Deep drawing method

The deep drawing method forms protrusions on excess material before the main forming step, using a movable die inner pad and connecting portion to support the protrusion area, achieving precise and cost-effective molding of large convex portions on automobile body panels.

JP7835526B2Active Publication Date: 2026-03-25DAIHATSU MOTOR CO LTD
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Patent Information

Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Filing Date
2022-03-30
Publication Date
2026-03-25

AI Technical Summary

Technical Problem

Existing deep drawing methods struggle to accurately form large convex portions on automobile body panels with minimal material inflow, leading to increased costs and molding defects such as wrinkles and cracks.

Method used

A deep drawing method involving an upper and lower blank holder that forms protrusions on excess material before the main forming step, followed by a lower die to reduce the drawing depth and minimize material inflow, using a movable lower die inner pad and connecting portion to support the protrusion area.

Benefits of technology

Enables high-precision and low-cost molding of large convex portions by reducing material inflow and stabilizing the bending deformation process.

✦ Generated by Eureka AI based on patent content.

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Abstract

To provide a drawing method to mold a press product with a protrusion having a large draw depth by minimizing inflow of material to be molded with high accuracy and low cost.SOLUTION: A method applying drawing work as press work to a blank material 10 to mold a protrusion 4 of a product in the blank material 10 comprises: a protrusion molding step S1 which molds respective protrusion 6 having shapes corresponding to the protrusion 4 of the product at a pair of portions 5 of an excess metal part 3 on an extended line of the protrusion 4 of the product, while sandwiching the excess metal part 3 at the periphery of a product part 2 of the blank material 10 between an upper side blank holder 23 and the lower side blank holder 24; and a lower die molding step S2 which molds the protrusion 4 of the product in the blank material 10 using a press lower die 22 after molding the protrusion 6.SELECTED DRAWING: Figure 4
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Description

Technical Field

[0001] The present invention relates to a drawing process method, and particularly to a technique for forming a product convex rib portion with a large depth on a blank material by drawing.

Background Art

[0002] For example, when forming the outer panel of an automobile body by pressing, drawing is often used from the viewpoints of high forming freedom, less man-hours, and ultimately cost reduction.

[0003] As an apparatus for performing drawing, an apparatus including an upper die called a die, a lower die called a punch, an upper die blank holder, and a lower die blank holder is generally used (for example, refer to Patent Document 1). In this type of drawing apparatus, first, a plate-shaped workpiece before forming called a blank material is held by the upper and lower blank holders, and then the upper and lower blank holders are brought close to the punch to press the blank material against the punch, thereby forming the product shape on the blank material.

Prior Art Documents

Patent Documents

[0004]

Patent Document 1

Summary of the Invention

Problems to be Solved by the Invention

[0005] Incidentally, in the outer panels of an automobile body, the spoiler portion of the back door outer panel, for example, has a shape that protrudes significantly from the surface of the product. If this were to be formed by the deep drawing process described in Patent Document 1, a very large drawing depth would be required. Therefore, it is difficult to accurately form this type of protrusion (convex part). In addition, it becomes necessary to flow a large amount of surrounding blank material (material) towards the convex part, which leads to a decrease in yield and, consequently, an increase in cost. There is also the problem that the more material that is flowed in, the more likely molding defects such as wrinkles and cracks are to occur.

[0006] In view of the above circumstances, this specification aims to solve the technical problem of enabling high-precision and low-cost molding of press-formed products having large convex portions with a large drawing depth, while minimizing material inflow. [Means for solving the problem]

[0007] The aforementioned problems are solved by the deep drawing method according to the present invention. Specifically, this deep drawing method is a method for forming a product protrusion extending in a predetermined direction on a blank material by performing deep drawing as a press process on a plate-shaped blank material using an upper press die, a lower press die, an upper blank holder, and a lower blank holder, and is characterized by comprising a protrusion forming step in which the upper blank holder and the lower blank holder clamp the excess material located around the product portion of the blank material and form protrusions corresponding to the product protrusion on a pair of parts of the excess material located on the extension line of the product protrusion, and a lower die forming step in which, after forming the protrusions, the lower press die forms the product protrusion on the blank material. In this specification, "protrusion" means a state in which a product portion to be formed on the blank material protrudes toward the surface side, and "concave" means a state in which the surface of the product portion to be formed on the blank material is concave.

