The present invention relates to a folding device and a folding method used for folding products, semifinished products, materials, etc., mainly of wearing items (sanitary napkins or incontinence pads, for example).
For example, a process generally employed for an elongated item such as a sanitary napkin is such that the elongated item is folded into three so as to stack both end portions of the elongated item over a center portion thereof. A folding mechanism or a folding device conventionally known as a device for such folding includes a folding bar fixed to a tip of an arm to rotate about a predetermined rotation center, and the folding bar is used for folding the wearing item (first patent document and second patent document).
First Patent document: JP 4,354,103 B
Second Patent document: JP 6,313,101 B
However, the conventional folding device such as that of the arm type is configured in such a manner that a lengthwise direction of a pad for holding a workpiece conforms to a circumferential direction of a drum. Hence, in order to increase the number of items produced per unit time, the number of rotations of the drum is required to be increased (high-speed rotation) or the number of pads to be arranged is required to be increased by increasing the diameter of the drum.
However, these cause problems that increasing the diameter of the drum increases a moment of inertia, and causing high-rotation of the drum increases a load on a servo motor for driving the drum to rotate.
Thus, the present invention is intended to provide a folding device and a folding method allowing reduction in the diameter of a drum and allowing increase in the number of items produced per unit time.
This folding device includes a plurality of folding units U arranged in a circumferential direction R of a drum 3 that rotates about an axis 31. Each of the folding units U includes:
a pad 4 for holding each workpiece W while a center portion WC of the workpiece as viewed in a lengthwise direction WL is placed on the pad 4;
a first folding member 11 arranged adjacent to a first end portion W1 of the workpiece W as viewed in the lengthwise direction WL and used for folding the workpiece W so as to stack the first end portion W1 of the workpiece W over the center portion WC; and
a second folding member 12 arranged adjacent to a second end portion W2 of the workpiece W as viewed in the lengthwise direction WL and used for folding the workpiece W so as to stack the second end portion W2 of the workpiece W over the center portion WC, wherein
the first folding member 11 and the second folding member 12 are arranged at the same position as the pad 4 of each of the folding units U as viewed in the circumferential direction R, and a width direction D2 of the drum 3 parallel to the axis 31 is defined in the lengthwise direction WL of the workpiece W.
A folding method using the folding device is a folding method of folding the workpiece W including:
a step of receiving the workpiece W onto the pad 4 of each of the folding units U while the workpiece W is in a posture at which the lengthwise direction WL is defined in the width direction D2 of the drum 3;
a step of defining a pair of folding lines in the workpiece W by causing the retaining mechanism 2 to face or contact the center portion WC of the workpiece W in the posture;
a step of folding the first end portion W1 using the first folding member 11 so as to stack the first end portion W1 of the workpiece W with the defined folding line over the center portion WC; and
a step of folding the second end portion W2 using the second folding member 12 so as to stack the second end portion W2 of the workpiece W with the defined folding line over the center portion WC of the workpiece W.
According to the above-described inventions, the function of holding the workpiece on the pad may be fulfilled through suction using negative pressure of air, the workpiece may be held using a large number of needles provided on a surface of the pad, for example, or the workpiece may be held with an extra hook.
According to the present invention, the lengthwise direction WL of the elongated workpiece is defined in the width direction of the drum parallel to the axis 31 of the drum. This reduces the length of the pad as viewed in the circumferential direction for holding the elongated workpiece. Thus, the diameter of the drum can be reduced.
The folding members in a pair are provided for the pad at the both end portions as viewed in the lengthwise direction of the workpiece, namely, in the width direction of the drum. This increases the size of the folding device in the width direction of the drum while reduces the size of the folding device in the circumferential direction of the drum. As a result, the diameter of the drum can be reduced.
As described above, the diameter of the drum can be reduced to reduce the moment of inertia of the drum, thereby reducing a load on a servo motor for driving the drum to rotate.
Furthermore, a large number of pads can be mounted on the drum of a small diameter. This can increase the number of items produced per unit time without the need of increasing a circumferential speed on the outer circumference of the drum significantly.
An embodiment of the present invention will be described below on the basis of the drawings. In the accompanying drawings, a number common to parts in a plurality of drawings means that these parts are equivalent or corresponding parts.
