WO2023127442A1 - Dispositif de presse - Google Patents

Dispositif de presse Download PDF

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Publication number
WO2023127442A1
WO2023127442A1 PCT/JP2022/045204 JP2022045204W WO2023127442A1 WO 2023127442 A1 WO2023127442 A1 WO 2023127442A1 JP 2022045204 W JP2022045204 W JP 2022045204W WO 2023127442 A1 WO2023127442 A1 WO 2023127442A1
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WO
WIPO (PCT)
Prior art keywords
punch
selection
pushing
axis
unit
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Application number
PCT/JP2022/045204
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English (en)
Japanese (ja)
Inventor
弘章 石原
博秀 多治見
聖 高橋
Original Assignee
トヨタ自動車株式会社
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by トヨタ自動車株式会社 filed Critical トヨタ自動車株式会社
Publication of WO2023127442A1 publication Critical patent/WO2023127442A1/fr

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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B21MECHANICAL METAL-WORKING WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
    • B21DWORKING OR PROCESSING OF SHEET METAL OR METAL TUBES, RODS OR PROFILES WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
    • B21D28/00Shaping by press-cutting; Perforating
    • B21D28/02Punching blanks or articles with or without obtaining scrap; Notching
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B21MECHANICAL METAL-WORKING WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
    • B21DWORKING OR PROCESSING OF SHEET METAL OR METAL TUBES, RODS OR PROFILES WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
    • B21D28/00Shaping by press-cutting; Perforating
    • B21D28/24Perforating, i.e. punching holes

Definitions

  • the present disclosure relates to a press device, for example, a press device that punches an electromagnetic steel sheet from a workpiece using a die punch and a die.
  • a press machine is used to stamp out the electromagnetic steel sheets that make up the motor core from the workpiece.
  • the press apparatus of Patent Document 1 is configured so that the punch can be replaced with respect to the upper die and the die can be replaced with respect to the lower die.
  • the press apparatus of Patent Document 1 is configured to be able to adapt to changes in the shape of the electromagnetic steel sheet by exchanging the punches and dies.
  • Patent Document 1 In the press apparatus of Patent Document 1, it is necessary to replace the punches and dies in order to cope with changes in the shape of the electromagnetic steel sheet. Therefore, every time the shape of the magnetic steel sheet is changed, the punch and the die need to be replaced, which poses a problem of lowering the productivity of the magnetic steel sheet.
  • the present disclosure has been made in view of such problems, and realizes a press apparatus capable of suppressing a decrease in productivity of an electromagnetic steel sheet due to a change in the shape of the electromagnetic steel sheet.
  • a press apparatus is a press apparatus that punches an electromagnetic steel sheet from a workpiece using a die punch and a die, a first punch for punching an electromagnetic steel sheet of a first shape; a second punch for punching an electromagnetic steel sheet of a second shape; A first pushing section for pushing in the first punch and a second pushing section for pushing in the second punch are operated integrally to select one of the first punch and the second punch. a selection unit that selects the first indentation or the second indentation for indentation; Prepare.
  • the selection unit includes the first push-in portion and the second push-in portion, and is orthogonal to the feed direction of the work piece and parallel to the work piece. with a moving part capable of moving in the axial direction of It is preferable that the first pushing-in portion and the second pushing-in portion are arranged in a staggered manner toward the first axial direction.
  • the first pushing portion and the second pushing portion are convex portions protruding from the moving portion.
  • the above-described press device includes a punch holder through which the first punch and the second punch are passed,
  • the selection part is arranged such that the end of the other of the first punch or the second punch on the side of the pushing direction by the selection part is housed inside the punch holder. It is preferable to provide an accommodating portion that accommodates an end portion of the second punch on the opposite side to the pushing direction side.
  • the press device described above is a drive unit that operates the selection unit; a control unit for controlling the drive unit to select the first indentation unit or the second indentation unit based on the material rod of the workpiece; is preferably provided.
  • the first punch and the second punch have similar shapes, It is preferable that the size ratio between the first punch and the second punch is 1 to 1.18.
