GB2227459A - Transporting sheets and controlling ink in ink-jet printers - Google Patents

Transporting sheets and controlling ink in ink-jet printers Download PDF

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Publication number
GB2227459A
GB2227459A GB8925702A GB8925702A GB2227459A GB 2227459 A GB2227459 A GB 2227459A GB 8925702 A GB8925702 A GB 8925702A GB 8925702 A GB8925702 A GB 8925702A GB 2227459 A GB2227459 A GB 2227459A
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United Kingdom
Prior art keywords
recording
conveying
liquid
ink
liquid jet
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Granted
Application number
GB8925702A
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GB2227459B (en
GB8925702D0 (en
Inventor
Haruhiko Takahashi
Makoto Takamiya
Hidejiro Kadowaki
Ken Tsuchii
Toshiyuki Yanaka
Masafumi Wataya
Kosuke Yamamoto
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Canon Inc
Original Assignee
Canon Inc
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Publication date
Application filed by Canon Inc filed Critical Canon Inc
Publication of GB8925702D0 publication Critical patent/GB8925702D0/en
Publication of GB2227459A publication Critical patent/GB2227459A/en
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Publication of GB2227459B publication Critical patent/GB2227459B/en
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Classifications

    • GPHYSICS
    • G01MEASURING; TESTING
    • G01DMEASURING NOT SPECIALLY ADAPTED FOR A SPECIFIC VARIABLE; ARRANGEMENTS FOR MEASURING TWO OR MORE VARIABLES NOT COVERED IN A SINGLE OTHER SUBCLASS; TARIFF METERING APPARATUS; MEASURING OR TESTING NOT OTHERWISE PROVIDED FOR
    • G01D15/00Component parts of recorders for measuring arrangements not specially adapted for a specific variable
    • G01D15/16Recording elements transferring recording material, e.g. ink, to the recording surface
    • G01D15/18Nozzles emitting recording material
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B41PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
    • B41JTYPEWRITERS; SELECTIVE PRINTING MECHANISMS, i.e. MECHANISMS PRINTING OTHERWISE THAN FROM A FORME; CORRECTION OF TYPOGRAPHICAL ERRORS
    • B41J2/00Typewriters or selective printing mechanisms characterised by the printing or marking process for which they are designed
    • B41J2/005Typewriters or selective printing mechanisms characterised by the printing or marking process for which they are designed characterised by bringing liquid or particles selectively into contact with a printing material
    • B41J2/01Ink jet
    • B41J2/135Nozzles
    • B41J2/165Preventing or detecting of nozzle clogging, e.g. cleaning, capping or moistening for nozzles
    • B41J2/16585Preventing or detecting of nozzle clogging, e.g. cleaning, capping or moistening for nozzles for paper-width or non-reciprocating print heads
    • B41J2/16588Print heads movable towards the cleaning unit

Description

1 - 1
TITLE OF THE INVENTION Liquid Jet Recording Apparatus Having Rotary Transmitting Member of Recording Medium
BACKGROUND OF THE INVENTION Field of the Invention
The present invention relates to a liquid jet recording apparatus which is made compact by utilizing a rotary type conveying belt or roller as a conveying member of the recording medium, especially relates to a full line recording apparatus whose recording head is enlarged, or full color recording apparatus whose recording area is increased. Related Background Art
Liquid jet recording apparatuses (ink jet recording apparatuses) each of which can perform the recording of information such as characters and/or images by discharging recording liquid from a recording head have widely been known.
A recording medium mainly receiving the recording comprising a paper or a plastic sheet has been used with the liquid jet recording apparatus of this kind. Such liquid jet recording apparatus has been adopted to a recording output apparatus of a computer, word processor and the like, since it has less noise in the recording operation and simpler mechanical construction and is more inexpensive, than other 2 i t is recording systems.
However, in such liquid jet recording apparatus, since the recording is performed by directly discharging the recording liquid (referred to as "ink" hereinafter) from a nozzle of the recording head, special attention must be paid to always keep the ink in a dischargeable condition, which is not needed in other recording systems.
That is to say, since the ink exists in the nozzle of the recording head even when the apparatus is in an inoperative condition, it is necessary to prevent the ink in the nozzle from drying, and the change in quality of the ink, for example, due to increase in the viscosity of ink caused by evaporation of moisture in the ink must also be prevented. To this end, a so called capping means for covering the orifice of the recording head by means of a cap thereby preventing the dryness and/or evaporation of the ink in the inoperative condition of the recording apparatus has been proposed.
