KR20120011676A - Bookmark drilling compressors and compressed bundle containing the compressed bundle scrap - Google Patents

Bookmark drilling compressors and compressed bundle containing the compressed bundle scrap Download PDF

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Publication number
KR20120011676A
KR20120011676A KR1020100073694A KR20100073694A KR20120011676A KR 20120011676 A KR20120011676 A KR 20120011676A KR 1020100073694 A KR1020100073694 A KR 1020100073694A KR 20100073694 A KR20100073694 A KR 20100073694A KR 20120011676 A KR20120011676 A KR 20120011676A
Authority
KR
South Korea
Prior art keywords
bundle
scrap
compression
scraps
main body
Prior art date
Application number
KR1020100073694A
Other languages
Korean (ko)
Inventor
김동근
Original Assignee
김동근
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 김동근 filed Critical 김동근
Priority to KR1020100073694A priority Critical patent/KR20120011676A/en
Publication of KR20120011676A publication Critical patent/KR20120011676A/en

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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B30PRESSES
    • B30BPRESSES IN GENERAL
    • B30B9/00Presses specially adapted for particular purposes
    • B30B9/32Presses specially adapted for particular purposes for consolidating scrap metal or for compacting used cars
    • B30B9/321Presses specially adapted for particular purposes for consolidating scrap metal or for compacting used cars for consolidating empty containers, e.g. cans

Abstract

The present invention is to produce a relatively large amount of scrap through the work of pressing, sheet metal, punching, cutting, etc. in order to process the iron plate, and relates to a scrap compressor for compressing it with a compressor, in order to recycle the remaining iron resources after use Compressed scraps are put into the furnace, and since the inside of the scraps is not checked when the scraps are compressed, foreign materials are frequently put inside the scraps to increase the volume of the scraps. In order to solve the problem of preventing the production of proper iron resources, it is impossible to compress the scrap due to the squeezing and squeezing of the squeezing and squeezing scraps. The flow protrusion bundle and the flow protrusion bundle configured on the inner side Corresponds to, but the grooves are generated in all four sides of the scrap bundle to be compressed due to the fixed protrusion formed on the inner surface of the main body portion to compress the scrap does not have to work to check the foreign matter put into the finished scrap bundle, When melting the old scraps of regeneration, the grooves are formed in all directions, so that the melting point is faster, so the work is more efficient.

Description

Bookmark drilling compressors and compressed bundle containing the compressed bundle scrap}

The present invention is an improvement of a scrap compressor for compressing a scrap of a predetermined size so that the scrap can be melted and recycled, more specifically, by forming a protruding bundle on the inner surface of the compression bundle to reciprocate with the compression cylinder and ride the rail of the main body The present invention relates to a device for forming grooves in all directions of the scrap bundle during compression.

In general, press, sheet metal, punching, cutting, etc. to process the iron plate, and since a relatively large amount of scrap is generated, it is recovered and put into the smelter and then melted and steelmaking to recycle iron resources.

When scrap is generated when processing steel sheet, its volume becomes very large, so that it is easy to transport to the place where the blast furnace is located, and also to be transported after compacting to a small volume in order to reduce the transportation cost. There is a scrap compressor that puts various scraps into a compression chamber and compresses them into rectangular chunks of a size suitable for transporting.

First, referring to the apparatus, Application No. 20-1994-0009994 forms a primary compression chamber by installing a horizontal plate and an end plate on the top of the bottom plate, and the primary compression cylinder and the secondary pressurization chamber on one side of the primary compression chamber. The secondary pressure cylinder is formed on one side of the secondary pressure chamber, and the discharge cylinder and the discharge door are installed on one side of the secondary pressure chamber, and the primary compression cylinder has a compression plate and a moving blade on the working rod. In the scrap compressor fixed and fixed to the bottom surface of the upper plate, the upper plate material is fixed to the working rod of the primary compression cylinder, and the hopper type inlet is installed on the upper portion of the primary compression chamber to continuously scrap The present invention provides a scrap compressor characterized by being able to supply and by forming a plurality of protrusions on the top surface of the bottom plate of the primary compression chamber to prevent the scrap from sticking to the bottom plate.

Application No. 10-1997-0014664 is in the input chamber consisting of a main body is formed with an injection chamber into which the scrap metal is introduced, a compression mold for pressing the scrap metal while reciprocating the injection chamber and a hydraulic cylinder for reciprocating the compression mold, the injection chamber It is formed in two rows on the bottom surface of the first crimping mold for crimping the scrap iron to the reciprocating operation without shaking the guide rail and the first crimping mold for reciprocating the inlet chamber horizontally with the input chamber It is installed in the crimping chamber extended to interlock upward, and the second crimping operation of the scrap iron pressed by the first crimping mold to the door mold while reciprocating in a direction perpendicular to the first crimping mold. It is installed at the lower end of the primary compression mold and the partition plate partitioning the input chamber and the compression chamber, and is installed at an angle with respect to the primary compression mold, The scrap metal crimping apparatus which comprises the cutting blade which cuts the part which extended upward of the input chamber among the scraped steel which was crimped | bonded normally is disclosed.

