This application is based on and claims priority under 35 USC 119 from Japanese Patent Application No. 2017-193359 filed Oct. 3, 2017.
The present invention relates to an image formation control apparatus and an image forming apparatus.
According to an aspect of the invention, there is provided an image formation control apparatus including: a setting reception section that collectively receives settings of plural adjustment factors with respect to image formation; an instruction section that instructs an image forming apparatus main body to perform adjustments with respect to the settings of the adjustment factors, which are received by the setting reception section; an adjustment result reception section that receives results of the adjustments of the respective adjustment factors, which are instructed by the instruction section, in the image forming apparatus main body; and a controller that performs control such that the results of the adjustments of the respective adjustment factors, which are received by the adjustment result reception section, are stored in company with a recording medium accommodation unit that accommodates a recording medium.
Meanwhile, here, “collectively receive” refers to “receive after gathering into one bundle as the setting”, and is not limited to “receive by one operation”. The operation may be performed in plural times.
Here, the adjustment factor is a target item to be adjusted for image formation.
Exemplary embodiment(s) of the present invention will be described in detail based on the following figures, wherein:
Subsequently, an exemplary embodiment of the present invention will be described in detail with reference to the accompanying drawings.
The image forming apparatus 10 is configured with an image forming apparatus main body 12 and an image formation control apparatus 14. The image forming apparatus main body 12 includes a recording medium accommodation unit 16, an image forming section 18, and an output unit 20.
The recording medium accommodation unit 16 includes, for example, six parts, and names are attached to the respective parts. That is, as illustrated in
The image forming section 18 has, for example, a structure as illustrated in
That is, the image forming section 18 includes an intermediate transfer belt 22. For example, six image forming units 24 are provided at an upper part of the intermediate transfer belt 22. The image forming units 24 form an image using toner, which is selected among a color of gold, a color of silver, a transparent color, a color of white, a color of orange, and a color of Chinese red, as specific color developer in addition to basic color developers including a color of yellow, a color of magenta, a color of cyan, and a color of black. In the exemplary embodiment, the image forming units 24, which have the color of silver, the color of yellow, the color of magenta, the color of cyan, the color of black, and the transparent color, are disposed from a downstream side.
As illustrated in
In addition, as illustrated in
As illustrated in
Meanwhile, although the image forming section 18 is provided such that the image is formed on only a first surface of the paper, the image may be formed on a second surface by providing an inverting unit on a paper conveyance path.
In addition, a reading device 44 is provided in the output unit 20. The reading device 44 reads, for example, the recording medium and the image, which is transferred to the recording medium, using a CCD or the like.
The recording medium, which is output from the output unit 20, is discharged to a discharge unit, which is not illustrated in the drawing, and is further conveyed to a post-processing apparatus, such as a staple, such that a post-processing is performed.
The image formation control apparatus 14 is configured with, for example, a personal computer, is connected to a control unit in the image forming apparatus main body 12, and, together with the control unit, controls the image forming apparatus main body 12. As illustrated in
The CPU 46 performs a predetermined process based on a control program which is stored in the memory 48. The user interface 52 is connected to an operation display apparatus 56. The operation display apparatus 56 includes, for example, a touch panel, receives a setting operation or the like, and displays a screen used to perform the setting operation.
The storage device 50 includes, for example, a hard disk or the like, and stores data which is necessary to control the image forming apparatus 10.
It is necessary to perform various adjustments on the image forming apparatus 10. The adjustments are relevant to the recording medium and the image formation. The adjustment relevant to the recording medium is performed in a case where the recording medium, which is fed from the recording medium accommodation unit 16, is deviated longitudinally and laterally. Although deviation is generated from a mechanical error of a feeding roller which feeds the recording medium from the recording medium accommodation unit 16, a deviation quantity becomes different according to a type of the recording medium. For example, a size and a basis weight of the recording medium, coated paper, normal paper, and the like become a cause of the deviation. In addition, the adjustment relevant to the image formation is performed on a density, a gradation, a hue, and a color deviation of an image. For example, the density of the image is adjusted by the secondary transfer voltage.
It is possible to acquire adjustment data with respect to adjustment factors for each print target (job). However, in a case where the adjustment data is acquired in advance and is stored as a database and is called if necessary, it is fast in time and is convenient.
