A building metal waste recycling equipment

By using filter support seats and top strip structures in building metal waste compression equipment, combined with the bottom grille groove and barrier cover, the problems of poor compression and loose compression of compression equipment are solved, and efficient metal waste compression and classification discharge are achieved.

CN119858348BActive Publication Date: 2025-07-04ZHEJIANG ZHIHUI CONSTRUCTION CO LTD
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Patent Information

Application Number
CN202510353531.7
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-03-25
Publication Date
2025-07-04
Estimated Expiration
2045-03-25

AI Technical Summary

Technical Problem

The existing construction metal waste compression equipment is difficult to compress objects and different sizes due to mixed reinforcement bars, which leads to high clearance, poor compression and easy to looseness after compression, making it inconvenient to transport.

Method used

The compression equipment with a filter support seat and a top pressure strip is arranged along the compression direction, combined with the bottom grille groove and an open-closed barrier cover, the movement of the top pressure strip and barrier cover is controlled through the hydraulic rod to achieve effective compression and sorting and discharge of metal waste.

Benefits of technology

It improves compression rate, reduces looseness, facilitates subsequent handling and classified recycling, and reduces the power demand of the equipment.

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Abstract

The present invention discloses a building metal waste recycling and recovery device, belonging to the field of construction waste recycling, including a support base, an assembly table and a compression device. The support base includes a first discharge port, a filter screen, a guide plate, a second discharge port and a main seat body. A grille groove is provided on the assembly table. The compression device includes a warehouse door, a compression warehouse, a top pressing plate, a first hydraulic rod, a top pressing strip, a baffle cover, a second hydraulic rod, a door lock, a feed inlet and a third hydraulic pressure. By controlling the third hydraulic rod to drive the top pressing strip on the side of the compression warehouse to eject, the metal in the compression warehouse can be bent. Since the top pressing strip is arranged along the moving direction of the top pressing plate, it is more convenient for compression, increasing the compression rate. The compressed metal blocks will have a certain wave shape, which can better hold or adhere to each other, reducing the loose situation during handling after compression. The setting of the bottom grille groove and the baffle cover enables the falling gravel, cement or metals with large size differences to be discharged from the grille groove, further ensuring the compression rate and effect.
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Description

Technical Field

[0001] The present invention belongs to the field of construction waste recycling, and particularly relates to a construction metal waste recycling and regeneration device. Background Art

[0002] Construction waste refers to the general term of muck, waste concrete, waste bricks and stones and other wastes generated in the production activities of the construction industry such as demolition, construction, decoration, and repair. Classified by composition, construction waste can be divided into muck, concrete blocks, crushed stones, brick and tile fragments, waste mortar, slurry, asphalt blocks, waste plastics, waste metals, waste bamboo and wood, etc. In order to reduce the environmental pollution caused by the random stacking of construction waste and increase the utilization rate of renewable resources, it is often necessary to recycle construction waste. When traditional construction metal waste is recycled, in order to facilitate the transportation of metal waste, the metal waste will be compressed. However, the existing compression equipment only simply presses the metal into blocks. Since construction metal waste often contains difficult-to-compress objects such as steel bars, and at the same time the sizes of the metal waste after demolition are also different, traditional compression equipment requires a large amount of power to achieve good compression. After compression, the void ratio is high, the compressibility is poor, and it is also easy to become loose, which is not convenient for subsequent handling. Summary of the Invention

[0003] (1) Technical Problems to be Solved

[0004] In order to overcome the deficiencies of the prior art, the present invention provides a construction metal waste recycling and regeneration device to solve the problem that the existing compression equipment only simply presses the metal into blocks. Since construction metal waste often contains difficult-to-compress objects such as steel bars, and at the same time the sizes of the metal waste after demolition are also different, traditional compression equipment requires a large amount of power to achieve good compression. After compression, the void ratio is high, the compressibility is poor, and it is also easy to become loose, which is not convenient for subsequent handling.

