Manufacturing method for press-formed product
The method addresses the challenge of reducing bending radius in high-tensile steel sheets by controlling stress distribution through specific mold designs and restraint structures, achieving crack-free press molding with a bending radius ratio of 0 < R/t ≤ 1.
Patent Information
- Application Number
- JP2024094826
- Authority / Receiving Office
- JP · JP
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2024-06-12
- Publication Date
- 2025-12-24
- Estimated Expiration
- 2044-06-12
AI Technical Summary
Press-forming dies for high-tensile steel sheets face challenges in achieving a reduced bending radius without causing cracks due to high tensile stress on the outer side of the bent portion.
A method involving an intermediate product preparation, loading, clamping, and press molding process using molds with specific curvature radii and restraint structures to manage stress distribution during bending, ensuring compressive stress is applied to both inside and outside of the bent portion.
Enables appropriate press molding with a reduced bending radius while minimizing the risk of cracks in high-tensile steel sheets by controlling stress distribution, allowing for favorable bending with a bending radius ratio of 0 < R/t ≤ 1.
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Figure 2025186627000001_ABST
Abstract
Description
[Technical Field]
[0001] The present invention relates to a method for manufacturing a press-molded product, a press-molded product, and a press-molding die. [Background technology]
[0002] Conventionally, press-forming methods and press-forming dies for producing press-formed products including bent portions having a cross section shaped like a hat, etc. For example, Patent Document 1 discloses a press-forming method for forming a bent portion by bending a metal plate having a thickness t by moving a bending blade in contact with the metal plate at the shoulder of a punch, and the press-formed product and press-formed die are disclosed, in which the bending blade moves so that the minimum distance L between the punch and the bending blade satisfies 1.0≦L / t≦1.2 when the bending blade passes through the center of the bent portion. [Prior art documents] [Patent documents]
[0003] [Patent Document 1] Japanese Patent Application Laid-Open No. 2011-206836 Summary of the Invention [Problem to be solved by the invention]
[0004] The press-forming die described in Patent Document 1 requires numerous components, such as a slide mechanism for horizontally moving the bending blade and a spring for biasing the bending blade. Meanwhile, in recent years, there has been a demand for press-forming using high-tensile steel sheets with a tensile strength of 590 MPa or more. Even with such high-tensile steel sheets, there is a demand for a smaller bending radius. However, when the bending radius of high-tensile steel sheets is reduced, high tensile stress is generated on the outer side of the bent portion, which can cause cracks in the outer portion of the bent portion, making it difficult to perform press-forming properly.
[0005] An object of the present invention is to provide a method for manufacturing a press-molded product, a press-molded product, and a press-molding die that enable appropriate press molding while reducing the bending radius. [Means for solving the problem]
[0006] The method for manufacturing a press-molded product of the present invention includes an intermediate product preparation process for preparing an intermediate product including a first plate portion, a second plate portion, and a bent portion connecting the first plate portion and the second plate portion; a loading process for loading the intermediate product onto a lower mold having an upper surface and a side surface, and a shoulder where the upper surface and the side surface are connected, formed with a radius of curvature smaller than the bend radius of the bent portion of the intermediate product, so that the second plate portion is positioned on the side surface; a clamping process for lowering an upper mold including an upper mold recess having an upper mold rear bottom surface corresponding to the upper surface of the lower mold, an upper mold recess side surface corresponding to the side surface of the lower mold, and an upper mold shoulder connecting the upper mold recess bottom surface and the upper mold recess side surface and arranged to correspond to the shoulder, thereby clamping the second plate portion of the intermediate product between the side surface of the lower mold and the upper mold recess side surface of the upper mold to restrict movement of the second plate portion and restrain the first plate portion in a direction along the first plate portion; and a press molding process for lowering the upper mold to press-molde the intermediate product.
[0007] The press-formed product of the present invention is a press-formed product manufactured by the above-mentioned press-formed product manufacturing method, and is made of a high-tensile steel plate having a plate thickness t, and the ratio (R / t) of the bending radius R of the bent portion to the plate thickness t after the press forming process is greater than 0 and less than or equal to 1.
