Energy-saving and environmentally friendly treatment device for construction waste

By designing a roller assembly with a rotating inner cylinder and atomizer in the building waste treatment device, the serious dust problem during the crushing of construction waste is solved, rapid dust reduction and effective dust control are achieved, and treatment efficiency and environmental protection are improved.

CN119909477BActive Publication Date: 2025-08-12杜顺岭
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Patent Information

Application Number
CN202510302188.3
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-03-14
Publication Date
2025-08-12
Estimated Expiration
2045-03-14

AI Technical Summary

Technical Problem

The dust is severe during the crushing and treatment of existing construction waste, which leads to environmental pollution. The spraying method may easily float up again after drying, which cannot effectively solve the problem of dust pollution.

Method used

A roller assembly including an outer cylinder and an inner cylinder is designed. A atomizer is provided on the top of the outer cylinder. The inner cylinder rotates and has a vibrating screen groove. Water mist is sprayed out through the atomizer to reduce dust. Combined with the separation and filtration of the vibrating screen groove of the rotating inner cylinder, it can achieve rapid dust reduction and waste removal. At the same time, the pump liquid component is used to realize the circulating spraying of clean water and sewage.

Benefits of technology

It realizes rapid dust reduction in construction waste during crushing, avoids the secondary drift of dust after drying, and reduces environmental pollution and improves treatment efficiency through circulating spraying and filtration separation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses an energy-saving and environmentally friendly treatment device for construction waste, which belongs to the technical field of garbage treatment. The device comprises a base, a filter chamber, an outer cylinder, an inner cylinder and a pump liquid component. The base is provided with a filter chamber, the outer cylinder is elastically slidably assembled on the base, a plurality of atomizers are arranged on the top of the outer cylinder, the inner cylinder is fixedly rotatably assembled in the outer cylinder, a discharge trough is arranged at one end of the inner cylinder, a vibration screen trough is also arranged at the outer wall end of the inner cylinder, and a pump liquid component is connected to one side of the filter chamber. The present invention provides a movable outer cylinder on the base and a rotating inner cylinder inside the outer cylinder, so that the construction waste residue input into the outer cylinder can be quickly reduced to dust, and the waste debris that is easy to fall off the surface of the residue can be cleared after collision, so that the dried large-block residue is not easy to generate dust. At the same time, the small-particle waste in the filter chamber can be filtered and separated, and the filtered liquid can be automatically sucked for circulated spraying.
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Description

Technical Field

[0001] The present invention belongs to the technical field of garbage disposal, and in particular relates to an energy-saving and environmentally friendly disposal device for construction waste. Background Art

[0002] Construction waste refers to all kinds of waste generated during the construction, reconstruction, expansion, demolition and decoration of buildings and damage caused by natural disasters.

[0003] The main problem in the crushing process of construction waste is excessive dust, which causes serious dust pollution in the surrounding environment. The most commonly used treatment method is spraying, which uses droplets to suppress dust dispersion. However, after the spray droplets dry, the dust will float again, causing dust pollution again. Summary of the Invention

[0004] In view of the deficiencies in the prior art, an embodiment of the present invention aims to provide an energy-saving and environmentally friendly treatment device for construction waste to solve the problems in the above-mentioned background technology.

[0005] To achieve the above object, the present invention provides the following technical solutions:

[0006] An energy-saving and environmentally friendly construction waste treatment device comprises a frame component, wherein the frame component comprises a base and a filter cavity, and the filter cavity is provided at the bottom of the base;

[0007] The drum assembly includes an outer cylinder, a water introducer, an atomizer, an inner cylinder, a discharge trough and a vibrating sieve trough. The outer cylinder is elastically slidably assembled on the base in the vertical direction. The top of the outer cylinder is fixedly provided with a water introducer. A plurality of atomizers are assembled in an array in the water introducer. The inner cylinder is assembled with a fixed axis rotation in the outer cylinder. The discharge trough is provided at one end of the inner cylinder, and a vibrating sieve trough is also provided at the outer wall end of the inner cylinder.

