1. Field of the Invention
The invention relates to a welded structure and a welding method. More particularly, the invention relates to technology that improves the positioning accuracy of sheet-shaped members when welding the members together.
2. Description of Related Art
Japanese Patent Application Publication No. 4-351276 (JP-A-4-351276) and Japanese Patent Application Publication No. 2003-103376 (JP-A-2003-103376), for example, describe technology in which, when welding sheet-shaped members together, a circular hole is provided in one part to be welded, and a round protruding portion is provided on another part to be welded. The other part is positioned with respect to the one part with the protruding portion fitted into the circular hole, and the welding is then performed.
With the technology described in JP-A-4-351276 and JP-A-2003-103376, when forming the protruding portion on a part to be welded, typically the height of the protruding portion is approximately half the thickness of the sheet. For example, when a thin sheet such as a body part of a vehicle is used, the height of a machinable protruding portion is approximately 0.3 mm to 1.2 mm with respect to the sheet thickness (approximately 0.6 mm to 2.5 mm). As with a body part, in a large sheet metal press, the clearance may shrink by approximately 1 mm due to precision error or the like, which makes it difficult to stably ensure the height of the protruding portion.
Also, as described above, the height of the protruding portion is approximately 0.3 mm to 1.2 mm, so if the clearance shrinks by approximately 1 mm, the parts may become offset from one another when they are positioned. Such an offset is difficult to determine. Furthermore, the overlap between the protruding portion and the circular hole is small, so the parts may disengage from each other or assembly offset may occur, due to the effect of the magnetic field or elastic deformation of the parts during welding.
On the other hand, technology is known in which a hole 112 is provided in one part 111 to be welded, a U-shaped slit, for example, is made in another part 121 to be welded, and this slit portion is bent upright to form a pawl-shaped protruding portion 122, as shown in
With this technology, the protruding portion 122 engages with the hole 112 with a gap D1 formed between end portions P of the protruding portion 122 and an inner peripheral surface of the hole 112, as shown in
Also, the size of the hole that is formed when forming the protruding portion 122 on the other part 121 (i.e., arrow D2 in
The invention thus provides a welded structure and a welding method, capable of improving sealability, while ensuring the positioning accuracy of parts to be welded.
A first aspect of the invention relates to a welded structure in which a sheet-shaped second part to be welded is positioned with respect to a sheet-shaped first part to be welded, and the first part to be welded and the second part to be welded are welded together. This welded structure includes a hole that is formed in the first part to be welded and that has two opposing sides; two slits that are formed in the second part to be welded and that correspond to the two opposing sides at positions corresponding to the hole that is open in the first part to be welded; and a bridge portion that is made to protrude by plastic deforming a portion between the two slits. A raised portion of the bridge portion of the second part to be welded is inserted into the hole of the first part to be welded, such that the two opposing sides of the hole in the first part to be welded overlap with the two slits in the bridge portion of the second part to be welded. The first part to be welded and the second part to be welded are welded while the first part to be welded and the second part to be welded are engaged.
In the aspect described above, the bridge portion may protrude vertically from a surface of the second part to be welded.
In the structure described above, the bridge portion may be such that a degree to which the bridge portion protrudes decreases toward an end portion of the two slits.
In the structure described above, the bridge portion may include a plurality of raised portions.
In the structure described above, at least one raised portion from among the plurality of raised portions, and at least one raised portion other than the at least one raised portion, from among the plurality of raised portions, may protrude in different vertical directions from a surface of the second part to be welded.
In the structure described above, the two slits may not intersect one another.
In the structure described above, the two slits may be parallel to one another.
In the structure described above, the two slits may be either straight or curved.
In the structure described above, a height of the raised portion may be equal to or greater than a sheet thickness of the first part to be welded.
In the structure described above, the welded structure may also include a slit that connects one end of one of the two slits with one end of the other of the two slits, that is closest to the one end of the one of the two slits.
A second aspect of the invention relates to a welding method for positioning a sheet-shaped second part to be welded with respect to a sheet-shaped first part to be welded, and welding the first part to be welded and the second part to be welded together. This welding method includes opening a hole that has two opposing sides, in the first part to be welded; making two slits in portions of the second part to be welded that correspond to the two opposing sides at positions corresponding to the hole opened in the first part to be welded; providing a bridge portion that is made to protrude by plastic deforming a portion between the two slits; inserting a raised portion of the bridge portion of the second part to be welded into the hole of the first part to be welded, such that the two opposing sides of the hole in the first part to be welded overlap with the two slits in the bridge portion of the second part to be welded, and welding the first part to be welded and the second part to be welded together while the first part to be welded and the second part to be welded are engaged.
In the aspect described above, the bridge portion may be plastic deformed to protrude out vertically from a surface of the second part to be welded.
In the structure described above, the bridge portion may be plastic deformed such that a degree to which the bridge portion protrudes decreases toward an end portion of the two slits.
In the structure described above, the bridge portion may be plastic deformed to include a plurality of raised portions.
In the structure described above, at least one raised portion from among the plurality of raised portions, and at least one raised portion other than the at least one raised portion, from among the plurality of raised portions, may be plastic deformed to protrude in different vertical directions from a surface of the second part to be welded.
In the structure described above, the two slits may be formed so as not intersect one another.
In the structure described above, the two slits may be formed parallel to one another.
In the structure described above, the two slits may be formed either straight or curved.
In the structure described above, the raised portion may be plastic deformed such that a height of the raised portion is equal to or greater than a sheet thickness of the first part to be welded.
In the structure described above, the welded method may also include making a slit that connects one end of one of the two slits with one end of the other of the two slits, that is closest to the one end of the one of the two slits, when making the two slits.
