An electrophotographic printer has a toner recycling transporting mechanism with a belt conveyor that transports toner from a toner collection chamber, in which toner removed from the photosensitive drum of the printer is collected, to a toner delivery chamber, from which toner is returned to the developing unit of the printer . The belt conveyor is disposed in a channel that loops around the ends of roller shafts in the printer, and does not increase the width of the printer. The toner recycling transporting mechanism is easily assembled, and can be driven without motion irregularities.
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0. 31. A method of transporting toner in an electrophotographic printer having a photosensitive drum on which a latent image is formed, a developing unit for developing the latent image by application of toner, and a transfer unit for transferring the developed image from the photosensitive drum to a printing medium, comprising the steps of:
removing toner from said photosensitive drum after transfer of said image to said printing medium;
collecting the toner thus removed in a toner collection chamber; and
slidably guiding a belt conveyor along a channel connecting the tone collection chamber to a toner delivery chamber to transport toner from the toner collection chamber to the toner delivery chamber.
2. A method of recycling transporting toner in an electrophotographic printer having a photosensitive drum on which a latent image is formed, a developing unit for developing the latent image by application of toner, and a transfer unit for transferring the developed image from the photosensitive drum to a printing medium, comprising the steps of:
removing toner from said photosensitive drum after transfer of said image to said printing medium;
collecting the toner thus removed in a toner collection chamber;
using a belt conveyor to transport the toner from said toner collection chamber to a toner delivery chamber;
returning the toner from said toner delivery chamber to said developing unit;
driving said belt conveyor by rotating a toothed wheel engaging said belt conveyor; and
allowing toner that is picked up by said toothed wheel from said belt conveyor to drop through a passage and return to said belt conveyor.
3. A method of recycling transporting toner in an electrophotographic printer having a photosensitive drum on which a latent image is formed, a developing unit for developing the latent image by application of toner, and a transfer unit for transferring the developed image from the photosensitive drum to a printing medium, comprising the steps of:
removing toner from said photosensitive drum after transfer to said image to said printing medium;
collecting the toner thus removed in a toner collection chamber;
using a belt conveyor to transport the toner from said toner collection chamber to a toner delivery chamber;
returning the toner from said toner delivery chamber to said developing unit; and
driving a screw conveyor having a toothed end, said screw conveyor conveying said toner from one end of said toner delivery chamber toward a more central part of said toner delivery chamber, the toothed end of said screw conveyor simultaneously driving said belt conveyor.
1. A method of recycling transporting toner in an electrophotographic printer having a photosensitive drum on which a latent image is formed, a developing unit for developing the latent image by application of toner, and a transfer unit for transferring the developed image from the photosensitive drum to a printing medium, comprising the steps of:
removing toner from said photosensitive drum after transfer of said image to said printing medium;
collecting the toner thus removed in a toner collection chamber;
using a belt conveyor to transport the toner from said toner collection chamber to a toner delivery chamber;
returning the toner from said toner delivery chamber to said developing unit;
using an idle rotatable element turning on a shaft to move said belt conveyor, said rotatable element rotating in relation to said shaft; and
allowing foreign matter that becomes caught between said idle rotatable element and said shaft to escape through a groove formed in one of an outer surface of said shaft and an inner surface of said idle rotatable element.
0. 32. A toner transporting mechanism for an electrophotographic printer having a photosensitive drum on which a latent image is formed, a developing unit for developing said latent image by application of toner, and a transfer unit for transferring the developed image to a printing medium, comprising:
a toner transporting portion, having a channel with a pick-up station at a first position along said channel and a discharge station at a second position along said channel;
a cleaning unit attached to said toner transporting portion for removing said toner from said photosensitive drum after transfer of said image to said printing medium, a toner collection chamber opening into said channel at said pick-up station for holding the toner thus removed, and a first conveyor for conveying the toner in said toner collection chamber to said pick-up station;
a toner delivery chamber attached to said toner transporting portion, opening into said channel at said discharging station; and
a second conveyor in the form of a belt conveyor disposed in and slidably guided by said channel, for conveying said toner from said pick-up station to said discharging station.
