of the electric charge applied by means of nanofibres to the substrate seems to be problematic.
Therefore the device for production of nanofibres through electrostatic spinning was further improved according to CZ PUV 2007-18612, by which is the collecting electrode in contact with substrate material. Electric charge brought to substrate material by nanofibres is due to contact of substrate material with conductive body of the collecting electrode of cylindric shape carried away from substrate material, nevertheless the disadvantage of this solution is an increased friction of substrate material on the surface of the collecting electrode, when especially in the case of fine substrate materials consisting of weakly mutually fixed fibres, e.g. the fine web, the damage of substrate material occurs or may occur, especially when the device comprises more spinning units and thus also more collecting electrodes and substrate material must be strongly stretched.
The goal of the invention is to reduce or totally eliminate the disadvantages of background art.
The goal of the invention has been reached by the device for production of nanofibres through electrostatic spinning of polymer matrices according to the invention, whose principle consists in that the cylindric body of collecting electrode is mounted rotatably coincidentally with direction of motion of substrate material, through which is the resistance developed by the collecting electrode against motion of substrate material reduced and the substrate material is subjected to lower stress. As a result of this, wear of the collecting electrode and especially danger that the substrate material is damaged, is reduced.
To improve sticking of substrate material on surface of the cylindric body of collecting electrode it is advantageous, if the cylindric body is provided with a cavity connected to source of underpressure and in peripheral casing of cylindric body are performed openings for air suction, through which is the substrate material simultaneously sucked to surface of cylindric body of the collecting electrode.
To improve transport of substrate material formed especially of fine web of relatively great thickness it is advantageous, if the cylindric body of collecting electrode is provided with tips on its perimeter, that are able to extend into the substrate material and to exit from it and thus exactly determine the speed of motion of substrate material, its position and also its stretching between the collecting electrodes of individual, one after another, arranged spinning units.
For improving of spinning effect it is advantageous, if the tips are made of electrically conductive material and their length corresponds to thickness of substrate material.
At sufficient density of tips of electrically conductive material it is advantageous, if these tips are mounted in body of electrically non-conducting material and at least in position against the spinning electrode the tips are connected to the high voltage source of opposite polarity than the spinning electrode or grounded. Electrostatic field in this case is induced between the tips and the spinning electrode. The produced nanofibres are carried from the spinning electrode towards the tips of collecting electrode and they deposit on substrate material.
In embodiment according to the claim 6 the tips are made of electrically non-conducting material and they are mounted in the cylindric body from electrically conductive material, which is connected to high voltage source of opposite polarity than the spinning electrode or grounded. This embodiment is suitable for substrate materials formed of thin webs of electrically conductive material or of material, at which the electric conductivity was increased by some of the known methods. At such thin webs it is sufficient, when the electrostatic field is induced between the spinning electrode and cylindric surface of collecting electrode, with which is the web in contact.
If the device contains collecting electrode, whose cylindric body is made of electrically conductive material, it is according to the claim 7 advantageous, if the cylindric body of the collecting electrode contains the conductive thin-walled body, in whose at least one face is performed the opening, around whose perimeter is arranged the border. Through opening in the face there passes the brace, which is fastened in the spinning chamber. On the brace is in inner space of conductive thin-walled body, in rotatable manner mounted the holder of electrode, which is fixed in conductive thin-walled body. The collecting electrode according to this embodiment minimises possibilities for creating of corona, especially on edge (face) parts of the cylindric body. In the case when is the collecting electrode provided in this way with conductive tips on its perimeter, the device according to the invention is able to deposit the nanofibres on substrate materials formed of webs of greater thickness.
The principle of collecting electrode according to the invention consists in that the cylindric body of collecting electrode is provided with means for its rotatable mounting in the spinning chamber of the device for production of nanofibres through spinning of polymer matrices. Rotatable mounting of the collecting electrode enhances possibilities for usage of fine substrate materials, which are formed of fabrics of low linear bonding strength (consistence), e.g. of the webs.
In advantageous embodiment according to the claim 9 the cylindric body of the collecting electrode is hollow and in its inner space the holder is fixed, which is rotatably mounted on the brace, which protrudes from the inner space of cylindric body through at least one face of cylindric body and it is provided with means for mounting in the spinning chamber.
At the same time it is advantageous, if in the peripheral casing of cylindric body of the collecting electrode the openings for suction of air are performed and the cavity of cylindric body is connectable to underpressure source. By action of underpressure the collecting electrode is able to act on the substrate material, which touches it during the spinning process, and to keep it on its surface.
Embodiment of rotatable collecting electrodes with smooth casing is further improved according to the claim 11 by that it is provided on its surface with tips which may be of electrically conductive material or may be of electrically non-conducting material on condition that they are mounted in cylindric body of electrically conductive material. The tips of electrically conductive material may be mounted in a body of conductive material or in a body of non-conducting material. Selection of materials for the tips and material for the cylindric body depends on technological conditions of spinning, on the polymer matrix subjected to spinning and on other factors according to application of the produced nanofibres, etc.
Exemplary embodiment of the device according to the invention and the collecting electrode according to the invention is schematically represented on enclosed drawings, where
Exemplary embodiment of the device for production of nanofibres through electrostatic spinning of polymer matrices in electrostatic field of high intensity according to the invention is represented in
The collecting electrode 4 contains the cylindric body 41 of electrically conductive material, which is in the spinning chamber 1 in a known manner, not represented in detail, mounted rotatably coincidentally to direction of motion of the substrate material 5. The cylindric body 41 of collecting electrode is in a known not represented manner connected to the high voltage source of opposite polarity than the spinning electrode 3 or is grounded. In embodiment represented in
During the spinning process the substrate material 5 moves through the spinning chamber 1 between the spinning electrode 3 and collecting electrode 4, while it is in contact with surface of the cylindric body 41 of collecting electrode. The cylindric body 41 of collecting electrode rotates in direction and in a speed corresponding to direction and speed of motion of substrate material, by which is the resistance developed by stationary collecting electrode 4 against motion of substrate material 5 eliminated and the substrate material 5 is less stressed. Rotatably mounted cylindric collecting electrode is suitable especially for the fine substrate materials, by which it reduces the danger of damage of substrate material through abrasion against surface of the collecting electrode 4.
For more resistant substrate materials may be used the cylindric body 41 of collecting electrode which is mounted in the spinning chamber 1 freely rotatably without forced drive. Rotation of the cylindric body 41 of collecting electrode is after then secured by friction from motion of substrate material 5.
To improve contact of the substrate material 5 with surface of the cylindric body 41 of collecting electrode, the embodiment according to
In embodiment according to
In embodiment according to
According to
Another exemplary embodiment of cylindric body 41 of collecting electrode is represented in
At example of embodiment according to
All embodiments of the cylindric body 41 of collecting electrode equipped with tips 416 may be provided with openings 412 in the casing 411, while the openings 412 are performed between the tips 416 and serve to stick the substrate material 5 to the casing 411 of the collecting electrode cylindric body.
Number | Date | Country | Kind |
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PV 2007-729 | Oct 2007 | CZ | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/CZ2008/000125 | 10/15/2008 | WO | 00 | 7/15/2010 |