[0008] The press molding die of the present invention comprises: a lower die including an upper surface and a side surface connected by a shoulder portion, the shoulder portion being formed with a radius of curvature smaller than the bending radius of the bending portion in an intermediate product including a first plate portion, a second plate portion, and a bending portion connecting the first plate portion and the second plate portion; and an upper die including an upper die recess corresponding to the lower die, the upper die recess having an upper die recess bottom surface corresponding to the upper surface of the lower die, an upper die recess side surface corresponding to the side surface of the lower die, and an upper die shoulder connecting the upper die recess bottom surface and the upper die recess side surface so as to correspond to the shoulder of the lower die; and a restraint structure that restrains the first plate portion in a direction along the first plate portion, and the side surface of the lower die and the upper die recess side surface of the upper die each include flat surfaces that are spaced apart enough to allow the second plate portion of the intermediate product to be sandwiched. [Effects of the Invention]
[0009] According to the present invention, it is possible to provide a method for manufacturing a press-molded product, a press-molded product, and a press-molding die that enable appropriate press molding while reducing the bending radius. [Brief explanation of the drawings]
[0010] [Figure 1] FIG. 1 is a schematic front view of a first mold used in an intermediate product preparing step according to the first embodiment. [Figure 2] FIG. 2 is a schematic front view of the second mold according to the first embodiment. [Figure 3] FIG. 3 is a flow chart showing steps of the method for manufacturing a press-formed product according to the embodiment. [Figure 4] FIG. 4 is a schematic front view of a first die used for press-molding in the intermediate product preparation step according to the first embodiment. [Figure 5] FIG. 5 is a schematic front view of the second mold in the placing step according to the first embodiment. [Figure 6] FIG. 6 is a schematic front view of the second mold in the clamping step according to the first embodiment. [Figure 7] FIG. 7 is a schematic front view of the second mold in the press molding step according to the first embodiment. [Figure 8] FIG. 8 is a schematic front view of the second die showing a state after the press molding step according to the first embodiment is completed. [Figure 9] FIG. 9 is a schematic front view of the second mold in the placing step according to the second embodiment. [Figure 10] FIG. 10 is a schematic front view of the second mold in the clamping step according to the second embodiment. [Figure 11] FIG. 11 is a schematic front view of a second mold in a press molding step according to the second embodiment. [Figure 12] FIG. 12 is a schematic front view of the second die showing a state after the press molding step according to the second embodiment is completed. DETAILED DESCRIPTION OF THE INVENTION
[0011] Hereinafter, embodiments of the present invention will be described in detail with reference to the drawings. However, the present invention is not limited to these embodiments. Furthermore, the components in the following embodiments include those that are easily replaceable by those skilled in the art, or those that are substantially the same.
[0012] [First embodiment] The press-molded product manufacturing method of this embodiment is for manufacturing a press-molded product P that is formed into an elongated shape having, for example, a substantially U-shaped cross section. The press-molded product manufacturing method of this embodiment uses a first mold 10 shown in Fig. 1 and a second mold 20 shown in Fig. 2.
[0013] 1 and 2 will be referred to as "up" and "down," and the left side and right side of the drawings will be referred to as "left" and "right." Furthermore, since the first mold 10 and the second mold 20 are bilaterally symmetrical, only the right half is shown in FIGS. 4 to 12.
[0014] The first mold 10 shown in Fig. 1 is a mold used in the intermediate product preparation step (step S10, see Fig. 3) in the press-molded product manufacturing method. The first mold 10 has a first lower mold 11, an upper pad 12, and two upper bending blades 13 provided on each of the left and right sides. The first lower mold 11, upper pad 12, and upper bending blade 13 are formed in an elongated shape in a direction perpendicular to the plane of the paper. The first mold 10 can be used, for example, by attaching it to a press machine (not shown), fixing the first lower mold 11 to a bolster of the press machine, and attaching the upper pad 12 and upper bending blade 13 to a slide of the press machine.
[0015] The first lower mold 11 has an upper surface 11a and left and right side surfaces 11b. The upper surface 11a is formed as a plane along a horizontal plane (a plane including two directions (left and right directions and a direction perpendicular to the paper surface) perpendicular to the up and down direction). The side surfaces 11b are formed as planes perpendicular to the upper surface 11a, with normals oriented in the left and right directions. The ridge portions connecting the upper surface 11a and the left and right side surfaces 11b are each formed as a first shoulder portion 11c. In this embodiment, the first shoulder portion 11c is formed with a curvature radius RC1 of 6 mm, for example.
[0016] The upper pad 12 has a width X2 in the left-right direction that is approximately the same as the width X1 of the first lower die 11 in the left-right direction (X2 = X1). The upper side of the upper pad 12 is supported by an elastic member (not shown), such as a spring. The lower surface 12a of the upper pad 12 is formed as a flat surface along a horizontal plane. The lower surface 12a of the upper pad 12 and the upper surface 11a of the first lower die 11 face each other in the vertical direction and are flat surfaces parallel to each other. The upper bending blades 13 are respectively disposed on the left and right sides of the upper pad 12 with a gap S1 between them. The upper bending blade 13 has a rounded, chamfered corner on the inner side (on the upper pad 12 side) of its lower end. The upper bending blade 13 is arranged so that the gap S1 between it and at least the side surface 11b of the first lower die 11 is approximately the same as the thickness t of the blank B (S1 = t).
