The present invention relates to an ion blower that blows an airflow containing ions (plus ion, minus ion, or plus/minus ions) generated by corona discharge.
The ion blower applies a high voltage to needle-like discharge electrodes (hereinafter, “discharge needles”) to generate ions from the air, and irradiates ions to an object to be electrically removed, which has been charged, to remove electricity. If a positive voltage is applied, plus ion is generated, and if a negative voltage is applied, minus ion is generated. In some ion blowers, a discharge needle to which the positive voltage is applied, and a discharge needle to which the negative voltage is applied are separately provided, to generate plus ion and minus ion simultaneously by these discharge needles (a so-called direct current ion blower).
One example of such an ion blower includes, for example, a plate-like glass substrate. This glass substrate is used for, for example, a thin-film transistor (TFT) liquid crystal panel, a plasma display panel (PDP), a liquid crystal display (LCD), and the like.
For example, Japanese Patent Application Laid-Open No. 2004-253193 is known as a conventional art of such an ion blower.
The outline of the conventional art is explained here with reference to accompanying drawings.
In the ion blower 100, since the high voltage is applied to the discharge needles 102 for a long period, the discharge needles 102 may deteriorate, or dust is attracted and adheres to the discharge needles 102, though the ion blower 100 is used in a clean room. Therefore, after a predetermined period has passed, replacement or cleaning of the discharge needles 102 is required.
In the ion blower 100 in the conventional art, however, as is obvious from
Furthermore, to have a small structure as shown in
As the diameter of the support 105 decreases, it is hard to put a hand in, thereby making maintenance difficult. Accordingly, in the ion blower 100 in the conventional art, the opening diameter of the support 105 cannot be made small too much, putting a restriction on the design.
When the discharge needles 102 including the support 105 are formed in a unit, to facilitate replacement, a mechanical structure for replacement becomes complicated, thereby causing an increase in the production cost.
The present invention has been achieved in order to solve the above problems, and it is an object of the present invention to provide an ion blower that realizes both simplification of maintenance such as cleaning and replacement of the discharge needles, and miniaturization.
To solve the above problems, an ion blower according to claim 1 is an ion blower of corona discharge type including a blower body having a fan, an opening/closing door openably fitted to the blower body on an upstream side of an airflow by the fan, and discharge needles provided so as to be directed substantially in a perpendicular direction to the opening/closing door. When the opening/closing door is opened, the direction of all discharge needles does not intersect the blower body.
An ion blower according to claim 2 is the ion blower according to claim 1, wherein the opening/closing door opens downward, and is stable in the open state due to the dead weight of the opening/closing door.
An ion blower according to claim 3 is the ion blower according to claim 1 or 2, further including a support, and an adjusting unit that adjusts the blowing angle of the blower body with respect to the support and fixes the adjusted position.
An ion blower according to claim 4 is the ion blower according to claim 3, wherein the adjusting unit includes a body side adjusting plate in a disk shape having teeth on the disk, with teeth tips and teeth bottoms being on a radius of a circle, and fixed to the blower body, a support side adjusting plate in a disk shape having the same teeth as those on the body side adjusting plate and fixed to the support, and an angle fixing unit that brings the body side adjusting plate close to or separates away from the support side adjusting plate. The angle fixing unit is operated to separate the body side adjusting plate and the support side adjusting plate from each other, so that the blower body can be freely rotated with respect to the support. After the adjustment, the angle fixing unit is operated to bring the body side adjusting plate and the support side adjusting plate into contact with each other so that the teeth thereof engage with each other, thereby fixing the blower body with respect to the support.
An ion blower according to claim 5 is the ion blower according to any claims 1 to 4, wherein the discharge needle is formed integrally with a discharge needle stand, and at the time of replacement of the discharge needle, the discharge needle is replaced by detaching the discharge needle stand.
According to the present invention, an ion blower that realizes both simplification of maintenance such as cleaning and replacement of the discharge needles, and miniaturization can be provided.
Best mode for carrying out the invention will be explained below with reference to the drawings.
An ion blower 1 includes, as shown in
The respective units are explained first.
The blower body 10 has a substantially cubic shape, and as shown in
The support 11 is a bent plate member having substantially a letter U shape, as seen from the flowing direction of airflow, as shown in
The adjusting unit 12 includes, as shown in
The opening/closing door 13 is, as shown in
The fixing unit 14 is, as shown in
The fan 15 is, as shown in
The discharge needle 16 is arranged, as shown in
The flow path cylinder 18 restricts the flow path of the airflow from the opening 13a of the opening/closing door 13, so that ions reach the fan 15 reliably.
