Image forming device
The link mechanism in image forming devices reduces vertical space requirements and operational force by converting rotational motion into linear movement, enhancing compactness and usability.
Patent Information
- Application Number
- JP2022003940
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Filing Date
- 2022-01-13
- Publication Date
- 2025-12-23
- Estimated Expiration
- 2042-01-13
AI Technical Summary
Conventional image forming devices require significant vertical space for the link mechanism to move, increasing the apparatus size due to the vertical movement of the connecting rod when the top cover is opened or closed.
A link mechanism that includes a frame, cover, fixing unit, adjustment mechanism, and pivoting links to reduce vertical movement, allowing the apparatus to be more compact by converting rotation into forward and backward movement, and incorporating a cam system to minimize operational force.
The solution reduces the vertical size of the image forming apparatus and improves operability by minimizing the required force to open and close the cover, while maintaining functionality for printing and jam clearance.
Smart Images

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Abstract
Description
[Technical Field]
[0001] The present invention relates to an image forming apparatus. [Background technology]
[0002] In conventional image forming devices equipped with a fixing unit, such as laser printers, it is necessary to release the nip between the heating member and pressure member of the fixing unit when clearing a jam. As a mechanism for this purpose, for example, Patent Document 1 discloses a link mechanism for nipping and releasing the nip between the pressure roller (pressure member) and the heating roller (heating member) in conjunction with the opening and closing of the top cover.
[0003] The link mechanism in Patent Document 1 includes a nip release member connected to the pressure roller and a connecting rod that connects the nip release member to the top cover. When the top cover is opened, the top cover rotates and raises the connecting rod, which then raises the nip release member to release the nip of the pressure roller. When the top cover is closed, the top cover rotates and lowers the connecting rod, which then lowers the nip release member to nip the pressure roller. [Prior art documents] [Patent documents]
[0004] [Patent Document 1] Japanese Patent Application Laid-Open No. 2002-148992 Summary of the Invention [Problem to be solved by the invention]
[0005] According to the configuration of Patent Document 1, the connecting rod moves mainly in the vertical direction when the top cover is opened or closed, which means that vertical space must be secured within the image forming apparatus to allow the connecting rod to move, which leads to an increase in the size of the apparatus.
[0006] SUMMARY OF THE INVENTION An object of the present invention is to reduce the amount of vertical movement of a link mechanism in an image forming apparatus that includes a link mechanism that nips and releases the nip of a fixing unit in conjunction with the opening and closing of a cover. [Means for solving the problem]
[0007] The image forming apparatus of the present invention includes a frame, a cover rotatably supported on one end of the frame in the front-rear direction and movable between a closed position that covers the end and an open position that exposes the end to the outside, a fixing unit that heats and fixes an image on a sheet, the fixing unit being located closer to the one end than the center of the frame in the front-rear direction and including a heating element that heats the sheet on which the image has been formed, and a pressure roller that forms a nip with the heating element, an adjustment mechanism that adjusts the nip pressure between the heating element and the pressure roller in response to opening and closing of the cover, the adjustment mechanism making the nip pressure smaller when the cover is in the open position than when the cover is in the closed position, and a link mechanism that connects the adjustment mechanism to the cover. The link mechanism includes a first link connected to the cover, a second link connected to the first link and supported by the frame to be rotatable about a first axis along a width direction perpendicular to the front-rear direction, and a third link connected to the second link and the adjustment mechanism and moving in the front-rear direction.
[0008] According to the above configuration, the link mechanism and adjustment mechanism enable the fixing unit to be in a printable state or a jam-clearable state in conjunction with the opening and closing of the cover. Furthermore, according to the link mechanism, the second link is a pivoting link, and the amount of rotation of the second link is converted into the amount of forward and backward movement of the third link, thereby reducing the amount of vertical movement of the link mechanism. As a result, the image forming apparatus can be made more compact in the vertical direction. Furthermore, because the cover and heating member are located together at one end of the image forming apparatus, the link mechanism disposed between the cover and the fixing unit can be made more compact.
[0009] In the above-mentioned image forming apparatus, the adjustment mechanism may include an arm movable between a first position where the heating member is pressed to form a nip with the pressure roller and a second position where the nip pressure is reduced compared to the first position, a biasing member that biases the arm in a direction from the second position toward the first position, a fourth link connected to the third link and rotatable about a second axis along the width direction, and a cam fixed to the fourth link, which rotates about the second axis and guides the arm to the second position.
[0010] In the image forming apparatus, the biasing member may be a spring.
