Membrane electrode assembly manufacturing device and manufacturing method thereof
10957931 ยท 2021-03-23
Assignee
Inventors
- Sung Hoon Jeong (Anyang-si, KR)
- Jongcheol Ahn (Seoul, KR)
- Yongmin Kim (Seongnam-si, KR)
- Ki Sub Lee (Yongin-si, KR)
Cpc classification
B32B37/0053
PERFORMING OPERATIONS; TRANSPORTING
Y02P70/50
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
Y02E60/50
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
International classification
Abstract
A membrane electrode assembly manufacturing device includes a loading apparatus for supplying an MEA roll on which a membrane electrode assembly is arranged by a predetermined pitch, a hot press apparatus for pressing a surface corresponding to the membrane electrode assembly of the MEA roll at a set temperature, a buffer apparatus to which the MEA roll is supplied to one side and exhausted at the other side, and for performing a buffer function of absorbing a difference between supply and exhaustion, and a cutting apparatus for cutting a portion of the membrane electrode assembly arranged at the MEA roll.
Claims
1. A membrane electrode assembly manufacturing method, the method comprising: loading an MEA (membrane-electrode assembly) roll on which a membrane electrode assembly is arranged; hot pressing an area corresponding to the membrane electrode assembly arranged on the loaded MEA roll; cutting the hot pressed membrane electrode assembly arranged on the loaded MEA roll; unloading the cut membrane electrode assembly to stack it on a stack apparatus; detecting a pitch of the membrane electrode assembly disposed on the loaded MEA roll; and adjusting a pitch of a hot plate of a hot press apparatus according to the detected pitch of the membrane electrode assembly, wherein the hot press apparatus includes: the hot plate for pressing the membrane electrode assembly at a set temperature; a position detecting sensor for detecting the pitch of the membrane electrode assembly disposed on the loaded MEA roll; and a variable pitch portion configured to vary a position of the hot plate according to the pitch of the membrane electrode assembly detected by the position detecting sensor, and wherein the hot plate includes: a variable hot plate and a reference hot plate disposed in a moving direction of the loaded MEA roll by a predetermined pitch, wherein the variable pitch portion adjusts a position of the variable hot plate with reference to the reference hot plate, and the reference hot plate and the variable hot plate press the membrane electrode assembly at the same time.
2. The method of claim 1, further comprising: cutting the hot pressed membrane electrode assembly according to the detected pitch of the membrane electrode assembly.
3. The method of claim 2, further comprising: detecting a measurement of the cut membrane electrode assembly; and classifying and loading the cut membrane electrode assembly according to the detected measurement of the cut membrane electrode assembly.
4. The method of claim 1, further comprising: temporarily storing the loaded MEA roll on which the hot pressed membrane electrode assembly is arranged.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) While the drawings are described in connection with what is presently considered to be practical exemplary embodiments, it is to be understood that the disclosure is not limited to the disclosed drawings.
(2)
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DETAILED DESCRIPTION
(8) In the following detailed description, only certain exemplary embodiments of the present disclosure have been shown and described, simply by way of illustration. As those skilled in the art would realize, the described embodiments may be modified in various different ways, all without departing from the spirit or scope of the present disclosure.
(9) A part that is irrelevant to the description will be omitted to clearly describe the present disclosure, and the same or similar elements will be designated by the same or similar reference numerals throughout the specification.
(10) The size and thickness of each configuration shown in the drawings may be shown for better understanding and ease of description, but the present disclosure is not limited thereto, and the thicknesses of portions and regions may be exaggerated for clarity.
(11) Further, in the following detailed description, names of constituent elements, which are in the same relationship, are divided into first, second, and the like, but the present disclosure is not limited to the order in the following description.
(12) Throughout the specification and the claims, unless explicitly described to the contrary, the word comprise and variations such as comprises or comprising will be understood to imply the inclusion of stated elements but not the exclusion of any other elements.