[0008] The feeding mechanism includes a crusher, a discharge hopper, a shaft, a first screw and a second screw. The crusher is arranged on one side of the base. The crusher is equipped with a discharge hopper at one end. The discharge hopper is fixed with a shaft, and the shaft is fixedly equipped with the first screw and the second screw.

[0009] As a further solution of the present invention, the frame component also includes a chute, a collecting trough and a discharge hopper. The chute is arranged on one side of the cavity of the filter cavity, and a collecting trough is also provided at one end of the chute. A discharge hopper is also fixedly assembled on one side of the base, and the discharge hopper is arranged close to the opening side of the outer cylinder.

[0010] As a further solution of the present invention, the drum assembly also includes a drive ring and a confluence groove, one end of the drive ring is fixedly connected to the inner cylinder, and the other end of the drive ring is rotatably assembled on the outer cylinder, the confluence groove is arranged at the bottom of the outer cylinder, and the confluence groove is matched with the filter chamber.

[0011] As a further solution of the present invention, the energy-saving and environmentally friendly treatment device for construction waste also includes a pump liquid assembly, which includes a pump barrel, a piston member, a piston rod, a first guide tube, a second guide tube, a third guide tube and a fourth guide tube. The pump barrel is fixedly arranged at one end of the outer cylinder body, and a piston member is slidably assembled in the pump barrel. The piston member divides the inner cavity of the pump barrel into two groups of independent cavities. One end of the piston member is fixedly connected to the piston rod, and the two groups of cavities are respectively connected with the first guide tube and the second guide tube and the third guide tube and the fourth guide tube. The ends of the first guide tube and the fourth guide tube are both arranged in the filter cavity, and the third guide tube is connected to a plurality of atomizers.

[0012] As a further solution of the present invention, the pump liquid assembly also includes a clean water trough, a linkage frame, a float and a water suction pipe. The clean water trough is fixedly arranged at one end of the base, and the linkage frame is slidably assembled on one side of the base along the vertical direction. One end of the linkage frame is equipped with a float, and the float is immersed in the filter cavity. The other end of the linkage frame is fixedly equipped with a water suction pipe, and the water suction pipe is immersed in the clean water trough, and the water suction pipe is connected to the second guide pipe.

[0013] As a further solution of the present invention, the energy-saving and environmentally friendly treatment device for construction waste also includes a driving assembly, which includes a driver, a first connecting arm, a second connecting arm, a central shaft, a transmission gear shaft, a secondary gear, a shaft disk, a rocker and a reciprocating member. The driver is fixedly arranged at one end of the outer cylinder, and the first connecting arm is rotatably assembled on the movable shaft of the driver, and the second connecting arm is rotatably assembled at the end of the first connecting arm. The central shaft is also rotatably assembled on the second connecting arm, and the transmission gear shaft is rotatably assembled at the end of the central shaft. The transmission gear shaft fixed axis is set at one end of the base, and the transmission gear shaft and the driver are connected by a synchronous belt transmission, one end of the secondary gear is meshed with the transmission gear shaft, and the other end of the secondary gear is coaxially fixedly assembled with a shaft disk, and a rocker is rotatably arranged on one side of the shaft disk, and the reciprocating member is slidably assembled on the base along the horizontal direction, and the reciprocating member and the rocker are rotatably connected.

[0014] As a further solution of the present invention, the driving assembly also includes a guide plate, a scraper, a water outlet and a filter plate. The guide plate is fixedly arranged on one side of the reciprocating part, and the scraper is elastically slidably assembled on the guide plate along the vertical direction. Several water outlets are also arranged at the bottom of the scraper, and a filter plate is also rotatably assembled on the water outlet.

[0015] In summary, the embodiments of the present invention have the following beneficial effects compared with the prior art:

[0016] The present invention provides a movable outer cylinder on the base and a rotating inner cylinder inside the outer cylinder, so that the construction waste residue input into the outer cylinder can be quickly reduced to dust, and the waste debris that is easy to fall off the surface of the residue can be removed after collision, so that the large pieces of residue after drying are not easy to generate dust. At the same time, small-particle waste in the filter cavity can be filtered and separated, and the filtered liquid can be automatically sucked for circulated spraying. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 This is a schematic diagram of an energy-saving and environmentally friendly treatment device for construction waste provided in one embodiment of the present invention.

