This application is based upon and claims the benefit of priority from Japanese Patent Application No. 2018-139127, filed Jul. 25, 2018, the entire contents of which are incorporated herein by reference.
Embodiments described herein relate generally to an ink jet head and an ink jet recording device.
In ink jet heads used in various ink jet recording devices, an ink jet head is proposed which includes a flexible cable for electrical connection with an external device. The flexible cable is thin and flexible, and one end is connected through a connector to an electronic substrate which is housed in a housing of a head, for example. The other end of the flexible cable is connected to the external device, for example. When an actuator is operated through the flexible cable by an electrical signal input from the external device, the ink jet head discharges ink droplets. Since the flexible cable is thin and flexible, the routing space of the cable can be reduced. Thus, the entire device including the external device as well as the head can be reduced in size. In some of such ink jet heads, a cable outlet or a joint is sealed by a sealing such as an adhesive, so as to prevent that the electronic substrate in the housing is broken by the infiltration of ink. However, if the surface of the cured sealing has a keen end portion, the flexible cable may be damaged when the flexible cable is attached to an outer substrate.
Embodiments provide an ink jet head and an ink jet recording device in which a flexible cable can be prevented from being damaged.
In general, according to one embodiment, an inkjet head includes: a cover including an opening; a flexible cable extending from the opening toward an outside of the cover and having a rigidity lower than the cover; a protection member configured to have rigidity higher than the flexible cable, arranged between the flexible cable and the opening of the cover, protruding toward an outside of the opening of the cover, while both end portions of an outer end edge of the opening are inclined or curved in a direction in which the flexible cable extends from the opening; and a sealing arranged in the opening in which the flexible cable and the protection member are arranged.
Hereinafter, an ink jet head 1 according to a first embodiment will be described with reference to
As illustrated in
As illustrated in
A plurality of passage tubes such as a supply tube 13a and a recovery tube 13b are connected to the liquid discharge part 10. In the supply tube 13a and the recovery tube 13b, for example, one ends which are arranged on the lower side in
As illustrated in
For example, in the present embodiment, the cover 20 includes a first part 21, a second part 22 arranged opposite to the first part 21, and a third part 23 arranged above the first part 21 and the second part 22.
The first part 21 integrally includes a rectangular first wall 21a arranged on the front side of the substrate unit 30 and first side walls 21b extending rearward from both side edges of the first wall 21a.
The second part 22 integrally includes a rectangular second wall 22a arranged on the rear surface of the substrate unit 30 and second side walls 22b extending forward from both side edges of the second wall 22a.
The third part 23 integrally includes a rectangular third wall 23a which covers the upper side of a circuit substrate 31 (to be illustrated) and a third peripheral wall 23b extending downward from the outer peripheral edge of the third wall 23a. A plurality of tube outlets 23d which are circular through holes through which the supply tubes 13a and the recovery tubes 13b are drawn out from the inside of the cover 20 and a plurality of cable outlets 23e through which the flexible cables 32 are drawn out are formed in the third wall 23a.
As illustrated in
The first part 21, the second part 22, and the third part 23 are joined in such a manner that the end edges 21c, 22c, and 23c are butted to each other to be assembled, and spaces between the end edges 21c, 22c, and 23c are sealed by the sealing 24.
As illustrated in
The substrate unit 30 includes the rectangular plate-shaped circuit substrate 31 which is erected on the internal space of the cover 20, the flexible cable 32 connected to one end side of the circuit substrate 31, and the protection plates 33 arranged on both surfaces of the flexible cable 32.
The circuit substrate 31 is supported and erected on the liquid discharge part 10. Various electronic components such as a drive IC are mounted in the circuit substrate 31. For example, the circuit substrate 31 is connected to the liquid discharge part 10 through a flexible substrate. A connector base 31a connected with the flexible cable 32 is mounted at a predetermined place near the end edge on the upper side of the circuit substrate 31.
The flexible cable 32 is in a band shape having a predetermined width and includes a plurality of wires arranged along a longitudinal direction. The flexible cable 32 includes a cable connector 32a on one end side.
The flexible cable 32 is connected to the circuit substrate 31 in such a manner that the cable connector 32a arranged on one end side is inserted and engaged to the connector base 31a of the circuit substrate 31. In the flexible cable 32, the cable connector 32a on one end side is arranged in the cover 20, and the other side is drawn out and extends through the cable outlet 23e toward the outside of the cover 20 in a second direction. The other end side of the flexible cable 32 is connected to the outer substrate arranged at a predetermined place outside the cover 20. The flexible cable 32 is thin and flexible and is arranged to a predetermined connection destination arranged outside the cover 20 according to a deformation such as a bending or torsion.
