US20020038563A1 - Forming equipment for rolling and profiling disk-shaped and ring-shaped parts - Google Patents

Forming equipment for rolling and profiling disk-shaped and ring-shaped parts Download PDF

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Publication number
US20020038563A1
US20020038563A1 US09/947,508 US94750801A US2002038563A1 US 20020038563 A1 US20020038563 A1 US 20020038563A1 US 94750801 A US94750801 A US 94750801A US 2002038563 A1 US2002038563 A1 US 2002038563A1
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Prior art keywords
press
rolling
pressure rolling
forming equipment
shaped
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Abandoned
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US09/947,508
Inventor
Rolf Steinmetz
Wojciech Harabasz
Siegfried Grone
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VSG Energie- und Schmiedetechnik GmbH
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VSG Energie- und Schmiedetechnik GmbH
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Assigned to VSG ENERGIE- UND SCHMIEDETECHNIK GMBH reassignment VSG ENERGIE- UND SCHMIEDETECHNIK GMBH ASSIGNMENT OF ASSIGNORS INTEREST (SEE DOCUMENT FOR DETAILS). Assignors: GRONE, SIEGFRIED, STEINMETZ, ROLF, HARABASZ, WOJCIECH
Publication of US20020038563A1 publication Critical patent/US20020038563A1/en
Abandoned legal-status Critical Current

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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B21MECHANICAL METAL-WORKING WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
    • B21JFORGING; HAMMERING; PRESSING METAL; RIVETING; FORGE FURNACES
    • B21J9/00Forging presses
    • B21J9/02Special design or construction
    • B21J9/025Special design or construction with rolling or wobbling dies
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B21MECHANICAL METAL-WORKING WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
    • B21JFORGING; HAMMERING; PRESSING METAL; RIVETING; FORGE FURNACES
    • B21J13/00Details of machines for forging, pressing, or hammering
    • B21J13/02Dies or mountings therefor
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B21MECHANICAL METAL-WORKING WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
    • B21JFORGING; HAMMERING; PRESSING METAL; RIVETING; FORGE FURNACES
    • B21J13/00Details of machines for forging, pressing, or hammering
    • B21J13/08Accessories for handling work or tools
    • B21J13/085Accessories for handling work or tools handling of tools

