Spray head assembly, dispensing system, electrode sheet strip, and electrode
The disclosure relates to a nozzle assembly, a dispensing system, an electrode sheet strip, and an electrode. The nozzle assembly includes a lip member configured to have an annular body portion and a dam member at the center; and a cover plate configured to be connected to the lip member. The, dam component is recessed relative to a surface of the lip member connected to the cover plate, so that a reservoir is formed between the cover plate and the dam component. The reservoir is in fluid communication with a rectangular opening; and a recess is arranged on one of the two surfaces of the cover plate and the lip member facing each other. The recess is in fluid communication with the reservoir so that fluid can flow out of the reservoir through the recess in a strip shape.
1 . A nozzle assembly, comprising:
a lip member that has an annular body portion and a dam member at a center, the dam member extending from a bottom edge of a rectangular space surrounded by the annular body portion toward a top edge such that a rectangular opening is formed between a top edge of the dam member and the top edge of the rectangular space, the dam member extending an entire width of the rectangular opening in a transverse direction of the lip member, the rectangular opening being adapted to receive a fluid; and
a cover plate configured to be connected to the lip member, wherein the dam member is recessed relative to a surface of the lip member connected to the cover plate so that a reservoir is formed between the cover plate and the dam member, the reservoir being in fluid communication with the rectangular opening, and
a recess is provided on one surface of two surfaces of the cover plate and the lip member facing each other, the recess being in fluid communication with the reservoir so that the fluid can flow out from the reservoir through the recess in a strip shape, wherein the one surface forms the recess and faces another one of the two surfaces.
2 . The nozzle assembly according to claim 1 , wherein the recess is provided on a surface of the lip member facing the cover plate, and in the transverse direction, a width of the recess is less than or equal to a width of the dam member.
3 . The nozzle assembly according to claim 1 , wherein the recess is recessed by 50 to 150 μm with respect to the surface on which the recess is provided.
4 . The nozzle assembly according to claim 1 , wherein the dam member is recessed with respect to a surface on a side of the lip member opposite to the cover plate.
5 . The nozzle assembly according to claim 1 , further comprising: a boss provided on an outer edge of a side of the lip member opposite to the cover plate, for receiving a seal.
6 . The nozzle assembly according to claim 1 , further comprising a guide boss is provided on a bottom surface of the cover plate and/or a bottom surface of the lip member.
7 . The nozzle assembly according to claim 1 , wherein the cover plate and the lip member are fixed together by screws.
8 . A dispensing system, characterized by comprising:
a fluid supply assembly;
a metering assembly in a form of a volumetric cavity pump and configured to be in fluid communication with the fluid supply assembly to receive a fluid from the fluid supply assembly; and
a nozzle assembly in fluid communication with the metering assembly to receive the fluid from the metering assembly,
wherein the nozzle assembly is a nozzle assembly according to claim 1 .
9 . The dispensing system according to claim 8 , wherein the fluid supply assembly includes a feeding container that is configured to accommodate a fluid cartridge or to be connected with a pipe for supplying the fluid.
10 . The dispensing system according to claim 8 , wherein the metering assembly includes a driving gear and a driven gear.
11 . The dispensing system according to claim 10 , wherein the metering assembly includes:
a top plate having a top plate flow passage for receiving the fluid from the fluid supply assembly;
a bottom plate having a bottom plate flow passage in fluid communication with the rectangular opening of the nozzle assembly; and
a gear support plate located between the top plate and the bottom plate and having an aperture at a center for accommodating the driving gear and the driven gear.
12 . The dispensing system according to claim 11 , wherein respective gear shafts of the driving gear and the driven gear are inserted into corresponding bores of the bottom plate to provide positioning of the gear shafts.
13 . The dispensing system according to claim 11 , characterized in that: a clearance between the driving gear and the driven gear on one side of the metering assembly is in fluid communication with the top plate flow passage of the top plate, and a clearance between the driving gear and the driven gear on the other side of the metering assembly is in fluid communication with the bottom plate flow passage of the bottom plate.
14 . The dispensing system according to claim 11 , characterized in that: a sealing member is provided between the gear support plate and the bottom plate, the sealing member surrounding the aperture in the gear support plate.
15 . The dispensing system according to claim 11 , wherein the lip member of the nozzle assembly is connected to the bottom plate so that the top edge of the dam member is higher than an outlet of the bottom plate flow passage.
16 . The dispensing system according to claim 11 , characterized in that: a seal is provided between the lip member and the bottom plate, the seal having a rectangular central opening.
17 . The dispensing system according to claim 16 , wherein a width of the rectangular central opening is greater than or equal to a width of the rectangular opening, and a height of the rectangular central opening is greater than or equal to a distance from the top edge of the rectangular opening to a bottom edge of an outlet of the bottom plate flow passage of the bottom plate.
18 . The dispensing system according to claim 11 , wherein the bottom plate has a protrusion, in which an outlet of the bottom plate flow passage of the bottom plate is provided, the protrusion being adapted to be connected to the lip member.
19 . A method for dispensing a fluid onto a substrate using a dispensing system according to claim 8 , the substrate having a thin portion, wherein the method comprises a step of:
dispensing a fluid onto the thin portion of the substrate using the dispensing system.
20 . The method according to claim 19 , wherein the substrate is an electrode sheet for manufacturing an electrode of a cell, the electrode sheet having a thick body portion and a thin edge portion, the thin edge portion being located on a side of the thick body portion and continuous with the thick body portion, the method comprising a step of:
dispensing the fluid onto a surface of the thin edge portion, using the dispensing system, to produce an electrode sheet strip.
21 . The method according to claim 20 , wherein the method comprises:
feeding the electrode sheet to a slitting machine, and slitting the thin edge portion along a slitting path using the slitting machine; and
after the slitting, dispensing the fluid onto the surface of the thin edge portion, using the dispensing system, to produce the electrode sheet strip.
22 . The method according to claim 21 , wherein the slitting machine starts slitting at a certain distance from a leading end of the electrode sheet, and ends the slitting at a certain distance from a trailing end of the electrode sheet.
23 . The method according to claim 22 , wherein the thin edge portion of the electrode sheet is slit such that a width of a slit on the thin edge portion is suitable for the fluid from the dispensing system to completely penetrate the slit.
24 . The method according to claim 21 , wherein the slitting path is non-linear.
25 . The method according to claim 24 , wherein the thin edge portion is slit to form a plurality of electrode ears along the slitting path.
26 . An electrode sheet strip for manufacturing an electrode of a cell, wherein the electrode sheet strip is manufactured using a method according to claim 20 .
27 . The electrode sheet strip according to claim 26 , wherein the electrode sheet strip is cut into a plurality of sheet segments having a same shape along a width direction, the plurality of sheet segments being laminated together to constitute the electrode.
28 . The nozzle assembly according to claim 1 , wherein a depth of the recess, between the lip member and the cover plate, perpendicularly to the transverse direction is less than the width.
29 . The nozzle assembly according to claim 1 , wherein the reservoir is in fluid communication with the rectangular opening so that fluid can flow between the lip member and the cover plate from the rectangular opening.
30 . The nozzle assembly according to claim 1 , wherein the lip member is formed as one piece.