CN214637298U - Iron remover with collection structure for building garbage disposal - Google Patents

Iron remover with collection structure for building garbage disposal Download PDF

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Publication number
CN214637298U
CN214637298U CN202023217613.0U CN202023217613U CN214637298U CN 214637298 U CN214637298 U CN 214637298U CN 202023217613 U CN202023217613 U CN 202023217613U CN 214637298 U CN214637298 U CN 214637298U
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groove
machine body
sliding
upper machine
iron remover
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CN202023217613.0U
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程珏
杨自江
蔡培源
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Taicheng Environmental Protection Technology Co ltd
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Taicheng Environmental Protection Technology Co ltd
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Abstract

The utility model relates to a building is iron remover for refuse treatment with collect structure, including lower organism and last organism, the top of organism is provided with the base groove all around, and the mid-mounting in base groove has fixed telescopic machanism down, go up the organism and connect and install in fixed telescopic machanism's top, and the middle part of the body of just operating the computer is fixed with the ferromagnetic body, the bearing bracket is installed to the top bilateral symmetry of going up the organism, and the both ends middle part of bearing bracket is provided with the screw thread group. This iron remover for building garbage treatment with collection structure is provided with the recess, the inner wall size of recess and the both ends outer wall size phase-match of embedding pole, when building garbage is carrying deironing operation, when the conveyer belt is rotatory at periodic transmission, the ferromagnet of its inside ferromagnet's bottom and conveyer belt below is inhaled mutually, thereby it stirs along with the conveyer belt is leading to rubbish to take turns together to avoid ferromagnet and ferromagnet to mix with building garbage between the two at the adsorption process as far as.

