The present application claims priority from Japanese Patent Application No. 2010-243610, which was filed on Oct. 29, 2010, the disclosure of which is herein incorporated by reference in its entirety.
1. Field of the Invention
The present invention relates to a liquid ejection apparatus configured to eject liquid such as ink.
2. Description of the Related Art
In some cases, a user manually conducts a jamming resolving operation (e.g., an operation for clearing a jam of a recording medium in a conveyance path) in a liquid ejection apparatus. In order to define a work space for this, there is known a technique that a casing of a liquid ejection apparatus is constituted by a first casing accommodating a liquid ejection head and a second casing accommodating, e.g., a support portion for supporting a recording medium, and the first casing is movable with respect to the second casing. In this technique, when the first casing (an upper unit) is moved to a distant position distant from the second casing (a lower unit), a conveyance path defined by the first casing and the second casing is opened, making it possible to form a work space over the conveyance path.
However, in the above-described technique, when the first casing is located at the distant position, a support face of the support portion (a platen) is exposed to a space between the first and second casings, so that foreign matters may be landed on the support face. If the foreign matters are attached to the support face, the recording medium may be soiled, and a conveyance failure may occur by the foreign matters having entered into the apparatus.
This invention has been developed in view of the above-described situations, and it is an object of the present invention to provide a liquid ejection apparatus capable of preventing foreign matters from being attached to a support face when a first casing is located at a distant position.
The object indicated above may be achieved according to the present invention which provides a liquid ejection apparatus comprising: a first casing; a second casing; a restraining portion; and a controller, wherein the first casing is movable relative to the second casing between (i) a close position at which the first casing is close to the second casing and (ii) a distant position farther from the second casing than the close position, the first casing accommodating a liquid ejection head comprising an ejection face having a plurality of ejection openings through which liquid is ejected onto a recording medium, wherein the second casing accommodates: a support portion having a support face for supporting the recording medium while facing the ejection face; and a moving device configured to move the support portion such that the support face selectively takes (i) a first state in which the support face faces the ejection face and (ii) a second state in which the support face does not face the ejection face, wherein the restraining portion is configured to restrain the movement of the first casing located at the close position, and wherein the controller is configured to control the moving device such that the support face takes the second state when the controller has received a restraint releasing signal that indicates that the restraint of the restraining portion is released.
The object indicated above may be achieved according to the present invention which provides a liquid ejection apparatus comprising: a first casing; a second casing; and a controller, wherein the first casing is movable relative to the second casing between (i) a close position at which the first casing is close to the second casing and (ii) a distant position farther from the second casing than the close position, the first casing accommodating a liquid ejection head comprising an ejection face having a plurality of ejection openings through which liquid is ejected onto a recording medium, wherein the second casing accommodates: a support portion comprising a support face for supporting the recording medium while facing the ejection face; and a moving device configured to move the support portion such that the support face selectively takes (i) a first state in which the support face faces the ejection face and (ii) a second state in which the support face does not face the ejection face, wherein the liquid ejection apparatus further comprises a jamming detection section configured to detect an occurrence of a jamming of the recording medium, and wherein the controller is configured to control the moving device such that the support face takes the second state where the jamming detection section has detected the occurrence of the jamming.
The object indicated above may be achieved according to the present invention which provides a liquid ejection apparatus comprising: a first casing; a second casing; and a controller, wherein the first casing is movable relative to the second casing between (i) a close position at which the first casing is close to the second casing and (ii) a distant position farther from the second casing than the close position, the first casing accommodating a liquid ejection head comprising an ejection face having a plurality of ejection openings through which liquid is ejected onto a recording medium, wherein the second casing accommodates: a support portion comprising a support face for supporting the recording medium while facing the ejection face; and a moving device configured to move the support portion such that the support face selectively takes (i) a first state in which the support face faces the ejection face and (ii) a second state in which the support face does not face the ejection face, wherein the liquid ejection apparatus further comprises a first-casing-position detecting section configured to detect whether the first casing is located at the close position or the distant position, and wherein the controller is configured to control the moving device such that the support face takes the second state when the first-casing-position detecting section detects that the first casing is located at the distant position.