However, under the low moisture condition, or when the recording apparatus is not operated for a long time, the increase in the viscosity of ink cannot be avoided adequately only by the capping means.
Accordingly, as well as the capping means, there has been provided a head restoring mechanism which produces the negative pressure in the orifice of the recording head by sucking the air within the cap convering the k recording head so that the ink stayed in the nozzle of the recording head is drawn out or which produces the pressure in the nozzle by means so that the deteriorated ink is 5 orifice of the recording head.
Further, in some cases, the quality of the ink in the unused nozzle or nozzles is changed or deteriorated even during the recording operation.
That is to say, in the ink jet recording apparatus having a plurality of recording heads, there will be a orifice or orifices which are not used for a long time even during the recording operation in accordance with the kind of the information to be recorded. More particularly, in some nozzle or nozzles, the time interval between the discharge of the ink and the next discharge of the ink will be very long. In this way, the discharge frequencies or periods of the ink from the respective nozzles vary each other. Therefore, in the nozzle having the less discharge frequency or long time interval between two successive ink discharges, the viscosity of the ink will be increased due to the dryness thereof according to the surrounding condition such as humidity and/or temperature, which results in the unstable discharge or the non-discharge of the ink from the nozzle.
To avoid this, the empty discharge has been carried out (for nonrecording purpose) from each nozzle of a pump and the like discharged from the 4 toward an ink absorbing member provided in the capping means for predetermined time intervals.
In addition, in a recording apparatus adopting one of full line or color recording, or in full line scan type requiring high speed recording, "fog" like mist is generated in the recording area space formed between the recording head and the recording medium upon recording because large amount of ink advances toward the recording medium. The technique adopting attracting 10 means for solving the above problem has been known.
SUMMARY OF THE INVENTION
It is a primary object of the present invention to provide the liquid jet recording apparatus capable of removing or eliminating the ink which does not contribute to formation of the recording image but inevitably generated upon recording, for example, ink for empty discharge or ink mist, and capable of compactizing the recording apparatus.
It is another object of the present invention to provide the liquid jet recording apparatus having the empty discharge mechanism so as not to deteriorate the recording speed, in views of the defect that the recording head should be retracted from the recording position for discharging the ink toward the ink attracting member in capping means, which greatly deteriorates a through put in the continuous sheet k 1 supply, i.e., the recording speed.
It is still another object of the present invention to provide the liquid jet recording apparatus capable of compactization of the apparatus as well as efficient elimination of the ink mist, by utilizing a conveying belt conveying the recording medium, so that it eliminates the ink mist generated in the recording area from the space of recording area.
Still another object of the present invention is 1() to provide the liquid jet recording apparatus including recording means for carrying out recording by discharging liquid; rotary conveying means for conveying a recording medium to which the liquid is applied by said recording means; and recovery means for causing said recording means to carry out a liquid discharge onto a surface of said rotary conveying means.
Still another object of the present invention is to provide the liquid jet recording apparatus including; recording means for discharging ink for recording; conveying means for conveying a recording medium to which the liquid is applied by said recording means, said conveying means having a conveying belt moving endlessly and conveying belt charging means electrostatically attracting the recording medium to said conveying belt; controlling means for supplying said conveying belt charged by said charging means to a recording area by said recording means by length with - 6 respect to the conveying direction, after completion of recording of the recording medium by said recording means; and cleaning means for cleaning said conveying means.
Still another object of the present invention is to provide the liquid jet recording apparatus including recording means for jetting a liquid to a recording medium by forming an air bubble by a film boiling in the liquid by applying an electric signal corresponding to the recording signal to a recording head provided with an electro- mechanical converting element for forming an --.air bubble by applying thermal energy into the liquid, said recording means being provided with a recording head having a discharge portion of a length corresponding to a width of said recording medium in the conveying direction thereof; an endless conveying belt for electrostatically attracting the recording medium; and charging means for charging said conveying belt including a surface thereof located between. adjacent recording media in a plural recording media conveying mode of the conveying belt.
Most significant object of the present invention is to provide.the liquid jet recording apparatus, including; recording means for discharging ink for recording; conveying means for conveying a recording medium to which the liquid is applied by said recording means, said conveying means having a conveying belt.
