Image forming device
The image forming apparatus uses a link mechanism with a rotating member and slit-notch-pin-groove system to allow the cover to be stopped at two angles, addressing the excessive effort issue in heavy covers and accommodating varying work types.
Patent Information
- Application Number
- JP2022052914
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Filing Date
- 2022-03-29
- Publication Date
- 2026-02-25
- Estimated Expiration
- 2042-03-29
AI Technical Summary
Image forming apparatuses with heavy covers require excessive effort to open due to the cover being stopped at a fixed angle, which does not accommodate varying types of work.
A link mechanism with a rotating member, link members, and a slit-notch-pin-groove system allows the cover to be stopped at two angles, adjusting the effort required based on the type of work.
The mechanism enables the cover to be securely stopped at two angles, reducing operational effort and accommodating different work types.
Smart Images

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Abstract
Description
[Technical Field]
[0001] The present invention relates to an image forming apparatus. [Background technology]
[0002] There are known image forming apparatuses that have an openable cover at the opening on the top of the main body. For example, Patent Document 1 describes an image forming apparatus that is configured so that parts and units can be replaced by opening the top cover. [Prior art documents] [Patent documents]
[0003] [Patent Document 1] Japanese Patent Application Laid-Open No. 2005-122137 Summary of the Invention [Problem to be solved by the invention]
[0004] The image forming apparatus described in Patent Document 1 is configured so that the cover, which is hinged to the main body, stops when rotated approximately 90 degrees from the horizontal. While this is not a problem if the cover is lightweight, if an image scanner or the like is attached to the top of the cover, the cover becomes heavy, increasing the effort required to open it. In some cases, the cover can be opened at an angle smaller than 90 degrees, and the required angle varies depending on the type of work. Therefore, if the cover could be stopped at an angle appropriate to the type of work, the effort required to open the cover would be reduced.
[0005] SUMMARY OF THE INVENTION In consideration of the above circumstances, an object of the present invention is to provide an image forming apparatus in which a hinged opening / closing section can be stopped at two angles. [Means for solving the problem]
[0006] In order to solve the above-mentioned problems, an image forming apparatus according to the present invention includes a main body housing, an opening / closing section provided on the main body housing via a hinge, and a link mechanism that is linked to the opening and closing of the opening / closing section, wherein the link mechanism includes a rotating member rotatably provided on the main body housing, a first link member connected to the rotating member, and a link mechanism that connects the opening / closing section and the first link member, a first end portion of the link mechanism being rotatable relative to the opening / closing section, a second end portion of the link mechanism being slidable relative to the first link member in the longitudinal direction of the first link member, and a slit that connects the first end portion and the second end portion. a second link member attached to the rotating member, a notch that communicates with the slit on the second end side of the second link member and is formed so as to wrap around to the first end side and is narrower in width than the portion of the slit on the second end side; a pin that is provided on the main housing and located inside the slit; a boss that protrudes from the end of the second link member on the opening / closing part side in the axial direction of the rotating member; and a groove that is provided on the opening / closing part and in which the boss slides, wherein the sliding resistance between the boss and the groove is greater than the sliding resistance between the pin and the slit of the second link member.
[0007] The groove may have a shape that is curved in a direction opposite to an arc centered on the axis of the hinge of the opening / closing part.
[0008] When the pin fits into the boundary between the slit and the notch and the boss fits into one end of the groove, the rotation angle of the opening / closing part may be 45°, and when the pin fits into the boundary between the slit and the notch and the boss fits into the other end of the groove, the rotation angle of the opening / closing part may be 65°.