[0011] In the above-described image forming apparatus, the cover has an engagement protrusion that engages with the frame in the closed position and restricts the cover from moving from the closed position to the open position, and the cam has a first cam surface that faces the arm, which is in the first position when the cover is in the closed position, at a distance, and a second cam surface that abuts against the arm and guides the arm to the second position, and when the cover moves from the closed position to the open position, the second cam surface abuts against the arm after the engagement between the engagement protrusion and the frame is released.
[0012] With this configuration, when opening or closing the cover, the load generated by the engagement of the engaging protrusion and the load generated by the second cam surface pushing up the arm do not overlap, thereby reducing the force required to operate the cover and improving operability.
[0013] In the image forming apparatus described above, the first cam surface may be a flat surface, and the second cam surface may be an arcuate surface formed continuously with the first cam surface.
[0014] According to the above configuration, the cross section of the cam is D-shaped, so that the cam can be easily manufactured.
[0015] In the above-mentioned image forming apparatus, the cover may have a plate-shaped portion extending from the inner surface of the cover along the front-to-rear direction, and the engaging protrusion may protrude upward from the tip of the plate-shaped portion and be capable of engaging with the frame.
[0016] According to the above configuration, when the cover moves from the open position to the closed position, the engaging protrusion abuts against the frame near the closed position, causing the plate-shaped portion to bend, and at the closed position the engaging protrusion fully engages with the frame, locking the cover.
[0017] In the above-mentioned image forming device, when the cover is in the closed position, the connection portion between the first link and the second link may be located closer to the other end opposite the one end than the first axis in the front-to-back direction, and the connection portion between the second link and the third link may be located closer to the one end than the first axis in the front-to-back direction.
[0018] According to the above configuration, the amount of rotation of the second link caused by the opening and closing operation of the cover can be increased, and the amount of movement of the third link in the front-rear direction can be increased.
[0019] In the image forming apparatus described above, a circuit board may be provided, and the link mechanism may be positioned above the circuit board when the cover is in the closed position, and positioned so as to overlap with the circuit board in the front-to-rear direction and the width direction.
[0020] According to the above configuration, the link mechanism can be arranged in a space-saving manner, avoiding the circuit board.
[0021] In the image forming apparatus described above, when the cover is in the closed position and the open position, the third link may be positioned higher than a lower end of the second link.
[0022] According to the above configuration, the third link does not interfere with the circuit board when the cover is opened or closed, ie, the third link can be positioned so as to avoid contact with the circuit board.
[0023] The image forming device may include an ejection roller that ejects a sheet to the outside of the image forming device, and an inner chute that supports the ejection roller, and the second link and the third link may be positioned between the inner chute and the frame that is on the outer side of the inner chute in the width direction.
[0024] According to the above configuration, the widthwise positions of the second link and the third link can be restricted by the inner chute and the frame, and the second link and the third link can be disposed in positions that are difficult for the user to touch. [Effects of the Invention]
[0025] According to the present invention, in an image forming apparatus having a link mechanism that nips and releases the nip of the fixing unit in conjunction with the opening and closing of the cover, the amount of vertical movement of the link mechanism can be reduced. [Brief explanation of the drawings]
[0026] [Figure 1] 1 is a central cross-sectional view of an image forming apparatus according to an embodiment. [Figure 2] FIG. 2 is a side cross-sectional view of the fixing unit. [Figure 3] FIG. [Figure 4] FIG. 2 is a side cross-sectional view of the fixing unit when the arm is in a first position. [Figure 5] FIG. 4 is a side cross-sectional view of the fixing unit when the arm is in a second position. [Figure 6] FIG. 2 is a perspective view of a link mechanism and a right frame. [Figure 7] FIG. 4 is a side cross-sectional view of the link mechanism and the fixing unit with the cover in a closed position. [Figure 8] FIG. 10 is a side cross-sectional view of the link mechanism and the fuser unit when the cover is in the open position. [Figure 9] FIG. 4 is a side cross-sectional view of the cover, the inner chute, the link mechanism, and the right frame. [Figure 10] FIG. 10 is a rear cross-sectional view of the circuit board, the inner chute, the link mechanism, and the right frame. [Figure 11] FIG. 4 is a plan cross-sectional view of the inner chute, the link mechanism, and the right frame. DETAILED DESCRIPTION OF THE INVENTION
[0027] [Overall configuration of image forming device] An image forming apparatus 1 shown in FIG. 1 is one embodiment of the image forming apparatus according to the present invention, and is a laser printer that forms an image on a sheet S by electrophotography.
