This application claims priority under 35 U.S.C. §119 from Japanese Patent Application No. 2005-266771, filed on Sep. 14, 2005. The entire subject matter of the application is incorporated herein by reference.
1. Technical Field
The present disclosure relates to a printer, and in particular, to a printer comprising a holding member which holds a print medium to be printed on and an inkjet head which executes printing on the print medium held by the holding member by discharging ink.
2. Related Art
An inkjet printer on the market today generally comprises a color inkjet head including a number of inkjet nozzles. Such an inkjet printer is designed to execute color printing by discharging inks of multiple colors from the inkjet nozzles onto a print medium (paper, etc.) of a desired size according to printing data while moving the inkjet head to and fro in a main scanning direction (parallel to the direction of printing) and by successively shifting the inkjet head in a sub scanning direction orthogonal to the main scanning direction (line feed).
For example, in an inkjet printer described in Japanese Patent Provisional Publication No. 2002-234188 (page 4, FIG. 1) (hereinafter referred to as a “document #1”), a carriage on which an inkjet head is mounted to face downward is configured to be movable in the horizontal direction and a desired image is formed on paper being fed by a feeding roller by discharging ink downward from the inkjet head onto the paper.
The inkjet printer of the document #1 further comprises an ink receiving member (for receiving ink discharged from the inkjet head for the flushing of the inkjet head) which is placed to face the inkjet head at the far right of a platen. Therefore, when the flushing is executed at the start of printing or in the middle of printing, the inkjet head has to be withdrawn to a maintenance position facing the ink receiving member.
Meanwhile, a variety of printing techniques have been proposed for printing patterns, designs, etc. on various types of fabrics, and there have also been proposed inkjet printers capable of printing patterns, designs, etc. on a surface of fabric by discharging color inks from the inkjet nozzles onto the fabric according to printing data while moving the inkjet head relative to the fabric in an X direction and a Y direction orthogonal to each other.
For example, in a printer described in Japanese Patent Provisional Publication No. HEI05-84887 (pages 2-3, FIG. 2, FIG. 3) (hereinafter referred to as a “document #2”), a Y-movement bar is held to be movable in a Y direction along grooves formed on both lateral faces of a machine frame which is formed in a U-shape in the plan view, an X-movement arm is supported to be movable along the Y-movement bar, an inkjet head is attached to the end of the X-movement arm, and a fabric holding frame holding fabric to be printed on is mounted and fixed on a table placed at the center of the machine frame. In the printer, the inkjet head executes printing on the fixed fabric by discharging ink according to printing data while moving in the X and Y directions.
However, the aforementioned printers involve the following problems. The size of the inkjet printer of the document #1 is necessitated to be large especially in the printing direction since the ink receiving member (for receiving ink discharged for the flushing of the inkjet head) has to be placed at a particular flushing position (outside a printing range) at the far right of the platen.
Also when such an ink receiving member is installed in the printer of the document #2, the ink receiving member has to be placed outside the fabric holding frame in order to prevent the fabric (held by the fabric holding frame) from being smeared with ink. With the long moving distance of the inkjet head in the printing direction, the enlargement of the printer is inevitable.
While the printer of the document #2 is designed to execute printing on the fixed fabric by moving the inkjet head in the X and Y directions orthogonal to each other, such a printer may also be configured to execute the printing by moving the fabric holding frame (holding the fabric) in the X and Y directions relative to an inkjet head placed at a fixed position. In this case, the flushing can be carried out by moving the inkjet head (which is fixed during the printing) from a printing position (close to the fabric) to a maintenance position (above the printing position) and thereafter moving a maintenance mechanism including the ink receiving member in a horizontal direction to let the ink receiving member face the inkjet head at the maintenance position.
However, such a flushing operation requires the elevation of the inkjet head and the horizontal movement of the maintenance mechanism to be performed in cooperation with each other. Therefore, the flushing operation takes a long maintenance time and that delays the printing process.
Aspects of the present disclosure are advantageous in that a printer capable of executing the flushing of the inkjet head without the need of the ink receiving member can be provided while realizing a reduced maintenance time for the flushing, speeding up of the printing process, and miniaturization of the printer.