[0009] The image forming apparatus may include a developing roller that holds developer, a first joint provided on the developing roller, a drive gear that transmits a driving force to the developing roller, a second joint that is provided coaxially with the drive gear, rotates following the drive gear, is slidable in the axial direction relative to the drive gear, and is engageable with the first joint, a biasing member that connects the second joint to the first joint by biasing the second joint toward the first joint, and a sliding member that is provided axially slidably on the main body housing, pushes the second joint against the biasing member when the rotating member rotates forward, and releases the pushing-out of the second joint when the rotating member rotates reversely, wherein the rotating member is rotatably provided on the main body housing coaxially with the drive gear, and the first link member is configured to rotate the rotating member forward in conjunction with the opening of the opening / closing portion, and to rotate the rotating member reverse in conjunction with the closing of the opening / closing portion. [Effects of the Invention]
[0010] According to the present invention, the hinged opening / closing part can be stopped at two angles. [Brief explanation of the drawings]
[0011] [Figure 1] FIG. 1 is a perspective view illustrating the appearance of a printer according to an embodiment of the present invention. [Figure 2] FIG. 1 is a left side view schematically illustrating the internal configuration of a printer according to an embodiment of the present invention. [Figure 3] FIG. 2 is a left side view schematically showing a link mechanism according to an embodiment of the present invention. [Figure 4] FIG. 2 is a left side view schematically showing a link mechanism according to an embodiment of the present invention. [Figure 5] FIG. 2 is a left side view schematically showing a link mechanism according to an embodiment of the present invention. [Figure 6] FIG. 1 is a front view schematically showing a link mechanism according to an embodiment of the present invention. [Figure 7] FIG. 1 is a front view schematically showing a link mechanism according to an embodiment of the present invention. [Figure 8] FIG. 2 is a perspective view of a developing device according to an embodiment of the present invention. [Figure 9] FIG. 10 is a perspective view showing a state in which a rotating member is attached to a main body housing according to an embodiment of the present invention. [Figure 10] FIG. 10 is a perspective view showing a state in which a sliding member is attached to a main body housing according to an embodiment of the present invention. [Figure 11] 10 is a perspective view showing a state in which a second joint is attached to a main body housing according to one embodiment of the present invention. FIG. [Figure 12] FIG. 10 is a perspective view showing a state in which a drive gear is attached to a main body housing according to an embodiment of the present invention. [Figure 13] FIG. 2 is a perspective view of a drive gear, a biasing member, and a second joint according to an embodiment of the present invention. [Figure 14] FIG. 2 is an exploded view of a link mechanism according to an embodiment of the present invention. [Figure 15] 10 is a perspective view of the periphery of a second joint when the discharge tray according to one embodiment of the present invention is closed. FIG. [Figure 16] 10 is a perspective view of the periphery of a second joint when the discharge tray according to the embodiment of the present invention is opened. FIG. [Figure 17] FIG. 2 is a perspective view of a connecting portion according to an embodiment of the present invention. [Figure 18] FIG. 2 is a left side view of a connecting portion according to an embodiment of the present invention. DETAILED DESCRIPTION OF THE INVENTION
[0012] A printer 1 (an example of an image forming apparatus) according to an embodiment of the present invention will be described below with reference to the drawings.
[0013] First, the overall configuration of the printer 1 will be described. Fig. 1 is a perspective view showing the exterior of the printer 1. Fig. 2 is a left side view that schematically shows the internal configuration of the printer 1. Below, the Fr side in Figs. 1 and 2 is the front side (front side) of the printer 1, and left and right directions will be described based on the direction when viewing the printer 1 from the front. In each figure, U, Lo, L, R, Fr, and Rr represent top, bottom, left, right, front, and rear, respectively.
[0014] The printer 1 has a rectangular parallelepiped main housing 3. At the bottom of the main housing 3, there is a paper feed tray 4 on which sheets S are stacked, and a paper feed roller 5 that feeds sheets S from the paper feed tray 4. At the front of the main housing 3, there is a front door 3A that can be opened and closed using a hinge located at the bottom as a fulcrum; sheets S are loaded onto the paper feed tray 4 by opening the front door 3A. Above the paper feed tray 4, there are provided an imaging device 6 that forms a toner image using an electrophotographic method, and a fixing device 7 that fixes the toner image onto the sheet S. At the top of the main housing 3, there are provided a pair of discharge rollers 8 that discharge the sheet S with the toner image fixed thereon, and a discharge tray 9 on which the discharged sheet S is stacked.
[0015] The image forming device 6 includes a photosensitive drum 11 whose potential changes when exposed to light, a charging device 12 that charges the photosensitive drum 11 by discharging, an exposure device 13 that emits laser light according to image data, a developing device 14 that supplies toner to the photosensitive drum 11, and a transfer roller 15 that generates a transfer bias.
[0016] Inside the main body housing 3, there is provided a conveying path 10 that runs from the paper feed roller 5 through the image forming device 6 and the fixing device 7 to a discharge roller pair 8. A plurality of conveying roller pairs 17 that convey the sheet S are provided on the conveying path 10. A registration roller pair 18 is provided upstream of the image forming device 6 in the conveying direction.
