[Field of Invention]
[0001] The present invention relates to a sand-introducing-type sand molding machine that
produces a sand mold by introducing molding sand into a molding flask or a molding
space and by filling the space with it by using compressed air.
[Background of the Invention]
[0002] There has been a blowing-type sand molding machine as one of this kind of machine.
It generally comprises a blow head, a plurality of adjusting means for adjusting the
pressure and flow of compressed air, wherein outlets of the means communicate with
the blow head in parallel, a source of the compressed air that communicates with the
inlets of the means, pressure-detecting means for detecting the pressure inside the
blow head, and a controller that controls the operations of the adjusting means and
the pressure-detecting means that is electrically connected to them. The molding machine
supplies compressed air into the blow head to let the molding sand in the blow head
move into a molding flask or a molding space and fills it with the sand, and then
makes a sand mold by compressing the molding sand that has been filled (see Japanese
Patent Laid-open Publication No.
H06-277800).
[0003] The conventional blowing-type sand molding machine cannot adequately control the
pressure inside the blow head so as to have it correspond to the pattern shape, because
the supplied compressed air changes the pressure of its inside in a stepwise manner
or slowly, as in Fig. 3. Accordingly, it does not fill enough molding sand into the
molding flask, etc., or it wastes compressed air.
[0004] The purpose of the present invention is to resolve these problems and to provide
a sand-introducing-type sand molding machine that can adequately control the pressure-variation
inside the sand tank to correspond to the pattern shape by supplying the compressed
air.
[Summary of the Invention]
[0005] In order to accomplish this purpose, the sand-introducing-type sand molding machine
of the present invention produces a sand mold by introducing molding sand into a molding
flask or a molding space and filling the space with it by using compressed air. It
comprises a sand tank for pressing the molding sand by the compressed air that is
equipped with compressed air supplying devices to fluidize the molding sand, a communicating
tube that communicates with the sand tank, a plurality of adjusting means for adjusting
the pressure and flow of the compressed air which leading the sand tank that are installed
in parallel, and each outlet of which is connected to the communicating tube, and
each inlet of which is connected to the source of the compressed air, an electro-pneumatic
proportional valve, of which the supply and discharge ports are respectively connected
to a source of the compressed air and to the communicating tube, a pressure-detecting
means that is provided on the sand tank for detecting the pressure inside it, and
a controller that controls the operations of the plurality of the adjusting means
and the electro-pneumatic proportional valve that is electrically connected to the
plurality of the adjusting means and the pressure-detecting means and the electro-pneumatic
proportional valve.
[0006] Compressed air supplying devices to fluidize the molding sand, is the means that
blows the compressed air to the inside of the sand tank, and the method is no object.
For example, a parting plate of the permeable partitions off dual structure, i.e.
the trunk wall of the main body of sand tank making pressure tank structure, and to
have a hollow chamber is formed, it is possible with the thing which comprised this
parting porous plate. As for this parting plate, a lot of through-holes which a mean
pore size is 10-500µm, and is smaller than the particle size of the sand particle
are provided and thickness can be comprised with the plastic board which is 5 - 20mm.
[0007] Also, even the constitution that the parting plate which does not let air, and drilled
a minute bore is possible.
[0008] Also, the sand tank has at least a function to pressurize the top surface of the
molding sand by the compressed air which the supplying devices is not put through.
[0009] Also, even the pressure force of a source of the compressed air connected to the
adjusting means and a source of the compressed air connected to the electro-pneumatic
proportion valve may be adjusted by different or same pressure. In addition, these
sources of the compressed air may be integrated into one.
[0010] The apparatus constructed as above first sets the operating conditions of the adjusting
means in the controller, and then supplies the compressed air from the adjusting means
to control the pressure inside the sand tank to cause it to be less than the appropriate
pressure needed for filling the sand so as to have it correspond to the pattern shape
in it. Then, under the control of the pressure-detecting means, it opens the plurality
of adjusting means in a stepwise manner or all at once, as well as operating the electro-pneumatic
proportional valve. In this way, it causes the pressure variation inside the sand
tank to correspond to a given ideal curve.
[0011] Here, the given ideal pressure curve is a pressure curve to realize ideal filling
density.
[0012] For example, the filling density of the upper part and the lower part of mold become
high and the central part of mold with the pattern becomes low in the ideal filling
density on a filling cavity, and a mold density is similar within the central, upper
and the lower part and mold quality is high when it is compressed afterwards.
[0013] As is evident from these descriptions, the present invention is under the control
of the pressure-detecting means, it opens the plurality of adjusting means in a stepwise
manner or all at once, as well as operating the electro-pneumatic proportional valve.