  • the press device described above is a temperature detection unit that detects the temperature of the mold; a drive unit that operates the selection unit; a control unit that controls the driving unit so as to select the first pushing unit or the second pushing unit based on the detection result of the temperature detection unit; is preferably provided.
  • the pressing sets of the first punch, the second punch, and the selection section are arranged at intervals in the feeding direction of the workpiece.
  • the die preferably has a first insertion portion into which the first punch is inserted and a second insertion portion into which the second punch is inserted.
  • the workpiece is preferably an Fe--Co alloy.
  • FIG. 4 is a schematic view of the first state of the first die of the pressing device of Embodiment 1 as seen from the + side of the Z-axis.
  • FIG. 2 is a schematic view of the pressing apparatus of Embodiment 1 at the position II-II of FIG. 1;
  • FIG. 2 is a schematic view of the first mold of the pressing device of Embodiment 1 at the position III-III in FIG. 1;
  • 4 is a schematic view of the second state of the first die of the pressing device of Embodiment 1, viewed from the + side of the Z-axis.
  • FIG. 5 is a schematic view of the pressing apparatus of Embodiment 1 at the VV position in FIG.
  • FIG. 4; 5 is a schematic view of the first mold of the pressing device of Embodiment 1 at the position VI-VI of FIG. 4;
  • FIG. 2 is a block diagram showing the configuration of the control system of the press device of Embodiment 1;
  • FIG. 4 is a schematic diagram showing the arrangement of a selection portion and a punch when punching out a first shape electromagnetic steel sheet from a workpiece using the pressing apparatus of Embodiment 1;
  • 4 is a schematic diagram showing how the pressing apparatus of Embodiment 1 is used to punch a first shape electromagnetic steel sheet from a workpiece;
  • 4 is a schematic diagram showing the arrangement of a selection portion and a punch when punching a second shape electromagnetic steel sheet from a workpiece using the press apparatus of Embodiment 1;
  • 5 is a schematic diagram showing how the pressing apparatus of Embodiment 1 is used to punch out a second shape electromagnetic steel sheet from a workpiece;
  • FIG. 4 is a schematic diagram showing the arrangement of a selection portion and a punch when
  • FIG. 7 is a block diagram showing the configuration of a control system of a press device according to Embodiment 2;
  • FIG. 11 is a block diagram showing the configuration of a control system of a press device according to Embodiment 3;
  • FIG. 4 is a diagram for explaining the shape of an electromagnetic steel sheet punched by a punch and the desired shape of the electromagnetic steel sheet at the pressing stage, the heat treatment stage, and the completion stage;
  • FIG. 11 is a block diagram showing the configuration of a control system of a press device according to Embodiment 4;
  • FIG. 12 is a diagram showing a flow of punching an electromagnetic steel sheet from a workpiece using the press device of Embodiment 4;
  • the press apparatus of the present embodiment is suitable for punching out an electromagnetic steel sheet forming a motor core from a sheet-like workpiece.
  • a three-dimensional (XYZ) coordinate system will be used for clarity of description. It is assumed that the object to be processed is sent to the + side of the Y axis. That is, the feed direction of the workpiece is the + side of the Y axis.
  • FIG. 1 is a schematic diagram of the first state of the first die of the press device of the present embodiment, viewed from the Z-axis + side.
  • FIG. 2 is a schematic diagram of the press apparatus of this embodiment at the position II-II in FIG.
  • FIG. 3 is a schematic view of the first mold of the pressing device of the present embodiment at the position III-III in FIG.
  • FIG. 4 is a schematic view of the second state of the first die of the pressing device of the present embodiment, viewed from the + side of the Z axis.
  • FIG. 5 is a schematic diagram of the press apparatus of this embodiment at the position VV in FIG.
  • FIG. 6 is a schematic view of the first mold of the pressing device of the present embodiment at the position VI-VI of FIG.
  • FIG. 7 is a block diagram showing the configuration of the control system of the press device of this embodiment.
  • the press apparatus 1 of the present embodiment includes a mold 2, a first driving section 3, a second driving section 4 and a control section 5, as shown in FIGS.
