WO2011142049A1 - Mold molding device and mold molding method - Google Patents
Mold molding device and mold molding method Download PDFInfo
- Publication number
- WO2011142049A1 WO2011142049A1 PCT/JP2010/068622 JP2010068622W WO2011142049A1 WO 2011142049 A1 WO2011142049 A1 WO 2011142049A1 JP 2010068622 W JP2010068622 W JP 2010068622W WO 2011142049 A1 WO2011142049 A1 WO 2011142049A1
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- WIPO (PCT)
- Prior art keywords
- sand
- mold
- cutter
- filling nozzle
- tank
- Prior art date
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Classifications
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B22—CASTING; POWDER METALLURGY
- B22C—FOUNDRY MOULDING
- B22C11/00—Moulding machines characterised by the relative arrangement of the parts of same
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B22—CASTING; POWDER METALLURGY
- B22C—FOUNDRY MOULDING
- B22C15/00—Moulding machines characterised by the compacting mechanism; Accessories therefor
- B22C15/23—Compacting by gas pressure or vacuum
- B22C15/24—Compacting by gas pressure or vacuum involving blowing devices in which the mould material is supplied in the form of loose particles
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B22—CASTING; POWDER METALLURGY
- B22C—FOUNDRY MOULDING
- B22C15/00—Moulding machines characterised by the compacting mechanism; Accessories therefor
- B22C15/28—Compacting by different means acting simultaneously or successively, e.g. preliminary blowing and finally pressing
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B22—CASTING; POWDER METALLURGY
- B22C—FOUNDRY MOULDING
- B22C23/00—Tools; Devices not mentioned before for moulding
Definitions
- the present invention relates to a mold making apparatus and a mold making method for making a mold by squeezing mold sand filled in a frame member such as a cast frame.
- Patent Document 1 As a mold making apparatus and a mold making method for making a mold, there is one described in Patent Document 1, for example, which employs an aeration sand filling method.
- Such an apparatus and method is advantageous in that sand filling and compression can be performed at the same position, but in such an apparatus and method, the higher the pressure when compressing the sand in the casting frame, The sand in the sand filling nozzle that supplies sand into the casting frame is also compressed.
- the sand compressed in the nozzle is filled as a lump of sand in the casting frame at the time of the next molding, and there is a problem that the mold may be defective due to poor filling of the sand.
- Patent Document 1 Japanese Patent No. 3802358
- An object of the present invention is to provide a mold making apparatus and a mold making method that can prevent a mold from being defective due to a sand lump compressed at an outlet portion in a sand filling nozzle and obtain a good mold. .
- the mold making apparatus has a filter provided with a hole on which air is ejected on the inner surface, and is filled with mold sand in a molding space formed by at least a model plate and a frame member.
- a sand tank that is integrally provided at a lower end of the sand tank, and a sand filling nozzle that guides mold sand in the sand tank to the molding space; and a sand filling nozzle that is provided at a lower end of the sand tank and And a squeeze means for compressing the mold sand filled in the molding space, and after the compression by the squeeze means, a gap is formed between the sand tank and the compressed mold sand. And discharging the air from the filter to discharge sand in the vicinity of the outlet in the sand filling nozzle.
- the mold molding method according to the present invention is a sand filling that is integrally provided at the lower end of a sand tank having a filter provided with a hole on the inner surface in a molding space formed by at least a model plate and a frame member.
- the mold sand in the sand tank is filled while blowing air from the filter through the nozzle for use, and is provided at the lower end of the sand tank and by squeeze means provided adjacent to the sand filling nozzle,
- the mold sand filled in the molding space is compressed, a gap is provided between the sand tank and the compressed mold sand, and air is blown out from the filter, whereby an outlet in the sand filling nozzle is provided. Drain nearby sand.
- the present invention after performing compression by squeeze means, by discharging air from the filter provided on the inner surface of the sand tank and discharging the compressed sand mass near the outlet in the sand filling nozzle, It is possible to obtain a good mold by preventing the defect.
- FIG. 1 It is a longitudinal cross-sectional view which shows the state (in-situ state) before the start of the molding operation of the mold making apparatus to which the present invention is applied. It is a longitudinal cross-sectional view which shows the state which formed the molding space of the mold making apparatus and filled this space with sand. It is a longitudinal cross-sectional view which shows the squeeze state of a mold making apparatus. It is a longitudinal cross-sectional view which shows the state which returns to the original position after mold drawing of a mold making apparatus.
- the main part sectional view showing that the compressed sand lump is discharged near the outlet in the sand filling nozzle by blowing air from the filter provided on the inner surface of the sand tank after squeezing. is there.
- FIG. 6 is a cross-sectional view of an essential part showing that in the mold making apparatus, the mold is further removed from the state shown in FIG. 5 and then the operation of returning to the original position is performed.
- path of the nozzle for sand filling which comprises a mold making apparatus.
- (A) is an enlarged cross-sectional view of the outlet passage of the sand filling nozzle in the example shown in FIGS.