Description

Iron remover with collection structure for building garbage disposal
Technical Field
The utility model relates to a building rubbish handles technical field, specifically is a building is iron remover for refuse treatment with collect structure.
Background
Construction waste is solid waste generated during the process of building construction, reconstruction, extension or demolition. According to different generation sources of the construction waste, the construction waste and the demolished construction waste can be divided. The construction waste is solid waste generated in new construction, reconstruction or extension projects, and the demolition construction waste is construction waste generated in demolition and demolition of buildings.
The existing iron remover for treating the construction waste often can collect and place the ferromagnetic magnet after adsorbing the ferromagnetic magnet because the iron remover does not have a collection structure or the structure of the iron remover is imperfect in daily iron removal operation, so that the iron remover is prevented from being mixed and stirred with the construction waste, and the treatment operation such as recovery is convenient for a user.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a deironing ware for building garbage disposal with collect structure to the current deironing ware for building garbage disposal who proposes in solving above-mentioned background art often can have its collection place because its self does not have collect structure or the imperfection of its self structure leads to the ferromagnetic body to have after adsorbing ferromagnetic, avoids it to mix the stirring with building garbage again together, thereby the person of facilitating the use carries out the problem of handling the operation such as retrieving.
In order to achieve the above object, the utility model provides a following technical scheme: a de-ironing separator with a collecting structure for treating construction waste comprises a lower machine body and an upper machine body, wherein a base groove is formed in the peripheral end of the top of the lower machine body, a fixed telescopic mechanism is installed in the middle of the base groove, the upper machine body is connected and installed at the top end of the fixed telescopic mechanism, a ferrous magnet is fixed in the middle of the upper machine body, bearing frames are symmetrically installed on the two sides of the top end of the upper machine body, thread groups are arranged in the middles of the two ends of each bearing frame, a sliding rod is arranged in the middle of each bearing frame, a limiting frame is arranged on the right side of the top end of the upper machine body, a motor is supported above the limiting frame, a rotating shaft is connected to the top end of the motor, a belt is attached to the outer side of one end of the rotating shaft, a driven wheel is connected to the other end of the belt, a conveying belt is attached to the outer wall of the middle of the driven wheel, a protective shell is installed on the outer side of the driven wheel, grooves are symmetrically distributed on one side of the top of the upper machine body, and the middle part of recess has erect the embedding pole, the inboard fixedly connected with of embedding pole connects the scraper blade, the top of going up the organism has rings all around welded, the carriage is installed in the top left side of organism down, and the top of carriage slides and is provided with the collecting box, the right-hand member top of collecting box is provided with inlays the mouth, and the middle part activity of embedding mouth is provided with outer small opening groove, the top mid-mounting of organism has slide adjusting mechanism down, the bottom both sides of collecting box are fixed with first slider.
Preferably, the size of the inner wall of the groove is matched with the size of the outer walls of the two ends of the embedded rod, and the embedded rod is fixedly connected with the connecting scraper.
Preferably, fixed telescopic machanism is including hydraulic pressure base, hydraulic telescoping rod, connecting plate, thread groove and bolt, and hydraulic pressure base's top middle part is connected with hydraulic telescoping rod, hydraulic telescoping rod's top is provided with the connecting plate, and the both sides middle part of connecting plate is provided with the thread groove, the inner wall laminating all around of thread groove has the bolt.
Preferably, the upper machine body forms a lifting structure with the lower machine body through the hydraulic base and the hydraulic telescopic rod, and the hydraulic base and the hydraulic telescopic rod are symmetrically distributed along the vertical central axis of the upper machine body.
Preferably, the fixed telescopic mechanism forms a detachable structure with the base groove and the upper machine body through a thread groove and a bolt, and the fixed telescopic mechanism is perpendicular to the upper machine body.