  • the mold 2 includes a first mold 6 and a second mold 7, as shown in FIGS.
  • the first die 6 comprises a punch holder 61, a first punch 62, a second punch 63 and a selection portion 64, as shown in FIGS.
  • the punch holder 61 has a penetrating portion 61a penetrating in the Z-axis direction at a preset position of the punch holder 61. As shown in FIG.
  • a first penetrating portion 61b and a second penetrating portion 61c are provided as the penetrating portion 61a.
  • a plurality of (for example, two) first penetrating portions 61b are arranged at intervals in the X-axis direction.
  • the first through portion 61b is simplified by the solid line marked with ⁇ .
  • the second through portion 61c is arranged adjacent to the first through portion 61b in the Y-axis direction.
  • a plurality of (for example, two) second through portions 61c are arranged at intervals in the X-axis direction.
  • the second through portion 61c is shown in a simplified manner by a solid line marked with ⁇ .
  • the plurality of first through portions 61b and second through portions 61c form a through portion group 61d.
  • a plurality of groups (for example, three groups) of through-hole groups 61d are arranged at intervals in the Y-axis direction.
  • the penetrating portion group 61d the first penetrating portion group 61e arranged on the Y axis + side, the second penetrating portion group 61f arranged on the Y axis ⁇ side, and the Y axis direction is provided with a third penetrating portion group 61g disposed between the first penetrating portion group 61e and the second penetrating portion group 61f.
  • the penetrating portion 61a of the first penetrating portion group 61e, the penetrating portion 61a of the second penetrating portion group 61f, and the penetrating portion 61a of the third penetrating portion group 61g are preferably arranged so as to be offset in the X-axis direction when viewed from the Z-axis direction.
  • the penetrating portion 61a of the third penetrating portion group 61g is arranged at a position shifted to the X-axis - side with respect to the penetrating portion 61a of the first penetrating portion group 61e. Further, the penetrating portion 61a of the second penetrating portion group 61f is arranged at a position shifted to the X axis - side with respect to the penetrating portion 61a of the third penetrating portion group 61g.
  • the first punch 62 is a punch for punching out an electromagnetic steel sheet of a first shape from the workpiece. As shown in FIGS. 3 and 6, the first punch 62 is passed through the first through portion 61b of the punch holder 61 and is movable in the Z-axis direction. Incidentally, in FIGS. 1 and 4, the first punch 62 is simplified by the solid line marked with ⁇ .
  • the first punch 62 preferably has a retaining portion 62a at the end of the first punch 62 on the +Z-axis side.
  • the retaining portion 62a is housed in a housing portion 61h formed at the end of the first penetrating portion 61b of the punch holder 61 on the +Z-axis side. constrain the
  • the second punch 63 is a punch for punching out an electromagnetic steel sheet of a second shape from the workpiece. As shown in FIGS. 2 and 5, the second punch 63 is passed through the second through portion 61c of the punch holder 61 and is movable in the Z-axis direction. Incidentally, in FIGS. 1 and 4, the second punch 63 is simply shown by the solid line marked with ⁇ .
  • the second punch 63 preferably has a retaining portion 63a at the end of the second punch 63 on the +Z-axis side.
  • the retaining portion 63a is housed in a housing portion 61i formed at the end of the second penetrating portion 61c of the punch holder 61 on the +Z-axis side. constrain the
  • the selection unit 64 integrally operates the adjacent first punch 62 or the second punch 63 so that either one of the first punch and the second punch can be selectively pushed. works.
  • the direction in which the first punch 62 or the second punch 63 is pushed by the selection unit 64 is the Z-axis minus side.
  • the selection unit 64 includes a first selection unit 64a arranged on the + side of the Y axis and a second selection unit 64a arranged on the ⁇ side of the Y axis. and a third selection portion 64c arranged between the first selection portion 64a and the second selection portion 64b in the Y-axis direction.
  • the first selection part 64a makes it possible to selectively push either the first punch 62 or the second punch 63 inserted into the penetration part 61a of the first penetration part group 61e.