Definitions

  • the invention relates to forming equipment for rolling and profiling of disk-shaped and ring-shaped parts.
  • Forging presses e.g., for high temperature forging of ring-shaped or disk-shaped parts are also known, which require considerable investments.
  • the invention is based on the task of improving a forming device of the type described, in that the advantages of forging and pressure rolling can be combined without having their disadvantages.
  • the investment costs required by conventional pressure rolling machines will be considerably reduced and the investments for press forging will be used more efficiently.
  • the forming equipment according to the invention combines the advantages of a pressure rolling device and those of a forging press, without taking on their disadvantages.
  • the pressure rolling device is a self-contained unit that is used in an available forging press and e.g., forms disk-shaped or ring-shaped parts of metallic materials, especially of steel.
  • the pressure rolling machine is not mechanically connected with the forging press, rather it only obtains rolling pressure in the axial direction from the forging press.
  • this means that the pressure rolling equipment does not have any drive of its own for application of the axial rolling force.
  • a pressure rolling device according to the invention can be used in forging presses that are already available. Because of this, available forging presses can also be utilized in a better way than would otherwise be possible.
  • low investment costs for a pressure rolling device according to the invention in contrast to pressure rolling machines with their own axial drive for applying the pressing force and their own foundation—lower investment costs are necessary accordingly for manufacturing of the pressure rolling device.
  • the upper and lower die units of the pressure rolling device have electrical or hydraulic and/or electrohydraulic drives. In order to absorb the horizontal forces during rolling, corresponding guides can be provided but these are not connected to the actual forging press since the pressure rolling device is placed only on the press bed plate.
  • the return force of the device acts continuously against the press ram.
  • the upper and lower bearing unit has roller bearings and has recirculating oil lubrication.
  • an ejector can be provided that lifts the rolled part after forming so that a manipulator can take it.
  • dies for the pressure rolling device these can be mounted optionally with screws or with a quick connect system. With one device, it is also possible to have the upper die lay on the lower die. Both dies can then be lifted by the ejector and can then be taken out by the manipulator.
  • All the energy connections for electrical, hydraulic, cooling, lubrication and control can be designed as quick connects or plug connectors so that a very fast connection to the appropriate energy supplies is possible without errors.
  • an uncoupling is also equally fast if the pressure rolling device will be taken out of the forging press. After the independent control of the device is switched on, rolling can begin. Only linking signals are exchanged between the press control and the control for the pressure rolling device, whereby suitable electric and/or electronic components of a conventional type are used. If the device is removed from the press, completely normal production can take place again with the forging press.
  • the press bed plate can be moved in the horizontal plane and holds the pressure rolling device, whereby an upper housing of the pressure rolling device is guided mechanically so that it can be adjusted with respect to the lower housing of same and connected to it.
  • the pressure rolling device that is designed as a construction unit can be placed on the press bed plate that has been run out and can be run under the press ram and after that the energy supply lines can be connected using quick connectors in order to bring the forming device into a position appropriate for function.
  • the procedure is reversed. This means that after loosening and/or interrupting the energy supplies, the press bed plate is run out and the pressure rolling device is removed from it.
  • the mechanical connection to the lower housing of the pressure rolling device is produced using several, preferably four, guide pillars that are connected to the upper housing of the pressure rolling device and that are guided with a gliding movement in the corresponding recesses of the lower housing.
  • the connection of the guide columns to the upper housing of the pressure rolling device can be carried out e.g., by contraction, but also in another suitable manner.
  • Patent claim 4 describes a preferred embodiment of the invention.
  • FIG. 1 A vertical cross section through a forming device according to the invention, partially in side view, partially cut away;
  • FIG. 2 A top view of FIG. 1, also shown cut-away and
  • FIG. 3 A side view of FIG. 1, partially in cross section, whereby the pressure rolling device is shown with the press bed plate driven laterally out of the forging press.
  • Reference character 1 indicates a press that is only schematically shown which has the conventional design and can be set up according to the operating conditions. Since the overall structure of forging press 1 is not significant for explaining the function method, only parts of forging press 1 will be indicated.
  • Reference character 2 shows the hydraulically driven press ram.