[0017] Each part of the printer 1 is controlled by the control unit 2. The control unit 2 includes a processor and a memory. The processor is, for example, a CPU (Central Processing Unit). The memory includes storage media such as ROM (Read Only Memory), RAM (Random Access Memory), and EEPROM (Electrically Erasable Programmable Read Only Memory). The processor performs various processes by reading and executing control programs stored in the memory. Note that the control unit 2 may also be realized by an integrated circuit that does not use software.
[0018] Next, an overview of the image forming operation of the printer 1 will be described. When a print job is input to the printer 1 from an external computer or the like, the paper feed roller 5 feeds the sheet S from the paper feed tray 4 to the transport path 10, the pair of registration rollers 18, whose rotation has stopped, corrects any skew in the sheet S, and the pair of registration rollers 18 feeds the sheet S to the image creating device 6 at a predetermined timing. In the image creating device 6, the charging device 12 charges the photosensitive drum 11 to a predetermined potential, the exposure device 13 writes a latent image onto the photosensitive drum 11, the developing device 14 develops the latent image using toner supplied from a toner container to form a toner image, and the transfer roller 15 transfers the toner image to the sheet S. Next, the fixing device 7 melts the toner image while nipping and transporting the sheet S to fix the toner image to the sheet S, and the pair of discharge rollers 8 discharges the sheet S to the discharge tray 9.
[0019] Next, the mechanism for connecting the developing device 14 and the drive gear 24 will be described in detail. FIGS. 3 to 5 are left side views schematically showing the link mechanism 23. FIGS. 6 and 7 are front views schematically showing the link mechanism 23. FIG. 8 is a perspective view of the developing device 14. FIG. 9 is a perspective view showing how the rotating member 41 is attached to the main body housing 3. FIG. 10 is a perspective view showing how the sliding member 42 is attached to the main body housing 3. FIG. 11 is a perspective view showing how the second joint 32 is attached to the main body housing 3. FIG. 12 is a perspective view showing how the drive gear 24 is attached to the main body housing 3. FIG. 13 is a perspective view of the drive gear 24, the biasing member 33, and the second joint 32. FIG. 14 is an exploded view of the link mechanism 23.
[0020] The printer 1 includes a main body housing 3, an opening / closing section (discharge tray 9) provided on the main body housing 3 via a hinge 3H, and a link mechanism 23 that links with the opening and closing of the opening / closing section, the link mechanism 23 including a rotating member 41 rotatably provided on the main body housing 3, a first link member 51 connected to the rotating member 41, a second end portion 521 that is rotatable relative to the opening / closing section, a second end portion 522 that is slidable relative to the first link member 51 in the longitudinal direction of the first link member 51, and a second end portion 523 that is provided with a slit 52S that connects the first end portion 521 and the second end portion 522. The device comprises a link member 52, a notch 52K that is connected to the slit 52S on the second end 522 side of the second link member 52 and is formed so as to wrap around to the first end 521 side and is narrower in width than the portion of the slit 52S on the second end 522 side, a pin 53 that is provided in the main housing 3 and positioned inside the slit 52S, a boss 54 that protrudes in the axial direction of the rotating member 41 from the end of the second link member 52 on the opening / closing part side, and a groove 61 that is provided in the opening / closing part and in which the boss 54 slides, and is characterized in that the sliding resistance between the boss 54 and the groove 61 is greater than the sliding resistance between the pin 53 and the slit 52S of the second link member 52.
[0021] [Opening and closing section] The discharge tray 9 (opening / closing portion) is formed as a separate member from the main body housing 3. An opening corresponding to the discharge tray 9 is formed in the upper part of the main body housing 3.
[0022] A document reader 9S is provided above the discharge tray 9. The document reader 9S is a flatbed image scanner. The document reader 9S and the discharge tray 9 are integrated and connected to the main housing 3 by a hinge 3H. The discharge tray 9 and the document reader 9S can be opened upward with the hinge 3H as a fulcrum.
[0023] [Developing device, first joint] The developing device 14 (see FIGS. 2 and 8) is provided slightly behind the center of the main housing 3. The developing device 14 includes a screw that agitates a developer containing toner and magnetic carrier, and a developing roller 14R that magnetically holds the developer, with the outer circumferential surface of the developing roller 14R facing the photosensitive drum 11. A first joint 31 is provided at the left end of the developing roller 14R, into which a second joint 32 (described later) can be fitted.