[0017] The second mold 20 shown in FIG. 2 is a mold (press molding mold) used in the placing step (step S20), clamping step (step S30), and press molding step (step S40) of the press-formed product manufacturing method. The second mold 20 has a second lower mold 21 (lower mold) and an upper mold 22. The second lower mold 21 and the upper mold 22 are also formed in a long shape in a direction perpendicular to the plane of the paper, similar to the first mold 10. Further, the second mold 20 can be used by fixing the second lower mold 21 to the bolster of a press machine (not shown) and attaching the upper mold 22 to the slide of the press machine.
[0018] The second lower mold 21 has an upper surface 21a and side surfaces 21b provided on the left and right sides respectively. The upper surface 21a is formed as a plane along the horizontal plane. The side surface 21b is orthogonal to the upper surface 21a and is formed as a plane with its normal direction facing the left and right directions. The width in the left and right direction (distance X3) of the second lower mold 21 is made substantially the same as the width X1 in the left and right direction of the first lower mold 11 (X3 = X1). The ridge line portions connecting the upper surface 21a and the left and right side surfaces 21b are respectively the second shoulders 21c (shoulders). The second shoulder 21c is formed with a curvature radius RC2 smaller than the bending radius RB1 of the first bending portion 80 of the intermediate product P1 described later (0 < RC2 < RB1). In the present embodiment, for example, the first bending portion 80 of the intermediate product P1 has a bending radius RB1 = 6 mm, and the curvature radius RC2 of the second shoulder 21c is 0.5 mm.
[0019] The upper mold 22 includes a concave upper mold recess 220 corresponding to the second lower mold 21. The upper mold recess 220 includes an upper mold recess bottom surface 22a corresponding to the upper surface 21a of the second lower mold 21, upper mold recess side surfaces 22b corresponding to the left and right side surfaces 21b of the second lower mold 21 respectively, and upper mold shoulders 22c provided to connect the upper mold recess bottom surface 22a and the upper mold recess side surfaces 22b on the left and right respectively and corresponding to the second shoulders 21c of the second lower mold 21. Further, the upper mold recess 220 includes lower corner portions 22d of the left and right upper mold recess side surfaces 22b which are chamfered. Here, the upper mold recess bottom surface 22a includes a plane formed along the horizontal plane.
[0020] The upper mold recess side surface 22b includes a plane 22b1 that is perpendicular to the upper mold recess bottom surface 22a and has a normal facing in the left-right direction. The upper mold recess side surfaces 22b are provided opposite each other in the left-right direction. Here, the side surface 21b of the second lower mold 21 includes a plane 21b1. The side surface 21b of the second lower mold 21 and the upper mold recess side surface 22b of the upper mold 22 include substantially parallel planes 21b1 and 22b1 that face each other. The upper mold recess bottom surface 22a of the upper mold recess 220 in the upper mold 22 and the upper surface 21a of the second lower mold 21 are parallel to each other. In addition, the planes 21b1 and 22b1 of the side surface 21b of the second lower mold 21 and the upper mold recess side surface 22b of the upper mold 22 may be angled slightly to adjust the press-molded product.
[0021] The distance X4 between the left and right upper mold recess side surfaces 22b is longer than the left-right width of the second lower mold 21 (in other words, the distance X3 between the side surfaces 21b) by twice the thickness t of the side plates 82 of the intermediate product P1 (which will be described later) (i.e., the thickness t of the blank material B). In other words, the distance S2 between the side surfaces 21b and the upper mold recess side surfaces 22b is approximately the same as the thickness t (S2=t).
[0022] Furthermore, the radius of curvature RC3 of the upper shoulder 22c can be set to, for example, the value obtained by adding the radius of curvature RC2 of the second shoulder 21c to the thickness t of the blank B. In this embodiment, the radius of curvature RC2 of the second shoulder 21c is 0.5 mm and the thickness t of the blank B (intermediate product P1) is 2 mm, so the radius of curvature RC3 can be set to 2.5 mm.