4. A toner recycling transporting mechanism for an electrophotographic printer having a photosensitive drum on which a latent image is formed, a developing unit for developing said latent image by application of toner, and a transfer unit for transferring the developed image to a printing medium, comprising:
a toner recycling transporting portion, having a channel forming a loop, with a pick-up station at a first position in said loop and a discharging station at a second position in said loop;
a cleaning unit attached to said toner recycling transporting portion, for removing said toner from said photosensitive drum after transfer of said image to said printing medium, said cleaning unit having a toner collection chamber opening into said channel at said pick-up station for holding the toner thus removed, and a first conveyor for conveying the toner in said toner collection chamber to said pick-up station;
a toner delivery chamber attached to said toner recycling transporting portion, opening into said chamber at said discharging station; and
a second conveyor in the form of a belt conveyor disposed in and guided by said channel, for conveying said toner from said pick-up station to said discharging station.
5. The toner recycling transporting mechanism of
6. The toner recycling transporting mechanism of
7. The toner recycling transporting mechanism of
8. The toner recycling transporting mechanism of
9. The toner recycling transporting mechanism of
10. The toner recycling transporting mechanism of
11. The toner recycling transporting mechanism of
12. The toner recycling transporting mechanism of
13. The toner recycling transporting mechanism of
14. The toner recycling transporting mechanism of
15. The toner recycling transporting mechanism of
16. The toner recycling transporting mechanism of
a shaft attached to said toner recycling transporting portion, having a grooved cylindrical surface; and
an idle rotatable element mounted on said shaft, for moving said belt conveyor, said rotatable element rotating in relation to said shaft;
the grooved cylindrical surface of said shaft providing an escape route for foreign matter that becomes caught between said shaft and said idle rotatable element.
17. The toner recycling transporting mechanism of
18. The toner recycling transporting mechanism of
19. The toner recycling transporting mechanism of
20. The toner recycling transporting mechanism of
a shaft attached to said toner recycling transporting portion; and
an idle rotatable element mounted on said shaft, for moving said belt conveyor, said rotatable element rotating in relation to said shaft, said idle rotatable element having a grooved inner surface in contact with said shaft, the grooved inner surface of said idle rotatable element providing an escape route for foreign matter that becomes caught between said shaft and said idle rotatable element.
21. The toner recycling transporting mechanism of
22. The toner recycling transporting mechanism of
23. The toner recycling transporting mechanism of
24. The toner recycling transporting mechanism of
25. The toner recycling transporting mechanism of
26. The toner recycling transporting mechanism of
27. The toner recycling transporting mechanism of
said developing unit has a roller turning on a shaft; and
said toner recycling transporting portion forms a side frame supporting one end of said shaft.
28. The toner recycling transporting mechanism of
0. 29. The toner transporting mechanism of
0. 30. The toner transporting mechanism of
0. 33. The toner transporting mechanism of
0. 34. The toner transporting mechanism of
0. 35. The toner transporting mechanism of
said toner transporting portion forms a side frame supporting one end of said shaft.
0. 36. The toner transporting mechanism of
0. 37. The toner transporting mechanism of
0. 38. The toner transporting mechanism of
0. 39. The toner transporting mechanism of
0. 40. The toner transporting mechanism of
0. 41. The toner transporting mechanism of
0. 42. The toner transporting mechanism of
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The present invention relates to a method and a mechanism for recyclingrecyclingrecycling transporting mechanism will be given first.
The printing process cartridge 10 comprises a photosensitive drum 24, a charging unit 26 that charges the photosensitive drum 24 to a uniform potential preparatory to image formation, a developing unit 28 that develops the image by applying toner, a toner cartridge 30 from which the toner is supplied, and a cleaning unit 32 that removes remaining toner from the photosensitive drum 24 after transfer of the image to the paper 4. The developing unit 28 comprises a developing roller 34 that applies toner to the surface of the photosensitive drum 24, and a supply roller 36 that supplies toner to the developing roller 34.