- (B) is a figure which shows the modification of the nozzle for sand filling, and is an expanded sectional view of the exit channel
- FIG. 11 is an AA arrow view of FIG.
- FIG. 10 showing a state corresponding to FIG. 10 of the sand cutter device.
- FIG. 10 is a BB arrow view of FIG. 9 showing a state corresponding to FIG. 9 of the sand cutter device. It is a figure which shows an example of the attachment position to the mold making apparatus of a sand cutter apparatus.
- the frame member means a cast frame when the mold to be molded has a cast frame, and means a mold frame when there is no cast frame.
- the mold to be molded includes a case with a cast frame and a case without a cast frame extracted from the mold after the mold sand is compression-molded in the mold.
- various squeezing means as the squeeze means, in which the part for compressing the molding sand is integrated, the part divided into a plurality of parts, and the flexible film on which the pressure fluid acts on the back surface There are some that have increased flexibility.
- the molding space may be filled with mold sand, and in this way, the compression conditions can be easily determined.
- FIGS. 1 to FIG. 4 are diagrams showing states of the “original position”, “aeration and sand filling”, “squeeze”, and “operation to return to the original position” of the mold making apparatus 1.
- 5 and 6 are cross-sectional views of the main part for explaining in detail each state between the state of FIG. 3 and the state of FIG.
- the mold making apparatus 1 has a filter 2 provided with an air ejection hole for ejecting air on its inner surface, and at least a model plate (pattern plate) 3 and a casting frame as a frame member.
- a segment type squeeze foot 9 provided as a squeeze means provided at the lower end of the sand tank 7 and adjacent to the sand filling nozzle 8 and compressing the mold sand 6 filled in the molding space 5.
- the mold making apparatus 1 includes a mold making base 11.
- a plurality of frame set cylinders 12 are provided on the molding base 11 so as to rise upward.
- An elevating support frame 10 is installed between the ends of the piston rod 12 a of the frame set cylinder 12. That is, the frame set cylinder 12 is erected with the molding base 11 side as the contracted end and facing upward.
- a central portion of the pattern exchange device 13 is rotatably supported in a horizontal plane below one of the plurality of frame setting cylinders 12.
- the pattern carrier 14 on which the above-described model plate 3 is placed is set at both ends of the pattern exchanging device 13 in a state of being lifted by about 5 mm by a spring (not shown). It is made to carry in and out.
- the above-described sand tank 7 is suspended from the lifting support frame 10.
- a sand inlet 16 that is opened and closed by a slide gate 15 is provided at the upper end of the sand tank.
- the air ejection filter 2 is provided on substantially the entire inner surface of the sand tank 7.
- the filter 2 is a porous body provided with a large number of pores of about 10 ⁇ m to 80 ⁇ m over the entire surface, and is made of, for example, sintered ultra high molecular weight polyethylene.
- a hollow chamber 17 is formed between the filter 2 and the inner surface of the sand tank 7, and an external air supply (not shown) communicated with the hollow chamber 17 via an upper air passage 18 and a lower air passage 19.
- Low pressure air of 0.05 MPa to 0.18 MPa is supplied from the section.
- the sand tank 7 configured as described above causes the molding sand 6 to float and fluidize when low pressure air is ejected from a plurality of holes provided in the filter 2, and the molding sand 6 enters the molding space 5 while fluidizing and floating. Fill.
- a squeeze foot 9 is provided at the lower end of the sand tank 7, and a sand filling nozzle 8 is disposed outside the squeeze foot 9.
- the sand filling nozzle 8 is formed, for example, as a nozzle bifurcated from the main body portion of the sand tank 7 toward the lower side.
- the sand filling nozzle constituting the mold making apparatus 1 is not limited to this, and may be a trifurcated shape or other shapes.
- the squeeze foot 9 and the sand filling nozzle 8 form a molding space together with the model plate 3, the cast frame 4, and the later-described fill frame 21.
- a filling frame 21 is provided below the sand tank 7 and outside the sand filling nozzle 8 and the squeeze foot 9 so as to be movable up and down.
- the filling frame 21 has a vent hole that leads to an exhaust control chamber (not shown).
- the filling frame 21 is connected to a filling frame cylinder 22 provided downward on the lifting support frame 10 and is moved up and down by the filling frame cylinder 22.
- the elevating support frame 10 is provided with a frame 23 provided on the lower side located outside the sand tank 7, and a loading / unloading conveyor 24 for loading / unloading the casting frame 4 through the frame 23 is suspended.
- the carry-in / out conveyor 24 is constituted by, for example, a roller conveyor.
- the mold making apparatus 1 as described above is compressed between squeeze means and then, as will be described later, between the sand tank 7 and the squeezed (compressed) mold sand 6 in the molding space, as shown in FIG.
- the sand in the vicinity of the outlet in the sand filling nozzle 8 is discharged.
- the clearance between the sand tank 7 and the compressed mold sand 6x (hereinafter, this compressed mold sand 6x is also referred to as “mold 6x”) is specifically defined by the filling frame 21. This is performed by raising the sand tank 7 by the frame set cylinder 12 while holding the casting frame 4 downward.
