Double-bin feeding channel based on pop-top can secondary aluminum paint removing furnace
By using a dual-compartment feeding channel design and an alternating feeding sealing plate mechanism, the can paint stripping furnace is sealed and fed, which solves the problem of heat loss, reduces fuel costs, and improves paint stripping efficiency.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-25
- Publication Date
- 2026-03-20
AI Technical Summary
The existing aluminum can paint stripping furnace feeding channel causes heat loss during the feeding of waste aluminum cans, increasing fuel costs and reducing paint stripping efficiency.
The dual-compartment feeding channel design, with the alternating operation of the first and second feeding sealing plate mechanisms, forms a sealed state to prevent heat loss and reduce heat energy dissipation.
It effectively reduces heat loss in the paint stripping furnace, lowers fuel costs, and improves paint stripping efficiency.
Smart Images

Figure CN224014890U_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 the double -bin feeding channel of easy -open can regenerative aluminium paint stripping furnace. BACKGROUND
[0002] With the increasing environmental awareness, the recycling and reuse of waste easy -open cans become the focus of social attention, the surface paint layer of waste easy -open cans not only affects the subsequent processing treatment in the recycling process, but also can 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 sends waste easy -open cans into the easy -open can paint stripping equipment through the feeding channel and processes them.
[0003] The existing easy -open can paint stripping furnace feeding channel directly transports waste easy -open cans into the paint stripping furnace, and then covers the feeding inlet of the paint stripping furnace with a cover plate, but in the waste easy -open can feeding process, the heat energy in the paint stripping furnace will overflow through the feeding inlet, resulting in the heat energy loss of the easy -open can paint stripping furnace, and further increasing the fuel cost, therefore, the double -bin feeding channel based on the easy -open can regenerative aluminium paint stripping furnace is provided. UTILITY MODEL CONTENTS
[0004] The utility model aims at providing the double -bin feeding channel based on the easy -open can regenerative aluminium paint stripping furnace to solve the problems in the above background.
[0005] To achieve the above object, the utility model provides the following technical scheme: a double -bin feeding channel based on the easy -open can regenerative aluminium paint stripping furnace, which comprises,
[0006] The feeding double -bin shell is provided with the first feeding sealing plate mechanism and the second feeding sealing plate mechanism.
[0007] The feeding double -bin shell is provided with the first feeding sealing plate mechanism and the second feeding sealing plate mechanism.
[0008] The first feeding sealing plate mechanism is arranged at the inner upper portion of the feeding double -bin shell.
[0009] The second feeding sealing plate mechanism is arranged at the inner lower portion of the feeding double -bin shell.
[0010] The first feeding sealing plate mechanism and the second feeding sealing plate mechanism form the feeding double -bin structure in the feeding double -bin shell.
[0011] Preferably, the top of the upper feeding double-cabin is provided with a feeding hopper, which is a rectangular hopper structure gradually reduced from top to bottom, and the bottom of the feeding hopper is matched with the top of the upper feeding double-cabin.
[0012] Preferably, the feeding cabin is obliquely arranged at the bottom of the upper feeding double-cabin.
[0013] Preferably, the first upper feeding sealing plate mechanism comprises a first upper feeding sealing plate, a first rotating shaft, a first abutting plate, a first telescopic cylinder and a first connecting rod.
[0014] The first upper feeding sealing plate is rotatably arranged at the inner top of the upper feeding double-cabin through the first rotating shaft and bearings, and the first abutting plate is arranged at the position corresponding to the first upper feeding sealing plate of the upper feeding double-cabin.
[0015] The first telescopic cylinder is arranged outside the upper feeding double-cabin, and the output end of the first telescopic cylinder is connected with the first rotating shaft through the first connecting rod.
[0016] Preferably, the first abutting plate is obliquely arranged downward in the inner part of the upper feeding double-cabin, the first upper feeding sealing plate abuts at the lowermost end of the first abutting plate, and the first abutting plate, the first upper feeding sealing plate and the upper feeding double-cabin form a first upper feeding cabin.
[0017] Preferably, the second upper feeding sealing plate mechanism comprises a second upper feeding sealing plate, a second rotating shaft, a second abutting plate, a second telescopic cylinder and a second connecting rod.
[0018] The second upper feeding sealing plate is rotatably arranged at the inner bottom of the upper feeding double-cabin through the second rotating shaft and bearings, and the second abutting plate is arranged at the position corresponding to the second upper feeding sealing plate of the upper feeding double-cabin.
[0019] The second telescopic cylinder is arranged outside the upper feeding double-cabin, 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 obliquely arranged downward in the inner part of the upper feeding double-cabin, the second upper feeding sealing plate abuts at the lowermost end of the second abutting plate, and the second abutting plate, the second upper feeding sealing plate, the first abutting plate, the first upper feeding sealing plate and the upper feeding double-cabin form a second upper feeding cabin.
