The present invention relates to a sewing device which can be installed while achieving a space saving when sewing an object to be sewn entirely being long by arranging a long object to be sewn such as a long curtain airbag for constructing a curtain airbag device installed in a vehicle interior of a motor vehicle, and a lot of short object pieces to be sewn in a straight line, and can contribute to an increase in productivity and a reduction of production cost.
A curtain airbag constructing a curtain airbag device installed in a vehicle interior of a motor vehicle is an example of a long object to be sewn and is installed long in a front-back direction along a side door glass in the vehicle interior. An example thereof is described in Patent Literature 1. The curtain airbag is structured, for example, as shown in
One example of a conventional sewing work for sewing the base part d of the attachment piece c to the edge portion b of the airbag body a having the structure mentioned above was achieved, for example, by using nine sewing machines which were provided in correspondence to nine attachment pieces c (
Further, the corresponding sewing machine sequentially sews a base part d of a corresponding attachment piece c to the edge portion b, for example, the first sewing machine h1 sews a base part d (
This sewing is normally achieved by two workers in cooperation. A first worker takes charge of four attachment pieces c1 to c4 in one end side, and transfers the airbag body 1 to a second worker after the end of the work, and the second worker takes charge of sewing of the remaining five attachment pieces c5 to c9, thereby sewing the base parts d of all the attachment pieces c to the edge portion b and finishing fixing of the attachment piece c to the airbag body 1. However, such a human-intensive sewing work has a poor production efficiency, and each of the workers has one sewing machine associated with the sewing of the base part d, so that the remaining sewing machines stop during the sewing of the one sewing machine. Therefore, there is a problem that a production cost of the airbag is increased due to poor operation efficiency of an entire sewing machine.
Consequently, a sewing method using a sewing device m1 shown in
A sewing method using the sewing device m2 comprised, for example, as shown in
When sewing by using the sewing device m2 as mentioned above, the base part d of each of all the attachment pieces c for the edge portion b of the airbag body a can be sewn during the lateral movement of the pallet q from an end to an end in the sewing platform n. As a result, the productivity can be enhanced about twice in comparison with the sewing method in which the pallet q can laterally move in relation to one sewing machine fixed to the fixed position.
However, according to the sewing device m1 in which the pallet q is laterally moved on the sewing platform n where one sewing machine p is installed, a space having about twice length (about 4 m) the length (about 2 m) of the airbag body a is required for installing the sewing device, and there is a problem that a long installation space is required. Further, according to the sewing device m2 in which first and second sewing machines r1 and r2 are installed, a significantly wide installation space having about twice length (about 8 m) is required in comparison with the sewing device in which one sewing machine is installed. Since the installation space of the sewing device is enlarged as mentioned above, a cost increase of an in-plant space per unit area is caused, so that an increase of an equipment cost is caused. Therefore, there is a problem that a production cost per one airbag is increased.
Next, a sewing device disclosed by Patent Literature 2 is described as the other conventional example of the sewing device sewing the long object to be sewn. The sewing device according to Patent Literature 2 is structured such that sewing machines are provided respectively in two straight guide rails which are individually arranged in parallel in both sides on a base plate, and both the sewing machines can linearly move respectively in a direction of an X-axis. However, the respective sewing machines can only sew in previously determined separate working areas, both the sewing machines can not sew the same working area, and both the sewing machines can not assist the sewing operation of the other end sewing machine in the same working area.
Patent Literature 1: WO2008/065964
Patent Literature 2: Japanese Patent Unexamined Publication No. 4-26448
An object of the present invention is to provide a sewing device which can achieve a space saving for installation when performing a required sewing for a sewn product, and can expect an increase in productivity and a reduction of production cost.
In order to solve the problem mentioned above, the present invention employs the following means.