The objects, features, advantages, and technical and industrial significance of the present invention will be better understood by reading the following detailed description of embodiments of the invention, when considered in connection with the accompanying drawings, in which:
Hereinafter, there will be described embodiments of the present invention by reference to the drawings.
First, there will be explained an overall construction of an ink-jet printer 1 as a first embodiment of the present invention with reference to
The printer 1 includes a first casing 1a and a second casing 1b each having a rectangular parallelepiped shape and having generally the same size as each other. The first casing 1a opens in its lower face, and the second casing 1b opens in its upper face. As shown in
The first casing 1a is movable and pivotable relative to the second casing 1b about an edge of a lower end thereof as a hinge portion 1h. Thus, the first casing 1a can be positioned at (a) a close position at which the first casing 1a is close to the second casing 1b (a position shown in
A lock mechanism 70 as one example of a restraining or limiting portion is provided on a front face of the first casing 1a (a left front face thereof in
The first casing 1a accommodates: two heads 10 (namely, a precoat head 10 configured to eject pretreatment liquid and an ink-jet head 10 configured to eject black ink in order from an upstream side in a sheet conveyance direction indicated by bold arrows in
The second casing 1b accommodates: two support-maintenance units 60 respectively corresponding to the heads 10; the sheet-supply unit 1c; and so on.
Each of the cartridges stores a corresponding one of the pretreatment liquid and the black ink (hereinafter may be collectively referred to as “liquid”) to be supplied to the corresponding head 10. The pretreatment liquid is liquid having a property of preventing spreading and see-through of the ink and a property of improving color production and quick drying of the ink, for example. The liquids in the respective cartridges are respectively supplied to the heads 10 via the sub-tanks by driving of pumps.
Each head 10 is a line head elongated in a main scanning direction shown in
The controller 1p includes: a Central Processing Unit (CPU); a Read Only Memory (ROM), a Random Access Memory (RAM) including nonvolatile RAM; an Interface (I/F); and so on. The ROM stores therein programs to be executed by the CPU, various unchanged data; and so on. The RAM temporarily stores data (e.g., image data) required for the execution of the program. The controller 1p is configured to transmit and receive the data to and from an external device (e.g., a PC connected to the printer 1) via the I/F.
The sheet-supply unit 1c includes a sheet-supply tray 20 and a sheet-supply roller 21. The sheet-supply tray 20 can be mounted on and removed from the second casing 1b in the sub-scanning direction. The sheet-supply tray 20 has a box-like shape opening upward and can accommodate various sizes of the sheets P. The sheet-supply roller 21 is rotated by control of a conveyance controlling section 102 (see
Each of the support-maintenance units 60 is disposed so as to face a corresponding one of the ejection faces 10a of the heads 10 in the vertical direction. The support-maintenance unit 60 includes: a rotor 63 (as a part of a support portion) having a shaft extending in the main scanning direction and rotatable about the shaft by control of a maintenance performing section 104 of the controller 1p; a platen 61 (as one example of the support portion) and a facing member 62 (as one example of a maintenance portion) fixed to an outer circumferential face of the rotor 63; a waste-ink tray 65; and a wiper 67 as one example of a cleaning member (see
Bach of the platen 61 and the facing member 62 is one size larger than the ejection face 10a in the main scanning direction and the sub-scanning direction, and the platen 61 and the facing member 62 are disposed so as to be opposed to each other in the vertical direction.
A face of the platen 61 is the support face 61a for supporting the sheet P while facing the ejection face 10a. A material and a processing for the support face 61a are employed so as to reliably hold the sheet P. For example, a silicon layer having a low viscosity is formed on the support face 61a, and a multiplicity of ribs are formed on the support face 61a in the sub-scanning direction, preventing floating and the like of the sheet P placed on the support face 61a. The platen 61 is formed of a resin material.