7 - 1 moving endlessly and conveying belt charging means electrostatically attracting the recording medium to said conveying belt; controlling means for supplying said conveying belt charged by said charging means to a recording area by said recording means by length with respect to the conveying direction, after completion of recording of the recording medium by said recording means; and cleaning means for cleaning said conveying means.
A liquid jet recording apparatus can be the one including recording means for jetting a.liquid to a recording medium by forming an air bubble by a film boiling in the liquid by applying an electric signal corresponding to the recording signal to a recording head provided with an electro-mechanical converting element for forming an air bubble by applying thermal energy into the liquid, said recording means being provided with a recording head having a discharge portion of a length corresponding to a width of said recording medium in the conveying direction thereof; an endless conveying belt for electrostatically attracting the recording medium; and charging means for charging said conveying belt including a surface thereof located between adjacent recording media in a plural recording media conveying mode of the conveying belt.
Said recording means includes controlling means for supplyirg said conveying belt charged by said 8 - charging means to a recording area by said recording means by length with respect to the conveying direction after completion of recording of the recording medium by said recording means, and cleaning means for 5 cleaning said conveying means.
Said controlling means supplies the conveying belt until a surface of said conveying belt charged after completion of recording passes by a cleaning acting area by said cleaning means.
is 9 - 1 BRIEF DESCRIOTION OF THE DRAWINGS:
Fig. 1 is a whole constructural view of a liquid jet recording apparatus according to a preferred embodiment of the present invention; Fig. 2 is a perspective view of a recording head of the apparatus of Fig. 1; Fig. 3 is a sectional view of a cap of the apparatus of Fig. 1; Figs. 4 to 9 are explanatory views for explaining the operations of a head unit and a cap unit of the apparatus of Fig. 1, respectively; and Fig. 10 is a flow chart for executing the operation of the apparatus of Fig. 1.
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS:
The present invention will now be explained in connection with embodiments thereof with reference to the accompanying drawings.
Fig. 1 shows an embodiment of the present invention.
A liquid jet recording apparatus according to the present invention shown in Fig. 1 comprises a recording head unit 1.which has 3456 nozzles at intervals of 16 dot/mm to record an image having a width of 216 mm in a line recording fashion and which includes four recording heads la, lb, lc and ld for black ink, cyan ink, magenta ink and yellow ink, respectively.
Fig. 2 is a perspective view of the recording 1 I_ head which comprises an aluminum head base 31, a silicone substrate 32 including heating elements connected to nozzles 34, a glass cover 33 defining a common ink chamber 35 and the nozzles 34, a driver 36 for activating the heating elements, and an ink return tube 37 for returning the ink supplied from an ink supply tube 5 into the ink chamber 35 to an ink tank. In this recording head, an orifice surface 40 is defined in front of the nozzles 34. Each recording head is supported by holders 2 in such a manner that the recording heads are positioned equidistantly in a direction to which a recording medium is fed. The recording head unit comprising the four recording heads and the holders can be shifted in an up-and-down direction by means of a head shifting means 24.
Cap unit 3 includes caps 3a-3d mounted on the respective orifice surfaces 40 of the respective recording heads la -1d constituting nozzles when the liquid jet recording apparatus is not in use. As shown in Fig. 3 (this Figure illustrates a condition that the recording head unit 1 is aligned with the cap unit 3 in a single plane), each cap has a sponge ink absorbing member 29 therein, which member serves to receive the ink discharged for non-recording purpose. Further, the cap is provided at its upper surface with a nozzle holder rubber 30 extending along the length of the nozzle array. The cap unit 3 can be shifted in a 11 1 direction X (Fig. 1) by means of a cap shifting means 25 (Fig. 1).
Ink tanks 4 are provided, which include ink tanks 4a4d corresponding to the recording heads la-1d.
The ink in each ink tanks 4a-4d is supplied to the corresponding recording head la-1d through the corresponding ink supply tube 5a-5d. The supply of the ink is effected by the use of capillarity of the nozzle of the recording head, and the liquid level (water head) of the ink in each ink tank is so set as to be maintained lower than the nozzle surface by a predetermined distance. The ink tanks 4a-4d are associated with corresponding ink circulating pumps 38a38d, respectively, by which the ink under pressure is supplied from the ink tanks to the corresponding recording heads. Further, the ink tanks 4a-4d are connected to the corresponding recording heads la-1d, respectively, through ink return tubes 37a-37d through which the pressurized ink in the recording heads is returned to the corresponding ink tanks 4a-4d.
