The present invention relates to a paper folding device. Specifically, the present invention relates to a paper folding device suitable for a bag making machine for manufacturing an envelope.
Conventionally, a paper folding device (for example, Patent Document 1) that folds a medium such as a paper sheet is configured as follows: the paper sheet is conveyed, a leading end side of the paper sheet is inserted into a paper sheet insertion space (diverging path), by continuing conveyance on a trailing end side of the paper sheet even after the leading end of the paper sheet abuts a stopper provided in the paper sheet insertion space and is prevented from proceeding, the paper sheet is bent outside the paper sheet insertion space to form a curved portion, the curved portion is sandwiched between a pair of rollers and pulled in, and the paper sheet is folded over to fold the medium.
Patent Document 1: Japanese Patent Laid-open Publication No. 2003-312939
Conventionally, in a buckle-folding type paper folding device including a folding tray, when a front surface portion 101 illustrated in
However, in the paper folding device provided with the stopper as in the technique disclosed in Patent Document 1 described above, it is necessary to adjust a stopper position in accordance with various folding specifications, and when the stopper position is adjusted, it is necessary for an operator to manually adjust the stopper position or to provide an automatic moving mechanism of the stopper in the device. In a case where the operator manually adjusts the stopper position, the operation is complicated and the usability is not good. In addition, in a case where the automatic movement mechanism of the stopper is provided in the device, the operability is good, but the cost is high.
Furthermore, in the technique disclosed in Patent Document 1, in the case of conveying and folding a paper sheet to which a glue is applied, there is a possibility that the glue adheres to the inside of a folding mechanism such as a stopper, and adversely affects the quality of a product.
In view of the above-described problems in the conventional paper sheet folding device, an object of the present invention is to provide a paper folding device that prevents wrinkles from being generated in a folded piece portion, that can be configured simply and inexpensively without complicating a structure, and that has good operability, and that does not cause an adverse effect on the quality of a product due to adhesion of glue to the inside of a folding mechanism such as a stopper even when a paper sheet to which glue is applied is conveyed and folded.
In order to achieve the above object, the invention recited in claim 1 is a paper folding device that folds a planar paper sheet while conveying the paper sheet along a paper sheet conveyance surface, the paper folding device including: a pair of first conveyance rollers disposed on an upstream side in a paper sheet conveyance direction; a pair of second conveyance rollers disposed on a downstream side in the paper sheet conveyance direction; a switching gate plate installed on the paper sheet conveyance surface between both pairs of the rollers; a folding plate disposed above the switching gate plate; and a control unit that controls an operation of an entire device, wherein the switching gate plate is switchable between a first guide position at which the switching gate plate interferes with the conveyed paper sheet and guides a leading end portion of the paper sheet upward so as to pass through an upper surface of an upper roller of the pair of second conveyance rollers and a second guide position at which the switching gate plate guides the leading end portion of the paper sheet toward a nip portion of the pair of second conveyance rollers along the paper sheet conveyance surface, the folding plate is configured to be movable in a vertical direction in a substantially horizontal state, and is switchable between a folding position close to the switching gate plate disposed at the second guide position and a retracting position retracted at a predetermined interval from the switching gate plate, and the control unit performs control to, after guiding the leading end portion of the paper sheet to be conveyed by the switching gate plate disposed at the first guide position so as to pass through the upper surface of the upper roller of the pair of second conveyance rollers by a predetermined amount, switch the switching gate plate to the second guide position, and then lower the folding plate disposed at the retracting position to the folding position in a substantially horizontal state so as to sandwich the paper sheet on the switching gate plate, thereby folding back the leading end portion of the paper sheet along a surface of the upper roller of the pair of second conveyance rollers.
According to the invention recited in claim 2, in the paper folding device recited in claim 1, the control unit performs control such that after the leading end portion of the paper sheet is folded back by lowering the folding plate, a leading end fold-back portion of the paper sheet after the leading end portion of the paper sheet is folded back is further conveyed toward the nip portion of the pair of second conveyance rollers by the pair of first conveyance rollers, and the leading end fold-back portion of the paper sheet is sandwiched and conveyed by the nip portion of the pair of second conveyance rollers to press and fold the leading end fold-back portion of the paper sheet.