(13)
(14) Referring to
(15) The MEA roll 199 may be wound at the unwinder roller 100, and the membrane electrode assembly 110 may be arranged on the MEA roll 199 by a predetermined pitch. The membrane electrode assembly 110 may have an electrolyte film on which electrodes and gaskets are formed. A detailed structure of the membrane electrode assembly 110 is well-known and therefore a detailed description thereof will be omitted.
(16) The rewinder roller 175 may be disposed by a predetermined distance with the unwinder roller 100. The hot press apparatus 610, the buffer apparatus 615, the cutting apparatus 620, and the unloading apparatus may be sequentially disposed between the unwinder roller 100 and the rewinder roller 175, and the order can be varied.
(17) The roll film 105 may be attached on one side surface of the MEA roll 199. The roll film 105 may be detached before entering the hot press apparatus 610, and the MEA roll 199 from which the roll film 105 is detached may enter the hot press apparatus 610.
(18) Protection film rollers 162 may be respectively disposed at an inlet side and an outlet side of the hot press apparatus 610, and the protection film 164 may be attached on both side surfaces of the MEA roll 199 and detached from both side surfaces of the MEA roll 199 at the outlet side.
(19) The meandering controller 160 may control a moving direction of the roll so that the MEA roll 199 normally enters, and the first position detecting sensor 115a may detect a pitch of the membrane electrode assembly 110 disposed on the MEA roll 199.
(20) In the hot press apparatus 610, three hot plates 135 may be disposed upwardly and downwardly by a predetermined pitch, and the press cylinder 125 may be disposed to press the hot plates 135 through the rod 130. Further, the variable pitch portion 120 adjusting pitches of forward and rearward hot plates of the three hot plates 135 is disposed in the hot press apparatus 610.
(21) The variable pitch portion 120 may control a position of at least one hot plate 135 of the hot plates 135 according to the pitch of the membrane electrode assembly 110, therefore the hot plates 135 can press the membrane electrode assembly 110 more precisely.
(22) The buffer apparatus 615 may be disposed rearward of the hot press apparatus 610. The buffer apparatus 615 may temporarily store the MEA roll 199 drawn out from the hot press apparatus 610 and may uniformly supply the MEA roll 199 to the cutting apparatus 620.
(23) The buffer apparatus 615 may include the reference roller 145 disposed at an upper portion, the buffer roller 150 disposed at a lower portion, and the buffer roller moving portion 155 disposed to move the buffer roller 150 upward and downward.
(24) The meandering controller 160 and the second position detecting sensor 115b may be disposed rearward of the buffer apparatus 615, and the cutting apparatus 620 may be disposed to cut the membrane electrode assembly 110 disposed on the MEA roll 199.
(25) The second position detecting sensor 115b may be disposed forward of the cutting apparatus 620. The second position detecting sensor 115b may detect a pitch of the membrane electrode assembly 110 formed on the MEA roll 199, and the cutting apparatus 620 may operate according to the detected pitch.
(26) The cutting apparatus 620 may include the cutting film roller 165 supplying the cutting protection film 170 to the surface of the lower portion of the MEA roll 199 and the cutter (500 in
(27) The unloading gripper 190 may grip and move the membrane electrode assembly 110 cut by the cutting apparatus 620, and the measurement detecting sensor 185 may detect measurements and a shape of the membrane electrode assembly 110 that is moved by the unloading gripper 190.
(28) Further, the membrane electrode assembly 110 may be classified as a membrane electrode assembly within a predetermined condition and a membrane electrode assembly above the predetermined condition to be stacked on the stack apparatus 630. The stack apparatus 630 may include the lifting portion 180 lifting the stacked membrane electrode assembly 110.
(29) In an exemplary embodiment of the present disclosure, the controller 10 controls the variable pitch portion 120 (and 140) according to the pitch of the membrane electrode assembly 110 detected by the first position detecting sensor 115a, and performs a hot pressing process.
(30) Further, the controller 10 may control the buffer roller moving portion 155 to control the position of the buffer roller 150 upwardly and downwardly, make the MEA 199 having a suitable tension, and store and temporarily store the MEA roll 199 at the buffer unit.
