This patent application is based on and claims priority pursuant to 35 U.S.C. ยง 119(a) to Japanese Patent Application No. 2019-135265, filed on Jul. 23, 2019, in the Japan Patent Office, the entire disclosure of which is hereby incorporated by reference herein.
The present disclosure relates to a holding mechanism for an opening and closing detection device, and an image forming apparatus including the holding mechanism.
An image forming apparatus has a configuration in which a cover member can be opened and closed and an image forming unit and a sheet conveyance unit can be accessed for toner replacement and paper jam processing. Since an image forming apparatus accommodates a high-voltage portion and rotating bodies such as gears and motors therein, the image forming apparatus generally includes an interlock switch that cuts off the supply of voltage when a cover member is opened.
In an aspect of the present disclosure, a holding mechanism for an opening and closing detection device includes a cam, a torsion coil spring, and a pressing member. The cam is rotatably supported in a housing. The torsion coil spring is attached to the cam or an inside of the housing and includes two ends extending in two directions. The pressing member biases one end of the two ends of the torsion coil spring and bring the other end of the two ends of the torsion coil spring into contact with the cam to apply a load to the torsion coil spring. The pressing member is attached to an outside of the housing while biasing the other end of the two ends of the torsion coil spring through an opening of the housing.
In another aspect of the present disclosure, an image forming apparatus includes the holding mechanism, an interlock switch, and a cover. The interlock switch interrupts and passes a current. The cover is contactable with the cam when the cover is opened and closed. The cam turns on and off the interlock switch in conjunction with opening and closing of the cover.
A more complete appreciation of the disclosure and many of the attendant advantages thereof will be readily obtained as the same becomes better understood by reference to the following detailed description when considered in connection with the accompanying drawings, wherein:
The accompanying drawings are intended to depict embodiments of the present disclosure and should not be interpreted to limit the scope thereof. The accompanying drawings are not to be considered as drawn to scale unless explicitly noted.
In describing embodiments illustrated in the drawings, specific terminology is employed for the sake of clarity. However, the disclosure of this patent specification is not intended to be limited to the specific terminology so selected and it is to be understood that each specific element includes all technical equivalents that operate in a similar manner and achieve similar results.
Although the embodiments are described with technical limitations with reference to the attached drawings, such description is not intended to limit the scope of the disclosure and all of the components or elements described in the embodiments of this disclosure are not necessarily indispensable.
Referring now to the drawings, embodiments of the present disclosure are described below. In the drawings for explaining the following embodiments, the same reference codes are allocated to elements (members or components) having the same function or shape and redundant descriptions thereof are omitted below.
A description is given of embodiments of the present disclosure with reference to the drawings attached.
A sheet feeding cassette 5 is provided below the image forming apparatus 100, and a sheet feeding roller 6 that feeds a recording sheet, a pair of conveyance rollers 7, and the like are provided. The fixing device 10 is disposed on a lateral side of the photoconductor drum 1.
An image forming operation of the image forming apparatus 100 will be briefly described. When the image forming operation is started, the photoconductor drum 1 is driven to rotate in a clockwise direction as illustrated in
On the other hand, a recording sheet is fed from the sheet feeding cassette 5 by the sheet feeding roller 6 and conveyed by the pair of conveyance rollers 7. Next, the recording sheet is sent out in synchronization with the visualized toner image, and the toner image is transferred onto the recording sheet at a transfer portion in which the photoconductor drum 1 and the transfer roller 3 face each other.
Subsequently, the toner image is fixed by the fixing device 10 to the recording sheet to which the toner image has been transferred, and the recording sheet is ejected and stacked on a sheet ejection tray 14 by a pair of sheet ejection rollers 12.
As illustrated in
The micro switch 20 has a switch 22 and a switch lever 24 that contacts the switch 22 to turn on and off current and voltage. When the micro switch 20 is turned off, all the electric devices that are energized through the micro switch 20 can be turned off. When the cam 26 is rotated in a counterclockwise direction in
With such a configuration, when the opened rear cover 16 is closed (
On the other hand, when the rear cover 16 is opened from the closed state of
Here, in order to separate the cam 26 from the switch lever 24 and reliably turn off the switch 22, a biasing force to rotate the cam 26 clockwise is applied as follows.
As illustrated in
The pressing member 30 includes a biasing member 30a to bias one end of the torsion coil spring 28 and an attachment member 30b attached to an outside of the housing 100a. The biasing member 30a of the pressing member 30 biases one end of the torsion coil spring 28 through an opening 102 of the housing 100a, and brings the other end of the torsion coil spring 28 into contact with the cam 26 to apply the load to the torsion coil spring 28.
The torsion coil spring 28 to which the load is applied constantly biases the cam 26 in the clockwise direction. When the rear cover 16 is opened and the rear cover striker 18 is separated from the cam 26, the cam 26 is reliably separated from the switch lever 24 to turn off the switch 22 (see
In the holding mechanism 150 of the opening and closing detection device 40 of the present embodiment, the pressing member 30 is attached to the outside of the housing 100a while biasing the other end of the torsion coil spring 28 through the opening 102 of the housing 100a. That is, after the cam 26 and the torsion coil spring 28 are attached to the housing 100a, the pressing member 30 is attached to the housing 100a to apply a load to the torsion coil spring 28.
Therefore, the holding mechanism 150 of the present embodiment can assemble the torsion coil spring 28 without applying a load (without deforming the torsion coil spring). Further, when the pressing member 30 is attached, the biasing member 30a of the pressing member 30 can be hooked (inserted) to the opening 102 of the housing 100a to be temporarily placed (held). Since both hands of an assembly worker are available, the assembly worker can perform another job (for example, set a screw on a driver).
As described above, the holding mechanism 150 of the present embodiment has good workability (assemblability) and can improve the positional accuracy regardless of the degree of skill of the assembling worker.
As an advantageous configuration, an attachment surface 104 of the housing 100a to attach the pressing member 30 is desirably parallel or substantially parallel to the central axis of the torsion coil spring 28. When the pressing member 30 is attached to the housing 100a, a load can be naturally (smoothly) applied to the torsion coil spring 28.
The attachment surface 104 of the housing 100a may be formed separately from the housing 100a. The biasing member 30a may be provided with a slot into which one end of the torsion coil spring 28 can be inserted. The torsion coil spring 28 may be attached to an inside of the housing 100a instead of the cam 26.
The above-described embodiments are illustrative and do not limit the present invention. Thus, numerous additional modifications and variations are possible in light of the above teachings. For example, elements and/or features of different illustrative embodiments may be combined with each other and/or substituted for each other within the scope of the present invention.
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