The present invention relates to a sewing device, a workpiece holding jig, and a sewing method for implementing sewing on a skin material.
Sometimes, in order to create a high-quality feeling in a vehicle interior of an automobile, a skin material that has been cut or molded to match a shape of an interior base material such as an instrument panel undergoes implementation of stitch pattern sewing (is provided with a seam). The sewing has conventionally been performed by a worker using a fixed type sewing machine. In the sewing machine, a workpiece-to-be-sewn is disposed on a sewing machine table, and sewing is performed by a sewing machine needle through which a thread has been passed being caused to penetrate through and withdraw from that workpiece-to-be-sewn.
When performing such sewing, sometimes too, in order to prevent deformation, the sewing is performed with the workpiece-to-be-sewn fixed by a jig of a certain shape. For example, Japanese Laid-Open Patent Publication No. 2017-071382 relates to a method of forming a stitch pattern by a needle thread alone, and describes the workpiece-to-be-sewn being supported by a receiving jig. Moreover, Japanese Laid-Open Patent Publication No. 2017-197163 and Japanese Patent No. 6151117 describe sewing being performed while the workpiece-to-be-sewn is being pressed pinched between a pressing mechanism and a receiving jig.
However, in a conventional sewing device, which is for sewing a comparatively flat portion of the workpiece-to-be-sewn, it is difficult for the receiving jig to be disposed on a narrow portion curved with a small radius of curvature like a portion curved at an acute angle, for example. Therefore, there is a problem that a workpiece-to-be-sewn which has been shaped having a curved portion cannot be accurately sewn.
Hence, there is desired a sewing device, a workpiece holding jig, and a sewing method that enable sewing to be accurately performed even on a workpiece-to-be-sewn in a shaped state.
A sewing device according to an aspect of the present invention is a sewing device for performing sewing along a certain sewing line on a workpiece-to-be-sewn in a state of the workpiece-to-be-sewn having been shaped in a certain shape, the sewing device comprising: a sewing mechanism including: a sewing machine needle configured to, by moving in a reciprocating manner, penetrate through or withdraw from the workpiece-to-be-sewn; a post bed that faces the sewing machine needle across the workpiece-to-be-sewn; and a pressing mechanism configured to press the workpiece-to-be-sewn against the post bed from a side of the sewing machine needle; a drive mechanism configured to move the sewing mechanism; and a workpiece holding jig configured to hold the workpiece-to-be-sewn, wherein the workpiece holding jig includes: a plurality of seating portions disposed in a moving direction of the sewing mechanism, each of the seating portions being configured to hold the workpiece-to-be-sewn shaped in a certain shape by the workpiece-to-be-sewn being seated on a seating surface of a certain shape; and a retraction mechanism configured to, according to a position of the sewing mechanism, retract at least one of the seating portions from the workpiece-to-be-sewn in such a manner that interference between the sewing mechanism and the seating portion is avoided.
According to the above-described sewing device, the workpiece-to-be-sewn is held by the workpiece holding jig including the seating portions each holding the workpiece-to-be-sewn shaped by being seated on the seating surface of the certain shape. As a result, the shaped workpiece-to-be-sewn can be certainly held, and sewing can be performed by the sewing mechanism even on a portion curved at an acute angle, for example, without there being any positional misalignment. Moreover, by providing a retraction mechanism that retracts the seating portion in a region where there is interference with the sewing mechanism, the sewing mechanism can be moved along the sewing line without there being interference with the seating portion.
In the above-described sewing device, in a retraction region where both surfaces of the workpiece-to-be-sewn have been set adrift due to retraction of the seating portion, sewing may be performed with the sewing mechanism pinching the workpiece-to-be-sewn to adjust the surface of the workpiece-to-be-sewn to a flat surface.
According to the above-described configuration, the workpiece-to-be-sewn is held by the workpiece holding jig including the seating portions each holding the workpiece-to-be-sewn shaped by being seated on the seating surface of the certain shape, and a portion where some of those seating portions have been retracted is sewn pinched by the sewing mechanism. Thus, a local portion between the pressing portion and the post bed of the sewing device can be flattened, and an optimal posture of the workpiece-to-be-sewn can be obtained, while the shape that has been shaped is maintained for adjacent portions. As a result, even a portion curved at an acute angle, for example, can be accurately sewn without being affected by its shape.
In the above-described sewing device, the sewing device may comprise a plurality of suction holes provided in the seating surface of the seating portion, and the workpiece-to-be-sewn may be held by being sucked through the suction holes.
According to the above-described configuration, the workpiece-to-be-sewn can be seated on the seating surface of the seating portion by being sucked. Moreover, by suction being stopped, the workpiece-to-be-sewn can be released, and a retraction operation can be quickly performed.
In the above-described sewing device, the sewing device may further comprise a second workpiece holding jig disposed in a position not interfering with the moving direction of the sewing mechanism, and configured to support the workpiece-to-be-sewn.
According to the above-described configuration, the workpiece-to-be-sewn can be more certainly held, and can be accurately sewn.
In the above-described sewing device, the retraction mechanism is configured by a cylinder or cam mechanism.