The liquid jet recording apparatus further includes a seamless belt 6 for feeding or conveying the recording medium 27. The seamless belt 6 has an outer high resistive (10 2cm or thereabout) layer having a thickness of the order of 50 pm and an inner surface earthed through idle rollers 9. The belt is charged by means of a charger 12a so that the outer surface of the k..
1 belt becomes about 1500 volts. The recording medium 27 is also charged to have the negative or minus charge by means of a charger 12b so that the recording medium can be electrostatically attracted to the seamless belt 6, whereby the recording medium is conveyed in the direction X in response to the movement of the seamless belt 6. The belt 6 is rotated or turned in the direction X by means of a belt driving roller 7 driven by a motor 8.
A tension roller 10 is provided for applying the constant tension to the belt 6. Pinch rollers lla and llb are arranged-on opposite sides of the charger 12b and are associated with the idle rollers 9a, 9b with the interposition of the belt portion so as to aid the attraction of the recording medium 27 to be seamless belt 6. Particularly, the pinch roller lla can also serve as a regist roller against which the leading edge of the recording medium is abutted to form a loop of the recording medium in a guide 13 thereby improving the perpendicularity of the leading edge of the recording medium 27 to the direction X. The recording media or recording papers 27 are fed from a cassette 26 one by one by means of a feed roller 16 and are directed to the regist roller lla by means of a feeding roller 14 and a pinch roller 15.
Further, a cleaning unit 17 is provided for removing the paper powder and/or the non-recording 13 1 discharged ink from the outer surface of the seamless belt 6. Incidentally, the reference numeral 18 designates an ejector tray for receiving the recording paper on which the image has been recorded. 5 Next, an operation of the liquid jet recording apparatus designed as mentioned above will be explained. Figs. 4 to 9 are side views showing the recording head unit and the associated caps. More particularly, Fig. 4 shows a condition that a power source of the apparatus is turned OFF, where the orifice surfaces of the recording heads la-1d are closed or covered by the corresponding caps 3a-3d, whereby the evaporation of ink from the nozzle tips is prevented.
Under the circumstances, when the power source of the apparatus is turned ON, the recording head unit including the recording heads la-1d is lifted by the head shifting means 24 by 1 mm or thereabout (Fig. 5). In this condition, if a circulating signal is emitted, the cap unit including the caps 3a-3d is shifted by the cap shifting means 25 to a direction opposite to the direction X by a distance corresponding to a distance L shown in Fig. 3 (Fig..6), and then, the head unit is lowered (Fig. 7). In this condition, the ink is circulated (between the ink tanks and the corresponding recording heads) by activating.the ink circulating pumps 38a-38d (Fig. 1). Then, the recording head unit is lifted again (Fig. 6), and thereafter, the cap unit is 1 returned to its original position (Fig. 5). Incidentally, the bubbles in the ink supply tubes 5 and in the recording heads are removed by the ink circulation.
On the other hand, if a non-recording discharging signal is emitted, the ink is discharged for the non-recording purpose (empty discharge) from all of the nozzles by predetermined times. In this case, since the nonrecording discharge of ink is effected before the recording operation is started, the ink is discharged toward the ink absorbing members 29 in the caps 3a-3d. Incidentally, although the non- recording discharge of ink is normally effected when the power source is turned ON or after a predetermined number of recording papers have been recorded, if the uneven or irregular recording occurs during the recording operation, the non-recording discharge of ink may be effected by pushing an appropriate start button.
Next, the cap unit is shifted by means of the cap shifting means 25 to the direction opposite to the direction X to displace the caps 3a-3d from the moving paths of the recording heads la- ld (Fig. 8). Thereafter, the recording head unit is lowered between the caps so that the nozzles tips of the recording heads are positioned above the seamless belt 6 by about 4 mm (Fig. 9).
Then, a paper feeding motor (not shown) for rotating the feed roller 16 is activated to pick up the uppermost recording paper in the cassette 26 by means of the feed roller 16. The recording paper is guided by the guide 13 and is pinched by the feeding roller 14 and the pinch roller 15. The leading edge of the recording paper is detected by a photo-sensor (not shown) arranged immediately ahead of the regist roller lla, and the paper feeding motor is turned OFF when a predetermined time is elapsed after the leading edge of the recording paper has reached the regist roller lla. Meanwhile, the leading or front portion of the recording paper is curved or looped in the inverted V- shaped guide 13 so that the leading edge of the recording paper is positively abutted against the regist roller due to the rigidity of the recording paper to ensure the perpendicularity of the leading edge of the recording paper to the paper feeding direction X.