The rotation of the photosensitive drum 24 is also transmitted by gears (not shown) to the rollers 34 and 36 and the third screw conveyor 44. The photosensitive drum 24 is driven by a motor (not visible).
The cleaning unit 62 in
The side frame or toner recycling transporting portion 70 on the illustrated side of the printing process cartridge 58 has a channel 72 that loops around the ends of the shafts of the photosensitive drum 24 and the rollers 34 and 36 in the developing unit 28. The channel 72 is occupied by a belt conveyor 74. A pulley 76 at one end of the channel 72, disposed inside the loop of the channel 72, turns in the decision of arrow A, moving the belt conveyor 74 in the direction of arrow B. At the other end, the channel 72 opens into the toner collection chamber 66 of the cleaning unit 62. The pick-up station 78 of the belt conveyor 74 is disposed in the region where the channel 72 meets the toner collection chamber 66 i.e., a first portion; the discharge station 80 of the belt conveyor 74 is disposed beneath the pulley 76 i.e., second portion. The belt conveyor 74 discharges into a toner delivery chamber 82, from which a screw conveyor 84 carries toner to the developing unit 28.
The invented toner recycling transporting mechanism operates as follows. The motor (not shown) that drives the photosensitive drum 24 also drives the pulley 76 and the screw conveyors 68 and 84. As the photosensitive drum 24 turns past the cleaning blade 64, remaining toner is removed and drops into the toner collection chamber 66. Screw conveyor 68 brings this toner to the pick-up station 78 at the lower end of the channel 72, as shown in FIG. 10A. The belt conveyor 74 carries the toner upward toward the pulley 76 as shown in FIG. 10B. At the discharge station 80, the toner carried by the belt conveyor 74 drops into the toner delivery chamber 82 as shown in
As pointed out above, the invented toner recycling transporting mechanism does not require the width of the printing process cartridge 58 to be increased. The toner recycling transporting mechanism in the first embodiment is also easier to assemble than the conventional toner recycling transporting mechanism, because the belt conveyor 74 is driven by a single pulley 76 instead of a worm gear train. The problem of thrust that was present in the worm gear train is also eliminated, so printing is more regular.
Next, a second embodiment will be described.
Referring to
The belt driving gear 92 also drives an idle gear 94, which drives a gear 96 that turns the screw conveyor 84. The pulley 98 at the top of the channel 72 turns freely. The purpose of the pulley 98 in the second embodiment is not to drive the belt conveyor 74, but to enable the belt conveyor 74 to negotiate the sharp turn at the top of the channel 72 without friction.
The gear 108 attached to the shaft of the supply roller 36 also drives a gear 110 attached to the shaft 112 of the belt driving gear 92 in the toner recycling transporting mechanism. An idle gear 113 is provided between the gears 108 and 110, and the rotation of gear 108 is transmitted to gear 110 through idle gear 113, so that gear 110 turns in the direction of arrow H. The belt driving gear 92 is thereby driven in the direction of arrow D.
Referring to
Referring to
Referring again to
By enabling the belt conveyor 74 to transport and discharge toner efficiently, without friction between the belt conveyor 74 and belt driving gear 92, the second embodiment reduces the torque load on the motor, contributing to quieter operation of the printer, more uniform driving of the photosensitive drum 24, and thus more uniform printed output.
The belt driving gear 92 need not be a gear with involute teeth; a sprocket wheel of the type used to drive an automotive timing belt can be used, or any other type of toothed wheel can be used, with suitable modification to the shape of the teeth 90 of the belt conveyor 74.
Next, a third embodiment will be described.
Referring to
Referring to
Referring to the sectional view in
Referring to
Next, a fourth embodiment will be described. The fourth embodiment is similar to the third embodiment, except for the stationary shaft of the idle gear 94.
