This patent application is based on and claims priority pursuant to 35 U.S.C. § 119(a) to Japanese Patent Application No. 2022-181723, filed on Nov. 14, 2022, in the Japan Patent Office, the entire disclosure of which is hereby incorporated by reference herein.
Embodiments of the present disclosure relate to an elongated material supply device and a bending apparatus.
An elongated material supply device is known that, in bending a rod-shaped or linear elongated material such as a wire, supplies the elongated material to a bending processor.
For example, a configuration of detecting a supply amount of an elongated material has been proposed as a configuration of an elongated material supply device that supplies an elongated material to a processing apparatus. Specifically, in this configuration, the linear conveyance amount of the elongated material is calculated from a pulse signal of a rotary encoder that detects the rotation amount of a pulley that conveys the elongated material, and the calculated conveyance amount is compared with a preset reference conveyance amount, so that the presence or absence of a conveyance anomaly can be determined.
Some elongated material to be supplied may be unsuitable for processing, such as a material having a deformed tip. When such an elongated material is supplied, for example, the above-described elongated material supply device can detect the supply amount of the elongated material but does not determine whether the elongated material is suitable for processing. Therefore, if there is no anomaly in the supply amount, the elongated material is conveyed to the processing unit as it is, and as a result, there is a possibility that the final processing is not completed as intended.
According to an embodiment of the present disclosure, an elongated material supply device includes a conveyor, a sorter, and a detector. The conveyor conveys a rod-shaped or linear elongated material. The sorter allows the elongated material to pass through when a variation in shape of the elongated material is within a predetermined variation range. The detector detects presence or absence of the elongated material at a position downstream from an inlet of the sorter in a conveyance direction of the elongated material.
According to another embodiment of the present disclosure, a bending apparatus, includes the elongated material supply device and a processing unit to bend the elongated material supplied by the elongated material supply device.
A more complete appreciation of embodiments of the present disclosure and many of the attendant advantages and features thereof can be readily obtained and understood from the following detailed description with reference to the accompanying drawings, wherein:
The accompanying drawings are intended to depict embodiments of the present disclosure and should not be interpreted to limit the scope thereof. The accompanying drawings are not to be considered as drawn to scale unless explicitly noted. Also, identical or similar reference numerals designate identical or similar components throughout the several views.
In describing embodiments illustrated in the drawings, specific terminology is employed for the sake of clarity. However, the disclosure of this specification is not intended to be limited to the specific terminology so selected and it is to be understood that each specific element includes all technical equivalents that have a similar function, operate in a similar manner, and achieve a similar result.
Referring now to the drawings, embodiments of the present disclosure are described below. As used herein, the singular forms “a,” “an,” and “the” are intended to include the plural forms as well, unless the context clearly indicates otherwise.
Embodiments of the present disclosure are described below with reference to the accompanying drawings. In the drawings illustrating embodiments of the present disclosure, elements or components having identical or similar functions or shapes are given similar reference numerals as far as distinguishable, and redundant descriptions are omitted.
First, a configuration of the bending apparatus according to the present embodiment will be described with reference to
As illustrated in
The body case 16 is an exterior part that houses the conveyance roller 11, the sorter 12, the detector 13, the guide member 14, and the pressing member 15 therein. An upper portion of the body case 16 has an introduction port 16a through which the wire 10 is introduced. On the other hand, a lower portion of the body case 16 has a discharge port 16b through which the processed wire 10 is discharged.
The pair of conveyance rollers 11 is a conveyor that conveys the wire 10 while nipping the wire. The conveyance rollers 11 are disposed below the introduction port 16a so as to approach or contact each other. When the wire 10 is introduced into between the rotating conveyance rollers 11, the wire 10 is conveyed while being nipped by the conveyance rollers 11. As conveyors that convey the wire 10, conveyors other than the conveyance rollers 11 such as rotating belt members may be used.
The sorter 12 is a member that sorts a wire suitable for processing and a wire unsuitable for processing. The sorter 12 is formed in a cylindrical shape and is provided below the conveyance rollers 11. The sorter 12 has a passage hole 12a through which the wire 10 suitable for processing passes in the center thereof.
The detector 13 includes a fan-shaped feeler 17 as a movable member provided so as to be swingable below the sorter 12, and a sensor 18 as a sensing unit that detects displacement of the feeler 17. The sensor 18 is a transmissive optical sensor including a light projection unit that emits light and a light reception unit that receives light emitted from the light projection unit, for example. When the feeler 17 swings (displaces) from the position indicated by a solid line to the position indicated by a two-dot chain line in
The guide member 14 is a cylindrical member disposed below the detector 13. In the example illustrated in
The pressing member 15 is a member that presses and bends the wire 10 guided by the guide member 14. The pressing member 15 is disposed below the guide member 14 so as to be capable of reciprocating in the horizontal direction.