The facing member 62 is formed of a material such as a glass or a metal (e.g., SUS) having a property of not or hardly sucking water. A face of the facing member 62 is a smooth facing face 62a that can face the ejection face 10a.
The rotation of the rotor 63 changes a state of the rotor 63 between (a) the first state (see
In the present embodiment, the printer 1 is in the maintenance mode until the controller 1p receives a first recording command from the external device after the printer 1 has been turned on. The printer 1 is in the recording mode until image recording based on the recording command is finished after the controller 1p has received the recording command from the external device. The printer 1 is in the recording waiting mode until a predetermined period passes (in a case where the controller 1p receives a new recording command in the predetermined period, until the controller 1p receives the new recording command) after the image recording based on the recording command is finished. It is noted that the predetermined period is a length of time in which, even where the ejection face 10a is exposed, there is no effect of drying on the ejection face 10a. Where the predetermined period has passed without receipt of a new recording command after the image recording based on the recording command is finished, the printer 1 is in the maintenance mode until the controller 1p receives a new recording command after the predetermined period.
In the maintenance mode, the maintenance performing section 104 of the controller 1p is configured to selectively perform maintenance operations such as a capping (an operation for covering the ejection face 10a with the facing face 62a and the annular member 13, see
In the maintenance mode, before the above-described maintenance operations, the maintenance performing section 104 (see
In the recording mode, before the control of the components of the printer 1 for the image recording the control for the liquid ejection and the sheet conveyance), the maintenance performing section 104 of the controller 1p initially judges whether the support face 1a is in the first state or not by referring to the output of the state detection sensor 63a. Where the support face 1a is not in the first state (that is, the support face 1a is in the second state), the rotor controlling section 106 of the controller 1p drives the rotor driving mechanism 110 to rotate the rotor 63 180 degrees, thereby changing the support face 1a from the second state to the first state, and then the control for the image recording is performed. Where the support face 1a is in the first state, the controller 1p does not rotate the rotor 63 (that is, the first state is maintained), and the control for the image recording is performed.
In the recording waiting mode, the controller 1p only checks a presence or absence of the receipt of the recording command and does not execute any other controls. In this mode, the first state set in the recording mode is maintained, and the components of the printer 1 are stopped.
The waste-ink tray 65 is disposed on a lower side of the rotor 63 and so on and communicates with a waste-liquid tank, not shown. The liquid dropped down in the forcefully ejecting operation and cleaning which will be described below is received by the waste-ink tray 65 and discharged to the waste-liquid tank.
The wiper 67 is movable in the main scanning direction by the control of the maintenance performing section 104 from a waiting position (see
In the recording mode, the head 10 is supported by the frame 3 such that the ejection face 10a faces the support face 61a so as to form a clearance suitable for the recording between the ejection face 10a and the support face 61a. The sheet P conveyed from the sheet-supply unit 1c to the support-maintenance units 60 as described above is conveyed by the roller pair 23 and roller pairs 24, 25 while being supported by the support faces 61a. When the sheet P passes through positions just under the respective two heads 10 in order, a head controlling section 107 (see
There will be next explained the construction of the lock mechanism 70 with reference to
The lock mechanism 70 includes: a rotational member 71a; two interlocked members 73; 73b; pivot members 74; 74b; fixed members 75; 75b; and springs 76; 76b. The rotational member 71a has a circular cylindrical shape. The two interlocked members 73; 73b are connected, at their respective one ends in their longitudinal direction, to the outer circumferential face of the rotational member 71a. The pivot members 74; 74b are respectively connected to the other ends of the respective interlocked members 73; 73b in the longitudinal direction. The springs 76; 76b are respectively connected to upper ends of the respective pivot members 74; 74b. Recessed portions 74c, 74d are formed in the respective pivot members 74; 74b so as to be open in a direction away from the rotational member 71a. Engaging portions 75c, 75d are respectively provided on the fixed members 75; 75b so as to be insertable into the respective recessed portions 74c, 74d. It is noted that pivotal shafts of the respective pivot members 74a, 74b are fixed to the first casing 1a, and the springs 76a, 76b are fixed to the first casing 1a at one ends of the respective springs 76a, 76b in a direction directed toward the rotational member 71a. Further, the fixed members 75a, 75b are fixed to the second casing 1b.