In the cable outlet 23e, the flexible cable 32 is sandwiched between a pair of protection plates 33. That is, the pair of protection plates 33 is stuck through patches such as an adhesive tape between the inner edge of the cable outlet 23e and the both surfaces of the flexible cable 32. The protection plate 33 has a predetermined thickness and is a sheet-like member configured of a resin material such as PI and PET to have rigidity higher than the flexible cable 32. Each protection plate 33 has a predetermined height dimension to reach the inside and outside of the outlet 23e and has a width dimension larger than the width dimension of the flexible cable 32 in the first direction. Therefore, the side edge portions on both sides of the flexible cable 32 are covered with the pair of protection plates 33.
The protection plate 33 includes a protrusion part protruding to the outside of the cover 20, and the end portion outside the cover 20 is in a trapezoidal shape. That is, the both end portions 33b of the end edge 33a of the protection plate 33 outside the cover 20 include edge portions which are inclined in the first direction such that the central portion in the width direction is positioned more outward of the cover 20 than the both end portions. The edge portions of the both end portions 33b are inclined with respect to the first direction along the width direction of the slit-shaped cable outlet 23e which is the width direction of the flexible cable 32 and the second direction along the extending direction in which the flexible cable 32 is drawn out. For example, a shape such as an inclination angle or a dimension ratio of the both end portions 33b of the protection plate 33 is set according to the arrangement condition of the flexible cable 32. For example, the inclination angle is set to be 20 to 70° with respect to the first direction of the both end portions 33b.
The flexible cable 32 has an outer shape in which the end edge 33a is gently displaced without no keen portion or corner. Therefore, for example, if the flexible cable 32 is pulled and bent outside the cover 20, the flexible cable 32 is pressed against the end edge 33a of the protection plate 33. However, since the edge portions of the both end portions 33b are inclined, in the flexible cable 32, the pressure can be dispersed such that the protection plate 33 receives the pressure at wider areas, and thus the pressure can be released stepwise. Therefore, the flexible cable 32 is hardly broken.
In the ink jet head 1 configured as described above, for example, when the driving voltage is applied by the drive IC mounted on the circuit substrate 31, the actuator 11 is driven, and droplets are discharged from the nozzle.
For example, the ink jet head 1 is provided in an ink jet recording device 100 illustrated in
Hereinafter, the ink jet recording device 100 including the ink jet head 1 will be described with reference to FIG. 7. The ink jet recording device 100 includes a housing 111, a medium supply part 112, an image forming part 113, a medium discharge part 114, a conveyance device 115 as a support device, and a control part 116.
The ink jet recording device 100 is an ink jet printer which performs image forming processing on a paper P by discharging a liquid such as ink while conveying, for example, the paper P as a recording medium which is a discharging object along a predetermined conveyance path A1 which reaches from the medium supply part 112 through the image forming part 113 to the medium discharge part 114.
The medium supply part 112 includes a plurality of paper feeding cassettes 112a. The medium discharge part 114 includes a paper discharging tray 114a. The image forming part 113 includes a support part 117 which supports papers and a plurality of head units 130 oppositely arranged above the support part 117. The support part 117 includes a conveyance belt 118 provided in a loop shape in a predetermined area for forming an image, a support plate 119 which supports the conveyance belt 118 from the back side, and a plurality of belt rollers 120 provided on the back side of the conveyance belt 118.
The head unit 130 includes the ink jet head 1 which is a plurality of ink jet heads, a plurality of supply tanks 132 which are liquid tanks mounted on respective ink jet heads 1, a connection passage 135 which connects the ink jet head 1 and the supply tank 132, and a circulation pump 134 which is a circulation part. The head unit 130 is a circulation head unit which circulates liquid.
In the present embodiment, the ink jet head 1 including four colors of cyan, magenta, yellow and black is provided as the ink jet head 1, and the supply tank 132 is provided as the supply tank 132 which stores ink of each color. The supply tank 132 is connected to the ink jet head 1 by the connection passage 135. The connection passage 135 includes a supply passage 135a which is connected to the supply tube 13a of the ink jet head 1 and a recovery passage 135b which is connected to the recovery tube 13b of the ink jet head 1.
A negative pressure control device such as a pump (not illustrated) is connected to the supply tank 132. The inside of the supply tank 132 is negative-pressure controlled to correspond to a water head value of the ink jet head 1 and the supply tank 132 by the negative pressure control device, so that the ink supplied to each nozzle of the ink jet head 1 is formed into a meniscus having a predetermined shape.