[0024] [Drive gear, second joint, biasing member] The drive gear 24 (see FIG. 13) transmits the driving force generated by a drive unit (not shown) including a motor and a gear train to the developing roller 14R via a second joint 32 and a first joint 31 (see FIG. 8). A key portion 24K that protrudes radially is provided on a shaft portion 24A of the drive gear 24. The shaft portion 24A has a hollow portion 24H. A rotation shaft 24R (see FIG. 12) is inserted into the hollow portion 24H to rotatably support the drive gear 24.
[0025] A support part 21 (see FIGS. 9 to 12) that supports the drive gear 24 and the link mechanism 23 is provided on the left side of the main body housing 3. The support part 21 is formed in a shell shape that constitutes part of a cylinder with a diameter smaller than the inner diameter of the drive gear 24 (described later) and larger than the outer diameter of the rotating member 41, and supports the rotating member 41 coaxially with the drive gear 24.
[0026] The second joint 32 (see FIG. 13) has a cylindrical portion 32C with a larger diameter than the shaft portion 24A of the drive gear 24. A flange portion 32F is provided at the left end of the cylindrical portion 32C, and a key portion 32K protruding in the radial direction is provided at the right end of the cylindrical portion 32C. The first joint 31 is formed with a groove portion 31V (see FIG. 8) into which the key portion 32K of the second joint 32 can be fitted. The inner circumferential surface of the cylindrical portion 32C of the second joint 32 is formed with a groove portion 32V (see FIG. 11) into which the key portion 24K of the drive gear 24 is fitted. The biasing member 33 is a coil spring, and is inserted into the cylindrical portion 32C of the second joint 32 to bias the second joint 32 rightward.
[0027] [Link mechanism] The link mechanism 23 (see FIGS. 3 to 7 and 14) includes a rotating member 41 rotatably mounted on the main body housing 3 coaxially with the drive gear 24, a first link member 51 that connects the rotating member 41 to the discharge tray 9 and rotates the rotating member 41 in the forward direction in conjunction with the opening of the discharge tray 9 and rotates the rotating member 41 in the reverse direction in conjunction with the closing of the discharge tray 9, and a second link member 51 that is slidably mounted on the main body housing 3 in the axial direction and pushes out the second joint 32 against the biasing force of the biasing member 33 when the rotating member 41 rotates in the forward direction, thereby rotating the rotating member 41 in the reverse direction. a second link member 52 that connects the discharge tray 9 and the first link member 51, the second link member 52 having an upper end (an example of the first end 521) that is rotatable relative to the discharge tray 9 and a lower end (an example of the second end 522) that is slidable relative to the first link member 51 in the longitudinal direction of the first link member 51, and having a slit 52S that connects the first end 521 and the second end 522; and a pin 53 that is provided in the main housing 3 and is located inside the slit 52S.
[0028] The support portion 21 (see FIG. 9) of the main body housing 3 has an axial groove portion 21V, and the second joint 32 (see FIG. 11) has a flange portion 32F. The sliding member 42 (see FIG. 10) has an annular portion 42C that contacts the surface of the flange portion 32F on the first joint 31 side, and a protrusion 42P that protrudes radially outward from the annular portion 42C and fits into the groove portion 21V. The inner diameter of the annular portion 42C is larger than the outer diameter of the cylindrical portion 32C of the second joint 32.
[0029] The rotating member 41 (see FIG. 9) has a shape in which a portion of a cylindrical member is cut out. The inner diameter of the rotating member 41 is larger than the outer diameter of the sliding member 42. The rotating member 41 has an inclined portion 41S, the contact point with the protruding portion 42P of the sliding member 42 moving in the opposite direction to the biasing force of the biasing member 33 when the rotating member 41 rotates forward. The rotating member 41 has an arm portion 41A protruding in the radial direction. The lower end of the first link member 51 is swingably coupled to the arm portion 41A. The first link member has a slit 51S along the longitudinal direction. A pin 52P provided at the lower end of the second link member slides along the slit 51S.
[0030] The sliding resistance of the portion of slit 52S on the second end 522 side relative to pin 53 is greater than the sliding resistance of the portion on the first end 521 side. Specifically (see FIG. 14 ), the width of the portion of slit 52S on the second end 522 side is narrower than the portion on the first end 521 side. Also, the width of the portion of slit 52S on the first end 521 side is equal to or greater than the diameter of pin 53, whereas the width of the portion of slit 52S on the second end 522 side is narrower than the diameter of pin 53. Second link member 52 is formed of a flexible resin, and when the portion of slit 52S on the second end 522 side slides over pin 53, the portion of slit 52S on the second end 522 side is pushed open by pin 53.