  • the hydraulic drive for press ram 2 was not specially marked.
  • a press bed plate 3 that can be moved in a horizontal direction and also can be run out of press 1 and run into press 1 is shown.
  • the movement capability in a horizontal direction of this press bed plate 3 is schematically indicated by a double arrow in FIG. 1.
  • Reference character 4 indicates column guides, of which a total of four units are shown, which are arranged distributed uniformly in the corner areas of a square or rectangle (FIG. 2) and can be guided with a sliding movement in the corresponding pocket holes of a lower machine housing 5 , whereby bearing seals are mounted in each area of the upper opening of pocket holes for guide columns 4 which also seal the column guide to the outside against dirt and moisture.
  • the lower machine housing 5 holds a lower forming die 6 of a pressure rolling device that has the appropriate contour of the workpiece to be rolled.
  • the lower forming die 6 is mounted in the lower machine housing 5 so that it can be changed, whereby axially-spaced roller bearings 7 hold the lower rolling unit, consisting of the lower forming die 6 and a bearing part 15 .
  • a lower die drive is indicated that can have a design that is conventional for pressure rolling machines such as an electric motor, a hydraulic motor, or a gear motor.
  • an upper forming die 9 is also provided that is tilted with its forming contour at an acute angle to the lower forming die 6 of e.g., 3 to 15 and that is mounted in an upper machine housing 10 so that it can be replaced.
  • axially-spaced roller bearings are provided for holding the upper roller unit, consisting of the upper forming die 9 and an upper bearing part 16 .
  • the upper rolling unit is driven by an upper die drive 12 , which can also have the conventional design used in pressure rolling machines.
  • Press bed plate 3 of hydraulic press 1 is mounted on a lower press cross head 13 so that it can be moved with transverse movements, if necessary using bearings that are not shown.
  • a lifting device is indicated with 14 , which can be, e.g., a load hook that is to be coupled with a crane hook that is only indicated schematically and by which the construction unit consisting of lower machine housing 5 , column guides 4 , lower bearing part 15 , lower forming die 6 , upper machine housing 10 , upper bearing part 16 with upper forming die 9 and all the drives and an ejector 17 that can be motor-driven are lifted together off of press bed plate 3 and/or placed on it.
  • a load hook that is to be coupled with a crane hook that is only indicated schematically and by which the construction unit consisting of lower machine housing 5 , column guides 4 , lower bearing part 15 , lower forming die 6 , upper machine housing 10 , upper bearing part 16 with upper forming die 9 and all the drives and an ejector 17 that can be motor-driven are lifted together off of press bed plate 3 and/or placed on it.
  • press bed plate 3 is run back into press 1 , in its usual position it can be operated in its usual manner, while when pressure rolling device is mounted in the press, the axial rolling force can be applied by press ram 2 and as a reaction force by press bed plate 3 can be applied to the forming dies 6 and 9 .
  • the pressure device that is to be handled overall as a construction unit is placed by means of a shop crane or the like on press bed plate 3 (FIG. 3) that has been run out.
  • the upper machine housing 10 is mechanically connected for this purpose to the lower machine housing 5 by way of column guides 4 and a mechanical safety device between the upper ( 10 ) and lower machine housing ( 5 ).
  • the column guides 4 are connected to the upper machine housing 10 by contraction or the like so that they are fixed, but replaceable.
  • press bed plate 3 is run into the press center of press 1 .
  • all the energy connections are plugged in and/or connected, i.e., for electrical, hydraulic, cooling and lubrication.
  • rolling can be started. Linking signals are exchanged between the press control on one side and the pressure rolling device on the other side. When the pressure rolling device is removed from hydraulic press 1 , production can continue as usual with press 1 .
  • the invention relates to forming equipment for rolling and profiling disk-shaped and ring-shaped parts of a metallic material, e.g., of steel, of super alloys, aluminum alloys, etc., whereby a pressure rolling device without its own axial drive designed as a transportable and replaceable construction unit that it can be replaceably mounted in a conventional forging press between a press ram and the press bed plate for axial rolling. Because of this, the investment costs for otherwise conventional pressure rolling machines is reduced considerably and current forging presses can be used without remodeling for axial rolling by integrating a pressure rolling device according to the invention.
  • a pressure rolling device without its own axial drive designed as a transportable and replaceable construction unit that it can be replaceably mounted in a conventional forging press between a press ram and the press bed plate for axial rolling.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Forging (AREA)
  • Press Drives And Press Lines (AREA)
  • Reduction Rolling/Reduction Stand/Operation Of Reduction Machine (AREA)
  • Control Of Vending Devices And Auxiliary Devices For Vending Devices (AREA)
  • Presses And Accessory Devices Thereof (AREA)