A handle or lever 72 having a rod-like shape is fixed to a front side of the rotational member 71a. The handle 72 can be manually rotated by the user and is rotated together with the rotational member 71a. A button 72b that can be pressed by the user is provided at a rotational center of the handle 72. Further, as shown in
The springs 76a, 76b respectively urge the upper ends of the respective pivot members 74a, 74b in the direction directed toward the rotational member 71a. As a result, as shown in
As shown in
When the engaging portions 75c, 75d are respectively inserted into the recessed portions 74c, 74d of the respective pivot members 74a, 74b in the state shown in
When the handle 72 in the rotation allowed state has been rotated in a clockwise direction by the user against the urging forces of the springs 76a, 76b, as shown in
There will be next explained the construction of the annular member 13 with reference to
The annular member 13 is formed of an elastic material such as a rubber and has an annular shape enclosing the outer circumferential portion of the ejection face 10a in plan view. A lower end of the annular member 13 has a projecting portion 13a having an inverted triangle shape in cross section.
The annular member 13 is movable upward and downward by gears 13G. Thus, the annular member 13 can be positioned at (i) an upper position at which the projecting portion 13a is located above the ejection face 10a and (ii) a lower position at which the projecting portion 13a is located below the ejection face 10a. The controller 1p controls a motor for rotating the gears 13G, such that the annular member 13 is positioned at the lower position (see
During the capping, as shown in
There will be next explained the processings executed by the controller 1p in response to the receipt of the restraint releasing signal with reference to
Where the controller 1p has received the restraint releasing signal (S1: YES), the controller 1p judges in S2 whether the printer 1 is in the recording mode or not. Where the printer 1 is in the recording mode (S2: YES), the controller 1p in S3 stops the driving of the actuators of the heads 10 and the drivings of the sheet-supply roller 21 and the conveyance roller pairs 22-28 to finish the liquid ejection and the sheet conveyance. When in S4, the controller 1p drives a rotation mechanism for rotating the rotor 63, to rotate the rotor 63 180 degrees, thereby changing the support face 1a from the first state to the second state. Then in S10, the controller 1p drives the solenoid 71b to change the handle 72 from the rotation inhibited state to the rotation allowed state.
Where the printer 1 is not in the recording mode (S2: NO), the controller 1p in S5 judges whether the printer 1 is in the maintenance mode or not.
Where the printer 1 is not in the maintenance mode, that is, where the printer 1 is in the recording waiting mode (S5: NO), the controller 1p executes the processing in S4 and goes to S10. Where the printer 1 is in the maintenance mode (S5: YES), the controller 1p judges in S6 whether the capping is being performed or not. Where the capping is being performed (S6: YES), the controller 1p in S7 drives the gears 130 to move the annular member 13 from the lower position to the upper position, thereby finishing or releasing the capping. The controller 1p then goes to S10.
Where the capping is not being performed, that is, where the forcefully ejecting operation is being performed (S6: NO), the controller 1p in S8 stops the driving for the forcefully ejecting operation (specifically, the controller 1p stops the driving of the pump in the case of the purging and the driving of the actuators in the case of the flushing) to finish the forcefully ejecting operation. Then in S9, the controller 1p drives a moving mechanism for moving the wiper 67, to perform the cleaning of the facing face 62a by the wiper 67. The controller 1p then goes to S10.