[0005] (2) Technical Solutions

[0006] The present invention is realized through the following technical solutions: The present invention provides a construction metal waste recycling and regeneration device, the structure of which includes a support base, an assembly table and a compression device. The assembly table is fixed on the top of the support base, and the compression device is assembled on the top of the assembly table;

[0007] The support base includes a first discharge port, a filter screen, a guide plate, a second discharge port and a main seat body. The first discharge port and the second discharge port are opened on the side end of the main seat body. The filter screen and the guide plate are fixedly inclined inside the main seat body. The filter screen is located above the guide plate. The lower end of the filter screen is connected to the first discharge port. The guide plate is used to guide the material sieved by the filter screen to the second discharge port;

[0008] The assembly table is provided with a grid groove;

[0009] The compression device includes a bin door, a compression bin, a top pressing plate, a first hydraulic rod, a top pressing strip, a retaining cover, a second hydraulic rod, a door lock, a feed inlet, and a third hydraulic rod. The compression bin is fixed to the top of the assembly table. The assembly table at the bottom of the compression bin has a grille slot. A bin door is provided below one side of the compression bin. One end of the bin door is hinged to the compression bin, and the other end of the bin door is locked to the compression bin through the door lock. A first hydraulic rod is assembled on the compression bin. The top pressing plate is arranged inside the compression bin. The first hydraulic rod is used to push the top pressing plate to move inside the compression bin. A feed inlet is provided on the side of the compression bin where the first hydraulic rod is assembled. Receiving grooves are evenly arranged on the inner side wall of the compression bin along the moving direction of the top pressing plate. The top pressing strip is arranged in the receiving groove. The side of the top pressing strip adjacent to the inside of the compression bin is flush with the inner wall of the compression bin. The third hydraulic rod is assembled on the compression bin. The third hydraulic rod is used to drive the top pressing strip to move inside the compression bin. One end of the retaining cover is hinged to the bottom of the assembly table. The retaining cover is used to block the grille slot of the assembly table at the bottom of the compression bin. One end of the second hydraulic rod is hinged to the bottom of the retaining cover, and the other end of the second hydraulic rod is hinged to the assembly rod. The assembly rod is fixed in the support seat.

[0010] Further, a fitting plate is fixed to the top of the retaining cover. The fitting plate is used to combine with the grille slot of the assembly table at the bottom of the compression bin. After the fitting plate is combined with the grille slot, the top is flush with the top of the assembly table.

[0011] Further, a first wear-resistant plate is fixed to the side of the top pressing plate away from the first hydraulic rod, and a second wear-resistant plate is fixed to the side of the top pressing strip away from the third hydraulic rod.

[0012] Further, the compression device further includes a first motor and a second motor. The first motor is used for controlling the opening and closing of the door lock, and the second motor is used for controlling the opening and closing of the bin door.

[0013] Further, the compression device further includes a discharge push plate and a fourth hydraulic rod. The first hydraulic rod is assembled on the top of the compression bin. The top pressing plate is arranged on the upper side inside the compression bin. The discharge push plate is arranged on the side inside the compression bin away from the bin door. The fourth hydraulic rod is assembled on the compression bin. The fourth hydraulic rod is used to drive the discharge push plate to move inside the compression bin.

[0014] Further, the compression device further includes a fixing rod. The fixing rod is used to connect the fourth hydraulic rod and the support seat.

[0015] Further, the first hydraulic rod is assembled on the side of the compression bin away from the bin door, and the top pressing plate is arranged on the side inside the compression bin away from the bin door.

[0016] Further, the compression device further includes a fixing rod. The fixing rod is used to connect the first hydraulic rod and the support seat.

[0017] Further, it further includes a pedestal, a shock pad and a vibration motor. The pedestal is arranged at the bottom of the support base. The top of the pedestal is fixedly connected to the support base through the shock pad. The vibration motor is assembled on the support base.

[0018] Further, the shock pad is made of rubber.

[0019] Further, receiving grooves are evenly arranged on both sides of the compression chamber along the moving direction of the top pressing plate, and the receiving grooves on both sides of the compression chamber are arranged staggeredly.

[0020] (III) Beneficial effects

[0021] One of the above technical solutions has the following advantages or beneficial effects:

[0022] To solve the problem that existing compression equipment simply presses metals into blocks. Since construction metal waste often contains difficult-to-compress objects such as steel bars, and the sizes of the metal waste after demolition are also different, traditional compression equipment requires a large amount of power to achieve good compression, with a high gap rate after compression, poor compressibility, and it is also easy to become loose, which is not convenient for subsequent handling. By providing a support base with a filter, combined with a compression device having top pressing strips arranged along the compression direction, and the support base at the bottom of the compression device is also provided with grid grooves, and a closable cover is provided at the bottom of the support base, when the equipment is in use:

[0023] 1. When the top pressing plate presses the waste metal in the compression chamber, by controlling the third hydraulic rod to drive the top pressing strips on the side of the compression chamber to eject, the metal in the compression chamber will be bent by a certain degree and then retracted. Since the top pressing strips are arranged along the moving direction of the top pressing plate, it is more labor-saving when the subsequent top pressing plate presses, and at the same time, the metal has a certain fixed direction of concavity and convexity during compression, which is more convenient for compression, increasing the compression rate. The compressed metal blocks will have a certain wave shape, which can better catch or adhere to each other, reducing the situation of easy loosening during subsequent handling, and facilitating subsequent recycling, handling and placement;

[0024] 2. The setting of the bottom grid grooves and the cover enables the equipment to open the cover through the second hydraulic rod, so that the crushed stones, cement, etc. that fall off during the recycling and compression of construction metals can be discharged from the grid grooves. At the same time, when metals with large size differences are mixed and compressed, the smaller metals that are not easy to be compressed together can also be discharged. When discharging, the bottom filter screen and guide plate can also filter and guide the discharged material, facilitating classified discharging, avoiding the influence of de-materialized sundries such as crushed stones or cement on compression and affecting the subsequent recycling results when stored and recycled together with the metal blocks, and at the same time, avoiding the problem of subsequent loosening and affecting the compression rate caused by the difficult compression of metals with large size differences;

[0025] 3. The device can also control the vibration of the device by providing a cushion base, shock pads and vibration motors, enabling the device to vibrate during the compression process, making the loose metal parts fit better, and allowing the fallen gravel or cement to be discharged better, and also making the subsequent sieving effect better. BRIEF DESCRIPTION OF THE DRAWINGS

[0026] Other features, objects and advantages of the present invention will become more apparent from the following detailed description of non - restrictive embodiments read in conjunction with the accompanying drawings:

[0027] Figure 1 It is a schematic cross - sectional structure diagram of Embodiment 1 of the present invention;

[0028] Figure 2 It is a schematic three - dimensional structure diagram of the present invention;

[0029] Figure 3 It is a schematic cross - sectional structure diagram of the connection between the top - pressing strip and the third hydraulic rod of the present invention;

[0030] Figure 4 It is a schematic cross - sectional structure diagram after the top - pressing strip and the cover are unfolded in Embodiment 1 of the present invention;

[0031] Figure 5 It is a schematic cross - sectional structure diagram of Embodiment 3 of the present invention;

[0032] Figure 6 It is a schematic cross - sectional structure diagram of Embodiment 5 of the present invention;

[0033] Figure 7 It is a schematic cross - sectional structure diagram of Embodiment 4 of the present invention;

[0034] In the figure: support base - 1, assembly table - 2, compression device - 3, cushion base - 4, shock pad - 5, vibration motor - 6, first discharge port - 101, filter screen - 102, guide plate - 103, second discharge port - 104, main seat body - 105, grid groove - 201, warehouse door - 301, compression chamber - 302, top - pressing plate - 303, first hydraulic rod - 304, top - pressing strip - 305, cover - 306, second hydraulic rod - 307, door lock - 308, feed inlet - 309, third hydraulic rod - 310, second wear - resistant plate - 311, first motor - 312, second motor - 313, discharge push plate - 314, fourth hydraulic rod - 315, fixed rod - 316, storage groove - 30201, first wear - resistant plate - 30301, fitting plate - 30601, assembly rod - 30701. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0035] The present invention will be further described in detail below with reference to the embodiments, but the embodiments of the present invention are not limited thereto.

[0036] Embodiment 1:

[0037] The present invention provides a building metal waste recycling and recovery device, whose structure includes a support base 1, an assembly table 2 and a compression device 3. The assembly table 2 is fixed on the top of the support base 1, and the compression device 3 is assembled on the top of the assembly table 2.

[0038] The support base 1 includes a first discharge port 101, a filter screen 102, a guide plate 103, a second discharge port 104 and a main seat body 105. The first discharge port 101 and the second discharge port 104 are opened on the side end of the main seat body 105. The filter screen 102 and the guide plate 103 are fixedly arranged obliquely inside the main seat body 105. The filter screen 102 is located above the guide plate 103. The lower end of the filter screen 102 is connected to the first discharge port 101. The guide plate 103 is used to guide the materials sieved by the filter screen 102 to the second discharge port 104.

[0039] The assembly table 2 is provided with a grid groove 201.