According to the above-described configuration, the retraction mechanism can be configured by a simple device configuration, and a device configuration of the sewing device can be simplified.
Moreover, a workpiece holding jig of another aspect of the present invention is a workpiece holding jig used in a sewing device that includes a sewing mechanism and a drive mechanism configured to move the sewing mechanism, the sewing mechanism including: a sewing machine needle configured to, by moving in a reciprocating manner, penetrate through or withdraw from a workpiece-to-be-sewn; a post bed that faces the sewing machine needle across the workpiece-to-be-sewn; and a pressing mechanism configured to press the workpiece-to-be-sewn against the post bed from a side of the sewing machine needle, the workpiece holding jig comprising: a plurality of seating portions disposed in a moving direction of the sewing mechanism, each of the seating portions being configured to hold the workpiece-to-be-sewn maintained in a certain shape by the workpiece-to-be-sewn being seated on a seating surface of a certain shape; and a retraction mechanism configured to, according to a position of the sewing mechanism, retract at least one of the seating portions from the workpiece-to-be-sewn in such a manner that interference between the sewing mechanism and the seating portion is avoided.
Moreover, a sewing method of yet another aspect of the present invention is a sewing method for performing sewing along a certain sewing line on a workpiece-to-be-sewn in a state of the workpiece-to-be-sewn having been shaped in a certain shape, the sewing being performed using a sewing mechanism including: a sewing machine needle configured to, by moving in a reciprocating manner, penetrate through or withdraw from the workpiece-to-be-sewn; a post bed that faces the sewing machine needle across the workpiece-to-be-sewn; and a pressing mechanism configured to press the workpiece-to-be-sewn against the post bed from a side of the sewing machine needle, the sewing method comprising: a step of shaping the workpiece-to-be-sewn in a certain shape by the workpiece-to-be-sewn being seated on a plurality of seating portions disposed along a sewing line of the workpiece-to-be-sewn; a step of forming a retraction region where both surfaces of the workpiece-to-be-sewn have been set adrift by retracting some of the seating portions; and a step of performing sewing with the both surfaces of the workpiece-to-be-sewn being pinched by the sewing mechanism, in the retraction region of the workpiece-to-be-sewn.
According to the above-described sewing device, workpiece holding jig, and sewing method, sewing can be accurately performed on the workpiece-to-be-sewn.
Preferred embodiments of the present invention will be presented and described in detail below with reference to the accompanying drawings. Note that “up”, “down”, “left”, and “right” in the description below respectively correspond to upward, downward, leftward, and rightward in the drawings. However, this is an indication of directions which has been adopted for convenience in order to facilitate understanding, and does not define directions when a sewing device, a workpiece holding jig, and a sewing method are actually used.
As shown in
As shown in
The guide pin 22 is fitted to the frame body 26 via a guide bush 42. Moreover, a lower end portion of the guide pin 22 is connected to a piston rod 24a of the air cylinder 24. The guide pin 22 is configured capable of moving in an up-down direction integrally with the piston rod 24a while being guided by the guide bush 42.
The air cylinder 24 has its lower end portion fixed to a base portion 28 of the frame body 26, has its upper end portion (its end portion on the piston rod 24a side) upwardly disposed, and has its piston rod 24a configured capable of moving in an up-down direction of the drawing. This air cylinder 24 is connected with an air hose 44a and an air hose 44b, and operates by supply of compressed air from an external air supplying means (not illustrated).
The above-described air cylinder 24 and guide pin 22 configure a retraction mechanism of the seating portion 20, and the seating portion 20 is configured retractable in the up-down direction. Note that a retracting direction of the seating portion 20 is not limited to the up-down direction, and there may be movement in a horizontal direction or movement with three-dimensional displacement.
The vacuum generator 40 is fitted to the frame body 26. This vacuum generator 40 is supplied with compressed air via air hoses 36c, 36d and an electromagnetic valve 39. The vacuum generator 40 is configured by the likes of a vacuum ejector, for example, and can generate a negative pressure under action of compressed air supplied via the electromagnetic valve 39. The negative pressure generated by the vacuum generator 40 is supplied to an air manifold 38 via an air hose 36b.
The air manifold 38, as well as including passages that branch on its inside, comprises valves that control opening/closing of each of the passages. That air manifold 38 is connected with the air hose 36a. As shown in
Note that instead of the air manifold 38 being connected with the air hoses 36a from the plurality of seating portions 20, it is also possible for each of the seating portions 20 to be individually provided with the vacuum generator 40.
As shown in
The seating portions 20 are each respectively provided with the air cylinder 24 and the guide pin 22, and the individual seating portions 20 are configured to be retractable. That is, the seating portions 20 are configured to be retractable, in order, with approach of the sewing mechanism 14.
As shown in
The pressing mechanism 48 is configured projectable toward the post bed 46 via a shaft 48a, and is configured in such a manner that, when sewing is performed on the workpiece-to-be-sewn 58, the pressing mechanism 48 presses the workpiece-to-be-sewn 58 against a tip of the post bed 46. A tip of the pressing mechanism 48 is provided with a pair of through-holes 48b allowing insertion therethrough of a tip of the sewing machine needle 49.