[0018] Figure 2 This is a schematic structural diagram of an energy-saving and environmentally friendly construction waste treatment device provided in one embodiment of the present invention.

[0019] Figure 3 This is a side structural diagram of an energy-saving and environmentally friendly treatment device for construction waste provided in one embodiment of the present invention.

[0020] Figure 4 This is a schematic diagram of the back structure of an energy-saving and environmentally friendly treatment device for construction waste provided in one embodiment of the present invention.

[0021] Figure 5 This is a structural schematic diagram of the energy-saving and environmentally friendly treatment device for construction waste provided in one embodiment of the present invention, as shown in FIG.

[0022] Figure 6 This is a structural schematic diagram of the energy-saving and environmentally friendly treatment device for construction waste provided in one embodiment of the present invention, as shown in FIG.

[0023] Figure 7 This is a structural schematic diagram of the energy-saving and environmentally friendly treatment device for construction waste provided in one embodiment of the present invention, as shown in FIG. C.

[0024] Figure 8 This is a structural schematic diagram of the energy-saving and environmentally friendly treatment device for construction waste provided in one embodiment of the present invention, as shown in FIG. D.

[0025] Figure numbers: 1-frame component, 101-base, 102-filter chamber, 103-chute, 104-collecting tank, 105-discharging hopper, 2-drum assembly, 201-outer cylinder, 202-water guide, 203-atomizer, 204-inner cylinder, 205-discharging trough, 206-vibrating sieve trough, 207-drive ring, 208-confluence trough, 3-feeding mechanism, 301-crusher, 302-discharging hopper, 303-shaft, 304-first screw, 305-second screw, 4-pump liquid assembly, 401-pump barrel, 402-piston , 403-piston rod, 404-first guide pipe, 405-second guide pipe, 406-third guide pipe, 407-fourth guide pipe, 408-clean water trough, 409-linkage frame, 410-floating body, 411-suction pipe, 5-drive assembly, 501-driver, 502-first connecting arm, 503-second connecting arm, 504-center shaft, 505-transmission gear shaft, 506-secondary gear, 507-shaft disc, 508-rocker, 509-reciprocating member, 510-guide plate, 511-scraper, 512-water outlet, 513-filter plate. DETAILED DESCRIPTION

[0026] In order to more clearly illustrate the structural features and effects of the present invention, the present invention is described in detail below with reference to the accompanying drawings and specific embodiments.

[0027] See also Figures 1-8 In one embodiment of the present invention, an energy-saving and environmentally friendly treatment device for construction waste includes a frame member 1, the frame member 1 includes a base 101 and a filter chamber 102, the filter chamber 102 is provided at the bottom of the base 101; a drum assembly 2, the drum assembly 2 includes an outer cylinder 201, a water introducer 202, an atomizer 203, an inner cylinder 204, a discharge trough 205 and a vibration sieve trough 206, the outer cylinder 201 is elastically slidably assembled on the base 101 in the vertical direction, the water introducer 202 is fixedly provided on the top of the outer cylinder 201, and a plurality of atomizers 203 are arrayed in the water introducer 202. The outer cylinder 201 is equipped with an inner cylinder 204 on a fixed axis, and a discharge trough 205 is provided at one end of the inner cylinder 204. The outer wall end of the inner cylinder 204 is also provided with a vibration screening trough 206; the feeding mechanism 3, the feeding mechanism 3 includes a crusher 301, a discharge hopper 302, a shaft 303, a first screw 304 and a second screw 305. The crusher 301 is arranged on one side of the base 101, and a discharge hopper 302 is provided at one end of the crusher 301. The discharge hopper 302 is equipped with a shaft 303 on a fixed axis, and the shaft 303 is fixedly equipped with a first screw 304 and a second screw 305.

