This invention relates to a method for squeezing sand and producing a match plate. Particularly, it relates to a method for squeezing the foundry sand filled in an upper and a lower molding space defined by a match plate, an upper and a lower flask, and an upper and a lower squeeze plate. Further, it relates to the match plate and the upper and the lower flask.
The inventors of this invention have developed the following apparatus for molding a mold:
The apparatus is comprised of an upper and a lower molding space, an aeration mechanism to discharge foundry sand into the molding spaces, and a squeezing mechanism to squeeze the foundry sand,
wherein the upper and the lower molding space are defined by an upper and a lower flask each having intakes disposed at their side walls for foundry sand, a match plate disposed between the upper and the lower flask, and the squeezing mechanism having squeeze plates, which can be inserted in openings of the upper and the lower flask having no match plate. After filling the upper and the lower molding space with the foundry sand through the intakes of the upper and the lower flask by the aeration mechanism, the squeezing mechanism squeezes the foundry sand in the upper and the lower molding space by causing the upper and the lower squeeze plates to further approach each other. (See patent documents 1 and 2.)
However, the hardness and the strength near the inner surface that corresponds to the match plate, of the upper and the lower mold that are made by using the apparatus explained above, are not high enough.
Patent document 1: Japanese Patent Laid-open Publication No. H06-277800
Patent document 2: Japanese Patent Laid-open Publication No. S59-024552
The problem to be solved by the present invention is that the hardness and strength near the inner surface that corresponds to the match plate, of an upper and a lower mold that are made by using the conventional apparatus that can perform the following process, are not high enough:
The process is comprised of:
a step to define an upper and a lower molding space by an upper and a lower squeeze means, an upper and a lower flask, and a match plate,
a step to fill the molding spaces with foundry sand, and
a step to squeeze the foundry sand of the molding spaces by causing the upper and the lower squeeze plate to further approach each other.
To solve the problem, the following method is applied in this invention.
Namely, this is a method for squeezing foundry sand filled in an upper and a lower molding space defined by a match plate, an upper and a lower flask, and an upper and a lower squeeze plate, comprising:
a first squeezing step to squeeze the foundry sand in the upper and the lower molding space by causing the upper and the lower squeeze plate to further approach each other, and
a second squeezing step to squeeze the foundry sand in the upper and the lower molding space by causing the pattern portions of the match plate to move to each of the upper and the lower squeeze plate.
Further, a second method is applied in this invention to solve the problem:
Namely, a method for squeezing foundry sand, comprising:
a filling step to fill an upper and a lower molding space defined by any of the match plates, an upper and a lower flask, and an upper and a lower squeeze plate with the foundry sand, the match plate being comprised of:
a first squeezing step to squeeze the foundry sand in the upper and lower molding space by causing the upper and the lower squeeze plate to further approach each other, and
a second squeezing step to squeeze the foundry sand in the upper and the lower molding space by causing the pattern and/or the plate of the pattern portions of the match plate to move to each of the upper and the lower squeeze plate.
As explained above, this invention is composed of the following:
a process for squeezing the foundry sand filled in the upper and the lower molding space defined by a match plate, an upper and a lower flask, and an upper and a lower squeeze plate,
wherein the process is further comprised of a step to squeeze the foundry sand of the upper and the lower molding space by causing the upper and the lower squeeze plate to further approach each other, and a step to squeeze the foundry sand of the upper and the lower molding space by causing the pattern portions of the match plate to move to each of the upper and the lower squeeze plate.
Thus, since it becomes possible to further squeeze the foundry sand near the inner surface that corresponds to the match plate, of the upper and the lower flask, by causing the pattern portions of the match plate to move to each of the upper and the lower squeeze plate, it is possible to produce an upper and a lower mold having desirable hardness and strength near the inner surface of the upper and the lower flask. Namely, this invention has practical and excellent effects.
a) shows a plain view indicating an embodiment of an arrangement of compression coil springs 10, 10.
b) shows a plain view indicating another embodiment of an arrangement of the compression coil springs 10, 10.
c) shows a plain view indicating another embodiment of an arrangement of the compression coil springs 10, 10.
a) shows a cross section of an elevational view indicating a state before squeezing foundry sand in an embodiment of this invention.
b) shows a cross section of an elevational view indicating a state while squeezing foundry sand in an embodiment of this invention.
a) shows a plain view indicating an embodiment of an arrangement of compression coil springs 23,23.
b) shows a plain view indicating another embodiment of an arrangement of the compression coil springs 23, 23.
c) shows a plain view indicating another embodiment of an arrangement of the compression coil springs 23, 23.
a) shows a cross section of an elevational view indicating a state before squeezing foundry sand in an embodiment of this invention.
b) shows a cross section of an elevational view indicating a state while squeezing foundry sand in an embodiment of this invention.
The present invention, which uses an apparatus for molding an upper and a lower mold having no flask, is now explained in detail based on
The major portion of the apparatus for molding an:upper and a lower mold having no flask, which is used in this invention, is shown in
an upper and a lower flask 1, 2 each having intakes disposed at their side walls for foundry sand,
a match plate 3 that is held between the upper and the lower flask 1, 2, and which have a special mechanism,
an upper and a lower squeeze means 6, 7 having squeeze plates 4, 5, which can be inserted in openings of the upper and the lower flask 1, 2 having no match plate 3,
an upper and a lower lifting and lowering frame 12, 13 provided with the upper and the lower squeeze means 6, 7, and
cylinders 14, 14, which are mounted on the lower lifting and lowering frame 13, to press the lower flask 2 toward the match plate 3.
