The present application claims priority to and incorporates by reference the entire contents of Japanese Patent Application No. 2014-115059 filed in Japan on Jun. 3, 2014.
1. Field of the Invention
The present invention relates to an electronic device including therein a Helmholtz silencer, and in more detail, to an image forming apparatus such as a copying machine, a facsimile, a printer, and a multifunction peripheral thereof.
2. Description of the Related Art
Recently, in an image forming apparatus, noise reduction and unpleasant sound reduction of machines have been demanded. In particular, such reduction is accelerating regarding a polygon motor of a writing unit that causes high-frequency unpleasant sound.
Japanese Patent Application Laid-open No. 2000-235396 discloses an invention in which a Helmholtz silencer is configured with an exterior cover so as to reduce noise of a device while saving space. However, the invention has the problem that it is difficult to design a desired distance between a noise source and a Helmholtz silencer and the problem that the costs are increased because the exterior cover is arranged on the entire side surface, for example.
That is, in the case of the conventional Helmholtz silencer attached to the exterior cover or the like, the Helmholtz silencer is separated from a writing unit (noise source), and thus the silencing effect is reduced. Furthermore, there occurs a problem of high-frequency unpleasant noise generated when a polygon motor of a writing unit rotates individually during operation.
When the Helmholtz silencer is arranged in the entire periphery of a noise source to prevent high-frequency noise from leaking to the outside in order to solve the problems, the costs are increased and the space cannot be secured.
When a target frequency is determined, the approximate size of a Helmholtz silencer is determined. Thus, when an installation position, a noise source, and a frequency are determined, a distance between the noise source and the Helmholtz silencer is determined to some degree. This causes a restriction that the noise source and the Helmholtz silencer cannot be brought closer to each other, thus reducing the silencing effect.
Moreover, in an image forming apparatus having a plurality of line velocities, a low frequency to a high frequency cause unpleasant noise, which is a problem. The inventors of the present application are not responsible for the conventional techniques for solving such a problem using a Helmholtz silencer.
Moreover, when the Helmholtz silencer is attached to an exterior cover of an image forming apparatus body, the cover opening or closing operation force is increased, causing a problem of the obstacle to the operation of inserting or taking out inner units. When the Helmholtz silencer is configured integrally with the exterior cover, the cover needs to be formed newly when used in a similar model with a slight difference.
In view of the conventional problems, there is a need to improve the arrangement of the Helmholtz silencer and the silencing effect thereof.
It is an object of the present invention to at least partially solve the problems in the conventional technology.
According to the present invention, there is provided an electronic device comprising: a shielding object that is arranged at least in a plurality of directions and shields noise; and a Helmholtz silencer that is arranged in a direction where the shielding object does not exist, the shielding object and the silencer being arranged with respect to a noise source causing noise such as a driving source that is arranged inside an apparatus body, wherein a neck portion of the Helmholtz silencer is directed to the noise source, a plurality of such Helmholtz silencers are provided to correspond to at least two kinds of frequencies, and installed number of the Helmholtz silencers corresponding to at least two kinds of the frequencies respectively, is made different depending on a distance from the noise source.
The present invention also provides an image forming apparatus comprising: a shielding object that is arranged at least in a plurality of directions and shields noise; and a Helmholtz silencer that is arranged in a direction where the shielding object does not exist, the shielding object and the silencer being arranged with respect to a noise source causing noise such as a driving source that is arranged inside an apparatus body, wherein a neck portion of the Helmholtz silencer is directed to the noise source, a plurality of such Helmholtz silencers are provided to correspond to at least two kinds of frequencies, and installed number of the Helmholtz silencers corresponding to at least two kinds of the frequencies respectively, is made different depending on a distance from the noise source.
The above and other objects, features, advantages and technical and industrial significance of this invention will be better understood by reading the following detailed description of presently preferred embodiments of the invention, when considered in connection with the accompanying drawings.
Embodiments of the present invention will be described below with reference to the enclosed drawings.
In an image forming apparatus according to the embodiments of the present invention, a Helmholtz silencer is arranged in the vicinity of a writing unit (noise source), and hole openings (neck portions) are arranged at the side of the writing unit (noise source), thereby exerting the silencing effect efficiently. When the writing unit (noise source) is arranged in a structure forming the image forming apparatus body, the Helmholtz silencer is arranged on the side of non-shielded surfaces of the writing unit. This arrangement improves the silencing effect while reducing the number of Helmholtz silencers. Moreover, a plurality of Helmholtz silencers corresponding to respective frequencies of generated noise are arranged to silence various kinds of noise from low frequency to high frequency. Furthermore, a member to which the Helmholtz silencer is attached is an interior cover of the image forming apparatus body so as to achieve downsizing, lightweight, and easiness in attaching and removing the device.
First, an image forming apparatus that is an example of an electronic device embodied in the present invention will be described with reference to
As illustrated in
The ADF 10 includes a document tray 20, a paper feeding roller 21, a carriage belt 22, a paper ejection roller 23, and a paper ejection tray 24. The ADF 10 is attached to the image reading unit 4 through an opening and closing mechanism (not illustrated) such as a hinge so as to be opened and closed freely.
The paper feeding roller 21 separates each piece of a bundle of documents (not illustrated) placed on the document tray 20 and transfers the piece to the image reading unit 4. The carriage belt 22 transfers the document separated by the paper feeding roller 21 to the image reading unit 4. The paper ejection roller 23 ejects the document discharged from the image reading unit 4 through the carriage belt 22 to the paper ejection tray 24 on the lower side of the document tray 20.