Application No. 10-2005-0055597 configures the inlet to the body and supports the base frame inclined to the bottom, and then forms the outlet and the back inlet on the front to compress the auxiliary compression plate with the compression cylinder at the top and the cutting cylinder is cut The cutting knife protection cylinder is attached to both sides of the knife, and then the push rod, which is a hydraulic multi-stage compression bar equipped with a breakage supply compression plate, is pushed forward and backward from the binding plate, and the compression plate is installed on both sides between the inlet and the outlet. In the sliding and compression, the bottom of the body inlet is configured horizontally, and the left and right compression plates of the inlet and outlet are horizontally compressed as the loader and the secondary compression cylinder horizontally, and the cover for protecting the straw is supplied to the corrugated iron supply compression plate. Fixed to the front end, and the rear end is guided through the protective cover guide to the binding plate to the front of the push rod Jin and post pacheol compression cutters have been configured to be compressed to cause the protective cover characterized in that during operation at the same time hayeoseo ever before to be backward sliding guide cover.

Application number 20-2008-0003807 is a compressor main body having a compression chamber formed therein and one or more compression holes provided on both sides and rear of the compression chamber of the compressor main body and seated on the bottom surface of the compression chamber, and both ends and the rear of the compressor main body. In the compressor is fixed to each support is formed in each of the support rods comprising a compression cylinder is fixed to each of the compression spheres, respectively, in the compressor, the rail is formed on the bottom surface of the compression chamber and the inner side wall of the compression chamber respectively The scrap metal compressor is characterized in that it is connected to the rail groove formed on the bottom surface and both side surfaces of the compression port.

Recently, in the situation of economic difficulties, the compressed scrap lumps are put into a smelter to recycle the iron resources, and there is a problem such that a proper iron resource is not produced by putting a foreign material into the internal scrap lumps.

In addition, in order to increase the volume of the scrap mass during compression by using the point that the inside is not confirmed during the compression of the scrap mass, it is frequently injected into the inside of the scrap. This happens frequently and at the same time it is not possible to trust between companies, and even when compressed the right scrap mass, such as wasted time for the inspection of the foreign matter in the recycled place, such problems occurred.

The present invention is to solve the problems of the prior art as described above, the compression is compressed due to the compression bundle and the front compression bundle to reciprocate during compression, wherein the flow is configured on the inner surface of the compression bundle and the front compression bundle Corresponding to the protrusion bundle and the flow protrusion bundle, but by forming a groove in all four sides of the scrap bundle to be compressed due to the fixed protrusion formed on the inner surface of the body portion, to confirm the foreign material to be injected into the inside of the scrap bundle to compress the scrap There is no need to work, and when the compressed scraps are melted during regeneration, grooves are formed in all directions, so that the melting point is faster, and the purpose is to provide a product that makes the work more efficient.

The present invention as a technical idea for achieving the above object,

The inner bottom surface and both sides of the main body portion is formed by a rail, each end of the main body is composed of the respective support, compression cylinder and compression bundle, the front support is composed of the front support, the front compression cylinder and the front compression bundle, In the upper part of the main body is a scrap compressor comprising a cover which is configured to operate the hydraulic pressure, the compression bundle and the flow projection bundle formed on the inner surface of the front compression bundle and corresponding to the flow projection bundle is configured on the inner surface of the body portion Characterized in that it comprises a fixed protrusion bundle.

According to the present invention, a scrap compressor comprising a punched scrap compaction and a compacted compact thereof correspond to the flow projected mass and the flow projected mass formed on the inner side of the compacted mass and the front compacted mass, but are configured on the inner surface of the main body. By constructing a fixed protrusion to form a protrusion-shaped groove in the four directions of the scrap when compressing the scrap, by compressing the scrap do not need to check the foreign matter that is injected into the finished scrap bundle, In order to regenerate the scrap scrap, the grooves are formed on all sides of the scrap scrap when melting, so that the melting point is faster and the work is more efficient.


