Patent · US5080161A · A · US
System for preparing self-hardening casting mold using organic binder
- (11) Publication number
- US5080161A
- (21) Application number
- 07/609,653
- (22) Filing date
- 1990-11-06
- (30) Priority date
- 1989-05-02
- (43) Publication date
- 1992-01-14
- (45) Date of grant
- 1992-01-14
- (51) IPC
- B22C 9/12
- (52) CPC
- B22C Foundry moulding: 9/12
- (73) Assignee
- Okamoto Corp
- (72) Inventors
- Takao Horie; Shoichi Sakai
- (54) Title
- System for preparing self-hardening casting mold using organic binder
- (57) Abstract
A system for preparing a self-hardening casting mold including a mass of sand which contains an organic binder and which has a pattern-contact layer having a surface for contact with a pattern disposed in a flask. The pattern defines a cavity into which a melt is poured to produce a cast product. The mold further includes a mass of ceramic balls placed on the pattern-contact layer of the sand mass. The system includes a temperature adjusting device for regulating the temperature of the mass of ceramic balls prior to introduction thereof into the flask, so as to control the hardening rate of mass of sand in the flask, a separating device operable on a mixture of sand and ceramic balls obtained from the mold after the cast product is produced by the mold with the pattern removed. The separating device separates the ceramic ball from the sand, and supplies the ceramic balls to the temperature adjusting device. The system further includes a sand reclaiming device for treating the separated sand to be reclaimed for preparing another casting mold.
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Claims (12)
- A system for preparing a self-hardening casting mold including a mass of sand which contains an organic binder and which comprises a pattern-contact layer having a surface for contact with a pattern disposed in a flask, said casting mold further including a mass of ceramic balls placed on said pattern-contact layer of said sand mass, said pattern defining a cavity into which a melt is poured to produce a cast product, said system comprising: a temperature adjusting device for regulating a temperature of said mass of ceramic balls prior to introduction of said ceramic balls into said flask, so as to control a rate of hardening of said mass of sand in said flask; a separating device operable on a mixture of sand and ceramic balls obtained from said casting mold after said cast product is produced by the casting mold with said pattern removed, said separating device separating said ceramic ball from said sand, and supplying said ceramic balls to said temperature adjusting device; and a sand reclaiming device for treating the sand separated from said ceramic balls, to be reclaimed for preparing another casting mold.
- A system according to claim 1, wherein said separating device includes a sieve for separating relatively finely divided particles of the sand from relatively large fragments of the sand and said ceramic balls.
- A system according to claim 2, wherein said separating device further includes a magnetic separator for magnetically separating said ceramic balls from said relatively large fragments of the sand.
- A system according to claim 3, further comprising a crusher for crushing said casting mold, to obtain said mixture of sand and ceramic balls, and wherein said separating device further includes means for transferring said relatively large fragments of the sand to said crusher for crushing said relatively large fragments of the sand.
- A system according to claim 1, wherein said separating device includes a magnetic separator for magnetically separating said ceramic balls from said sand.
- A system according to claim 5, wherein each of said ceramic balls contains a magnetic material.
- A system according to claim 6, wherein said magnetic separator comprises a belt conveyor including an endless belt for receiving said mixture of sand and ceramic balls, and a pair of pulleys connected by said belt for rotating said belt, one of said pulleys including a magnet for magnetically attracting said ceramic balls when said ceramic balls are moved adjacent to said one pulley by said belt.
- A system according to claim 1, wherein said temperature adjusting device includes a heating and cooling device having heating means and cooling means for controlling the temperature of said ceramic balls separated from said sand by said separating device.
- A system according to claim 8, wherein said temperature adjusting device further includes a revolving drum which receives said ceramic balls separated from said sand by said separating device, said heating and cooling device being connected to said drum such that a temperature within an interior of said drum is controlled by said heating and cooling device.
- A system according to claim 8, further comprising a temperature sensor for measuring the temperature of said ceramic balls separated from said sand by said separating device, said heating and cooling device being operated according to an output signal of said temperature sensor.
- A system according to claim 8, wherein said heating and cooling device is operated so that the temperature of said ceramic balls is held within a range of 30-100° C.
- A system according to claim 1, wherein each of said ceramic balls has a diameter of about 20-40mm.
Description
1. Field of the Invention
The present invention relates in general to a system or line adapted to prepare a casting mold using a self-hardening sand mixture containing an organic binder, and more particularly to an improved mold preparation system capable of suitably controlling the rate of hardening of the self-hardening sand mixture.
2. Discussion of the Prior Art
A self-hardening casting mold using an organic binder for hardening the molding sand has been widely used for casting medium- and large-sized articles weighing 50Kg or more, such as cast iron parts of machine tools. The use of such an organic binder permits the patterned sand mass to be hardened into a desired mold, without applying heat thereto, and this mold preparation process is sometimes referred to as "no-bake" method. Usually, a furan resin (thermosetting polymer made from furfuryl alcohol) is used as the organic binder mixed in the sand. An acidic hardening catalyst (hardening agent) is generally added to a liquid condensation product resin having a relatively small molecular weight, to initiate a condensation reaction for progressively increasing the activity of the resin, and eventually maximizing the binding force by three-dimensional cross linking, so that the molding sand is firmly packed as a casting mold. In producing a cast article by using such a self-hardening mold, a suitably prepared molten metal is poured into the mold. After the molten metal in the mold is solidified, the mold is opened or broken to remove the casting, and the sand remaining on the casting is removed.