Abstract

The invention relates to forming equipment for rolling and profiling disk-shaped and ring-shaped parts of a metallic material, e.g., of steel, of super alloys, aluminum alloys, etc., whereby a pressure rolling device without its own axial drive designed as a transportable and replaceable construction unit that it can be replaceably mounted in a conventional forging press between a press ram and the press bed plate for axial rolling. Because of this, the investment costs for otherwise conventional pressure rolling machines is reduced considerably and current forging presses can be used without remodeling for axial rolling by integrating a pressure rolling device according to the invention.

Description

  • The invention relates to forming equipment for rolling and profiling of disk-shaped and ring-shaped parts. [0001]
  • Producing ring-shaped workpieces with highly profiled cross sections like welding neck flanges or the like in a pressure rolling machine is known from DE 26 11 568 A1. Because of the slant of the upper die with respect to the lower die at an acute angle, only a relatively low pressing force is necessary, whereby parts can be formed with very precise contours. Because of the necessary special foundations, pressure rolling machines also require considerable investments. [0002]
  • Forging presses, e.g., for high temperature forging of ring-shaped or disk-shaped parts are also known, which require considerable investments. [0003]
  • The invention is based on the task of improving a forming device of the type described, in that the advantages of forging and pressure rolling can be combined without having their disadvantages. In particular, the investment costs required by conventional pressure rolling machines will be considerably reduced and the investments for press forging will be used more efficiently. [0004]
  • The task is solved by the characteristics given in [0005] Patent claim 1.
  • The forming equipment according to the invention combines the advantages of a pressure rolling device and those of a forging press, without taking on their disadvantages. The pressure rolling device is a self-contained unit that is used in an available forging press and e.g., forms disk-shaped or ring-shaped parts of metallic materials, especially of steel. In this process, the pressure rolling machine is not mechanically connected with the forging press, rather it only obtains rolling pressure in the axial direction from the forging press. Thus, this means that the pressure rolling equipment does not have any drive of its own for application of the axial rolling force. Because of the angle of inclination of the upper die of the pressure rolling equipment of about 3 to 15 degrees, only a fraction of the otherwise usual pressing force for forge pressing is necessary to produce the required forming work. In this way, forming can be carried out with relatively low pressing force on parts in desired dimensions, i.e., with precise contours. This not only has the advantage that a great deal of material can be saved but because of the precise contour rolling, the fiber orientation will not be interrupted during metal cutting. This means that the mechanical properties of the forged parts are significantly better. However, a special advantage exists in that the necessary separate foundations and setups that are otherwise necessary with conventional pressure rolling machines can be avoided since the pressure rolling equipment is integrated according to the invention as a replaceable construction unit in the forging press so that because of an appropriate die quick change system, there can be a changeover from one workpiece type to the other in a relatively short time. [0006]
  • It is also of special advantage, that a pressure rolling device according to the invention can be used in forging presses that are already available. Because of this, available forging presses can also be utilized in a better way than would otherwise be possible. On the other hand, because of the lower investment costs for a pressure rolling device according to the invention—in contrast to pressure rolling machines with their own axial drive for applying the pressing force and their own foundation—lower investment costs are necessary accordingly for manufacturing of the pressure rolling device. The upper and lower die units of the pressure rolling device have electrical or hydraulic and/or electrohydraulic drives. In order to absorb the horizontal forces during rolling, corresponding guides can be provided but these are not connected to the actual forging press since the pressure rolling device is placed only on the press bed plate. The return force of the device acts continuously against the press ram. The upper and lower bearing unit has roller bearings and has recirculating oil lubrication. In the center of the lower bearing unit, an ejector can be provided that lifts the rolled part after forming so that a manipulator can take it. [0007]
  • As regards the dies for the pressure rolling device, these can be mounted optionally with screws or with a quick connect system. With one device, it is also possible to have the upper die lay on the lower die. Both dies can then be lifted by the ejector and can then be taken out by the manipulator. [0008]
  • All the energy connections for electrical, hydraulic, cooling, lubrication and control can be designed as quick connects or plug connectors so that a very fast connection to the appropriate energy supplies is possible without errors. However, an uncoupling is also equally fast if the pressure rolling device will be taken out of the forging press. After the independent control of the device is switched on, rolling can begin. Only linking signals are exchanged between the press control and the control for the pressure rolling device, whereby suitable electric and/or electronic components of a conventional type are used. If the device is removed from the press, completely normal production can take place again with the forging press. [0009]
  • In a preferred embodiment, according to [0010] Patent claim 2 the press bed plate can be moved in the horizontal plane and holds the pressure rolling device, whereby an upper housing of the pressure rolling device is guided mechanically so that it can be adjusted with respect to the lower housing of same and connected to it. Because of this, by using a shop crane or the like, the pressure rolling device that is designed as a construction unit can be placed on the press bed plate that has been run out and can be run under the press ram and after that the energy supply lines can be connected using quick connectors in order to bring the forming device into a position appropriate for function. During removal of the pressure rolling machine, the procedure is reversed. This means that after loosening and/or interrupting the energy supplies, the press bed plate is run out and the pressure rolling device is removed from it.