In the structure described above, the two slits may be made simultaneously with plastic deformation.
The aspects and structures described above make it possible to improve sealability while ensuring the positioning accuracy of parts to be welded.
Features, advantages, and technical and industrial significance of exemplary embodiments of the invention will be described below with reference to the accompanying drawings, in which like numerals denote like elements, and wherein:
FIG. 3A1 is a sectional view taken along line A-A in
FIG. 3A2 is a sectional view taken along line B-B in
FIG. 3B1 is a sectional view taken along line A-A in
FIG. 3B2 is a sectional view taken along line B-B in
FIG. 3C1 is a sectional view taken along line A-A in
FIG. 3C2 is a sectional view taken along line B-B in
A welded structure according to a first example embodiment of the invention will be described with reference to
As shown in
A rectangular hole 12 having two opposing sides 12a is opened in the first part to be welded 11. The hole 12 may be any shape, such as oval, as long as it has the two opposing sides 12a. Meanwhile, two slits 22a are formed in the second part to be welded 21, at portions corresponding to the two opposing sides 12a in positions corresponding to the hole 12 that is open in the first part to be welded 11. A portion between these slits 22a is then made to protrude approximately several millimeters by plastic deformation to form a bridge portion 22. That is, the bridge portion 22 is formed in a mountain-shape, protruding upward with slopes formed to the left and the right. A gap in the front-back direction when viewed from the front-back direction is formed between this bridge portion 22 and the upper surface of the second part to be welded 21. In this example embodiment, the two slits 22a are parallel to one another and do not intersect each another. Also, the two slits 22a may be straight or curved. In this example embodiment, they are straight.
The second part to be welded 21 is press-formed by a pressing machine, not shown, that includes a punch E and a die D. That is, the punch E that has a shape of a bridge portion 22 formed on it is brought toward the die D that has a hole in it that is formed the size of the bridge portion 22 to enable the tip end portion of the punch E to be inserted, while a sheet-shaped member F that is the material of the second part to be welded 21 is arranged between the punch E and the die D, as shown in
The first part to be welded 11 and the second part to be welded 21 that are formed as described above are brought together as indicated by the arrow a in
With the welded structure according to this example embodiment, the engaged state of the first part to be welded 11 and the second part to be welded 21 is able to be made stable. That is, the bridge portion 22 that protrudes approximately several millimeters (approximately 2.0 to 4.0 mm) and is the same height as, or higher than, the sheet thickness (approximately 0.6 mm to 2.5 mm in this example embodiment) of the first part to be welded 11 from plastic deformation, is formed on the second part to be welded 21. As a result, when the first part to be welded 11 is engaged with the second part to be welded 21, the positioning accuracy with respect to the sheet-thickness of the first part to be welded 11 is able to be sufficiently ensured. In other words, the overlap of the bridge portion 22 and the hole 12 is able to be sufficiently ensured, which enables assembly offset or an offset in the engaged state of the first part to be welded 11 and the second part to be welded 21, due to the effect of the magnetic field or elastic deformation during welding, to be prevented.
Also, with the welded structure according to this example embodiment, the bridge portion 22 is able to contact the two sides 12a, i.e., the inner peripheral surface of the hole 12, at four locations, as shown by points P in
Moreover, when the first part to be welded 11 is engaged with the second part to be welded 21, the hole that passes through the first part to be welded 11 and the second part to be welded 21 is able to be made smaller. More specifically, the gap d through the first part to be welded 11 and the second part to be welded 21 can be made smaller than a sealable range (that is approximately several millimeters (2.0 to 4.0 mm)) when sealing by applying paint sealer S, as shown in FIGS. 3B1 and 3B2. As a result, the sealing performance of the first part to be welded 11 and the second part to be welded 21 can be improved. That is, the welded structure according to this example embodiment can be applied even when welding members in which high sealing performance is required, such as members of an under body floor portion, for example.
Also, the sealing performance is not affected by the side on which sealing is performed. That is, the size of the gap d through the first part to be welded 11 and the second part to be welded 21 does not change, so high sealing performance can be ensured regardless of whether sealing is performed from the side of the second part to be welded 21, as shown in FIGS. 3B1 and 3B2, or from the side of the first part to be welded 11, as shown in FIGS. 3C1 and 3C2.
In the example embodiment described above, the bridge portion 22 may also include a plurality of raised portions. For example, at least one of the plurality of raised portions and at least one raised portion other than the at least one raised portion, from among the plurality of raised portions, may protrude in different vertical directions from the surface of the second part to be welded 21. That is, at least one of the raised portions may protrude upward, and at least one raised portion other than the at least one raised portion may protrude downward. This structure enables one part to be welded to be welded to the top of the second part to be welded 21 and one part to be welded to be welded to the bottom of the second part to be welded 21.
In the example embodiment described above, the number of slits is not limited to two, and may also be three or more, as long as the bridge portion 22 contacts the inner peripheral surface of the hole 12 at a plurality of locations in the left-right direction, as well as at a plurality of locations in the front-back direction. For example, a slit that connects either the left end portions or the right end portions of the two slits 22a together may be provided. In this case, the bridge portion 22 may be retained by either the left end portion or the right end portion, whichever is not provided with the slit.
While the invention has been described with reference to example embodiments thereof, it is to be understood that the invention is not limited to the described embodiments or constructions. To the contrary, the invention is intended to cover various modifications and equivalent arrangements. In addition, while the various elements of the disclosed invention are shown in various example combinations and configurations, other combinations and configurations, including more, less or only a single element, are also within the scope of the appended claims.
Number | Date | Country | Kind |
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2010-177500 | Aug 2010 | JP | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/IB11/01826 | 8/5/2011 | WO | 00 | 2/4/2013 |