Double-bin discharging channel based on pop-top can secondary aluminum paint removing furnace
By designing a dual-compartment feeding channel in the aluminum can recycling furnace, and adopting an alternating feeding sealing plate mechanism and feeding baffle, the problems of heat loss and discontinuous feeding in the furnace were solved, thereby achieving heat retention and improved feeding efficiency.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-25
- Publication Date
- 2026-03-24
AI Technical Summary
The existing can paint stripping furnace feeding channel results in high heat loss, increased fuel costs, and a discontinuous feeding process.
A dual-compartment feeding channel was designed based on the aluminum can recycling furnace. The first and second feeding sealing plate mechanisms operate alternately, combined with the feeding baffle mechanism, to achieve alternating closed feeding of the waste aluminum cans after paint removal, thus avoiding heat loss.
It reduces heat loss in the paint stripping furnace, lowers fuel costs, improves paint stripping efficiency, and enables continuous feeding.
Smart Images

Figure CN224033810U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the easy -open can regenerative aluminium paint stripping technical field, and specifically relates to based on easy -open can regenerative aluminium paint stripping furnace's double -bin unloading channel. BACKGROUND
[0002] With the increasing environmental awareness, the recycling and reuse of waste easy -open cans have become the focus of social attention, the paint layer on the surface of waste easy -open cans not only affects the subsequent processing treatment, but also may cause environmental pollution, therefore, easy -open can paint stripping equipment plays a vital role in the waste easy -open can recycling industry chain, and the easy -open can paint stripping equipment plays a vital role in the waste easy -open can paint stripping disposal, through paint stripping treatment, the paint layer on the surface of waste easy -open cans is stripped, which provides convenience for subsequent processing and utilization, and the easy -open can paint stripping equipment discharges the waste easy -open cans after paint stripping through the unloading channel.
[0003] The existing easy -open can paint stripping furnace unloading channel is directly discharged through the unloading port, and the unloading port of the paint stripping furnace is covered by a cover plate after discharge, in the unloading process, the heat energy in the paint stripping furnace is dissipated through the unloading port, resulting in high heat energy loss of the easy -open can paint stripping furnace, and further increasing the fuel cost, therefore, based on the easy -open can regenerative aluminium paint stripping furnace's double -bin unloading channel is provided. UTILITY MODEL CONTENTS
[0004] The utility model aims at providing based on easy -open can regenerative aluminium paint stripping furnace's double -bin unloading channel to solve the problem in the prior art.
[0005] To achieve the above object, the utility model provides the following technical scheme: a kind of based on easy -open can regenerative aluminium paint stripping furnace's double -bin unloading channel, including,
[0006] Unloading double-bin shell is arranged at the unloading port of paint stripping furnace;
[0007] Two unloading shells are arranged at the bottom of the unloading double-bin shell;
[0008] First unloading sealing plate mechanism is arranged at the upper part of the interior of the unloading double-bin shell;
[0009] Second unloading sealing plate mechanism is arranged at the lower part of the interior of the unloading double-bin shell;
[0010] The first unloading sealing plate mechanism and the second unloading sealing plate mechanism form unloading double-bin in the unloading double-bin shell;
[0011] Two unloading baffle mechanisms are arranged in the two unloading shells.
[0012] Preferably, the first blanking plate mechanism comprises a first blanking plate, a first rotating shaft, a first abutting plate, a first telescopic cylinder and a first connecting rod;
[0013] The first blanking plate is rotatably arranged at the inner upper portion of the blanking double-cabin shell through the first rotating shaft and bearings, and the first abutting plate is arranged at a position corresponding to the first blanking plate in the blanking double-cabin shell;
[0014] The first telescopic cylinder is arranged outside the blanking double-cabin shell, and the output end of the first telescopic cylinder is connected with the first rotating shaft through the first connecting rod.
[0015] Preferably, the first abutting plate is arranged obliquely downward in the blanking double-cabin shell, and one side of the first blanking plate abuts against the lowest end of the first abutting plate;
[0016] The first blanking plate, the first abutting plate and the blanking double-cabin shell form a first blanking cabin.
