PRINTHEAD WITH TWO PRINTING PLATES FOR PRODUCING AT LEAST ONE GRIDLINE ON AN UPPER SURFACE OF A TARGET SUBSTRATE IN FORWARD AND BACKWARD DIRECTIONS
20180339506 ยท 2018-11-29
Assignee
- Hanwha Q CELLS Malaysia Sdn. Bhd. (Cyberjava, Selangor, MY)
- HANWHA Q CELLS GMBH (Bitterfeld-Wolfen, DE)
Inventors
Cpc classification
B41F15/46
PERFORMING OPERATIONS; TRANSPORTING
Y02E10/50
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
B41M1/12
PERFORMING OPERATIONS; TRANSPORTING
B41P2215/50
PERFORMING OPERATIONS; TRANSPORTING
B41F15/34
PERFORMING OPERATIONS; TRANSPORTING
International classification
B41M1/12
PERFORMING OPERATIONS; TRANSPORTING
B41F15/34
PERFORMING OPERATIONS; TRANSPORTING
B41F15/46
PERFORMING OPERATIONS; TRANSPORTING
Abstract
Printheads may be utilized to produce at least one gridline on an upper surface of a target substrate, in particular for producing a pattern for a solar cell structure, wherein the printheads may enable a printing in the forward and an opposite backward direction at the same time to, for example, increase the relative speed the printing procedure and to improve the screen or stencil printing process.
Claims
1. A printhead for producing a plurality of parallel gridlines, on an upper surface of a target substrate for producing a pattern for a solar cell structure by screen or stencil printing, the printhead having at least one inlet port, at least one dispensing orifice, and one or more flow channels communicating between the at least one inlet port and the at least one dispensing orifice, the printhead further comprising at least two printing plates that are placed in independently definable angles relative to the upper surface of the target substrate, wherein the at least two printing plates are independently movable between a printing position and a stop position, and wherein at least a first printing plate and at least a second printing plate are arranged at opposite sides of the at least one dispensing orifice, and wherein, in the printing position, the printing plates are arranged closer to the upper surface of a target substrate than in the stop position.
2. The printhead according to claim 1, further comprising at least one controller, wherein the at least one controller is configured and adapted to determine movement direction of the printhead, and wherein movement of the printing plates from the printing position to the stop position and from the stop position to the printing position is controlled by the at least one controller based on a detected printing position.
3. The printhead according to claim 1, wherein, in case where the at least the first printing plate is moved to or in the printing position, the at least the second printing plate is moved to or in the stop position reciprocally, and wherein movement between the printing position and the stop position of the printing plates is actuated pneumatically, hydraulically and/or by at least one electric motor that is triggered by the printing position, which is triggered by the at least one controller.
4. The printhead according to claim 1, further comprising: a material feed mechanism for supplying extrusion material to the inlet port of the printhead such that the extrusion material is selectively forced through the at least one flow channel and exits through the at least one dispensing orifice.
5. The printhead according to claim 1, wherein the at least two printing plates are arranged in an adjustable angle in a range of 30 to 70relative to the upper surface of the target substrate, wherein the at least two printing plates have a thickness in a range of 0.05 to 0.5 mm, and wherein at least one of the at least two printing plates comprises or consists of stainless steel.
6. The printhead according to claim 1, further comprising: at least one side wiper arranged at or adjacent to at least one of the at least two printing plates, wherein the at least one side wiper is configured and adapted to create a limited area for the movement and circulation of extrusion material, to provide an effective roll of the extrusion material at both printing directions, and to minimize hardening of extrusion material on the upper surface of the target substrate.
7. The printhead according to claim 1, further comprising: a transport mechanism for supporting the printhead and/or the target substrate, and for moving the printhead relative to the target substrate such that extrusion material exiting the at least one dispensing orifice forms the at least one gridline on the upper surface of the target substrate.
8. The printhead according to claim 7 further comprising: a controller for controlling a material feed mechanism and the transport mechanism such that: during a first time period, the material feed mechanism forces an extrusion material through the at least one dispensing orifice while the transport mechanism moves the printhead over the target substrate in a first direction such that first structures are formed on the target substrate starting from or adjacent to a first side edge of the target substrate, wherein at least the first printing plate is in the printing position and at least the second printing plate is in the stop position, and during a second time period, the material feed mechanism forces the extrusion material through the at least one dispensing orifice, while the transport mechanism moves the printhead over the target substrate in a second direction opposite to the first direction such that the first structure and/or second structures are formed on the target substrate, wherein the at least the second printing plate is in the printing position and at least the at least the first printing plate is in the stop position.
