HOT PRESS FORMING DIE
20230321712 · 2023-10-12
Inventors
Cpc classification
B21D37/20
PERFORMING OPERATIONS; TRANSPORTING
B23K26/34
PERFORMING OPERATIONS; TRANSPORTING
B33Y10/00
PERFORMING OPERATIONS; TRANSPORTING
B33Y30/00
PERFORMING OPERATIONS; TRANSPORTING
B21D24/00
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A hot press forming die includes a die main body (2) made of alloy tool steel, and a number of forming projections (3) projecting on the die main body and configured to form a forming surface (5) that comes into contact with a heated metal plate material that is an object to be formed and form a refrigerant passage through which a cooling medium flows. The die main body includes a first forming portion (14) in which the forming surface is formed to extend in a direction intersecting a forming direction of the metal plate material, a second forming portion (15) in which the forming surface is formed to extend in the forming direction, and a third forming portion (16) configured to connect the first forming portion and the second forming portion such that the forming surface becomes a convex surface. The forming projection provided on the third forming portion is formed to be a projecting strip extending between the first forming portion and the second forming portion.
It is possible to provide a hot press forming die for which forming convex portions with a high hardness can easily be formed.
Claims
1. A hot press forming die comprising: a die main body made of alloy tool steel; and a number of forming projections projecting on the die main body and configured to form a forming surface that comes into contact with a heated metal plate material that is an object to be formed and form a refrigerant passage through which a cooling medium flows, wherein the die main body comprises: a first forming portion in which the forming surface is formed to extend in a direction intersecting a forming direction of the metal plate material; a second forming portion in which the forming surface is formed to extend in the forming direction; and a third forming portion configured to connect the first forming portion and the second forming portion such that the forming surface becomes a convex surface, and the forming projection provided on the third forming portion is formed to be a projecting strip extending between the first forming portion and the second forming portion.
2. The hot press forming die according to claim 1, wherein the forming projection is made of a steel-based material having a hardness higher than that of the alloy tool steel.
3. The hot press forming die according to claim 1, wherein at least a part of the third forming portion is formed such that a radius of curvature of the convex surface changes in a direction in which a boundary between the first forming portion and the second forming portion extends, and a length of the projecting strip in a longitudinal direction is longer as the radius of curvature is larger.
4. The hot press forming die according to claim 2, wherein at least a part of the third forming portion is formed such that a radius of curvature of the convex surface changes in a direction in which a boundary between the first forming portion and the second forming portion extends, and a length of the projecting strip in a longitudinal direction is longer as the radius of curvature is larger.
Description
BRIEF DESCRIPTION OF DRAWINGS
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BEST MODE FOR CARRYING OUT THE INVENTION
[0019] An embodiment of a hot press forming die according to the present invention will now be described in detail with reference to
[0020] (Explanation of Hot Press Forming Die)
[0021] A hot press forming die according to the present invention is formed as shown in
[0022] As shown in
[0023] Cooling of the metal plate material 4 is performed by ejecting the cooling medium 6 from ejection holes 9 opening to the surface 2a of the die main body 2 and directly applying the cooling medium to the metal plate material 4, as shown in
[0024] The cooling medium 6 applied to the metal plate material 4 passes through the refrigerant passage 7, spreads around the ejection holes 9, and is sucked into suction holes 12 opening to the surface 2a of the die main body 2. The suction holes 12 communicate with a discharge passage 13 formed in the die main body 2. The discharge passage 13 is connected to a suction device (not shown). The cooling medium 6 is discharged from the suction holes 12 to the outside of the die main body 2 via the discharge passage 13 and sucked by the suction device.
[0025] The die main body 2 is formed into a predetermined shape by machining or casting. As the material that forms the die main body 2, for example, alloy tool steel can be used. An example of the alloy tool steel is die steel, and SKD61 that is a kind of die steel can be used.