The sewing machine needle 49 is fitted so as to be enabled to move in a reciprocating manner in the up-down direction by a drive mechanism (not unillustrated) of the projection 50a. Reciprocating movement of the sewing machine needle 49 describes an elliptical locus when viewed from a front of the main body 50. This results in it being configured such that even when the main body 50 is moved at a constant speed, the sewing machine needle 49 is penetrated through the workpiece-to-be-sewn 58 while maintaining a constant position with respect to the workpiece-to-be-sewn 58. The tip of this sewing machine needle 49 has a thread 52 inserted therethrough, and is inserted into a receiving portion of the post bed 46 via the through-hole 48b. Although the sewing machine needle 49 is not specifically limited, two items of the sewing machine needle 49 are illustrated, and these can form two parallel stitch patterns S.
The post bed 46 is provided with an unillustrated looper that holds a loop portion of the thread 52 formed by penetration of the sewing machine needle 49. That post bed 46 catches the loop portion of the sewing machine needle 49 on the next loop portion formed by a penetrating portion of the sewing machine needle 49 to connect up the loop portions, whereby sewing is performed.
The conveyor robot 16 proceeds to convey the sewing mechanism 14 and move a sewing portion of the sewing mechanism 14 along the sewing line at a constant speed. The conveyor robot 16 inclines the main body 50 in accordance with a shape of a sewing position of the workpiece-to-be-sewn 58, and thereby disposes the sewing machine needle 49 at an inclination perpendicular to the sewing position of the workpiece-to-be-sewn 58.
In the above configuration, the workpiece holding jig 12, the sewing mechanism 14, and the conveyor robot 16 operate under control action of an unillustrated control circuit. The sewing device 10 according to the present embodiment is basically configured as above. Operational advantages thereof, along with operation of the sewing device 10, will be described below.
As shown in
Immediately after the workpiece-to-be-sewn 58 has been placed on the workpiece holding jig 12, sewing is started in a state of the workpiece-to-be-sewn 58 being sucked by all of the seating portions 20. Subsequently, an end portion of the workpiece-to-be-sewn 58 is pinched by the pressing mechanism 48 and the post bed 46 of the sewing mechanism 14, and sewing is performed while penetrating and withdrawing the sewing machine needle 49 through/from the workpiece-to-be-sewn 58.
As shown in
The sewing mechanism 14 moves at a constant speed in a rightward direction in the drawings, by means of the conveyor robot 16. Accordingly, as shown in
As a result, the workpiece-to-be-sewn 58 attains a state where both surfaces thereof have been set adrift from the seating portion 20, and in that portion, the sewing mechanism 14 can be moved along the sewing line. Note that even when the first seating portion 20 has been retracted, the shape of the workpiece-to-be-sewn 58 is maintained by the second seating portion 20, hence sewing can be performed in a state where the workpiece-to-be-sewn 58 has been shaped.
Depending on the inclination of the surface at the sewing position of the workpiece-to-be-sewn 58, the sewing mechanism 14 may be obliquely inclined. In that case, a plurality of the seating portions 20 in a range interfering with the sewing mechanism 14 should be retracted.
Next, as shown in
As described above, the seating portion 20 that interferes with the sewing mechanism 14 is retracted in accordance with movement of that sewing mechanism 14, whereby it can be prevented that the seating portion 20 interferes with the sewing mechanism 14. As a result, sewing can be performed by the sewing mechanism 14 while maintaining a state of the workpiece-to-be-sewn 58 having been shaped by the seating portion 20.
In the present embodiment, an example where sewing of the stitch pattern S is implemented assuming an interior material configuring an instrument panel of a vehicle to be a workpiece-to-be-sewn 68, will be described. Note that a configuration of the sewing device 10 used in the present embodiment is basically similar to that shown in
As shown in
As shown in
The sewing mechanism 14 (refer to
Moreover, the conveyor robot 16 (refer to
For example, in the cross section taken along the line VIIA-VIIA of
Note that for a portion curved at an acute angle as shown in
In the present embodiment, an example where a cam mechanism 70 has been adopted for the retraction mechanism of the workpiece holding jig 12 (refer to
The cam mechanism 70 of the present embodiment comprises: a roller 72; and a sliding portion 76 that abuts on that roller 72. The roller 72 is supported by a shaft portion 72a to rotate in an arrow direction of the drawing by that shaft portion 72a. A recess 74 receding in an axial direction is formed in the roller 72. The sliding portion 76 is connected to a base end portion of the guide pin 22. This sliding portion 76 is configured to slide along an outer peripheral portion of the roller 72.
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Moreover, as shown in
In the above description, the present invention has been described by presenting preferred embodiments thereof. However, the present invention is not limited to the above-described embodiments, and it goes without saying that various modifications thereof are possible in a range not departing from the spirit of the present invention.
Number | Date | Country | Kind |
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2018-068189 | Mar 2018 | JP | national |
Filing Document | Filing Date | Country | Kind |
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PCT/JP2019/002915 | 1/29/2019 | WO | 00 |