  • It is especially effective if, according to [0011] Patent claim 3, the mechanical connection to the lower housing of the pressure rolling device is produced using several, preferably four, guide pillars that are connected to the upper housing of the pressure rolling device and that are guided with a gliding movement in the corresponding recesses of the lower housing. The connection of the guide columns to the upper housing of the pressure rolling device can be carried out e.g., by contraction, but also in another suitable manner.
  • [0012] Patent claim 4 describes a preferred embodiment of the invention.
  • Further advantageous embodiments are described in [0013] Patent claims 5 and 6.
  • The invention is shown—in part schematically—in the drawings. They show: [0014]
  • FIG. 1 A vertical cross section through a forming device according to the invention, partially in side view, partially cut away; [0015]
  • FIG. 2 A top view of FIG. 1, also shown cut-away and [0016]
  • FIG. 3 A side view of FIG. 1, partially in cross section, whereby the pressure rolling device is shown with the press bed plate driven laterally out of the forging press.[0017]
  • [0018] Reference character 1 indicates a press that is only schematically shown which has the conventional design and can be set up according to the operating conditions. Since the overall structure of forging press 1 is not significant for explaining the function method, only parts of forging press 1 will be indicated.
  • [0019] Reference character 2 shows the hydraulically driven press ram. The hydraulic drive for press ram 2 was not specially marked.
  • In [0020] 3, a press bed plate 3 that can be moved in a horizontal direction and also can be run out of press 1 and run into press 1 is shown. The movement capability in a horizontal direction of this press bed plate 3 is schematically indicated by a double arrow in FIG. 1.
  • [0021] Reference character 4 indicates column guides, of which a total of four units are shown, which are arranged distributed uniformly in the corner areas of a square or rectangle (FIG. 2) and can be guided with a sliding movement in the corresponding pocket holes of a lower machine housing 5, whereby bearing seals are mounted in each area of the upper opening of pocket holes for guide columns 4 which also seal the column guide to the outside against dirt and moisture. The lower machine housing 5 holds a lower forming die 6 of a pressure rolling device that has the appropriate contour of the workpiece to be rolled. The lower forming die 6 is mounted in the lower machine housing 5 so that it can be changed, whereby axially-spaced roller bearings 7 hold the lower rolling unit, consisting of the lower forming die 6 and a bearing part 15.
  • In [0022] 8, a lower die drive is indicated that can have a design that is conventional for pressure rolling machines such as an electric motor, a hydraulic motor, or a gear motor.
  • As can be seen from FIG. 1, an upper forming [0023] die 9 is also provided that is tilted with its forming contour at an acute angle to the lower forming die 6 of e.g., 3 to 15 and that is mounted in an upper machine housing 10 so that it can be replaced.
  • In [0024] 11, axially-spaced roller bearings are provided for holding the upper roller unit, consisting of the upper forming die 9 and an upper bearing part 16. The upper rolling unit is driven by an upper die drive 12, which can also have the conventional design used in pressure rolling machines.
  • [0025] Press bed plate 3 of hydraulic press 1 is mounted on a lower press cross head 13 so that it can be moved with transverse movements, if necessary using bearings that are not shown.
  • A lifting device is indicated with [0026] 14, which can be, e.g., a load hook that is to be coupled with a crane hook that is only indicated schematically and by which the construction unit consisting of lower machine housing 5, column guides 4, lower bearing part 15, lower forming die 6, upper machine housing 10, upper bearing part 16 with upper forming die 9 and all the drives and an ejector 17 that can be motor-driven are lifted together off of press bed plate 3 and/or placed on it. This means that it is easy to replace the entire pressure rolling device, whereupon after press bed plate 3 is run back into press 1, in its usual position it can be operated in its usual manner, while when pressure rolling device is mounted in the press, the axial rolling force can be applied by press ram 2 and as a reaction force by press bed plate 3 can be applied to the forming dies 6 and 9.
  • As can be seen, in this way a separate foundation or frame for the pressure rolling device can be eliminated, so when needed the pressure rolling device can be integrated in the forging press. The quick connects for producing the energy supplies for the pressure rolling device drives are not shown for reasons of simplification. Also for reasons of simplification the control means and the control lines that are used to move the pressure rolling device on one hand, and to coordinate it to the [0027] press 1 on the other, are not shown.
  • The operating method of the forming device that can be seen in the drawing is as follows: [0028]
  • The pressure device that is to be handled overall as a construction unit is placed by means of a shop crane or the like on press bed plate [0029] 3 (FIG. 3) that has been run out. The upper machine housing 10 is mechanically connected for this purpose to the lower machine housing 5 by way of column guides 4 and a mechanical safety device between the upper (10) and lower machine housing (5). The column guides 4 are connected to the upper machine housing 10 by contraction or the like so that they are fixed, but replaceable.
  • After that, [0030] press bed plate 3 is run into the press center of press 1. After that, all the energy connections are plugged in and/or connected, i.e., for electrical, hydraulic, cooling and lubrication. After the equipment's own control is switched on, rolling can be started. Linking signals are exchanged between the press control on one side and the pressure rolling device on the other side. When the pressure rolling device is removed from hydraulic press 1, production can continue as usual with press 1.
  • The characteristics described in the summary, in the patent claims and in the description, as well as those that can be seen in the drawing, can be present both individually as well as in any combinations for implementing the invention. [0031]
  • SUMMARY
  • The invention relates to forming equipment for rolling and profiling disk-shaped and ring-shaped parts of a metallic material, e.g., of steel, of super alloys, aluminum alloys, etc., whereby a pressure rolling device without its own axial drive designed as a transportable and replaceable construction unit that it can be replaceably mounted in a conventional forging press between a press ram and the press bed plate for axial rolling. Because of this, the investment costs for otherwise conventional pressure rolling machines is reduced considerably and current forging presses can be used without remodeling for axial rolling by integrating a pressure rolling device according to the invention. [0032]