More specifically, in a first aspect of a sewing device according to the present invention, a straight guide rail extending in an X direction is provided in a sewing platform portion for installing in a fixed state a pallet holding an object to be sewn, and one first sewing machine or a plurality of first sewing machines disposed in parallel, and one second sewing machine or a plurality of second sewing machines disposed in parallel are provided at left and right sides of the straight guide rail as viewed in the X direction. The first sewing machine and the second sewing machine are both provided with a movement support platform which allow the straight guide rail to reciprocate in the X direction, and the movement support platform is provided with a sewing machine body which is capable of reciprocating in a Y direction. The first sewing machine and the second sewing machine are both capable of sewing in the same sewing area extending in the X direction, and the first sewing machine and the second sewing machine allow the straight guide rail to reciprocate in the X direction as long as they do not collide with each other, and are program controlled in such a manner that any one of the first sewing machine and the second sewing machine is capable of moving from one side of the straight guide rail toward the other side beyond a middle section thereof during the sewing operation of the first and second sewing machines. Further, a safety device for collision avoidance is provided so as to prevent the first sewing machine and the second sewing machine from colliding with each other, and a sewing operation by the first sewing machine and the second sewing machine is performed by required movement in the X and Y directions of the first and second sewing machines according to a program control.
In a second aspect of a sewing device according to the present invention, a straight guide rail extending in an X direction is provided in a sewing platform portion for installing in a fixed state a pallet holding an object to be sewn, one first sewing machine or a plurality of first sewing machines disposed in parallel, and one second sewing machine or a plurality of second sewing machines disposed in parallel are provided at left and right sides of the straight guide rail as viewed in the X direction, the first sewing machine and the second sewing machine are both provided with a movement support platform which allow the straight guide rail to reciprocate in the X direction, and the movement support platform is provided with a sewing machine body which is capable of reciprocating in a Y direction. The first sewing machine and the second sewing machine are both capable of sewing in the same sewing area extending in the X direction, the first sewing machine and the second sewing machine are both capable of forward moving toward an object to be sewn which is held by the pallet, and the forward moving directions of both the sewing machine are the same. Further, the first sewing machine and the second sewing machine allow the straight guide rail to reciprocate in the X direction as long as they do not collide with each other, and are program controlled in such a manner that any one of the first sewing machine and the second sewing machine is capable of moving from one side of the straight guide rail toward the other side beyond a middle section thereof during the sewing operation of the first and second sewing machines. Further, a safety device for collision avoidance is provided so as to prevent the first sewing machine and the second sewing machine from colliding with each other, and a sewing operation by the first sewing machine and the second sewing machine is performed by required movement in the X and Y directions of the first and second sewing machines according to a program control.
In a third aspect of a sewing device according to the present invention, a straight guide rail extending in an X direction is provided in a sewing platform portion for installing in a fixed state a pallet holding an object to be sewn, one first sewing machine or a plurality of first sewing machines disposed in parallel, and one second sewing machine or a plurality of second sewing machines disposed in parallel are provided at left and right sides of the same straight guide rail as viewed in the X direction, the first sewing machine and the second sewing machine are both provided with a movement support platform which allow the straight guide rail to reciprocate in the X direction, and the movement support platform is provided with a sewing machine body which is capable of reciprocating in a Y direction. The first sewing machine and the second sewing machine are both capable of sewing in the same sewing area extending in the X direction, the first sewing machine and the second sewing machine are both capable of forward moving toward an object to be sewn which is held by the pallet, and the forward moving directions of both the sewing machine are the same. Further, the first sewing machine and the second sewing machine allow the straight guide rail to reciprocate in the X direction as long as they do not collide with each other, and are program controlled in such a manner that any one of the first sewing machine and the second sewing machine is capable of moving from one side of the straight guide rail toward the other side beyond a middle section thereof during the sewing operation of the first and second sewing machines, a safety device for collision avoidance is provided so as to prevent the first sewing machine and the second sewing machine from colliding with each other, and a sewing operation by the first sewing machine and the second sewing machine is performed by required movement in the X and Y directions of the first and second sewing machines according to a program control.