[0028] In the following description, the right side in FIG. 1 is defined as the front side of the image forming apparatus 1, the left side in FIG. 1 as the rear side of the image forming apparatus 1, the front side of the paper in FIG. 1 as the left side of the image forming apparatus 1, and the back side of the paper in FIG. 1 as the right side of the image forming apparatus 1. Also, the upper and lower sides in FIG. 1 are defined as the upper and lower sides, respectively, of the image forming apparatus 1. In this embodiment, the rear side is an example of one end side in the front-to-rear direction, and the front side is an example of the other end side in the front-to-rear direction. Also, the left-to-right direction is an example of the width direction perpendicular to the front-to-rear direction.
[0029] The image forming apparatus 1 includes a housing 2, a supply unit 3, a motor 4, an image forming unit 5, a fixing unit 6, and a discharge unit .
[0030] The housing 2 includes a frame 21 (see FIG. 6) that supports each component, and a cover 25 that covers the frame 21 and forms the exterior. The frame 21 includes a left frame (not shown) located on the left side, a right frame 22 (see FIG. 6) located on the right side, and multiple connecting frames (not shown) that connect the left frame and the right frame 22. The cover 25 includes a discharge tray 26 formed on the top surface, an opening 27 formed on the rear surface, and a rear cover 28 that is an example of a cover that covers the opening 27.
[0031] The rear cover 28 is supported by the left and right frames 22 at the lower end of the opening 27 so as to be rotatable about a rotation axis R1 along the left-right direction. The rear cover 28 is movable between a closed position (position shown by a solid line in FIG. 1) in which it covers the opening 27, and an open position (position shown by a two-dot chain line in FIG. 1) in which it opens the opening 27 to the outside. When the rear cover 28 is in the open position, it is possible to remove a sheet S that has become jammed in the fixing unit 6 or the discharge unit 7 through the opening 27, that is, to perform so-called jam processing.
[0032] The supply unit 3 includes a sheet tray 10 that supports the sheet S, a sheet conveying unit 30, a conveying roller pair 34, and a registration roller pair 35. The supply unit 3 is disposed in the lower part of the housing 2, and conveys the sheet S supported on the sheet tray 10 to the image forming unit 5. The image forming apparatus 1 has a conveying path P for the sheet S that runs from the supply unit 3 to the discharge unit 7 via the image forming unit 5.
[0033] The sheet tray 10 has a pressure plate 12 and a pressing plate 13. The pressure plate 12 is a plate-shaped member that supports the sheets S from below. The pressure plate 12 is rotatable around a pivot point 12a at its rear end, and by rotating around the pivot point 12a, it can be raised and lowered between a lowered position and an upper position. The pressing plate 13 is located below the pressure plate 12, and can raise and lower the pressure plate 12 between the lowered position and the upper position.
[0034] The sheet conveying section 30 is a conveying mechanism that separates and removes the sheets S supported on the sheet tray 10 one by one and conveys them toward the image forming section 5, and is equipped with a supply roller 31, a separation roller 32, and a separation pad 33.
[0035] The supply roller 31 is a roller for sending the sheet S supported on the sheet tray 10 toward the separation roller 32. The separation roller 32 is disposed downstream of the supply roller 31 in the sheet conveying direction, and the separation pad 33 is disposed opposite the separation roller 32 and is urged toward the separation roller 32.
[0036] The sheets S sent out by the supply roller 31 toward the separation roller 32 are separated one by one between the separation roller 32 and the separation pad 33. The separated sheets S are sent out to a conveying path P.
[0037] The sheet S sent to the conveying path P is conveyed toward the image forming unit 5 by a pair of conveying rollers 34 and a pair of registration rollers 35. The pair of registration rollers 35 regulates the movement of the leading edge of the sheet S being conveyed, temporarily stops the sheet S, and then conveys the sheet S toward the image forming unit 5 at a predetermined timing.
[0038] The image forming section 5 is disposed downstream of the supply section 3 in the sheet conveying direction, and forms an image on the sheet S conveyed from the supply section 3. The image forming section 5 includes a process cartridge 50 that transfers an image onto the surface of the sheet S conveyed from the supply section 3, and an exposure unit 56 that exposes the surface of a photosensitive drum 54 in the process cartridge 50.
[0039] The process cartridge 50 is disposed above the supply unit 3 in the housing 2, and includes a developer storage chamber 51, a supply roller 52, a developing roller 53, a photosensitive drum 54, and a transfer roller 55.