[0031] The second link member 52 also includes a notch 52K. The notch 52K communicates with the slit 52S on the second end 522 side, is formed so as to wrap around to the first end 521 side, and is narrower than the portion of the slit 52S on the second end 522 side. The portion of the slit 52S on the second end 522 side, adjacent to the notch 52K, is even narrower. The pin 53 fits into the boundary 52B between the slit 52S and the notch 52K, thereby stopping the discharge tray 9. When the pin 53 fits into the boundary 52B between the slit 52S and the notch 52K, the inclination angle (rotation angle) of the discharge tray 9 relative to the horizontal is within a range of 40° to 50° (e.g., 45°). The portion of the slit 52S on the first end 521 side is inclined at a shallow angle (e.g., approximately 5°) relative to the portion on the second end 522 side. With this configuration, when the pin 53 moves from the portion on the first end 521 side of the slit 52S to the portion on the second end 522 side, the operational feel of the discharge tray 9 changes.
[0032] The above components are attached in the following order. First, the rotating member 41 is inserted into the support portion 21 of the main body housing 3 (see FIG. 9). Next, the sliding member 42 is inserted into the rotating member 41 (see FIG. 10). At this time, the protrusion 42P of the sliding member 42 is inserted into the groove portion 21V of the support portion 21 of the main body housing 3. Next, the second joint 32 is inserted into the sliding member 42. At this time, the flange portion 32F of the second joint 32 comes into contact with the annular portion 42C of the sliding member 42. Next, the drive gear 24 rotatably held by the rotating shaft 24R is attached to the support portion 21, and an attachment plate (not shown) that holds the rotating shaft 24R is fixed to the main body housing 3. At this time, the biasing member 33 is inserted between the second joint 32 and the drive gear 24. Finally, the first link member 51 and the second link member 52 are connected to the rotating member 41 and the discharge tray 9 (see FIG. 3).
[0033] FIG. 15 is a perspective view of the second joint 32 and its surroundings when the discharge tray 9 is closed. FIG. 16 is a perspective view of the second joint 32 and its surroundings when the discharge tray 9 is open. When the discharge tray 9 is closed (see FIG. 3), the second joint 32 is urged rightward by the urging member 33, and the second joint 32 is connected to the first joint 31 (see FIGS. 6 and 15). When a user lifts the front end of the discharge tray 9, the rotating member 41 rotates counterclockwise via the first link member 51 and the second link member 52, as shown in FIGS. 4, 7, and 16. Then, as shown in FIG. 16, the contact point between the inclined portion 41S of the rotating member 41 and the protruding portion 42P of the sliding member 42 moves leftward, pushing the sliding member 42 leftward. Accordingly, the second joint 32 is pushed leftward, and the second joint 32 disengages from the first joint 31.
[0034] When the discharge tray 9 is lifted, no frictional resistance occurs between the pin 53 and the portion of the second link member 52 on the first end 521 side of the slit 52S. On the other hand, frictional resistance occurs in the portion of the slit 52S on the second end 522 side, as the pin 53 pushes the slit 52S open. When the discharge tray 9 is lifted at an angle of approximately 45° from the horizontal, the pin 53 fits into the boundary 52B between the slit 52S and the notch 52K. At this time, the portion between the slit 52S and the notch 52K elastically deforms, restraining the pin 53, and the discharge tray 9 stops.
[0035] When the user presses down on the discharge tray 9, the pin 53 comes off the boundary portion 52B. Thereafter, at the portion on the second end 522 side of the slit 52S, the discharge tray 9 gradually descends due to the frictional resistance between the slit 52S and the pin 53. On the other hand, at the portion on the first end 521 side of the slit 52S, no frictional resistance occurs, so the discharge tray 9 closes securely.
[0036] Next, the connecting portion 60 will be described. FIG. 17 is a perspective view of the connecting portion 60. FIG. 18 is a left side view of the connecting portion 60. The connecting portion 60 connects the discharge tray 9 and the second link member 52. The connecting portion 60 is provided slightly rearward of the center in the front-to-rear direction of the left side of the discharge tray 9. The connecting portion 60 opens to the left and has a groove 61 that intersects with the radial direction of the hinge 3H. The groove 61 has a shape that is warped in the opposite direction to the arc C that is centered on the axis of the hinge 3H of the discharge tray 9. A boss 54 that protrudes to the right is provided at the first end 521 of the second link member 52. The boss 54 is housed in the groove 61 of the connecting portion 60 and is slidable along the groove 61.