[0028] The pulverizer 301 is provided on one side of the device for crushing the construction waste, and the crushed residue is input into the inner part of the outer cylinder 201 along the discharge hopper 302. The middle part of the discharge hopper 302 is also provided with a shaft 303 for rotating on a fixed axis. The shaft 303 is fixedly provided with a first screw 304 and a second screw 305, and the second screw 305 is provided in the inner cavity of the inner cylinder 204. The inner cylinder 204 is also provided with an inner cylinder 204 on a fixed axis inside the outer cylinder 201. The inner cylinder 204 rotates on a fixed axis under the drive of an external driving source. During the rotation, the residue falling into the cavity of the water guide 202 is continuously turned over in the cylinder wall, and the rotation of the second screw 305 pushes the residue from the inner cavity of the inner cylinder 204 to the side of the discharge trough 205. Since the cylinder wall of the inner cylinder 204 is also provided with a plurality of vibration The sieve slot 206, so the residues continuously collide with each other during the tumbling process, causing the broken debris to pass through the vibrating sieve slot 206 and fall into the inner cavity of the outer cylinder 201. Since a water guide 202 is also provided on the top of the outer cylinder 201, a number of atomizers 203 are provided in the water guide 202, and the atomizer 203 continuously sprays water mist into the inner cavity of the outer cylinder 201. After the water mist contacts the residue, it can make the dust generated by the tumbling settle into droplets, and the droplets synchronously fall into the inner cavity of the outer cylinder 201 while following the rotation of the water guide 202, and continue to fall along the inner cavity of the outer cylinder 201 into the filter cavity 102 for recovery. At the same time, the droplets can also prevent the pores of the vibrating sieve slot 206 from being blocked during the flushing process, so that the construction waste residues input into the outer cylinder 201 can be quickly dusted, and the waste debris that is easy to fall off the surface of the residue can be removed after the collision, so that the large pieces of residue after drying are not easy to generate dust.

[0029] See also Figure 2 In a preferred embodiment of the present invention, the frame member 1 further includes a chute 103, a collecting trough 104 and a discharge hopper 105. The chute 103 is arranged on one side of the cavity of the filter cavity 102, and a collecting trough 104 is also provided at one end of the chute 103. The discharge hopper 105 is also fixedly assembled on one side of the base 101, and the discharge hopper 105 is arranged close to the opening side of the outer cylinder 201.

[0030] In actual application of this embodiment, the filter chamber 102 is used to collect small-particle waste such as fallen residues and dust droplets. The inclined groove 103 on one side of the filter chamber 102 is used to block the liquid from flowing to the side of the collection tank 104. The collection tank 104 is used to independently recover small-particle waste. The discharge hopper 105 is used to receive large-particle waste.

[0031] See also Figure 2 and Figure 5In a preferred embodiment of the present invention, the drum assembly 2 further includes a drive ring 207 and a confluence groove 208, one end of the drive ring 207 is fixedly connected to the inner cylinder 204, and the other end of the drive ring 207 is rotatably assembled on the outer cylinder 201, and the confluence groove 208 is arranged at the bottom of the outer cylinder 201, and the confluence groove 208 is matched with the filter chamber 102.

[0032] In actual application of this embodiment, the drive ring 207 is rotatably set on the outer cylinder 201 and fixedly connected to the inner cylinder 204. The discharge hopper 302 is passed through the opening on one side of the inner cylinder 204, and the diameter of the discharge hopper 302 is smaller than the diameter of the opening, so that when the outer cylinder 201 moves in the vertical direction, the discharge hopper 302 does not interfere with the inner cylinder 204. The confluence groove 208 is set on one side of the cavity bottom of the outer cylinder 201, and the two ends of the confluence groove 208 are set at an inclined surface, so that the waste in the cavity of the outer cylinder 201 flows to the confluence groove 208 under the action of gravity.

[0033] See also Figure 8 In a preferred embodiment of the present embodiment, the energy-saving and environmentally friendly treatment device for construction waste further includes a pump liquid component 4, which includes a pump barrel 401, a piston 402, a piston rod 403, a first guide tube 404, a second guide tube 405, a third guide tube 406 and a fourth guide tube 407. The pump barrel 401 is fixedly arranged at one end of the outer cylinder 201, and a piston 402 is slidably assembled in the pump barrel 401. The piston 402 divides the inner cavity of the pump barrel 401 into two groups of independent cavities. One end of the piston 402 is fixedly connected to the piston rod 403. The two groups of cavities are respectively connected with the first guide tube 404, the second guide tube 405, the third guide tube 406 and the fourth guide tube 407. The ends of the first guide tube 404 and the fourth guide tube 407 are both arranged in the filter cavity 102. The third guide tube 406 is connected to a plurality of atomizers 203.