According to the invention recited in claim 3, in the paper folding device recited in claim 2, the switching gate plate is further switchable upward toward the pair of first conveyance rollers as a third guide position, the pair of first conveyance rollers and the pair of second conveyance rollers are configured to be able to perform forward rotation and reverse rotation, and the control unit performs control to retract the folding plate to the retracting position and switch the switching gate plate upward toward the pair of first conveyance rollers as the third guide position after the pair of second conveyance rollers press the leading end fold-back portion of the paper sheet, then switch the switching gate plate to the second guide position to guide the paper sheet along the paper sheet conveyance surface toward a nip portion of the pair of first conveyance rollers after guiding a rear end portion of the paper sheet upward so as to pass through an upper surface of an upper roller of the pair of first conveyance rollers by a predetermined amount by reversely rotating the pair of second conveyance rollers and conveying the paper sheet in a reverse direction from the downstream side to the upstream side, and then fold back the rear end portion of the paper sheet along a surface of the upper roller of the pair of first conveyance rollers by lowering the folding plate to the folding position in a substantially horizontal state so as to sandwich the paper sheet on the switching gate plate.
According to the invention recited in claim 4, in the paper folding device recited in claim 3, the control unit performs control such that after the folding plate is lowered to fold back the rear end portion of the paper sheet, a rear end fold-back portion of the paper sheet after the rear end portion of the paper sheet is folded back is further conveyed toward the nip portion of the pair of first conveyance rollers by the pair of second conveyance rollers, and the pair of first conveyance rollers are reversely rotated to sandwich and convey the rear end fold-back portion of the paper sheet at the nip portion of the pair of first conveyance rollers, thereby pressing the rear end fold-back portion of the paper sheet.
According to the invention recited in claim 5, in the paper folding device recited in any one of claims 1 to 4, a crease processing unit is further provided on the upstream side in the paper sheet conveyance direction of the pair of first conveyance rollers, and the crease processing unit is configured to form a crease in advance in a fold line when the planar paper sheet is folded.
According to the invention recited in claim 6, in the paper folding device recited in any one of claims 1 to 5, a distance by which the switching gate plate disposed at the second guide position and the folding plate disposed at the folding position approach each other is set such that at least a gap that allows the paper sheet to be conveyed is secured between the folding plate and the switching gate plate.
The invention recited in claim 7 is a bag making machine including the paper folding device recited in any one of claims 1 to 6.
The invention recited in claim 8 is a paper folding device that folds a planar paper sheet while conveying the paper sheet along a conveyance surface, the paper folding device including: a pair of first conveyance rollers disposed on an upstream side in a paper sheet conveyance direction; a pair of second conveyance rollers disposed on a downstream side in the paper sheet conveyance direction; a switching gate plate installed on a paper sheet conveyance surface between both pairs of the rollers; a folding plate disposed to face the switching gate plate; and a control unit that controls an operation of an entire device, wherein the switching gate plate is switchable between a first guide position at which the switching gate plate interferes with the conveyed paper sheet, bends the paper sheet conveyance direction outward from the paper sheet conveyance surface, and guides a leading end portion of the paper sheet toward a surface of one roller of the pair of second conveyance rollers and a second guide position at which the switching gate plate guides the leading end portion of the paper sheet along the paper sheet conveyance surface toward a nip portion of the pair of second conveyance rollers, the folding plate is configured to be movable toward the switching gate plate in a substantially horizontal state, and is switchable between a folding position close to the switching gate plate disposed at the second guide position and a retracting position retracted at a predetermined interval from the switching gate plate, and the control unit performs control such that after the leading end portion of the paper sheet to be conveyed is guided by the switching gate plate disposed at the first guide position so as to pass by a predetermined amount toward the surface of one roller of the pair of second conveyance rollers, the switching gate plate is switched to the second guide position, and then the folding plate disposed at the retracting position is lowered to the folding position in a substantially horizontal state so as to sandwich the paper sheet on the switching gate plate, whereby the leading end portion of the paper sheet is folded back along the surface of one roller of the pair of second conveyance rollers.
According to the invention recited in claim 1, since it is not necessary to provide the paper sheet insertion space (diverging path) and the stopper as the paper folding mechanism, it is possible to simply and inexpensively configure the paper folding mechanism without complicating the structure. In addition, since the folding position is automatically adjusted in accordance with various folding specifications by the control unit, it is possible to provide a paper folding device with good operability. Furthermore, wrinkles are prevented from being generated in the folded piece portions, and even in the case of folding, glue does not adhere to the inside of the folding mechanism such as the stopper, and the quality of the product is not adversely affected.