1 is a front view and a rear view showing the present invention.
Figure 2 is a cross-sectional view showing a AA 'of the present invention
Figure 3 is a perspective view showing a compression bundle configured the present invention
Figure 4 is a perspective view showing a scrap made of an embodiment of the present invention
Figure 5 (a) is a perspective view showing another embodiment of the compression bundle configured the present invention
Figure 5 (b) is a side view showing another embodiment of the protrusion bundle which is a configuration of the present invention
Figure 6 is a cross-sectional view showing another embodiment of the present invention

Referring to the accompanying drawings, a preferred configuration of the present invention for achieving the above object is as follows.

1 is a front view and a rear view showing the present invention, Figure 2 is a cross-sectional view showing a AA 'of the present invention, Figure 3 is a perspective view showing a compression bundle made up of the present invention, Figure 4 is a scrap made of an embodiment of the present invention Fig. 5 (a) is a perspective view showing another embodiment of the compressed bundle in which the present invention is configured, Fig. 5 (b) is a side view showing another embodiment of the protrusion bundle in the configuration of the present invention, and Fig. 6 is It demonstrates together as a cutaway view which shows another embodiment of this invention.

Looking at the configuration of the present invention, the inner bottom surface and both sides of the main body portion 10 is formed by the rail 11 is configured at each end of the main body portion 10, each support 30, 30 'and compression The cylinder 31, 31 'and the compression bundle 32, 32' is composed, the front support 40, the front compression cylinder 41 and the front compression bundle 42 is configured, the body portion The upper part of the (10) has a latch 22 is composed of a scrap compressor including a cover 20 to operate as a hydraulic machine 21, the compression bundle 32, 32 'of the front compression bundle 42 Comprising the flow protrusion bundle 50 and the flow protrusion bundle 50 is formed on the inner side is composed of a fixed protrusion bundle 60 is configured on the inner surface of the body portion (10).

In addition, in the scrap compressor including a perforated scrap compression bundle, the compression bundle 32, 32 'and the front compression bundle 42 is operated by hydraulic or pneumatic, etc., the compression bundle 32, 32' and Corresponding to the flow protrusion bundle 50 and the flow protrusion bundle 50 formed on the inner surface of the front compression bundle 42, but the shape of the fixed protrusion bundle 60 formed on the inner surface of the body portion 10 is triangular, One side is a round shape, one side may be configured in various ways, such as a triangular shape, characterized in that one or more can be configured.

When explaining the operation of the scrap compressor and the compression bundle including the punched scrap compression bundle of the present invention configured as described above are as follows.

As shown in FIG. 1 or FIG. 2, a support 30 or 30 ′ is formed to connect the corresponding side surfaces, and the compression cylinder 31 penetrates the support 30 and 30 ′ but is hydraulically operated. Compression bundles 32 and 32 ', which are connected to the 31' and the compression cylinders 31 and 31 'and slide the rails 11 formed on the main body 10, are reciprocated, respectively. The rail 11 formed in the main body 10 by being connected to the front compression cylinder 41 and the front compression cylinder 41 which is penetrated through the front support 40 formed on the front of the main body 10 and is hydraulically operated. Sliding reciprocating motion while sliding 42 and the upper portion of the main body portion 10 is connected to one side of the clamping portion 22 is configured to bind to one side of the main body portion 10, the oil press 21 In the scrap compressor comprising a cover 20 capable of opening and closing a furnace, the compression unit to reciprocate while sliding the rail (11) (32) (32 ') and a fixed protrusion bundle formed on the inner surface of the main body portion 10 corresponding to the flow protrusion bundle 50 and the flow protrusion bundle 50 formed on the inner surface of the front compression bundle 42 It should include (60).

3 is a perspective view showing a compression bundle configured with the present invention,

Compression bundles 32 and 32 ′, which are configured to reciprocate while sliding as described above, correspond to the flow protrusion bundle 50 and the flow protrusion bundle 50 configured in the front compression bundle 42, but the main body 10 Fixed protrusion bundle 60 is configured on the inner surface of the should be configured as a cone.

As shown in Figures 1 to 3, first is connected to the upper portion of the main body portion 10, but one side is configured with a latch 22 that can be coupled with one side of the main body portion 10, the opening and closing with the oil pressure 21 The cover 20 is open, the compression bundle 32, 32 'and the front compression bundle 42 to reciprocate while sliding the rail 11 formed on the inner bottom surface and both sides of the main body portion 10 When is located at both ends of the main body portion 10, the work such as press, sheet metal, punching, cutting, etc. are put into the scrap compressor generated inside.