[0023] As shown in FIG. 3, the method for manufacturing a press-formed product in this embodiment includes an intermediate product preparation step (step S10) for obtaining an intermediate product P1, a placement step (step S20) for setting the intermediate product P1 in a second mold 20, a clamping step (step S30) for clamping side plates 82 of the intermediate product P1, and a press-forming step (step S40) for obtaining a press-formed product P, which is a final product. The placement step (step S20) includes a locking step for locking a connection portion 83 (described below) of the intermediate product P1 to a second shoulder portion 21c. Here, the blank B (see FIG. 1) is a plate material made of high-tensile steel plate having a tensile strength of 590 MPa or more, and in this embodiment, the plate thickness t is 2 mm. Each step will be described below with reference to FIGS. 3 to 8.
[0024] Intermediate product preparation process (step S10): The intermediate product P1 can be obtained by press-forming the blank material B using the first mold 10. To press-form the intermediate product P1, the upper pad 12 and the upper bending blade 13 are lowered onto the blank material B (see FIG. 1) placed on the upper surface 11a of the first lower mold 11. Then, as shown in FIG. 4, the blank material B is bent at both left and right ends by the upper bending blade 13 while the central portion in the left-right direction is clamped between the lower surface 12a of the upper pad 12 and the upper surface 11a of the first lower mold 11. The blank material B is bent from the first shoulder portion 11c along the side surface 11b of the first lower mold 11. In this way, by press-forming using the first mold 10, an intermediate product P1 having a substantially U-shaped cross section perpendicular to the longitudinal direction can be obtained.
[0025] The intermediate product P1 prepared in the intermediate product preparation step (step S10) has a bottom plate 81 (first plate portion), side plates 82 (second plate portions) rising from both ends of the bottom plate 81, and a first bent portion 80 (bent portion) connecting the bottom plate 81 and the side plates 82. The bottom plate 81 and the side plates 82 are arranged perpendicular to each other. In this embodiment, for example, the first bent portion 80 formed along the first shoulder portion 11c having a curvature radius RC1 = 6 mm has a bend radius RB1 = 6 mm.
[0026] Placement step (step S20): As shown in FIG. 5, the intermediate product P1 is set in the second lower mold 21 of the second mold 20. The intermediate product P1 is placed on the second lower mold 21 so that the bottom plate 81 is located on the upper surface 21a side of the second lower mold 21 and the side plate 82 is located on the side surface 21b side. At this time, because the curvature radius RC2 of the second shoulder portion 21c is sufficiently smaller than the bending radius RB1 of the first bent portion 80, the connection portion 83 between the first bent portion 80 and the side plate 82 is engaged with the second shoulder portion 21c. In other words, the curvature radius RC2 of the second shoulder portion 21c is set to be sufficiently smaller than the bending radius RB1 so that the first bent portion 80 (connection portion 83) of the intermediate product P1 is engaged. Thus, the placement step (step S20) includes an engagement step in which the first bent portion 80 (connection portion 83) of the intermediate product P1 is engaged with the second shoulder portion 21c. The locking process allows the bottom plate 81 to be easily restrained in a direction along the bottom plate 81 in a subsequent process without using a complex restraining structure. Meanwhile, the inner surfaces of the side plates 82 that face each other in the left-right direction of the intermediate product P1 abut against the side surfaces 21b of the second lower mold 21. Therefore, when the intermediate product P1 is placed on the second lower mold 21, the movement of the intermediate product P1, particularly the bottom plate 81, in the direction normal to the side surfaces 21b (movement in the left-right direction in FIG. 5) is restricted. The intermediate product P1 is placed with the bottom plate 81 and the upper surface 21a of the second lower mold 21 spaced apart from each other.
[0027] Clamping Step (Step S30): After the placing step (Step S20), when the upper mold 22 is lowered, the side plate 82 of the intermediate product P1 is sandwiched between the side surface 21b of the second lower mold 21 and the upper mold recess side surface 22b of the upper mold 22, as shown in FIG. 6. More specifically, the side plate 82 is sandwiched between the flat surface 21b1 of the side surface 21b and the flat surface 22b1 of the upper mold recess side surface 22b. That is, the flat surface 21b1 of the side surface 21b and the flat surface 22b1 of the upper mold recess side surface 22b are spaced apart in the left-right direction by a distance S2 to an extent that the side plate 82 can be sandwiched between them. The side plate 82 of the intermediate product P1 is sandwiched between the side surface 21b of the second lower mold 21 and the flat surfaces 21b1, 22b1 of the upper mold recess side surface 22b of the upper mold 22, thereby restricting the vertical movement of the side plate 82. Furthermore, since the side plate 82 is sandwiched between the side surface 21b and the upper mold recess side surface 22b, the relative movement of the side plate 82 with respect to the side surface 21b of the second lower mold 21 in the up and down direction is restricted.