According to the invention recited in claim 2, after the leading end portion of the paper sheet is folded back by lowering the folding plate, the leading end fold-back portion of the paper sheet after being folded back is controlled to be pressed and folded by the nip portion of the pair of second conveyance rollers, so that it is possible to reliably impart a folding habit to the paper sheet.
According to the invention recited in claim 3, since the two positions of the front end portion and the rear end portion in the paper sheet conveyance direction can be folded back on the same folding mechanism, the work efficiency is good. In addition, space saving and inexpensive configuration can be achieved.
According to the invention recited in claim 4, after the front end portion and the rear end portion in the conveyance direction of the paper sheet are folded back by lowering of the folding plate, the nip portion of the pair of second conveyance rollers and the nip portion of the pair of first conveyance rollers are controlled to press and fold the paper sheet, so that it is possible to reliably impart a folding habit to the paper sheet.
According to the invention recited in claim 5, a crease processing unit is further provided on the upstream side in the paper sheet conveyance direction of the pair of first conveyance rollers, and the crease processing unit is configured to form a crease in advance in a fold line when the planar paper sheet is folded to form a fold starting point, so that the paper sheet can be folded cleanly and accurately. In addition, it is possible to suppress print cracking that occurs at the time of folding the paper sheet.
According to the invention recited in claim 6, after the leading end portion of the paper sheet is folded back by lowering of the folding plate, the leading end fold-back portion of the paper sheet after being folded back is conveyed while being guided by the gap between the adjacent switching gate plate and the folding plate, so that it is possible to reliably transfer the leading end fold-back portion to a pressing processing unit by the nip portion of the pair of conveyance rollers at the next stage without generating wrinkles or the like.
According to the invention recited in claim 7, by using the paper folding device for folding the paper sheet in the present invention in a bag making machine for manufacturing an envelope, the entire device can be configured simply and inexpensively, and operability is good, which is preferable.
According to the invention recited in claim 8, since it is not necessary to provide the paper sheet insertion space (diverging path) and the stopper as the paper folding mechanism, it is possible to simply and inexpensively configure the paper folding mechanism without complicating the structure. In addition, since the folding position is automatically adjusted in accordance with various folding specifications by the control unit, it is possible to provide a paper folding device with good operability.
A “western envelope” of a general form has a horizontally long rectangle, and a sealing port is formed on a long side. When the western envelope is manufactured by the bag making machine 10, for example, as illustrated in
Specifically, the bag making machine 10 manufactures a western envelope 90 by processing the planar paper sheet 100 illustrated in
The paper sheet 100 includes the front surface portion 101, the rear surface portion 102, the glue substitute piece portions 103 protruding to both sides of the rear surface portion 102, and a rearmost surface portion 104. As illustrated in
As a product, the western envelope 90 of
[Paper Feeding Unit 1]
The paper feeding unit 1 includes an air suction belt-type air paper feeding unit 12, an elevator-type paper feeding tray 11 that ascends and descends according to a paper sheet loading amount, and a pair of conveyance rollers 81 that further convey the paper sheet fed by the air paper feeding unit 12 to a downstream side in the conveyance direction. Further, the air paper feeding unit 12 includes a sensor 22 that detects that an uppermost paper sheet of the paper sheets stacked on the paper feeding tray 11 is attracted to a lower surface of the air paper feeding unit 12, and a sensor 21 that detects an upper limit position of the uppermost paper sheet of the paper sheets stacked on the paper feeding tray 11.
Note that the bag making machine 10 includes seven pairs of conveyance rollers 82, 83, 84, 85, 86, 87, and 88 in addition to the pair of conveyance rollers 81. The seven pairs of conveyance rollers constitute a conveyance surface 200 on which the paper sheet 100 is conveyed, and the conveyance surface 200 is flush from the air paper feeding unit 12 to the pair of conveyance rollers 88. Furthermore, on the conveyance surface 200 on which the paper sheet is conveyed, a sensor 23, a sensor 24, a sensor 25, a sensor 26, a sensor 27, and a sensor 28 that detect passage of the paper sheet at each position (detect double feed) are disposed. Each sensor uses, for example, an optical transmission sensor.
