Blowing device, holder for blowing device, sheet discharge device, and image forming apparatus
09851678 ยท 2017-12-26
Assignee
Inventors
Cpc classification
F04D29/584
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D17/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B65H31/02
PERFORMING OPERATIONS; TRANSPORTING
F04D17/16
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
G03G15/6552
PHYSICS
G03G21/206
PHYSICS
F04D29/601
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
G03G15/00
PHYSICS
B65H31/02
PERFORMING OPERATIONS; TRANSPORTING
F04D29/42
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D17/16
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D17/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/60
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/58
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A blowing device is equipped with a blowing portion and a holder. The blowing portion has a cylindrical body that stores a rotating body, and includes: a suction inlet arranged on a side surface perpendicular to the axial direction of the cylindrical body; and an exhaust outlet arranged on a part of the peripheral surface of the cylindrical body. The holder has a wall that faces the peripheral surface of the blowing portion with a gap between the wall and the peripheral surface, and holds the blowing portion inside. The holder includes: a suction portion that communicates with the suction inlet; and an exhaust portion that causes the exhaust outlet to communicate with the outside and the gap.
Claims
1. A blowing device comprising: a blowing portion having a cylindrical body that stores a rotating body, the blowing portion comprising: a suction inlet arranged on a side surface perpendicular to an axial direction of the cylindrical body and configured to suction gas; and an exhaust outlet arranged on a part of a peripheral surface of the cylindrical body and configured to exhaust the gas along a gas exhaust path; and a holder holding the blowing portion in the holder, the holder comprising: a wall that faces the peripheral surface with a gap between the wall and the peripheral surface; a suction portion that communicates with the suction inlet; and an exhaust portion that causes the exhaust outlet to communicate with outside and the gap, wherein: the exhaust portion includes a branch portion that protrudes from an edge of the exhaust portion and partially facing the exhaust outlet; and the branch portion defines a gap exhaust portion and directs the flow of part of the gas that is exhausted from the exhaust outlet through the gap exhaust portion to the gap.
2. The blowing device according to claim 1, wherein an inclined surface that leads the gas exhausted from the exhaust outlet to the gap is formed at an end portion of the extension portion on a side of the exhaust outlet.
3. The blowing device according to claim 1, wherein the holder further comprises a flow path in which the gas flows along a periphery of the blowing portion.
4. The blowing device according to claim 2, wherein the holder further comprises a flow path in which the gas flows along a periphery of the blowing portion.
5. A holder for holding a blowing portion, the holder comprising: a wall that faces a peripheral surface of the blowing portion with a gap between the wall and the peripheral surface; a suction portion that communicates with a suction inlet of the blowing portion; and an exhaust portion that causes an exhaust outlet of the blowing portion to communicate with outside and the gap, wherein: the exhaust outlet exhausts gas along a gas exhaust path, and the exhaust portion includes a branch portion that extends into the holder and protrudes from an edge of the exhaust portion and partially facing the exhaust outlet; and the branch portion defines a gap exhaust portion and directs the flow of part of the gas that is exhausted from the exhaust outlet through the gap exhaust portion to the gap.
6. A sheet discharge device comprising: a sheet discharge port that discharges a sheet of paper; a sheet discharge tray that stores the sheet of paper that is discharged from the sheet discharge port; and the blowing device according to claim 1, wherein the blowing device is arranged so that the exhaust portion is exposed at the sheet discharge port.
7. An image forming apparatus configured to form an image on a sheet of paper by an electrophotographic method, the image forming apparatus comprising: a sheet discharge port that discharges a sheet of paper; a sheet discharge tray that stores the sheet of paper that is discharged from the sheet discharge port; and the blowing device according to claim 1, wherein the blowing device is arranged so that the exhaust portion is exposed at the sheet discharge port.
8. The blowing device according to claim 1, wherein the opening is arranged downward from the exhaust outlet in the gas exhaust path.
9. The holder according to claim 5, wherein the opening is arranged downward from the exhaust outlet in the gas exhaust path.
10. The blowing device according to claim 1, wherein: the wall of the holder includes a wall part that is arranged on a side of the exhaust outlet of the blowing portion and forms a part of the gap between the peripheral surface of the blowing portion and the wall part; the exhaust portion is provided on the wall part; and the extension portion extends from the edge portion of the exhaust portion on the wall part to the exhaust outlet.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE INVENTION
(8) Hereinafter, a blowing device according to preferred embodiments of the present invention, and an image forming apparatus incorporating the blowing device will be described with reference to the attached drawings.
(9) As shown an
(10) The image forming portion 130 is equipped with a transfer portion 131 that transfers a toner image onto a sheet of paper, and a fixing portion 132 that heats and pressurizes the sheet of paper that has passed the transfer portion 131. The sheet of paper is heated in the fixing portion 132, and is discharged to the sheet discharge tray 140 in a state in which the toner image is fixed onto the surface of the sheet of paper.