[0028] The bottom plate 81 is constrained in a direction along the bottom plate 81 by sandwiching the side plates 82 on both the left and right sides of the bottom plate 81 between the side surfaces 21b and the upper mold recess side surfaces 22b. That is, the first bent portion 80 is constrained in the left-right direction along the bottom plate 81 and the up-down direction along the side plates 82. Here, in the second mold 20, the two side surfaces 21b opposing each other in the left-right direction and the two upper mold recess side surfaces 22b provided corresponding to each side surface 21b form a constraining structure Y that constrains the bottom plate 81 in a direction along the bottom plate 81. The timing at which the upper mold recess bottom surface 22a of the upper mold recess 220 abuts against the bottom plate 81 of the intermediate product P1 is set to be simultaneous with or slightly later than the sandwiching of the side plates 82 between the side surfaces 21b and the upper mold recess side surfaces 22b.
[0029] Press-forming process (step S40): After the clamping process (step S30), when the upper mold 22 further descends, the center portion of the bottom plate 81 in the left-right direction is recessed toward the upper surface 21a of the second lower mold 21, as shown in FIG. 7. The bottom plate 81 is constrained in a direction along the bottom plate 81, so that it undergoes almost no plastic deformation. Furthermore, the side plate 82 is sandwiched between the side surface 21b and the upper mold recess side surface 22b, so that its movement is restricted. Therefore, in this process, the first bent portion 80 is primarily plastically deformed. Compressive stress is applied to both the inside and outside of the first bent portion 80 due to reaction forces from the bottom plate 81 and the side plate 82. Here, the constraining structure Y is a structure that constrains the bottom plate 81 so that the bottom plate 81 can apply a reaction force to the first bent portion 80. In other words, the constraining of the bottom plate 81 is a constraining that allows the bottom plate 81 to apply a reaction force to the first bent portion 80. Similarly, restricting the movement of the side plate 82 means restricting the movement so that the side plate 82 can apply a reaction force to the first bent portion 80.
[0030] Then, when the upper mold 22 further descends, the flat surface 22b1 of the side surface of the upper mold recess 22b is in sliding contact with the outer surface 82a of the side plate 82 of the intermediate product P1 while restricting the movement of the side plate 82 together with the flat surface 21b1 of the side surface 21b. When the upper mold 22 descends to the bottom dead center, as shown in FIG. 8, the intermediate product P1 is press-formed following the upper mold recess 220 of the second lower mold 21 and the upper mold 22. In this way, the press-forming process (step S40) is completed, and the press-formed product P is formed. After the completion of the press-forming, the upper mold 22 and the second lower mold 21 are opened, and the press-formed product P can be taken out from the second mold 20. Here, the press-formed product P includes a second bending portion 85 (bending portion) that connects the bottom plate 81 and the side plate 82. The second bending portion 85 is formed through the press-forming process (step S40) after the first bending portion 80 is formed.
[0031] The second bending portion 85 after the press-forming process (step S40) is formed following the second shoulder portion 21c and the upper mold shoulder portion 22c. For example, in the forming of the intermediate product P1 in the above example where the plate thickness t = 2 mm and the radius of curvature RC2 of the second shoulder portion 21c = 0.5 mm, the bending radius R of the second bending portion 85 can be set to about R = 1 mm to 1.5 mm. Therefore, the ratio (R / t) of the bending radius R to the plate thickness t of the second bending portion 85 of the press-formed product P can be set to 1 or less (0 < R / t ≤ 1). Since the bending radius R is considered to be at least the same as the radius of curvature RC2 of the second shoulder portion 21c, which is R = 0.5 mm, the ratio (R / t) of the bending radius R to the plate thickness t is greater than 0 and at least 0.25 or more (0.25 < R / t ≤ 1).
[0032] When press-forming a press-formed product having a bent portion with 0 < R / t ≤ 1 using a high-tensile steel sheet with a die having a configuration such as the first die 10, for example, compressive stress is applied to the inside of the bent portion, and a strong tensile stress is applied to the outside of the bent portion. Therefore, cracks may occur on the outside of the bent portion. On the other hand, in the press-forming method according to the present invention, in the press-forming of the step of forming the bent portion, the bottom plate 81 is restrained in the direction along the bottom plate 81, and the movement of the side plate 82 along the side plate 82 is restricted. Therefore, the first bent portion 80 of the intermediate product P1 plastically flows between the upper die concave portion bottom surface 22a and the upper die shoulder portion 22c of the upper die concave portion 220 and the second lower die 21 while compressive stress is applied to both the inside and the outside, and is press-formed. Since the second bent portion 85 is formed while compressive stress is applied to both the outside and the inside, almost no tensile stress that is likely to cause cracks is applied. Therefore, by using the press-formed product manufacturing method according to the present embodiment and the second die 20 as a press-forming die, bending with 0 < R / t ≤ 1 using a high-tensile steel sheet can be performed favorably.