Then, the belt driving motor 8 and the chargers 12a, 12b are activated. The recording paper-is introduced below the charger 12b while being pressed against the belt 6 by the pinch roller lla. The outer surface of the belt 6 is charged to have the voltage of about 1500 V by means of the charger 12a, whereas, the recording paper is charged to have the minus charge by means of the charger 12b. Therefore, the recording paper is electrostatically attracted to the belt due to the electrostatic force caused by the positive or plus charge on the belt and the minus charge on the recording paper. Further, since the recording paper is pressed against the belt 6 by means of the pinch roller llb after it has passed through the charger 12b, the attraction of the recording paper to the belt is further ensured. The movement of the recording paper is counted by an appropriate counter activated in synchronous with the activation of the belt driving motor, so that the recording operation is started immediately after the leading edge of the recording paper has reached the recording heads.
After the recording operation regarding the recording paper has been finished, the recording paper is separated from the belt 6 at a bent portion of the belt wound around the belt driving roller 7, and then is ejected onto the ejector tray 18. After the recording paper has been ejected, the belt driving motor 8 is turned OFF and the chargers 12a, 12b are also deactivated.
Now, if the next recording operation is not desired, the recording head unit is lifted (Fig. 8), and then, the cap unit is returned to its original position (Fig. 5), and thereafter, the recording head unit is lowered, whereby the recording heads are covered by the corresponding caps (Fig. 4). In this point, the power source is turned OFF.
on the other hand, if the next recording 1 C, 17 - operation is desired, first of all, it is detected or judged whether the non-recording discharge signal is emitted or not. If such signal is emitted, the ink is discharged for the non-recording purpose onto the belt while maintaining the recording heads in the condition shown in Fig. 9, and then the feed roller 16 is rotated; whereas, if such signal is not emitted, the feed roller is rotated without effecting the non-recording discharge of ink. In this way, the recording paper regarding the lo next recording paper is repeated in the same manner as mentioned above. The ink discharged on the belt is removed from the belt by means of the cleaning unit 17 Incidentally, the above-mentioned operation of the liquid jet recording apparatus is shown in a flow chart of Fig. 10.
-When the non-recording ink discharge operation is effected whenever each recording operation has been finished, the ink may be discharged for the nonrecording purpose, for example, by several times.
Accordingly, in the liquid jet recording apparatus according to the present invention, the non-recording ink discharge can be effected onto the belt portion between two successive recording papers fed along the belt, and, thus, the through-top, i.e., the recording speed in the continuous paper feeding system is not reduced. Incidentally, since the non-recording ink discharge is required per every 1-2 minutes, the non-recording ink discharge may be effected whenever several or ten-odd recording papers have been recorded in accordance with the recording speed of the liquid jet recording apparatus.
Further, in the illustrated embodiment, since it is designed that the recording paper is electrostatically attracted to the seamless belt, the ink mist generated during the non-recording ink discharge can also be attracted to the belt, thus preventing the ink mist from contaminating the interior of the apparatus and improving the reliability of the operation of the apparatus.
Incidentally, in the illustrated embodiment, while an example that the electrostatic force between the recording paper and the seamless belt is utilized as the paper conveying means was explained, the present invention is not limited to this example. It should be noted that the paper conveying means may be constituted by an air suction force, a drum or the like.
According to the present invention, since the liquid jet recording apparatus includes a conveying means for conveying the recording medium, a cleaning means for cleaning the conveying means, and a control means for discharging the recording liquid for non- recording purpose onto the conveying means, it is not needed to retract the recording heads from the recording position, and the through-top, i.e. , the recording speed in the continuous recording system is not reduced, thus permitting the high speed recording.
Further, when the recording medium is conveyed by the electrostatic force between the recording medium and the belt, the ink mist generated during the nonrecording ink discharge can be attracted to the belt, thus preventing the ink mist from contaminating the interior of the apparatus and improving the reliability of the operation of the apparatus.
Some explanation will be added for the above embodiment.