Thus it can achieve such a practical effect that the pressure variation inside the
sand tank is caused to correspond to an ideal curve so as to correspond to the pattern
shape.
[Brief Descriptions of the Drawings]
[0014]
Fig. 1 is a schematic drawing of the sand molding machine of the present invention.
Fig. 2 is a graph that shows a pressure variation inside the sand tank.
Fig. 3 is a graph that shows a pressure variation inside a conventional blow head.
Fig. 4 is a schematic drawing of the sand molding machine of the present invention.
Fig. 5 is a graph that shows an ideal pressure curve inside the sand tank.
Fig. 6 is a compressed air pressure curve supplied to sand tank 1 from VP valve 5.
Fig. 7 is a compressed air pressure curve supplied to sand tank 1 from VY valve 6.
Fig. 8 is a graph that shows a pressure curve inside the sand tank which is added
up
[Description of the Preferred Embodiment]
[0015] One embodiment of the sand-introducing-type sand molding machine of the present invention
is now explained in detail based on Figs. 1 and 2. As in Fig. 1, the molding machine
comprises a sand tank 1 for pressing the molding sand by the compressed air, which
sand tank is equipped with compressed air supplying devices to fluidize the molding
sand, a communicating tube 2 that communicates with the sand tank 1, a plurality of
VP valves 5 (flow- and pressure-control valves) as a plurality of adjusting means
for adjusting the pressure and flow of the compressed air that are installed in parallel,
and each outlet of which is connected to the communicating tube 2, and each inlet
of which is connected to the source of the compressed air 4a through an auxiliary
tube 3, VY valve (an electro-pneumatic proportional valve) 6, of which the supply
and discharge ports are respectively connected to the source of the compressed air
4b and to the communication tube 2, a pressure-detecting means 7 that is provided
on the sand tank 1 for detecting the pressure inside it, and a controller 8 that controls
the operations of a plurality of the VP valves 5 and the pressure-detecting means
7 that is electrically connected to them.
[0016] An electro-pneumatic proportional valve is an electromagnetic valve that supplies
compressed air at any pressure on instructions sent by a controller.
[0017] The apparatus constructed as above first sets the operating conditions of a plurality
of the VP valves 5 in the controller 8, and then supplies the compressed air from
the VP valves 5 to control the pressure inside the sand tank 1 to cause it to be less
than the appropriate pressure needed for filling the sand so as to have it correspond
to the pattern shape in it. Then, under the control of the pressure-detecting means
7, it opens a plurality of the VP valves 5 in a stepwise manner, as well as operating
the VY valve 6. In this way, it causes the pressure variation inside the sand tank
1 to correspond to a given ideal curve as in Fig. 2.
[0018] Using this constitution of the invention that such a given ideal pressure curves
can be pictured in, a method to realize ideal filling density is explained below.
A schematic drawing of the sand molding machine of the present invention is shown
in FIG. 4. A graph that shows an ideal pressure curve inside the sand tank is shown
in Fig. 5.
[0019] Fig. 4 is formed almost same as Fig. 1. A controller 8 that controls the operations
of the VP valves 5 and the VY valve 6 that is electrically connected to the VP valves
5 and the pressure-detecting means 7 and the VY valve 6, being constituted is different.
[0020] The sand molding machine first sets the operating conditions of a plurality of the
VP valves 5 and VY valve 6 and ideal pressure curve in the controller 8, and then
supplies the compressed air from the VP valves 5 to control the pressure inside the
sand tank 1 to cause it to be less than the appropriate pressure needed for filling
the sand so as to have it correspond to the pattern shape in it, under the control
of the pressure-detecting means 7, it opens and closes a plurality of the VP valves
5 in a stepwise manner up to the required maximum quantity, as well as operating the
VY valve 6.
[0021] As a result of above, at the time of blow-filling up, the filling density of the
sand S of the upper part and the lower part is high on a filling cavity, and central
part with the pattern becomes low.
[0022] In order to make the uniform density mold, it is necessary to obtain the ideal pressure
curve inside the sand tank (FIG. 5) in order it blows and changes the sand tank internal
pressure of filling up process, to do this filling up.
[0023] The compressed air pressure curve supplied to sand tank 1 from VP valve 5 is shown
in Fig. 6. Also, the compressed air pressure curve supplied to sand tank 1 from VY
valve 6 is shown in Fig. 7. In addition, these are synthesized, the pressure curve
in sand tank 1 is ideal as shown in Fig. 8.
[0024] The synthesized pressure force curve (FIG. 8) in a sand tank is adjusted to extremely
resemble an ideal pressure force curve (FIG. 5).