[First Crease Processing Unit 2]
As illustrated in
[Second Crease Processing Unit 4]
As illustrated in
[First Folding Unit 3]
The first folding unit 3 includes a pair of folding devices 3a and 3b disposed opposite to each other on both sides in the width direction perpendicular to the paper sheet conveyance direction. Each of the folding devices 3a and 3b includes a flap plate 32 that rotates around a rotation shaft 31 along the conveyance direction, and as illustrated in
[Glue Application Unit 5]
The glue application unit 5 includes a pair of application devices 5a and 5b disposed opposite to each other on both sides in the width direction. Note that the application device 5a and the application device 5b have bilaterally symmetrical configurations.
The application devices 5a and 5b include nozzle portions, a position setting mechanism, and a vertical drive mechanism (not illustrated). The nozzle portion can apply glue to the conveyed paper sheet at a predetermined timing.
[Second Folding Unit 6]
The second folding unit 6 is a paper folding device that folds the planar paper sheet 100 while conveying the paper sheet along the conveyance surface 200, and includes the pair of first conveyance rollers 86 disposed on the upstream side in the paper sheet conveyance direction, the pair of second conveyance rollers 87 disposed on the downstream side in the paper sheet conveyance direction, a switching gate plate 63 installed between both pairs of the rollers, and a folding plate 62 disposed above the switching gate plate 63.
The switching gate plate 63 is switchable between a first guide position at which the switching gate plate interferes with the conveyed paper sheet 100 and guides a leading end portion of the paper sheet 100 upward so as to pass through an upper surface of an upper roller 871 of the pair of second conveyance rollers 87 and a second guide position at which the switching gate plate guides the leading end portion of the paper sheet 100 in the substantially horizontal direction toward a nip portion 873 of the pair of second conveyance rollers 87, and the folding plate 62 is configured to be movable in the vertical direction while being in the substantially horizontal state, and is switchable between a folding position at which the folding plate approaches the switching gate plate 63 disposed at the second guide position and a retracting position at which the folding plate retracts at a predetermined interval from the switching gate plate.
Drive mechanisms 64 and 65 of the switching gate plate 63 and the folding plate 62 will be described.
As illustrated in
In
As illustrated in
As illustrated in
In
As illustrated in
[Pressurization Unit 8]
A pressurization unit 8 includes an upper mold 8a that can move up and down and an immovable lower mold 8b, and further applies pressure by sandwiching a folded part of the paper sheet 100 folded at the second folding unit 6 between the upper mold and the lower mold to strengthen the folded part.
[Paper Ejection Unit 7]
The paper ejection unit 7 includes a pair of conveyance rollers 88 and a paper ejection tray 71. The pair of conveyance rollers 88 are provided to operate as discharge rollers. Specifically, as illustrated in
Next, an operation of the bag making machine 10 having the above configuration will be described.
First, the paper sheet 100 illustrated in
(1) The paper sheet 100 on an uppermost surface on the paper feeding tray 11 is sent out toward the pair of conveyance rollers 81 while being attracted by an air suction belt in the air paper feeding unit 12, and after the paper sheet 100 is delivered to the pair of conveyance rollers 81, the paper sheet is further conveyed to the downstream side in the conveyance direction by the pair of conveyance rollers 81. Thereafter, it passes through the first crease processing unit 2. At this time, the first crease processing unit 2 operates to form creases in the second fold line 112 and the third fold line 113 of the paper sheet 100. As a result, the front surface portion 101 is easily folded back toward a side of the rear surface portion 102. The rearmost surface portion 104 is easily folded back toward a side of the folded front surface portion 101.
(2) The paper sheet 100 conveyed from the first crease processing unit 2 passes through the second crease processing unit 4. At this time, the first fold lines 111 (two positions on the left and right in the width direction) of the paper sheet 100 are located immediately below the crease blades (round blades) of the second crease processing unit 4 installed at two positions in the width direction. Then, the second crease processing unit 4 operates to form creases in the first fold lines 111. As a result, the piece portions 103 (two positions on the left and right in the width direction) are easily folded back inward.