In a fourth aspect of a sewing device according to the present invention, a straight guide rail extending in an X direction is provided in a sewing platform portion for installing in a fixed state a pallet holding an object to be sewn, one first sewing machine or a plurality of first sewing machines disposed in parallel, and one second sewing machine or a plurality of second sewing machines disposed in parallel are provided at left and right sides of the same straight guide rail as viewed in the X direction, the straight guide rail is constituted by a first straight guide rail and a second straight guide rail which are separately provided, the first straight guide rail is provided with the first sewing machine, the second straight guide rail is provided with the second sewing machine, the first sewing machine and the second sewing machine are both provided with a movement support platform which allow the straight guide rail to reciprocate in the X direction, and the movement support platform is provided with a sewing machine body which is capable of reciprocating in a Y direction. The first sewing machine and the second sewing machine are both capable of sewing in the same sewing area extending in the X direction, the first sewing machine and the second sewing machine allow the straight guide rail to reciprocate in the X direction as long as they do not collide with each other, and are program controlled in such a manner that any one of the first sewing machine and the second sewing machine is capable of moving from one side of the straight guide rail toward the other side beyond a middle section thereof during the sewing operation of the first and second sewing machines. Further, a safety device for collision avoidance is provided so as to prevent the first sewing machine and the second sewing machine from colliding with each other, and a sewing operation by the first sewing machine and the second sewing machine is performed by required movement in the X and Y directions of the first and second sewing machines according to a program control.
A fifth aspect of a sewing device according to the present invention is the sewing device according to any one of the first to fourth aspects, wherein a first evacuation rail part extending outward in an extension direction of the straight guide rail is provided in a left end of a sewing travel range of the straight guide rail on which the first and second sewing machines move in the X direction for the sewing operation, and a second evacuation rail part extending outward in the extension direction of the straight guide rail is provided in a right end of the sewing travel range. Further, when the first sewing machine is troubled during the sewing operation of the first and second sewing machines, the first sewing machine can be moved to the first evacuation rail part to be evacuated, when the second sewing machine is troubles, the second sewing machine is moved to the second evacuation rail part to be evacuated, and the other sewing machine having no trouble performs the sewing operation in a whole of the sewing travel range.
A sixth aspect of a sewing device according to the present invention is the sewing device according to any one of the first to fourth aspects, wherein a first evacuation rail part extending outward in an extension direction of the straight guide rail is provided in a left end of a sewing travel range of the straight guide rail on which the first and second sewing machines move in the X direction for the sewing operation, and a second evacuation rail part extending outward in the extension direction of the straight guide rail is provided in a right end of the sewing travel range. Further, when the first sewing machine is troubled during the sewing operation of the first and second sewing machines, the first sewing machine can be moved to the first evacuation rail part to be evacuated, when the second sewing machine is troubles, the second sewing machine is moved to the second evacuation rail part to be evacuated, and the other sewing machine having no trouble performs the sewing operation in a whole of the sewing travel range. Further, the first and second sewing machine can be both moved to any one of the first evacuation rail part and the second evacuation rail part.
A seventh aspect of a sewing device according to the present invention is the sewing device according to any one of the first to fourth aspects, wherein the sewing device is provided with a horizontally circulating movement path for moving the pallet in a required order in such a manner as to draw a rectangular shape in a planar view, the horizontally circulating movement path is provided with a front side part extending in a lateral direction and a rear side part extending in the lateral direction at a required interval, a left portion of the front side part is formed as a first work station, a right portion of the front side part is formed as a second work station, a right portion of the rear side part is formed as a third work station, a left portion of the rear side part is formed as a fourth work station, and the pallet is adapted to temporarily stop in the first work station, the second work station, the third work station and the fourth work station. Further, a sewing operation is adapted to be performed by the first and second sewing machine to the object to be sewn which the pallet in the first work station holds, a new object to be sewn is adapted to be held to the pallet in the third work station and the fourth work station during the sewing operation, the pallet moves to the second work station to come to a temporary stop state when the sewing operation to the object to be sewn held in the pallet is finished in the first work station, a sewing finished product is removed from the pallet in the second work station, the pallet thereafter moves to the third work station to a temporary stop state, and thereafter moves to the fourth work station to a temporary stop state, the object to be sewn is held to the pallet in the third work station and the fourth work station, the pallet holding the object to be sewn moves to the first work station, and the sewing operation is applied to the object to be sewn as mentioned above.