It is noted that various connections are set forth between elements in the following description. It is noted that these connections in general and unless specified otherwise, may be direct or indirect and that this specification is not intended to be limiting in this respect. Aspects of the invention may be implemented in computer software as programs storable on computer-readable media including but not limited to RAMs, ROMs, flash memory, EEPROMs, CD-media, DVD-media, temporary storage, hard disk drives, floppy drives, permanent storage, and the like.
In accordance with an aspect of the present disclosure, there is provided a printer comprising: an inkjet head including a plurality of nozzles for discharging ink; a holding member which holds a print medium to be printed on; a moving mechanism which moves at least one of the holding member and the inkjet head so as to move the inkjet head relative to the holding member in a main scanning direction and a sub scanning direction for printing by the inkjet head on the print medium; and a print control unit which controls the inkjet head and the moving mechanism so as to execute flushing printing on the print medium for preventing clogging of the nozzles while moving the inkjet head relative to the holding member in a first printing direction in the main scanning direction and to execute pattern printing on the print medium according to pattern printing data while moving the inkjet head relative to the holding member in a second printing direction in the main scanning direction.
Under the control of the print control unit, the flushing printing on the print medium is executed when the inkjet head is moved relative to the holding member in the first printing direction in the main scanning direction (first half of to-and-fro movement of the inkjet head relative to the holding member), and the pattern printing on the print medium is executed when the inkjet head is moved relative to the holding member in the second printing direction in the main scanning direction (second half of the to-and-fro movement). In other words, the flushing printing is executed first and thereafter the pattern printing is executed over the result of the flushing printing. Therefore, the flushing of the inkjet head can be carried out without fail before the pattern printing while preventing ill effect of the flushing printing on the pattern printed by the pattern printing.
In the above configuration, the flushing of the inkjet head (which is generally executed separately from the printing process) is incorporated in the pattern printing, by which the maintenance time necessary for the flushing can be reduced and the printing process can be speeded up while executing the flushing process without fail.
Further, the ink receiving member (which is generally necessary for the flushing) is left out in the above configuration, by which cost reduction and miniaturization of the printer become possible. Since the result of the flushing printing is concealed later by the pattern printing (in a part covered by the pattern printing), the pattern itself (printed by the pattern printing) is prevented from being affected by the flushing printing. It is also possible to use the result of the flushing printing as a background pattern since part of the result of the flushing printing that is not covered by the pattern printing remains visible, by which decorative effect of the pattern printed by the pattern printing can be enhanced.
In at least one aspect, the print control unit executes the print control so that the flushing printing is executed in a low dot density throughout a pattern printing area for the pattern printing according to the pattern printing data.
In the above configuration, the print control unit executes the print control so that the flushing printing is executed in a low dot density throughout the pattern printing area (area for the pattern printing according to the pattern printing data), by which the result of the flushing printing can be prevented from standing out from the pattern printed by the pattern printing even when the pattern includes a pale-colored part.
In at least one aspect, the printer further comprises a flushing printing data storage unit which stores multiple types of flushing printing data for the flushing printing. The print control unit includes a selection unit which lets a user select a desired type of flushing printing data from the multiple types of flushing printing data stored in the flushing printing data storage unit.
In the above configuration, the user is allowed to select desired flushing printing data from the multiple types of flushing printing data stored in the flushing printing data storage unit and the flushing printing is executed according to the selected flushing printing data, by which decorative effect of the flushing printing (flushing printing pattern) can be enhanced.
Preferably, the print medium is fabric and the holding member is a fabric holding frame which holds the fabric.
In the above configuration, the pattern printing can be executed also to fabric held by the fabric holding frame while carrying out the flushing of the inkjet head without fail.
In at least one aspect, the inkjet head is placed at a fixed position for the printing, and the moving mechanism moves the holding member relative to the fixed inkjet head in the main scanning direction and the sub scanning direction for the printing.
In the above configuration, the miniaturization of the printer and the reduction of the maintenance time necessary for the flushing can be achieved remarkably.
