MANUFACTURING APPARATUS FOR METAL MOLDED BODY
There is provided a manufacturing apparatus for a metal molded body. The manufacturing apparatus includes: a die having an elongated shape in plan view; and a plurality of pairs of thrust units disposed along a wall surface with the die disposed therebetween from both sides of the die, wherein the pairs of thrust units have electromagnetic coils that generate reverse traveling magnetic fields, and the pairs of thrust units arranged in a longitudinal direction are set so as to generate the reverse traveling magnetic fields for each series composed of a single thrust unit or a plurality of the thrust units.
The present invention relates to a manufacturing apparatus for a metal molded body. More specifically, the present invention relates to an apparatus for suppressing growth of a metal crystal by electromagnetically stirring melted metal such as aluminum alloy, cooling the melted metal while discharging residual gas as a source of a mold cavity, and producing a tough metal molded body.
Description of Related ArtDescription will be made by taking an example of aluminum as metal. In order to produce a precise aluminum material, it is essential that aluminum as a material has a fine crystal structure, and does not have defects such as a mold cavity therein. In order to produce such a material, molten aluminum is transferred to a die of a stirrer (manufacturing apparatus for a metal molded body), and growth of a crystal structure is prevented by stirring and cooling the molten aluminum in the die, so that a dense material is produced. Mechanical force is sometimes used as stirring force, but an electromagnetic force method capable of performing stirring in a non-contact manner is preferable in consideration of abrasion and the like of a stirring rod.
In order to perform stirring by electromagnetic force, a large number of coils are arranged along a wall surface (indicating an inner wall surface) of the die, a magnetic field which travels along the wall surface by a group of these coils is formed. An induced current is generated in the molten aluminum by the traveling magnetic field, electromagnetic force (Lorentz force) is generated by the current and the changing magnetic field, and the molten metal moves along the wall surface. Then, the movement of the molten metal along the wall surface reaches the center, so that stirring as a whole proceeds. This stirring work is continued until the metal is solidified. There are a case where the solidified metal is used as a final molded body with no change, and a case where the solidified metal is transposed to a press forming die to be pressurized and formed. The aluminum material thus completed has strong strength, and has less defects such as a mold cavity. Therefore, such an aluminum material is reliable as a part material.
In general, in an aluminum rabble furnace, a molten substance is stirred in a cylindrical melting pot, as described in JP 5352236 B1, JP 2009-74103 A, and JP 2007-144501 A. Therefore, the electromagnetic stirring apparatus has a cylindrical shape, similarly to a motor stator. However, for example, in a case where an elongated structure is made of aluminum, the shape of a stirring die is elongated. In the cylindrical rabble furnace, the volume of the furnace becomes huge, and huge excitation force is required, which is irrational. Therefore, a linear type stirring apparatus described in JP 2006-289448 A is known.
As a structure of a thrust section of a linear type stirring apparatus, JP 2006-289476 A, “Electromagnetic Coil Designed by Magneto-Hydro-Dynamic Simulation”, shinnittetsu giho vol. 379, and “Development of a Simulation Model for Electromagnetic Stirring in Melting Furnace, Furukawa-sky Review” No. 3, 2007” are known.
SUMMARY OF THE INVENTION Problem to be Solved by the InventionA vehicle body structure and the like are generally thin and long. In addition, such structures are often bent. Accordingly, in the circular stirring apparatus, as described above, the furnace volume is large, and excitation force (AT) for operation becomes extremely strong, and therefore handling is difficult. Therefore, such a linear type stirring apparatus described in JP 2006-289448 A, and JP 2006-289476 A, related to a continuous casting apparatus is applied. However, the linear type stirring apparatus has an elongated structure, and has a long acceleration distance (refer to
In order to suppress such a run-over phenomenon, when excitation force is reduced, traveling becomes moderate, and the run-over is suppressed. On the other hand, stirring efficiency is lowered, and a metal molded body formed of fine crystals cannot be efficiently manufactured. The present invention solves such a problem, and an object of the present invention is to provide a manufacturing apparatus for a metal molded body capable of performing efficient stirring by using an elongated die, and suppressing run-on or run-over of molten metal to a die wall surface.