Preferably, the sliding adjusting mechanism comprises a conveying bottom groove, a sliding rail, a second sliding block, a prefabricated adjusting frame, a handle and a middle plate groove, the sliding rail is attached to the two sides of the conveying bottom groove, the second sliding block is slidably arranged in the middle of the sliding rail, the prefabricated adjusting frame is fixed to the top end of the second sliding block, the handles are arranged in the middle of the two sides of the prefabricated adjusting frame, and the middle plate groove is arranged in the middle of the conveying bottom groove.
Preferably, the prefabricated adjusting frame and the second sliding block form a sliding structure through a sliding rail, and the prefabricated adjusting frame is symmetrically distributed along a vertical central axis of the conveying bottom groove.
Preferably, both sides of the middle part of the middle plate groove are distributed in a shape of a built-in groove, and one end of the prefabricated adjusting frame is connected with the inside of the middle plate groove in an embedded mode.
Preferably, the collecting box forms a sliding structure with the first sliding block through the sliding frame, and the collecting box is movably connected with the outer leakage groove through the embedding opening.
Compared with the prior art, the beneficial effects of the utility model are as follows:
1. the utility model has the advantages that through the arrangement of the groove, the embedded rod and the connecting scraper, the size of the inner wall of the groove is matched with the size of the outer walls at the two ends of the embedded rod, when the construction waste is conveyed for deironing operation and the conveyor belt rotates in a periodic transmission way, the bottom end of the internal ferromagnetic body is attracted with the ferromagnetic body below the conveyor belt, in order to avoid building rubbish mixed between the ferromagnetic body and the ferromagnetic body in the adsorption process as much as possible, which causes the stirring of the rubbish along with the conveyor belt and brings unavoidable troubles to the iron removal operation, a user can transversely erect the embedded rod in the grooves at the two sides of the upper machine body, and embedding pole and connecting scraper blade are fixed connection between the two, and connecting scraper blade is the arch of protrusion and distributes the top and just in time laminate mutually with the left side table wall of conveyer belt, plays the beneficial effect of separation building rubbish as far as.
2. The utility model discloses an go up the organism, hydraulic pressure base, the setting of hydraulic telescoping rod and organism down, it constitutes elevation structure through hydraulic pressure base and hydraulic telescoping rod and organism down to operate the organism, when the user carries out the deironing operation, carry out rubbish and carry in order to be applicable to the rubbish conveyer belt of various types of various size patterns, user's accessible hydraulic pressure base and hydraulic telescoping rod its hydraulic pressure elevation structure that constitutes between the two adjust the organism of operating the computer and the size between the organism down this moment, and hydraulic pressure base and hydraulic telescoping rod are along the vertical axis symmetric distribution of last organism, when the organism carries out the operation of going up and down, can guarantee the equilibrium and the steadiness at its both ends as far as possible.
3. The utility model discloses a prefabricated alignment jig, a slide rail, the setting of second slider and transport kerve, prefabricated alignment jig passes through the slide rail and constitutes sliding structure with the second slider, lower organism middle part is provided with the transport kerve, in daily building rubbish processing, the user can set up the rubbish conveyer belt in the top of transport kerve, can avoid building rubbish bad phenomena such as rubbish edge leakage to appear in its both sides of carrying adsorption process, and user's accessible slide rail and second slider sliding structure that constitutes between the two adjust the prefabricated alignment jig of both sides, the width size that can be applicable to various conveyer belts as far as possible, be convenient for adjust the operation to prefabricated alignment jig at any time, it is convenient to bring the deironing operation.
4. The utility model discloses a setting of middle part board groove and prefabricated alignment jig, the middle part both sides of middle part board groove are built-in trough-like distribution, when the prefabricated alignment jig of both sides carries out the slide adjusting size of relativity, thereby to avoid the mixed rubbish that appears in its middle part fretwork and lead to on the conveyer belt jolt uneven bad phenomenon on the way of transportation, the middle part of carrying the kerve this moment is fixed with middle part board groove, and the one end of prefabricated alignment jig constitutes embedded being connected with the inside of middle part board groove, when the width size of rubbish conveyer belt is not temporary, the person of facilitating the use carries out the relative regulation operation to it.