In accordance with another aspect of the present disclosure, there is provided a printer comprising: an inkjet head including a plurality of nozzles for discharging ink; a holding member which holds a print medium to be printed on; a moving mechanism which moves at least one of the holding member and the inkjet head so as to move the inkjet head relative to the holding member in a main scanning direction and a sub scanning direction for printing by the inkjet head on the print medium; a flushing area setting unit which sets a flushing printing area in a frame shape or ring shape, for flushing printing executed for preventing clogging of the nozzles, inside or outside a pattern printing area of the print medium for pattern printing; and a print control unit which controls the inkjet head and the moving mechanism so as to execute the pattern printing in the pattern printing area and the flushing printing in the flushing printing area while moving the inkjet head relative to the holding member to and fro in the main scanning direction.
In a stage before the printing process, the flushing printing area in a frame shape or ring shape (for the flushing printing) is set inside or outside the pattern printing area by the flushing area setting unit. In the printing process, the pattern printing is executed in the pattern printing area and the flushing printing is executed in the flushing printing area while the inkjet head is moved relative to the holding member to and fro in the main scanning direction. Since the flushing printing is executed in the flushing printing area (in a frame shape or ring shape) which is separate from the pattern printed by the pattern printing, the flushing of the inkjet head can be carried out without fail while preventing ill effect of the flushing printing on the pattern printed by the pattern printing.
In the above configuration, the flushing of the inkjet head (which is generally executed separately from the printing process) is incorporated in the pattern printing, by which the maintenance time necessary for the flushing can be reduced and the printing process can be speeded up while executing the flushing process without fail.
Further, the ink receiving member (which is generally necessary for the flushing) is left out in the above configuration, by which cost reduction and miniaturization of the printer become possible. Since the flushing printing is executed in the flushing printing area (in a frame shape or ring shape) which is separate from the pattern printed by the pattern printing, ill effect of the flushing printing on the pattern printed by the pattern printing can be prevented. Furthermore, the result of the pattern printing can be used as an ornamental frame since the result of the pattern printing is visible inside or outside the pattern printing area, by which decorative effect of the whole pattern can be enhanced.
In at least one aspect, the printer further comprises a flushing printing data storage unit which stores multiple types of flushing printing data for the flushing printing. The print control unit includes a selection unit which lets a user select a desired type of flushing printing data from the multiple types of flushing printing data stored in the flushing printing data storage unit.
In the above configuration, the user is allowed to select desired flushing printing data from the multiple types of flushing printing data stored in the flushing printing data storage unit and the flushing printing is executed according to the selected flushing printing data, by which decorative effect of the flushing printing (flushing printing pattern) can be enhanced.
In at least one aspect, the print medium is fabric and the holding member is a fabric holding frame which holds the fabric.
In the above configuration, the pattern printing can be executed also to fabric held by the fabric holding frame while carrying out the flushing of the inkjet head without fail.
In at least one aspect, the inkjet head is placed at a fixed position for the printing, and the moving mechanism moves the holding member relative to the fixed inkjet head in the main scanning direction and the sub scanning direction for the printing.
In the above configuration, the miniaturization of the printer and the reduction of the maintenance time necessary for the flushing can be achieved remarkably.
In accordance with another aspect of the present disclosure, there is provided a printer comprising: an inkjet head including a plurality of nozzles for discharging ink; a holding member which holds a print medium to be printed on; a moving mechanism which moves at least one of the holding member and the inkjet head so as to move the inkjet head relative to the holding member in a main scanning direction and a sub scanning direction for printing by the inkjet head on the print medium; and a print control unit which controls the inkjet head and the moving mechanism so as to execute flushing printing for preventing clogging of the nozzles in an acceleration section and a deceleration section regarding the movement of the inkjet head relative to the holding member in the main scanning direction by the moving mechanism.
Under the control of the print control unit, the flushing printing on the print medium is executed in the acceleration section and the deceleration section (regarding the movement of the inkjet head relative to the holding member in the main scanning direction). Since the flushing printing is executed in the acceleration and deceleration sections which are separate from a pattern printing area (area for pattern printing), the flushing of the inkjet head can be carried out without fail before and after the pattern printing while preventing ill effect of the flushing printing on the pattern printed by the pattern printing.