- the sand lump 6y compressed in the vicinity of the outlet in the sand filling nozzle 8 can be discharged at the time of compression, thereby preventing the mold from being defective, and the next filling is good, that is, the molding failure. Realize that there is no mold.
- air is jetted from the upper side air passage 18 and the lower side air passage 19 to the entire surface of the filter 2, but air is jetted only from the lower filter 2 through the lower side air passage 19. May be.
- movement which discharges the sand of the exit vicinity in the nozzle 8 for sand filling by ejecting air from the filter 2 after this compression is performed before mold release.
- the sand lump can be discharged in a stable state, the sand lump 6y can be discharged and the sand to be discharged can be minimized, and the sand can be prevented from being discharged excessively. That is, a method of discharging the sand lump during the die-cutting as shown in FIG. 6 is also conceivable, but the sand tank 7 also rises at a corresponding speed during the die-cutting, and sand can be discharged too much due to this effect. However, it is possible to discharge only the minimum necessary sand lump by performing it at the timing before the above-described die cutting.
- the outlet passage 8a in the sand filling nozzle 8 is formed in the sand tank bottom 7a so that the passage sectional area increases at least in the vicinity of the outlet.
- the wall section 8b having a tapered cross section formed so as to increase the cross-sectional area of the path, and the path cut off above the wall section 8b (inner side of the tank).
- the increase and decrease indicate that the cross-sectional area increases and decreases toward the exit.
- the sand tank bottom 7 a is a squeeze means configured in a board shape that can accommodate, for example, the squeeze foot 9, and can function as a squeeze means for squeezing the mold sand 6 together with the squeeze foot 9.
- the exit passage of the sand filling nozzle constituting the mold making apparatus 1 is not limited to this.
- a wall section 31b having a tapered cross section formed so as to increase the cross-sectional area of the passage, and 31c having the same configuration as the above-described wall section 8c. It may be the exit passage 31a as it has.
- the inner wall surface is perpendicular to the horizontal plane, and only the outer wall surface is inclined.
- a so-called straight wall portion 32b whose passage sectional area does not change and a wall portion 32c having the same configuration as the above-described wall portion 8c are provided. It may be an exit passage 32a. Furthermore, as shown in FIG. 7D, the outlet passage 33a may be formed of only a wall section 33b having a tapered cross section formed so that the passage sectional area decreases toward the outlet side.
- the tapered wall portion 8c in the direction narrowing toward the lower side and the tapered wall portion 8b in the direction expanding toward the lower side described with reference to FIGS. 1 to 6 and FIG. 7A. are provided continuously and the outlet passage 8a is formed, so that it is possible to prevent the sand lump from being discharged and the sand from being discharged excessively, as compared with the case where the nozzle shape is also narrowed downward. .
- the sand filling nozzle 8 is also characterized in that the sand lump 6y in the vicinity of the outlet is discharged so as to be in a state of being stacked linearly along each.
- the sand including the sand lump 6y discharged from the sand filling nozzle 8 is stacked in the same shape as the cross-sectional shape in the horizontal plane of the outlet portion in the sand filling nozzle 8, and is parallel to each other. It is in a state filled with.
- the sand sand 6 x compressed by the casting frame 4 is a rectangle and the sand filling nozzle 8 is provided along a pair of long sides is shown as an example. However, it may be configured along a pair of short sides, and the casting frame may be square.
- the sand near the outlet in the sand filling nozzle is discharged onto the surface (back surface) opposite to the surface of the compressed mold sand 6x in contact with the model plate 3, so that the casting frame 4 is carried out. When this is done, the unnecessary sand lump 6y can be discharged, which is efficient.
- the mold making method the aeration sand is filled as shown in FIG. 2 from the original position shown in FIG. 1, compressed as shown in FIG. 3, and the mold is removed as shown in FIG. This will be described in detail below.
- the state of FIG. 1 is a state in which the mold sand 6 is put into the sand tank 7 and the empty casting frame 4 is carried into the carry-in / out conveyor 24.
- the pattern carrier 14 is set on the pattern changer 13 in a state where it is lifted about several mm by a spring (not shown), and there is a gap between the pattern carrier 14 and the molding substrate 11.
- the entire segment-type squeeze foot 9 forms unevenness relative to the unevenness of the lower model plate 3.
- the pattern carrier 14 is crimped
- the slide gate 15 is operated to close the sand inlet 16, and then the filling frame cylinder 22 is extended to lower the filling frame 21 and press and adhere to the upper surface of the casting frame 4, and the frame setting cylinder 12. Is contracted to bring the casting frame 4 into close contact with the outer periphery of the model plate 3 to form the molding space 5.
- the frame set cylinder 12 is further contracted to lower the elevating support frame 10 and the members supported by the elevating support frame 10 while contracting the fill frame cylinder 22, and the entire lower surface of the segment type squeeze foot 9 is flattened.