[0040] The exposure unit 56 is equipped with a laser diode, a polygon mirror, a lens, a reflecting mirror, etc., and exposes the surface of the photosensitive drum 54 by irradiating the photosensitive drum 54 with laser light based on image data input to the image forming apparatus 1.
[0041] Toner that will become the developer is stored in the developer storage chamber 51. The toner stored in the developer storage chamber 51 is stirred by a stirring member (not shown) and sent to the supply roller 52. The supply roller 52 further supplies the toner sent from the developer storage chamber 51 to the developing roller 53.
[0042] The developing roller 53 is disposed in close contact with the supply roller 52, and carries the toner supplied from the supply roller 52 and charged by a sliding contact member (not shown). A developing bias is applied to the developing roller 53 by a bias application means (not shown).
[0043] The photosensitive drum 54 is disposed adjacent to the developing roller 53. The surface of the photosensitive drum 54 is uniformly charged by a charger (not shown) and then exposed by the exposure unit 56. The exposed portion of the photosensitive drum 54 has a lower potential than the other portions, and an electrostatic latent image based on the image data is formed on the photosensitive drum 54. Then, charged toner is supplied from the developing roller 53 to the surface of the photosensitive drum 54 on which the electrostatic latent image has been formed, thereby visualizing the electrostatic latent image into a toner image.
[0044] The transfer roller 55 is disposed opposite the photosensitive drum 54, and a transfer bias is applied to it by a bias application means (not shown). With the transfer bias applied to the surface of the transfer roller 55, the sheet S is conveyed while being sandwiched between the photosensitive drum 54 on which the toner image has been formed and the transfer roller 55, whereby the toner image formed on the surface of the photosensitive drum 54 is transferred to the surface of the sheet S. The sheet S on which the toner image has been transferred is conveyed to the fixing device 6.
[0045] The fixing device 6 is equipped with a fixing unit 60 having a heating unit 61 and a pressure roller 62, and heats and fixes the image transferred onto the sheet S by the process cartridge 50. The heating unit 61 is heated by supplying power from a power source (not shown). The pressure roller 62 is disposed opposite the heating unit 61. The heating unit 61 is biased toward the pressure roller 62, and the heating unit 61 and the pressure roller 62 form a nip.
[0046] When the sheet S onto which the toner image has been transferred is conveyed to the fixing device 6, the sheet S is conveyed while being sandwiched between the heating unit 61 and the pressure roller 62, and the sheet S is heated, thereby fixing the toner image onto the sheet S. In this way, the fixing device 6 conveys and heats the sheet S sent from the image forming unit 5.
[0047] The discharge section 7 is located downstream of the image forming section 5 in the sheet conveying direction, and discharges the sheet S, on which an image has been formed in the image forming section 5, to the discharge tray 26. The discharge section 7 is equipped with a pair of discharge rollers 71. The pair of discharge rollers 71 conveys the sheet S, which has been conveyed from the fixing unit 6 along the conveying path P, toward the discharge tray 26.
[0048] [Fuser] 2 and 3, the heating unit 61 of the fixing unit 60 includes a heater 611, a holder 612, a stay 613, and a belt 614. The heater 611 is a flat plate-shaped heater extending in the left-right direction. The heater 611 has a first surface 611A and a second surface 611B opposite to the first surface 611A, and the first surface 611A is supported by the holder 612.
[0049] Holder 612 is made of, for example, a resin member, and has a guide surface 612a and a support wall 612b. Guide surface 612a contacts an inner circumferential surface 614a of belt 614 to guide belt 614. Support wall 612b has a support surface 612A that supports heater 611. Support surface 612A abuts against a first surface 611A of heater 611. Stay 613 is a member that supports holder 612, and is formed by bending a plate material that is more rigid than holder 612, such as a steel plate, into a generally U-shaped cross section.
[0050] The belt 614 is an endless belt that is heat-resistant and flexible, and includes a metal tube made of a metal such as stainless steel and a fluororesin layer covering the metal tube. The heater 611, holder 612, and stay 613 are disposed inside the belt 614. The belt 614 is configured to rotate around the heater 611, holder 612, and stay 613. An inner peripheral surface 614a of the belt 614 contacts the heater 611.
[0051] The pressure roller 62 has a metal shaft 62A and an elastic layer 62B that covers the shaft 62A. The pressure roller 62 is pressed by a heater 611 via a belt 614. By sandwiching the belt 614 between the pressure roller 62 and the heater 611, the pressure roller 62 and the heating unit 61 form a nip portion NP for applying heat and pressure to the sheet S.