In the above configuration, the flushing of the inkjet head (which is generally executed separately from the printing process) is incorporated in the pattern printing, by which the maintenance time necessary for the flushing can be reduced and the printing process can be speeded up while executing the flushing process without fail.
Further, the ink receiving member (which is generally necessary for the flushing) is left out in the above configuration, by which cost reduction and miniaturization of the printer become possible. Since the flushing printing is executed in the acceleration and deceleration sections which are separate from the pattern printing area, ill effect of the flushing printing on the pattern printed by the pattern printing can be prevented. Furthermore, the result of the pattern printing can be used as an ornamental frame since the result of the pattern printing is visible in the acceleration and deceleration sections separate from the pattern printing area, by which decorative effect of the whole pattern can be enhanced.
In at least one aspect, the printer further comprises a flushing printing data storage unit which stores multiple types of flushing printing data, in which ink discharging timing is set so as to avoid ill effect of the acceleration and deceleration of the inkjet head relative to the holding member, for the flushing printing. The print control unit includes a selection unit which lets a user select a desired type of flushing printing data from the multiple types of flushing printing data stored in the flushing printing data storage unit.
In the above configuration, the user is allowed to select desired flushing printing data from the multiple types of flushing printing data stored in the flushing printing data storage unit and the flushing printing is executed according to the selected flushing printing data, by which decorative effect of the flushing printing (flushing printing pattern) can be enhanced. Further, the flushing printing pattern can be printed on the print medium evenly as a natural pattern without distortion since the ink discharging timing is set in the flushing printing data so as to avoid ill effect of the acceleration and deceleration of the inkjet head relative to the holding member.
In at least one aspect, the print medium is fabric and the holding member is a fabric holding frame which holds the fabric.
In the above configuration, the pattern printing can be executed also to fabric held by the fabric holding frame while carrying out the flushing of the inkjet head without fail.
In at least one aspect, the inkjet head is placed at a fixed position for the printing, and the moving mechanism moves the holding member relative to the fixed inkjet head in the main scanning direction and the sub scanning direction for the printing.
In the above configuration, the miniaturization of the printer and the reduction of the maintenance time necessary for the flushing can be achieved remarkably.
Referring now to the drawings, a description will be given in detail of a preferred embodiment in accordance with the present disclosure.
In a printer described in the following embodiment, “flushing printing” for the flushing of the inkjet head is executed in parallel with “pattern printing” (printing of a pattern, design, etc. on fabric attached to a fabric holding frame), without providing the printer with the ink receiving member (for receiving ink discharged from the inkjet head for the flushing).
As shown in
As shown in
As shown in
The printing mechanism 20 is installed in a rear part of the mechanism installation part 5 to be movable upward and downward. Meanwhile, the maintenance mechanism 21 is installed to be movable forward and backward between a standby position (at the front end of the mechanism installation part 5) and a maintenance position (at the rear end of the mechanism installation part 5 and under the printing mechanism 20). In
While the fabric holding frame 10 is movable both in the Y direction (forward/backward) and in the X direction (rightward/leftward) as shown in
After the printing of a line (a print cycle) is finished, the fabric holding frame 10 is shifted rightward or leftward (in the X direction (i.e. sub scanning direction)) and thereafter the printing of the next line is executed. As above, the printing on the fabric W is carried out throughout the whole printable range (printable area) of the fabric holding frame 10 by repeating the movement of the fabric holding frame 10 in the moving directions mv and rmv (i.e. the movement of the print head 36 relative to the fabric holding frame 10 in the printing directions PD and RPD (main scanning direction)) and the shifting of the fabric holding frame 10 in the X direction (sub scanning direction).
In the printing process, when the print head 36 is moved (relative to the fabric W) in the printing direction PD as shown in
Although not shown in the figures, the front face of the post part 3 is provided with a display (for displaying a pattern, design, etc. to be printed on the fabric W and various setting screens), a touch panel (for letting the user make selections), various switches, various indicator lamps (for indicating setting statuses), etc. The front face of the post part 3 is further provided with jacks for connection of the printer 1 with electronic devices (e.g. personal computer) via USB cables, etc. and connectors to which memory cards (ROM card, RAM card, etc.) can be attached.