[0033] [Second Embodiment] Based on FIGS. 9 to 12, a second embodiment of the present invention will be described. Note that the same reference numerals are assigned to members and parts equivalent to those described in the above-described first embodiment, and the description thereof is omitted or simplified.
[0034] In the second embodiment, the second lower mold 21 of the second mold 20 in the first embodiment is replaced with a second lower mold 21E equipped with a lower pad 300. In addition to the configuration of the second lower mold 21 described above, the second lower mold 21E is provided with a lower pad 300 that faces the bottom surface 22a of the upper mold recess in the vertical direction. The lower pad 300 is housed inside a lower mold body 301 that has a second shoulder portion 21c. The lower pad 300 is supported by a plurality of springs 302 provided inside the lower mold body 301 so that it can move in the vertical direction. A step portion 303 is provided inside the lower mold body 301. When no load is applied, the lower surface 300d of the lower pad 300 and the step portion 303 are separated, and the lower pad 300 protrudes from the upper surface 301f of the lower mold body 301. When the lower pad 300 descends against the elastic force of the spring 302 and the lower surface 300d comes into contact with the step portion 303, the upper surface 300f of the lower pad 300 becomes flush with the upper surface 301f of the lower mold body 301 (see FIG. 12). In other words, the upper surface 21a of the second lower mold 21 includes the upper surface 300f of the lower pad 300 at the lowest position and the upper surface 301f of the lower mold body 301.
[0035] 9 shows a state in which the intermediate product P1 obtained in the intermediate product preparation step (step S10) is placed on the second lower mold 21E of the second mold 20 in the placement step (step S20). At this time, the first bent portion 80 (connection portion 83) of the intermediate product P1 is engaged with the second shoulder portion 21c. In addition, the upper surface 300f of the lower pad 300 is in contact with the bottom plate 81.
[0036] 10 shows a state in which the upper mold 22 is lowered, and in the clamping step (step S30), the side plates 82 of the intermediate product P1 are sandwiched between the side surface 21b (flat surface 21b1) of the second lower mold 21E and the upper mold recess side surface 22b (flat surface 22b1) of the upper mold 22, thereby restricting the vertical movement of the side plates 82. At this time, the bottom plate 81 is sandwiched between the upper surface 300f of the lower pad 300 and the upper mold recess bottom surface 22a. The bottom plate 81 is constrained in a direction along the bottom plate 81 by the side plates 82 on both the left and right sides being sandwiched between the side surfaces 21b and the upper mold recess side surfaces 22b. Furthermore, the bottom plate 81 is also constrained in a direction along the bottom plate 81 by the bottom plate 81 being sandwiched between the upper surface 300f of the lower pad 300 and the upper mold recess bottom surface 22a of the upper mold recess 220. The bottom plate 81 is sandwiched between the lower pad 300 and the upper mold recess bottom surface 22a, thereby reducing plastic deformation of the bottom plate 81. That is, in the second mold 20 including the second lower mold 21E, the two side surfaces 21b opposing each other in the left-right direction, the two upper mold recess side surfaces 22b provided corresponding to the respective side surfaces 21b, the upper surface 300f of the lower pad 300, and the upper mold recess bottom surface 22a of the upper mold recess 220 form a restraining structure Y that restrains the bottom plate 81 in a direction along the bottom plate 81.
[0037] Fig. 11 shows the press-forming process (step S40) in which the upper die 22 has been further lowered from the state shown in Fig. 10. Compressive stress is applied to the first bent portion 80 of the intermediate product P1 on both the inside and outside due to reaction forces from the bottom plate 81 and side plate 82 during plastic deformation. The bottom plate 81 remains sandwiched between the upper surface 300f of the lower pad 300 and the bottom surface 22a of the upper die recess. Fig. 12 shows the state in which press-forming is completed.