An eighth aspect of a sewing device according to the present invention is the sewing device according to any one of the first to fourth aspects, wherein the movement support platform capable of reciprocating along the straight guide rail in the X direction is provided with an upper transverse member cutting across the pallet in a front-back direction above the pallet, and a lower transverse member arranged below the upper transverse member and cutting across the pallet in the front-back direction. The lower transverse member is substantially integrated with the upper transverse member, and the upper transverse member is provided with an upper accommodation part in such a manner that the upper accommodation part is capable of reciprocating in the Y direction, the upper accommodation part constructing the sewing machine body and in which a needle bar drive mechanism moving a sewing machine needle up and down is accommodated. Further, the lower transverse member is provided with a lower accommodation part in such a manner that the lower accommodation part is capable of reciprocating in the Y direction, the lower accommodation part constructing the sewing machine body and in which a shuttle feeding a bobbin thread is accommodated, and the upper and lower accommodation parts are synchronously movable in the X and Y directions according to a program control. Further, leg column parts are protruded downward in both end sides of the upper transverse member, and lower end portions of both the leg column parts are capable of reciprocating in the X direction by being guided along the straight guide rail provided along front and rear edge parts of the sewing platform portion and extending in the X direction.
The present invention employs the structure mentioned above. Therefore, the present invention can achieve a space saving for installation and expect an increase in productivity and a reduction in production cost when a required sewing operation is performed to an object to be sewn. A description will be specifically given of the same below.
(1) The present invention is different from the structure in which two sewing machines are provided in the fixed state at the required intervals and the sewing operation is performed while moving the pallet in the sewing platform portion, such as the sewing device m2 described with reference to
Therefore, according to the present invention, the sewing device can be installed while reducing an installation space in a length direction of the device, and a cost per unit area of an in-plant space can be reduced by the space saving. Accordingly, an equipment cost can be reduced, and a production cost of a sewn product such as an airbag can be expected to be reduced.
(2) Further, the first and second sewing machines can both sew in the same sewing area extending in the X direction, and are program controlled in such a manner that any one thereof can move from one side of the straight guide rail toward the other side thereof beyond the middle section thereof, the safety device for collision avoidance is provided so as to prevent the first sewing machine and the second sewing machine from colliding with each other, and the sewing operation of the first sewing machine and the second sewing machine is performed by the required movement of the first and second sewing machine in the X and Y directions according to the program control. Therefore, according to the present invention, the first sewing machine and the second sewing machine can sew the same object to be sewn in a wide area, and both the sewing machines can assist the sewing operation of the other end sewing machine in the same working area each other. Accordingly, it is possible to sew with improved productivity within the working area by changing a program regardless of a shape and a magnitude of the object to be sewn and a sewing pattern.
(3) In a case of employing the structure in which the first evacuation rail part is provided in a left end of a sewing travel range of the straight guide rail along which the first and second sewing machines move in the X direction for sewing, and the second evacuation rail part is provided in a right end of the sewing travel range, the first sewing machine can be moved to the first evacuation rail part to be evacuated when the first sewing machine is troubled, and the second sewing machine can be moved to the second evacuation rail part to be evacuated when the second sewing machine is troubled. Further, the other sewing machine having no trouble can perform the sewing operation in a whole of the sewing travel range.
Therefore, according to the sewing device having the structure mentioned above, there is an advantage that a whole sewing operation can be continued by the sewing machine having no trouble without stopping an entire operation of the sewing device in a case where any one of the first and second sewing machines is troubled.
(4) In a case of structuring such that the first and second sewing machines can both move to any one of the first and second evacuation rail parts, it is possible to collectively check a trouble in the first and second sewing machines and dissolve a trouble for two sewing machines by moving both the first and second sewing machines to the evacuation rail part. For example, it is possible to inspect and clean the first and second sewing machines when starting, and regulate the sewing motion of the sewing machine, in the evacuation rail part. Further, it is possible to replace a consumable part such as a needle and repair a broken sewing machine.