(3) The paper sheet 100 on which the creases are formed by the second crease processing unit 4 stops at the first folding unit 3. At this time, the flap plate 32 of each of the folding devices 3a and 3b of the first folding unit 3 is located on the outer side in the width direction of the paper sheet 100, and the piece portions 103 on both sides of the paper sheet 100 are placed on the flap plates 32 (
Next, another embodiment of the first folding unit will be described. In another embodiment illustrated in
In
Next, in
Thereafter, in
In
(4) The paper sheet 100 on which the piece portions 103 are folded is conveyed downstream in the conveyance direction by the pair of conveyance rollers 85 and passes through the glue application unit 5. In the glue application unit 5, the nozzle portions 5a and 5b installed at two positions in the width direction move downward and abut on the surfaces of the piece portions 103 when the folded piece portions 103 on both sides of the paper sheet 100 start to pass, and the nozzle portions 5a and 5b move upward and the nozzle portions 5a and 5b are separated from the surfaces of the piece portions 103 when the passage of the piece portions 103 is completed. As a result, the glue is applied to the surfaces of the folded piece portions 103. Note that the folded piece portions 103 pass through the nozzle portions 5a and 5b in a state of being pressed or after being pressed by the pair of conveyance rollers 85 located upstream of the nozzle portions 5a and 5b in the conveyance direction. Therefore, the glue application work by the nozzle portions 5a and 5b can be stably performed.
(Processing of Paper Sheet in Second Folding Unit 6)
The second folding unit 6 is a paper folding device that folds the planar paper sheet 100 while conveying the paper sheet along the conveyance surface 200, and includes the pair of first conveyance rollers 86 disposed on the upstream side in the paper sheet conveyance direction, the pair of second conveyance rollers 87 disposed on the downstream side in the paper sheet conveyance direction, the switching gate plate 63 installed on the paper sheet conveyance surface 200 between both the pairs of the rollers, the folding plate 62 disposed to face the switching gate plate 63, and a control unit (not illustrated) that controls an operation of the entire device.
The switching gate plate 63 is switchable between the first guide position at which the switching gate plate interferes with the conveyed paper sheet 100 to bend the paper sheet conveyance direction outward from the paper sheet conveyance surface 200 and guides the leading end portion of the paper sheet 100 toward a surface of one roller of the pair of second conveyance rollers 87 and the second guide position at which the switching gate plate guides the leading end portion of the paper sheet along the paper sheet conveyance surface 200 toward the nip portion 873 of the pair of second conveyance rollers 87.
The folding plate 62 is configured to be movable toward the switching gate plate 63 in a substantially horizontal state, and can be switched between the folding position close to the switching gate plate 63 disposed at the second guide position and the retracting position retracted at a predetermined interval from the switching gate plate 63.
The control unit performs control to, after guiding the leading end portion of the paper sheet 100 to be conveyed by the switching gate plate 63 disposed at the first guide position so as to pass through a surface of one roller of the pair of second conveyance rollers 87 by a predetermined amount, switch the switching gate plate 63 to the second guide position, and then lower the folding plate 62 disposed at the retracting position to the folding position in a substantially horizontal state so as to sandwich the paper sheet 100 on the switching gate plate 63, thereby folding back the leading end portion of the paper sheet 100 along the surface of one roller of the pair of second conveyance rollers 87.
Specifically, as an embodiment, processing is sequentially performed as shown in the following (5-1) to (5-8).
(5-1) The paper sheet 100 on which the glue has been applied to the piece portions 103 is conveyed (in the F direction) to the second folding unit 6 by the pair of conveyance rollers 85. At this time, the switching gate plate 63 is set upward toward the pair of second conveyance rollers 87 as the first guide position. Therefore, as illustrated in
Note that, since an upper roller 861 of the pair of first conveyance rollers 86 is set to have a width dimension that does not contact the surface of the piece portion 103, the glue applied to the piece portion 103 of the paper sheet 100 in the glue application unit 5 does not adhere to the pair of first conveyance rollers 86.
(5-2) Next, as illustrated in
(5-3) Next, as illustrated in
According to the above, since it is not necessary to provide the paper sheet insertion space (diverging path) and the stopper as the paper folding mechanism, it is possible to simply and inexpensively configure the paper folding mechanism without complicating the structure. In addition, since the folding position is automatically adjusted in accordance with various folding specifications by the control unit, it is possible to provide a paper folding device with good operability. Furthermore, wrinkles are prevented from being generated in the folded piece portions, and even in the case of folding, glue does not adhere to the inside of the folding mechanism such as the stopper, and the quality of the product is not adversely affected.