Although the ink supply to the recording head is carried out only through the tubes 5 (5a, 5b, 5c, 5d), it is posible and preferable to supply the ink to the head through the tubes 5, 37 (the discharge tubes 37 (37a, 37b, 37c, 37d) are so constructed that they can supply the ink from the ink tank) by capillary force generated corresponding to ink consumption by the head.
As for the construction of ink head shifting means 24 in the above embodiment, it is enough to cause the group of heads move upwardly and downwardly integrally. In detail, on-off control of a plunger for lift, or means utilizing a cam as motion transmitting member can be adopted. As for the construction of cap shifting means 25, it is enough to move the group of caps integrally. In detail, a slide mechanism utilizing a rail or the like for parallel shifting, or a mechanism 1 1 comprising a guiding lack and a pinion can be adopted.
In the above embodiment, since the charge to the conveying belt 6 electrostatically attracting the recording medium is carried out unitl discharge completion of the recording medium, the conveying belt 6 charged is existed or presented in the small gap between the belt of recording area formed by the recording heads la to ld, and the recording head even after completion of recording. Accordingly, the ink mist generated upon recording can be attracted to the conveying belt as well as the ink mist upon said empty discharge.
In other words, even if the ink mist is presented at the recording area after completion of recording, it will be attracted by the charged conveying belt. Thus, preferable environment suitable for next recording can be formed. There is no recording medium presented in the recording area after completion of recording, the ink mist upon recording can be removed by causing the surface of charged conveying belt to be passed or presented. By charging the conveying belt by the area which is larger than the length corresponding to the recording area.in the conveying direction, the above advantage becomes more remarkable.
In addition, the conveying belt has a length which is longer than the recording medium, and the area which is larger than the conveyable recording medium is - 21 1 charged, so the ink mist effect can be fully realized by sufficiently utilizing the tendency of the ink mist advancing toward the end. By selecting the maximum charging width larger than the maximum sheet size conveyable, the ink mist removing effect can be fully shown, which means the excellent recording can be maintained without complicating the apparatus construction. The ink mist adhered to the recording head itself needs the cleaning recording head by the cleaning blade as recovery means, which leads to increase of recording interruption, or increase of ratio of the empty discharge, but such disadvantages can be overcome or solved by the present invention.
Furthermore, upon conveyance of the continuous recording medium, the predetermined gap is formed between adjacent recording media normally, it is needless to say the ink mist removing effect relative to the whole width of the recording area can be obtained by charging the surface of the conveying belt of predetermined gap even upon the conveying mode without carrying out the empty discharge.
Incidentally, in the case the conveying belt receives the empty discharge or attracts the ink mist, it is desirable to clean such area. For this reason, even after the recording medium conveyance becomes unnecessary by the discharge, it is desirable to move the conveying belt until the above area passes by the 1 22 cleaning acting area. Cleaning means can be constructed by providing the ink attracting layer on the conveying belt and reducing or restricting it by not the cleaning member but by pair of reducing rollers as ink removing means.
It is noted the present invention covers the part or combination or the above embodiments.
In the above embodiment, since the recording medium is charged itself, the uncharged conductive ink has the effect attracting the ink mist like material because it is subject to generation of the induction charge.
This is especially effective for the scan type recording head.
The present invention renders excellent advantages especially in the recording head, apparatus of bubble jet type among the ink jet recordingsystem. In detail, according to the present invention the defects that, in the case carrying out empty discharge by moving the recording head and in the case forming air flow for increasing the air flow amount for effectively eliminating the ink mist, the recovery time becomes longer due to large heat loss near the recording head. In particular, since the ink mist increase can be substantially decreased, the above advantages is remarkable even when eliminating the ink mist together with the air flow.
- 23 1 AS for typical construction and principle therefor, U.S.P. Nos.4,723,129 and 4,740,796 can be advisable. The system can be applied to so-called on-demand type as well as continuous type, but the former is more desirable for,the following reason. In the case of on-demand type, to the electro-mechanical converting member which is disposed the sheet of liquid path on which the liquid (ink) is held at least one actuating signal giving sudden temperature increase corresponding to the recording information and goes over the film boiling is applied, to generate the thermal energy at the electro-mechanical converting member to thereby cause the film boiling at the acting surface of the recording head, so that the air bubble in the liquid (ink) can be formed exactly corresonding to the actuating signal. The liquid (ink) is discharged through the discharge opening due to growth and shrinkage of the air bubble to thereby form at least one droplet. Using the actuating signal as the pulse configuration is convenient to carry out the ink discharge excellent in response since the growth and shrinkage of the air bubble is carried out immediately and properly. The actuating signals of this pulse configuration which are disclosed in U.S.P. Nos.4,463,359 and 4,345,262 are suitable. In the case the conditions disclosed in U.S.P. No.4,313,124 which is related to the temperature increase at the heat acting surface is used, more excellent recording can be effected.