[0038] In this way, according to the second mold 20 equipped with the second lower mold 21E, in the press molding process (step S40), the central portion of the bottom plate 81 is not deformed so as to be recessed, as shown in Figure 7 for the second mold 20 of the first embodiment, for example, so that the stability of the press molding process (step S40) can be improved and the flatness of the bottom plate 81 in the press-molded product P can be increased.
[0039] The manufacturing method of the press-molded product P described above includes an intermediate product preparation step (step S10) of preparing an intermediate product P1 including a bottom plate 81 as a first plate portion, a side plate 82 as a second plate portion, and a first bent portion 80 that is a bent portion connecting the bottom plate 81 and the side plate 82; a placing step (step S20) of placing the intermediate product P1 on a second lower mold 21, 21E that is a lower mold having an upper surface 21a and a side surface 21b, and a second shoulder portion 21c that is a shoulder portion where the upper surface 21a and the side surface 21b are connected, and that is formed with a curvature radius RC2 that is smaller than the bend radius RB1 of the first bent portion 80 of the intermediate product P1; and an upper mold recess corresponding to the upper surface 21a of the second lower mold 21, 21E. The method includes a clamping process (step S30) in which an upper mold 22 including an upper mold recess 220 having a bottom surface 22a, an upper mold recess side surface 22b corresponding to the side surface 21b of the second lower mold 21, 21E, and an upper mold shoulder 22c connecting the upper mold recess bottom surface 22a and the upper mold recess side surface 22b and arranged to correspond to the second shoulder 21c is lowered to clamp the side plate 82 of the intermediate product P1 between the side surface 21b of the second lower mold 21, 21E and the upper mold recess side surface 22b of the upper mold 22, thereby restricting the movement of the side plate 82 and restraining the bottom plate 81 in a direction along the bottom plate 81, and a press molding process (step S40) in which the upper mold 22 is lowered to press mold the intermediate product P1.
[0040] The second mold 20 as a press molding mold includes an upper surface 21a and a side surface 21b connected by a second shoulder portion 21c which is a shoulder portion, and the second shoulder portion 21c includes a bottom plate 81 as a first plate portion, a side plate 82 as a second plate portion, and a first bent portion 80 as a bent portion connecting the bottom plate 81 and the side plate 82. The second shoulder portion 21c includes a second lower mold 21, 21E formed with a curvature radius RC2 which is smaller than a bending radius RB1 of the first bent portion 80 in the intermediate product P1, and an upper mold recess 220 corresponding to the second lower mold 21, 21E, and the upper mold recess 220 corresponds to the upper surface 21a of the second lower mold 21, 21E. The upper mold 22 has an upper mold recess bottom surface 22a, an upper mold recess side surface 22b corresponding to the side surface 21b of the second lower mold 21, 21E, and an upper mold shoulder 22c connecting the upper mold recess bottom surface 22a and the upper mold recess side surface 22b and arranged to correspond to the second shoulder 21c of the second lower mold 21, 21E, and includes a restraint structure Y that restrains the bottom plate 81 in a direction along the bottom plate 81, and the side surface 21b of the second lower mold 21, 21E and the upper mold recess side surface 22b of the upper mold 22 include flat surfaces 21b1, 22b1 that are arranged at a distance (for example, distance S2) that allows the side panel 82 of the intermediate product P1 to be sandwiched therebetween.
[0041] As a result, the first bent portion 80 of the intermediate product P1 is press-formed into the second bent portion 85 of the press-formed product. In this press-forming, compressive stress is mainly applied to the inside and outside of the bent portion (first bent portion 80), which reduces cracking and the like compared to the outside of the bent portion of the press-formed product, where tensile stress is greater. Therefore, according to the above-mentioned method for manufacturing the press-formed product P and the second mold 20, which is a mold for press-forming, the press-formed product P having the bent portion can be properly press-formed. Furthermore, since the side plate 82 is sandwiched between the side surface 21b of the second lower mold 21, 21E and the flat surfaces 21b1, 22b1 on the upper mold recess side surface 22b of the upper mold 22, frictional force is applied to the side plate 82, and vertical movement of the side plate 82 can be reliably restricted.
[0042] The second lower die 21E has a lower pad 300 provided opposite the upper die recess bottom surface 22a of the upper die 22, and in the press molding process (step S40), the upper die 22 is lowered while the bottom plate 81 of the intermediate product P1 is sandwiched between the lower pad 300 and the upper die recess bottom surface 22a. This makes it possible to improve the precision of the flatness of the bottom plate 81 of the press-molded product P.