(5) In a case of structuring such that the sewing device is provided with the horizontally circulating movement path for moving the pallet in the required order in such a manner as to draw the rectangular shape in the planar view, the horizontally circulating movement path is provided with the front side part extending in the lateral direction and the rear side part extending in the lateral direction at the required interval in the front-back direction, the left portion of the front side part is formed as the first work station, the right portion thereof is formed as the second work station, the right portion of the rear side part is formed as the third work station, and the left portion thereof is formed as the fourth work station, it is possible to provide a sewing device which can expect further increase in productivity.
More specifically, it is possible to perform a work for detaching the sewing finished product in the second work station and a work for holding the object to be sewn to the pallet in the third and fourth work stations in plenty of time during a sewing time by the first and second sewing machine, on the basis of the structure mentioned above. Such being the case, the sewing motion can be continuously performed by the sewing machines without wastefully stopping the sewing motion by the first and second sewing machines. Therefore, it is possible to more effectively achieve the advantage of the increase in productivity by the first and second sewing machines.
(6) In a case where the first sewing machine and the second sewing machine are respectively constructed by a plurality of sewing machines arranged in parallel in the X direction, the sewing operation can be more efficiently performed by the plurality of first and second sewing machines, for example, even in a case where the object to be sewn extending in the X direction is long and a lot of sewing positions are provided.
(7) In a case of structuring such that the movement support platform is provided with the upper transverse member cutting across the pallet in the front-back direction above the pallet, and the lower transverse member arranged below the upper transverse member and cutting across the pallet in the front-back direction, an entire space below the upper transverse member can be set to the sewing area. Therefore, there is an advantage that a wide object to be sewn extending over approximately a whole of the lower space can be sewn with no trouble. Further, since both end sides of the upper transverse member are supported by the straight guide rail via the leg column part even if the upper transverse member is long, the needle bar drive mechanism in the sewing state can be stably supported, and it is possible to perform the sewing operation by the first and second sewing machines in a stable state.
7 is a plan view describing a sewing step of attaching the attachment piece to the edge portion of the airbag body by sewing.
In
The first sewing machine 7 and the second sewing machine 9 are both provided with a movement support platform 10 which allows the straight guide rail 6 to reciprocate in the X direction, and the movement support platform 10 is provided with a sewing machine body 11 which can reciprocate in a Y direction. In the present embodiment, the first sewing machine 7 and the second sewing machine 9 are both provided in the same straight guide rail 6, and the first and second sewing machines 7 and 9 can both sew in the same sewing area extending in the X direction. Further, the first sewing machine 7 and the second sewing machine 9 can reciprocate along the straight guide rail 6 in the X direction as long as they do not collide with each other. Further, the first and second sewing machines 7 and 9 are program controlled in such a manner that any one of the first and second sewing machines 7 and 9 can move from one side of the straight guide rail 6 toward the other side thereof beyond a middle section thereof as shown by arrows F1 and F2 in
The sewing device 1 is applied for sewing a base part 17 (
The straight guide rail 6 is constructed by a first guide rail 19 and a second guide rail 20 extending in the X direction at a required interval as viewed in the Y direction, as shown in
The sewing machine bodies 11 according to the first sewing machine 7 and the second sewing machine 9 have the same structure. The sewing machine body 11 is provided with a base member 23 which is provided on the movement support platform 10, for example, having a rectangular plate shape long in the Y direction, and can reciprocate in the Y direction, a bed part 25 which is provided on the base member 23, a leg part 26 which is erected at an outer position on the bed part 25 as viewed in the Y direction, and an arm part 27 which is protruded in a horizontal state at an upper portion of the leg part 26, as shown in
Further, as shown in
Further, as shown in
Further, as shown in
The moving device 46 is arranged between the first rail 40 and the second rail 41 in such a manner that a drive screw shaft 47, for example, constructed by a ball screw extends in the Y direction, as shown in
Thus, the drive screw shaft 47 is forward rotated by the numerically controlled motor 52, so that the base member 23 can move forward as shown in
As mentioned above, the first sewing machine 7 and the second sewing machine 9 can reciprocate along the straight guide rail 6 in the X direction as long as they do not collide with each other. In the present embodiment, as shown in
The pallet 3 installed in the sewing platform portion 5 is constructed by a rectangular frame body 55 which is elongated in the X direction, as shown in
Further, as shown in
Further, as shown in
The airbag body 13 to which the attachment piece 16 is temporarily attached as mentioned above is held via a clamp device (not shown) which is appropriately attached to an inner peripheral edge part of the rectangular frame body 55. Since it is necessary to fix the base part 17 (
The pallet 3 in which the airbag body 13 is held as mentioned above is installed to the sewing platform portion 5 in a fixed state, and the first and second sewing machines 7 and 9 perform the sewing operation of the edge portion 15.
