This patent application is based on and claims priority pursuant to 35 U.S.C. § 119(a) to Japanese Patent Application No. 2018-248132, filed on Dec. 28, 2018, and Japanese Patent Application No. 2019-090538, filed on May 13, 2019, in the Japan Patent Office, the entire disclosure of each of which is hereby incorporated by reference herein.
The present invention relates to a guide device and a printer.
As a device that reciprocally movably guides a moving-object such as a carriage on which a liquid discharge head is mounted, there is a guide attached to a stay, for example. The guide movably holds the carriage. The stay is arranged along a moving direction of the carriage.
In an aspect of this disclosure, a guide device is provided that includes a guide configured to movably hold and guide a moving-object, and a stay to which the guide is attached. The stay includes an attachment portion including an attachment surface to which the guide is attached, a facing portion facing the attachment portion, and an adjuster configured to change a distance between the attachment portion and the facing portion to partially displace the attachment surface. The adjuster includes an adjustment plate arranged between the attachment portion and the facing portion, and a push member configured to push the adjustment plate to move the attachment portion of the stay.
The aforementioned and other aspects, features, and advantages of the present disclosure will be better understood by reference to the following detailed description when considered in connection with the accompanying drawings, wherein:
The accompanying drawings are intended to depict embodiments of the present disclosure and should not be interpreted to limit the scope thereof. The accompanying drawings are not to be considered as drawn to scale unless explicitly noted.
In describing embodiments illustrated in the drawings, specific terminology is employed for the sake of clarity. However, the disclosure of this patent specification is not intended to be limited to the specific terminology so selected and it is to be understood that each specific element includes all technical equivalents that have the same function, operate in an analogous manner, and achieve similar results.
Although the embodiments are described with technical limitations with reference to the attached drawings, such description is not intended to limit the scope of the disclosure and all the components or elements described in the embodiments of this disclosure are not necessarily indispensable. As used herein, the singular forms “a”, “an”, and “the” are intended to include the plural forms as well, unless the context clearly indicates otherwise.
Referring now to the drawings, wherein like reference numerals designate identical or corresponding parts throughout the several views, embodiments of the present disclosure are described below. First, a printer 1 according to an embodiment of the present disclosure is described with reference to
The printer 1 is a serial-type inkjet recording apparatus as a liquid discharge apparatus. The printer 1 includes a printing unit 10 and a conveyor 20 in an apparatus body 100. The printing unit prints on a sheet 2 such as a roll paper (rolled sheet). The conveyor 20 conveys the sheet 2. Further, the printer 1 includes a roll feeder 30 and a roll winder 40 outside the apparatus body 100. The roll feeder 30 accommodates a feeding roll 3 in which the sheet 2 is wound in a roll shape and feeds the sheet 2 to the printing unit 10. The roll winder 40 accommodates a winding roll 4 onto which an image is printed by the printing unit 10. The sheet 2 is wound in a roll shape in the winding roll 4.
The printing unit 10 includes a guide 102 that holds and guides the carriage 105 so that the carriage 105 is reciprocally movable in a main scanning direction indicated by arrow “MSD” in
Three liquid discharge devices 110 (110A to 110C) are mounted on the carriage 105. The liquid discharge device 110 includes a liquid discharge head 111 as a liquid discharge device and a sub tank 112 that supplies liquid to the liquid discharge head 111. Hereinafter, the “liquid discharge head” is simply referred to as the “head”. The liquid discharge device 110 includes the head 111 and the sub tank 112 formed as a single body.
The printer 1 includes a cartridge holder 121 to which a plurality of main tanks 120 (liquid cartridges) containing liquids of respective colors are replaceably mounted on one end of the apparatus body 100. The cartridge holder 121 includes a liquid feed pump, etc., to supply liquid of the respective colors from the main tanks 120, mounted on the cartridge holder 121 to the heads 111 of the liquid discharge devices 110 via supply channels 123. The supply channels 123 is configured by supply tubes of respective colors.
The conveyor 20 includes a conveyance roller 201 and a counter roller 202 as a conveyor on an upstream side of the printing unit 10 in a conveyance direction of the sheet 2. The conveyance direction of the sheet 2 is indicated by arrow “CD” in
The conveyor 20 includes a platen 203 and a suction mechanism 204 (see
The conveyor 20 includes a conveyance guide 205 on an entrance side (right-side in
The printer 1 includes a maintenance mechanism 150 to maintain and recover a discharge function the head 111. The maintenance mechanism 150 is disposed on one side (right-side in
The maintenance mechanism 150 includes, for example, a wiping unit 152 including a cap 151 to cap a nozzle surface of the head 111 and a web 153 to wipe the nozzle surface of the head 111.
The printer 1 conveys the sheet 2 along the platen 203 in a conveyance direction CD (sub-scanning direction) by the conveyance roller 201 and the counter roller 202 while attracting the sheet 2 onto the platen 203.