Means to Solve the ProblemA manufacturing apparatus for a metal molded body of the present invention includes: a die having an elongated shape in plan view; and a plurality of pairs of thrust units disposed along a wall surface with the die disposed therebetween from both sides of the die, wherein the pairs of thrust units have electromagnetic coils that generate reverse traveling magnetic fields with each other and the thrust units arranged in a longitudinal direction are set so as to generate reverse traveling magnetic fields for each single thrust unit or each series composed of a plurality of the thrust units.
Such a manufacturing apparatus for a metal molded body may include a control circuit that switches the traveling magnetic fields of the electromagnetic coils such that the thrust units arranged in the longitudinal direction generate the reverse traveling magnetic fields for each desired number of the thrust units. Additionally, a whole or a part of the die may be curved in plan view. Furthermore, the manufacturing apparatus for a metal molded body preferably includes a thrust unit that causes an obliquely vertical traveling magnetic field, in addition to the thrust unit that causes a horizontal traveling magnetic field.
Effect of the InventionIn the manufacturing apparatus for a metal molded body of the present invention, a partial circulation flow of molten metal can be generated in the die by the traveling magnetic fields of the series composed of a pair of or a plurality of pairs of the thrust units disposed along the wall surface with the die disposed therebetween. That is, a flow in one direction is generated by the single or the plurality of thrust units disposed along one wall surface, and a flow in the other direction is generated by the single or the plurality of thrust units disposed along the other wall surface. Then, in an end of each series, a flow is generated in the die crossing direction. Therefore, a flow that circulates for each thrust unit is generated. The traveling direction of the magnetic field of a certain series of the thrust units, and the traveling direction of the magnetic field in the other series of the thrust units adjacent to the certain series of the thrust units are reversed from each other, and therefore the directions of the circulation flows are reversed. For example, when a clockwise circulation flow is generated in the series of the pair of thrust units, a counterclockwise circulation flow is generated in the other series of pair of thrust units in the adjacent to the series of the pair of thrust units.
Therefore, in each of the ends of the series of the thrust units, the flow along the wall surface is divided, and a node is formed in the flow. Therefore, an accelerated flow reduces the speed at a portion of the node or joint, and migration energy is converted into stirring energy. Therefore, running on the wall surface and running over the wall surface are suppressed. Additionally, at the portion of the node, the molten metal flowing from one of both sides collides with the molten metal flowing from the other side, or is divided, and therefore the molten metal is more efficiently stirred.
In a case where such a manufacturing apparatus for a metal molded body includes the control circuit that switches the directions of the traveling magnetic fields of the electromagnetic coils such that the thrust units arranged in the longitudinal direction generate the reverse traveling magnetic fields for each desired number of the thrust units, suitable stirring action and flow rate can be selected in accordance with the kind of metal. In a case where the die is curved in plan view, the curved metal molded body can be efficiently produced, and suppression of the above run-on and run-over can be attained similarly to the above.
In a case where the manufacturing apparatus includes the thrust unit that causes the obliquely vertical traveling magnetic field, in addition to the thrust unit that causes the horizontal traveling magnetic field, molten metal obliquely flows, and therefore a laminar flow commutates, and can be more efficiently stirred, and crystal grains can be made fine.