[0017] Preferably, the second blanking plate mechanism comprises a second blanking plate, a second rotating shaft, a second abutting plate, a second telescopic cylinder and a second connecting rod;
[0018] The second blanking plate is rotatably arranged at the inner upper portion of the blanking double-cabin shell through the second rotating shaft and bearings, and the second abutting plate is arranged at a position corresponding to the second blanking plate in the blanking double-cabin shell;
[0019] The second telescopic cylinder is arranged outside the blanking double-cabin shell, and the output end of the second telescopic cylinder is connected with the second rotating shaft through the second connecting rod.
[0020] Preferably, the second abutting plate is arranged obliquely downward in the blanking double-cabin shell, and one side of the second blanking plate abuts against the lowest end of the second abutting plate;
[0021] The second blanking plate, the second abutting plate, the first blanking plate, the first abutting plate and the blanking double-cabin shell form a second blanking cabin.
[0022] Preferably, the blanking baffle mechanism comprises a blanking baffle, a third rotating shaft, a third telescopic cylinder and a third connecting rod;
[0023] The blanking baffle is rotatably arranged at the inner upper portion of the blanking cabin shell through the third rotating shaft and bearings, the third telescopic cylinder is arranged outside the blanking cabin shell, and the output end of the third telescopic cylinder is connected with the third rotating shaft through the third connecting rod.
[0024] Compared with the prior art, the utility model has the advantages of
[0025] 1, the utility model discloses first blanking seal plate mechanism and second blanking seal plate mechanism are equipped with, and when blanking, first blanking seal plate mechanism and second blanking seal plate mechanism are in closed state, and the waste and easy pull can after peeling are discharged from the blanking port of peeling furnace and fall on the first blanking seal plate and the first abutment plate in the blanking double -casing body, then the first telescopic cylinder elongation drives the first connecting rod operation, makes the first blanking seal plate through the first rotation axle downward rotation, and then make the first blanking seal plate and the first abutment plate separate and unfold, then the waste and easy pull can after peeling fall to the second blanking seal plate and the second abutment plate in the blanking double -casing body, then the first telescopic cylinder contraction drives the first connecting rod operation, makes the first blanking seal plate through the first rotation axle upward rotation, and then make the first blanking seal plate and the first abutment plate close, then the second telescopic cylinder elongation drives the second connecting rod movement, makes the second blanking seal plate through the second rotation axle downward rotation, makes the second blanking seal plate and the second abutment plate separate and unfold, makes the waste and easy pull can after peeling fall to two blanking casing, then the second telescopic cylinder contraction drives the second connecting rod movement, makes the second blanking seal plate through the second rotation axle upward rotation, makes the second blanking seal plate and the second abutment plate close, and the continuous blanking of the repeated above -mentioned operation is realized, and first blanking seal plate mechanism and second blanking seal plate mechanism adopt the alternate operation, realize the double -casing alternate closed blanking of the waste and easy pull can after peeling, avoid the heat energy in the peeling furnace from the blanking port and overflow outward, reduce heat energy loss, reduce the fuel cost of peeling furnace, improve the peeling efficiency of peeling furnace;
[0026] 2, the utility model discloses the blanking baffle mechanism of symmetrical distribution is provided in two blanking casing, when using, the waste and easy pull can after peeling fall on the blanking baffle in two blanking casing, according to the on -the -spot blanking requirement, place the blanking collection device below two blanking casing, then simultaneously start two third telescopic cylinders, and the third telescopic cylinder elongation drives the third connecting rod movement, makes the blanking baffle follow the third rotation axle downward rotation, makes the waste and easy pull can after peeling and fall downward, and the blanking is completed, and through the blanking baffle mechanism in blanking casing and carries out one -step shielding interception, can control the blanking speed, convenient to use. BRIEF DESCRIPTION OF DRAWINGS
[0027] Fig. 1 It is the whole three -dimensional structure schematic diagram of the utility model;
[0028] Fig. 2 It is the whole three -dimensional structure schematic diagram of the utility model;
[0029] Fig. 3 It is the sectional three -dimensional structure schematic diagram of the utility model.