[0025] Pressure curve inside the sand tank (Fig. 8) which is synthesized is adjusted in
order quite to resemble to ideal pressure curve (Fig. 5).
[0026] As a result of this, the filling density of sand S of the upper part and the lower
part is high, and central part with the pattern becomes low, and it is with a high
quality and mold density is similar to the central part with the pattern and the lower
part on a filling cavity when it is compressed afterwards.
[0027] Note that the pressure force to an adjusting means assumes 0.1- 0.3MPa, the pressure
force to an electro-pneumatic proportional valve can be assumed 0.5MPa degree. Here,
an electro-pneumatic proportional valve can just use factory air pressure in what
can adjust for given pressure by electrical signal.
[0028] In this embodiment, the sand tank 1 has compressed air supplying devices to fluidize
the molding sand and a function to pressurize the molding sand by blowed compressed
air- But the invention is not restricted to this construction. The sand tank may be
any construction in so far as it has a function to pressurize the molding sand by
the compressed air. Furthermore, if you can obtain ideal sand filling, it is clear
for a uniform mold to be possible with the compression after that by squeeze board
B1 and B2.
[0029] Also, as for the molding sand of the present invention, the green sand which designates
the bentonite as the binder is most desirable. Also, the present invention can be
used for sand filling not only to the molding flask which is the tight molding machine
of the existence frame but also to the molding space which is the flaskless molding
machine.
1. A sand-introducing-type sand molding machine for making a sand mold by introducing
molding sand into a molding flask or a molding space and filling the space with it
by using compressed air, comprising:
a sand tank for pressing the molding sand by the compressed air that is equipped with
compressed air supplying devices to fluidize the molding sand,
a communicating tube that communicates with the sand tank,
a plurality of adjusting means for adjusting the pressure and flow of the compressed
air that are installed in parallel, and each outlet of which is connected to the communicating
tube, and each inlet of which is connected to the source of the compressed air,
a pressure-detecting means for detecting the pressure inside the sand tank that is
furnished on the sand tank, and
a controller that controls the operations of the plurality of the adjusting means
that is electrically connected to the plurality of the adjusting means and the pressure-detecting
means, characterized by
an electro-pneumatic proportional valve, of which supply and discharge ports are respectively
connected to the source of the compressed air and to the communicating tube.
2. A sand-introducing-type sand molding machine according to claim 1, wherein the controller
controls the operations of the plurality of the adjusting means and the electro-pneumatic
proportional valve and is electrically connected to the plurality of the adjusting
means and the pressure-detecting means and the electro-pneumatic proportional valve.
3. A sand-introducing-type sand molding machine according to the claim 1 or 2, wherein
the sand tank has at least a function to pressurize the top surface of the molding
sand by the compressed air which the supplying devices is not put through.
4. A sand-introducing-type sand molding machine according to the claim 1 or 2, wherein
the pressure force of a source of the compressed air connected to the adjusting means
and the electro-pneumatic proportion valve being adjusted by different pressure
5. A sand-introducing-type sand molding machine according to the claim 1 or 2, wherein
the pressure force of a source of the compressed air connected to the adjusting means
and a source of the compressed air connected to the electro-pneumatic proportion valve
being adjusted by same pressure.
6. A sand-introducing-type sand molding machine according to the claim 1 or 2, wherein
a source of the compressed air connected to the adjusting means and a source of the
compressed air connected to the electro-pneumatic proportion valve being integrated
into one.
1. Sandformmaschine vom Sandzufuhr-Typ zum Herstellen einer Sandform durch Zuführen von
Formsand in einen Formkasten oder einen Formraum und Füllen des Raums damit unter
Verwendung von Druckluft, umfassend:
einen Sandbehälter zum Pressen des Formsands durch die Druckluft, welcher mit Druckluftzufuhrvorrichtungen
ausgestattet ist, um den Formsand zu fluidisieren,
eine kommunizierende Röhre, welche mit dem Sandbehälter kommuniziert,
eine Mehrzahl von Anpassungsmitteln zum Anpassen des Drucks und des Flusses der Druckluft,
welche parallel installiert sind und bei denen ihr Auslass jeweils mit der kommunizierenden
Röhre verbunden ist und bei denen ihr Einlass jeweils mit der Quelle der Druckluft
verbunden ist,
ein Druck-Erfassungsmittel zum Erfassen des Drucks innerhalb des Sandbehälters,
welches auf dem Sandbehälter angeordnet ist, und
eine Steuereinheit, welche den Betrieb der Mehrzahl von Anpassungsmitteln steuert,
welche elektrisch mit der Mehrzahl von Anpassungsmitteln und dem Druck-Erfassungsmittel
verbunden ist, gekennzeichnet durch ein elektropneumatisches Proportionalventil, von welchem Zufuhr- und Auslassöffnungen
mit der Quelle der Druckluft bzw. mit der kommunizierenden Röhre verbunden sind.