The frame driving mechanism 12 includes a Y direction driving unit (unshown) for driving the fabric holding frame 10 (attached to the Y carriage 13 provided on the bed part 2) in the Y direction (forward/backward) with its Y direction driving motor 87 (see
Next, the printing mechanism 20 installed in the mechanism installation part 5 will be explained in detail referring to
First, the printing unit 30 formed in a box shape will be explained. As shown in
Thus, in the printing unit 30, the print head 36 (inkjet head) is placed at the bottom to face downward, and although not shown in the figures, four ink cartridges for storing inks of four colors (cyan, magenta, yellow and black) and ink supply tubes for connecting the ink cartridges with the print head 36 are accommodated above the print head 36.
As shown in
Here, the “one dot-line printing” will be explained briefly. In the case where the printing is executed using each nozzle array 36a-36d for each color, at each discharging timing (discharging time: row 1, row 2, row 3, . . . arranged in a row direction (Y direction) in
In this case, on each completion of a one dot-line printing by the print head 36 progressing in the printing direction PD, the fabric holding frame 10 is moved in the moving direction mv by a short distance corresponding to one dot. On the other hand, on each completion of a one dot-line printing by the print head 36 progressing in the printing direction RPD, the fabric holding frame 10 is moved in the moving direction rmv by a short distance corresponding to one dot.
Next, the vertical driving unit 31 for driving the printing unit 30 vertically will be explained. As shown in
Thus, when the head vertical driving motor 41 rotates clockwise/counterclockwise, the printing unit 30 (being guided by the pair of head guide shafts 35 and receiving the driving force of the head vertical driving motor 41 via the drive gear 42, the composite gear 43 and the rack member 40) is moved upward/downward between a printing position (at the lower end) shown in
Next, the maintenance mechanism 21 for executing a purge process (not during printing), etc. will be explained in detail. As shown in
First, the maintenance unit 50 in a box shape will be explained. As shown in
The maintenance unit 50 includes the capping mechanism 55, the purge mechanism 56, etc., by which a cap process and the purge process are made possible.
The capping mechanism 55 will be explained briefly. The capping mechanism 55 has a pair of head caps 57 made of rubber, designed to be able to closely contact (cap) the head surface of the print head 36 (which has been moved upward to the upper position when no printing is executed) from below in the vicinity of the top of the unit frame 50F of the maintenance unit 50. When no printing is executed by the printer 1, a purge motor 80 (see
The purge mechanism 56 will be explained briefly. The purge mechanism 56 includes the pair of head caps 57, a suction pump 82 (see
Next, the forward/backward driving mechanism 51 for driving the maintenance unit 50 forward and backward will be explained. As shown in
An upper part of the unit frame 50F of the maintenance unit 50 is fixed to a part of the drive belt 65 by use of fixing hardware 66. Therefore, by activating the forward/backward driving motor 60, the maintenance unit 50 (driven by the forward/backward driving motor 60 via the drive gear 61, the driven gear 62, the drive pulley 63 and the drive belt 65) can be moved forward and backward between the standby position (front position shown in
Next, a control system of the printer 1 will be explained referring to a block diagram of
The main unit 11 of the printer 1 includes the control unit 70 (having a CPU 71, a ROM 72, a RAM 73 and an input-output interface (I/O) 74), various operation switches 75 (such as a print start switch and a frame movement switch connected to the control unit 70), a drive circuit 76 for driving the print head 36, a drive circuit 77 for driving the head vertical driving motor 41, a drive circuit 78 for driving the forward/backward driving motor 60, a drive circuit 81 for driving the purge motor 80, a drive circuit 83 for driving the suction pump 82, etc.