The paper feeding unit 3 includes a paper feeding cassette 30 and a paper feeding unit 31. The paper feeding cassette 30 stores different paper sizes of recording media (not illustrated). The paper feeding unit 31 conveys the recording medium stored in the paper feeding cassette 30 to an image forming position of the image forming unit 5.
The image reading unit 4 includes a housing 40, an optical scanning unit 41, a contact glass 42, and a driving unit (not illustrated). The optical scanning unit 41 is provided inside the housing 40, and includes a light emitting diode (LED) unit. The optical scanning unit 41 emits light from the LED unit in a main-scanning direction, and the driving unit scans the whole irradiated area in a sub-scanning direction. In this way, the optical scanning unit 41 reads out a two-dimensional color image of a document.
The contact glass 42 is provided on the upper side of the housing 40 and forms an upper surface portion of the housing 40. The driving unit includes wire fixed to the optical scanning unit 41, a plurality of driven pulleys and driving pulleys that bridge the wire, and a motor that rotates the driving pulleys.
The image forming unit 5 includes an exposure unit 51, an image formation unit 50, a transfer roller 55, a fixing unit 53 as an example of a fixing device, a main conveying path 70, and a reverse conveying path 73.
As illustrated in
The image formation unit 50 forms a visible image (toner image) using the photoconductor drum 74, based on image information read out by the image reading unit 4. Moreover, the visible image formed on the photoconductor drum 74 is transferred by the photoconductor drum 74 and the transfer roller 55.
Then, the transfer roller 55 is pressed against the photoconductor drum 74, whereby a toner image formed on the photoconductor drum 74 is transferred onto a recording medium conveyed from the paper feeding unit 3 through the main conveying path 70. The fixing unit 53 is provided on the downstream side, in the conveying direction of the recording medium, of the transfer roller 55. The fixing unit 53 is constituted by pressing a pressing roller 59 against a fixing roller 58. Then, the fixing unit 53 adds heat and pressure to the recording medium by the pressing roller 59 so as to melt toner of the toner image transferred to the recording medium and fix the toner image onto the recording medium as an image.
Moreover, as illustrated in
The configuration of a first embodiment of the present invention will be described with reference to
Note that the forms of the small rooms are made different in and
The configuration of a second embodiment of the present invention will be described with reference to
As illustrated in
As described above, the bottom surface and the right surface of the writing unit 16 as a noise source are surrounded by the stay members (stay (writing) 17 and the like) having a frame form or the like. Thus, when the Helmholtz silencer 18, which has a form of a container with a narrowed opening and includes resonance boxes and neck portions smaller than the resonance boxes, is arranged on the sides of the non-shielded front surface and rear surface, the silencing effect can be exerted more easily. When the number of non-shielded surfaces is reduced, the number of Helmholtz silencer 18 is reduced, thus reducing costs. Furthermore, when the Helmholtz silencer 18 is arranged on the operator position, the degree of discomfort at the operator position can be reduced.
Moreover, when the openings (neck portions 8) of the Helmholtz silencer 18 are directed to the writing unit 16 as a noise source, the silencing effect can be exerted more easily, and noise leak can be reduced.
When a plurality of large and small containers of various kinds of Helmholtz silencers 18 are arranged, it is possible to exert the silencing effect on noise more easily in a wider range from low frequency to high frequency. Moreover, the number of containers corresponding to frequencies is changed depending on a distance from a noise source, whereby the same silencing effect can be obtained regarding various frequencies.
When a member to which the Helmholtz silencer 18 is attached is the writing interior cover 13 and the interior cover 14 that cover necessary inner components while the exterior cover is open, a separate member for attachment is not needed, and thus the structure is simplified. Moreover, it is possible to avoid increase of opening and closing operation force of the exterior cover (front exterior cover 19) and prevent the obstacle to the operation of inserting and taking out inner units. When the interior cover is divided into a plurality of parts and each part of the interior cover can be attached and removed individually, the Helmholtz silencer 18 is attached to the interior cover that covers only the periphery of the writing unit 16, for example. In this way, when the access to the writing unit 16 is required for maintenance operation and the like, the access is possible simply by removing and attaching the interior cover of this portion, and thus service workability is improved.
Furthermore, if the Helmholtz silencer 18 is attached to the interior cover with the removable fastening members 25 such as screws, use of the Helmholtz silencer 18 of a similar model with a slight difference, for example, a different generating frequency, such as of a polygon motor or the like is enabled simply by replacing the Helmholtz silencer 18 to one to which tuning was performed in accordance with the model, and thus increase of the number of components and costs can be prevented.
The present invention is not limited to the above-described embodiments, and many modifications can be made by a person skilled in the art within the technical idea of the present invention.
According to the embodiments of the present invention, the Helmholtz silencer is arranged in a direction where shielding objects for shielding a noise source are not arranged. Thus, it is easier to exert the silencing effect. Moreover, the number of non-shielded surfaces is reduced, whereby Helmholtz silencers can be reduced in number, and the costs can be reduced. Furthermore, when each of the Helmholtz silencers is arranged on a target position side such as an operator position, for example, the degree of discomfort at the target position such as the operator position can be reduced.
Although the invention has been described with respect to specific embodiments for a complete and clear disclosure, the appended claims are not to be thus limited but are to be construed as embodying all modifications and alternative constructions that may occur to one skilled in the art that fairly fall within the basic teaching herein set forth.
Number | Date | Country | Kind |
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2014-115059 | Jun 2014 | JP | national |