[0008] As described above, the deep drawing method according to the present invention focuses on the fact that the product protrusion to be deep drawn has a rib shape. The upper blank holder and the lower blank holder first form protrusions corresponding to the product protrusion in a pair of parts of the excess material located on the extension line of the product protrusion, and then the lower press die forms the product protrusion in the blank material. In this way, by first forming predetermined protrusions in a pair of parts of the excess material located on the extension line of the product protrusion, bending deformation can be induced in the part located between these two protrusions to form a shape corresponding to the protrusion. Here, a product protrusion extending in a predetermined direction is provided between the pair of protrusions. Therefore, by applying bending deformation to the part of the product located between the pair of protrusions as described above, a protrusion corresponding to the product protrusion can be formed in the part that will become the product protrusion prior to the lower press die. This delays the start of forming the product protrusion by the lower press die (by raising the contact position of the lower press die), and thus reduces the depth of deep drawing of the product protrusion by the lower press die. Therefore, it is possible to significantly reduce or eliminate the inflow of material into the product's protruding portion. As described above, the deep drawing method according to the present invention makes it possible to form product protruding portions with large drawing depths accurately and at low cost.

[0009] Furthermore, in the drawing method according to the present invention, a lower die inner pad that can move up and down is provided on the inner circumference of the lower blank holder, and a connecting portion is provided on the inner circumference of the upper blank holder at a position corresponding to the lower die inner pad, connecting the two parts that make up the upper blank holder, and in the convex portion forming step, the portion of the blank material close to the product convex portion is sandwiched between the connecting portion and the lower die inner pad, and the convex portion is formed.

[0010] When drawing very large products, such as back door outers, the blank material must also be of a corresponding size. In this case, as described above, even if one tries to form a pair of protrusions on the extension of the product's protrusions to induce bending deformation in the area that will become the product's protrusions, the blank material is too large, making it difficult to stably deform it into the desired shape. In contrast, as described above, if a connecting part is provided on the inner circumference of the upper blank holder and at a position corresponding to the lower die inner pad, and the protrusions are formed while the area close to the product's protrusions is sandwiched between the connecting part and the lower die inner pad during the protrusion forming step, the protrusions can be formed in the excess material while supporting the area near the product's protrusions, thereby imparting good bending deformation to the area that will become the product's protrusions. Therefore, it becomes possible to form the area that will become the product's protrusions with high precision and stability. [Effects of the Invention]

[0011] As described above, according to the present invention, it is possible to form a pressed product having a convex portion with a large drawing depth with high precision and low cost while minimizing the inflow of material. [Brief explanation of the drawing]

[0012] [Figure 1] This is a plan view of a press-formed product obtained by a deep drawing method according to one embodiment of the present invention. [Figure 2] Figure 1 is a cross-sectional view AA of the pressed product shown. [Figure 3] This is a cross-sectional view of the portion of a press working apparatus according to one embodiment of the present invention that corresponds to cross section AA in Figure 1. [Figure 4] (a) A schematic perspective view of the upper blank holder shown in Figure 3, and (b) a schematic perspective view of the lower blank holder. [Figure 5] Figure 3 shows an example of deep drawing using the press working apparatus, and is a cross-sectional view of the press working apparatus when a blank material is placed on the lower blank holder. [Figure 6]Figure 3 shows an example of deep drawing using the press working apparatus shown, and is a cross-sectional view of the press working apparatus at the start of forming the convex portion relative to the excess material. [Figure 7] Figure 3 shows an example of deep drawing using the press working apparatus shown, and is a cross-sectional view of the press working apparatus at the time when the formation of the convex part is completed. [Figure 8] Figure 3 shows an example of deep drawing using the press working apparatus shown, and is a perspective view of the blank material after the formation of the convex portion is complete. [Figure 9] Figure 3 shows an example of deep drawing using the press working apparatus shown, and is a cross-sectional view of the press working apparatus at the start of forming the product's raised portion by the lower press die. [Figure 10] Figure 3 shows an example of deep drawing using the press working apparatus shown, and is a cross-sectional view of the press working apparatus at the time when the formation of the raised portion of the product is completed. [Modes for carrying out the invention]

[0013] The details of a drawing process according to one embodiment of the present invention will be described below based on the drawings. In the following description, the vehicle width direction will be defined as the X direction, the vehicle vertical direction as the Y direction, and the vehicle longitudinal direction as the Z direction.