5. The utility model discloses a collecting box, the carriage, first slider, inlay the entry and the setting of outer leaky trough, the collecting box passes through the carriage and constitutes sliding structure with first slider, when construction waste when carrying the deironing operation, ferromagnet that contains in the rubbish conveyer belt will adsorb it to the bottom surface through the absorption of ferroic magnet, and when it transports one section distance when being partial to the positioning distance of ferroic magnet, then can lose the adsorption affinity because disappearance of its bearing capacity and fall into the outer leaky trough that installs additional below, fall into terminal collection box through the gradient of its all inner walls afterwards, user's accessible carriage and first slider its sliding structure that constitutes between the two pull out the collecting box or impel after finishing when collecting, thereby the clearance operation for the user has brought the agility.
Drawings
FIG. 1 is a schematic structural view of the iron remover for treating construction waste with a collecting structure according to the present invention in a front assembled state;
FIG. 2 is a schematic view of the front structure of the upper body of the iron remover for treating construction wastes with a collecting structure according to the present invention;
FIG. 3 is a schematic top view of the top of the upper body of the iron remover for construction waste disposal with a collecting structure according to the present invention;
FIG. 4 is a schematic top view of the top of the lower body of the iron remover for construction waste disposal with a collecting structure according to the present invention;
fig. 5 is a schematic view of a part a of the enlarged structure in fig. 3 of the iron remover for treating construction waste with a collecting structure of the present invention.
In the figure: 1. a lower machine body; 2. a base groove; 3. fixing a telescopic mechanism; 301. a hydraulic base; 302. a hydraulic telescopic rod; 303. a connecting plate; 304. a thread groove; 305. a bolt; 4. mounting the machine body; 5. a ferromagnetic body; 6. a bearing bracket; 7. a thread group; 8. a slide bar; 9. a limiting frame; 10. a motor; 11. a rotating shaft; 12. a belt; 13. a driven wheel; 14. a conveyor belt; 15. a protective shell; 16. a groove; 17. an embedded rod; 18. connecting a scraper plate; 19. a hoisting ring; 20. a slide adjustment mechanism; 2001. a conveying bottom groove; 2002. a slide rail; 2003. a second slider; 2004. prefabricating an adjusting frame; 2005. a handle; 2006. a middle plate groove; 21. a carriage; 22. a first slider; 23. a collection box; 24. embedding an inlet; 25. and a leakage groove is arranged outside.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Referring to fig. 1-5, the present invention provides a technical solution: a de-ironing separator with a collecting structure for treating construction waste comprises a lower machine body 1, a base groove 2, a fixed telescopic mechanism 3, a hydraulic base 301, a hydraulic telescopic rod 302, a connecting plate 303, a thread groove 304, a bolt 305, an upper machine body 4, a ferromagnetic magnet 5, a bearing frame 6, a thread group 7, a slide rod 8, a limiting frame 9, a motor 10, a rotating shaft 11, a belt 12, a driven wheel 13, a conveyor belt 14, a protective shell 15, a groove 16, an embedded rod 17, a connecting scraper 18, a hanging ring 19, a sliding adjusting mechanism 20, a conveying bottom groove 2001, a slide rail 2002, a second slide block 2003, a prefabricated adjusting frame 2004, a handle 2005, a middle plate groove 2006, a slide frame 21, a first slide block 22, a collecting box 23, an embedding opening 24 and an outer leakage groove 25, wherein the base groove 2 is arranged at the peripheral end of the top of the lower machine body 1, the fixed telescopic mechanism 3 is arranged at the middle of the base groove 2, the upper machine body 4 is connected and arranged at the top end of the fixed telescopic mechanism 3, a ferromagnetic magnet 5 is fixed in the middle of the upper machine body 4, bearing frames 6 are symmetrically installed on two sides of the top end of the upper machine body 4, thread groups 7 are arranged in the middles of two ends of each bearing frame 6, a slide rod 8 is arranged in the middle of each bearing frame 6, a limiting frame 9 is arranged on the right side of the top end of the upper machine body 4, a motor 10 is supported above each limiting frame 9, a rotating shaft 11 is connected to the top end of each motor 10, a belt 12 is attached to the outer side of one end of each rotating shaft 11, a driven wheel 13 is connected to the other end of each belt 12, a conveyor belt 14 is attached to the outer wall of the middle of each driven wheel 13, a protective shell 15 is installed on the outer side of each driven wheel 13, grooves 16 are symmetrically distributed on one side of the top of the upper machine body 4, an embedded rod 17 is erected in the middle of each groove 16, a connecting scraper 18 is fixedly connected to the inner side of each embedded rod 17, lifting rings 19 are welded around the top end of the upper machine body 4, and a sliding frame 21 is installed on the left side of the top end of the lower machine body 1, and the top of carriage 21 slides and is provided with collecting box 23, and the right-hand member top of collecting box 23 is provided with inlays mouthful 24, and the middle part activity of embedding mouthful 24 is provided with outer leaky trough 25, and the top mid-mounting of lower organism 1 has slide adjusting mechanism 20, and the bottom both sides of collecting box 23 are fixed with first slider 22.