- the sand mold 6 is compressed until When such a squeeze operation is performed, the state shown in FIG. 3 is obtained.
- the state shown in FIGS. 5 and 6 is passed before the squeeze state shown in FIG. 3 is shifted to the die-out state shown in FIG. That is, after the squeeze is completed, the sand tank 7 is raised in a state where the casting frame 4 is held down by the fill frame 21, and a filter is formed while providing a gap between the sand tank 7 and the squeezed mold sand 6 x.
- the sand lump 6y near the outlet in the sand filling nozzle 8 is discharged as shown in FIG.
- the frame setting cylinder 12 is extended while the filling frame cylinder 22 is extended.
- the die is cut as shown in FIG. While raising the sand tank 7, the casting frame 4 is lifted by the carry-in / out conveyor 24, whereby the mold sand 6 x compressed in the casting frame 4 is removed from the model plate 3. Then, as shown in FIG. 4, the sand tank 7 and the carry-in / out conveyor 24 are raised so as to return to the original position in FIG. An operation in which each member moves up and down so as to return to the original position is referred to as an original position return operation. When the original position returning operation is completed, the slide gate 15 is operated to open the sand inlet 16, and the sand in the sand tank 7 is replenished.
- the mold-molded casting frame 4 is carried out in the horizontal direction via the carry-in / out conveyor 24, the empty casting frame 4 is carried in, and the pattern changer 13 is rotated 180 degrees to bring the model plate 3 to the outside. It is replaced with a certain one and the above operation is repeated.
- the mold molding method using the mold molding apparatus 1 has a filter 2 provided with an air ejection hole for ejecting air in the molding space 5 formed by at least the model plate 3 and the casting frame 4 on the inner surface.
- the molding sand 6 in the sand tank 7 is filled while blowing air from the filter 2 through a sand filling nozzle 8 provided integrally with the lower end of the sand tank 7, and is provided at the lower end of the sand tank 7.
- the mold sand 6 filled in the molding space 5 is compressed by a squeeze foot 9 as a squeeze means provided adjacent to the sand filling nozzle 8 and the sand tank 7 and the compressed mold sand in the molding space 5 are compressed.
- a feature is that the sand in the vicinity of the outlet in the sand filling nozzle 8 is discharged by ejecting air from the filter 2 and such a feature. More, by discharging the Sunakatamari compressed in the vicinity of the outlet of the sand filling nozzle, to prevent failure of the mold, to realize that to obtain good molds.
- the outlet passage 8a of the sand filling nozzle 8 constituting the mold making apparatus 1 is formed so that the passage cross-sectional area increases at least in the vicinity of the outlet, that is, FIG.
- the wall portions 8b, 31b, etc. shown in FIG. 5 the sand lump compressed near the outlet in the sand filling nozzle can be easily discharged. To achieve a good mold.
- the sand in the sand tank 7 is stabilized by discharging the air from the filter 2 and discharging the compressed sand mass near the outlet in the sand filling nozzle. Since the sand lump can be discharged in the state of being discharged, the sand lump 6y can be discharged in a state in which the sand to be discharged is minimized, and it is possible to prevent the sand from being discharged excessively.
- the compressed mold sand that is formed in a square or rectangular shape in a horizontal plane is linearly stacked along each of a pair of opposing sides of the compressed mold sand. Since the sand in the vicinity of the outlet in the sand filling nozzle is discharged so as to be in a state of being formed, it is possible to discharge the sand lump efficiently and appropriately.
- the mold making apparatus 1 and the mold making method using the mold making apparatus 1 perform the compression by the squeeze means, and then blow out air from the filter 2 provided on the inner surface of the sand tank 7, whereby the sand filling nozzle 8.
- the sand filling nozzle 8 By discharging the compressed sand mass in the vicinity of the inner outlet, it is possible to prevent mold defects and obtain a good mold.
- the apparatus and method can eliminate the insufficient filling of the mold by including a step of discharging the sand in the nozzle compressed after completion of the squeeze by short-time aeration.
- the apparatus and the method consume less air, and the process can be performed in a short time.
- the compressed sand is discharged to the back of the mold and the sand is not scattered around.
- the sand other than the compressed sand lump is not discharged from the sand tank 7 as much as possible.
- the apparatus and method adopts the aeration sand filling method, as well as the apparatus described in Japanese Patent No. 3802358, etc., and obtains the advantage of performing sand filling and compression at the same position, and such a method. It is also possible to obtain a good mold by preventing the sand lump in the nozzle from causing the next defective sand filling when the pressure during compression, which is a conventional problem in the system, becomes high. It is.
- a sand cutter device 50 described here is fixed to the mold making apparatus 1 as shown in FIG. 13, for example, and is carried by a conveying means (carry-in / out conveyor 24) provided in the mold making apparatus 6x.
- the sand lump 6y is scraped off.
- the mold 6x conveyed by the conveying means is formed by squeezing the mold sand 6 in the casting frame 4 as described in the mold making apparatus 1 described above.
- An example of smoothing the back surface of the framed mold will be described.