The sewing device 1 according to the present invention is program controlled, as mentioned above, such that the first sewing machine 7 and the second sewing machine 9 can reciprocate along the straight guide rail 6 in the X direction as long as they do not collide with each other, and any one of them can move from one side of the straight guide rail 6 toward the other side beyond the middle section thereof during the sewing operation of the first and second sewing machines 7 and 9. Further, the safety device for collision avoidance is provided so as to prevent the first sewing machine 7 and the second sewing machine 9 from colliding with each other.
Next, a description will be given of an example of a case where any one of the first and second sewing machines 7 and 9 moves toward the other of the straight guide rail 6 beyond the middle section of the straight guide rail 6 for sewing during the sewing operation of the first and second sewing machines 7 and 9. In
Conversely, in a case where the sewing amount in the left portion 15A is large, the second sewing machine 9 moves to the left portion 15A beyond the middle section, and the second sewing machine 9 can assist the sewing operation of the first sewing machine 7. As a result, it is possible to allocate a sewing time corresponding to an amount to be sewn, that is, a time required for sewing the object to be sewn as a whole to the first and second sewing machines 7 and 9, and the sewing times of the first and second sewing machines 7 and 9 can be set to approximately the same level. Thus, an operation rate of the sewing device can be increased by reducing a stop time of the individual sewing machines. Therefore, it is possible to achieve an increase in productivity and a reduction in production cost for sewing.
In connection with the sewing operation, it is necessary to sequentially feed the pallet 3 holding the object to be sewn 2 to the sewing part 61 (
The vertically circulating movement type pallet moving device 63 is adapted to move four pallets 3, 3, 3 and 3 so as to draw a rectangle in a side view, as shown in
Next, a description will be specifically given of the sewing operation by the first sewing machine 7 and the second sewing machine 9. In the sewing operation, in order to most shorten the sewing time of the object to be sewn 2, the sewing motions of the first and second sewing machines 7 and 9 are program controlled. The attachment pieces 16 in the right portion 15B in
On the basis of the program control, the second sewing machine 9 sews the base part 17 (
As mentioned above, the second sewing machine 9 performs the sewing operation by the right portion 15B (
Further, according to the sewing device m2 (
Further, in the embodiment mentioned above, the moving work of the pallet 3 is performed by using the vertically circulating movement type pallet moving device 63 which circulates and moves the pallet 3 in the vertically circulating movement path 62 (
The horizontally circulating movement type pallet moving device 71 moves the pallet 3 in the horizontally circulating movement path 70 in a required order in the present embodiment in such a manner as to draw a rectangle in a planar view clockwise in
The horizontally circulating movement path 70 is provided with a front side part 72 extending in a lateral direction and a rear side part 73 extending in a lateral direction in parallel at required intervals in a front-back direction as shown in
The object to be sewn 2 is adapted to be held to the pallet 3 (3C) in the third work station 77 and the pallet 3 (3D) in the fourth work station 79 during the sewing operation. Further, when the sewing operation to the object to be sewn 2 held in the pallet 3A is finished, the pallet 3A is moved to the second work station 76, the sewing finished product is removed from the pallet 3 (3B) in the second work station 76, and the pallet 3 thereafter moves to the third work station 77 to be in a temporary stop state, and thereafter moves to the fourth work station 79 to be in a temporary stop state.