[0043] Furthermore, the press-formed product P is made of a high-tensile steel plate having a plate thickness t, and the ratio (R / t) of the bending radius R of the second bent portion 85 connecting the bottom plate 81 and the side plate 82 after the press forming process (step S40) to the plate thickness t is greater than 0 and not greater than 1. This makes it possible to provide a press-formed product P using a high-tensile steel plate and having a small bending radius at the bent portion.
[0044] As described above, the present invention is not limited to the present embodiment and can be embodied in various forms. For example, in this embodiment, the press-formed product P has a symmetrical U-shaped cross section. However, it is also possible to press-form a press-formed product having an asymmetrical U-shaped cross section, such as by elongating one of the left and right side plates, or an L-shaped cross section (i.e., a U-shaped cross section divided in the middle). When press-forming a press-formed product with an L-shaped cross section, the restraint structure for restraining the bottom plate in a direction along the bottom plate can be provided on the side surface of the lower mold and the side surface of the upper mold recess, as well as on the opposite side of the side plate in the left-right direction, including a restraint structure composed of a member for preventing the bottom plate from moving in a direction opposite the side plate. Furthermore, although the intermediate product P1 including the bottom plate 81, the side plate 82, and the first bent portion 80 is prepared by press-forming using the first mold 10 in this embodiment, it may also be prepared by other means. [Explanation of symbols]
[0045] 10: First mold 21, 21E: Second lower mold (press molding mold) 21a:Top 21b:Side 21b1: Plane 21c: Second shoulder (shoulder) 22: Upper mold 22a: Bottom surface of upper mold recess 22b: Upper mold recess side surface 22b1: Flat surface 22c: Upper die shoulder 80: First bending section 81: Bottom plate (1st plate part) 82: Side plate (2nd plate part) 85: Second bending portion 220: Upper mold recess 300: Lower pad 300f: Upper surface P: Press-molded products P1: Intermediate product R: Bending radius (of the second bending part) RB1: Bending radius (of the first bending part) RC2: Radius of curvature (shoulder) t: plate thickness Y: Constraint structure
Claims
1. an intermediate product preparation process of preparing an intermediate product including a first plate portion, a second plate portion, and a bent portion connecting the first plate portion and the second plate portion; a placing step of placing the intermediate product on a lower mold having an upper surface and a side surface, the lower mold having a shoulder portion where the upper surface and the side surface are connected, the shoulder portion being formed with a curvature radius smaller than the bending radius of the bent portion of the intermediate product, so that the second plate portion is disposed on the side surface side; a clamping process in which an upper mold including an upper mold recess having an upper mold recess bottom surface corresponding to the upper surface of the lower mold, an upper mold recess side surface corresponding to the side surface of the lower mold, and an upper mold shoulder connecting the upper mold recess bottom surface and the upper mold recess side surface and provided to correspond to the shoulder, is lowered to clamp the second plate portion of the intermediate product between the side surface of the lower mold and the upper mold recess side surface of the upper mold, thereby restricting movement of the second plate portion and restraining the first plate portion in a direction along the first plate portion; a press molding process in which the upper mold is lowered to press mold the intermediate product; A method for manufacturing a press-molded product comprising:
2. the lower mold has a lower pad provided opposite to a bottom surface of the upper mold recess of the upper mold, The method for manufacturing a press-formed product according to claim 1 , wherein the press-forming step comprises lowering the upper die while sandwiching the first plate portion of the intermediate product between the lower pad and a bottom surface of the upper die recess.
3. 3. A press-formed product manufactured by the press-formed product manufacturing method according to claim 1 or 2, comprising a high-tensile steel plate having a plate thickness t, wherein a ratio (R / t) of a bending radius R of the bent portion to the plate thickness t after the press forming step is greater than 0 and less than or equal to 1.
4. a lower mold including an upper surface and a side surface connected by a shoulder portion, the shoulder portion being formed with a curvature radius smaller than the bending radius of the bending portion in an intermediate product including a first plate portion, a second plate portion, and a bending portion connecting the first plate portion and the second plate portion; an upper mold including an upper mold recess corresponding to the lower mold, the upper mold recess having an upper mold recess bottom surface corresponding to the top surface of the lower mold, an upper mold recess side surface corresponding to the side surface of the lower mold, and an upper mold shoulder portion connecting the upper mold recess bottom surface and the upper mold recess side surface and provided to correspond to the shoulder portion of the lower mold; Equipped with a restraining structure that restrains the first plate portion in a direction along the first plate portion, The side surface of the lower mold and the upper mold recess side surface of the upper mold each include a flat surface that is spaced apart enough to allow the second plate portion of the intermediate product to be sandwiched therebetween. Press molding die.
Citation Information
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