- the sand cutter device 50 can also be applied to a mold without a casting frame.
- the sand cutter device 50 includes a fixed bracket 51 as a fixed portion, a rotating bracket 52 as a movable portion, a cutter member 53, an adjustment roller 54, a scraper member 55, A stopper member 56 and urging means 57 are provided.
- the fixed bracket 51 is attached to a frame 60 that is stretched in a direction orthogonal to the conveying direction of the casting frame (gold frame) 4.
- the frame 60 is a member fixed integrally with the frame member of the mold making apparatus 1 described above.
- the fixed bracket 51 and the sand cutter device 50 are mounted on the frame 60, and are thus arranged above the carry-in / out conveyor 24 that is a conveying means for conveying the mold 4.
- Rotating bracket 52 is a member that can move in the direction of approaching and separating from the mold.
- the rotating bracket 52 is joined to the fixing bracket 51 which is a fixing portion by a pin 58 and can be rotated with respect to the fixing bracket 51.
- the rotation bracket 52 is urged by the urging means 57 in the direction in which the cutter member 53 provided at the rotation tip 52a of the rotation bracket 52 approaches the mold.
- the biasing means 57 is made of a spring, for example, and one end thereof is attached to the fixed bracket 51.
- the other end of the urging means 57 is attached to an attachment end 52c opposite to the rotation tip 52a across the joint 52b of the rotation bracket 52, and the cutter member 53 is pulled by a force pulling the attachment end 52c.
- the attached rotating tip 52a is urged in the direction approaching the mold.
- the cutter member 53 is attached to the rotating tip 52a of the rotating bracket 52 as described above.
- the cutter member 53 is plate-shaped, and is arranged so that the thickness direction is perpendicular to the conveyance direction of the framed mold.
- the cutter member 53 arranges the plate-like members as described above, and collides the sand lump 6y that has been compressed and hardened as shown in FIG.
- the cutter member is not limited to a plate shape, and the tip in the collision direction may be tapered.
- the cutter member may be configured such that an angle member (angle steel) is combined with the collision tip of the plate-like member, and the sand block is broken at the corner of the angle member.
- the cutter member 53 is linearly stacked on a mold 6x having a square or rectangular shape in a horizontal plane as shown in FIG. 8, for example, along each of a pair of opposing sides of the mold 6x. It is arranged so as to correspond to each of the sand masses 6y in the state of being damaged. Specifically, the cutter member 53 is provided in a pair corresponding to the sand lump 6y and has a width narrower than the width of the casting frame 4 (the same width as the center position of the sand lump 6y) and is arranged at two locations. Has been.
- the adjusting roller 54 is provided on the rotating bracket 52 and adjusts the height position of the cutter member 53 with respect to the mold.
- the adjustment roller 54 positions the end surface of the cutter member 53 on the back surface of the mold in accordance with the protrusion amount of the mold 6x with respect to the casting frame 4 that is a frame member of the frame-equipped mold.
- the adjustment roller 54 is disposed such that the lowermost portion thereof is the same as the end surface of the cutter member 53.
- the adjustment roller 54 adjusts the amount of rotation of the rotation bracket 52 relative to the mold 6x, that is, the height position of the cutter member 53, by rotating while sliding on the back surface of the mold 6x.
- the scraper member 55 is provided on the fixing bracket 51 as a fixing portion, and scrapes off the sand lump 6z broken by colliding with the cutter member 53.
- the scraper member 55 is plate-shaped, and is disposed so that the thickness direction is parallel to the conveyance direction of the framed mold.
- the scraper member 55 is provided on the rear side in the transport direction with respect to the cutter member 53.
- the cutter member 53 whose height position is adjusted by the adjustment roller 54 is:
- the sand lump 6y is crushed into a fine lump 6z.
- the adjustment roller 54 attached to the rotating bracket 52 follows the mold height.
- the height position of the cutter member 53 is adjusted according to the height of the mold 6x.
- the scraper member 55 provided on the rear side of the cutter member 53 scrapes off the fine sand lump 6z.
- the sand cutter device 50 sand-cuts the sand lump 6y discharged from the sand filling nozzle 8 of the mold making device 1 to make the back surface of the mold 6x smooth.
- the cutter member 53 and the scraper member 55 constituting the sand cutter device 50 are characterized in that they have the following relationship in view of the above-described functions.
- the cutter member 53 is made of a material having higher hardness than the scraper member 55.
- the scraper member 55 is made of a material having higher elasticity than the cutter member 53.
- the cutter member 53 is made of a steel plate, and the scraper member is made of a urethane resin.
- the stopper member 56 has a function of limiting the distance that the portion of the rotating bracket 52 to which the cutter member 53 at the rotating tip is attached moves in a direction away from the fixed bracket 51. This stopper member 56 prohibits the cutter member 53 from moving to a position where it collides with the frame member.