Although a detailed processing operation will be described later, the pressing member 15 moves in the horizontal direction to bend the wire 10 in cooperation with the guide member 14. That is, in the present embodiment, the guide member 14 and the pressing member 15 constitute a processing unit 3 that bends the wire 10. On the other hand, the pair of conveyance rollers 11, the sorter 12, and the detector 13 disposed above the processing unit 3 constitute an elongated material supply device 2 that supplies the wire (elongated material) 10 suitable for processing to the processing unit 3. As described above, the bending apparatus 1 according to the present embodiment includes the elongated material supply device 2 formed by the pair of conveyance rollers 11, the sorter 12, and the detector 13, the pressing member 15, and the processing unit 3 formed by the guide member 14.
Next, the operations of the bending apparatus 1 according to the present embodiment will be described.
First, as illustrated in
In this state, as illustrated in
When the wire 10 is bent, the pressing member 15 moves in the opposite direction (the left direction in the drawing) and retracts from the conveying path of the wire 10 as illustrated in
Thereafter, as illustrated in
As illustrated in
In this example, as illustrated in
Thereafter, as illustrated in
In this manner, the bending of the wire may be performed a plurality of times. The wire can be formed into a desired shape by adjusting as appropriate the direction and the number of times of bending.
Wires introduced into the bending apparatus may include a wire unsuitable for processing, such as a wire having a deformed leading end. In particular, in a case where the degree of deformation is large, when the wire is conveyed as it is into the bending apparatus, there is a possibility that the processing is not completed as intended even if the bending is performed.
Therefore, in the bending apparatus 1 according to the present embodiment, whether the wire 10 is suitable for processing can be determined before the wire 10 is supplied to the processing unit 3. Hereinafter, a method of wire discrimination according to the present embodiment will be described.
As described above, since the bending apparatus 1 according to the present embodiment includes the sorter 12 that permits the passage of the wire 10 suitable for processing. Thus, when the wire 10 suitable for processing without deformation is introduced into the bending apparatus 1 as illustrated in
On the other hand, when the wire 10 that has a greatly deformed leading end and is not suitable for processing is introduced into the bending apparatus 1 as illustrated in
In addition, the wire 10 that has a slightly deformed leading end but may not be unsuitable for processing may be introduced as illustrated in
As described above, in the present embodiment, since the passage of the wire 10 suitable for processing is permitted and the passage of the wire 10 not suitable for processing is not permitted, only the wire 10 suitable for processing can be supplied to the processing unit 3. This prevents unnecessary processing.
In the present embodiment, in addition to the wire 10 having no deformation as illustrated in
The optimum value of the inner diameter d1 (passage allowable width W) of the passage hole 12a varies depending on the allowable deformation amount. However, if the inner diameter d1 of the passage hole 12a is too large, an object not suitable for processing cannot be excluded. Therefore, in the present embodiment, the inner diameter d1 (passage allowable width W) of the passage hole 12a is set to be larger than the outer diameter d2 (width) of the wire 10 and to be equal to or smaller than 6 times the outer diameter d2 (width) of the wire 10 so that if the deformation of the wire 10 exceeds 3 times the outer diameter d2 (width) of the wire 10, the wire 10 can be determined as obviously not suitable for processing and excluded.
Since the bending apparatus 1 according to the present embodiment includes the detector 13 (the feeler 17 and the sensor 18) that detects the presence or absence of the wire 10 at a position downstream from the sorter 12 in the wire conveyance direction (the conveyance direction of the elongated material), the passage of the wire 10 is detected by the detector 13 when the wire 10 is suitable for processing as illustrated in
As described above, in the present embodiment, when the wire 10 passes through the sorter 12, the passage of the wire 10 is detected by the detector 13, and when the wire 10 does not pass through the sorter 12, the passage of the wire 10 is not detected by the detector 13. Therefore, it is possible to determine whether the wire 10 is suitable for processing based on the detection result of the detector 13, and it is possible to detect the wire 10 that is not suitable for processing. As a result, the following measures can be taken.
For example, as illustrated in
As in the example illustrated in
As described above, when the passage of the wire is not detected, reconveying the wire makes it possible to recheck whether the wire is suitable for processing. As a result, even if a wire suitable for processing cannot pass due to variations in the conveyance operation, a temporary conveyance failure, or the like, the wire can be used for processing as long as the wire is re-conveyed and the passage of the wire is permitted.
In the block diagram illustrated in
Although an embodiment of the present disclosure has been described above, the bending apparatus and the elongated material supply device according to the present invention are not limited to the above-described embodiment, and can be appropriately modified in design without departing from the gist of the invention.