After the processing in S10, the controller 1p in S11 judges whether the first casing 1a has been moved to the distant position or not on the basis of the signal from the open-close sensor 100. Where the controller 1p has judged that the first casing 1a has been moved to the distant position (S11: YES), the controller 1p in S12 judges whether the first casing 1a has been returned to the close position from the distant position or not on the basis of the signal from the above-described open-close sensor 100. Until the first casing 1a is returned to the close position after moving to the distant position, the user can conduct operations (works) such as the jamming resolving operation in the work space formed between the casings 1a, 1b. The user returns the first casing 1a from the distant position to the close position after the operations.
Where the controller 1p has judged that the first casing 1a has been returned to the close position (S12: YES), the controller 1p in S13 drives the solenoid 71b to change the handle 72 from the rotation allowed state to the rotation inhibited state. Then in S14, the controller 1p drives the wiper 67 to clean the facing face 62a like in S9, and this routine is finished.
Where the first casing 1a has not been moved to the distant position (S11: NO), and a predetermined length of time has passed after the processing in S10 (S15: YES), the controller 1p goes to S13. In this case, after the processing in S13, this routine may be finished by omitting the processing in S14.
Where the printer 1 has changed to the maintenance mode after this routine is finished, the second state is maintained. Where the printer 1 has changed to the recording mode or the recording waiting mode after this routine is finished, the support face 1a is changed from the second state to the first state.
As thus explained, in the printer 1 as the present embodiment, where the controller 1p has received the restraint releasing signal (S1: YES), the controller 1p controls the rotor 63 such that the support face 1a is changed to the second state (S4). As a result, when the first casing 1a has been moved to the distant position, the support face 61a is not exposed to the space between the first and second casings 1a, 1b, making it possible to prevent the foreign matters from landing on or being attached to the support face 61a. It is noted that the printer 1 as the present embodiment includes the open-close sensor 100, but the open-close sensor 100 may be omitted from the printer 1.
The controller 1p controls the rotor 63 such that the support face 1a is changed to the first state in the recording mode and to the second state in the maintenance mode. Accordingly, where the restraint releasing signal has been received in the maintenance mode, the controller 1p only needs to control the rotor 63 such that the second state is maintained, thereby providing easy control.
After the first casing 1a has moved from the distant position to the close position (S12: YES), the controller 1p controls the support-maintenance unit 60 such that the wiper 67 cleans the facing face 62a (S14). As a result, even where the foreign matters are attached to the facing face 62a in the state in which the first casing la is positioned at the distant position, it is possible to remove the foreign matters attached to the facing face 62a by the wiper 67. Further, it is possible to prevent the foreign matters to fly into the casings 1a, 1b and to prevent a malfunction caused by the foreign matters in subsequent processings.
Where the controller 1p has received the restraint releasing signal in the recording mode (S2: YES), the controller 1p controls the heads 10, the sheet-supply roller 21, and the conveyance roller pairs 22-28 to finish the liquid ejection and the sheet conveyance (S3). When the first casing 1a is moved to the distant position during the liquid ejection and/or the sheet conveyance, the liquid ejected from the ejection openings may fly into the casings 1a, 1b and land on other components, and malfunctions of the components such as the conveyance roller pairs 22-28 may be caused. However, in the above-described construction of the present embodiment, it is possible to avoid these situations.
The controller 1p controls the heads 10 and so on in the maintenance mode so as to perform the forcefully ejecting operation for ejecting the liquid from the ejection openings onto the facing face 62a. That is, in this case, the facing face 62a functions as a liquid receiving member for receiving the liquid ejected in the forcefully ejecting operation. As a result, there is no need to provide another component as the liquid receiving member, thereby simplifying the construction of the printer 1.
Where the controller 1p has received the restraint releasing signal in the forcefully ejecting operation (S6: NO), the controller 1p controls the heads 10 and so on so as to finish the forcefully ejecting operation (S8) and then controls the support-maintenance units 60 so as to clean the facing face 62a by the wiper 67 (S9). If the user reaches into the space between the first and second casings 1a, 1b with his or her hand after the forcefully ejecting operation, the liquid having landed on the facing face 62a in the forcefully ejecting operation may be attached to the user's hand. However, in the above-described construction of the present embodiment, it is possible to avoid this situation.