(5-4) Next, as illustrated in
According to the above, after the leading end portion of the paper sheet is folded back by lowering the folding plate, the control is performed such that the paper sheet leading end fold-back portion after the folding is pressed and folded by the nip portion 873 of the pair of second conveyance rollers 87, and thus, it is possible to reliably add a folding habit to the paper sheet.
As a product, the western envelope 90 may be used, but the rearmost surface portion 104 may be further folded along the third fold line 113 which is a boundary line between the rear surface portion 102 and the rearmost surface portion 104 by folding the western envelope 90 while being reversely conveyed in the F′ direction. According to this configuration, when an operator seals the envelope with a tape or a glue after inserting the contents into the envelope, since the envelope has a folding habit, the rearmost surface portion 104 can be sealed cleanly on the folded front surface portion 101. A processing method of folding the rearmost surface portion 104 will be described below.
(5-5) The switching gate plate 63 is further switchable upward toward the pair of first conveyance rollers 86 as a third guide position, and the pair of first conveyance rollers 86 and the pair of second conveyance rollers 87 are configured to be able to perform forward rotation and reverse rotation.
As described above, after the pair of second conveyance rollers 87 press the leading end fold-back portion 105 of the paper sheet 100 at the nip portion 873 of the pair of second conveyance rollers 87, as illustrated in
(5-6) Next, as illustrated in
(5-7) Next, as illustrated in
According to the above, since it is possible to fold back two positions of the front end portion (front surface portion 101) and the rear end portion (rearmost surface portion 104) in the conveyance direction of the paper sheet on the same folding mechanism, the work efficiency is good. In addition, space saving and inexpensive configuration can be achieved.
(5-8) Next, as illustrated in
According to the above, after the front end portion and the rear end portion in the conveyance direction of the paper sheet 100 are folded back by lowering of the folding plate 62, the control is performed so as to press and fold the paper sheet at the nip portions of the pair of second conveyance rollers 87 and the pair of first conveyance rollers 86, and thus, it is possible to reliably add a folding habit (fold lines) to the paper sheet.
In addition, the crease processing unit 2 is provided on the upstream side of the pair of first conveyance rollers 86 in the paper sheet conveyance direction, and the crease processing unit 2 forms creases in advance in fold lines (second fold line 112, third fold line 113) when the planar paper sheet 100 is folded to form a folding start point, so that the paper sheet can be folded cleanly and accurately. In addition, it is possible to suppress print cracking that occurs at the time of folding the paper sheet.
(6) Next, in the western envelope 90 conveyed from the second folding unit 6 to the pressurization unit 8, the folded portions 105 and 106 are sequentially sandwiched and pressurized between the upper mold 8a and the lower mold 8b of the pressurization unit 8. Therefore, the folded portions 105 and 106 become strong. The pressurized western envelope 90 is conveyed toward the paper ejection unit 7 by the pair of conveyance rollers 88, and is ejected onto the paper ejection tray 71.
As one embodiment, the case where the paper folding device (second folding unit 6) in the present invention is adopted as the paper folding mechanism in the bag making machine 10 for manufacturing the western envelope has been described, but the paper folding device (second folding unit 6) can also be implemented as a paper folding machine (paper folding device) for simply folding a paper sheet. Note that the present invention is not limited to the above embodiments, and can be implemented with various modifications.
F: Conveyance direction
F′: Conveyance direction
R: Rotation direction
3: First folding unit
6: Second folding unit
10: Bag making machine
10A: Device body
62: Folding plate
63: Switching gate plate
64: Drive mechanism
65: Drive mechanism
100: Paper sheet
101: Front surface portion
102: Rear surface portion
103: Glue substitute piece portion
104: Rearmost surface portion
105: Fold-back portion
106: Fold-back portion
111: First fold line
112: Second fold line
113: Third fold line
Number | Date | Country | Kind |
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2019-212833 | Nov 2019 | JP | national |
Filing Document | Filing Date | Country | Kind |
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PCT/JP2020/043582 | 11/24/2020 | WO |