The size of the inner wall of the groove 16 is matched with the size of the outer walls of the two ends of the embedded rod 17, the embedded rod 17 is fixedly connected with the connecting scraper 18, when the construction waste is transported for deferrization, when the conveyor belt 14 rotates in a periodic transmission way, the bottom end of the internal ferromagnetic body 5 is attracted with the ferromagnetic body under the conveyor belt 14, in order to avoid building rubbish between the ferromagnetic body and the ferromagnetic body 5 in the adsorption process as much as possible, thereby causing the rubbish to be stirred along with the conveyor belt 14, bringing inevitable trouble to the iron removing operation, and a user can transversely erect the embedded rod 17 on the grooves 16 at the two sides of the upper machine body 4, the embedded rod 17 and the connecting scraper 18 are fixedly connected, and the top end of the connecting scraper 18 in a protruding arc distribution is just attached to the left surface wall of the conveyor belt 14, so that the beneficial effect of blocking construction waste is achieved as much as possible;
the fixed telescopic mechanism 3 comprises a hydraulic base 301, a hydraulic telescopic rod 302, a connecting plate 303, thread grooves 304 and bolts 305, the hydraulic telescopic rod 302 is connected to the middle of the top end of the hydraulic base 301, the connecting plate 303 is arranged at the top end of the hydraulic telescopic rod 302, the thread grooves 304 are arranged in the middle of two sides of the connecting plate 303, the bolts 305 are attached to the peripheral inner walls of the thread grooves 304, the upper machine body 4 forms a lifting structure with the hydraulic telescopic rod 302 and the lower machine body 1 through the hydraulic base 301, the hydraulic base 301 and the hydraulic telescopic rod 302 are symmetrically distributed along the vertical central axis of the upper machine body 4, when a user carries out iron removal operation, in order to be suitable for carrying out garbage conveying on garbage conveying belts of various types of sizes, at the moment, the user can adjust the size between the upper machine body 4 and the lower machine body 1 through the hydraulic lifting structure formed between the hydraulic base 301 and the hydraulic telescopic rod 302, the hydraulic base 301 and the hydraulic telescopic rod 302 are symmetrically distributed along the vertical central axis of the upper machine body 4, so that when the upper machine body 4 is lifted, the balance and stability of the two ends of the upper machine body can be ensured as much as possible;
the fixed telescopic mechanism 3 forms a detachable structure with the base groove 2 and the upper machine body 4 through a thread groove 304 and a bolt 305, and the fixed telescopic mechanism 3 is vertical to the upper machine body 4, the top end of the fixed telescopic mechanism 3 is fixed at the bottom of the upper machine body 4 through the threaded connection formed by the threaded groove 304 and the bolt 305, so as to increase the connection strength among the upper machine body 4, the fixed telescopic mechanism 3 and the lower machine body 1, however, when the erection requirement of the garbage conveying mechanism is too high or the difficulty is large, the user can use the hanging chain to lift the hanging ring 19 and the upper machine body 4 through the welding connection between the hanging ring and the upper machine body to carry out iron removal operation, the fixed telescopic mechanism 3 can be detached as conveniently as possible by a user through the thread groove 304 and the bolt 305, the user can conveniently switch the state of the upper machine body 4 at any time according to the building environment, and convenience is brought to the user;
the sliding adjusting mechanism 20 comprises a conveying bottom groove 2001, a sliding rail 2002, a second sliding block 2003, a prefabricated adjusting frame 2004, a handle 2005 and a middle plate groove 2006, the sliding rail 2002 is attached to two sides of the conveying bottom groove 2001, the second sliding block 2003 is arranged in the middle of the sliding rail 2002 in a sliding mode, the prefabricated adjusting frame 2004 is fixed to the top end of the second sliding block 2003, the handle 2005 is arranged in the middle of two sides of the prefabricated adjusting frame 2004, the middle plate groove 2006 is arranged in the middle of the conveying bottom groove 2001, the prefabricated adjusting frame 2004 and the second sliding block 2003 form a sliding structure through the sliding rail 2002, the prefabricated adjusting frame 2004 is symmetrically distributed along the vertical central axis of the conveying bottom groove 2001, the conveying bottom groove 2001 is arranged in the middle of the lower machine body 1, in daily building garbage treatment, a user can set up a garbage conveying belt above the conveying bottom groove 2001, and can avoid the adverse phenomena of side leakage and the like of the two sides of the building garbage during conveying and adsorption processes, in addition, a user can adjust the prefabricated adjusting frames 2004 on two sides through a sliding structure formed between the sliding rail 2002 and the second sliding block 2003, so that the prefabricated adjusting frames can be applied to the width sizes of various conveying belts as far as possible, the prefabricated adjusting frames 2004 can be conveniently adjusted at any time, and convenience is brought to iron removal;