2. Sandformmaschine vom Sandzufuhr-Typ nach Anspruch 1, wobei die Steuereinheit den Betrieb
der Mehrzahl von Anpassungsmitteln und das elektropneumatische Proportionalventil
steuert und elektrisch mit der Mehrzahl von Anpassungsmitteln und den Druck-Erfassungsmitteln
und dem elektropneumatischen Proportionalventil verbunden ist.
3. Sandformmaschine vom Sandzufuhr-Typ nach Anspruch 1 oder 2, wobei der Sandbehälter
mindestens eine Funktion aufweist zum Unter-Druck-Setzen der Oberfläche des Formsands
durch die Druckluft, welche den Zufuhrvorrichtungen nicht durchgebracht wird.
4. Sandformmaschine vom Sandzufuhr-Typ nach Anspruch 1 oder 2, wobei die Druckkraft einer
Quelle der Druckluft, welche mit den Anpassungsmitteln und dem elektropneumatischen
Proportionalventil verbunden ist, durch unterschiedlichen Druck angepasst wird.
5. Sandformmaschine vom Sandzufuhr-Typ nach Anspruch 1 oder 2, wobei die Druckkraft einer
Quelle der Druckluft, welche mit den Anpassungsmitteln verbunden ist und einer Quelle
der Druckluft, welche mit dem elektropneumatischen Proportionalventil verbunden ist,
durch denselben Druck angepasst wird.
6. Sandformmaschine vom Sandzufuhr-Typ nach Anspruch 1 oder 2, wobei eine Quelle der
Druckluft, welche mit den Anpassungsmitteln verbunden ist und eine Quelle der Druckluft,
welche mit dem elektropneumatischen Proportionalventil verbunden ist, zu einer Einheit
integriert sind.
1. Machine de moulage au sable du type à introduction de sable pour fabriquer un moule
en sable en introduisant du sable de moulage dans un châssis de moulage ou un espace
de moulage et en remplissant l'espace avec celui-ci en utilisant de l'air comprimé,
comprenant :
un réservoir de sable pour presser le sable de moulage par l'air comprimé qui est
équipé de dispositifs d'amenée d'air comprimé pour fluidiser le sable de moulage,
un tube de communication qui communique avec le réservoir de sable,
une pluralité de moyens d'ajustement pour ajuster la pression et le débit de l'air
comprimé qui sont installés en parallèle, et dont chaque sortie est connectée au tube
de communication, et dont chaque entrée est connectée à la source de l'air comprimé,
un moyen de détection de pression pour détecter la pression à l'intérieur du réservoir
de sable qui est disposé sur le réservoir de sable, et
un contrôleur qui commande les opérations de la pluralité des moyens d'ajustement
qui est électriquement connecté à la pluralité des moyens d'ajustement et au moyen
de détection de pression, caractérisée par
une vanne électropneumatique proportionnelle, dont des orifices d'admission et de
décharge sont respectivement connectés à la source de l'air comprimé et au tube de
communication.
2. Machine de moulage au sable du type à introduction de sable selon la revendication
1, dans laquelle le contrôleur commande les opérations de la pluralité des moyens
d'ajustement et de la vanne électropneumatique proportionnelle et est électriquement
connecté à la pluralité des moyens d'ajustement et au moyen de détection de pression
et à la vanne électropneumatique proportionnelle.
3. Machine de moulage au sable du type à introduction de sable selon la revendication
1 ou 2, dans laquelle le réservoir de sable a au moins une fonction de mise sous pression
de la surface supérieure du sable de moulage par l'air comprimé à travers laquelle
les dispositifs d'amenée ne passent pas.
4. Machine de moulage au sable du type à introduction de sable selon la revendication
1 ou 2, dans laquelle la force de pression d'une source de l'air comprimé connectée
aux moyens d'ajustement et à la vanne électropneumatique proportionnelle étant ajustée
par une pression différente.
5. Machine de moulage au sable du type à introduction de sable selon la revendication
1 ou 2, dans laquelle la force de pression d'une source de l'air comprimé connectée
aux moyens d'ajustement et d'une source de l'air comprimé connectée à la vanne électropneumatique
proportionnelle étant ajustée par la même pression.
6. Machine de moulage au sable du type à introduction de sable selon la revendication
1 ou 2, dans laquelle une source de l'air comprimé connectée aux moyens d'ajustement
et une source de l'air comprimé connectée à la vanne électropneumatique proportionnelle
étant intégrées en une seule.