[0014] Figure 1 is a plan view of an example of a press-formed product 1 obtained by a deep drawing method according to one embodiment of the present invention. As shown in Figure 1, in this embodiment, the press-formed product 1 is an intermediate part for the outer back door of an automobile, and integrally comprises a product part 2 and an excess material part 3 located around the product part 2. In this embodiment, the excess material part 3 consists of a first excess material part 3a provided on the outer circumference of the product part 2 and a second excess material part 3b provided on the inner circumference of the product part 2. Of these, the second excess material part 3b is the part that is removed from the product part 2 in order to form an opening in the back door where the window glass is installed. Both excess material parts 3a and 3b are removed by trimming or the like after the product part 2 is formed by deep drawing.

[0015] The product part 2 integrally has, on the upper end side in the vertical direction, a spoiler part 4 of the back door outer as a product rib part. This spoiler part 4 extends in the vehicle width direction of the product part 2. Further, as shown in FIG. 2, the spoiler part 4 is the most protruding part on the surface 2a side of the product part 2.

[0016] The press-worked product 1 with the above shape can be obtained, for example, by performing a drawing process on a plate-shaped blank material 10 (see FIGS. 5 etc. described later) using a press-working apparatus 20 shown in FIG. 3.

[0017] FIG. 3 shows a cross-sectional view of a press-working apparatus 20 for performing a drawing process according to the present invention on the blank material 10. This cross-sectional view is a cross-sectional view of the press-working apparatus 20 at the same position as the A-A cross-section along the vehicle body front-rear direction at the center position in the vehicle width direction of the press-worked product 1 obtained by the drawing process. This press-working apparatus 20 mainly has a press upper die 21, a press lower die 22, an upper blank holder 23, and a lower blank holder 24.

[0018] The press upper die 21 and the press lower die 22 have first press-forming surfaces 25, 26 with corresponding shapes at positions facing each other in the vertical direction. In this case, the first press-forming surfaces 25, 26 are configured to be able to form a part that becomes the product part 2 of the blank material 10.

[0019] The upper blank holder 23 is positioned around the upper press die 21 and is configured to move up and down independently of the upper press die 21. The lower blank holder 24 is positioned around the lower press die 22 and is configured to move up and down independently of the lower press die 22. Here, the upper blank holder 23 and the lower blank holder 24 are configured to grip the excess material portion 3 of the blank material 10 (particularly the first excess material portion 3a located around the product portion 2) by moving closer to each other. The upper and lower blank holders 23 and 24 also have second press forming surfaces 27 and 28 of corresponding shapes, which face each other in the vertical direction. In this case, as shown in Figures 4(a) and 4(b), the second press-formed surfaces 27 and 28 have convex and concave shapes corresponding to the spoiler portion 4, and are configured to form convex portions 6 with shapes corresponding to the spoiler portion 4 on a pair of portions 5 located on the extension line of the spoiler portion 4, which is the product's protruding ridge portion, within the excess material portion 3 (see Figures 1 and 7).

[0020] In this embodiment, a lower die inner pad 29 is provided on the inner circumference of the lower blank holder 24, which can move up and down independently of the lower blank holder 24. In addition, a connecting portion 30 is provided on the inner circumference of the upper blank holder 23 at a position corresponding to the lower die inner pad 29, connecting two predetermined parts of the upper blank holder 23 (see Figure 4(a)). The lower die inner pad 29 and the connecting portion 30 are configured to grip the second excess material portion 3b located on the inner circumference of the product portion 2 of the blank material 10 by moving closer together.

[0021] In this case, the upper press die 21 is divided in the longitudinal direction of the vehicle body by the connecting portion 30 (see Figures 3 and 4(a)). Similarly, the lower press die 22 is divided in the longitudinal direction of the vehicle body by the lower die inner pad 29 (see Figures 3 and 4(b)). Of course, both of these divided (multiple) upper press dies 21 and lower press dies 22 are configured to move up and down synchronously and integrally.

[0022] Next, an example of press working (deep drawing) using the press working apparatus 20 shown in Figure 3 will be explained based on Figures 1 to 10.

[0023] (S1) Convex part forming step First, as shown in Figure 5, a plate-shaped blank material 10 is placed on the upper surface 24a of the lower blank holder 24. At this point, the blank material 10 is in contact only with the upper surface 24a of the lower blank holder 24, the second press molding surface 28, and the lower die inner pad 29, and is separated from the upper press die 21, the lower press die 22, and the upper blank holder 23. The shape of the blank material 10 before molding is arbitrary; the blank material 10 as a whole may be flat, or it may be curved so that it is convex upwards when placed on the lower blank holder 24 and the lower die inner pad 29.