When the scrap is put into the scrap compressor, the cover 20 connected to the main body portion 10 is closed by the oil pressure 21, so that the latch 22 configured in the cover 20 is bound to the side of the main body portion 10. The cover 20 is fixed. And the compression bundle (32) (32 ') and the front compression bundle (42) composed of the flow protrusion bundle 50 is penetrated through the support (30) (30') connected to both ends of the main body portion 10 is operated hydraulically Compressed cylinders 31 and 31 'which are connected to the compression cylinders 31 and 31' are reciprocated while sliding the rails 11 formed in the main body 10, and compresses the scraps injected therein. A rail 11 formed at the front of the main body 10 by being connected to the front compression cylinder 41 and the front compression cylinder 41 which is hydraulically operated and passes through the front support part 40 formed at the front part of the part 10. Sliding) reciprocates and compresses scraps. At this time, corresponding to the flow protrusion bundle 50, the scrap is compressed around the fixed protrusion bundle 60 is configured on the inner surface of the body portion 10.

When the bundle of scraps 70 is completed, the brace 22 attached to the side of the main body 10 is detached, and the cover 20 connected to the main body 10 is opened by the oil press 21, which is illustrated in FIG. 4. As described above, the compressed scrap bundle 70 can be seen that the four directions are grooves of the flow protrusion bundle 50 and the fixed protrusion bundle 60.

Figure 5 (a) is a perspective view showing another embodiment of the compression bundle is configured the present invention, Figure 5 (b) is a side view showing another embodiment of the protrusion bundle is a configuration of the present invention, Figure 6 is another embodiment of the present invention When described as a cross-sectional view showing, the flow bundle (50) and the flow protrusion (50) configured on the inner surface of the compression bundle 32, 32 'and the front compression bundle 42, but the body portion ( The shape of the fixed protrusion bundle 60 is formed on the inner surface of 10) may be configured in various ways, such as triangular, one side round shape, one side triangular shape, it should be configured to be composed of one or more.

Scrap compressor with perforated scrap compaction to which the technique of the present invention is applied and its compacted bundle do not need to inspect foreign substances that may be added to the inside of the scrap bundle 70 before melting the scrap bundle 70. Time can be saved, and grooves are formed in four directions of the scrap bundle 70, so that the melting point becomes faster when melting, thereby improving work efficiency.

10 main body 11 rail
20: cover 21: oil press 22: latch
30: support 31: compression cylinder 32: compression bundle
40: front support 41: front compression cylinder 42: front compression bundle
50: bundle of fluid protrusions 60: bundle of fixed protrusions 70: bundle of scraps

Claims (3)

The inner bottom surface and both sides of the main body portion is formed by a rail, each end of the main body is composed of the respective support, compression cylinder and compression bundle, the front support is composed of the front support, the front compression cylinder and the front compression bundle, In the upper part of the main body, the latch is configured, but the scrap compressor including a cover that operates as a hydraulic,
A flow protrusion bundle configured on the inner side of the compression bundle and the front compression bundle;
Scrap compressor comprising a punched scrap compression bundle comprising a compression protrusion bundle corresponding to the flow protrusion bundle, but is configured on the inner surface of the body portion and the compression bundle
The method of claim 1,
The flow protrusion bundle and the fixed protrusion bundle is conical, the shape is triangular, one side is round shape, one side can be configured in various ways, such as triangular shape, perforated characterized in that one or more can be configured Scrap compressors with scrap compaction and their compaction
In the scrap compressor including a perforated scrap compression bundle, the compression bundle and the front compression bundle is operated by hydraulic or pneumatic, etc., and the flow projection bundle and the flow projection bundle formed on the inner surface of the compression bundle and the front compression bundle Corresponding but the shape of the fixed protrusion is configured on the inner surface of the body portion can be configured in various ways, such as triangular, one side round shape, one side triangular, compression punching scrap characterized in that one or more can be configured Scrap compressors with bundles and their bundles
KR1020100073694A 2010-07-29 2010-07-29 Bookmark drilling compressors and compressed bundle containing the compressed bundle scrap KR20120011676A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
KR1020100073694A KR20120011676A (en) 2010-07-29 2010-07-29 Bookmark drilling compressors and compressed bundle containing the compressed bundle scrap

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
KR1020100073694A KR20120011676A (en) 2010-07-29 2010-07-29 Bookmark drilling compressors and compressed bundle containing the compressed bundle scrap

Publications (1)

Publication Number Publication Date
KR20120011676A true KR20120011676A (en) 2012-02-08

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KR1020100073694A KR20120011676A (en) 2010-07-29 2010-07-29 Bookmark drilling compressors and compressed bundle containing the compressed bundle scrap

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR101665671B1 (en) * 2015-05-27 2016-10-13 제이에이치테크 주식회사 Apparatus for press steel materials scrap

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR101665671B1 (en) * 2015-05-27 2016-10-13 제이에이치테크 주식회사 Apparatus for press steel materials scrap

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