Incidentally, in addition to the construction of recording head comprising the combination of discharge opening, liquid path and electro- mechanical converter which is described in the above patents (linear liquid path or normal liquid path), the construction in which the heat acting surface is disposed in the bent or curl area which is for example disclosed in U.S.P. Nos. 4,558,333 and 4,459,600 is included in the present invention. Furthermore, the construction in which the slit common to plural electro-mechanical converter is made the discharge portion for the electro-mechanical converter which is for example disclosed in Japanese Patent Laid-open No.59-123670, and the construction in which the opening for absorbing the pressure wave of thermal energy is corresponded to the discharge portion which is for example disclosed in Japanese Patent Laid-open No.59-138461 can be adopted to the present invention.
As for the full-line type recording head, having length corresponding to the maximum width of recording medium capable of being recorded by the recording device, the construction achieved by combination of plural recording heads and the construction of single recording head formed integrally as mentioned above.
In any case, the above advantage can be shown according to the present invention.
I 1 Furthermore, as for the recording made of the recording device, in addition to the recording mode only for the main color such as black or the like, to the device having at least one of the plural colors of different colors or full color by mixing colors which is made by constructing the recording head integrally or combining plural recording heads, the present invention can be applied.
The endless rotary member having enough flatness on which is evenly charged and does not pass through the ink is suitable for the conveying member of the present invention 26 -

Claims (22)

1 CLAIMS:
1. A liquid jet recording apparatus, including:
recording means for carrying out recording by discharging liquid; rotary conveying means for conveying a recording medium to which the liquid is applied by said recording means; and recovery means for causing said recording means to carry out a liquid discharge onto a surface of said rotary conveying means.
2. A liquid jet recording apparatus according to claim 1, wherein said recording means includes means for eliminating the liquid from said conveying means which has received the liquid discharge.
3. A liquid jet recording apparatus according to claim 1, wherein said conveying means includes a conveying belt electrostatically attracting whole surface of the recording medium, and means for charging said conveying belt.
4. A liquid jet recording apparatus according to claim 1, wherein said recovery means carries out the liquid discharge onto the surface of said conveying means located between adjacent recording media in a mode in which said conveying means conveys the C 1 recording medium cut into a predetermined size.
5. A liquid jet recording apparatus, including:
recording means for discharging ink for recording; conveying means for conveying a recording medium to which the liquid is applied by said recording means, said conveying means having a conveying belt moving endlessly and conveying belt charging means electrostatically attracting the recording medium to said conveying belt; controlling means for supplying said conveying belt charged by said charging means to a recording area by said recording means by length with respect to the conveying direction, after completion of recording of the recording medium by said recording means; and cleaning means for cleaning said conveying means.
6. A liquid jet recording apparatus according to claim 5, further including recovery means for carrying out the ink discharge to a surface of said conveying means which is charged but has not attracted the recording medium.
7. A liquid jet recording apparatus according to claim 5, wherein said conveying means has a member 1 - 28 for pressing the recording medium onto a surface of said charged conveying belt before it reach to the recording area.
8. A liquid jet recording apparatus according to claim 5, further including recording medium charging means applying a charge having reverse polarity of said charging means to the recording medium.
9. A liquid jet recording apparatus according to claim 5, wherein said recording means includes a full line type recording head discharging the ink with keeping a small gap between itself and said recording medium for the different inks discharge, said recording head having a discharge portion having a length corresponding to a width of said recording medium in a moving direction thereof and carrying out the recording in a recording position in the recording apparatus.
10. A liquid jet recording apparatus according to claim 9, further including moving means for moving said recording means between a position where said recording means is remote from said conveying means by a distance larger than the small gap and the recording position upon non-recording, a cap member for capping the liquid discharge portion of said recording 1 C p 1 means and means for inserting said cap member into a space between said recording means separated from said moving means and said conveying belt, a capped state being established by said cap member upon non-recording.
11. A liquid jet recording apparatus accoding to claim 5, wherein said recording means has an electro-mechanical converting element for forming air bubble by applying thermal energy to the liquid for the liquid discharge, said converting element generating a film boiling in the liquid corresponding to an electric signal corresponding to the recording signal.