  • the second selection portion 64b makes it possible to selectively push either the first punch 62 or the second punch 63 inserted into the through portion 61a of the second through portion group 61f.
  • the third selection portion 64c makes it possible to selectively push either the first punch 62 or the second punch 63 inserted into the through portion 61a of the third through portion group 61g.
  • the first selection portion 64a is arranged on the Z-axis + side with respect to the first through portion group 61e of the punch holder 61. direction (first axis direction).
  • the first selection portion 64a includes a moving portion 64d, a first push-in portion 64e, a second push-in portion 64f, a first accommodating portion 64g, and a second accommodating portion 64h.
  • first push-in portion 64e and the second push-in portion 64f are indicated by a square dashed line
  • first accommodating portion 64g and the second accommodating portion 64h are indicated by a square two-dot chain line. is shown. 1 and 4
  • first push-in portion 64e, the second push-in portion 64f, the first accommodating portion 64g, and the second accommodating portion 64h are shown in a simplified manner.
  • the moving part 64d is, for example, a plate substantially parallel to the XY plane.
  • the first push-in portion 64e is a protrusion projecting from the moving portion 64d toward the Z-axis ⁇ side.
  • the first pushing portion 64e is in a first state in which the first selection portion 64a is arranged on the X-axis + side, and the Z-axis + placed on the side. At this time, in the first state, the Z-axis minus side end of the first pushing portion 64 e substantially contacts the Z-axis + side end of the first punch 62 .
  • the second push-in portion 64f is a convex portion that protrudes from the moving portion 64d toward the Z-axis - side.
  • the second pushing portion 64f is in a second state in which the first selection portion 64a is arranged on the most X-axis ⁇ side, and the Z-axis + placed on the side. At this time, in the second state, the Z-axis negative side end of the second pushing portion 64f substantially contacts the Z-axis positive side end of the second punch 63 .
  • the first push-in portion 64e and the second push-in portion 64f are staggered in the X-axis direction.
  • the portion 64f is arranged at a position shifted to the + side of the X axis with respect to the first push-in portion 64e.
  • the first accommodating portion 64g is arranged on the X-axis + side with respect to the first pushing portion 64e, and in the second state, the first punch 62 is arranged on the Z-axis + side with respect to As shown in FIG. 5, the first accommodating portion 64g is recessed toward the Z-axis + side with respect to the Z-axis-side end of the first pushing portion 64e.
  • the first housing portion 64g allows the first punch 62 to move toward the Z-axis + side until the Z-axis ⁇ side end of the first punch 62 does not protrude from the Z-axis ⁇ side end of the punch holder 61. It has a shape that can accommodate the end of the first punch 62 on the Z-axis + side when it is moved.
  • the second housing portion 64h is arranged on the X-axis ⁇ side with respect to the second pushing portion 64f, and in the first state, the second punch 63 is arranged on the Z-axis + side with respect to As shown in FIG. 2, the second accommodating portion 64h is recessed toward the Z-axis + side with respect to the Z-axis-side end of the second push-in portion 64f.
  • the second housing portion 64h allows the second punch 63 to move toward the Z-axis + side until the Z-axis ⁇ side end of the second punch 63 does not protrude from the Z-axis ⁇ side end of the punch holder 61. It has a shape that can accommodate the end of the second punch 63 on the +Z-axis side when it is moved.
  • the second selection section 64b has substantially the same configuration as the first selection section 64a. That is, as shown in FIGS. 1, 3, 4, and 6, the second selection portion 64b includes a moving portion 64d, a first push-in portion 64e, a second push-in portion 64f, and a first accommodation portion 64g. and a second accommodating portion 64h.
  • the first punches 62 and the second punches 63 inserted into the through portions 61a of the second through portion group 61f are arranged so as to correspond to the arrangement.
  • a first push-in portion 64e, a second push-in portion 64f, a first accommodating portion 64g, and a second accommodating portion 64h are arranged in.
  • FIG. 6 in order to clarify the shapes of the first push-in portion 64e and the first accommodating portion 64g, a part thereof is shown as a perspective view.