First, in step S10, temporal stocks are allocated to the trays. Meanwhile, the stocks are series of data stored with respect to a storage target, and the temporal stocks are stocks which are temporally used.
An initial screen includes a pattern display 60 of the image forming apparatus 10, a tray state display 62 which displays states of the trays, a developer color display 64 which displays developer colors which are disposed on the respective image forming units, and an operation display 66 in which plural operation checkboxes are displayed. In the initial screen, for example, a temporal stock 1 is allocated to the tray 1.
In subsequent step S12, collective adjustment setting is received.
In the collective adjustment setting screen, the pattern display 60, the tray state display 62, and the developer color display 64 are moved to an upper part and are displayed small, and an automatic adjustment setup display 68 is displayed at a lower part of the pattern display 60, the tray state display 62, and the developer color display 64. The collective adjustment setting starts in a case where an operation checkbox “automatic adjustment” which is displayed on the operation display 66 is checked.
Meanwhile, a tray setting button 70 is displayed on the automatic adjustment setup display 68. The tray setting button 70 is used in a case where content of a temporal stock to be performed is changed.
That is, in a case where the tray setting button 70 is clicked, a stock setting screen is displayed, as illustrated in
Meanwhile, it is possible to separately set the first surface and the second surface. For example, it is possible to perform setting such that the first surface is coated and the second surface is uncoated.
In a case where the operation checkbox “automatic adjustment” is checked in step S12, as illustrated in
In a case where the process in step S12 ends, deviation quantity adjustment and secondary transfer voltage adjustment are instructed to the image forming apparatus main body 12 as in step S14 and step S16.
Meanwhile, the processes in step S14 and step S16 are not performed separately but performed collectively.
That is, in the image forming apparatus main body 12, first, a test recording medium is conveyed from the tray 1. In contrast, a test toner image is formed in the image forming units 24, and the test toner image is transferred to the intermediate transfer belt 22.
A test image, which is formed on the intermediate transfer belt 22, is transferred to the test recording medium, which is conveyed from the tray 1, by the secondary transfer roller 38. The recording medium, to which the test image is transferred, is fixed and cooled through the fixing unit 40 and the cooling unit 42, and is read by the reading device 44. The reading device 44 reads, for example, locations of the four corners of the recording medium and reads a density measurement patch which is formed in the test image. The deviation quantity and the secondary transfer voltage are adjusted based on the read information.
As described above, while the deviation quantity adjustment and the secondary transfer voltage adjustment are performed, “being executed” is displayed as illustrated in
In subsequent step S18, it is determined whether or not the temporal stock is allocated to the tray. In a case where it is determined to be the temporal stock in step S18, the process proceeds to step S20, and a stock file is generated from a temporal stock file. In subsequent step S22, an alignment file is allocated to the generated stock file. In the exemplary embodiment, the temporal stock 1 is allocated to the tray 1. Therefore, it is determined to be the temporal stock in step 18, a stock is generated in step 20, and an alignment file 1 is allocated to the generated stock.
In contrast, in a case where it is determined that the temporal stock is not allocated, that is, a stock is already stored in step S18, the process proceeds to step S24, and the deviation quantity, which is acquired in step S14, is allocated to the stock which is already generated.
In a case where the process in step S22 or step S24 ends, the process proceeds to step S26, and an adjustment result, which is acquired through the adjustment performed in step S16, is reflected in the stock. Furthermore, the stock is allocated to the tray in subsequent step S28. In the exemplary embodiment, for example, a stock 6 is allocated to the tray 1, and the process ends.
As a result of the above, a stock database is generated in the storage device 50, as illustrated in
Meanwhile, in the exemplary embodiment, the stock database is generated in the storage device 50. However, the present invention is not limited thereto and, for example, it is possible to store the stock database in a server via a network or store the stock database in a storage medium such as a USB memory.
The foregoing description of the exemplary embodiments of the present invention has been provided for the purposes of illustration and description. It is not intended to be exhaustive or to limit the invention to the precise forms disclosed. Obviously, many modifications and variations will be apparent to practitioners skilled in the art. The embodiments were chosen and described in order to best explain the principles of the invention and its practical applications, thereby enabling others skilled in the art to understand the invention for various embodiments and with the various modifications as are suited to the particular use contemplated. It is intended that the scope of the invention be defined by the following claims and their equivalents.
Number | Date | Country | Kind |
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2017-193359 | Oct 2017 | JP | national |