[0037] When the angle of the discharge tray 9 relative to the horizontal is within the range of 0° to 45° (see FIGS. 3 and 4), the boss 54 of the second link member 52 fits into the upper end of the groove 61 of the connecting part 60. When the discharge tray 9 is opened to an angle of 45° or more, the boss 54 slides along the groove 61, and when the boss 54 reaches the lower end of the groove 61, the discharge tray 9 stops at an angle of 65° relative to the horizontal (see FIG. 5).
[0038] Here, we will explain the sliding resistance between boss 54 and groove 61. The sliding resistance between boss 54 and groove 61 is greater than the sliding resistance between pin 53 and slit 52S of second link member 52. Therefore, when discharge tray 9 is lifted, second link member 52 first starts sliding against pin 53, and once pin 53 fits into boundary portion 52B, boss 54 then starts sliding against groove 61.
[0039] As described above, the groove 61 has a shape that curves in the opposite direction to the arc C centered on the axis of the hinge 3H of the discharge tray 9, so the sliding resistance increases as the boss 54 moves away from the upper end of the groove 61, reaches a maximum at approximately the center between the upper and lower ends, and decreases as it moves from the center toward the lower end. Therefore, if you stop lifting the discharge tray 9 when the angle reaches 45 degrees, you can stop the discharge tray 9.
[0040] Lifting the discharge tray 9 to an angle of 45° or more requires a greater force than lifting it to an angle of less than 45°. When the discharge tray 9 is lifted to an angle of 65°, the sliding resistance between the boss 54 and the groove 61 resists the load of the discharge tray 9, allowing the discharge tray 9 to stop.
[0041] The printer 1 according to the present embodiment described above includes the main body housing 3, an opening / closing section (discharge tray 9) provided on the main body housing 3 via a hinge 3H, and a link mechanism 23 that links with the opening and closing of the opening / closing section, the link mechanism 23 including a rotating member 41 rotatably provided on the main body housing 3, a first link member 51 connected to the rotating member 41, a first end 521 that is rotatable relative to the opening / closing section, a second end 522 that is slidable relative to the first link member 51 in the longitudinal direction of the first link member 51, and a sliding joint that connects the first end 521 and the second end 522. a second link member 52 having a slit 52S provided therein; a notch 52K that communicates with the slit 52S on the second end 522 side of the second link member 52 and is formed so as to wrap around to the first end 521 side and is narrower in width than the portion of the slit 52S on the second end 522 side; a pin 53 that is provided in the main housing 3 and located inside the slit 52S; a boss 54 that protrudes in the axial direction of the rotating member 41 from the end of the second link member 52 on the opening / closing part side; and a groove 61 that is provided in the opening / closing part and in which the boss 54 slides, and the sliding resistance between the boss 54 and the groove 61 is greater than the sliding resistance between the pin 53 and the slit 52S of the second link member 52. According to this configuration, the opening / closing unit stops in either a first state in which the pin 53 fits into the boundary 52B between the slit 52S and the notch 52K and the boss 54 fits into one end of the groove 61, or a second state in which the pin 53 fits into the boundary 52B and the boss 54 fits into the other end of the groove 61. Therefore, the hinged opening / closing unit can be stopped at two angles.
[0042] Furthermore, in the printer 1 according to this embodiment, the groove portion 61 has a shape that is curved in the opposite direction to the arc C centered on the axis of the hinge 3H of the discharge tray 9, so that a state with high sliding resistance can be easily achieved.
[0043] Furthermore, according to the printer 1 of this embodiment, when the pin 53 fits into the boundary 52B between the slit 52S and the notch 52K and the boss 54 fits into one end of the groove 61, the rotation angle of the opening / closing part is 45°, and when the pin 53 fits into the boundary 52B between the slit 52S and the notch 52K and the boss 54 fits into the other end of the groove 61, the rotation angle of the opening / closing part is 65°, so the rotation angle of the opening / closing part can be selected depending on the type of work being done.