Claims (6)

1. Forming equipment for rolling and profiling disk-shaped and ring-shaped parts wherein a pressure rolling device (4, 5, 6, 7, 8, 9, 10, 11, 12) without its own axial rolling drive is mounted, as a transportable and replaceable construction unit, in a conventional forging press (1) between a press ram (2) and a press bed plate (3), whereby the press (1) applies the axial rolling force.
2. Forming equipment according to claim 1, characterized in that the press bed plate (3) can be moved in horizontal direction and holds the pressure rolling equipment (4, 5, 6, 7, 8, 9, 10, 11, 12) and that an upper machine housing (10) of the pressure rolling equipment (4, 5, 6, 7, 8, 9, 10, 11, 12) is guided mechanically so that it can be adjusted and is connected with a lower machine housing (5) of same.
3. Forming equipment according to claim 2, characterized in that the mechanical connection is produced with several, preferably four, column guides (4) with return traverse, which are tightly connected to the upper machine housing (10) of the pressure rolling equipment (4, 5, 6, 7, 8, 9, 10, 11, 12) and that are guided in corresponding recesses of the lower machine housing (5) so that they can move by sliding.
4. Forming equipment according to claim 1 or one of the following claims, characterized in that all the energy supply lines for the pressure rolling equipment (4, 5, 6, 7, 8, 9, 10, 11, 12) for electrical energy, hydraulic energy, for cooling and lubrication, as well as for control are connected with quick connects, especially with plug connectors.
5. Forming equipment according to claim 1 or one of the following claims, characterized in that the pressure rolling equipment (4, 5, 6, 7, 8, 9, 10, 11, 12) has its own control and hydraulics and is only linked to press (1) by signals in such a way that press (1) is fully functional without integration of the pressure rolling equipment (4, 5, 6, 7, 8, 9, 10, 11, 12).
6. Forming equipment according to claim 1 or one of the following claims, characterized in that depending on the workpiece temperature measured in the rolling slot, the feed of the press ram (2) can be controlled in such a way that the forming temperature is constant or nearly constant over the entire rolling process, especially for high-temperature-resistant materials, e.g., steel alloys, super alloys and/or aluminum alloys.
US09/947,508 2000-09-07 2001-09-07 Forming equipment for rolling and profiling disk-shaped and ring-shaped parts Abandoned US20020038563A1 (en)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
EP00119559A EP1186362B1 (en) 2000-09-07 2000-09-07 Forming device for the rolling and profiling of disc and ring shaped components
EP00119559.3 2000-09-07