[0052] The pressure roller 62 is configured to be rotationally driven by a driving force transmitted from the motor 4. The pressure roller 62 is rotationally driven, thereby causing the belt 614 to rotate due to frictional force with the belt 614 or frictional force with the sheet S sandwiched in the nip portion NP. As a result, the sheet S onto which the toner image has been transferred is transported between the pressure roller 62 and the heated belt 614, whereby the toner image is thermally fixed.
[0053] 4 and 5, the fixing unit 6 includes a fixing frame 63, a guide member 64, and an adjustment mechanism 65. The fixing frame 63 is a frame that supports the various components of the fixing unit 6, and is fixed to the left and right frames 22. The guide member 64 is a member that is located above the heating unit 61 and supports the heating unit 61. The guide member 64 is supported by the fixing frame 63 so as to be movable up and down, i.e., so as to be movable in the direction in which the heating unit 61 forms and releases the nip portion NP with respect to the pressure roller 62.
[0054] The guide member 64 and the heating unit 61 are an example of a heating member that heats the sheet S on which an image is formed, and are disposed rearward of the center of the frame 21 in the front-rear direction.
[0055] The adjustment mechanism 65 adjusts the nip pressure at the nip portion NP between the heating unit 61 and the pressure roller 62. The adjustment mechanism 65 includes a pair of left and right arms 66, a pair of left and right springs 67 as an example of a biasing member, a fourth link 68, and a pair of left and right cams 69.
[0056] The arms 66 are generally L-shaped metal members, and are disposed at positions where they can press the left and right ends of the guide member 64. The arms 66 have an outer fitting portion 661 that is rotatably fitted into the boss 631 of the fixing frame 63, a pressing portion 662 that presses the upper surface 641 of the guide member 64, a support portion 663 that supports the upper end of the spring 67, and a resin contact portion 664 that has a flat surface that can come into contact with the cam 69.
[0057] Arm 66 is movable between a first position (position shown in FIG. 4) where pressing portion 662 presses upper surface 641 of guide member 64 so that pressure roller 62 and heating unit 61 form nip portion NP, and a second position (position shown in FIG. 5) where pressing portion 662 is spaced apart from upper surface 641 of guide member 64 so that the nip pressure at nip portion NP is smaller than that at the first position. Note that reducing the nip pressure means releasing the nip between pressure roller 62 and heating unit 61, and belt 614 may be spaced apart from pressure roller 62. When arm 66 is in the first position, thermal fixation to sheet S is possible, and when arm 66 is in the second position, jammed sheet S can be cleared.
[0058] Spring 67 is, for example, a tension coil spring, and has an upper end supported by support portion 663 of arm 66 and a lower end supported by fixing frame 63. Spring 67 biases arm 66 in the direction from the second position to the first position. As the biasing member, in addition to spring 667, an elastic member such as rubber, a solenoid, a magnet, etc. can be used.
[0059] The fourth link 68 has a shaft 681 extending in the left-right direction and a link member 682 fixed to the right end of the shaft 681. The shaft 681 is supported by the fixing frame 63 so as to be rotatable about a rotation axis R2 along the left-right direction as an example of a second axis. The link member 682 is an arm-shaped member and has a hole (not shown) formed at one end into which the shaft 681 fits, and a boss 683 formed at the other end and protruding to the left. The link member 682 is rotatable together with the shaft 681 about the rotation axis R2.
[0060] Cams 69 are fixed to both ends of shaft 681 in the left-right direction, rotate together with shaft 681 about rotation axis R2, and guide arm 66 to the second position. Cam 69 is a resin member with a D-shaped cross section, and has a first cam surface 691 formed as a flat surface, and a second cam surface 692 formed as an arc surface continuous with first cam surface 691. By making the cross section of cam 69 D-shaped, cam 69 can be easily manufactured.
[0061] When first cam surface 691 is in a position facing contact portion 664 of arm 66, it is separated from contact portion 664. In this state, arm 66 is pulled by spring 67 and positioned at the first position. Note that first cam surface 691 may be in contact with the arm. In this case, first cam surface 691 becomes a surface that guides arm 66 to the first position.
[0062] Second cam surface 692 is a surface that guides arm 66 to the second position. When second cam surface 692 is in a position facing abutment portion 664 of arm 66, second cam surface 692 abuts against abutment portion 664 and pushes up arm 66. In this state, arm 66 is pushed up against the biasing force of spring 67 and is positioned at the second position.
