This application is based upon and claims the benefit of priority from Japanese Patent Application No. 2019-009849 filed on Jan. 24, 2019, the contents of which are incorporated herein by reference.
The present invention relates to a sewn workpiece in which a sewn part that needs to be sewed is provided to a base material made of resin, and a molding method for the sewn workpiece.
Japanese Laid-Open Patent Publication No. 2017-013659 discloses a technique for providing a stitch pattern with the use of a sewing needle and a sewing thread to a workpiece made of resin or an interior component of a vehicle, such as a dashboard (also referred to as instrument panel). In the present specification, a workpiece in which a sewn part that needs to be sewed is provided to a base material made of resin is referred to as a sewn workpiece.
When the sewing needle is penetrated through the sewn part, the sewing needle is burdened. As disclosed in Japanese Laid-Open Patent Publication No. 2017-013659, in a case of providing a stitch pattern to a flat sewn part, it is relatively easy to penetrate the sewing needle through the sewn part. Meanwhile, the sewn part may include a bent part. When the sewing needle is penetrated through the bent part, the sewing needle is heavily burdened and moreover, reaction force is generated by the bent part in directions other than a penetrating direction. For this reason, sewing the bent part is difficult and the sewing needle may even be broken. In addition, the sewing needle may be broken because of slipping on a surface of the bent part.
The present invention has been made in view of the above problem, and an object is to provide a sewn workpiece where the bent part is easily sewed, and a molding method for the sewn workpiece.
A first aspect of the present invention is a sewn workpiece in which a sewn part that needs to be sewed is provided to a base material made of resin, wherein: the sewn part includes a bent part; and a hole is provided in the bent part at a position where a sewing needle is penetrated.
By the above structure, the hole is provided to the bent part of the base material in advance; therefore, the reaction force that the sewing needle receives from the base material in the sewing of the bent part can be reduced. In addition, since an end of the sewing needle is inserted into the hole in the sewing of the bent part, the sewing needle does not slip on a surface of the bent part and needle slip, needle break, and sewing failure can be prevented.
A second aspect of the present invention is a method of molding a sewn workpiece for molding a base material made of resin including a sewn part that needs to be sewed, wherein injection molding is performed using a die including a protrusion in a bend molding part, in a manner that a bent part is molded in the sewn part of the base material by the bend molding part and that a hole is molded in the bent part by the protrusion at a position where a sewing needle is penetrated.
By the above structure, the sewn workpiece in which the reaction force that the sewing needle receives from the base material is reduced can be manufactured. In this sewn workpiece, the needle slip, the needle break, and the sewing failure can be prevented.
According to the present invention, the bent part can be sewed easily and the sewing process can be performed efficiently.
The above and other objects, features, and advantages of the present invention will become more apparent from the following description when taken in conjunction with the accompanying drawings in which a preferred embodiment of the present invention is shown by way of illustrative example.
Preferred embodiments of a sewn workpiece and a molding method for the same according to the present invention are hereinafter described in detail with reference to the attached drawings.
A sewn workpiece 10 is used as an interior component of a vehicle, for example a dashboard (instrument panel) or the like. The sewn workpiece 10 may have nothing on a front surface 24 of a base material 20 made of resin as illustrated in
The base material 20 includes a bent part 22 that is angular or round. The bent part 22 may have either a protruding shape or a depressed shape when viewed from a side of the front surface 24 of the base material 20. A position on the base material 20 corresponding to the stitch pattern 16 to be formed on the sewn workpiece 10 is referred to as a sewn part 28. In the present embodiment, the sewn part 28 is provided to cover the bent part 22. In other words, the sewn part 28 includes the bent part 22.
As illustrated in
Each of the holes 30 is provided preferably along a penetrating direction of the sewing needle. For example, in a case where the penetrating direction of the sewing needle is parallel to a direction orthogonal to the front surface 24 of the base material 20, the hole 30 is preferably provided along a straight line orthogonal to the front surface 24 of the base material 20. However, the hole 30 does not need to be provided along the penetrating direction of the sewing needle because it is only necessary that the resistance in inserting the sewing needle into the base material 20 is decreased or the slipping of the sewing needle on the front surface 24 can be prevented.
The holes 30 may penetrate the base material 20 from the front surface 24 side to a back surface 26 side as illustrated in
The hole 30 illustrated in
The hole 30 illustrated in
The base material 20 of the sewn workpiece 10 is manufactured by injection molding with an injection molding apparatus that is not illustrated. As illustrated in
The first die 50 is formed by one or more insert dies 50a. Similarly, the second die 60 is formed by one or more insert dies 60a. The first die 50 includes a first bend molding part 52 for molding the bent part 22 of the base material 20. Similarly, the second die 60 includes a second bend molding part 62 for molding the bent part 22 of the base material 20.
In the example illustrated in
In the example illustrated in
To the front surface 24 of the molded base material 20, the skin 40 is attached with an adhesive or the like, and the sewn part 28 is sewed while a sewing machine is moved with a robot or the like. Thus, the stitch pattern 16 as illustrated in
[3. Technical Concept Obtained from Embodiment]
The technical concept that is obtained from the above embodiment is hereinafter described.
The first aspect of the present invention is the sewn workpiece 10 in which the sewn part 28 that needs to be sewed is provided to the base material 20 made of resin, wherein: the sewn part 28 includes the bent part 22; and the hole 30 is provided in the bent part 22 at the position where the sewing needle is penetrated.
By the above structure, the hole 30 is provided to the bent part 22 of the base material 20 in advance; therefore, the reaction force that the sewing needle receives from the base material 20 in the sewing of the bent part 22 can be reduced. In addition, since the end of the sewing needle is inserted into the hole 30 in the sewing of the bent part 22, the sewing needle does not slip on the front surface 24 of the bent part 22 and the needle slip, the needle break, and the sewing failure can be prevented.
In the sewn workpiece 10, the hole 30 may penetrate from the front surface 24 side to the back surface 26 side of the bent part 22 (
In the sewn workpiece 10, the hole 30 may include the opening (front surface opening 32) on the front surface 24 of the bent part 22, and the bottom part 38 on the back surface 26 side of the bent part 22 compared with the opening (front surface opening 32) (
The second aspect of the present invention is the method of molding the sewn workpiece 10 for molding the base material 20 made of resin including the sewn part 28 that needs to be sewed, wherein the injection molding is performed using the die (first die 50 or second die 60) including the protrusion (first protrusion 56 or second protrusion 66) in the bend molding part (first bend molding part 52 or second bend molding part 62), in a manner that the bent part 22 is molded in the sewn part 28 of the base material 20 by the bend molding part and that the hole 30 is molded in the bent part 22 by the protrusion at the position where the sewing needle is penetrated.
By the above structure, the sewn workpiece 10 in which the reaction force that the sewing needle receives from the base material 20 is reduced can be manufactured. In this sewn workpiece 10, the needle slip, the needle break, and the sewing failure can be prevented.
In the molding method for the sewn workpiece 10, in the molding of the base material 20, the hole 30 may penetrate from the front surface 24 side to the back surface 26 side of the bent part 22 (
In the molding method for the sewn workpiece 10, in the molding of the base material 20, the opening (front surface opening 32) of the hole 30 may be molded on the front surface 24 of the bent part 22 and the bottom part 38 may be molded on the back surface 26 side of the bent part 22 compared with the opening (front surface opening 32) (
Note that the sewn workpiece and the molding method for the same according to the present invention are not limited to the above embodiment, and can employ various structures without departing from the gist of the present invention.
Number | Date | Country | Kind |
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2019-009849 | Jan 2019 | JP | national |