[0034] In actual application of this embodiment, the piston member 402 arranged inside the pump barrel 401 can reciprocate in the horizontal direction under the drive of the piston rod 403, and the piston member 402 can cyclically switch the independent cavities on both sides between positive pressure and negative pressure during the reciprocating motion. When the cavity on one side of the first guide tube 404 is in a negative pressure state, the second guide tube 405 can draw clean water from the clean water tank 408 into the inner cavity of the pump barrel 401, and output the clean water along the first guide tube 404 to the filter cavity 102 when the cavity is in a positive pressure state. When the cavity on one side of the third guide tube 406 is in a negative pressure state, the fourth guide tube 407 can draw sewage from the filter cavity 102 into the pump barrel 401, and output the sewage along the third guide tube 406 to the atomizer 203 for spraying, thereby realizing the cyclic spraying of sewage and automatic replenishment of clean water.

[0035] In one case of the present embodiment, one-way check valves are provided on the first flow tube 404, the second flow tube 405, the third flow tube 406 and the fourth flow tube 407 to limit the fluid to flow in one direction along the pump barrel 401 into the first flow tube 404, to limit the fluid to flow in one direction along the second flow tube 405 into the pump barrel 401, to limit the fluid to flow in one direction along the third flow tube 406 into the atomizer 203, and to limit the fluid to flow in one direction along the fourth flow tube 407 into the pump barrel 401.

[0036] See also Figure 5 and Figure 7 In a preferred embodiment of the present invention, the pump liquid assembly 4 also includes a clean water tank 408, a linkage frame 409, a float 410 and a water suction pipe 411. The clean water tank 408 is fixedly arranged at one end of the base 101, and the linkage frame 409 is slidably assembled on one side of the base 101 along the vertical direction. One end of the linkage frame 409 is equipped with a float 410, and the float 410 is immersed in the filter cavity 102. The other end of the linkage frame 409 is fixedly equipped with a water suction pipe 411, and the water suction pipe 411 is immersed in the clean water tank 408, and the water suction pipe 411 is connected to the second guide pipe 405.

[0037] In actual application of this embodiment, the linkage frame 409 is slidably assembled on one side of the base 101 along the vertical direction, and the float 410 at one end of the linkage frame 409 is immersed in the filter chamber 102, so that the float 410 moves with the liquid level in the filter chamber 102. When the water level in the filter chamber 102 is too low, the float 410 drives the linkage frame 409 to descend synchronously during the descent process, so that the suction pipe 411 at the other end of the linkage frame 409 descends synchronously, and then the suction pipe 411 is inserted below the water surface, so that the second guide pipe 405 sucks the clean water in the clean water tank 408 into the pump barrel 401 during the suction process, and outputs it to the filter chamber 102 along the first guide pipe 404. When the liquid level in the filter chamber 102 is too high, the float 410 drives the suction pipe 411 away from the liquid surface during the rising process, so that the second guide pipe 405 sucks air into the inside of the pump barrel 401.

[0038] See also Figure 5 and Figure 6 In a preferred embodiment of the present invention, the energy-saving and environmentally friendly treatment device for construction waste further includes a driving assembly 5, which includes a driver 501, a first connecting arm 502, a second connecting arm 503, a center shaft 504, a transmission gear shaft 505, a secondary gear 506, a shaft disc 507, a rocker 508 and a reciprocating member 509. The driver 501 is fixedly arranged at one end of the outer cylinder 201, and the first connecting arm 502 is rotatably assembled on the movable shaft of the driver 501. The end of the first connecting arm 502 is rotatably assembled with the second connecting arm 503, and the second connecting arm 503 is also rotatably assembled. The drive gear 505 is fixedly mounted on one end of the base 101, and the drive gear 505 and the driver 501 are connected via a synchronous belt transmission. One end of the secondary gear 506 is meshed with the drive gear 505, and the other end of the secondary gear 506 is coaxially fixedly mounted with a shaft disc 507. A rocker 508 is rotatably mounted on one side of the shaft disc 507. The reciprocating member 509 is slidably mounted on the base 101 in a horizontal direction, and the reciprocating member 509 and the rocker 508 are rotatably connected.