12. A liquid jet recording apparatus according to claim 10, further including recovery means for carrying out the ink discharge to a surface of said conveying means which is charged but has not attracted the recording medium.
13. A liquid jet recording apparatusaccording to claim 12, wherein said recording means has an electro-mechanical converting element for forming air bubble by applying t hermal energy to the liquid for the liquid discharge, said converting element generating a film boiling in the liquid corresponding to an electric signal corresponding to the recording signal.
- 30 k 1
14. A liquid jet recording apparatus, including:
recording means for jetting a liquid to a recording medium by forming an air bubble by a film boiling in the liquid by applying an electric signal corresponding to the recording signal to a recording head provided with an electro-mechanical converting element for forming an air bubble by applying thermal energy into the liquid, said recording mean being provided with a recordig head having a discharge portion of a length corresponding to a width of said recording medium in the conveying direction thereof; an endless conveying belt for electrostatically attracting the recording medium; and charging means for charging said conveying belt including a surface thereof located between adjacent recording media in a plural recording media conveying mode of the conveying belt.
15. A liquid jet recording apparatus according to claim 14, wherein said recording means is color recording means having four recording heads disposed closely in a state in which a full color recording can be carried out.
16. A liquid jet recording apparatus according to claim 14, wherein said recording means includes controllin means for supplying said conveying belt C 1 1 1 charged by said charging means to a recording area by said recording means by length with respect to the conveying direction after completion of recording of the recording medium by said recording means, and cleaning means for cleaning said conveying means.
17. A liquid jet recording apparatus according to claim 15, wherein said recording means includes controlling means for supplying said conveying belt charged by said charging means to a recording area by. said recording means by length with respect to the conveying direction after completion of recording of the recording medium by said recording means, and cleaning means for cleaning said conveying means.
18. A liquid jet recording apparatus according to claim 16, wherein said controlling means supplies the conveying belt until a surface of saidconveying belt charged after completion of recording passes by a cleaning acting area by said cleaning means.
19. A liquid jet recording apparatus according to claim 17, wherein said controlling means supplies the conveying belt until a surface of said conveying belt charged after completion of recording passes by a cleaning acting area by said cleaning means.
]k 1
20. A liquid jet recording apparatus constructed adapted and arranged to perform substantially as described hereinbefore with reference to and as shown in the accompanying drawings.
21. A method of liquid jet recording wherein empty discharge operation is performed by discharging jet liquid onto the exposed surface of a conveyor belt.
22. A method of liquid jet recording as claimed in the preceding claim when performed substantially as described hereinbefore with reference to the accompanying drawings.
Published 1990 at The Patent Office, State House,66f71 High Rolborn. London WC1 R 4TP. Further copies maybe obtainedfrom The Patent Office. Sales Branch, St Mary Cray. Orpington, Kent BR5 3RD. Printed by Multiplex techniques ltd. St Mary Cray, Kent. Con. 1187
GB8925702A 1988-11-15 1989-11-14 Method of ink jet recording and ink jet recording apparatus adapted therefor. Expired - Fee Related GB2227459B (en)

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DE69429221T2 (en) * 1993-07-28 2002-06-27 Canon Kk Ink jet recording device and ink jet recording method
DE19810061B4 (en) * 1997-04-09 2006-05-04 Hewlett-Packard Development Co., L.P., Houston Method and apparatus for reducing aerosol contamination in an inkjet printer
DE19914563A1 (en) 1999-03-31 2000-10-05 Eastman Kodak Co Method and apparatus for cleaning the outer surface of an endless conveyor belt of non-recording ink ejected from an ink jet recording apparatus
DE19914562A1 (en) 1999-03-31 2000-10-05 Eastman Kodak Co Endless conveyor belt for receiving non-recording ejected ink from an ink jet recording device
DE10016203A1 (en) * 2000-03-31 2001-10-11 Wincor Nixdorf Gmbh & Co Kg Device for cleaning the ink nozzles of an ink print head in an ink jet printer

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FR2639109B1 (en) 1996-08-02
DE3937860C2 (en) 1997-01-16
DE3937860A1 (en) 1990-05-17
GB2227459B (en) 1993-03-31
GB8925702D0 (en) 1990-01-04
FR2639109A1 (en) 1990-05-18

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