Further, in the third work station 77 and the fourth work station 79, a work for holding a new object to be sewn 2 to the pallets 3C and 3D is manually performed, the pallet 3D to which the object to be sewn 2 is held moves to the first work station 75, and the sewing operation is applied to the object to be sewn 2 as mentioned above.
The movement of the pallet 3 can be performed, for example, by using a conveyor device including a circling belt which can move up and down and has an upper surface part circling toward one direction. The pallet 3 can be supported by the upper surface portion of the circling belt on the basis of the upward movement of the conveyor device, and the pallet 3 can be moved toward a required forward moving direction by desirably circling the circling belt in this state.
The other structures of the sewing device 1 according to the present embodiment are the same as those described in connection with the embodiment 1, and a specific description thereof will be therefore omitted.
The sewing device 1 according to the present embodiment employs the structure in which the first evacuation rail part 66 is provided in the left end of the sewing travel range 64 of the straight guide rail 6, and the second evacuation rail part 69 is provided in the right end of the sewing travel range 64, as mentioned above. Thus, when the first sewing machine 7 is troubled, the first sewing machine 7 can be moved to the first evacuation rail part 66 to be evacuated as shown in
Therefore, according to the sewing device 1 having the structure mentioned above, there is an advantage that in a case where any one of the first and second sewing machines 7 and 9 is troubled, an entire sewing operation can be continued by the other sewing machine which is not troubled, without stopping the entire sewing operation of the sewing device.
Further, in a case where the present invention is further structured such that the first and second sewing machines 7 and 9 can both move to any one of the first and second evacuation rail parts 66 and 69 (for example, the first evacuation rail part 66), it is possible to collectively check the troubles in the first and second sewing machines 7 and 9 and dissolve the troubles for two sewing machines by moving both the first and second sewing machines 7 and 9 to the evacuation rail part 66, as shown in
Further, in a case where the sewing device 1 according to the present embodiment is provided with the horizontally circulating movement type pallet moving device 71 (
A description will be given as follows of the advantage by comparing with the vertically circulating movement type pallet moving device 63, for example, shown in
In the sewing device 1 according to
In the sewing device 1 according to
The sewing device 1 according to
In the sewing device 1 according to
The sewing device 1 according to
It goes without saying that the present invention is not limited to the structures shown by the embodiments, but can be variously design changed within the scope of “Claims”. Such design change will be exemplified as follows.
(1) In the first sewing machine 7 and the second sewing machine 9 which are positioned in left and right sides of the straight guide rail 6 (constructed by the first guide rail 19 and the second guide rail 20 in
In some object to be sewn, the sewing amount of the position to be sewn may be more in the left portion 15A or more in the right portion 15B. Therefore, the numbers of the first and second sewing machines 7 and 9 may be differentiated, for example, the number of only one of the first sewing machine 7 and the second sewing machine 9 is set to plural number and the number of the other thereof is set to one. Further, in the first sewing machine 7 and the second sewing machine 9, the length of the arm part 27 (
(2)
Further, leg column parts 95 and 95 are protruded downward in both end sides 94 and 94 of the upper transverse member 90, and the movement support platform 10 is formed into the gate shape as mentioned above. In the present embodiment, both ends 96 and 96 of the lower transverse member 91 are coupled directly, for example, to inner surface parts of the leg column parts 95 and 95, so that the lower transverse member 91 is substantially integrated with the upper transverse member 90.
An aspect that the lower transverse member 91 is substantially integrated with the upper transverse member 90 includes an aspect that the lower transverse member 91 is structured such as to be capable of reciprocating in the X direction in synchronous with the upper transverse member even if both ends 96 and 96 of the lower transverse member 91 are not directly coupled to the leg column parts 95 and 95.