As shown in
It is noted that, as described above, when the controller 1p has detected the occurrence of the jamming, the controller 1p executes the same processings as in the case where the controller 1p has received the restraint releasing signal. There will be next explained these processings with reference to
It is noted that, in the routine shown in
There will be next explained an ink-jet printer as a second embodiment of the present invention with reference to
As shown in
As thus explained, in the printer 1 as the present embodiment, when the first casing 1a is located at the distant position, the controller 1p rotates the rotor 63 such that the support face 1a is changed to the second state, whereby the facing face 62a is moved upward, and the support face 61a is moved downward. As a result, the support face 61a is not exposed to the space formed between the first casing 1a and the second casing 1b, making it possible to prevent the foreign matters from being landed on the support face 61a.
It is noted that the printer 1 as the present second embodiment explained above includes the lock mechanism 70, but this lock mechanism 70 may be omitted. That is, where the lock mechanism 70 is omitted from the printer 1, the processings in S1, S10, and S13 in the flow-chart in
There will be next explained an ink jet printer as a third embodiment of the present invention with reference to
The covers 213 are provided on the first casing 1a for the respective heads 10. Each of the covers 213 is a plate-like member one size larger than the corresponding ejection face 10a in plan view and includes (a) a plate-like main body 213a facing to the ejection face 10a and (b) an extending portion 213b extending from an outer edge of the main body 213a in a direction perpendicular to the ejection face 10a. Although a drawing and an explanation of a moving mechanism for moving the covers 213 are omitted, the covers 213 are interlocked with the first casing 1a and movable between (i) a protecting position (shown in
The humidifying mechanism 250 is configured to supply humidified air into protecting spaces V3 respectively formed between the ejection faces 10a and the covers 213 when the covers 213 are located at the protecting position. The humidifying mechanism 250 is provided on the first casing 1a and includes tubes 255, 256, 257, a pump 253, and a tank 254. Among these components, the tubes 255, 256, 257 are provided for each of the heads 10, but the pump 253 and the tank 254 are provided commonly for the two heads 10 (that is, one pump 253 and one tank 254 are provided for the two head 10). It is noted that the following explanation is given for one head 10 for the sake of simplicity.
The tube 255 communicates at its one end with an inner space of the cover 213 and is connected at the other end thereof to the pump 253. The tube 256 connects the pump 253 and the tank 254 such that the pump 253 and the tank 254 can communicate with each other. The tube 257 is connected at one end thereof to the tank 254 and communicates at the other end thereof with the inner space of the cover 213. The one end of the tube 255 and the other end of the tube 257 are respectively connected to one end and the other end of the cover 213 in the main scanning direction.
The tank 254 stores water in its lower space and stores in its upper space the humid air humidified by the water stored in the lower space. The tube 256 communicates with the lower space of the tank 254, and the tube 257 communicates with the upper space of the tank 254. It is noted that a check valve, not shown, is mounted on the tube 256 in order to prevent the water in the tank 254 from flowing into the pump 253, and thus the air flows only in a direction indicated by arrows in
In the present embodiment, when the controller 1p has received the restraint releasing signal, the controller 1p controls the humidifying mechanism 250 to supply the humidified air into the protecting space V3. Specifically, the controller 1p drives the pump 253 to collect the air in the protecting space V3 from the one end of the tube 255. The collected air passes through the tube 255, the pump 253, and the tube 256 to reach the lower space of the tank 254, and is humidified by the water in the tank 254. The humidified air then flows from the upper space of the tank 254 through the tube 257 to the protecting space V3. In
As thus explained, in the printer as the present embodiment, while the first casing 1a is positioned at the distant position, the ejection face 10a is covered with the cover 213, and the humidified air is supplied into the protecting space V3 formed between the ejection face 10a and the cover 213. As a result, it is possible to effectively prevent or resolve the drying at the peripheries of the ejection openings. If the peripheries of the ejection openings are dried, the liquid in and near the ejection openings may be solidified or thickened (a viscosity of the liquid may increase), leading to an ejection failure. However, in the present embodiment, it is possible to avoid this situation effectively. Further, even if the liquid has already been thickened or solidified in and near the ejection openings, the moisture is supplied by the humid air, making it possible to resolve the solidification or the increase in the viscosity of the liquid.
