This invention relates to a method to move an upper mold in relation to lower mold in a permanent mold casting machine and the permanent mold casting machine used for the method.
More particularly, this invention relates to a method to move an upper mold of the permanent mold casting machine wherein the method enables a stable opening of the upper mold of the permanent mold casting machine that manufactures casting products by pouring molten metal via a stoke from a holding furnace into horizontally split molds that consist of the upper and lower molds. The invention also relates to the permanent mold casting machine used for the method.
Conventionally there is a permanent mold casting machine that manufactures casting products by pouring the molten metal from a holding furnace via a stoke into a cavity that is formed within the horizontally split molds that consist of the upper and lower molds.
For example, the permanent mold casting machine disclosed in the publication of the Japanese Patent Application, Publication No. S63-273561, belongs to this type of machine. In this permanent mold casting machine, the upper mold is attached to the lower surface of the upper mold base. It is movable up and down and is supported by four supporting frames that are installed around a holding furnace placed on a base table, wherein both (1) contacting the upper mold with the lower mold so as to form a product cavity between the upper mold and the lower mold that is disposed on the lower mold base that is fixed to the supporting frames, and (2) lifting the upper mold so as to form the space for setting of a core and for taking out products between the upper and lower molds, are carried out by the operation of lifting and lowering the upper mold base alone.
The permanent mold casting machine of the conventional structure as described above has a long distance for an upper mold base to travel when it is lifted or lowered. So, the four supporting frames must be very high. Accordingly the supporting frames are apt to bend if they are to support a large weight. Further, when the upper mold and the lower mold are separated, a large load presses the supporting frames. As a result, the supporting frames are apt to bend when the upper mold is opened (mold opening), causing the upper mold to slide in a horizontal direction so that the casting product that is lifted with the upper mold may interfere with the lower mold and be damaged or the washing that is disposed on the lower mold may come off. These problems are particularly conspicuous when the upper and the lower molds have a number of product cavities or complex product cavities. Further, the distance of travel of the upper mold base is long such that the hydraulic cylinder and hydraulic unit that lift and lower the upper mold base should have higher capacities. They become expensive.
In view of these problems, the present invention provides a method to move an upper mold in a permanent mold casting machine and the permanent mold casting machine used for the method, wherein the contact of the upper mold with the lower mold and its separation from the lower mold are carried out by means of a mold clamping mechanism, to which the upper mold is attached, so that the upper mold can carry out the scheduled work even if the distance of travel of the lifting and lowering frame becomes longer, and wherein, further, forming the space for setting of a core and for taking out a product between the upper and lower molds is achieved by the lifting of the mold clamping mechanism, and the upper mold (see the publication of Japanese Patent Application, Publication No. 2004-255406).
However, for the method and the permanent mold casting machine of Publication No. 2004-255406 a hydraulic cylinder and hydraulic unit having higher capacities are not required because of the use of the mold clamping mechanism. But the actuator of the mold clamping mechanism is required to generate a greater power than that required to lift the mold clamping mechanism and the upper mold so that the lifting and lowering frame should not be moved by the force generated at the time of the mold opening. There still remains a problem. Namely, the method and the permanent mold casting machine used for the method must have a very high capacity, especially if the actuator is operated by an electric cylinder, thus making it difficult to increase the speed of the machine.
In view of the above problems, the present invention provides both a method to move an upper mold in a permanent mold casting machine and the permanent mold casting machine used for the method, wherein the permanent mold casting machine enables a stable opening of the upper mold.