As shown in
During one rotation from an origin (point P1) (until return to the same point P1), each folding unit U receives a workpiece W from a first transport device 81 at a point P2, folds the workpiece W at points P3 to P7, ad transfers the folded workpiece W to a second transport device 82 at a point P10.
The states of the folding unit U at the points P1 to P10 in
The workpiece W will be descried next. As shown in
In
The following describes the location of the drum 3 and those of principal parts of the folding unit U relative to each other by referring to
As shown in
The pad 4 is attached in a removable manner to the folding unit U and is replaced, if appropriate, in response to the size (length in a lengthwise direction WL) of the workpiece W.
The pad 4 has a pad surface 4S provided with a large number of suction holes 4H. In the present embodiment, the center portion WC of the workpiece W is sucked on the pad surface 4S through the suction holes 4H connected to a vacuum not shown in the drawings to be held on the pad 4. In the present embodiment, end portions of the workpiece W on the both sides, namely, the first end portion W1 and the second end portion W2 protrude from the pad 4 in a state of not being held on the pad 4.
The first folding member 11 and the second folding member 12 in
As explicitly shown in
The second folding member 12 is formed into a U shape in a top view, and has a tip 12T away from the pivot shaft 13 and a base 12B close to the pivot shaft 13. The tip 12T projects toward a direction of a normal to the folding surface 10 in comparison with the folding surface 10 on the side of the base 12B.
The shapes of the first folding member 11 and the second folding member 12 in a top view are not limited to the U shapes but may be rectangular shapes or other shapes.
At least one of the first folding member 11 and the second folding member 12 in
As shown in
In
The width direction D2 of the drum 3 parallel to the axis 31 is defined in the lengthwise direction WL of the workpiece W. This allows reduction in a pitch between the pads 4 belonging to the plurality of folding units U and next to each other in the circumferential direction R, as shown in
The retaining mechanism 2 in
As shown in
One of the retaining parts 20 is arranged on a front side F of a rotation direction conforming to the circumferential direction R, and the other retaining part 20 is arranged on a back side B of the rotation direction conforming to the circumferential direction R. More specifically, the retaining parts 20 are arranged adjacent to respective long sides of the pad 4 in
As shown in
As shown in
In
The long hole 24 in
By doing so, it becomes possible to adjust the positions of the end portion 2E of the first retaining plate 21 and/or the end portion 2E of the second retaining plate 22 as viewed in the lengthwise direction WL. This makes the position of each folding line Wb in the lengthwise direction WL freely settable in response to the size of the workpiece W (length in the lengthwise direction WL).
The following describes how the first folding member 11 and the second folding member 12 are driven.
Each folding unit U includes a first driving part 5 (omitted from the drawings) provided for each of the first folding member 11 and the second folding member 12.
As shown in
As shown in
In the above-described configuration, in response to the motion of the first driving part 5, the pivot shaft 13 in
The following describes how the retaining part 20 is driven.
As shown in
As a result of the above-described motion, while the center portion WC of the workpiece W in
The folding of the workpiece W by the folding device 100 will be described next.
At the point P1 (
At the point P2 in
In the present embodiment, as shown in
The retaining mechanism 2, the first folding member 11, and the second folding member 12 are also in the fully-opened states at the point P2 in
During the move of the folding unit U from the point P2 to the point P3 in
More specifically, the retaining part 20 on the front side rotates in a reverse direction of the circumferential (rotation) direction R, and the retaining part 20 on the back side rotates in a positive direction of the circumferential (rotation) direction R.
By doing so, when the first retaining plates 21 and the second retaining plates 22 of both the retaining parts 20 in
The first retaining plate 21 and the second retaining plate 22 preferably contact the workpiece W to such a degree as to press the surface of the workpiece W loosely.