[0040] The compression device 3 includes a warehouse door 301, a compression warehouse 302, a top pressing plate 303, a first hydraulic rod 304, a top pressing strip 305, a baffle 306, a second hydraulic rod 307, a door lock 308, a feeding port 309 and a third hydraulic rod 310. The compression warehouse 302 is fixed on the top of the assembly table 2. The assembly table 2 at the bottom of the compression warehouse 302 has a grid groove 201. A warehouse door 301 is arranged below one side of the compression warehouse 302. One end of the warehouse door 301 is hinged to the compression warehouse 302, and the other end of the warehouse door 301 is locked to the compression warehouse 302 through the door lock 308. The first hydraulic rod 304 is assembled on the compression warehouse 302. The top pressing plate 303 is arranged inside the compression warehouse 302. The first hydraulic rod 304 is used to push the top pressing plate 303 to move inside the compression warehouse 302. A feeding port 309 is arranged on the side of the compression warehouse 302 where the first hydraulic rod 304 is assembled. Receiving grooves 30201 are uniformly arranged on the inner side wall of the compression warehouse 302 along the moving direction of the top pressing plate 303. The top pressing strip 305 is arranged inside the receiving grooves 30201. The side of the top pressing strip 305 adjacent to the inside of the compression warehouse 302 is flush with the inner wall of the compression warehouse 302. The third hydraulic rod 310 is assembled on the compression warehouse 302. The third hydraulic rod 310 is used to drive the top pressing strip 305 to move inside the compression warehouse 302. One end of the baffle 306 is hinged to the bottom of the assembly table 2. The baffle 306 is used to block the grid groove 201 at the bottom of the assembly table 2 of the compression warehouse 302. One end of the second hydraulic rod 307 is hinged to the bottom of the baffle 306, and the other end of the second hydraulic rod 307 is hinged to the assembly rod 30701. The assembly rod 30701 is fixed inside the support base 1.

[0041] Furthermore, a fitting plate 30601 is fixed on the top of the blocking cover 306 , and the fitting plate 30601 is used to be combined with the grille groove 201 of the assembly platform 2 at the bottom of the compression chamber 302 . After the fitting plate 30601 is combined with the grille groove 201 , the top is flush with the top of the assembly platform 2 .

[0042] Furthermore, a first wear-resistant plate 30301 is fixed to the side of the top pressure plate 303 away from the first hydraulic rod 304 , and a second wear-resistant plate 311 is fixed to the side of the top pressure strip 305 away from the third hydraulic rod 310 .

[0043] Furthermore, the compression bin 302 is evenly provided with receiving grooves 30201 on both sides along the moving direction of the top pressure plate 303, and the receiving grooves 30201 on both sides of the compression bin 302 are staggered.

[0044] When in use, construction metal waste can be put into the compression bin 302 from the feed port 309. When putting in, ensure that the top pressure plate 303 and the top pressure strip 305 are in a retracted state, and make the bin door 301 and the baffle cover 306 in a closed state. After a certain amount of construction metal waste is put in, the first hydraulic rod 304 can be controlled to drive the top pressure plate 303 to perform compression. In this process, in order to increase the compression rate and reduce the force required for compression, the top pressure strip 305 can be driven by the third hydraulic rod 310 to press the side of the compression direction of the metal waste, so that the side of the metal waste is bent and then retracted, thereby making the subsequent top pressure plate 303 more labor-saving. At the same time, the concave and convex of the metal when compressed have a certain fixed direction, which is more convenient for compression and increases the compression rate. The compressed metal blocks will have a certain wave shape, which can better get stuck or stick to each other, reduce the situation that it is easy to loosen during transportation after compression, and facilitate subsequent recycling, transportation and placement.

[0045] At the same time, during the compression process, the grille slot 201 at the bottom of the compression chamber 302 can be opened by controlling the second hydraulic rod 307, so that the crushed stone or cement that falls off during the compression process in the compression chamber 302 can be discharged from the grille slot 201. When metals with large size differences are compressed, smaller metals that are not easy to compress together can also be discharged. During discharge, the filter screen 102 and the guide plate 103 provided on the support seat 1 can also filter and guide the discharge, which is convenient for classified discharge, avoiding the impact of crushed stone or cement and other debris on compression and storage and recycling with metal blocks, affecting subsequent recycling results, and also avoiding the problem of subsequent loosening and compression rate affecting after metals with large size differences are difficult to compress.

[0046] Embodiment 2:

[0047] Compared with the first embodiment, the compression device 3 in this embodiment further includes a first motor 312 and a second motor 313. The first motor 312 is used for controlling the opening and closing of the door lock 308, and the second motor 313 is used for controlling the opening and closing of the bin door 301. When the device is in use, the opening and closing of the bin door 301 of the compression device 3 can be automatically controlled, eliminating the need for manual opening.