In the above embodiment, the detector including the feeler 17 is used as the detector 13 that detects the passage of the wire 10 passes. However, the detector 13 may not include the feeler 17 as in the example illustrated in
In the example illustrated in
As described above, the passage of the wire 10 can also be detected using the detector 13 having no feeler 17. As in this example, the detector 13 detects the presence or absence of the wire 10 at a position downstream from the inlet 121 in the wire conveyance direction. The inlet 121 is the upstream end of the passage hole 12a in the wire conveyance direction (the longitudinal material conveyance direction). Therefore, in the prevent invention, the presence or absence of the passage of the wire 10 may be detected using the feeler 17 on the downstream side (outlet side) in the wire conveyance direction of the sorter 12 as in the above embodiment or using the sensor 19 that emits light passing through the sorter 12 as in the example illustrated in
In addition, the sorter 12 in the present invention may be formed of a single cylindrical member or may be formed of a plurality of members.
For example, as in the example illustrated in
As in the example illustrated in
In addition, the elongated material used in the present invention may be a wire having a circular cross section, or may be a wire having a polygonal cross section such as a triangular cross section or a quadrangular cross section. Similarly to the elongated material, the cross-sectional shape of the passage hole 12a of the sorter 12 may also be a circle or a polygon such as a triangle or a quadrangle.
Examples of the elongated material used in the present invention include a material made of a flexible metallic material having a full length of 100 millimeters (mm) or more and a width of 3 mm or less. Examples of the material of the elongated material include iron, stainless steel, aluminum, copper, and an alloy containing iron, stainless steel, aluminum, or copper. However, the elongated material is not limited to them, and may be made of another elongated material.
The passage allowable width that allows the passage of the wire 10 of the sorter 12 (passage hole 12a) may be changeable.
For example, as in the example illustrated in
As illustrated in
On the other hand, as illustrated in
As described above, in the example illustrated in
As in the example illustrated in
As in the example illustrated in
As in the example illustrated in
The bending apparatus and the elongated material supply device according to the present invention are not limited to the configuration in which the elongated material (wire 10) is conveyed from the upper side to the lower side as in the above embodiment, and may be configured to convey the elongated material in the horizontal direction or other directions.
To summarize the aspects of the present invention described above, the present invention includes an elongated material supply device and a bending apparatus having at least the following configurations.
An elongated material supply device supplies a rod-shaped or linear elongated material. The elongated material supply device includes: a conveyor to convey the elongated material; a sorter to allow the elongated material to pass through when a variation in shape of the elongated material is within a predetermined variation range; and a detector to detect presence or absence of the elongated material at a position downstream from an inlet of the sorter in a conveyance direction of the elongated material with respect to.
In the elongated material supply device according to the first aspect, the sorter is formed of a single member or a plurality of members that define a passage allowable width that allows passage of the elongated material whose shape variation is within the predetermined variation range.
In the elongated material supply device according to the second aspect, the passage allowable width is larger than the width of the elongated material and is equal to or less than six times the width of the elongated material.
In the elongated material supply device according to any one of the first to third aspects, the sorter and the detector are disposed downstream from the conveyor in the conveyance direction of the elongated material or a plurality of sorters including the sorter and a plurality of detectors including the detector are disposed downstream from the conveyor in the conveyance direction of the elongated material.
In the elongated material supply device according to any one of the first to fourth aspects, the detector includes a movable member to move in contact with the elongated material and a sensing unit to detect displacement of the movable member.
In the elongated material supply device according to any one of the first to fourth aspects, the detector includes a sensing unit to detect light shielding due to passage of the elongated material.
The elongated material supply device according to any one of the first to sixth aspects further includes a notifier that, in a case that the elongated material has not passed through the sorter, notifies that the elongated material has not passed through the sorter.
In the elongated material supply device according to any one of the first to seventh aspects, in a case that the elongated material has not passed through the sorter, the conveyor is controlled to retry to pass the elongated material through the sorter.
In the elongated material supply device according to the second or third aspect, the passage allowable width is changeable.
In the elongated material supply device according to any one of the first to ninth aspects, the elongated material is formed of a flexible metal material with a full length of 100 mm or more and a width of 3 mm or less.
In the elongated material supply device in any one of the first to tenth aspects, the elongated material is made of iron, stainless steel, aluminum, copper, or an alloy containing iron, stainless steel, aluminum, or copper.
In the elongated material supply device according to any one of the first to eleventh aspects, the elongated material has a circular or polygonal cross section.
A bending apparatus bends a rod-shaped or linear elongated material. The bending apparatus includes: the elongated material supply device according to any one of the first to twelfth aspects; and a processing unit to bend the elongated material supplied by the elongated material supply device.
The above-described embodiments are illustrative and do not limit the present invention. Thus, numerous additional modifications and variations are possible in light of the above teachings. For example, elements and/or features of different illustrative embodiments may be combined with each other and/or substituted for each other within the scope of the present invention. Any one of the above-described operations may be performed in various other ways, for example, in an order different from the one described above.
Number | Date | Country | Kind |
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2022-181723 | Nov 2022 | JP | national |