A method to move an upper mold of a permanent mold casting machine comprises moving the upper mold in relation to a lower mold whereby molten metal held in a holding furnace is poured via a stoke into a set of molds consisting of the upper and lower molds so as to manufacture a casting product, the permanent mold casting machine comprising a mold clamping mechanism attached to a lifting and lowering frame, wherein the mold clamping mechanism is equipped with an upper mold lifting and lowering means that carries out the assembling and separation of the upper and lower molds by lifting and lowering, relative to the lower mold and the lifting and lowering frame, the upper mold being attached to the lower part of the upper mold lifting and lowering means,
Also, the permanent mold casting machine of the present invention pours via the stoke the molten metal held in the holding furnace into a set of molds consisting of the upper and lower molds so as to manufacture a casting product, the permanent mold casting machine comprising a base table; a holding furnace; four supporting frames disposed on the surface of the base table, near their respective four corners; a lower mold base placed across the upper ends of the four supporting frames; a lower mold attached to the lower mold base and placed at the fixed position of the lower mold base; upper mold lifting and lowering cylinders, attached to the two respective supporting frames of the four supporting frames, which two frames are positioned on a diagonal line of the lower mold base; a lifting and lowering frame installed across the upper ends of the rods of the upper mold lifting and lowering cylinders; two guide rods, attached to the two respective supporting frames of the four supporting frames, which two supporting frames are located on the other diagonal line that crosses the above diagonal line, two guide rods movable vertically in sliding movement along the supporting frames and fastened vertically to the lower surface of the lifting and lowering frame and having a fastening portion that fixes the lifting and lowering frame to the predetermined position; a mold clamping mechanism attached to the lifting and lowering frame, the mold clamping mechanism comprising an upper mold lifting and lowering means, to the lower surface of which the upper mold can be attached, and which performs a mold assembling of the upper and lower molds and the separation of the molds by lifting and lowering the upper mold relative to the lifting and lowering frame and to the lower mold that is fixed; and a casting product pushing-out mechanism positioned below the lower part of the lifting and lowering frame, which pushing-out mechanism pushes out and separates from the upper mold, the casting product that adheres to the upper mold when the upper mold and the lower mold are separated after the pouring is completed,
wherein the lifting and lowering frame, to which the mold clamping mechanism is attached, can be fastened to the fastening portion of the guide rod.
The permanent mold casting machine of the present invention has the mold clamping mechanism attached to the lifting and lowering frame fixed at the predetermined position by the circular fastening member of the guide rod being engaged by means of a fastening mechanism while the mold clamping mechanism is lowered and kept near the lower mold, where the upper mold is separated from the lower mold. So, the upper mold does not slide much in the horizontal direction from the predetermined position when the upper mold is separated from the lower mold. Thus a stable opening of the upper mold can be achieved.
Also, if the process of lifting and lowering or opening and closing the upper mold is carried out by an electric motor, the opening of the molds, for which great power is required, and the other scheduled work to be carried out by the upper mold, can be carried out without a use of a large servomotor. So, the permanent mold casting machine can be minimized in size and can be operated at a higher speed.
The operation of the upper mold of the permanent mold casting machine of the present invention and the permanent mold casting machine are explained based on the attached drawings.
As shown in
The lower mold 5 communicates with the holding furnace 2 through a stoke (not shown). An electric cylinder, hydraulic cylinder, or pneumatic cylinder can be used as the upper mold lifting and lowering cylinder 6, depending on the requirements.
The mold clamping mechanism 10, which has a function to have the upper mold 11 contact, and be separated from the lower mold 5, comprises an upper mold base 21 of a rectangular shape having the upper mold 11 attached to it; a pair of connecting rods 22 set upright on the upper surface of the upper mold base, and piercing the lifting and lowering frame 7 in a vertical direction; a pair of an upper mold lifting and lowering means 23 attached to the lifting and lowering frame 7, with the ends of the upper mold lifting and lowering means 23 connected to the connecting rod 22; and an electric motor 24, which is the driving force that drives the upper mold lifting and lowering means 23. The upper mold lifting and lowering means 23 can be, for example, a ball jack that comprises a worm gear and a ball screw. The electric motor 24 can be, for example, a servomotor. In the present embodiment, a pair of the upper mold lifting and lowering means 23 operate in a coordinated movement, and they are connected to the electric motor 24 by a torque coupling 25.
The casting product pushing-out mechanism 12 comprises a plurality of push-out pins 26, that pierce the upper mold 11; a support plate 27 that holds a plurality of push-out pins 26; a plurality (for example, four) of return pins (not shown) that push up the push-out pins 26 and the support plate 27 via the lower mold 5; and a plurality of push-out bars 28 that are disposed on the lower surface of the lifting and lowering frame 7 in the downward direction and that pierce the mold base 21, whereby the plurality of push-out bars 28 relatively push down the support plate 27 when the mold base 21 and the upper mold 11 are lifted by the upper mold lifting and lowering means 23.
The symbol 29 denotes a base to which the upper mold is attached. The base has a shape that secures the space for the upper mold to perform the pushing-out movement.