  • the third selection section 64c also has substantially the same configuration as the first selection section 64a. That is, as shown in FIGS. 1 and 4, the third selection portion 64c includes a moving portion 64d, a first push-in portion 64e, a second push-in portion 64f, a first accommodating portion 64g, and a second accommodating portion. It has 64h.
  • the first punch 62 and the second punch 63 inserted into the through portion 61a of the third through portion group 61g are arranged so as to correspond to the arrangement.
  • a first push-in portion 64e, a second push-in portion 64f, a first accommodating portion 64g, and a second accommodating portion 64h are arranged in.
  • the first selection portion 64a, the second selection portion 64b and the third selection portion 64c are inserted into the penetration portions 61a of the penetration portion groups 61e, 61f and 61g covered by the respective selection portions 64a, 64b and 64c. Together with the first punch 62 and the second punch 63, which are arranged together, constitute a pressing set. Therefore, in this embodiment, the push-in sets are spaced apart in the Y-axis direction.
  • the second die 7 is arranged on the Z-axis side with respect to the first die 6, as shown in FIGS.
  • the second mold 7 is a so-called die, and an insertion portion 7a is formed at a position corresponding to the through portion 61a of the first mold 6 .
  • the penetrating portion 61a includes a first insertion portion 7b into which the first punch 62 is inserted and a second insertion portion 7b into which the second punch 63 is inserted. 2 insertion portions 7c are provided.
  • the first insertion portion 7b corresponds to the XY plane shape of the end portion of the first punch 62 on the Z-axis-side
  • the second insertion portion 7c corresponds to the Z-axis-side of the second punch 63.
  • the first drive unit 3 relatively moves the first die 6 and the second die 7 in the Z-axis direction.
  • the first driving section 3 of the present embodiment moves the first die 6 in the Z-axis direction.
  • the second driving section 4 moves the first selection section 64a, the second selection section 64b, and the third selection section 64c in the X-axis direction.
  • the control section 5 controls the first drive section 3 and the second drive section 4 .
  • FIG. 8 is a schematic diagram showing the arrangement of the selection part and the punch when punching the first shape electromagnetic steel sheet from the workpiece using the press apparatus of the present embodiment.
  • FIG. 9 is a schematic diagram showing how the pressing apparatus of the present embodiment is used to punch a first shape electromagnetic steel sheet from a workpiece.
  • the control unit 5 controls the second driving unit 4 to move the first selection unit 64a, the second selection unit 64b, and the third selection unit 64c to the first state positions as shown in FIG. Deploy.
  • the first pressing portions 64e of the first selection portion 64a, the second selection portion 64b, and the third selection portion 64c are arranged on the Z-axis + side with respect to the first punch 62.
  • the second housing portions 64h of the first selection portion 64a, the second selection portion 64b, and the third selection portion 64c are arranged on the Z-axis + side with respect to the second punch 63. As shown in FIG.
  • control section 5 controls the first drive section 3 to move the first die 6 to the Z-axis - side.
  • first pressing portions 64e of the first selection portion 64a, the second selection portion 64b, and the third selection portion 64c are pushed with respect to the first punch 62 on the +Z-axis side. are placed in
  • the movement of the first punch 62 on the positive side of the Z axis is restrained, and the end of the first punch 62 on the negative side of the Z axis punches the workpiece 10 .
  • the first shape magnetic steel sheet 11 can be punched out from the workpiece 10 .
  • the second housing portions 64h of the first selection portion 64a, the second selection portion 64b, and the third selection portion 64c are arranged on the Z-axis + side with respect to the second punch 63. Therefore, as shown in FIG. 9, when the Z-axis negative side end of the second punch 63 contacts the workpiece 10 and is pushed to the Z-axis positive side, the Z-axis of the second punch 63 The second punch 63 escapes to the + side of the Z-axis while the end on the + side is housed in the second housing portion 64h, and the end on the - side of the Z-axis of the second punch 63 moves inside the punch holder 61. approximately accommodated in. Thereby, the second punch 63 does not punch the workpiece 10 in the first state.