The circulation pump 134 is a liquid feed pump configured as a piezoelectric pump, for example. The circulation pump 134 is connected to the control part 116 by wires and is configured to be controllable by the control of a central processing unit (CPU) 116a. The circulation pump 134 circulates liquid through a circulation passage including the ink jet head 1 and the supply tank 132.
The conveyance device 115 conveys the paper P along the conveyance path A1 which reaches from the paper feeding cassette 112a of the medium supply part 112 through the image forming part 113 to the paper discharging tray 114a of the medium discharge part 114. The conveyance device 115 includes a plurality of guide plate pairs 121a to 121h which are arranged along the conveyance path A1 and a plurality of conveyance rollers 122a to 122h. The conveyance device 115 supports the paper P to the ink jet head 1 in a relatively movable manner.
The control part 116 includes a CPU 116a as one example of a processor, a read only memory (ROM) which stores various programs or the like, a random access memory (RAM) which temporarily stores various variable data, image data, or the like, and an interface part which inputs data from the external part and outputs data to the external part.
In the ink jet head 1 and the ink jet recording device 100, while driving is performed which discharges liquid from the nozzle, the control part 116 applies a driving voltage to a driving element of the actuator 11 to operate the actuator 11 and discharge ink droplets from the nozzle.
In the ink jet head 1 configured as described above, the ink reaches from the supply tank 132 illustrated in
In the ink jet head 1 and the ink jet recording device 100 according to the present embodiment, since the protection plate 33 is provided between the sealing 24 and the flexible cable 32, it can be prevented that the flexible cable 32 is broken by a keen end portion of the sealing 24, for example, when the flexible cable 32 is pulled or bent. In the protection plate 33, since the edge portion of the both end portions 33b is inclined, stress can be dispersed stepwise. Therefore, the flexible cable 32 is hardly broken.
Since the protection plate 33 is only a part corresponding to the cable outlet 23e, the material can be reduced in size, and the flexibility of the flexible cable 32 can be protected compared to a configuration in which the entire flexible cable 32 is covered or thickened, for example.
Since the protection plate 33 has a width dimension larger than the flexible cable 32, a positional accuracy during sticking can be alleviated.
The invention is not limited to the above-described embodiment. The components can be modified to be embodied in the implementation phase within the scope of the invention.
In the first embodiment, the example is described in which the end portion is in a trapezoidal shape. However, the invention is not limited thereto.
In the first embodiment, the example is described in which the protection plate 33 has a uniform thickness in the first direction. However, the invention is not limited thereto.
In the first embodiment, the example is described in which the protection plate 33 has a height dimension reaching the internal space of the cover 20. However, the invention is not limited thereto.
In the embodiment, the same effect can be obtained as in the first embodiment. That is, the flexible cable 32 can be protected from the keen end edge of the sealing 24 by the protection plate 433, and the end edge of the protection plate 433 is formed in a curved or inclined shape. Thus, when the flexible cable 32 is twisted or bent, the force applied to the flexible cable 32 can be dispersed by the protection plate 433 to prevent the breakage of the flexible cable 32.
In the ink jet head 1C according to the embodiment, the inner end edge of the protection plate 433 remains in the sealing 24 and has a positional relation of not reaching the inside of the cover 20. Thus, it can be prevented that the adhesive configuring the sealing 24 is infiltrated to the inside through the protection plate 433.
In the above-described embodiments, the example is described in which the protection plates 33 are arranged on the both surfaces of the flexible cable 32. The invention is not limited thereto, and the protection plate may be stuck to only one-side surface.
The liquid to be discharged is not limited to ink for printing. For example, a device which discharges liquid containing conductive particles for forming a wire pattern of a printed wiring substrate may be used.
For example, the ink jet head may have a structure in which a vibration plate is deformed by a static electricity to discharge ink droplets, a structure in which thermal energy such as a heater is used to discharge ink droplets from the nozzle, or the like.
In the embodiments, the example is described in which the ink jet head is used for an ink jet recording device such as the ink jet recording device, but is not limited thereto. For example, the ink jet head can be also used for 3D printers, industrial manufacturing machines, and medical applications, so as to reduce in size, weight, and cost.
While certain embodiments have been described, these embodiments have been presented by way of example only, and are not intended to limit the scope of the inventions. Indeed, the novel embodiments described herein may be embodied in a variety of other forms; furthermore, various omissions, substitutions and changes in the form of the embodiments described herein may be made without departing from the spirit of the inventions. The accompanying claims and their equivalents are intended to cover such forms or modifications as would fall within the scope and spirit of the inventions.
Number | Date | Country | Kind |
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2018-139127 | Jul 2018 | JP | national |