Referring to
The stationary shaft 128 fits into a central hole of the idle gear 94, as indicated by the dotted line in
During printing, grains of toner or other foreign matter may find their way into the space between the idle gear 94 and its stationary shaft 128. The rotary motion of the idle gear 94 in direction J rolls these grains of foreign matter around the stationary shaft 128 in the direction of arrow K in
By providing an escape route for foreign matter caught between the idle gear 94 and its stationary shaft 128, the grooves 132 prevent foreign matter from accumulating and causing friction between the idle gear 94 and shaft 128. The torque load on the motor that drives the photosensitive drum 24 and the toner recycling transporting mechanism is accordingly not increased due to such friction, and printing irregularities that might be caused by such friction are avoided.
Next, a fifth embodiment will be described. The fifth embodiment is similar to the fourth embodiment, except for the groove pattern on the stationary shaft 128 of the idle gear 94.
Referring to
The effect of the fifth embodiment is similar to the effect of the fourth embodiment: friction between the idle gear 94 and its stationary shaft 128 is avoided, a steady torque load is maintained on the driving motor, and printing irregularities are prevented.
Next, a sixth embodiment will be described. The sixth embodiment is similar to the fifth embodiment, but locates the helical groove on the inner surface of the idle gear 94 instead of the outer surface of its shaft.
Referring to
The sixth embodiment has the same effects as the fourth and fifth embodiments in reducing friction between the idle gear 94 and the shaft 128, maintaining a steady torque load on the driving motor, and preventing printing irregularities.
Next, a seventh embodiment will be described. The seventh embodiment provides for the return of toner from the belt driving gear 92 to the belt conveyor 74. The seventh embodiment also provides a passage for toner discharged from between the idler gear 94 and its stationary shaft in the fourth, fifth, and sixth embodiments.
Referring to
As described in the preceding embodiment, the belt conveyor 74 scoops up toner from the toner collection chamber 66 at the pick-up station 78, carries the toner to the discharging station 80, and discharges the toner into the toner delivery chamber 82. Some of the toner, however, adheres to the belt conveyor 74 and fails to be discharged. Some of this adhering toner is picked up by the teeth of the belt driving gear 92 when they engage the teeth of the belt conveyor 74, and adheres to the teeth of the belt driving gear 92. This adhering toner then falls from the belt driving gear 92 into the passage 152, is returned to the channel 72, is picked up again by the belt conveyor 74, and is carried into the toner collection chamber 66.
The passage 152 in the seventh embodiment prevents toner from accumulating in the space around the belt driving gear 92, where such toner might clog the teeth of the belt driving gear 92 and generally interfere with the rotation of this gear 92. By preventing such accumulation of toner, the seventh embodiment contributes to the maintenance of a steady torque load on the driving motor and the prevention of printing irregularities.
Next, an eighth embodiment of the invention will be described.
Referring to
During printing, the shaft 156 of the toothed screw conveyor 154 is driven in the direction of arrow M in
By replacing the pulley 76 and screw conveyor 84 of the first embodiment with a single toothed screw conveyor 154, the eighth embodiment reduces number of parts and hence the cost of the printing process cartridge 58. The cartridge 58 also becomes easier and thus less expensive to assemble.
Next, a ninth embodiment will be described. Referring to
Next, a tenth embodiment will be described. Referring to
The preceding embodiments can be combined in various ways not explicitly mentioned above. For example, the projection 164 of the ninth embodiment or the flexible blade 166 of the tenth embodiment, can be combined with any of the preceding embodiments.
All of the embodiments described above have the advantages mentioned in the first embodiment. The width of the printing process cartridge 58 is reduced because the belt conveyor 74 is disposed in a channel 72 that loops around the ends of the shafts of existing rollers in the printing process cartridge 58, without extending beyond the ends of these shafts. No worm gear is required, so the load on the driving motor is reduced, and motion irregularities are avoided. In addition, the number of parts in the toner recycling transporting mechanism is reduced, so the cost of the printing process cartridge 58 is reduced, including both the materials cost and the cost of assembly.
Those skilled in the art will recognize that other embodiments are possible within the scope claimed below.
Kobayashi, Atsushi, Nakajima, Shigeki
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