  • FIG. 10 is a schematic diagram showing the arrangement of the selection part and the punch when punching out the second shape of the electromagnetic steel sheet from the workpiece using the press apparatus of the present embodiment.
  • 11A and 11B are schematic diagrams showing how the press apparatus of the present embodiment is used to punch a second shape electromagnetic steel sheet from a workpiece.
  • the control unit 5 controls the second drive unit 4 to move the first selection unit 64a, the second selection unit 64b, and the third selection unit 64c to the second state positions as shown in FIG. Deploy.
  • the second pressing portions 64f of the first selection portion 64a, the second selection portion 64b, and the third selection portion 64c are arranged on the Z-axis + side with respect to the second punch 63.
  • the first housing portions 64g of the first selection portion 64a, the second selection portion 64b, and the third selection portion 64c are arranged on the Z-axis + side with respect to the first punch 62. As shown in FIG.
  • control section 5 controls the first drive section 3 to move the first die 6 to the Z-axis - side.
  • the second pressing portions 64f of the first selection portion 64a, the second selection portion 64b, and the third selection portion 64c are pushed with respect to the second punch 63 on the +Z-axis side. are placed in
  • the movement of the second punch 63 on the positive side of the Z axis is restrained, and the end of the second punch 63 on the negative side of the Z axis punches the workpiece 10 .
  • the electromagnetic steel sheet 12 of the second shape can be punched out from the workpiece 10 .
  • the first housing portions 64g of the first selection portion 64a, the second selection portion 64b, and the third selection portion 64c are arranged on the Z axis + side with respect to the first punch 62. Therefore, as shown in FIG. 11, when the Z-axis negative side end of the first punch 62 contacts the workpiece 10 and is pushed to the Z-axis positive side, the Z-axis of the first punch 62 While the + side end is housed in the first housing portion 64g, the first punch 62 escapes to the Z axis + side, and the Z axis - side end of the first punch 62 is inside the punch holder 61. approximately accommodated in. As a result, the first punch 62 does not punch the workpiece 10 in the second state.
  • the press apparatus 1 of the present embodiment causes the first pressing portion 64e for pressing the first punch 62 and the second pressing portion 64f for pressing the second punch 63 to operate integrally.
  • the electromagnetic steel sheet 11 of the first shape or the electromagnetic steel sheet 12 of the second shape is punched from the workpiece 10. .
  • the press apparatus 1 of the present embodiment moves the first selection portion 64a, the second selection portion 64b, and the third selection portion 64c in the X-axis direction to switch between the first state and the second state.
  • the shape of the electromagnetic steel sheet can be changed from the first shape to the second shape or from the second shape to the first shape simply by switching the . Therefore, complication of the configuration of the press device 1 can be suppressed.
  • FIG. 12 is a block diagram showing the configuration of the control system of the press device of this embodiment. Since the press device 101 of the present embodiment has substantially the same configuration as that of the press device 1 of the first embodiment, redundant description will be omitted and the same reference numerals will be used for the same elements.
  • the press apparatus 101 of the present embodiment includes a third driving section 102 for moving the first selection section 64a instead of the second driving section 4 of the first embodiment, a second A fourth drive section 103 for moving the selection section 64b, and a fifth drive section 104 for moving the third selection section 64c.
  • the first selection section 64a, the second selection section 64b, and the third selection section 64c can be individually moved, and the selection sections 64a, 64b, and 64c can be individually moved. Different shapes of electromagnetic steel sheets can be punched at the same time.
  • FIG. 13 is a block diagram showing the configuration of the control system of the press device of this embodiment. As shown in FIG. 13, the pressing device 201 of the present embodiment has substantially the same configuration as the pressing device 1 of the first embodiment. will be used for explanation.
  • the punched electromagnetic steel sheet may be subjected to heat treatment in order to develop magnetization. Shape changes.