the two sides of the middle part of the middle plate groove 2006 are distributed in a built-in groove shape, one end of the prefabricated adjusting frame 2004 and the inside of the middle plate groove 2006 form embedded connection, when the prefabricated adjusting frames 2004 on the two sides relatively slide and adjust the size, in order to avoid the bad phenomenon that the mixed garbage on the conveying belt jolts and is uneven in the conveying process due to the fact that the middle part of the prefabricated adjusting frame 2004 is hollowed out, the middle part of the conveying bottom groove 2001 is fixed with the middle plate groove 2006 at the moment, one end of the prefabricated adjusting frame 2004 and the inside of the middle plate groove 2006 form embedded connection, and when the width size of the garbage conveying belt is not the same, a user can conveniently adjust the garbage conveying belt in a relative mode;
the collecting box 23 forms a sliding structure through the sliding frame 21 and the first sliding block 22, and the collecting box 23 is movably connected with the outer leakage groove 25 through the embedding opening 24, when the construction waste is conveyed for deironing operation, ferromagnetic bodies contained in the waste conveying belt are adsorbed to the bottom end surface through the adsorption of the ferromagnetic bodies 5, when the construction waste is conveyed for a distance deviating from the positioning distance of the ferromagnetic bodies 5, the ferromagnetic bodies lose the adsorption force due to the disappearance of the bearing force and fall into the outer leakage groove 25 additionally arranged below the ferromagnetic bodies, and then fall into the collecting box 23 at the tail end through the inclination of the inner wall of the periphery of the ferromagnetic bodies, after the collection is finished, a user can pull out or push in the collecting box 23 through the sliding structure formed between the sliding frame 21 and the first sliding block 22, so that the cleaning operation of the user is facilitated.
The working principle of the embodiment is as follows: in the iron remover with the collection structure for treating the construction waste, when a user treats the daily construction waste, a waste conveying belt can be erected above the conveying bottom groove 2001, so that the adverse phenomena of side leakage and the like of the construction waste on two sides in the conveying and adsorbing process can be avoided, the user can adjust the prefabricated adjusting frames 2004 on two sides through a sliding structure formed between the sliding rail 2002 and the second sliding block 2003, the iron remover can be suitable for the width sizes of various conveying belts as much as possible, the prefabricated adjusting frames 2004 can be conveniently adjusted at any time, and meanwhile, in order to be suitable for the waste conveying belts with various sizes and styles, the user can adjust the size between the upper machine body 4 and the lower machine body 1 through a hydraulic lifting structure formed between the hydraulic base 301 and the hydraulic telescopic rod 302, and the hydraulic base 301 and the hydraulic telescopic rod 302 are symmetrically distributed along the vertical central axis of the upper machine body 4, when the upper machine body 4 is used for lifting operation, the balance and the stability of the two ends of the upper machine body can be ensured as far as possible, and in order to avoid the trouble caused by the fact that building garbage is mixed between the ferromagnetic body and the ferromagnetic body 5 in the adsorption process as far as possible, the garbage is stirred together with the conveyor belt 14 to carry out iron removal operation, a user can transversely erect the embedded rod 17 in the grooves 16 on the two sides of the upper machine body 4, the embedded rod 17 is fixedly connected with the connecting scraper 18, the connecting scraper 18 is in a protruding arc shape, the top end of the protruding arc distribution is just attached to the left side surface wall of the conveyor belt 14, and the beneficial effect of blocking the building garbage is achieved as far as possible.
Although the present invention has been described in detail with reference to the foregoing embodiments, it will be apparent to those skilled in the art that modifications may be made to the embodiments or portions thereof without departing from the spirit and scope of the invention.