The ion balance sensor 19 is made of metal, has electroconductivity, and is constructed by integrally forming a plurality of linear of tabular circular tubes in a concentric circular shape (as in the opening 13a in
The power source drive controller 20 includes a power source, a driving unit, and a control unit, to control ion generation as described below.
The operation unit 21 is for an operator to perform various kinds of desired setting with respect to the power source drive controller 20.
A flow path is formed in the ion blower 1, through which the air flows, and the airflow sequentially passes, in order of from the upstream side, the opening 13a of the opening/closing door 13, the fan 15, the opening of the blower body 10, and the ion balance sensor 19. In this flow path from the opening 13a of the opening/closing door 13 to the fan 15, the flow path is blocked by the flow path cylinder 18, and the discharge needles 16 are arranged within the flow path cylinder 18. As a result, the generated plus ion and minus ion reliably reach the fan 15.
An operation of the ion blower 1 is briefly explained here.
When an operator turns on a power switch in the operation unit 21, the fan 15 starts to rotate, and plus ion and minus ion are generated by the discharge needles 16. As is seen from
In this ion balance control, the power source drive controller 20 adjusts the positive and negative voltages to be applied to the discharge needles 16 so as to control the ion balance based on the detection signal from the ion balance sensor 19. When it is determined from the detection signal that minus ions are generated more than the plus ions, the power source drive controller 20 raises the voltage to be applied to the discharge needles 16 for plus ions to a higher voltage (for example, raises the voltage from +20V to +24V), to increase the plus ion. Alternatively, the power source drive controller 20 raises the voltage to be applied to the discharge needles 16 for minus ions to a higher voltage on the positive side (for example, raises the voltage from −24V to −20V), to decrease the minus ion.
Likewise, When it is determined from the detection signal that plus ions are generated more than the minus ions, the power source drive controller 20 lowers the voltage to be applied to the discharge needles 16 for plus ions to a lower voltage (for example, lowers the voltage from +24V to +20V), to decrease the plus ion. Alternatively, the power source drive controller 20 lowers the voltage to be applied to the discharge needles 16 for minus ions to a lower voltage on the negative side (for example, lowers the voltage from −20V to −24V), to increase the minus ion.
When an ion balance-adjusting volume of the operation unit 21 is adjusted, the ion balance is balanced, which has been unbalanced heretofore, or plus and minus balance may be intentionally biased and output.
In this ion blower 1, particularly by using the adjusting unit 12 as shown in
The maintenance of the ion blower 1 is explained next. At first, the fixing units 14 shown in
Furthermore, in the ion blower 1 of the present invention, since the maintenance becomes easy, the time required for maintenance can be reduced. Particularly, the time for suspending the actual production line accompanying the maintenance is reduced, thereby contributing to an improvement in the yield and reduction of the production cost. Furthermore, since maintenance is possible from the back side, not from the production line side as in the conventional art, maintenance becomes easy. Since some dust generated at the time of maintenance scatters outside of the production line, dust and dirt are prevented from adhering on the production line.
The ion blower in the embodiment has been explained. The ion blower in the embodiment can be variously modified. For example, in the embodiment, a configuration in which the discharge needle 16 is directly inserted into or pulled out from the discharge needle stand 17 is adopted. However, the discharge needle stand 17 and the discharge needle 16 may be formed integrally, and the discharge needle stand 17 and the opening/closing door 13 can be coupled together, thereby facilitating insertion and pulling out.
For the opening/closing door 13, such a configuration that the opening/closing door 13 opens substantially by 90 degrees so as to be perpendicular to the blower body 10, as shown in
A vertically opening configuration in which the opening/closing door 13 is opened vertically is adopted, but a laterally opening configuration may be adopted. Also in this case, the discharge needles on the opening/closing door need only to open so as to be noncrossover with respect to the blower body. For example, if the opening/closing door has a configuration to open by 90 to 180 degrees, replacement of the discharge needles becomes sufficiently easy.
The present invention is also applicable to an alternating current type ion blower that generates the plus ion and the minus ion alternately by applying AC high voltage to the individual discharge needle.
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/JP2005/006443 | 3/25/2005 | WO | 00 | 4/11/2007 |