[0039] In actual application of this embodiment, when the driver 501 is in the driving state, one end of the driver 501 is rotatably sleeved with a first connecting arm 502, and the end of the first connecting arm 502 is rotatably equipped with a second connecting arm 503, and an intermediate shaft 504 is rotatably equipped between the first connecting arm 502 and the second connecting arm 503. A synchronous belt is installed between the driver 501 and the intermediate shaft 504, as well as between the intermediate shaft 504 and the transmission gear shaft 505, so that when the outer cylinder 201 moves in the vertical direction, the driver 501 is always in a transmission state with the transmission gear shaft 505, and the transmission gear shaft 505 engages and drives the secondary driven gear 506 to rotate during the rotation process, so that the rocker 508 is used to drive the reciprocating member 509 to reciprocate in the horizontal direction during the synchronous rotation of the shaft disc 507, and the reciprocating member 509 is fixedly connected to the piston rod 403, thereby driving the piston rod 403 to reciprocate in the horizontal direction, so that the two cavities in the pump barrel 401 are cyclically switched between positive pressure and negative pressure states.

[0040] See also Figure 5 and Figure 6 In a preferred embodiment of the present invention, the driving assembly 5 also includes a guide plate 510, a scraper 511, a water outlet 512 and a filter plate 513. The guide plate 510 is fixedly arranged on one side of the reciprocating member 509, and the scraper 511 is elastically slidably assembled on the guide plate 510 along the vertical direction. A plurality of water outlets 512 are also arranged at the bottom of the scraper 511, and a filter plate 513 is also rotatably assembled on the water outlet 512.

[0041] In actual application of this embodiment, the reciprocating member 509 can drive the guide plate 510 to move synchronously in the horizontal direction during the reciprocating motion, and the guide plate 510 is elastically slidably equipped with a scraper 511 on one side along the vertical direction. When the scraper 511 moves toward the side of the chute 103, the filter plate 513 thereon rotates to the side of the water outlet 512 under the action of the water flow, so that the water outlet 512 is in a blocked state, and at this time, the waste in the filter chamber 102 can be removed. The scraper 511 and the filter plate 513 are pushed to continuously rise along the chute 103, and the waste is discharged along the collection trough 104. When the scraper 511 moves toward the side away from the chute 103, the filter plate 513 is pushed by the water flow to rotate to the side away from the water outlet 512, so that the water outlet 512 is in an open state, and the remaining residue in the filter chamber 102 can pass through the water outlet 512 to enter the other side, thereby circulated to push the residue to one side of the collection trough 104 for discharge.

[0042] The above embodiment of the present invention provides an energy-saving and environmentally friendly treatment device for construction waste. By arranging a movable outer cylinder 201 on the base 101 and a rotating inner cylinder 204 inside the outer cylinder 201, the construction waste residue input into the outer cylinder 201 can be quickly reduced to dust, and the waste debris that is easy to fall off the surface of the residue can be removed after collision, so that the large pieces of residue after drying are not easy to generate dust. At the same time, the small-particle waste in the filter chamber 102 can be filtered and separated, and the filtered liquid can be automatically sucked out for circulated spraying.

[0043] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions and improvements made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.