The first folding member 11, and the second folding member 12 are also in the fully-opened states at the point P3 in
During the move of the folding unit U from the point P3 to the point P4 in
On the other hand, during the move of the folding unit U from the point P3 to the point P4 in
The bending by the first folding member 11 will be described in detail using
As shown in
During implementations of these two steps, the first folding member 11 is bent (rotated) using the end portion (one end portion) 2E of the retaining mechanism 2 in
While the workpiece W in
By doing so, as shown in
Next, the folding unit U in
Then, a first folding step is performed in which the folding surface 10 of the first folding member 11 in
In the pressing step, the bending step by the first folding member 11, and the first folding step described above, the workpiece is bent continuously while the folding surface 10 of the first folding member 11 in
Each of these steps is performed while the center portion WC of the workpiece W is sucked on the pad surface 4S and the first end portion W1 of the workpiece W is in a non-sucked state of not being sucked on the folding surface 10 of the first folding member 11.
As shown in
The folding by the first folding member 11 will be described.
As shown in
Next, the folding unit U in
In this way, a second folding step is performed in which the second end portion W2 of the workpiece W is folded so as to be stacked over the folded first end portion W1. A second pressing step, a bending step, and a folding step by the second folding member 12 will not be described as they are performed in the same way as the corresponding steps performed by the first folding member 11.
As shown in
Next, the folding unit U in
Next, the folding unit U in
Next, the folding unit U in
Then, the folding unit U in
In the above-described embodiment, the step of defining the folding line of the workpiece W using the retaining mechanism 2 is finished before the first folding member 11 and the second folding member 12 in
Any one of the steps of opening the first folding member 11, the second folding member 12, and the retaining part 20 at the point P8 and the point P9 in
In the present embodiment, the folded workpiece W is transferred from the folding unit U to the second transport device 82 at the point P10. However, this is not the only case. The folded workpiece W may be transferred from the folding unit U to the second transport device 82 at any point, as long as the pair of folding members (first folding member 11, second folding member 12) have been opened to be separated from the workpiece W and the retaining mechanism 2 has been opened to be separated from the workpiece W at this point (point P8 or point P9).
The following describes a case where the position of a folding line is changed using the end portion 2E of the retaining part 20 in
The position of the folding line is changed in response to change in the type of the workpiece W and is also changed in the following case.
In this example, as shown in
Folding the workpiece W in this state as shown in
In this regard, the following technique may be employed for improving a folded state of a workpiece.
As described above, the first retaining plate 21 and the second retaining plate 22 of the retaining part 20 in
As shown in
Specifically, the second retaining plate 22 on the front side F is fixed at a position closer to the center than the second retaining plate 22 on the back side B, and the first retaining plate 21 on the back side B is fixed at a position closer to the center than the first retaining plate 21 on the front side F. By doing so, the folding line Wb of the first end portion W1 in
Technical ideas and advantageous effects understandable from the above-described embodiment will be described next.
In a preferred device, each of the folding units U further includes:
the retaining mechanism 2 provided between the first folding member 11 arranged adjacent to the first end portion W1 and the second folding member 12 arranged adjacent to the second end portion W2 and used for defining a folding line of the workpiece W by facing or contacting an exposed surface of the workpiece W.
In this case, as the folding line is defined by the retaining mechanism 2, folding even at high speed still makes it possible to fold a workpiece into an intended shape.
More preferably, the retaining mechanism 2 includes the retaining part 20 on the front side F arranged on the front side F of a rotation direction conforming to the circumferential direction R, and the retaining part 20 on the back side B arranged on the back side B of the rotation direction conforming to the circumferential direction R, and
each of the retaining parts 20 is configured to be rotated in such a manner that each of the retaining parts 20 rotates from a position separated from the pad 4 as viewed in the circumferential direction R to face or contact the exposed surface of the workpiece W.
In comparison to a case where a workpiece is retained from diagonally above by a single retaining mechanism 2, the retaining part 20 on the front side F and the retaining part 20 on the back side B resulting from division into two in the circumferential direction of the drum is compact to allow reduction in diameter of the drum.
The retaining part 20 on the front side F and the retaining part 20 on the back side B resulting from division into two in the circumferential direction of the drum rotate to form contact, etc., with the exposed surface of the workpiece W. This fulfills simple motion of the retaining part 20 to encourage reduction in diameter of the drum.
In a preferred folding device, the retaining part 20 on the front side F includes the first retaining plate 21 and the second retaining plate 22 resulting from division of the retaining part 20 into two in the lengthwise direction WL, and the retaining part 20 on the back side B includes the first retaining plate 21 and the second retaining plate 22 resulting from division of the retaining part 20 into two in the lengthwise direction WL.