  • the dimensional change rate differs for each material rod of the workpiece due to multiple factors such as the material composition ratio and particle size variation. Therefore, in the press apparatus 201 of the present embodiment, for example, the first punch 62 is used when punching an electromagnetic steel sheet from a workpiece having a small dimensional change rate after heat treatment, which is the material characteristic of the first material rod, The second punch 63 is configured to be used when punching an electromagnetic steel sheet from a workpiece having a large dimensional change rate after heat treatment, which is the material characteristic of the second material rod.
  • FIG. 14 is a diagram for explaining the shape of an electromagnetic steel sheet punched by a punch at the pressing (punching) stage, the heat treatment stage, and the completion stage, and the desired shape of the electromagnetic steel sheet.
  • the case of the material rod is shown, and the case of the second material rod is shown at the bottom.
  • the dashed line indicates the shape of the punched electromagnetic steel sheet, and the solid line indicates the desired shape of the electromagnetic steel sheet.
  • the first punch 62 is capable of punching the electromagnetic steel sheet from the workpiece of the first material rod so that the punched electromagnetic steel sheet has a desired shape after heat treatment. It is considered to be a shape.
  • the second punch 63 is capable of punching an electromagnetic steel sheet from the workpiece of the second material rod, and punching the electromagnetic steel sheet so that the punched electromagnetic steel sheet has a desired shape after heat treatment. shape.
  • the XY plane shape of the Z-axis-side end of the first punch 62 and the XY plane shape of the Z-axis-side end of the second punch 63 are similar.
  • the material properties of the first material rod have a smaller dimensional change rate after heat treatment than the material properties of the second material rod.
  • the size of the planar shape is larger than the size of the XY planar shape of the end of the second punch 63 on the Z-axis - side.
  • the dimensional change rate of the workpiece is 0.02% to 0.20%.
  • the ratio between the size of the XY plane shape of the second punch 63 and the size of the XY plane shape of the end portion of the second punch 63 on the Z-axis - side is preferably 1 to 1.18.
  • the control unit 202 provides information indicating whether the workpiece for punching the electromagnetic steel sheet is the first material rod or the second material rod. is acquired, and the second driving unit 4 is controlled based on the acquired information.
  • the control unit 202 controls the second driving unit 4 so that the first punch 62 punches the electromagnetic steel sheet, and the first selection unit 64a, the second selection unit 64b and the third selection unit 64c are operated.
  • the shape of the electromagnetic steel sheet punched by the first punch 62 can be formed into a desired shape after the heat treatment, as shown in the upper stage of FIG.
  • the control unit 202 controls the second driving unit 4 so that the second punch 63 punches the electromagnetic steel sheet, and the first selection unit 64a, the second selection unit 64b and the third selection unit 64c are operated.
  • the magnetic steel sheet punched by the second punch 63 can be formed into a desired shape after the heat treatment, as shown in the lower stage of FIG.
  • FIG. 15 is a block diagram showing the configuration of the control system of the press device of this embodiment. Since the press device 301 of the present embodiment has substantially the same configuration as that of the press device 1 of the first embodiment, redundant description will be omitted and the same elements will be described using the same reference numerals.
  • the pressing device 301 of the present embodiment differs from the pressing device 1 of the first embodiment in that it includes a temperature detection section 302 .
  • the temperature detection unit 302 is provided in the first die 6 or the second die 7 so as to be able to detect the temperature in the die 2 near the working part where the electromagnetic steel sheet is punched from the workpiece.
  • the XY plane shape of the Z-axis-side end of the first punch 62 and the XY plane shape of the Z-axis-side end of the second punch 63 are similar.
  • the size of the XY plane shape of the end of the punch 62 on the Z-axis side is larger than the size of the XY plane shape of the end of the second punch 63 on the Z-axis side.
  • FIG. 16 is a diagram showing the flow of punching an electromagnetic steel sheet from a workpiece using the press device of the present embodiment.
  • the temperature detector 302 detects the temperature of the mold 2 (S1).
  • the control unit 303 determines whether or not the temperature detected by the temperature detection unit 302 is equal to or lower than a preset threshold (S2).
  • the control unit 303 controls the second driving unit 4 so that the first punch 62 punches out the electromagnetic steel sheet.