[0048] Embodiment Three:

[0049] Compared with the previous embodiments, the compression device 3 in this embodiment further includes a discharge push plate 314 and a fourth hydraulic rod 315. The first hydraulic rod 304 is assembled at the top of the compression bin 302, the top pressing plate 303 is arranged on the upper side inside the compression bin 302, the discharge push plate 314 is arranged on the side of the compression bin 302 away from the bin door 301, the fourth hydraulic rod 315 is assembled on the compression bin 302, and the fourth hydraulic rod 315 is used to drive the discharge push plate 314 to move inside the compression bin 302.

[0050] Furthermore, the compression device 3 further includes a fixing rod 316, and the fixing rod 316 is used to connect the fourth hydraulic rod 315 and the support base 1.

[0051] When this embodiment is in use, it adopts a compression method from top to bottom, combined with the discharge push plate 314 that pushes towards the outlet side, enabling the device to automatically compress construction waste. After compression is completed, the compression bin door 301 can be electrically controlled to open, and then the first hydraulic rod 304 drives the discharge push plate 314 to automatically discharge materials, realizing the function of automatic compression and discharge. Compressing from top to bottom ensures that the bin door 301 does not bear too much force during compression, making the structure more stable.

[0052] Embodiment Four:

[0053] Compared with Embodiment Three, in this embodiment, the first hydraulic rod 304 is assembled on the side of the compression bin 302 away from the bin door 301, and the top pressing plate 303 is arranged on the side of the compression bin 302 away from the bin door 301.

[0054] Furthermore, the compression device 3 further includes a fixing rod 316, and the fixing rod 316 is used to connect the first hydraulic rod 304 and the support base 1.

[0055] When this embodiment is in use, it adopts a side-pushing compression method. Compared with Embodiment Three, the structure of the top hydraulic rod and the push plate structure can be omitted. During automatic discharging, the material can be directly pushed out by the top pressing plate 303, reducing the height of the device, but increasing the lateral length of the device to a certain extent, and at the same time increasing the force on the bin door 301.

[0056] Embodiment Five:

[0057] Compared with the foregoing embodiments, this embodiment further includes a pedestal 4, a shock pad 5, and a vibration motor 6. The pedestal 4 is provided at the bottom of the support base 1. The top of the pedestal 4 is fixedly connected to the support base 1 through the shock pad 5. The vibration motor 6 is assembled on the support base 1.

[0058] Further, the shock pad 5 is made of rubber.

[0059] When this embodiment is in use, the vibration motor 6 can be used to vibrate the compression bin 302 and the support base 1 of the device on the pedestal 4, so that the loose metal parts can fit better, and the fallen gravel or cement can be better discharged, and the subsequent sieving effect of the discharge is also better.

[0060] In the description of the present invention, it should be noted that the orientation or positional relationship indicated by the terms "upper", "lower", "left", "right", etc. is based on the orientation or positional relationship shown in the drawings. It is only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of the present invention.

[0061] The control mode of the present invention is controlled by manually starting and closing the switch. The wiring diagram of the power element and the power supply are common knowledge in the art. And the present invention is mainly used to protect mechanical devices, so the control mode and wiring arrangement of the present invention will not be explained in detail.

[0062] The above shows and describes the basic principles, main features and advantages of the present invention. For those skilled in the art, it is obvious that the present invention is not limited to the details of the above exemplary embodiments, and can be implemented in other specific forms without departing from the spirit or basic features of the present invention. Therefore, in any aspect, the embodiments should be regarded as exemplary and non-limiting. The scope of the present invention is defined by the appended claims rather than the above description. Therefore, all changes falling within the meaning and scope of the equivalent elements of the claims are intended to be included in the present invention. Any reference signs in the claims should not be regarded as limiting the claimed claim.

[0063] In addition, it should be understood that although this specification is described according to embodiments, not every embodiment only contains an independent technical solution. This narrative way of the specification is only for clarity. Those skilled in the art should regard the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.