[0030] In the figure: 1, blanking double-bin shell; 2, blanking shell; 3, first blanking sealing plate mechanism; 301, first blanking sealing plate; 302, first rotating shaft; 303, first abutment plate; 304, first telescopic cylinder; 305, first connecting rod; 4, second blanking sealing plate mechanism; 401, second blanking sealing plate; 402, second rotating shaft; 403, second abutment plate; 404, second telescopic cylinder; 405, second connecting rod; 5, blanking baffle mechanism; 501, blanking baffle; 502, third rotating shaft; 503, third telescopic cylinder; 504, third connecting rod. DETAILED DESCRIPTION
[0031] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the protection scope of the utility model.
[0032] Please refer to Figs. 1-3 The double-bin blanking passage based on the easy-open can recycled aluminum paint stripping furnace provided by the utility model comprises,
[0033] The blanking double-bin shell 1 is arranged at the blanking port of the paint stripping furnace.
[0034] The blanking shell 2 is arranged at the bottom of the blanking double-bin shell 1.
[0035] The first blanking sealing plate mechanism 3 is arranged at the inner upper portion of the blanking double-bin shell 1, and comprises the first blanking sealing plate 301, the first rotating shaft 302, the first abutment plate 303, the first telescopic cylinder 304 and the first connecting rod 305. The first blanking sealing plate 301 is rotatably arranged at the inner upper portion of the blanking double-bin shell 1 through the first rotating shaft 302 and the bearing, the first abutment plate 303 is arranged at the position corresponding to the first blanking sealing plate 301 in the blanking double-bin shell 1, the first telescopic cylinder 304 is arranged at the outer side of the blanking double-bin shell 1, the output end of the first telescopic cylinder 304 is connected with the first rotating shaft 302 through the first connecting rod 305, the first abutment plate 303 is arranged in the blanking double-bin shell 1 in an inclined downward manner, and one side of the first blanking sealing plate 301 abuts against the lowest end of the first abutment plate 303. The first blanking sealing plate 301, the first abutment plate 303 and the blanking double-bin shell 1 form the first blanking bin.
[0036] The second blanking sealing plate mechanism 4 is arranged at the inner lower portion of the blanking double-bin shell 1, and comprises a second blanking sealing plate 401, a second rotating shaft 402, a second abutting plate 403, a second telescopic cylinder 404 and a second connecting rod 405; the second blanking sealing plate 401 is rotatably arranged at the inner upper portion of the blanking double-bin shell 1 through the second rotating shaft 402 and a bearing, the second abutting plate 403 is arranged at a position corresponding to the second blanking sealing plate 401 in the blanking double-bin shell 1, the output end of the second telescopic cylinder 404 is connected with the second rotating shaft 402 through the second connecting rod 405, and the second abutting plate 403 is arranged in an inclined downward manner in the blanking double-bin shell 1, and one side of the second blanking sealing plate 401 abuts against the lowest end of the second abutting plate 403; the second blanking sealing plate 401, the second abutting plate 403, the first blanking sealing plate 301, the first abutting plate 303 and the blanking double-bin shell 1 form a second blanking bin;
[0037] The first blanking sealing plate mechanism 3 and the second blanking sealing plate mechanism 4 form the blanking double bin in the blanking double-bin shell 1;
[0038] The utility model discloses first blanking sealing plate mechanism 3 and second blanking sealing plate mechanism 4, when blanking, first blanking sealing plate mechanism 3 and second blanking sealing plate mechanism 4 are in the closed state, and the waste and old ziplock bag after paint removal is discharged from the blanking port of paint removal stove and falls on the first blanking sealing plate 301 and the first abutting plate 303 in the blanking double-bin shell 1, then first telescopic cylinder 304 elongation drives first connecting rod 305 and runs, makes first blanking sealing plate 301 through first rotating shaft 302 and rotates downward, and then first blanking sealing plate 301 and first abutting plate 303 are separated and unfolded, then the waste and old ziplock bag after paint removal falls to second blanking sealing plate 401 and second abutting plate 403 in the blanking double-bin shell 1, then first telescopic cylinder 304 contraction drives first connecting rod 305 and runs, makes first blanking sealing plate 301 through first rotating shaft 302 and rotates upward, and then first blanking sealing plate 301 and first abutting plate 303 are closed, then second telescopic cylinder 404 elongation drives second connecting rod 405 and moves, makes second blanking sealing plate 401 through second rotating shaft 402 and rotates downward, makes second blanking sealing plate 401 and second abutting plate 403 separate and unfold, makes the waste and old ziplock bag after paint removal fall to two blanking shells 2, then second telescopic cylinder 404 contraction drives second connecting rod 405 and moves, makes second blanking sealing plate 401 through second rotating shaft 402 and rotates upward, makes second blanking sealing plate 401 and second abutting plate 403 closed, and the continuous blanking of the repeated operation is realized, first blanking sealing plate mechanism 3 and second blanking sealing plate mechanism 4 adopt the alternate operation, realize the double-bin alternate closed blanking of the waste and old ziplock bag after paint removal, avoid the heat energy in paint removal stove from the blanking port and overflow outward, reduce heat energy loss, reduce paint removal stove fuel cost, improve the paint removal efficiency of paint removal stove.