[0063] [Link mechanism] 6 to 8, the image forming apparatus 1 includes a link mechanism 8 that connects the adjustment mechanism 65 and the rear cover 28 and links the adjustment mechanism 65 to the opening and closing of the rear cover 28. The link mechanism 8 is disposed at the rear of the left surface of the right frame 22. The link mechanism 8 includes a first link 81, a second link 82, and a third link 83.
[0064] The first link 81 is a substantially linear member that is connected to the rear cover 28. The first link 81 has an outer fitting portion 811 that is rotatably fitted into a boss 281 of the rear cover 28 formed at one end, and a hole 812 formed at the other end. The boss 281 of the rear cover 28 is provided above the rotation axis R1.
[0065] The second link 82 is a substantially disc-shaped member connected to the first link 81. The second link 82 has a boss 821 that extends to the right and is supported by the right frame 22 so as to be rotatable about a rotation axis R3 as an example of a first axis, a boss 822 that extends to the left and is rotatably fitted into a hole 812 of the first link 81, and a boss 823 that extends to the right. In this embodiment, the three bosses 821, 822, and 823 are arranged in a substantially straight line.
[0066] The third link 83 is a substantially linear member that is connected to the second link 82 and the adjustment mechanism 65. The third link 83 has a hole 831 formed at one end thereof that is rotatably fitted onto the boss 823 of the second link 82, and a hole 832 formed at the other end thereof that is rotatably fitted onto the boss 683 of the fourth link 68. In this embodiment, the third link 83 is longer than the first link 81.
[0067] 7, when the rear cover 28 is in the closed position, the link mechanism 8 is folded in the front-to-rear direction into an inverted Z shape, and in the adjustment mechanism 65, the first cam surface 691 is in a position facing the abutment portion 664. As a result, the arm 66 is pulled by the spring 67 and is in the first position, and the heating unit 61 is pressed toward the pressure roller 62 to form the nip portion NP. Therefore, the sheet S is in a state where it can be thermally fixed, that is, where it can be printed.
[0068] Furthermore, when the rear cover 28 is in the closed position, the connection between the first link 81 and the second link 82 is located forward of the rotation axis R3 in the front-to-rear direction, and the connection between the second link 82 and the third link 83 is located rearward of the rotation axis R3 in the front-to-rear direction. This allows the rotation amount of the second link 82 due to the opening and closing operation of the rear cover 28 to be increased, and the movement amount of the third link 83 in the front-to-rear direction to be increased.
[0069] When the rear cover 28 is moved from the closed position to the open position, the first link 81 is pulled by the rear cover 28 and moves rearward. As the first link 81 moves, the second link 82 is pulled by the first link 81 and rotates clockwise as viewed from the left. As the second link 82 rotates, the third link 83 is pushed by the second link 82 and moves forward. As the third link 83 moves, the fourth link 68 is pushed by the third link and rotates clockwise as viewed from the left. As the fourth link 68 rotates, the cam 69 rotates clockwise as viewed from the left, and the second cam surface 692 abuts against the abutment portion 664, pushing the arm 66 up to the second position.
[0070] As a result, when the rear cover 28 is in the open position as shown in Figure 8, the link mechanism 8 is in a state of extending in the front-rear direction, and the arm 66 of the adjustment mechanism 65 is in the second position. This releases the pressure of the heating unit 61 against the pressure roller 62, and the nip pressure between the heating unit 61 and the pressure roller 62 is smaller than when the arm 66 is in the first position. This makes it possible to clear jammed sheets S. Note that the operations of the various components when the rear cover 28 is moved from the open position to the closed position are the reverse of those described above, and therefore will not be described here.
[0071] By using such link mechanism 8 and adjustment mechanism 65, the fixing unit 6 is brought into a printing state and a jam clearing state in conjunction with the opening and closing of the rear cover 28. Furthermore, according to the link mechanism 8, since the second link 82 is a pivoting link, the amount of rotation of the second link 82 is converted into the amount of movement of the third link 83 in the front-to-rear direction, so the amount of movement of the link mechanism 8 in the up-and-down direction can be reduced. As a result, the image forming apparatus 1 can be made more compact in the up-and-down direction. Furthermore, since the rear cover 28 and the fixing unit 6 are located together at the rear end side within the image forming apparatus 1, the link mechanism 8, which is disposed between the rear cover 28 and the fixing unit 6, can be made more compact.
[0072] [Lock section] 9, the rear cover 28 has a locking portion 282 that engages with the frame 21 in the closed position and prevents the rear cover 28 from moving from the closed position to the open position. The frame 21 has an engaged portion 23 on the right frame 22 that engages with the locking portion 282. A pair of locking portions 282 are provided in the left-right direction, and also engage with an engaged portion provided on the left frame. The two locking portions 282 have the same shape.