In a preferred folding device, at each of the retaining parts 20, at least one of the first retaining plate 21 and the second retaining plate 22 resulting from the division into two is fixed to the pivot frame 23 of the retaining mechanism 2 in such a manner as to be movable in the lengthwise direction WL.
In a still preferred folding device, at each of the retaining parts 20, both the first retaining plate 21 and the second retaining plate 22 resulting from the division into two are fixed to the pivot frame 23 of the retaining mechanism 2 in such a manner as to be movable in the lengthwise direction WL.
In a folding method using the above-described folding devices, in a step of folding the first end portion W1 using the first folding member 11, the first folding member 11 folds the workpiece W using one end portion 2E of the retaining mechanism 2 as viewed in the lengthwise direction WLas a reference for one of the pair of folding lines in the workpiece W,
in a step of folding using the second folding member 12, the second folding member 12 folds the workpiece W using the other end portion 2E of the retaining mechanism 2 as viewed in the lengthwise direction WL as a reference for the other of the folding lines in a pair of the workpiece W, and
the position of at least one of the one end portion 2E and the other end portion 2E is capable of being changed in the lengthwise direction WL so that the position of a corresponding at least one of the one folding line and the other folding line becomes changeable in the lengthwise direction WL.
If an elongated workpiece extending long in a width direction of a drum is transported at high speed while a center portion of the workpiece is held on a pad, the workpiece may be tilted diagonally for failing to provide weight balance of the workpiece, for example.
In this case, a folded state of the workpiece is disturbed.
In this case, changing the position of the end portion of the first retaining plate 21 or the second retaining plate 22 resulting from the division into two allows a folding line to be tilted diagonally in response to the tilt of the workpiece. By doing so, it becomes possible to improve the folded state of the workpiece.
In a preferred folding device, the first retaining plate 21 and the second retaining plate 22 on the front side F are each formed into an L shape and the first retaining plate 21 and the second retaining plate 22 on the back side B are each formed into an L shape in order to form the retaining mechanism 2 into a rectangular frame-like shape when the retaining mechanism 2 faces or contacts the workpiece W.
A posture in folding the workpiece becomes more stable if the folding member contacts the workpiece at a wider surface. By contrast, the first retaining plate 21 and the second retaining plate 22 each having an L-shape reduces the occurrence of interference with the folding member.
In the present folding method, the step of defining the folding line of the workpiece W using the retaining mechanism 2 may be finished before the first folding member 11 and the second folding member 12 finish folding of the workpiece W.
Any feature illustrated and/or depicted in conjunction with one of the aforementioned technical ideas or embodiments may be used in the same or similar form in one or more of other technical ideas or other embodiments, and/or may be used in combination with, or in place of, any feature of the other technical ideas or embodiments.
While the preferred embodiments have been described above by referring to the drawings, a person skilled in the art will easily think of various changes and modifications within an obvious range by considering the present description.
For example, the number of the folding units may be two or more.
Thus, such changes and modifications are interpreted as those within a range of the present invention defined from the scope of the claims.
The present invention is applicable to a folding device and a folding method for items such as wearing items that may be napkins and incontinence pads, absorbent items for animals, etc.
10: Folding surface 11B, 12B: Base 11T, 12T: Tip
11, 12: (first, second) Folding member 13: Pivot shaft
2: Retaining mechanism 20: Retaining part 21, 22: (first, second) Retaining plate
2E: End portion
23: Pivot frame 24: Long hole 25: Bolt
F: Front side B: Back side
3: Drum 31: Axis
4: Pad 4S: Pad surface 4H: Suction hole
5: First driving part 6: Second driving part
81, 82: First, second transport device 83: Affixing device
D1: Diameter direction D11: Outer side of diameter direction D2: Width direction
R: Circumferential direction (rotation direction) T: Tape
U: Folding unit
W: Workpiece W1, W2: (first, second) End portion Wb: Folding line WC: Center portion WL: Lengthwise direction WS: Exposed surface
Number | Date | Country | Kind |
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2019-087490 | May 2019 | JP | national |
Filing Document | Filing Date | Country | Kind |
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PCT/JP2020/017647 | 4/24/2020 | WO | 00 |