[0039] The two blanking plate mechanisms 5 are symmetrically arranged in the two blanking housings 2, and the blanking plate mechanism 5 comprises a blanking plate 501, a third rotating shaft 502, a third telescopic cylinder 503 and a third connecting rod 504; the blanking plate 501 is rotatably arranged on the inner upper portion of the blanking housing 2 through the third rotating shaft 502 and a bearing, the third telescopic cylinder 503 is arranged on the outer side of the blanking housing 2, and the output end of the third telescopic cylinder 503 is connected with the third rotating shaft 502 through the third connecting rod 504;
[0040] The two blanking plate mechanisms 5 are symmetrically arranged in the two blanking housings 2, and the blanking plate mechanism 5 comprises a blanking plate 501, a third rotating shaft 502, a third telescopic cylinder 503 and a third connecting rod 504; the blanking plate 501 is rotatably arranged on the inner upper portion of the blanking housing 2 through the third rotating shaft 502 and a bearing, the third telescopic cylinder 503 is arranged on the outer side of the blanking housing 2, and the output end of the third telescopic cylinder 503 is connected with the third rotating shaft 502 through the third connecting rod 504;
[0041] In summary, the use method of the double-bin discharging channel of the paint stripping furnace for recycled aluminum of the easy-open can provided in the embodiment is as follows: when discharging, the first discharging sealing plate mechanism 3 and the second discharging sealing plate mechanism 4 are in a closed state, the waste easy-open cans after paint stripping are discharged from the discharging port of the paint stripping furnace, and then fall on the first discharging sealing plate 301 and the first abutting plate 303 in the first discharging double-bin shell 1, then the first telescopic cylinder 304 is elongated to drive the first connecting rod 305 to operate, so that the first discharging sealing plate 301 is rotated downward through the first rotating shaft 302, and then the first discharging sealing plate 301 and the first abutting plate 303 are separated from the unfolded state, then the waste easy-open cans after paint stripping fall on the second discharging sealing plate 401 and the second abutting plate 403 in the first discharging double-bin shell 1, then the first telescopic cylinder 304 is retracted to drive the first connecting rod 305 to operate, so that the first discharging sealing plate 301 is rotated upward through the first rotating shaft 302, and then the first discharging sealing plate 301 and the first abutting plate 303 are closed, then the second telescopic cylinder 404 is elongated to drive the second connecting rod 405 to operate, so that the second discharging sealing plate 401 is rotated downward through the second rotating shaft 402, so that the second discharging sealing plate 401 and the second abutting plate 403 are separated from the unfolded state, so that the waste easy-open cans after paint stripping fall into the two discharging shells 2, then the second telescopic cylinder 404 is retracted to drive the second connecting rod 405 to operate, so that the second discharging sealing plate 401 is rotated upward through the second rotating shaft 402, so that the second discharging sealing plate 401 and the second abutting plate 403 are closed, the above operation is repeated to realize continuous discharging, the waste easy-open cans after paint stripping fall on the discharging baffle 501 in the two discharging shells 2, according to the on-site discharging requirement, the discharging collecting device is placed below the two discharging shells 2, then the two third telescopic cylinders 503 are started at the same time, the third telescopic cylinder 503 is elongated to drive the third connecting rod 504 to operate, so that the discharging baffle 501 is rotated downward with the third rotating shaft 502, so that the waste easy-open cans after paint stripping fall downward, and the discharging is completed.