The head 111 is driven in response to print signals while the carriage 105 moves in the main scanning direction MSD, to discharge the liquid of a desired color to the sheet 2 stopped, thus printing one line of an image on the sheet 2. Then, the sheet 2 is fed by a predetermined distance to print next line of the image. The above-described operations of feeding and printing are repeated to form a desired image on the sheet 2, and then the sheet 2 is ejected to the winding roll 4.
Next, a first embodiment of the present disclosure is described with reference to
A guide device 301 includes the guide 102 and the stay 103 (see
As illustrated in
The guide device 301 includes an adjuster 310 that changes a distance between the attachment portion 103a and the facing portion 103b to partially displace the attachment surface 104. The attachment portion 103a includes the attachment surface 104 of the stay 103.
The adjuster 310 includes adjustment plates 311A and 311B between the attachment portion 103a and the facing portion 103b. The adjuster 310 further includes adjustment screws 312A and 312B on the facing portion 103b side. The adjustment screws 312A and 312B are advance and retract members to move the adjustment plate 311 toward and away from the attachment portion 103a.
The adjustment screws 312A and 312B may be push members contacting the adjustment plate 311 to push the adjustment plate 311 to move the adjustment plate 311 toward the attachment portion 103a. The adjustment screws 312A and 312B may also be pull members engaging the adjustment plate 311 and pull the adjustment plate 311 to move the adjustment plate 311 toward the facing portion 103b.
The adjustment plate 311A is disposed above the guide 102 in a height direction, and the adjustment plate 311B is disposed below the guide 102 in the height direction. The height direction is indicated by arrow “HD” in
Next, an effect of the present embodiment is illustrated with reference to
For example, as illustrated in
When the guide 102 is tilted, the carriage 105 is rotated and inclined in a plane orthogonal to the main scanning direction MSD in a configuration in which the carriage 105 is held only by one guide 102. When the carriage 105 is tilted, a gap between a nozzle surface 111a (see
Thus, as illustrated in
The posture of the lower part of the attachment surface 104 to which the guide 102 is attached is corrected vertically so that a tilt of the guide 102 is also corrected to vertical. Thus, the carriage 105 is rotated in a direction indicated by arrow “B” as illustrated in
Since the adjustment plate 311A pushes the attachment portion 103a toward the carriage 105 to deform the attachment portion 103a toward the carriage 105, the adjustment plate 311A can linearly and stably push the attachment portion 103a of the stay 103. Thus, the guide device 301 can stably and accurately correct the inclination (tilt) of the carriage.
As a result, the nozzle surface 111a of the head 111 becomes substantially parallel to the platen 203 of the conveyor 20. Further, a gap between the nozzle surface 111a and the sheet 2 conveyed by the conveyor 20 is kept substantially constant in the conveyance direction CD (sub-scanning direction). Thus, the guide device 301 can prevent reduction in image quality due to nonuniformity of the gap.
A second embodiment of the present disclosure is described with reference to
In the present embodiment, the adjuster 310 includes a plurality of adjustment plates 311 between the attachment portion 103a and the facing portion 103b of the stay 103. The plurality of adjustment plates 311 are separately arranged in the main scanning direction MSD, that is a longitudinal direction of the guide 102 and a moving direction of the moving-object (carriage 105).
Specifically, the plurality of adjustment plates 311 are arranged in series along the main scanning direction MSD, that is the moving direction of the moving-object (carriage 105).
A plurality (four in
In an example as illustrated in
As a result, as illustrated in
In the above-described case, the straightness of the guide 102 can be adjusted to be smaller as a width of the adjustment plate 311 in the main scanning direction MSD becomes smaller, or as a number of the adjustment screws 312 of the adjustment plate 311 is larger.
Further, the straightness of the guide 102 affects the durability of the guide 102, and the straightness of the guide 102 thus has to be adjusted with high accuracy. However, the tilt of the carriage 105 do not have to be adjusted with high accuracy outside a print area. Therefore, as in the present embodiment, the adjustment plate 311 is divided into a plurality of parts. Thus, the guide device 301 do not have to adjust a tilt (inclination) of the carriage 105 outside the print area, and thus can reduce a number of adjustment steps.
A third embodiment of the present disclosure is described with reference to
Also in the present embodiment, the adjuster 310 includes a plurality of adjustment plates 311 divided into a plurality of parts and arranged along the main scanning direction MSD (a longitudinal direction of the guide 102 or a moving direction of the moving-object) as similarly with the second embodiment. The plurality of adjustment plates 311 is arranged between the attachment portion 103a and the facing portion 103b of the stay 103.