Claims (9)

1. The utility model provides a building is iron remover for refuse treatment with collect structure, includes organism (1) and last organism (4) down, its characterized in that: the top peripheral end of the lower machine body (1) is provided with a base groove (2), the middle of the base groove (2) is provided with a fixed telescopic mechanism (3), the upper machine body (4) is connected and installed at the top end of the fixed telescopic mechanism (3), the middle of the upper machine body (4) is fixed with an iron magnet (5), bearing frames (6) are symmetrically installed at the two sides of the top end of the upper machine body (4), thread groups (7) are arranged in the middle of the two ends of each bearing frame (6), a sliding rod (8) is arranged in the middle of each bearing frame (6), a limiting frame (9) is arranged on the right side of the top end of the upper machine body (4), a motor (10) is supported above each limiting frame (9), the top end of the motor (10) is connected with a rotating shaft (11), a belt (12) is attached to the outer side of one end of the rotating shaft (11), and the other end of the belt (12) is connected with a driven wheel (13), a conveying belt (14) is attached to the outer wall of the middle part of the driven wheel (13), a protective shell (15) is installed on the outer side of the driven wheel (13), grooves (16) are symmetrically distributed on one side of the top of the upper machine body (4), an embedded rod (17) is erected in the middle of the groove (16), the inner side of the embedded rod (17) is fixedly connected with a connecting scraper (18), a hanging ring (19) is welded on the periphery of the top end of the upper machine body (4), a sliding frame (21) is installed on the left side of the top end of the lower machine body (1), a collecting box (23) is arranged above the sliding frame (21) in a sliding way, an embedded inlet (24) is arranged at the top of the right end of the collecting box (23), an outer leakage groove (25) is movably arranged in the middle of the embedding opening (24), a sliding adjusting mechanism (20) is arranged in the middle of the top end of the lower machine body (1), and first sliding blocks (22) are fixed on two sides of the bottom end of the collecting box (23).
2. The iron remover for construction waste disposal having collecting structure according to claim 1, wherein: the size of the inner wall of the groove (16) is matched with the size of the outer walls of the two ends of the embedded rod (17), and the embedded rod (17) is fixedly connected with the connecting scraper (18).
3. The iron remover for construction waste disposal having collecting structure according to claim 1, wherein: fixed telescopic machanism (3) are including hydraulic base (301), hydraulic telescoping rod (302), connecting plate (303), thread groove (304) and bolt (305), and the top middle part of hydraulic base (301) is connected with hydraulic telescoping rod (302), the top of hydraulic telescoping rod (302) is provided with connecting plate (303), and the both sides middle part of connecting plate (303) is provided with thread groove (304), the inner wall laminating all around of thread groove (304) has bolt (305).
4. The iron remover for construction waste disposal having collecting structure of claim 3, wherein: the upper machine body (4) forms a lifting structure with the lower machine body (1) through the hydraulic base (301), the hydraulic telescopic rods (302) and the hydraulic base (301) are symmetrically distributed along the vertical central axis of the upper machine body (4).
5. The iron remover for construction waste disposal having collecting structure of claim 3, wherein: the fixed telescopic mechanism (3) forms a detachable structure with the base groove (2) and the upper machine body (4) through a thread groove (304) and a bolt (305), and the fixed telescopic mechanism (3) is perpendicular to the upper machine body (4).
6. The iron remover for construction waste disposal having collecting structure according to claim 1, wherein: the sliding adjusting mechanism (20) comprises a conveying bottom groove (2001), a sliding rail (2002), a second sliding block (2003), a prefabricated adjusting frame (2004), a handle (2005) and a middle plate groove (2006), the sliding rail (2002) is attached to two sides of the conveying bottom groove (2001), the second sliding block (2003) is arranged in the middle of the sliding rail (2002) in a sliding mode, the prefabricated adjusting frame (2004) is fixed to the top end of the second sliding block (2003), the handle (2005) is arranged in the middle of two sides of the prefabricated adjusting frame (2004), and the middle plate groove (2006) is installed in the middle of the conveying bottom groove (2001).
7. The iron remover for construction waste disposal having collecting structure of claim 6, wherein: the prefabricated adjusting frames (2004) form a sliding structure through the sliding rails (2002) and the second sliding blocks (2003), and the prefabricated adjusting frames (2004) are symmetrically distributed along the vertical central axis of the conveying bottom groove (2001).
8. The iron remover for construction waste disposal having collecting structure of claim 6, wherein: the two sides of the middle part of the middle plate groove (2006) are distributed in a shape of a built-in groove, and one end of the prefabricated adjusting frame (2004) is connected with the inside of the middle plate groove (2006) in an embedded mode.
9. The iron remover for construction waste disposal having collecting structure according to claim 1, wherein: the collecting box (23) and the first sliding block (22) form a sliding structure through the sliding frame (21), and the collecting box (23) is movably connected with the outer leakage groove (25) through the embedding opening (24).
CN202023217613.0U 2020-12-28 2020-12-28 Iron remover with collection structure for building garbage disposal Active CN214637298U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202023217613.0U CN214637298U (en) 2020-12-28 2020-12-28 Iron remover with collection structure for building garbage disposal

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Application Number Priority Date Filing Date Title
CN202023217613.0U CN214637298U (en) 2020-12-28 2020-12-28 Iron remover with collection structure for building garbage disposal

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Publication Number Publication Date
CN214637298U true CN214637298U (en) 2021-11-09

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CN202023217613.0U Active CN214637298U (en) 2020-12-28 2020-12-28 Iron remover with collection structure for building garbage disposal

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113967534A (en) * 2021-11-10 2022-01-25 山西荣光能源有限公司 Iron removal device for garbage pretreatment
CN117563737A (en) * 2024-01-17 2024-02-20 云南凯瑞特工程机械设备有限公司 Construction waste treatment equipment

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113967534A (en) * 2021-11-10 2022-01-25 山西荣光能源有限公司 Iron removal device for garbage pretreatment
CN117563737A (en) * 2024-01-17 2024-02-20 云南凯瑞特工程机械设备有限公司 Construction waste treatment equipment
CN117563737B (en) * 2024-01-17 2024-03-22 云南凯瑞特工程机械设备有限公司 Construction waste treatment equipment

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