- the stopper member 56 is formed of a bolt-shaped member, and when the rotating bracket 52 moves to a predetermined position, the abutting plate whose tip 56a is integrally provided with the fixed bracket 51 as shown in FIG. By abutting on the member 61, the rotation range of the rotation bracket 52 is restricted, and thereby, the cutter member 53 is restricted so as to move only to a position before the collision with the frame member.
- the stopper member 56 when there is nothing to touch the lower surface of the adjusting roller 54 such as between the casting frame 4 and the casting frame 4, as shown in FIGS. 9 and 12, the stopper member 56.
- the adjustment roller 54 and the cutter member 53 are prevented from being lowered below the upper end surface of the casting frame 4.
- the sand cutter device 50 as described above includes at least the fixing bracket 51, the rotating bracket 52, the cutter member 53, the adjustment roller 54, and the scraper member 55 described above, and the point including the stopper member 56 and the urging means 57.
- the position of the cutter member 53 is automatically adjusted according to the height of the mold, and the sand lump 6y on the mold 6x is scraped off, and the back surface of the mold 6x is smoothed.
- the sand cutter device 50 realizes scraping only the sand lump 6y discharged from the sand filling nozzle 8 to the back of the mold.
- the sand cutter device 50 is based on the back surface of the mold 6x, even if the height of the mold changes, compared to the case where the adjustment roller follows the frame end surface of the casting frame, We realized that a good mold was obtained by preventing the groove for preventing hot water spilling on the back surface from being scraped off, and that the mold with the back surface smoothed by this sand cutter device realized proper casting. To do.
- the sand cutter device 50 is further arranged so that the cutter member 53 is plate-shaped and the thickness direction is orthogonal to the conveying direction of the mold, the scraper member 55 is plate-shaped, and the thickness direction is It is characterized in that the cutter member 53 is made of a material whose hardness is higher than that of the scraper member 55, and the scraper member 55 is made of a material whose elasticity is higher than that of the cutter member 53.
- the cutter member 53 crushes the sand lump 6y into fine sand lump 6z, and the scraper member 55 scrapes off the fine lump 6z so that the back surface of the mold 6x can be smoothed and appropriate casting is performed. Is realized.
- the sand cutter device 50 is characterized by a configuration including a fixed bracket 51, a rotating bracket 52, a cutter member 53, an adjustment roller 54, and a scraper member 55, and a configuration including a stopper member 56 and an urging means 57.
- the sand cutter device having such a configuration may be configured to be movable with respect to the mold 4.
- the mold making apparatus 1 provided with the sand cutter apparatus 50 is characterized in that it includes a sand tank 7, a sand filling nozzle 8, a squeeze foot 9 as a squeeze means, and the like.
- the sand lump 6y discharged from the nozzle 8 is appropriately scraped off by the sand cutter device 50, whereby the above-mentioned [1. ]
- the effect of the sand cutter device 50 can be obtained together, whereby a good mold can be obtained and appropriate casting can be realized.
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Abstract
Description
まず、本発明を適用した鋳型造型装置1とこの装置による鋳型造型方法について、図1~図8を参照して説明する。図1~図4は、鋳型造型装置1の「原位置」、「エアレーション及び砂充填」、「スクイズ」、「原位置に復帰する動作」の状態を示す図である。また、図5及び図6は、図3の状態と、図4の状態との間の各状態を詳細に説明するための要部断面図である。 1. Mold Making Apparatus and Mold Making Method First, a
次に、上述した鋳型造型装置等に用いられるのに適したサンドカッター装置50について、図9~図13を参照して説明する。 [2. Sand cutter device)
Next, a
2 フィルタ
3 模型板
4 鋳枠
5 造型空間
6 鋳型砂
7 サンドタンク
8 砂充填用ノズル
9 スクイズフット
10 昇降支持フレーム
24 搬入出コンベヤ
50 サンドカッター装置
51 固定ブラケット
52 回動ブラケット
53 カッター部材
54 調整ローラ
55 スクレーパ部材
56 ストッパ部材
57 付勢手段 DESCRIPTION OF
Claims (12)
- エアを噴出させる孔が設けられたフィルタを内面に有し、少なくとも模型板及び枠部材によって形成された造型空間に鋳型砂を充填するサンドタンクと、
前記サンドタンクの下端に一体に設けられ、前記サンドタンク内の鋳型砂を前記造型空間に導く砂充填用ノズルと、
前記サンドタンクの下端に設けられるとともに前記砂充填用ノズルに隣接して設けられ、前記造型空間内に充填された鋳型砂を圧縮するスクイズ手段とを備え、
前記スクイズ手段による圧縮を行った後に、前記サンドタンクと前記圧縮された鋳型砂との間に隙間を設けるとともに、前記フィルタからエアを噴出させることで、前記砂充填用ノズル内の出口付近の砂を排出する鋳型造型装置。 A sand tank that has a filter provided with holes for ejecting air on its inner surface and fills molding sand into a molding space formed by at least a model plate and a frame member;
A sand filling nozzle that is integrally provided at a lower end of the sand tank and guides the molding sand in the sand tank to the molding space;
A squeeze means that is provided at the lower end of the sand tank and is provided adjacent to the sand filling nozzle and compresses the mold sand filled in the molding space;
After compression by the squeeze means, a gap is provided between the sand tank and the compressed mold sand, and air is blown out from the filter so that the sand near the outlet in the sand filling nozzle Mold making device to discharge. - 前記砂充填用ノズル部分の出口通路は、少なくとも出口付近において通路断面積が増加するように形成されている請求項1記載の鋳型造型装置。 The mold making apparatus according to claim 1, wherein the outlet passage of the sand filling nozzle portion is formed so that a passage cross-sectional area increases at least in the vicinity of the outlet.