Drive control programs for controlling the driving of the frame driving mechanism 12, the printing mechanism 20, the maintenance unit 50, the forward/backward driving mechanism 51, the capping mechanism 55 and the purge mechanism 56 are prestored in the ROM 72 of the control unit 70. Various types (e.g. 15 types) of flushing printing pattern data (see
The various types of flushing printing pattern data are usable in common for the four nozzle arrays 36a-36d for the four colors. Incidentally, each piece of flushing printing pattern data (each flushing printing pattern) has been designed so that flushing printing of low dot density can be executed, that is, so that the result of the flushing printing will not stand out from that of the pattern printing.
For example, for a “flushing printing pattern #1” shown in
For a “flushing printing pattern #2” shown in
For a “flushing printing pattern #3” shown in
For a “flushing printing pattern #6” shown in
For a “flushing printing pattern #7” shown in
For a “flushing printing pattern #8” shown in
A “flushing printing pattern #3A” shown in
A “flushing printing pattern #3B” shown in
In the following, a print control process executed by the control unit 70 of the main unit 11 of the printer 1 will be described in detail referring to flow charts of
Subsequently, a flushing information setting process is executed for setting various pieces of flushing information necessary for the flushing printing (S2). In the flushing information setting process, a flushing information setting screen (unshown) is displayed on the display on the front face of the post part 3 and the user of the printer 1 makes selection of a flushing printing pattern (pattern to be printed by the flushing printing) and a flushing mode FM on the flushing information setting screen. The flushing mode FM can be selected from three modes (FM1-FM3). When a flushing mode FM3 (for executing the flushing printing in a frame-shaped area) is selected, the user further sets the width (thickness) “w” of the frame (see
After the fabric W to be printed on is attached to the fabric holding frame 10 and the fabric holding frame 10 is attached to the Y carriage 13, a print-related instruction is loaded (S3). If the loaded print-related instruction is not a print instruction (S4: NO), a process corresponding to the print-related instruction is executed (S5). If the loaded print-related instruction is a print instruction (S4: YES), the control unit 70 checks whether or not pattern printing data for the pattern printing exists in the RAM 73 or the pattern data memory 72a of the ROM 72 (S6). If no pattern printing data exists in the RAM 73 nor the pattern data memory 72a (S6: NO), an error process (e.g. displaying an error message on the display) is executed (S7) and the print control process of
On the other hand, if the pattern printing data exists in the RAM 73 or the pattern data memory 72a (S6: YES), the control unit 70 checks the flushing mode FM that has currently been set (S8). If the currently set flushing mode is the flushing mode FM1, a flushing/pattern printing process according to the flushing mode FM1 (see
At the start of the flushing/pattern printing process according to the flushing mode FM1 (
Subsequently, a rectangular printing area (pattern printing area) is calculated based on printing data (pattern printing data) of a pattern which has been selected or predetermined for the pattern printing, a printing area identical with the calculated pattern printing area is specified as a flushing printing area, and flushing printing data is generated for the flushing printing area according to the selected flushing printing pattern (S22).
In the flushing/pattern printing process according to the flushing mode FM1, the flushing printing is executed first by moving the print head 36 relative to the fabric W in the reverse printing direction RPD (i.e. by actually moving the fabric holding frame 10 in the reverse moving direction rmv) and thereafter the pattern printing is executed by moving the print head 36 relative to the fabric W in the printing direction PD (i.e. by actually moving the fabric holding frame 10 in the moving direction mv).