9. The printhead according to claim 1, further comprising a connection to integrated software of a printing machine that is configured to indicate a present printing mode, wherein the software is capable of triggering the at least two printing plates to start the movement according to the position and perform the function continuously.
10. Use of a printhead according to claim 1 for producing and/or within production of a solar cell.
11. A method for producing a plurality of parallel gridlines on an upper surface of a target substrate for producing a pattern solar cell structure by screen or stencil printing using a printhead, wherein the method comprises: during a first time period, causing a material feed mechanism to force a gridline material through at least one dispensing orifice while causing a transport mechanism to move the printhead relative to the target substrate such that first structures are formed on the target substrate starting from or adjacent to a first side edge of the target substrate in a first direction, wherein a first printing blade is in the printing position and a second printing blade is in the stop position; and during a second time period following the first time period, causing the material feed system to force said the gridline material through the at least one dispensing orifice while causing the transport mechanism to move the printhead relative to the target substrate in a second direction opposite to the first direction such that first and/or second structures are formed on the target substrate, wherein the second printing blade is in the printing position and the first printing blade is in the stop position.
12. A printhead for producing at least one gridline on an upper surface of a target substrate by screen or stencil printing, the printhead comprising: at least one inlet port; at least one dispensing orifice; one or more flow channels communicating between the at least one inlet port and the at least one dispensing orifice; and at least two printing blades that are placed in independently definable angles relative to the upper surface of the target substrate, wherein the at least two printing blades are independently movable between a printing position and a stop position, and wherein at least a first printing blade and at least a second printing blade are arranged at opposite sides of the at least one dispensing orifice, and wherein, in the printing position, the printing blades are arranged closer to the upper surface of a target substrate than in the stop position.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0031] The foregoing aspects and many of the attendant advantages of this invention will become more readily appreciated as the same become better understood by reference to the following detailed description, when taken in conjunction with the accompanying drawings, wherein:
[0032]
[0033]
DETAILED DESCRIPTION
[0034] The various embodiments will be described in detail with reference to the accompanying drawings. Wherever possible, the same reference numbers will be used throughout the drawings to refer to the same or like parts. References made to particular examples and implementations are for illustrative purposes, and are not intended to limit the scope of the invention or the claims.
[0035] While illustrative examples are illustrated and described below, it will be appreciated that various changes can be made therein without departing from the spirit and scope of the disclosure. In that regard, the detailed description set forth below, in connection with the accompanying drawings is intended only as a description of various examples of the disclosed subject matter and is not intended to represent the only examples. Each example described in this disclosure is provided merely as an example or illustration and should not be construed as preferred or advantageous over other examples. The illustrative examples provided herein are not intended to be exhaustive or to limit the disclosure to the precise forms disclosed. Similarly, any steps described herein may be interchangeable with other steps, or combinations of steps, in order to achieve the same or substantially similar result.
[0036]
[0037] Two printing plates or blades 9, 11, which are placed in independently definable angles a relative to an upper surface of a target substrate 15, are independently movable between a printing position and a stop position. In
[0038] With a printhead according to
[0039] The movement between the printing position and the stop position of the printing plates 9, 11 is actuated pneumatically by pneumatic cylinders 17, 19 in the examples shown. Of course, other types of actuation of the printing plates 9, 11 are possible and the pneumatic cylinders shown are just one possible type of realization.
[0040] Not shown in
[0041] Furthermore, the transport mechanism of the present disclosure for supporting the printhead and/or the target substrate, and for moving the printhead relative to the target substrate is not shown in
[0042] It is thereby obvious for those skilled in the art that several transport mechanisms are suitable for fulfilling the requirements of screen or stencil printing with a printhead 1 according to the present disclosure.
[0043] The features of the present invention disclosed in the description above and in the claims can be used for implementing the invention in its different embodiments both individually and in every possible combination thereof. The preceding description of the disclosed embodiments is provided to enable any person skilled in the art to make or use the present invention. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the generic principles defined herein may be applied to other embodiments without departing from the spirit or scope of the invention. Thus, the present invention is not intended to be limited to the embodiments shown herein but is to be accorded the widest scope consistent with the following appended claims and the principles and novel features disclosed herein.