SHEARING DIE AND PRESS-FORMING METHOD
20230082370 · 2023-03-16
Assignee
Inventors
Cpc classification
B21D28/10
PERFORMING OPERATIONS; TRANSPORTING
B21D37/08
PERFORMING OPERATIONS; TRANSPORTING
B21D37/02
PERFORMING OPERATIONS; TRANSPORTING
B21D22/206
PERFORMING OPERATIONS; TRANSPORTING
B21D24/16
PERFORMING OPERATIONS; TRANSPORTING
B21D28/02
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A shearing die for preventing damage of a die tool in shearing of a super-high-tension steel sheet and a press-forming method using the same. The shearing die for shearing a metal sheet in a direction intersecting a first-sheared edge of the metal sheet in press-working including a plurality of shearing processes to produce a formed article from the metal sheet by press-forming, in which the shearing die comprises a fitting part that can detach a shearing blade in the vicinity of a region coming in contact with an end of the first-sheared edge.
Claims
1. A shearing die for shearing a metal sheet in a direction intersecting a first-sheared edge of the metal sheet in press-working including a plurality of shearing processes to produce a formed article from the metal sheet by press-forming, characterized in that the shearing die comprises a fitting part that can detach a shearing blade in the vicinity of a region coming in contact with an end of the first-sheared edge.
2. The shearing die according to claim 1, wherein the fitting part satisfies at least one condition selected from (a) the fitting part is made of die steel having hardness higher than that of the shearing blade excluding the fitting part; (b) the fitting part is subjected to a surface nitriding treatment; and (c) the fitting part is subjected to a coating treatment.
3. The shearing die according to claim 1, wherein the fitting part has a length of not less than 1 mm on both sides with a center at the position where the shearing blade comes in contact with the end of the first sheared edge.
4. A method for press-forming a metal sheet comprising a plurality of shearing processes, wherein the method comprises a first shearing for shearing a formed article so as to leave an excess portion in a part of the outline of the formed article and a second shearing for shearing the excess portion in a direction intersecting a sheared edge formed in the first shearing to form into the formed shape, wherein the excess portion is sheared using the shearing die according to claim 1 in the second shearing so as for the fitting part to come in contact with the end part of the sheared edge formed in the first shearing.
5. The method for press-forming a metal sheet according to claim 4, wherein the metal sheet has a tensile strength of more than 980 MPa.
6. The shearing die according to claim 2, wherein the fitting part has a length of not less than 1 mm on both sides with a center at the position where the shearing blade comes in contact with the end of the first sheared edge.
7. The method for press-forming a metal sheet according to claim 4, wherein a shearing die for shearing a metal sheet in a direction intersecting a first-sheared edge of the metal sheet in press-working including a plurality of shearing processes to produce a formed article from the metal sheet by press-forming, wherein the shearing die comprises a fitting part that can detach a shearing blade in the vicinity of a region coming in contact with an end of the first-sheared edge, wherein the fitting part satisfies at least one condition selected from (a) the fitting part is made of die steel having hardness higher than that of the shearing blade excluding the fitting part; (b) the fitting part is subjected to a surface nitriding treatment; and (c) the fitting part is subjected to a coating treatment, is used in the second shearing.
8. The method for press-forming a metal sheet according to claim 4, wherein a shearing die for shearing a metal sheet in a direction intersecting a first-sheared edge of the metal sheet in press-working including a plurality of shearing processes to produce a formed article from the metal sheet by press-forming, wherein the shearing die comprises a fitting part that can detach a shearing blade in the vicinity of a region coming in contact with an end of the first-sheared edge, wherein the fitting part has a length of not less than 1 mm on both sides with a center at the position where the shearing blade comes in contact with the end of the first sheared edge, is used in the second shearing.
9. The method for press-forming a metal sheet according to claim 4, wherein a shearing die for shearing a metal sheet in a direction intersecting a first-sheared edge of the metal sheet in press-working including a plurality of shearing processes to produce a formed article from the metal sheet by press-forming, wherein the shearing die comprises a fitting part that can detach a shearing blade in the vicinity of a region coming in contact with an end of the first-sheared edge, wherein the fitting part has a length of not less than 1 mm on both sides with a center at the position where the shearing blade comes in contact with the end of the first sheared edge, is used in the second shearing.
10. The method for press-forming a metal sheet according to claim 7, wherein the metal sheet has a tensile strength of more than 980 MPa.
11. The method for press-forming a metal sheet according to claim 8, wherein the metal sheet has a tensile strength of more than 980 MPa.
12. The method for press-forming a metal sheet according to claim 9, wherein the metal sheet has a tensile strength of more than 980 MPa.
Description
BRIEF DESCRIPTION OF DRAWINGS
[0021]
[0022]
[0023]
[0024]
[0025]
[0026]
[0027]
[0028]
[0029]
[0030]
[0031]
DESCRIPTION OF EMBODIMENTS
[0032] The inventors have observed the damaged state of the shearing blade coming in contact with the neighboring part of the end of the sheared edge that had been once subjected to shearing when a region including the sheared edge that had been once subjected to shearing was further subjected to shearing in the shearing of the press-working. As a result, the inventors have the knowledge that especially the shearing blade coming in contact with the neighboring part of the end of the sheared edge was largely damaged.