  • the first selection section 64a, the second selection section 64b and the third selection section 64c are operated (S3).
  • the control unit 303 controls the second driving unit 4 so that the second punch 63 punches out the electromagnetic steel sheet.
  • the first selection section 64a, the second selection section 64b and the third selection section 64c are operated (S4).
  • the press apparatus 301 of the present embodiment has high productivity of the magnetic steel sheet, and can form the magnetic steel sheet into a desired shape with high accuracy.
  • the selection portion 64 of the above embodiment includes a first push-in portion 64e, a second push-in portion 64f, a first accommodating portion 64g, and a second accommodating portion 64h.
  • the moving direction of the selecting portion 64 is an example, and the arrangement of the pressing portion and the containing portion can be changed as appropriate according to the moving direction of the selecting portion 64 .
  • the shape of the selection portion 64 in the above embodiment is an example, and at least the first pushing portion for pushing the first punch and the second pushing portion for pushing the second punch are operated integrally. , the first punch or the second punch can be selectively pushed.
  • the number of pressing sets in the above embodiment is an example, and at least one set of pressing sets may be provided.
  • the arrangement of the punches in the above embodiment is just an example, and the punches of adjacent pusher sets need not be staggered, and the first punch 62 and the second punch of each pusher set need not be staggered.
  • the two punches 63 may be staggered.
  • the first die 6 has at least the first punch 62 for punching the first shape electromagnetic steel sheet and the second punch 63 for punching the second shape electromagnetic steel sheet.
  • the press device of the above embodiment includes the second driving section and the like, but the configuration may be such that the selection section 64 is manually moved.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Manufacturing Cores, Coils, And Magnets (AREA)
  • Punching Or Piercing (AREA)

Abstract

La présente invention concerne un dispositif de presse capable d'inhiber une diminution de la productivité de tôles d'acier électromagnétique associée à un changement de la forme des tôles d'acier électromagnétique. Un dispositif de presse (1) selon un mode de réalisation de la présente invention est un dispositif de presse qui utilise un poinçon de matrice (2) et des matrices pour poinçonner des tôles d'acier électromagnétique à partir d'une pièce à travailler (10), et comprend : un premier poinçon (62) qui poinçonne une tôle d'acier électromagnétique (11) ayant une première forme ; un deuxième poinçon (63) qui poinçonne une tôle d'acier électromagnétique (12) ayant une deuxième forme ; et une unité de sélection (64) qui actionne d'un seul tenant une première partie de poussée entrante (64e) pour pousser vers l'intérieur le premier poinçon (62) et une deuxième partie de poussée entrante (64f) pour pousser vers l'intérieur le deuxième poinçon (63), et sélectionne la première partie de poussée entrante (64e) ou la deuxième partie de poussée entrante (64f) afin de pousser sélectivement vers l'intérieur le premier poinçon (62) ou le deuxième poinçon (63).
PCT/JP2022/045204 2021-12-27 2022-12-08 Dispositif de presse WO2023127442A1 (fr)

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JP2021213068A JP2023096976A (ja) 2021-12-27 2021-12-27 プレス装置
JP2021-213068 2021-12-27

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WO2023127442A1 true WO2023127442A1 (fr) 2023-07-06

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Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS58111123U (ja) * 1982-01-22 1983-07-29 日産自動車株式会社 ピアス装置
WO2007026079A1 (fr) * 2005-09-02 2007-03-08 Arcelor Steel Service Centres Installation et procedes de travail d'un lot de flans
JP2021037528A (ja) * 2019-09-03 2021-03-11 株式会社三井ハイテック 積層鉄心の製造装置及び積層鉄心の製造方法

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS58111123U (ja) * 1982-01-22 1983-07-29 日産自動車株式会社 ピアス装置
WO2007026079A1 (fr) * 2005-09-02 2007-03-08 Arcelor Steel Service Centres Installation et procedes de travail d'un lot de flans
JP2021037528A (ja) * 2019-09-03 2021-03-11 株式会社三井ハイテック 積層鉄心の製造装置及び積層鉄心の製造方法

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