The fastening mechanism 13 is not limited to any particular type if it has a mechanism wherein the upper mold lifting and lowering means 23 of the mold clamping mechanism 10, which mechanism 10 is attached to the lifting and lowering frame 7, is fastened so that the upper mold lifting and lowering means 23, together with the lifting and lowering frame 7, cannot be moved, whereby the fastening mechanism 13 is engaged with the fastening portion 9a of the guide rod 9 at the position where the upper mold 11 is lowered and comes close to the lower mold (the position where the upper mold reaches its lowest point) by having the upper mold lifting and lowering cylinders 6 be contracted. In the present embodiment, as shown in
Next, the method to move the upper mold of the permanent mold casting machine of the present embodiment is explained.
Next, as shown in
Next, after the guide rod 9 reaches the lowest end, then, as shown in
Next, as shown in
Next, as shown in
After the casting product is cooled to a temperature so that it can be taken out, then, as shown in
Next, as shown in
Next, after the fastening of the guide rod 9 is released, then, as shown in
Next, as shown in
Next, as shown in
In the casting machine of the present embodiment, the upper mold contacts, and is separated from, the lower mold by the mold clamping mechanism to which the upper mold is attached. Further, the space for setting of a core and for taking out a product is formed between the upper mold and the lower mold by the upward movement of the mold clamping mechanism and the upper mold, such that the separation of the upper mold from the lower mold is carried out by the mold clamping mechanism after the mold clamping mechanism moves closer to the lower mold and after the upper mold lifting and lowering means is fastened. So, when the upper mold is separated from the lower mold, the upper mold does not slide much in the horizontal direction from its predetermined position. Thus the stable opening of the upper mold can be achieved.
Also, not only downsizing and the speeding up the operation of the machine, but also lower energy consumption, is advantageously realized, because the upper mold lifting and lowering means, which is not directly affected by the operation of opening and closing the mold, needs only have the power required for lifting and lowering.
The embodiment of the present invention is exemplary, and the present invention is not limited to the examples given in the embodiments. It should be understood that one skilled in the art can make any change or modification to the embodiment of the present invention without changing the scope of the invention. Therefore the scope of the present invention should be interpreted and determined based on the claims.
For example, in the present embodiment, the permanent mold casting machine using a set of the upper and lower molds 5, 11, which molds are to be horizontally split, was explained. But the present invention is not limited to this type of machine. For example, a permanent mold casting machine using vertical split molds consisting of a set of an upper and a lower mold, where the upper mold moves horizontally and is assembled with the lower mold, can be used. Also, in the present embodiment, the holding furnace 2 is placed on the base table 1, but it can also be placed on the floor.
Also, in the permanent mold casting machine of the present embodiments the upper mold lifting and lowering means 23 of the mold clamping mechanism 10 that is attached to the lifting and lowering frame 7 is constructed in a way that it does not move when the upper mold 11 is separated from the lower mold 5, by having the circular fastening member 9a, which is disposed at the lower end of the guide rod 9, engaged with the half nut 32 that is used as the fastening mechanism 13. But in the present invention any fastening portion and fastening mechanism can be used if they have the same function as that of this circular fastening member and the half nut 32 that engages with the circular fastening member. For example, as shown in
In the present embodiment, pouring the molten metal from the holding furnace 2 into the cavity that is formed between the upper and lower molds is carried out by the molten metal, which is being pressurized, that is within the holding furnace 2. But the method of pouring the molten metal into the cavity is not limited to this method. For example, the molten metal can be poured by having the cavity formed between the upper and the lower molds depressurized.
Number | Date | Country | Kind |
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2007-102025 | Apr 2007 | JP | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/JP2008/056108 | 3/28/2008 | WO | 00 | 10/8/2009 |
Publishing Document | Publishing Date | Country | Kind |
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WO2008/126704 | 10/23/2008 | WO | A |
Number | Name | Date | Kind |
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4304540 | Hammon | Dec 1981 | A |
Number | Date | Country |
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5-49330 | Jun 1993 | JP |
2004-90427 | Mar 2004 | JP |
2004-255406 | Sep 2004 | JP |
2005-161333 | Jun 2005 | JP |
Number | Date | Country | |
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20100051224 A1 | Mar 2010 | US |