[0044] Furthermore, the printer 1 according to this embodiment includes a developing roller 14R that holds developer, a first joint 31 provided on the developing roller 14R, a drive gear 24 that transmits drive force to the developing roller 14R, a second joint 32 that is provided coaxially with the drive gear 24, rotates following the drive gear 24, is axially slidable relative to the drive gear 24, and is engageable with the first joint 31, and a biasing member that biases the second joint 32 toward the first joint 31 to connect the second joint 32 to the first joint 31. and a sliding member 42 that is axially slidably provided in the main body housing 3 and that pushes out the second joint 32 against the biasing force of the biasing member 33 when the rotating member 41 rotates forward, and that releases the pushing-out of the second joint 32 when the rotating member 41 rotates reversely, the rotating member 41 being rotatably provided in the main body housing 3 coaxially with the drive gear 24, and the first link member 51 rotates the rotating member 41 forward in conjunction with the opening of the opening / closing portion, and rotates the rotating member 41 reversely in conjunction with the closing of the opening / closing portion. With this configuration, the developing roller 14R and the drive gear 24 can be disconnected in conjunction with the opening of the opening / closing portion, and can be connected to each other in conjunction with the closing of the opening / closing portion.
[0045] The above embodiment may be modified as follows.
[0046] In the above embodiment, an example has been shown in which sliding resistance is generated between the groove 61 and the boss 54 by shaping the groove 61 so as to be curved in the opposite direction to the arc C centered on the axis of the hinge 3H of the discharge tray 9, but sliding resistance may also be generated by other methods. For example, sliding resistance may be generated by processing the surfaces of the groove 61 and the boss 54 to increase their roughness.
[0047] In the above embodiment, an example was shown in which the opening / closing unit was stopped at rotation angles of 45° and 65°, but the opening / closing unit may be configured to be stopped at other rotation angles, for example, 40° and 70°. [Explanation of symbols]
[0048] 1. Printer (image forming device) 3 Main body housing 3H hinge 14R developing roller 23 Link mechanism 24 Drive gear 31 First joint 32 Second joint 33 biasing member 41 Rotating member 42 Sliding member 51 first link member 52 second link member 521 First end 522 Second end 52S slit 52K Notch 52B Boundary 53 pin 54 Boss 61 Groove
Claims
1. A main body housing; an opening / closing section provided on the main body housing via a hinge; a link mechanism that is linked with the opening and closing of the opening and closing unit, The link mechanism includes: a rotating member rotatably provided in the main body housing; a first link member connected to the rotary member; a second link member that connects the opening / closing unit and the first link member, the first end of which is rotatable relative to the opening / closing unit, the second end of which is slidable relative to the first link member in the longitudinal direction of the first link member, and the second link member is provided with a slit connecting the first end and the second end; a notch portion that communicates with the slit on the second end side of the second link member, that is formed so as to wrap around to the first end side, and that has a width narrower than that of the portion of the slit on the second end side; a pin provided in the main body housing and positioned inside the slit; a boss protruding from an end of the second link member on the opening / closing portion side in an axial direction of the rotary member; a groove portion provided in the opening / closing portion, in which the boss slides; The image forming apparatus according to claim 1, wherein the sliding resistance between the boss and the groove is greater than the sliding resistance between the pin and the slit of the second link member.
2. 2. The image forming apparatus according to claim 1, wherein the groove has a shape that is curved in a direction opposite to a circular arc having a center on the axis of the hinge of the opening / closing portion.
3. 3. The image forming apparatus according to claim 1, wherein the rotation angle of the opening / closing portion is 45° when the pin fits into the boundary between the slit and the notch and the boss fits into one end of the groove, and the rotation angle of the opening / closing portion is 65° when the pin fits into the boundary between the slit and the notch and the boss fits into the other end of the groove.
4. a developing roller for holding a developer; a first joint provided on the developing roller; a drive gear that transmits a drive force to the developing roller; a second joint that is provided coaxially with the drive gear, rotates following the drive gear, is axially slidable relative to the drive gear, and is engageable with the first joint; a biasing member that biases the second joint toward the first joint to connect the second joint to the first joint; a sliding member that is axially slidably provided in the main body housing, that pushes out the second joint against the biasing force of the biasing member when the rotating member rotates forward, and that releases the pushing out of the second joint when the rotating member rotates backward, the rotating member is provided in the main body housing so as to be rotatable coaxially with the drive gear, 4. The image forming apparatus according to claim 1, wherein the first link member rotates the rotating member forward in conjunction with the opening of the opening / closing portion, and rotates the rotating member reversely in conjunction with the closing of the opening / closing portion.
Citation Information
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