A plurality (four in
Therefore, the adjustment screw 312 is arranged in the same position as a position of the screw 115 in the main scanning direction MSD as indicated by a line “a” in
Since the guide 102 is connected (fixed) to the stay 103 with screws 115, the guide device 301 can push a portion of the guide 102 that is likely to be deformed by a deformation of the stay 103 with the adjustment plate 311 and thus can effectively adjust the straightness of the guide 102.
A fourth embodiment of the present disclosure is described with reference to
In the present embodiment, an adjustment plate 311A disposed above the guide 102 is used a device to adjust the tilt (inclination) of the guide 102. Further, an adjustment plate 311B disposed on a back surface of the guide 102 (a surface opposite to the guide 102 via the attachment portion 103a) is used as a device to adjust the straightness of the guide 102.
Thus, a plurality of adjustment plates 311A and 311B are divided into an inclination-adjustment part (adjustment plate 311A) and a straightness-adjustment part (adjustment plate 311B). Thus, the guide device 301 can adjust the guide 102 in a shorter time.
A fifth embodiment of the present disclosure is described with reference to
In addition to the configuration of the first embodiment, the guide device 301 according to the present embodiment includes pull-adjustment screws 313 (313A and 313B) that are pull members to pull the attachment portion 103a of the stay 103 toward the facing portion 103b.
Thus, the guide device 301 can not only push the attachment portion 103a of the stay 103 against the facing portion 103b, but can also pull the attachment portion 103a of the stay 103. Thus, the guide device 301 can increase an adjustment range of the attachment surface 104, and can easily adjust the inclination and straightness of the guide 102.
Further, the guide device 301 including a push member (adjustment screws 312) separated from a pull member (pull-adjustment screws 313) can precisely adjust the guide 102 compared to the guide device 301 that use only one member to push and pull the attachment portion 103a. For example, if one member is used to push and pull the adjustment plate 311, the adjustment plate 311 has to be connected to the adjustment screws 312 (push member) and the pull-adjustment screws 313 (pull member).
Thus, it becomes difficult to set different moving amounts for each ends of the adjustment plate 311 (for each ends of the adjustment plate 311 in the longitudinal direction of the guide 102). In the above-described case, the adjustment plate 311 and the adjustment screws 312 may be connected with a flexible joint to solve the above-described problem. However, the configuration of the guide device 301 becomes complicated.
A sixth embodiment of the present disclosure is described with reference to
In the present embodiment, a leading end (one end) of the adjustment plate 311 is fixed to the attachment portion 103a of the stay 103.
Similarly to the first embodiment, the guide device 301 includes adjustment screws 312 (312A and 312B) on the facing portion 103b. The adjustment screws 312 move the adjustment plate 311 toward the attachment portion 103a.
In the present embodiment, the guide device 301 includes connectors 314 (314A and 314B) connected to a surface of the adjustment plate 311 to form a single body with the adjustment plate 311. Further, the guide device 301 includes pull-adjustment screws 315 (315A and 315B) connected to the connectors 314. The pull-adjustment screws 315 configure a pull member together with the adjustment plate 311.
With the configuration including the connectors 314, an operation of the pull-adjustment screw 315 can pull the adjustment plate 311 toward the facing portion 103b. Thus, the attachment portion 103a fixed to the adjustment plate 311 moves toward the facing portion 103b.
Thus, the connectors (314) connecting one end (facing portion 103b side) of the adjustment plate 311 and the pull member (pull-adjustment screw 315), and another end (attachment portion 103a side) of the adjustment plate 311 is fixed to the attachment portion 103a of the stay 103. The pull member (pull-adjustment screw 315) pulls the adjustment plate 311 toward the facing portion 103b.
Thus, the guide device 301 in the sixth embodiment can increase an adjustable range as in the fifth embodiment. Further, the guide device 301 in the sixth embodiment can shorten a length of the pull-adjustment screw 315 to be shorter than a length of the pull-adjustment screw 313 of the fifth embodiment (see
In each of the above embodiments, the adjustment plates 311 are provided for each of the upper side and the lower side of the guide 102 in the height direction HD. However, one adjustment plate 311 may also be provided at least in any one of the upper side and the lower side of a guide 102.
In each of the above-described embodiments, the carriage 105, on which the head 111 of the printer 1 is mounted, is described as a moving-object. However, the moving-object is not limited to the carriage. For example, the present embodiments can also be similarly applied to a guide device to guide a reading unit of the image reading apparatus as a moving-object, or a guide device to guide a cutter that cuts a roll paper as the moving-object, and the like.
Numerous additional modifications and variations are possible in light of the above teachings. Such modifications and variations are not to be regarded as a departure from the scope of the present disclosure and appended claims, and all such modifications are intended to be included within the scope of the present disclosure and appended claims.
Number | Date | Country | Kind |
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2018-248132 | Dec 2018 | JP | national |
2019-090538 | May 2019 | JP | national |