First, the fabric holding frame 10 is driven so as to move the print head 36 from the central position (corresponding to the origin O shown in
When the print head 36 has reached the print end position shown in
When the print head 36 has reached the print start position shown in
Subsequently, the print head 36 is accelerated (relative to the fabric W) in the printing direction PD (by actually accelerating the fabric holding frame 10 in the moving direction mv) in the acceleration section shown in
When the print head 36 has reached the print end position shown in
In the step S25 of the flushing/pattern printing process according to the flushing mode FM1 (
In the step S8 of the print control process (
At the start of the flushing/pattern printing process according to the flushing mode FM2 (
Subsequently, the fabric holding frame 10 is driven so as to move the print head 36 from the central position (corresponding to the origin O shown in
In the deceleration section shown in
Subsequently, in the constant-speed section, the control unit 70 executes the printing of the pattern printing data for one dot line (S64) and checks whether or not the print head 36 has reached the print start position shown in
In the acceleration section shown in
Subsequently, the print head 36 is accelerated (relative to the fabric W) in the printing direction PD (by actually accelerating the fabric holding frame 10 in the moving direction mv) in the acceleration section shown in
Subsequently, in the constant-speed section, the control unit 70 executes the printing of the pattern printing data for one dot line (S73) and checks whether or not the print head 36 has reached the print end position shown in
In the deceleration section shown in
In the step S55 of the flushing/pattern printing process according to the flushing mode FM2 (
In the step S8 of the print control process (
At the start of the flushing/pattern printing process according to the flushing mode FM3 (
When the exterior size of the pattern to be printed is substantially equal to the printable area (S82: NO, S91: YES), the pattern printing data is reduced to a size approximately 80% of the printable area, for example (S92) and thereafter the flushing printing area is calculated as explained above (S83). When the exterior size of the pattern to be printed is larger than the printable area (S91: NO), the control unit 70 judges that the printing process (pattern printing) is impossible, executes an error process (e.g. displaying a warning message on the display) (S93), and ends the flushing/pattern printing process according to the flushing mode FM3 (
When the pattern printing is possible, the flushing printing pattern selection process for selecting a flushing printing pattern is executed similarly to the aforementioned step S21 of
At the start of the one-line printing process (
In the constant-speed section, the control unit 70 executes the printing of the synthesized printing data (generated by the image synthesis process of S86) for one dot line (S103) and checks whether or not the print head 36 has reached the print start position shown in
When the print head 36 has reached the print start position shown in
Subsequently, the print head 36 is accelerated (relative to the fabric W) in the printing direction PD (by actually accelerating the fabric holding frame 10 in the moving direction mv) in the acceleration section shown in
In the constant-speed section, the control unit 70 executes the printing of the synthesized printing data for one dot line (S110) and checks whether or not the print head 36 has reached the print end position shown in
When the print head 36 has reached the print end position shown in
In the step S89 of the flushing/pattern printing process according to the flushing mode FM3 (
In the following, the operation and effects of the flushing printing and pattern printing explained above (flushing/pattern printing processes according to the flushing modes FM1-FM3) will be described in detail.
When the flushing mode FM1 is selected by the user, the pattern printing area (P1-P4) in a rectangular shape is calculated based on the external form of a pattern “a ship and the sun” as shown in
In the pattern “a ship and the sun”, the sun is “yellow”, the ship's hull is “black”, the cabin is “blue”, the smokestack is “red”, the smoke billowing from the smokestack is “gray”, and the sea is “pale blue”. In the to-and-fro movement of the print head 36 relative to the fabric W (caused by the actual to-and-fro movement of fabric holding frame 10 in the main scanning direction), the flushing printing is first executed in a dot density lower than that of the pattern printing when the print head 36 first moves (relative to the fabric W) in a first printing direction (reverse printing direction RPD) in the main scanning direction, and thereafter the pattern printing is executed when the print head 36 moves (relative to the fabric W) in a second printing direction (printing direction PD) along the same printing line in the main scanning direction.
As above, in the flushing/pattern printing process according to the flushing mode FM1, the flushing of the print head 36 (which is generally executed separately from the printing process) is incorporated in the pattern printing, by which the maintenance time necessary for the flushing can be reduced and the printing process can be speeded up while executing the flushing process without fail.
The ink receiving member (which is generally necessary for the flushing) is left out, by which cost reduction and miniaturization of the printer become possible. Since the result of the flushing printing can be concealed later by the pattern printing, the pattern “a ship and the sun” can be printed finely without being affected by the flushing printing. It is also possible to use the result of the flushing printing as a background pattern since part of the result of the flushing printing that is not covered by the pattern printing remains visible, by which decorative effect of the pattern “a ship and the sun” can be enhanced.