[0026] The die main body 2 shown in
[0027] The first forming portion 14 is a portion located at the uppermost position in
[0028] The second forming portions 15 are portions located on both sides of the first forming portion 14 in
[0029] The third forming portions 16 are portions called shoulder portions of the die main body 2, and are portions that connect the first forming portion 14 and the second forming portions 15 such that the forming surface 5 becomes a convex surface. Note that although not illustrated, if a recessed portion is formed at the center of the first forming portion 14, a portion extending in the depth direction of the recessed portion is the second forming portion 15, and the opening portion of the recessed portion is the third forming portion 16.
[0030] The fourth forming portions 17 are portions in which the forming surface 5 is formed to extend in the direction intersecting the forming direction A of the metal plate material 4 at a position apart from the first forming portion 14 in the forming direction A.
[0031] The fifth forming portions 18 are portions that connect the second forming portions and the fourth forming portions such that the forming surface becomes a concave surface.
[0032] The forming projections 3 are formed on the surface 2a of the die main body 2 by a 3D printer 21 (see
[0033] In this embodiment, the forming projections 3b of the third forming portion 16 extend while bending to be located in the forming direction A gradually as these separate from the first forming portion 14 such that the forming surface 5 formed by the forming projections 3b becomes a convex surface. In addition, the forming projections 3b of the third forming portion 16 are provided to be arranged at a predetermined interval in a direction B (see
[0034] A part of the third forming portion 16 according to this embodiment is formed such that the radius of curvature of the convex surface changes in the direction B in which the boundary between the first forming portion 14 and the second forming portion 15 extends. The third forming portion 16 shown in
[0035] The 3D printer 21 forms the forming projections 3 by laser build-up welding. The 3D printer 21 includes a combined working machine.
[0036] As shown in
[0037] The material of the metal powder 24 supplied from the supply nozzles 25, that is, the material used to form the forming projections 3 is a steel-based material having a hardness higher than that of the alloy tool steel used to form the die main body 2. Examples of the steel-based material of this type are maraging steel and cobalt-based Stellite™.
[0038] To form the forming projection 3 by the 3D printer 21, as shown in
[0039] (Explanation of Effects by this Embodiment)
[0040] The forming projections 3 of the hot press forming die 1 configured as described above are formed by the 3D printer 21 using a material with a hardness higher than that of the die main body 2. Hence, according to this embodiment, it is possible to provide a hot press forming die for which the forming projections 3 with a high hardness can easily be formed, and a method of manufacturing the hot press forming die.
[0041] The forming projections 3b provided on the third forming portion 16 of the die main body 2 are formed to be projecting strips extending between the first forming portion 14 and the second forming portion 15. For this reason, since the pressure resistance of the bending portion of the die main body 2 improves, the forming property can be maintained even if forming is performed under a high pressure. Also, the area of the surfaces of the forming projections 3b formed by projecting strips and serving as the forming surface 5 is larger than the area of the surfaces of the forming projections 3a having a columnar shape and serving as the forming surface 5. Hence, since the frictional resistance generated when the metal plate material 4 comes into contact with the forming projections 3a and 3b at the time of forming can be increased, the metal plate material 4 can be prevented from slipping on the die main body 2. In addition, when the surface area is increased, the upper die can be prevented from being caught in the middle of forming, and the trace of dimples can be prevented from remaining on the forming surface. Also, since the flow of cooling water improves, the effect of raising the cooling efficiency can be expected.
[0042] The 3D printer 21 according to this embodiment forms the forming projection 3 by laser build-up welding in which the surface 2a of the die main body 2 is heated by the laser beam 22, and the metal powder 24 is supplied to the surface 2a. Hence, when the 3D printer 21 is used, the fine forming projections 3 can be formed at a high accuracy.
[0043] (Modifications of Forming Projections)
[0044] The forming projections 3b formed by projecting strips can be formed as shown in
[0045] The forming projections 3b shown in
[0046] The forming projections 3b shown in
[0047] Even if the forming projections 3b formed by projecting strips are formed as shown in
EXPLANATION OF THE REFERENCE NUMERALS AND SIGNS
[0048] 1 . . . hot press forming die, 2 . . . die main body, 2a . . . surface, 3, 3a, 3b . . . forming projection, 4 . . . metal plate material, 5 . . . forming surface, 6 . . . cooling medium, 7 . . . refrigerant passage