The gate-shaped movement support platform 10 having the structure mentioned above can reciprocate in the X direction by the lower end portions of both the leg column parts 96 and 96 being guided along the straight guide rail 6 provided along the front and rear edge parts 97 and 97 (
The upper accommodation part 92 is provided at a required position such as a lower surface part or a side surface part of the upper transverse member 90, for example, the side surface part 99, and can reciprocate in the Y direction. The lower accommodation part 93 is provided in the same manner as the lower transverse member 91 and can reciprocate in the Y direction. A means for reciprocating the upper and lower accommodation parts 92 and 93 in the Y direction can be constructed by the forward and reverse rotation of the drive screw shaft, and can be also constructed by using various known means such as a means constructed by using a rack and pinion, and a moving means using a timing belt.
In a case where the movement support platform 10 is structured such as to form the gate shape, an entire lower space of the upper transverse member 90 can be formed as a sewing area. Therefore, there is an advantage that a wide object to be sewn over an approximately whole of the lower space can be sewn with no trouble. Further, both end sides 94 and 94 of the upper transverse member 90 are supported by the straight guide rail 6 via the leg column parts 95 and 95 even in a case where the upper transverse member 90 is long. Thus, it is possible to stably support the needle bar drive mechanism during the sewing operation, and it is therefore possible to perform the sewing operation by the first and second sewing machines 7 and 9 in a stable state.
In a case where the movement support platform 10 is formed into the gate shape, the number of the first sewing machine 7 and the second sewing machine 9 can be set to one or plural number arranged side by side in the X direction.
(3) As long as the straight guide rail 6 can allow the first and second sewing machines 7 and 9 to stably travel in the X direction in a case where the first and second sewing machines 7 and 9 are adapted to be capable or reciprocating along the same straight guide rail 6 in the X direction, the first and second guide rails 19 and 20 are not limited in their numbers, and may be constructed by one rail.
Further, as long as the first and second straight guide rails 80 and 81 can allow the first and second sewing machines 7 and 9 to stably travel in the X direction in a case where the straight guide rail 6 is constructed by the separate first and second straight guide rails 80 and 81, the second straight guide rail 81 in
(4) As long as the movement support platform 10 provided with the sewing machine body 11 can be stably traveled in the Y direction, the first rail 40 and the second rail 41 shown in
(5) In a case where the means for reciprocating the movement support platform 10 constructing the first and second sewing machines 7 and 9 in the X direction is constructed by the rack 21 and the pinion 22 mentioned above, a manufacturing cost of the sewing device 1 can be preferably reduced by simplification of the structure. In this case, the rack 21 may be provided in the first guide rail 19 or the second guide rail 20.
Further, the means for reciprocating the movement support platform 10 in the X direction can employ various known means such as a moving means using a ball screw and a moving means using a timing belt.
(6) The means for reciprocating the base member 23 in the Y direction can be constructed by using various known means such as a means constructed by using a rack and pinion and a means constructed by using a timing belt in addition, to the means using the drive screw shaft 47 formed by the ball screw.
(7) The motion for sewing of the first sewing machine 7 and the second sewing machine 9 is various, and the motion is performed by actuating the safety device for collision avoidance when necessary. Therefore, the sewing operation according to the present invention can be performed by program controlling so as to shorten the sewing time of the object to be sewn 2 as much as possible.
(8) The sewing device 1 according to the present invention is preferably used when manufacturing the curtain airbag mentioned above, and is preferably applied in a case where the object to be sewn is long and a lot of sewing steps are provided, such as a case where a required sewing operation is applied to an upper edge portion of a general curtain over an entire length, and a case where an embroidery is applied to the long object to be sewn.
(9) In the sewing device according to the present invention, the long object to be sewn 2 includes, for example, an object to be sewn which is formed long as a whole by arranging a lot of short object pieces to be sewn side by side on a straight line. In this case, it is possible to perform the sewing operation for a lot of short object pieces to be sewn at one time, thereby performing a multiple-piece sewing operation.
Number | Date | Country | Kind |
---|---|---|---|
2018-175777 | Sep 2018 | JP | national |
2019-027546 | Feb 2019 | JP | national |
2019-087334 | May 2019 | JP | national |
2019-166135 | Sep 2019 | JP | national |
Filing Document | Filing Date | Country | Kind |
---|---|---|---|
PCT/JP2019/036487 | 9/18/2019 | WO | 00 |