[0073] As shown in FIG. 9 , the locking portion 282 has a plate-shaped portion 282A and an engaging protrusion 282B. The plate-shaped portion 282A is a plate-shaped member extending forward from near the upper end of the inner surface of the rear cover 28. The engaging protrusion 282B is a protrusion with a triangular cross section that protrudes upward from the front end of the plate-shaped portion 282A and is engageable with the engaged portion 23. The engaged portion 23 is a member with a triangular cross section that protrudes downward at its lower end so as to be engageable with the engaging protrusion 282B. When the rear cover 28 moves from the open position to the closed position, the engaging protrusion 282B abuts against the engaged portion 23 near the closed position and bends, and at the closed position the engaging protrusion 282B completely engages with the engaged portion 23, locking the rear cover 28.
[0074] 7 to 9, when rear cover 28 moves from the closed position to the open position, each component is arranged so that second cam surface 692 of cam 69 in adjustment mechanism 65 comes into contact with contact portion 664 after engaging protrusion 282B disengages from engaged portion 23. This can be achieved by appropriately designing the shapes of locking portion 282 and engaged portion 23, the shape of cam 69, the separation distance between first cam surface 691 and abutment portion 664, etc.
[0075] With this configuration, when the rear cover 28 is opened or closed, the load generated by the engagement between the locking portion 282 and the engaged portion 23 and the load generated by the second cam surface 692 pushing up the arm 66 do not overlap. This reduces the force required to operate the rear cover 28, improving operability. The locking portion 282 and the rear cover 28 may be molded integrally, or the locking portion 282 may be attached to the inner surface of the rear cover 28 as a separate member from the rear cover 28. Alternatively, the plate-shaped portion 282A of the locking portion 282 may be molded integrally with the rear cover 28, and the engaging protrusion 282B may be attached to the tip of the plate-shaped portion 282A as a separate member from the rear cover 28 and the plate-shaped portion 282A.
[0076] [Circuit board] 9 and 10, the image forming apparatus 1 includes a circuit board 91 that controls the motor 4 and the like. The circuit board 91 is housed in a circuit board housing portion 221 provided in the lower right surface of the right frame 22. The circuit board 91 is a substantially rectangular board on which electronic components are mounted, and is arranged so that its long sides are aligned in the front-to-rear direction and its short sides are aligned in the up-to-down direction, with the left-to-right width being within the circuit board housing portion 221. The rear end of the circuit board 91 is located near the rotation axis R1, and its front end is located forward of the center of the right frame 22 in the front-to-rear direction.
[0077] When the rear cover 28 is in the closed position, the link mechanism 8 is positioned above the circuit board 91 and overlaps with the circuit board 91 in the front-rear and left-right directions. Specifically, almost the entire link mechanism 8 overlaps with the circuit board 91 in the front-rear direction, and the entire link mechanism 8 overlaps with the circuit board 91 in the left-right direction. With this configuration, the link mechanism 8 can be arranged in a space-saving manner, avoiding the circuit board 91.
[0078] 7 to 9, the third link 83 is positioned higher than the lower end of the second link 82 when the rear cover 28 is in the closed position or the open position. This prevents the third link 83 from interfering with the circuit board 91 when the rear cover 28 is opened or closed. In other words, the third link 83 can be positioned to avoid the circuit board 91.
[0079] [Inner Shoot] 9 to 11, the image forming apparatus 1 is provided with an inner chute 92 that supports the lower discharge roller of the discharge roller pair 71. The inner chute 92 is also a component that forms part of the conveying path P. As shown in FIG. 9, the inner chute 92 is disposed near the rear cover 28 in the front-rear direction, between the first link 81 and the locking portion 282 in the up-down direction, and between the right frame 22 and the left frame in the left-right direction.
[0080] 10 and 11, the second link 82 and the third link 83 of the link mechanism 8 are located in the left-right direction between the inner chute 92 and the right frame 22, which is the frame on the outer side of the inner chute 92. In other words, a space is formed between the inner chute 92 and the right frame 22, and the second link 82 and the third link 83 are disposed in that space.
[0081] With this configuration, the left-right positions of the second link 82 and the third link 83 can be restricted by the inner chute 92 and the right frame 22, and the second link 82 and the third link 83 can be positioned so that they are difficult for the user to touch. Note that the first link 81 of the link mechanism 8 is positioned so as to overlap with the inner chute 92 in the left-right direction.