Claims

1. A building metal waste recycling and recovery device, whose structure includes a support base (1), an assembly table (2) and a compression device (3). The support base (1) is fixedly provided with the assembly table (2) at the top, and the compression device (3) is assembled on the top of the assembly table (2); It is characterized in that: The support base (1) includes a first discharge port (101), a filter screen (102), a guide plate (103), a second discharge port (104) and a main seat body (105). The first discharge port (101) and the second discharge port (104) are opened at the side end of the main seat body (105). The filter screen (102) and the guide plate (103) are fixedly inclined inside the main seat body (105). The filter screen (102) is located above the guide plate (103). The lower end of the filter screen (102) is connected to the first discharge port (101). The guide plate (103) is used to guide the materials sieved by the filter screen (102) to the second discharge port (104); The assembly table (2) is provided with a grid slot (201); The compression device (3) includes a warehouse door (301), a compression warehouse (302), a top pressing plate (303), a first hydraulic rod (304), a top pressing strip (305), a baffle (306), a second hydraulic rod (307), a door lock (308), a feed inlet (309) and a third hydraulic rod (310). The compression warehouse (302) is fixed on the top of the assembly table (2). The assembly table (2) at the bottom of the compression warehouse (302) has a grid slot (201). A warehouse door (301) is provided below one side of the compression warehouse (302). One end of the warehouse door (301) is hinged to the compression warehouse (302), and the other end of the warehouse door (301) is locked to the compression warehouse (302) through the door lock (308). The first hydraulic rod (304) is assembled on the compression warehouse (302). The top pressing plate (303) is arranged inside the compression warehouse (302). The first hydraulic rod (304) is used to push the top pressing plate (303) to move inside the compression warehouse (302). A feed inlet (309) is provided on the side of the compression warehouse (302) where the first hydraulic rod (304) is assembled. The inner side wall of the compression warehouse (302) is evenly provided with storage grooves (30201) along the moving direction of the top pressing plate (303). The top pressing strip (305) is arranged in the storage grooves (30201). The side of the top pressing strip (305) adjacent to the inside of the compression warehouse (302) is flush with the inner wall of the compression warehouse (302). The third hydraulic rod (310) is assembled on the compression warehouse (302). The third hydraulic rod (310) is used to drive the top pressing strip (305) to move inside the compression warehouse (302). One end of the baffle (306) is hinged to the bottom of the assembly table (2). The baffle (306) is used to block the grid slot (201) of the assembly table (2) at the bottom of the compression warehouse (302). One end of the second hydraulic rod (307) is hinged to the bottom of the baffle (306), and the other end of the second hydraulic rod (307) is hinged to the assembly rod (30701). The assembly rod (30701) is fixed inside the support base (1); The compression device (3) further includes a discharge push plate (314) and a fourth hydraulic rod (315). The first hydraulic rod (304) is assembled at the top of the compression chamber (302), the top pressing plate (303) is arranged on the upper side inside the compression chamber (302), the discharge push plate (314) is arranged on the side of the compression chamber (302) away from the chamber door (301), the fourth hydraulic rod (315) is assembled on the compression chamber (302), and the fourth hydraulic rod (315) is used to drive the discharge push plate (314) to move inside the compression chamber (302). The compression device (3) further includes a fixed rod (316), and the fixed rod (316) is used to connect the fourth hydraulic rod (315) and the support base (1).

2. The construction metal waste recycling and recovery equipment according to claim 1, characterized in that: A fitting plate (30601) is fixed to the top of the cover (306). The fitting plate (30601) is used to combine with the grid slot (201) of the assembly table (2) at the bottom of the compression chamber (302). After the fitting plate (30601) and the grid slot (201) are combined, the top is flush with the top of the assembly table (2).

3. An architectural metal waste recycling and recovery device according to claim 1, characterized in that: A first wear-resistant plate (30301) is fixed to the side of the top pressing plate (303) away from the first hydraulic rod (304), and a second wear-resistant plate (311) is fixed to the side of the top pressing strip (305) away from the third hydraulic rod (310).

4. A building metal waste recycling and recovery device according to claim 1, characterized in that: The compression device (3) further includes a first motor (312) and a second motor (313). The first motor (312) is used for the opening and closing control of the door lock (308), and the second motor (313) is used for the opening and closing control of the chamber door (301).

5. An architectural metal waste recycling and recovery device according to claim 1, characterized in that: It further includes a cushion seat (4), a shock-absorbing pad (5) and a vibration motor (6). The cushion seat (4) is arranged at the bottom of the support base (1). The top of the cushion seat (4) is fixedly connected to the support base (1) through the shock-absorbing pad (5), and the vibration motor (6) is assembled on the support base (1).

6. The recycling equipment for construction metal waste according to claim 1, characterized in that: Receiving grooves (30201) are evenly arranged on both sides of the compression chamber (302) along the moving direction of the top pressing plate (303), and the receiving grooves (30201) on both sides of the compression chamber (302) are arranged staggeredly.

Citation Information

Patent Citations

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