Embodiments described herein relate generally to an image forming apparatus and an image forming method.
In general, in order to stabilize image characteristics in electrophotography, an image forming condition is controlled based on information from a toner density sensor, an optical sensor, a temperature and humidity sensor or the like.
On the other hand, when toner in a developing device is not consumed for the volume of copy, or the agitating time of the toner and carrier becomes long, the toner electric charge increases, and defects, such as reduction in image density and fogging, occur. Against such a phenomenon, the amount of toner consumed for a specific period is estimated from a copy counter, a developing device drive counter, a pixel counter or the like. When the replacement amount of toner is low as compared with the estimated toner amount, after a copy job is ended, the toner is forcibly discharged. In this way, the highly charged toner is discharged, and a new toner is supplied, so that stable image formation can be performed.
However, according to the forcible discharge of toner as stated above, there is a problem that a large amount of toner, which is not printed on a transfer medium, is discarded, the replacement frequency of a toner cartridge becomes high, and the running cost becomes high.
Reference will now be made in detail to the present embodiment of the invention, an example of which is illustrated in the accompanying drawing.
The image forming units 20Y, 20M, 20C and 20K include photoreceptors 21Y, 21M, 21C and 21K as image carriers. Further, charging devices 22Y, 22M, 22C and 22K as charging portions, developing devices 23Y, 23M, 23C and 23K including developing rollers as developing members and having developers including color toner particles of yellow, magenta, cyan and black and carrier particles, primary transfer rollers 24Y, 24M, 24C and 24K as transfer portions, and cleaner units 25Y, 25M, 25C and 25K are provided around the respective photoreceptors. These are respectively arranged along the rotation directions of the corresponding photoreceptors 21Y, 21M, 21C and 21K.
The primary transfer rollers 24Y, 24M, 24C and 24K are disposed inside the intermediate transfer belt 10, and nip the intermediate transfer belt 10 against the corresponding photoreceptors 21Y, 21M, 21C and 21K. Exposure devices 26Y, 26M, 26C and 26K are arranged so that exposure points are formed on the outer peripheral surfaces of the photoreceptors 21Y, 21M, 21C and 21K between the charging devices 22Y, 22M, 22C and 22K and the developing devices 23Y, 23M, 23C and 23K. The secondary transfer roller 11 is arranged outside the intermediate transfer belt 10 so as to contact therewith.
A print operation is performed as described below by the image forming apparatus constructed as stated above. A toner image is formed in the image forming unit 20Y. The same process is performed also in the image forming units 20M, 20C and 20K in synchronization with the timing of the toner image formation in the image forming unit 20Y. The toner images of magenta, cyan and black formed on the photoreceptors of the image forming units 20M, 20C and 20K are also sequentially primarily transferred onto the intermediate transfer belt 10.
The transfer medium 12 is conveyed from a cassette (not shown), and is sent to the intermediate transfer belt 10 by an aligning roller (not shown) in timing with the toner images on the intermediate transfer belt 10.
A bias (+) of a reverse polarity to a charging polarity of a toner is applied to the secondary transfer roller 11 by a power source (not shown). As a result, the toner images on the intermediate transfer belt 10 are transferred onto the transfer medium 12 by a transfer electric field formed between the intermediate transfer belt 10 and the secondary transfer roller 11. A fixing device (not shown) to fix the toner transferred onto the transfer medium 12 is disposed, and the transfer medium 12 is made to pass through the fixing device so that a fixed image is obtained.
Incidentally, although the description is made on the example in which the image forming units are arranged in color sequence of yellow, magenta, cyan and black, the color sequence is not limited.
As shown in
Further, the image forming unit 20 includes a memory 29 in which values of the print counter 28A, the toner supply drive counter 28B and the developing device drive counter 28C and a threshold used to determine the necessity of a toner replacement operation are stored.
The toner cartridge 27 includes a memory 30 in which characteristic data of a manufacturing lot of toner stored in the toner cartridge 27 is previously stored. Incidentally, the memory 30 is not necessarily required to be attached to the toner cartridge 27. The memory may be attached to an integrated unit of a developing unit including the toner cartridge 27 and the developing device. Besides, the memory 30 may be separated and mounted on the image forming unit.
The respective components of the image forming unit are connected to an arithmetic control mechanism (not shown) to control these.
In the image forming unit as stated above, the control of a forcible toner supply operation is performed as described below.
Further, the CPU 31 is connected to the memory 30 of the toner cartridge 27 through a transmission and reception part 32 via wired or wireless, and controls the image forming apparatus including the respective components of the image forming unit 20 such as a toner cartridge drive motor 33. Incidentally, the CPU 31 is not required to be integrated, and may be separate from a motor driver to drive the toner cartridge drive motor 33, an ASIC to process data from the memory 29, an ASIC to process data from the memory 30, or the like. Besides, the memory 29 may be incorporated.
As shown in the table of
There are provided a toner supply drive counter value writing areas (A007-A010) in which counter values of drive times of the respective toner cartridges of black, yellow, cyan and magenta are written, and a developing device drive counter value writing area (A011-A014) in which counter values of drive times of the respective developing devices are written. These count values are respectively parameter values for obtaining the use amount of toner.
Further, there are provided a writing area (A015) of print count thresholds which are respectively thresholds for executing the toner replacement operation, and a writing area (A016) of a toner refresh threshold as a threshold for the toner use amount obtained from the parameter values detected by the toner supply drive counter 28B and the developing device drive counter 28C.
Besides, as shown in the table of
By the structure as stated above, the control of the toner replacement operation is performed as described below.
The partitioned code written in B002 is read into the CPU 31 through the transmission and reception part 32, and the corresponding control code of A002 is selected and is written to A003 (Act 4). By this, the image forming apparatus body is place in a Ready state, and a print job is performed (Act 5).
After the print job is ended, it is determined whether the print counter values written in A005 and A006 reach the print counter thresholds written in A015 (Act 6).
When they reach the print counter thresholds, the toner use amount is obtained from the toner supply drive counter values written in A007-A010 and the developing device drive counter values written in A011-A014 (Act 7). It is determined whether the obtained toner use amount reaches the toner refresh threshold written in A016 (Act 8).
When it reaches the toner refresh threshold, the toner replacement operation is executed based on the control code written in A003 (Act 9). The execution history is written to A004 (Act 10), and the counter values of the print counter 28A, the toner supply drive counter 28B and the developing device drive counter 28C are reset (Act 11).
As described above, in the toner replacement operation, although a constant amount of toner is discharged and supplied until now, the control can be performed so that the discharge amount (supply amount) is adjusted according to, for example, the charging characteristic of toner, and the use amount of toner can be suppressed.
While certain embodiments have been described, these embodiments have been presented by way of example only, and are not intended to limit the scope of the inventions. Indeed, the novel embodiments described herein may be embodied in a variety of other forms; furthermore, various omission, substitutions and changes in the form of the embodiments described herein may be made without departing from the spirit of the inventions. The accompanying claims and their equivalents are intended to cover such forms or modifications as would fall within the scope and spirit of the inventions.
This application is based upon and claims the benefit of priority from the prior U.S. Patent Application No. 61/331,137 filed on May 4, 2010, the entire contents of which are incorporated herein by reference.
Number | Date | Country | |
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61331137 | May 2010 | US |