When the flushing mode FM2 is selected by the user, an acceleration-side flushing printing area FE1 and a deceleration-side flushing printing area FE2 are calculated based on the X direction size of the pattern “a ship and the sun”, the width of the acceleration section and the width of the deceleration section as shown in
When the print head 36 first moves (relative to the fabric W) in the first printing direction (reverse printing direction RPD) in the main scanning direction (due to the actual movement of the fabric holding frame 10 in the reverse moving direction rmv), the flushing printing is executed in the deceleration-side flushing printing area FE2, the pattern printing is executed in the printable area (constant-speed section) between the print end position and the print start position shown in
As above, in the flushing/pattern printing process according to the flushing mode FM2, the flushing of the print head 36 (which is generally executed separately from the printing process) is incorporated in the pattern printing, by which the maintenance time necessary for the flushing can be reduced and the printing process can be speeded up while executing the flushing process without fail.
The ink receiving member (which is generally necessary for the flushing) is left out, by which cost reduction and miniaturization of the printer become possible. Since the flushing printing is executed to parts of the fabric W (corresponding to the acceleration section and the deceleration section) separate from the part for the pattern printing, the pattern “a ship and the sun” printed on the fabric W is not affected by the flushing printing. Since the result of the flushing printing is visible in the acceleration-side flushing printing area FE1 and the deceleration-side flushing printing area FE2 which are separate from the printed pattern, the result of the flushing printing can be used as an ornamental frame, by which decorative effect of the pattern “a ship and the sun” can be enhanced.
When the flushing mode FM3 is selected by the user, the pattern printing area (P1-P4) in a rectangular shape is calculated within the printable area based on the external form of the pattern “a ship and the sun” as shown in
In the to-and-fro movement of the print head 36 relative to the fabric W (caused by the actual to-and-fro movement of fabric holding frame 10 in the main scanning direction), the synthesized printing (printing of the synthesized printing data) is executed in the printable area.
As above, in the flushing/pattern printing process according to the flushing mode FM3, an ornamental frame in a rectangular frame shape (like a “picture frame”) is printed in the printing process, by which the maintenance time necessary for the flushing can be reduced and the printing process can be speeded up while executing the flushing process without fail.
The ink receiving member (which is generally necessary for the flushing) is left out, by which cost reduction and miniaturization of the printer become possible. Since the flushing printing is executed to a frame-shaped part of the fabric W outside (separate from) the part for the pattern printing so as to form an ornamental frame in a rectangular frame shape (like a “picture frame”), the pattern “a ship and the sun” printed on the fabric W is not affected by the flushing printing. The result of the flushing printing is visible as an ornamental frame outside the pattern printing area, by which decorative effect of the pattern “a ship and the sun” can be enhanced.
The following modifications can be made to the above embodiment, for example. When the flushing printing is executed according to the flushing mode FM1, various gradation techniques can be employed for the flushing printing. When the flushing printing is executed according to the flushing mode FM2, the flushing printing areas FE1 and FE2 may also be formed in wavy or zigzag shapes. When the flushing printing is executed according to the flushing mode FM3, the flushing printing area FE3 may also be formed inside the pattern printing area.
When the flushing printing is executed according to the flushing mode FM3, the shape of the flushing printing area FE3 is not restricted to a rectangular frame shape; other frame shapes (circular frame shape, polygonal frame shape, etc.) may also be employed. Further, the shape of the flushing printing area FE3 is not restricted to frame shapes; other shapes (rectangular area, circular area, polygonal area, etc.) may also be employed.
The print medium to be printed on is not restricted to fabric W; the flushing/pattern printing processes according to the above embodiment are also applicable to various print media such as paper, OHP sheets and labels.
While the print head 36 is fixed and the holding member (fabric holding frame 10) is moved during printing in the above embodiment, the printer may also configured to move the print head 36 relative to a fixed holding member during printing.
The printer in accordance with the present disclosure may be configured integrally with an embroidering machine so that printing and embroidering can be executed on fabric W held by a fabric holding frame.
While the printer 1 of the above embodiment employs bidirectional printing, the printer in accordance with the present disclosure may also be configured to execute unidirectional printing.
While a description has been given above of a preferred embodiment in accordance with the present disclosure, the present disclosure is not to be restricted by the particular illustrative embodiment and a variety of modifications, design changes, etc. are possible without departing from the scope and spirit of the present disclosure described in the appended claims.
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2005-266771 | Sep 2005 | JP | national |
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