A manufacturing apparatus (electromagnetic stirring apparatus) 10 for a metal molded body illustrated in
The die 11 has a substantially U-shaped cross-section including a bottom plate 16, and side walls 17 rising from both ends of the bottom plate, as illustrated in
The size and the shape of the die 11 depend on the size and the shape of a member to be molded. As illustrated in
Similarly, a V-phase coil 14v passes through a third slot 22c and a sixth slot 22f to be wound around three teeth between the third slot and the sixth slot. A W-phase coil 14w passes through a second slot 22b and a fifth slot 22e to be wound around three teeth between the second slot and the fifth slot. These three kinds of coils 14u, 14v, 14w are overlapped to be intersect with each other on the lateral side of the core 13, as illustrated in
When such thrust units are disposed on both side of a pot, as illustrated in
Therefore, the directions of the circulating vortexes are reverse for each set of the adjacent units, and therefore in the ends of the thrust units, a flow along the wall surface is divided, so that nodes 24a, 24b are formed in the flow. Therefore, an accelerated flow reduces the speed at portions of the node 24a and node 24b, and migration energy is converted into stirring energy. Therefore, also when molten metal flows into the arc shapes of the ends, or also when the side walls 17 are curved as illustrated in
In the embodiment, the thrust units are arranged in parallel to the inner side walls of the die (means that a void is uniform), a vortex generates horizontally. However, for example, as illustrated in
Such skew can be formed by obliquely machining the slits 23, when electromagnetic steel plates are stuck to perform machining on the slots 22 by wire cutting. The slots 22 are filled with the coils (coil conductor) 14, but are omitted in
In the embodiment, the advancing direction of the magnetic field is reversed for each thrust unit 12, and the direction of vortexes Q1, Q2 of molten metal are reversed for each pair of the thrust units 12 as illustrate in
Furthermore, a control circuit that switches, for each thrust unit, the direction of a current that flows into electromagnetic coils of the thrust unit may be provided, and the direction of the traveling magnetic field may be changed for every arbitrary n thrust units such as every single thrust unit, and every two thrust units, and the directions of vortexes may be able to be reversed. In such a manufacturing apparatus for a metal molded body capable of changing wiring of the coils of the thrust units, suitable stirring action and vortex speed can be selected in accordance with the kind of metal, and a metal molded body can be efficiently manufactured.
Claims
1. A manufacturing apparatus for a metal molded body, the manufacturing apparatus comprising:
- a die having an elongated shape in plan view; and
- a plurality of pairs of thrust units disposed along a wall surface with the die disposed therebetween from both sides of the die,
- wherein
- the pairs of thrust units have electromagnetic coils that generate reverse traveling magnetic fields, and the thrust units arranged in a longitudinal direction are set so as to generate reverse traveling magnetic fields for each single thrust unit or each series composed of a plurality of the thrust units.
2. The manufacturing apparatus for a metal molded body according to claim 1, comprising
- a control circuit that switches directions of traveling magnetic fields of the electromagnetic coils such that the thrust units arranged in the longitudinal direction generate reverse traveling magnetic fields for each desired number of the thrust units.
3. The manufacturing apparatus for a metal molded body according to claim 1, wherein a whole or a part of the die is curved in plan view.
4. The manufacturing apparatus for a metal molded body according to claim 2, wherein a whole or a part of the die is curved in plan view.
5. The manufacturing apparatus for a metal molded body according to 1, further comprising
- a thrust unit that causes an obliquely vertical traveling magnetic field, in addition to the thrust unit that causes a horizontal traveling magnetic field.
6. The manufacturing apparatus for a metal molded body according to 2, further comprising
- a thrust unit that causes an obliquely vertical traveling magnetic field, in addition to the thrust unit that causes a horizontal traveling magnetic field.
7. The manufacturing apparatus for a metal molded body according to 3, further comprising
- a thrust unit that causes an obliquely vertical traveling magnetic field, in addition to the thrust unit that causes a horizontal traveling magnetic field.
8. The manufacturing apparatus for a metal molded body according to 4, further comprising
- a thrust unit that causes an obliquely vertical traveling magnetic field, in addition to the thrust unit that causes a horizontal traveling magnetic field.
Type: Application
Filed: Jul 28, 2017
Publication Date: Feb 1, 2018
Inventors: Masaharu MURAMATSU (Kanagawa), Shogo SHIBASAKI (Kanagawa), Masataka YAHARA (Kanagawa)
Application Number: 15/663,008