- 前記フィルタからエアを噴出させることで、前記砂充填用ノズル内の出口付近の砂を排出する動作は、抜型前に行われる請求項2記載の鋳型造型装置。 The mold making apparatus according to claim 2, wherein the operation of discharging the sand near the outlet in the sand filling nozzle by ejecting air from the filter is performed before mold release.
- 水平面内において正方形又は長方形の形状とされる前記圧縮された鋳型砂上に、該圧縮された鋳型砂の対向する一対の辺のそれぞれに沿うように直線状に盛られた状態となるように、前記砂充填用ノズルは、出口付近の砂を排出させる請求項1乃至請求項3の内いずれか1項に記載の鋳型造型装置。 On the compressed mold sand, which has a square or rectangular shape in a horizontal plane, so as to be in a state of being linearly arranged along each of a pair of opposing sides of the compressed mold sand. The mold making apparatus according to any one of claims 1 to 3, wherein the sand filling nozzle discharges sand near the outlet.
- さらに、前記鋳型砂が圧縮されることにより形成された鋳型上に、前記砂充填用ノズルの出口付近の砂が排出されることにより、積もるように形成された砂塊を削り取り鋳型背面を平滑にするサンドカッター装置を備え、
前記サンドカッター装置は、
固定部と、
前記鋳型に対して近接離間する方向に移動可能な可動部と、
前記可動部に設けられるカッター部材と、
前記可動部に設けられ、前記鋳型に対する前記カッター部材の高さ位置を調整する調整ローラと、
前記固定部に設けられ、前記カッター部材に衝突することにより崩された砂塊を掻き取るスクレーパ部材とを有する請求項1記載の鋳型造型装置。 Further, the sand near the outlet of the sand filling nozzle is discharged onto the mold formed by compressing the mold sand, so that the sand lump formed so as to be piled is scraped off and the mold back surface is smoothed. Equipped with a sand cutter device
The sand cutter device
A fixed part;
A movable part movable in a direction approaching and separating from the mold; and
A cutter member provided in the movable part;
An adjustment roller that is provided in the movable part and adjusts the height position of the cutter member relative to the mold;
The mold making apparatus according to claim 1, further comprising: a scraper member that is provided on the fixing portion and scrapes off a lump of sand that has been broken by colliding with the cutter member. - 前記サンドカッター装置は、さらに、前記可動部の前記固定部に対して離間する方向に移動する距離を制限するストッパ部材を有し、
前記ストッパ部材は、前記カッター部材が前記枠部材に衝突する位置まで移動することを禁止し、
前記可動部は、前記固定部とピンで接合されて前記固定部に対して回動可能とされるとともに、前記可動部の先端に設けられた前記カッター部材が前記鋳型に近接する方向に付勢手段により付勢され、
前記カッター部材は、板状であり、厚さ方向が鋳型の搬送方向に直行するように配置され、
前記スクレーパ部材は、板状であり、厚さ方向が鋳型の搬送方向に平行となるように配置され、
前記カッター部材は、前記スクレーパ部材より硬度が高い材料からなり、
前記スクレーパ部材は、前記カッター部材より弾性が高い材料からなる請求項5記載の鋳型造型装置。 The sand cutter device further includes a stopper member that limits a distance moved in a direction away from the fixed portion of the movable portion,
The stopper member prohibits the cutter member from moving to a position where the cutter member collides with the frame member;
The movable part is joined to the fixed part by a pin so as to be rotatable with respect to the fixed part, and the cutter member provided at the tip of the movable part is biased in a direction approaching the mold. Energized by means,
The cutter member is plate-shaped, and is arranged so that the thickness direction is perpendicular to the conveyance direction of the mold,
The scraper member is plate-shaped, and is disposed so that the thickness direction is parallel to the conveyance direction of the mold,
The cutter member is made of a material having higher hardness than the scraper member,
The mold making apparatus according to claim 5, wherein the scraper member is made of a material having higher elasticity than the cutter member. - 少なくとも模型板及び枠部材によって形成された造型空間に、エアを噴出させる孔が設けられたフィルタを内面に有するサンドタンクの下端に一体に設けられる砂充填用ノズルを介して、該フィルタからエアを噴出させながら該サンドタンク内の鋳型砂を充填し、
前記サンドタンクの下端に設けられるとともに前記砂充填用ノズルに隣接して設けられるスクイズ手段により、前記造型空間内に充填された鋳型砂を圧縮し、
前記サンドタンクと前記圧縮された鋳型砂との間に隙間を設けるとともに、前記フィルタからエアを噴出させることで、前記砂充填用ノズル内の出口付近の砂を排出する鋳型造型方法。 Air is discharged from the filter through a sand filling nozzle integrally provided at the lower end of the sand tank having a filter provided with a hole on the inner surface in a molding space formed by at least the model plate and the frame member. Fill the sand sand in the sand tank while spouting,
The squeeze means provided at the lower end of the sand tank and adjacent to the sand filling nozzle compresses the mold sand filled in the molding space,
A mold making method in which a gap is provided between the sand tank and the compressed mold sand, and air near the outlet in the sand filling nozzle is discharged by ejecting air from the filter. - 前記砂充填用ノズル部分の出口通路は、少なくとも出口付近において通路断面積が増加するように形成されている請求項7記載の鋳型造型方法。 The mold making method according to claim 7, wherein the exit passage of the sand filling nozzle portion is formed so that the passage cross-sectional area increases at least in the vicinity of the exit.