Claims

1. An energy-saving and environmentally friendly treatment device for construction waste, characterized in that: The energy-saving and environmentally friendly construction waste treatment device comprises: A frame component, the frame component includes a base and a filter cavity, and the filter cavity is provided at the bottom of the base; The drum assembly includes an outer cylinder, a water introducer, an atomizer, an inner cylinder, a discharge trough and a vibrating sieve trough. The outer cylinder is elastically slidably assembled on the base in the vertical direction. The top of the outer cylinder is fixedly provided with a water introducer. A plurality of atomizers are assembled in an array in the water introducer. The inner cylinder is assembled with a fixed axis rotation in the outer cylinder. The discharge trough is provided at one end of the inner cylinder, and a vibrating sieve trough is also provided at the outer wall end of the inner cylinder. A feeding mechanism, the feeding mechanism comprising a crusher, a discharge hopper, a shaft, a first screw and a second screw, the crusher being arranged on one side of the base, the crusher being equipped with a discharge hopper at one end, the discharge hopper being equipped with a shaft on a fixed axis, and the shaft being fixedly equipped with the first screw and the second screw; The drum assembly further includes a driving ring and a confluence groove, wherein one end of the driving ring is fixedly connected to the inner cylinder, and the other end of the driving ring is rotatably assembled on the outer cylinder, and the confluence groove is provided at the bottom of the outer cylinder, and the confluence groove is matched with the filter chamber; The energy-saving and environmentally friendly treatment device for construction waste also includes a pump liquid assembly, which includes a pump barrel, a piston, a piston rod, a first guide pipe, a second guide pipe, a third guide pipe and a fourth guide pipe. The pump barrel is fixedly arranged at one end of the outer cylinder body, and a piston is slidably assembled in the pump barrel. The piston divides the inner cavity of the pump barrel into two groups of independent cavities. One end of the piston is fixedly connected to the piston rod. The two groups of cavities are respectively connected with the first guide pipe and the second guide pipe and the third guide pipe and the fourth guide pipe. The ends of the first guide pipe and the fourth guide pipe are both arranged in the filter cavity. The third guide pipe is connected to a plurality of atomizers. The energy-saving and environmentally friendly treatment device for construction waste also includes a pump-liquid component, which also includes a clean water trough, a linkage frame, a float and a water suction pipe. The clean water trough is fixedly arranged at one end of the base, and the linkage frame is slidably assembled on one side of the base along the vertical direction. One end of the linkage frame is equipped with a float, and the float is immersed in the filter cavity. The other end of the linkage frame is fixedly equipped with a water suction pipe, and the water suction pipe is immersed in the clean water trough, and the water suction pipe is connected to the second guide pipe.

2. The energy-saving and environmentally friendly construction waste treatment device according to claim 1, characterized in that: The frame component also includes a chute, a collecting trough and a discharge hopper. The chute is arranged on one side of the cavity of the filter cavity. A collecting trough is also provided at one end of the chute. A discharge hopper is also fixedly assembled on one side of the base. The discharge hopper is arranged close to the opening side of the outer cylinder.

3. The energy-saving and environmentally friendly construction waste treatment device according to claim 1, characterized in that: The energy-saving and environmentally friendly treatment device for construction waste also includes a driving assembly, which includes a driver, a first connecting arm, a second connecting arm, a central shaft, a transmission gear shaft, a secondary gear, a shaft disk, a rocker and a reciprocating member. The driver is fixedly arranged at one end of the outer cylinder, and the first connecting arm is rotatably assembled on the movable shaft of the driver, and the second connecting arm is rotatably assembled at the end of the first connecting arm. The central shaft is also rotatably assembled on the second connecting arm, and the transmission gear shaft is rotatably assembled at the end of the central shaft. The transmission gear shaft fixed axis is set at one end of the base, and the transmission gear shaft and the driver are connected by a synchronous belt transmission, one end of the secondary gear is meshed with the transmission gear shaft, and the other end of the secondary gear is coaxially fixedly assembled with a shaft disk, and a rocker is rotatably arranged on one side of the shaft disk, and the reciprocating member is slidably assembled on the base along the horizontal direction, and the reciprocating member and the rocker are rotatably connected.

4. The energy-saving and environmentally friendly construction waste treatment device according to claim 3 is characterized in that: The driving assembly also includes a guide plate, a scraper, a water outlet and a filter plate. The guide plate is fixedly arranged on one side of the reciprocating member. The scraper is elastically slidably assembled on the guide plate along the vertical direction. Several water outlets are also arranged at the bottom of the scraper, and a filter plate is also rotatably assembled on the water outlet.

Citation Information

Patent Citations

  • Low-noise dust-falling type construction waste crushing device

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