(31) The controller 10 also may control the cutting apparatus 620 according to the pitch of the membrane electrode assembly 110 detected by the second position detecting sensor 115b to precisely cut the membrane electrode assembly 110 at the MEA roll 199.
(32) The controller 10 may control the unloading gripper 190 according to a measurement characteristic detected by the measurement detecting sensor 185 to separate the cut the membrane electrode assembly 110 and stack it on the stack apparatus 630.
(33) The controller 10 may be realized as at least one microprocessor operated by a predetermined program, and the predetermined program can be programmed to include a set of instructions to perform steps in a method according to the exemplary embodiment of the present disclosure, which will be described later in more detail.
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(35) Referring to
(36) The variable pitch portion 120 may be disposed to adjust a distance between the variable hot plate 135a and the reference hot plate 135b by pulling or pushing the variable hot plate 135a using a rotational force of a motor.
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(38) Referring to
(39) The buffer roller moving portion 155 may be disposed at the lower end portion of the rail, and vary the upward and downward position of the buffer roller 150. Accordingly, the length of the MEA roll 199 disposed between the reference roller 145 and the buffer roller 150 may be variable.
(40)
(41) Referring to
(42) The cutter 500 may be disposed on the lower surface of the mount bracket 510, and the up-down member 515 may be disposed on the lower portion of the mount bracket 510 by a predetermined distance. The up-down member 515 may be disposed to move upwardly and downwardly by the up-down driver 520.
(43) The MEA roll 199 may be disposed between the up-down member 515 and the cutter 500, and a cutting protection film 525 may be disposed between the MEA roll 199 and the up-down member 515.
(44) When the up-down driver 520 lifts the up-down member 515, the up-down member 515 may elevate the MEA roll 199 with the cutting protection film 525, and the membrane electrode assembly 110 of the MEA roll 199 may be cut by the cutter 500.
(45)
(46) Referring to
(47) The loading/unloading apparatus may include at least one of the unwinder roller 100, the rewinder roller 175, and the unloading gripper 190 illustrated in
(48) The buffer apparatus may include at least one of the reference roller 145, the buffer roller 150, the rail 300, and the buffer roller driver 155 illustrated in
(49) The inspection apparatus 625 may include at least one of the first and second position detecting sensors 115a and 115b and the measurement detecting sensor 185, and the stack apparatus 630 may include at least one of the lifting portion 180 with which the membrane electrode assembly 110 is classified and stacked.
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(51) Referring to
(52) A pitch of the membrane electrode assembly 110 may be detected by the first position detecting sensor 115a at step S710.
(53) A position of the hot plate 135 may be adjusted according to the detected pitch of the membrane electrode assembly 110 at step S720. Here, the variable pitch portion 120 may control at least one position of the hot plates 135 according to the pitch of the membrane electrode assembly 110.
(54) The membrane electrode assembly 110 may be hot pressed by using the hot plate at step S730. Here, hot plates 135 having varied pitches may press the membrane electrode assembly 110.
(55) The MEA roll 199 may be drawn out from the hot press apparatus 610 and be temporarily stored at step S740. The buffer roller moving portion 155 may move the buffer roller 150 downwardly to temporarily store the MEA roll 199 drawn out from the hot press apparatus 610 and maintain tension of the MEA roll 199.
(56) The second position detecting sensor 115b may detect the pitch of the membrane electrode assembly 110 formed on the MEA roll 199 drawn out from the buffer apparatus 615 at step S750, and the cutting apparatus 620 may cut the membrane electrode assembly 110 at step S760.
(57) The measurement detecting sensor 185 may detect measurements or the shape of the cut membrane electrode assembly 110 at step S770. The unloading gripper 190 then may classify the membrane electrode assembly 110 according to the detected measurements or shape and stacks it on the stack apparatus at step S780.
(58) While this disclosure has been described in connection with what is presently considered to be practical exemplary embodiments, it is to be understood that the disclosure is not limited to the disclosed embodiments, but, on the contrary, is intended to cover various modifications and equivalent arrangements included within the spirit and scope of the appended claims.