While the embodiments of the present invention have been described above, it is to be understood that the invention is not limited to the details of the illustrated embodiments, but may be embodied with various changes and modifications, which may occur to those skilled in the art, without departing from the spirit and scope of the invention.
For example, after the first casing has been moved from the distant position to the close position or where the controller 1p has received the restraint releasing signal during the forcefully ejecting operation, the controller 1p may not control the maintenance portion to clean the facing face by the cleaning member. The controller 1p is not limited to control the moving device such that the moving device is in the first state in the case of the recording mode and such that the moving device is in the second state in the case of the maintenance mode. For example, the first state may be established in the maintenance mode. Where the controller 1p has detected the occurrence of the jamming in the recording mode, the controller 1p may not execute the same processings as in the case where the controller 1p has received the restraint releasing signal. In the forcefully ejecting operation performed in the maintenance mode, the liquid may be ejected onto a face other than the facing face.
The constructions of the annular member 13 and the covers 213 may be modified as needed. Further, these components may be omitted.
In the above-described embodiments, the conveyance roller pairs 22-28 are used as one example of a conveyance portion, but the conveyance portion may be constituted by a conveyance belt, belt rollers, and other components. In this case, the conveyance belt functions as the support portion, and a face of the conveyance belt functions as the support face.
In the above-described embodiments, the facing member 62 of the maintenance portion is formed integrally with the support portion (i.e., the platen 61), but the facing member 62 is not limited to be integral with the support portion. For example, the printer 1 may be configured such that the rotor 63 in the first embodiment is omitted, and the facing member 62 is located so as to be distant from the support portion, and the facing member and the support portion are moved independently of each other.
In the above-described embodiments, the wiper is used as the cleaning member, but another cleaning member such as a brush and a sponge may be used as long as the facing face is cleaned. Further, the cleaning member may be omitted.
The position of the maintenance portion is not limited, and the maintenance position may be positioned on a side portion of the head instead of just under the head.
The first casing is not limited to be pivoted with respect to the second casing about the hinge portion. For example, the first casing may be moved in the vertical direction or in the horizontal direction.
The construction of the restraining portion may be modified as needed. For example, in the above-described embodiment, the rotation of the handle 72 is inhibited by the solenoid and changed from the rotation inhibited state to the rotation allowed state by the control of the controller 1p, but the printer 1 may be configured such that the handle 72 is always in the rotation allowed state by omitting the solenoid, and when the user has rotated the handle 72, the restraint releasing signal is transmitted to the controller 1p from a sensor for sensing the rotation of the handle 72. Alternatively, instead of the manual operation of the user, the controller 1p may control the rotation of the handle 72 by controlling a mechanism for rotating the handle 72. Further, the handle 72 operable by the user may be omitted. In this case, the restraining portion is changed between the restrained state and the unrestrained state by the control of the controller 1p.
Likewise, instead of the manual operation of the user, the controller 1p may control the movement of the first casing by controlling a mechanism for moving the first casing.
The present invention is applicable to not only the monochrome printer but also a color printer. Further, the present invention is applicable to any of a line printer and a serial printer. Further, the present invention is applicable to not only the printer but also another liquid ejection apparatus such as a facsimile machine and a copying machine. The liquid ejection head may eject any liquid other than the ink and the pretreatment liquid. Further, the number of the liquid ejection heads in the liquid ejection apparatus may be any number as long as the number is equal to or greater than one. The recording medium is not limited to the sheet P, and any recordable medium may be used.
Number | Date | Country | Kind |
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2010-243610 | Oct 2010 | JP | national |