- 前記フィルタからエアを噴出させ砂充填用ノズル内の出口付近に圧縮された砂塊を排出した後に、抜型が行われる請求項8記載の鋳型造型方法。 9. The mold making method according to claim 8, wherein after the air is blown out from the filter and the compressed sand mass is discharged near the outlet in the sand filling nozzle, the mold is removed.
- 水平面内において正方形又は長方形の形状とされる前記圧縮された鋳型砂上に、該圧縮された鋳型砂の対向する一対の辺のそれぞれに沿うように直線状に盛られた状態となるように前記砂充填用ノズル内の出口付近の砂が排出される請求項7乃至請求項9の内いずれか1項に記載の鋳型造型方法。 On the compressed mold sand, which has a square or rectangular shape in a horizontal plane, the sand is placed in a straight line along each of a pair of opposing sides of the compressed mold sand. The mold making method according to any one of claims 7 to 9, wherein sand near the outlet in the filling nozzle is discharged.
- 前記砂充填用ノズル内の出口付近の砂を排出することにより、前記鋳型砂が圧縮されることにより形成された鋳型上に積もるように形成された砂塊を、サンドカッター装置により、削り取り鋳型背面を平滑にする工程を更に含み、
前記サンドカッター装置は、
固定部と、
前記鋳型に対して近接離間する方向に移動可能な可動部と、
前記可動部に設けられるカッター部材と、
前記可動部に設けられ、前記鋳型に対する前記カッター部材の高さ位置を調整する調整ローラと、
前記固定部に設けられ、前記カッター部材に衝突することにより崩された砂塊を掻き取るスクレーパ部材とを有することを特徴とする請求項10記載の鋳型造型方法。 The sand lump formed so as to be stacked on the mold formed by compressing the mold sand by discharging the sand near the outlet in the sand filling nozzle is scraped by the sand cutter device. Further comprising the step of smoothing
The sand cutter device
A fixed part;
A movable part movable in a direction approaching and separating from the mold; and
A cutter member provided in the movable part;
An adjustment roller that is provided in the movable part and adjusts the height position of the cutter member relative to the mold;
The mold making method according to claim 10, further comprising: a scraper member that is provided in the fixed portion and scrapes off a lump of sand that has been broken by colliding with the cutter member. - 前記サンドカッター装置は、さらに、前記可動部の前記固定部に対して離間する方向に移動する距離を制限するストッパ部材を有し、
前記ストッパ部材は、前記カッター部材が前記枠部材に衝突する位置まで移動することを禁止し、
前記可動部は、前記固定部とピンで接合されて前記固定部に対して回動可能とされるとともに、前記可動部の先端に設けられた前記カッター部材が前記鋳型に近接する方向に付勢手段により付勢され、
前記カッター部材は、板状であり、厚さ方向が鋳型の搬送方向に直行するように配置され、
前記スクレーパ部材は、板状であり、厚さ方向が鋳型の搬送方向に平行となるように配置され、
前記カッター部材は、前記スクレーパ部材より硬度が高い材料からなり、
前記スクレーパ部材は、前記カッター部材より弾性が高い材料からなることを特徴とする請求項11記載の鋳型造型方法。 The sand cutter device further includes a stopper member that limits a distance moved in a direction away from the fixed portion of the movable portion,
The stopper member prohibits the cutter member from moving to a position where the cutter member collides with the frame member;
The movable part is joined to the fixed part by a pin so as to be rotatable with respect to the fixed part, and the cutter member provided at the tip of the movable part is biased in a direction approaching the mold. Energized by means,
The cutter member is plate-shaped, and is arranged so that the thickness direction is perpendicular to the conveyance direction of the mold,
The scraper member is plate-shaped, and is disposed so that the thickness direction is parallel to the conveyance direction of the mold,
The cutter member is made of a material having higher hardness than the scraper member,
The mold making method according to claim 11, wherein the scraper member is made of a material having higher elasticity than the cutter member.
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