[0024] Subsequently, the upper blank holder 23 is moved downward relative to the upper press die 21. At this time, the blank material 10 is in contact with the second press forming surface 28 of the convex lower blank holder 24 at a relatively higher position (specifically, higher than the position where the blank material 10 is in contact with the upper surface 24a at both ends in the vertical direction of the vehicle body). Therefore, when the upper blank holder 23 is lowered, the portion of the blank material 10 supported by the second press forming surface 28 preferentially comes into contact with the lower surface 23a of the upper blank holder 23 and is pushed downward (see Figure 6). Thus, by continuing the above-described pushing, the first excess material portion 3a is formed into a convex portion 6 of a predetermined shape, in this case a convex portion 6 corresponding to the spoiler portion 4 as the product's protruding part, by the second press forming surface 27 of the upper blank holder 23 and the second press forming surface 28 of the lower blank holder 24 (see Figure 7).

[0025] Here, the portion 5 of the first excess material 3a that is formed by the second press forming surfaces 27 and 28 is positioned on the extension of the portion of the blank material 10 that will become the spoiler portion 4 (see Figure 1). Therefore, as described above, when the protrusions 6 are formed on the first excess material 3a by the second press forming surfaces 27 and 28, the portion of the product portion 2 between the pair of protrusions 6 undergoes bending deformation in a shape that conforms to the protrusions 6, and a protruding ridge portion 7 extending in the vehicle width direction is integrally formed with the pair of protrusions 6 (see Figure 8).

[0026] In this embodiment, since the blank material 10 is in contact with the lower die inner pad 29 at a relatively high position, when the upper blank holder 23 is lowered, the portion of the blank material 10 supported by the upper surface 29a of the lower die inner pad 29 preferentially comes into contact with and is clamped by the lower surface 30a of the connecting portion 30 which is integrally provided with the upper blank holder 23 (see Figure 6). Therefore, by configuring the connecting portion 30 and the blank material 10 to come into contact at least during the molding of the convex portion 6 by the second press molding surfaces 27, 28 (preferably at the start of molding), the molding of the convex portion 6 can be performed with the vicinity of the portion of the blank material 10 that will become the spoiler portion 4 being clamped between the lower die inner pad 29 and the connecting portion 30.

[0027] (S2) Lower mold forming step After a portion of the spoiler portion 4 (the raised ridge portion 7) is formed in this manner, the upper and lower blank holders 23, 24 and the lower die inner pad 29 are lowered together with the upper press die 21 to press the blank material 10 against the first press forming surface 26 of the lower press die 22. This forms the portion of the blank material 10 that will become the product portion 2 into a shape that conforms to the first press forming surface 26 of the lower press die 22. In this case, the portion of the product portion 2 that will become the spoiler portion 4 already has a raised ridge portion 7 formed in a shape similar to the spoiler portion 4 but smaller than the spoiler portion 4 (see Figures 8 and 9). Therefore, the first press forming surface 26 is first pressed against the center of the raised ridge portion 7 in the width direction, which is the highest part of the product portion 2 of the blank material 10, and the drawing process continues until it comes into contact with the first press forming surface 25 of the upper press die 21 (see Figure 10). Therefore, if the maximum drawing depth of the spoiler portion 4 is H, the maximum drawing depth H is equal to the sum of the depth H1 of the protrusion 7 formed on the product portion 2 in the protrusion forming step S1 and the drawing depth H2 of the spoiler portion 4 formed by the lower press die 22 in the lower die forming step S2. From the above, the press-formed product 1 shown in Figure 1 is obtained.

[0028] As described above, in the deep drawing method according to this embodiment, by first forming predetermined protrusions 6 on a pair of parts 5 located on the extension of the spoiler part 4, which will become the product's protruding ridge, the product part 2 located between these two protrusions 6 can also be subjected to bending deformation corresponding to the shape of the protrusions 6. Here, since a spoiler part 4 extending in a predetermined direction is provided between the pair of protrusions 6, by applying bending deformation to the part of the product part 2 located between the pair of protrusions 6 as described above, a protruding ridge 7 having a shape corresponding to the spoiler part 4 can be formed on the part that will become the spoiler part 4 prior to the press lower die 22. This makes it possible to delay the start of forming the spoiler part 4 by the press lower die 22 (by raising the contact position of the press lower die 22), so that the drawing depth H2 of the spoiler part 4 by the press lower die 22 can be reduced by the depth H1 of the protruding ridge 7 compared to the conventional drawing depth H. Therefore, it is possible to significantly reduce or eliminate the inflow of material into the spoiler part 4. Based on the above, the drawing method according to this embodiment makes it possible to form even a spoiler portion 4 with a large drawing depth H accurately and at low cost.