(11) The sheet discharge tray 140 is arranged vertically between the document reading portion 110 and the image forming portion 130 and forms a so called in-body sheet discharge portion. The sheet of paper discharged to the in-body sheet discharge portion after being heated in the fixing portion 132 is inferior in heat dissipation as compared with a case in which a sheet of paper is discharged to a sheet discharge portion exposed to the side face of a device. During continuous image formation, a large number of sheets of paper that are still not cooled down sufficiently are stacked and stored on the sheet discharge tray 140, so that a toner image on a sheet of paper positioned in the middle is retransferred onto other sheets of paper that contact the upper side of the sheet of paper, which is likely to cause degradation of image quality and stain of the sheet of paper.
(12) Therefore, the image forming apparatus 100 includes the blowing device 10 being arranged close to a sheet discharge port 141 above the sheet discharge tray 140 and exhausting air.
(13) As shown in
(14) The holder 2 for a blowing device includes four walls 21A to 21D that face the peripheral surface 13 of the casing 11 with a gap 20 between the walls and the peripheral surface and holds the blowing portion 1 inside. The holder 2 includes: a suction portion 22 that communicates with the suction inlet 12; and an exhaust portion 23 that causes the exhaust outlet 14 to communicate with the outside and the gap 20. The blowing portion 1 is fixed to the holder 2 by a screw 8 engaged from the side of the bottom face of the holder 2, the bottom face being open to the outside.
(15) As shown in
(16) When the disk of the blowing portion 1 is rotated, the outside air is suctioned from the suction portion 22 of the holder 2 into the blowing portion 1 by way of the suction inlet 12 of the blowing portion 1, and is then exhausted from the exhaust outlet 14 of the blowing portion 1. The air discharged from the exhaust outlet 14 is exhausted toward the sheet discharge tray 140 mainly by way of the exhaust portion 23 of the holder 2. The sheet of paper that has passed the fixing portion 132 is cooled down by the air exhausted from the exhaust portion 23 of the holder 2 while being discharged toward the sheet discharge tray 140.
(17) As shown in
(18) The blowing device 10, because being arranged above the fixing portion 140 in the image forming apparatus 100, is affected by the heat generated in the fixing portion 140. During continuous image formation, the temperature of the blowing portion 1 may rise in combination with heat generation of the motor 17 and may cause modification and breakage of each portion, and a failure of the motor.
(19) The air exhausted from the blowing portion 1 cools the blowing portion 1 itself down, which can reduce the temperature rise of the blowing portion 1, prevent occurrence of breakage or a failure, and reliably continue cooling sheets of paper by the blowing device 10 even during continuous image formation.
(20) It should be noted that two branch portions 4 are arranged across the exhaust outlet 14 so as to lead the part of the air exhausted from the exhaust outlet 14, from the opposite sides of the casing 11 into the gap 20.
(21) As shown in
(22) As shown in
(23) It is to be noted that in the blowing devices 101 and 102, the flow path 5 can be formed of a closed cross sectional shaped pipe that is closed except an end portion of the flow path on the side of the exhaust outlet 14 and the openings 51. Moreover, a part or the whole of the upper face and the bottom face may be open outward.
(24) As shown in
(25) Air exhausted from the first exhaust outlet 14A can reliably cool down a sheet of paper discharged to the sheet discharge tray 140, and air exhausted from the second exhaust outlet 14B can reliably cool the blowing portion 1 down. It should be noted that the opening area of the first exhaust outlet 14A and the second exhaust outlet 14B can be appropriately determined based on the ratio of the amount of air required for cooling of a sheet of paper to the amount of air required for cooling of the blowing portion 1.
(26) In addition, as other preferred embodiments, a branch portion 4 of the blowing device 10 may be configured to make it possible to selectively open and close between an exhaust outlet 14 and a gap 20, and, only when the blowing portion 1 needs to be cooled down, the part of air exhausted from the exhaust outlet 14 may be led to the gap 20. Furthermore, the amount of air to be led to the gap 20 may be able to be adjusted.
(27) It is to be noted that, while, in the above preferred embodiments, cases in which the present invention is applied to the image forming apparatus 100 are described, the present invention is characterized in that a blowing portion is configured to cool itself down by using part of air exhausted from the blowing portion and can be similarly applied to a blowing device that is used in a situation in which the temperature rise of the blowing portion causes a problem. Moreover, the blowing portion 1 is not limited to a blowing portion configured with a sirocco fan. Furthermore, for example, the present invention can be similarly applied to a sheet discharge device such as a post-processing device, which is selectively fitted on an image forming apparatus. Additionally, the present invention can be also similarly applied to gas other than air.
(28) The foregoing preferred embodiments are to be considered in all respects as illustrative and not restrictive. The scope of the present invention is defined by the following claims, not by the foregoing preferred embodiments. Further, the scope of the present invention is intended to include the scopes of the claims and all possible changes and modifications within the senses and scopes of equivalents.