[0082] The image forming apparatus 1 described above may be configured in reverse, i.e., the rear cover is the front cover, and the fixing unit 6 and the link mechanism 8 are disposed forward of the center of the frame 21 in the front-to-rear direction.
[0083] In the above embodiment, a film heating method using the belt 614 is exemplified as the heating unit 61, but the present invention is not limited to this configuration, and for example, a roller heating method using a heating roller may be applied. In this case, the heating unit 61 is configured by a heater and a heating roller heated by the heater, and the heating roller and pressure roller 62 form a nip portion NP for heating and pressurizing the sheet S. [Explanation of symbols]
[0084] 1. Image forming device 8 Link mechanism 21 frames 28 Rear cover (cover) 60 Fuser unit 61 Heating unit (heating element) 62 Pressure roller 64 Guide member (heating member) 65 Adjustment mechanism 66 Arm 67 Spring (biasing member) 68 4th Link 69 Cam 71 Discharge roller pair 81 Link 1 82 Second Link 83 Third Link 91 Circuit Board 92 Inner Shot 282 Lock Section 282A Plate-shaped part 282B Engagement protrusion 691 First cam surface 692 Second cam surface R2 Rotation axis (second axis) R3 Rotation axis (1st axis) S seat
Claims
1. The frame and a cover that is rotatably supported on one end of the frame in the front-rear direction and that is movable between a closed position that covers the one end and an open position that opens the one end to the outside; a fixing unit for heat-fixing an image on a sheet, the fixing unit being located closer to the one end than the center in the front-rear direction of the frame, the fixing unit including a heating element for heating the sheet on which the image has been formed, and a pressure roller for forming a nip with the heating element; an adjustment mechanism that adjusts the nip pressure between the heating member and the pressure roller in response to the opening and closing movement of the cover, the adjustment mechanism making the nip pressure smaller when the cover is in the open position than when the cover is in the closed position; a link mechanism that connects the adjustment mechanism and the cover, The link mechanism includes: a first link connected to the cover; a second link connected to the first link and supported by the frame so as to be rotatable about a first axis extending along a width direction perpendicular to the front-rear direction; a third link connected to the second link and the adjustment mechanism and configured to move in the front-to-rear direction.
2. The adjustment mechanism includes: an arm movable between a first position where the arm presses the heating member to form a nip with the pressure roller and a second position where the arm presses the heating member to form a nip with the pressure roller and a nip pressure smaller than that at the first position; a biasing member that biases the arm in a direction from the second position toward the first position; a fourth link connected to the third link and rotatable about a second axis along the width direction; 2. The image forming apparatus according to claim 1, further comprising: a cam fixed to the fourth link, rotating about the second axis, and guiding the arm to the second position.
3. 3. The image forming apparatus according to claim 2, wherein the biasing member is a spring.
4. the cover has an engaging protrusion that engages with the frame at the closed position and restricts the cover from moving from the closed position to the open position; the cam has a first cam surface that faces, with a gap therebetween, the arm that is in the first position when the cover is in the closed position, and a second cam surface that abuts against the arm to guide the arm to the second position, 3. The image forming apparatus according to claim 2, wherein when the cover moves from the closed position to the open position, the second cam surface abuts against the arm after the engagement between the engagement projection and the frame is released.
5. 5. The image forming apparatus according to claim 4, wherein the first cam surface is a flat surface, and the second cam surface is an arcuate surface formed continuously with the first cam surface.
6. the cover has a plate-like portion extending from an inner surface of the cover along the front-rear direction, 6. The image forming apparatus according to claim 4, wherein the engagement projection projects upward from the tip of the plate-like portion and is capable of engaging with the frame.
7. When the cover is in the closed position: a connecting portion between the first link and the second link is located on the other end side opposite the one end side relative to the first axis in the front-rear direction, 7. The image forming apparatus according to claim 1, wherein a connecting portion between the second link and the third link is located closer to the one end than the first axis in the front-rear direction.
8. a circuit board; 8. The image forming apparatus according to claim 1, wherein the link mechanism is positioned above the circuit board when the cover is in the closed position and is positioned so as to overlap the circuit board in the front-to-rear direction and the width direction.
9. 9. The image forming apparatus according to claim 8, wherein the third link is positioned higher than the lower end of the second link when the cover is in the closed position or the open position.
10. a discharge roller for discharging a sheet to the outside of the image forming apparatus; an inner chute supporting the discharge roller; 10. The image forming apparatus according to claim 1, wherein the second link and the third link are located between the inner chute and the frame on an outer side of the inner chute in the width direction.
Citation Information
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