[0029] Furthermore, in this embodiment, a connecting portion 30 is provided on the inner circumference of the upper blank holder 23 and at a position corresponding to the lower die inner pad 29, connecting the two parts that make up the upper blank holder 23. In the convex portion molding step S1, the convex portion 6 is molded while the vicinity of the part that will become the spoiler portion 4 is supported (clamped) by the connecting portion 30 and the lower die inner pad 29. This avoids situations such as the part that will become the spoiler portion 4 bending, and allows for good bending deformation of the part that will become the spoiler portion 4. Therefore, it is possible to stably mold the part that will become the spoiler portion 4 into a good shape that conforms to the product shape (shape of the spoiler portion 4).

[0030] In this embodiment, the portion clamped between the lower die inner pad 29 and the connecting portion 30 is the second excess material portion 3b (the portion that will become the opening of the window glass), so there is no particular problem even if it cannot be formed with high precision. In other words, by using this excess material portion on the inner circumference (second excess material portion 3b) to support the vicinity of the spoiler portion 4 as the product's protruding part, it becomes possible to form a part of the spoiler portion 4 prior to the deep drawing process by the lower press die 22 without impairing the formability of the product portion 2 other than the spoiler portion 4.

[0031] Although one embodiment of the present invention has been described above, the deep drawing method according to the present invention may also adopt configurations other than those described above, without departing from the spirit of the invention.

[0032] For example, in the above embodiment, the lower die inner pad 29 and the connecting portion 30 come into contact with the blank material 10 at the start of forming the protrusion 6 by the second press forming surfaces 27, 28 (i.e., the lower die inner pad 29 and the connecting portion 30 begin to clamp the blank material 10) (see Figure 6), but of course, it is not limited to this. For example, the connecting portion 30 may come into contact with the blank material 10 when the forming of the protrusion 6 has progressed to a certain extent. Alternatively, the connecting portion 30 may come into contact with the blank material 10 before the formation of the protrusion begins.

[0033] Of course, depending on the material, thickness, and dimensions of the blank material 10, if it is not necessary to form the protrusion 6 while supporting the area near the spoiler portion 4, the connecting portion 30 may be abolished, or the lower die inner pad 29 and the connecting portion 30 may be abolished. [Explanation of symbols]

[0034] 1 Pressed product 2 Product Department 2a surface 3 Extra meat part 3a First extra flesh part 3b Second extra flesh part 4. Spoiler section 5. A pair of parts located on the extension line of the product's protruding ridge within the excess material. 6. Convex part 7. Convex part 10 Blank materials 20 Pressing machine 21 Press upper die 22 Press lower die 23 Upper blank holder 24 Lower blank holder 25,26 First press forming surface 27,28 Second press molding surface 29 Lower Inner Pad 30 Connection part S1 Convex part forming step S2 Lower mold forming step

Claims

1. A method for forming a product protrusion extending in a predetermined direction on a blank material by performing a deep drawing as a press process on the blank material using an upper press die, a lower press die, an upper blank holder, and a lower blank holder, A convex forming step is performed by sandwiching the excess material located around the product portion of the blank material between the upper blank holder and the lower blank holder, and forming convex portions corresponding to the product convex portion on a pair of portions of the excess material located on the longitudinal extension of the product convex portion, while the lower press die is not in contact with the portion of the blank material that will become the product convex portion. A drawing method comprising a lower die forming step of forming the product protrusion on the blank material using the lower press die after forming the aforementioned protrusion.

2. A lower mold inner pad that can move up and down is provided on the inner circumference of the lower blank holder, A connecting portion is provided on the inner circumference of the upper blank holder at a position corresponding to the lower mold inner pad, connecting the two parts that make up the upper blank holder. The drawing method according to claim 1, wherein in the step of forming the protrusion, the portion of the blank material closest to the product protrusion is held between the connecting portion and the lower die inner pad while the protrusion is formed.

Citation Information

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