Citations (1)
- JPH02220730A
Record as JSON
{
"publication_number": "US5080161A",
"country": "US",
"kind": "A",
"title": "System for preparing self-hardening casting mold using organic binder",
"abstract": "A system for preparing a self-hardening casting mold including a mass of sand which contains an organic binder and which has a pattern-contact layer having a surface for contact with a pattern disposed in a flask. The pattern defines a cavity into which a melt is poured to produce a cast product. The mold further includes a mass of ceramic balls placed on the pattern-contact layer of the sand mass. The system includes a temperature adjusting device for regulating the temperature of the mass of ceramic balls prior to introduction thereof into the flask, so as to control the hardening rate of mass of sand in the flask, a separating device operable on a mixture of sand and ceramic balls obtained from the mold after the cast product is produced by the mold with the pattern removed. The separating device separates the ceramic ball from the sand, and supplies the ceramic balls to the temperature adjusting device. The system further includes a sand reclaiming device for treating the separated sand to be reclaimed for preparing another casting mold.",
"claims": [
"1. A system for preparing a self-hardening casting mold including a mass of sand which contains an organic binder and which comprises a pattern-contact layer having a surface for contact with a pattern disposed in a flask, said casting mold further including a mass of ceramic balls placed on said pattern-contact layer of said sand mass, said pattern defining a cavity into which a melt is poured to produce a cast product, said system comprising: a temperature adjusting device for regulating a temperature of said mass of ceramic balls prior to introduction of said ceramic balls into said flask, so as to control a rate of hardening of said mass of sand in said flask; a separating device operable on a mixture of sand and ceramic balls obtained from said casting mold after said cast product is produced by the casting mold with said pattern removed, said separating device separating said ceramic ball from said sand, and supplying said ceramic balls to said temperature adjusting device; and a sand reclaiming device for treating the sand separated from said ceramic balls, to be reclaimed for preparing another casting mold.",
"2. A system according to claim 1, wherein said separating device includes a sieve for separating relatively finely divided particles of the sand from relatively large fragments of the sand and said ceramic balls.",
"3. A system according to claim 2, wherein said separating device further includes a magnetic separator for magnetically separating said ceramic balls from said relatively large fragments of the sand.",
"4. A system according to claim 3, further comprising a crusher for crushing said casting mold, to obtain said mixture of sand and ceramic balls, and wherein said separating device further includes means for transferring said relatively large fragments of the sand to said crusher for crushing said relatively large fragments of the sand.",
"5. A system according to claim 1, wherein said separating device includes a magnetic separator for magnetically separating said ceramic balls from said sand.",
"6. A system according to claim 5, wherein each of said ceramic balls contains a magnetic material.",
"7. A system according to claim 6, wherein said magnetic separator comprises a belt conveyor including an endless belt for receiving said mixture of sand and ceramic balls, and a pair of pulleys connected by said belt for rotating said belt, one of said pulleys including a magnet for magnetically attracting said ceramic balls when said ceramic balls are moved adjacent to said one pulley by said belt.",
"8. A system according to claim 1, wherein said temperature adjusting device includes a heating and cooling device having heating means and cooling means for controlling the temperature of said ceramic balls separated from said sand by said separating device.",
"9. A system according to claim 8, wherein said temperature adjusting device further includes a revolving drum which receives said ceramic balls separated from said sand by said separating device, said heating and cooling device being connected to said drum such that a temperature within an interior of said drum is controlled by said heating and cooling device.",
"10. A system according to claim 8, further comprising a temperature sensor for measuring the temperature of said ceramic balls separated from said sand by said separating device, said heating and cooling device being operated according to an output signal of said temperature sensor.",
"11. A system according to claim 8, wherein said heating and cooling device is operated so that the temperature of said ceramic balls is held within a range of 30-100° C.",
"12. A system according to claim 1, wherein each of said ceramic balls has a diameter of about 20-40mm."
],
"description_excerpt": "1. Field of the Invention\n\nThe present invention relates in general to a system or line adapted to prepare a casting mold using a self-hardening sand mixture containing an organic binder, and more particularly to an improved mold preparation system capable of suitably controlling the rate of hardening of the self-hardening sand mixture.\n\n2. Discussion of the Prior Art\n\nA self-hardening casting mold using an organic binder for hardening the molding sand has been widely used for casting medium- and large-sized articles weighing 50Kg or more, such as cast iron parts of machine tools. The use of such an organic binder permits the patterned sand mass to be hardened into a desired mold, without applying heat thereto, and this mold preparation process is sometimes referred to as \"no-bake\" method. Usually, a furan resin (thermosetting polymer made from furfuryl alcohol) is used as the organic binder mixed in the sand. An acidic hardening catalyst (hardening agent) is generally added to a liquid condensation product resin having a relatively small molecular weight, to initiate a condensation reaction for progressively increasing the activity of the resin, and eventually maximizing the binding force by three-dimensional cross linking, so that the molding sand is firmly packed as a casting mold. In producing a cast article by using such a self-hardening mold, a suitably prepared molten metal is poured into the mold. After the molten metal in the mold is solidified, the mold is opened or broken to remove the casting, and the sand remaining on the casting is removed.",
"cpc": [
"B22C 9/12"
],
"ipc": [
"B22C 9/12"
],
"assignees": [
"Okamoto Corp"
],
"inventors": [
"Takao Horie",
"Shoichi Sakai"
],
"filing_date": "1990-11-06",
"publication_date": "1992-01-14",
"grant_date": "1992-01-14",
"priority_date": "1989-05-02",
"application_number": "US-60965390-A",
"family_id": "26452066",
"cited_by_count": 1,
"citations": [
"JPH02220730A"
]
}
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