[0033] The invention is developed based on the above knowledge.
[0034] An embodiment of the invention will be described with reference to the drawings below.
[0035] <Forming >
[0036] As an embodiment of the invention, an explanation will be made on a press-forming case where a hat-shaped part shown in
[0037] In the embodiment of
[0038] In the press-forming of this embodiment, the first process is the first shearing (blanking) 11 to form slits on both ends of the hoop material 101. The second process is piercing 12 to punch out a circular hole in the widthwise center of the hoop material 101. The third process performs forming 14 to form a hat-shaped cross-section by subjecting the flat-state hoop material to bending.
[0039] The fourth process is the second shearing (flange trimming) 15 to trim both ends of the flange that will not be a product (excess portion) of the formed part with the hat-shaped cross-section. In the final fifth process, shearing (flat trimming) 16 is conducted to trim the top board face so that the connected part with the hat-shaped cross-section is separated from another. No processing can be performed in an idle process 13 shown in
[0040] <Shearing Die>
[0041]
[0042] <Shearing Position of Material to be Worked>
[0043]
[0044] <Sheared Edge Once Subjected to Shearing>
[0045] A cold-rolled steel sheet S (sheet thickness: 1.2 mm) having a tensile strength of 1470 MPa grade is subjected to shearing, and the hardness in the vicinity of the sheared edge 21 is measured by using a microhardness tester at a pushing load of an indenter of 100 gf (0.98 N). The hardness is measured in the vicinity of the sheared edge 21 having been subjected to shearing shown in
[0046] The results of the hardness measurement show, as shown in
[0047] <Shearing Blade>
[0048]
[0049] In this embodiment, only the neighboring area of the shearing blade 4 coming in contact with the sheared edge 21 that has been subjected to shearing once and work-hardened often causes damage and is thus made into an insert structure as the fitting part 7. Since only the fitting part 7 has a replaceable structure, the shearing blade 4 of this embodiment has a long service life by mass-production press-forming and is easily replaced. The nitriding treatment or coating treatment, when applied, needs to be performed only on the fitting part, so that the cost required for the maintenance can be largely decreased. Also, the shearing die of this embodiment is preferable to be used in the press-forming method for high-tension steel sheets of not less than 980 MPa class where the shearing die is easily caused, and particularly for super-high-tension steel sheets of not less than 1500 MPa class.
EXAMPLE
[0050] A press-forming die having a configuration shown in
[0051] The shearing blade in the formed die coming in actual contact with the material is made of regular steel for cold die SKD11, which has a hardness of 58 HRC. The main body of the shearing blade used in flange trimming 15 is made of steel for cold die SKD11. The fitting part 7 has a width of 20 mm centering on the region having in contact with the end part of the sheared edge that has been sheared and work-hardened in blanking 11 of the first process. The fitting part 7 is formed by using a powdery high-speed steel SKH51 as material, which had a hardness of 64 HRC. Further, the surface of the fitting part 7 on the sides coming in contact with the material S to be worked is subjected to a TiC-based PVD coating treatment. For comparison, continuous press-working is performed under the same conditions as above using shearing blades for the flange trimming process all made of SKD11.
[0052]
[0053] The above results indicate that, when the sheared end face that has been once sheared and work-hardened is again subjected to the shearing, by applying such a configuration of the shearing blade in which the part in the vicinity of the first sheared end face can be replaced and is made harder steel material the other parts and performing PVD coating treatment thereon, the damage of the die can be suppressed in the shearing.
INDUSTRIAL APPLICABILITY
[0054] The invention is not limited to the above embodiment and is preferably applied to a shearing die used in a processing method comprising a plurality of shearing processes, in which the shearing die is used in the second shearing for shearing in the direction intersecting a sheared edge formed in the first shearing.
REFERENCE SIGNS LIST
[0055] 90 necking
[0056] 100 press-formed article
[0057] 101 hoop material
[0058] 1 upper die
[0059] 2 lower die
[0060] 3 pad, blank holder
[0061] 4 shearing blade (upper blade)
[0062] 5 shearing blade (lower blade)
[0063] 6 scrap
[0064] 7 fitting part
[0065] 8 pierce punch
[0066] 9 button die
[0067] 11 blanking
[0068] 12 piercing
[0069] 13 idling
[0070] 14 forming
[0071] 15 flange trimming
[0072] 16 flat trimming
[0073] 17 bending blade
[0074] 18 punching
[0075] 21 sheared edge by blanking
[0076] 22 sheared edge by piercing
[0077] 23 shearing direction by flange trimming
[0078] 24 region where shearing blade comes in contact with sheared edge
[0079] S material to be worked
[0080] FD feeding direction