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Publication Number Publication Date
US20020038563A1 true US20020038563A1 (en) 2002-04-04

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EP (1) EP1186362B1 (en)
JP (1) JP2002102990A (en)
AT (1) ATE268234T1 (en)
DE (1) DE50006690D1 (en)
ES (1) ES2220309T3 (en)

Cited By (3)

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CN103100628A (en) * 2011-11-09 2013-05-15 江苏腾飞汽车配件有限公司 Multifunctional press machine
CN105251843A (en) * 2015-10-21 2016-01-20 沈坤龙 Novel manufacturing device for stamped cutter wheel
EP3593921A4 (en) * 2018-02-26 2020-06-17 NSK Ltd. Oscillating machining device, method for manufacturing hub unit bearing, and method for manufacturing automobile

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Publication number Priority date Publication date Assignee Title
DE102010023039A1 (en) 2010-06-08 2011-12-08 Volkswagen Ag Method for manufacturing components, particularly of annular toothed components, particularly of front gear wheels, involves deforming annular raw part between two rotating tools, where raw part material flows in contour part of one tool
CN102699255A (en) * 2012-06-29 2012-10-03 太仓奥科机械设备有限公司 Forged roll structure with fan-shaped moulds fixed with pressing block
JP5545350B2 (en) * 2012-12-14 2014-07-09 日本精工株式会社 Metal parts plastic processing equipment
CN112974709B (en) * 2021-03-09 2023-07-18 浙江索特重工科技有限公司 Quick-change die carrier special for aluminum alloy forging

Family Cites Families (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS6221439A (en) * 1985-07-18 1987-01-29 Kobe Steel Ltd Rotary forging device
US4982589A (en) * 1989-02-14 1991-01-08 Brother Kogyo Kabushiki Kaisha Swiveling type plastic working machine

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103100628A (en) * 2011-11-09 2013-05-15 江苏腾飞汽车配件有限公司 Multifunctional press machine
CN105251843A (en) * 2015-10-21 2016-01-20 沈坤龙 Novel manufacturing device for stamped cutter wheel
EP3593921A4 (en) * 2018-02-26 2020-06-17 NSK Ltd. Oscillating machining device, method for manufacturing hub unit bearing, and method for manufacturing automobile
US11732751B2 (en) 2018-02-26 2023-08-22 Nsk Ltd. Rotary machining apparatus, method of manufacturing hub unit bearing, and method of manufacturing vehicle
US11821463B2 (en) 2018-02-26 2023-11-21 Nsk Ltd. Rotary machining device, method of manufacturing hub unit bearing and method of manufacturing vehicle

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EP1186362B1 (en) 2004-06-02
EP1186362A1 (en) 2002-03-13
DE50006690D1 (en) 2004-07-08
ES2220309T3 (en) 2004-12-16
ATE268234T1 (en) 2004-06-15
JP2002102990A (en) 2002-04-09

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