In this invention the apparatus for molding molds which uses the match plate can be used regardless of whether the molds have a flask.
Further, this invention can be applied to an apparatus for molding molds having not only one set of flasks, but also two sets of flasks.
The squeeze means of this invention is comprised of actuators and squeeze plates or squeeze feet. The squeeze means can individually squeeze the foundry sand. The actuators that are driven by hydraulic pressure, air pressure, and electric motors can be used as the actuators. It is preferable to use the actuators driven by the hydraulic pressure from the aspect of the magnitude of the output of the power. It is further preferable to use the actuators driven by the electric motors since they need no piping system for the hydraulic pressure.
In this invention, it is preferable to use green sand as foundry sand, which green sand uses bentonite as a binder.
Below, an embodiment for a method for squeezing foundry sand and a match plate of this invention is explained in detail based on
An expanding and contracting means 8 is disposed at the peripheral border of the pattern portion of the body 3a of the match plate as shown in
As shown in
Below, the method for molding molds by using the apparatus of embodiment 1 is explained in detail.
The foundry sand is filled in the upper and the lower molding space defined by a match plate 3, an upper and a lower flask 1, 2, and an upper and a lower squeeze plate 4, 5 as shown in
1(b). Next, the compression coil-springs 10, 10 of the expanding and contracting means 8 of the match plate 3 are compressed by pressing the lower flask 2 toward the match plate 3 by causing the cylinders 14, 14 to expand. When the compression coil-springs 10, 10 are compressed, each of the pattern portions of the match plate 3 moves relatively toward the upper and the lower squeeze plate 4, 5. Consequently, the foundry sand in the upper and the lower molding space is further squeezed. At that time, the upper and the lower lifting and lowering frame 12, 13 are fixed by tie-rods (not shown). Then, when the cylinders 14, 14 are contracted, the upper and the lower flask 1, 2 are separated by the reaction force of the compression coil-springs 10, 10 of the expanding and contracting means 8. Consequently, the molded molds made by squeezing the foundry sand are separated from the match plate 3.
Below, an embodiment using another expanding and contracting means is explained based on
Below, the method for molding molds by using the apparatus of embodiment 2 is explained in detail.
The foundry sand is filled in the upper and the lower molding space defined by a match plate 21, an upper and a lower flask 1, 2, and an upper and a lower squeeze plate 4, 5 as shown in
Below, an embodiment using another expanding and contracting means is explained based on
The second expanding and contracting means 35 is disposed at the peripheral border of the pattern portion of the match plate 21 as shown in
Below, the method for molding molds by using the apparatus of embodiment 3 is explained in detail.
The foundry sand is filled in the upper and the lower molding space defined by a match plate 21, an upper and a lower flask 30, 31, and an upper and a lower squeeze plate 4, 5 as shown in
Since the compression coil-springs of the first expanding and contracting means 32 are disposed in the upper and the lower flask 30, 31, and since the length of the coil-springs can be longer than that of the coil-springs of the second expanding and contracting means 35, it is possible to increase the force of the coil-springs. Thus, it is possible to reduce the number of the coil-springs that are needed to produce the force to support the weight of the upper and the lower flask.
In the above three embodiments, the foundry sand in the upper and the lower molding space is squeezed by the relative movement between the upper and the lower flask and the pattern portion of the match plate. However, the method for squeezing the foundry sand is not restricted to these embodiments. It is also possible to squeeze the foundry sand in the upper and the lower molding space by individually moving the pattern portions 41, 41 of the match plate 40 by any of the actuators 42, 42 as shown in
Further, in the above three embodiments, while squeezing the foundry sand in the upper and the lower molding space by causing the upper and the lower squeeze plates 4, 5 to further approach each other, it is possible to effectively and further increase the hardness and strength of the molds near the inner surfaces of the upper and the lower flask by keeping the distance constant between the upper and the lower flask.
In the above three embodiments, the methods use compression coil-springs as the expanding and contracting means. However, the expanding and contracting means is not restricted to the compression coil-springs. It is also possible to use hydraulic cylinders or gas springs as the expanding and contracting means.
This invention can be widely applied to a molding machine having a match plate, such as a molding machine producing a mold having a flask or having no flask. Further, while the foundry sand is filled or squeezed, it is possible to freely determine the position of the upper and the lower flask. For example, the upper and the lower flask can be arranged horizontally or vertically. Further, it is possible to cause the relative position of the upper and the lower flask at the time when the foundry sand is filled to differ from that when it is squeezed.
Number | Date | Country | Kind |
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2004-133547 | Apr 2004 | JP | national |
2005-119147 | Apr 2005 | JP | national |
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PCT/JP2005/007969 | 4/27/2005 | WO | 00 | 10/26/2006 |
Publishing Document | Publishing Date | Country | Kind |
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WO2005/105339 | 11/10/2005 | WO | A |
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20070227684 A1 | Oct 2007 | US |