[0042] Although the embodiments of the utility model have been shown and described, it can be understood by those skilled in the art that various changes, modifications, replacements and variations can be made to these embodiments without departing from the principles and spirits of the utility model, the scope of the utility model is defined by the appended claims and their equivalents.
Claims
1. A double bin unloading pass based on a can end recycled aluminum paint stripping furnace, characterized by, The application relates to a paint stripping furnace. The paint stripping furnace comprises a paint stripping double-cabin shell (1) arranged at a paint stripping furnace paint stripping port; Two paint stripping shells (2) are arranged at the bottom of the paint stripping double-cabin shell (1); A first paint stripping sealing plate mechanism (3) is arranged at the upper part of the paint stripping double-cabin shell (1); A second paint stripping sealing plate mechanism (4) is arranged at the lower part of the paint stripping double-cabin shell (1); The first paint stripping sealing plate mechanism (3) and the second paint stripping sealing plate mechanism (4) form a paint stripping double cabin in the paint stripping double-cabin shell (1); Two paint stripping baffle mechanisms (5) are symmetrically arranged in the two paint stripping shells (2).
2. The double bin downer pass based on easy open can recycled aluminum paint stripping furnace as claimed in claim 1, wherein: The first paint stripping sealing plate mechanism (3) comprises a first paint stripping sealing plate (301), a first rotating shaft (302), a first abutting plate (303), a first telescopic cylinder (304) and a first connecting rod (305); The first paint stripping sealing plate (301) is rotatably arranged at the upper part of the paint stripping double-cabin shell (1) through the first rotating shaft (302) and a bearing, and the first abutting plate (303) is arranged at the position corresponding to the first paint stripping sealing plate (301) in the paint stripping double-cabin shell (1); The first telescopic cylinder (304) is arranged at the outer side of the paint stripping double-cabin shell (1), and the output end of the first telescopic cylinder (304) is connected with the first rotating shaft (302) through the first connecting rod (305).
3. The double bin downer pass based on easy open can recycled aluminum paint stripping furnace as claimed in claim 2, wherein: The first abutting plate (303) is arranged in the paint stripping double-cabin shell (1) in an inclined downward manner, and one side of the first paint stripping sealing plate (301) abuts against the lowest end of the first abutting plate (303); The first paint stripping sealing plate (301), the first abutting plate (303) and the paint stripping double-cabin shell (1) form a first paint stripping cabin.
4. The double bin downcomer pass for easy open can recycled aluminum paint stripping furnace of claim 3, wherein: The second paint stripping sealing plate mechanism (4) comprises a second paint stripping sealing plate (401), a second rotating shaft (402), a second abutting plate (403), a second telescopic cylinder (404) and a second connecting rod (405); The second paint stripping sealing plate (401) is rotatably arranged at the upper part of the paint stripping double-cabin shell (1) through the second rotating shaft (402) and a bearing, and the second abutting plate (403) is arranged at the position corresponding to the second paint stripping sealing plate (401) in the paint stripping double-cabin shell (1); The second telescopic cylinder (404) is arranged at the outer side of the paint stripping double-cabin shell (1), and the output end of the second telescopic cylinder (404) is connected with the second rotating shaft (402) through the second connecting rod (405).
5. The double bin downer pass based on easy open can recycled aluminum paint stripping furnace as claimed in claim 4, wherein: The second abutting plate (403) is arranged in the paint stripping double-cabin shell (1) in an inclined downward manner, and one side of the second paint stripping sealing plate (401) abuts against the lowest end of the second abutting plate (403). The second blanking plate (401), the second abutting plate (403), the first blanking plate (301), the first abutting plate (303) and the blanking double-cabin shell (1) form a second blanking cabin.
6. The double bin downer pass based on easy open can recycled aluminum paint stripping furnace of claim 1, wherein: The blanking baffle mechanism (5) comprises a blanking baffle (501), a third rotating shaft (502), a third telescopic cylinder (503) and a third connecting rod (504). The blanking baffle (501) is rotatably arranged on the inner upper portion of the blanking shell (2) through the third rotating shaft (502) and a bearing, the third telescopic cylinder (503) is arranged on the outer side of the blanking shell (2), and the output end of the third telescopic cylinder (503) is connected with the third rotating shaft (502) through the third connecting rod (504).