[0021] Compared with the prior art, the present application has the following beneficial effects:
[0022] The utility model discloses a first loading seal plate mechanism and second loading seal plate mechanism are equipped with, when loading, first loading seal plate mechanism and second loading seal plate mechanism are in closed state, and the waste pop can enters the loading double -cabin body through the feeding hopper, falls on the first loading seal plate and the first abutted plate, then first loading seal plate mechanism unfolds, and first telescopic cylinder elongation drives first connecting rod movement, and then drives first rotary shaft rotation, makes first loading seal plate and first abutted plate separate unfolding, then the waste pop can falls on the second loading seal plate and the second abutted plate, then first telescopic cylinder retraction drives first connecting rod movement, and then drives first rotary shaft rotation, makes first loading seal plate and first abutted plate abutment closed, then second loading seal plate mechanism unfolds, and second telescopic cylinder elongation drives second connecting rod movement, makes second loading seal plate and second abutted plate separate unfolding, and the waste pop can falls into the feeding shell, and feeds to the inside of the paint removal furnace, then second telescopic cylinder retraction drives second connecting rod movement, makes second loading seal plate and second abutted plate abutment seal, and the above-mentioned operation is repeated and continuously loads, and first loading seal plate mechanism and second loading seal plate mechanism alternate operation make double -cabin loading channel always be in sealed state, avoid the heat energy in the paint removal furnace and overflow outward, reduce heat energy loss, and then reduce fuel use cost, improve the paint removal efficiency of paint removal furnace simultaneously. BRIEF DESCRIPTION OF DRAWINGS
[0023] Figure 1 It is whole three-dimensional structure schematic diagram of the utility model;
[0024] Figure 2 It is whole three-dimensional structure schematic diagram of the utility model;
[0025] Figure 3 It is part sectional view three-dimensional structure schematic diagram of the utility model.
[0026] In the drawing: 1, loading double -cabin shell;2, feeding shell;3, first loading seal plate mechanism;301, first loading seal plate;302, first rotary shaft;303, first abutted plate;304, first telescopic cylinder;305, first connecting rod;4, second loading seal plate mechanism;401, second loading seal plate;402, second rotary shaft;403, second abutted plate;404, second telescopic cylinder;405, second connecting rod;5, feeding hopper. DETAILED DESCRIPTION
[0027] The technical scheme in the embodiments of the utility model will be described clearly and completely below in conjunction with the drawings in the embodiments of the utility model, and obviously, the described embodiments are only part of the embodiments of the utility model, not all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by the person skilled in the art without creative labor belong to the range of protection of the utility model.
[0028] Please refer to Figures 1-3 The utility model provides a double -cabin loading channel based on easy -open can recycled aluminium paint stripping furnace, include,
[0029] The top of the double -cabin loading shell 1 is provided with a feeding hopper 5, the feeding hopper 5 is gradually reduced from top to bottom Rectangular bucket structure, and the bottom of the feeding hopper 5 and the top of the double -cabin loading shell 1 are matched;
[0030] The feeding shell 2 is arranged at the bottom of the double -cabin loading shell 1;
[0031] The first loading sealing plate mechanism 3 is arranged at the inside upper portion of the double -cabin loading shell 1, and the first loading sealing plate mechanism 3 includes a first loading sealing plate 301, a first rotating shaft 302, a first abutment plate 303, a first telescopic cylinder 304 and a first connecting rod 305;The first loading sealing plate 301 is rotatably arranged at the inside upper portion of the double -cabin loading shell 1 by the first rotating shaft 302 and bearing, and the first abutment plate 303 is arranged at the position corresponding to the first loading sealing plate 301 of the double -cabin loading shell 1;The first telescopic cylinder 304 is arranged at the outside of the double -cabin loading shell 1, and the output end of the first telescopic cylinder 304 is connected with the first rotating shaft 302 by the first connecting rod 305, the first abutment plate 303 is arranged in the inside of the double -cabin loading shell 1 and is inclined downward, the first loading sealing plate 301 is abutted at the lowermost end of the first abutment plate 303, and the first abutment plate 303, the first loading sealing plate 301 and the double -cabin loading shell 1 form the first loading cabin;
[0032] The second loading sealing plate mechanism 4 is arranged at the inside lower portion of the double -cabin loading shell 1, and the second loading sealing plate mechanism 4 includes a second loading sealing plate 401, a second rotating shaft 402, a second abutment plate 403, a second telescopic cylinder 404 and a second connecting rod 405;The second loading sealing plate 401 is rotatably arranged at the inside lower portion of the double -cabin loading shell 1 by the second rotating shaft 402 and bearing, and the second abutment plate 403 is arranged at the position corresponding to the second loading sealing plate 401 of the double -cabin loading shell 1;The second telescopic cylinder 404 is arranged at the outside of the double -cabin loading shell 1, and the output end of the second telescopic cylinder 404 is connected with the second rotating shaft 402 by the second connecting rod 405, the second abutment plate 403 is arranged in the inside of the double -cabin loading shell 1 and is inclined downward, the second loading sealing plate 401 is abutted at the lowermost end of the second abutment plate 403, and the second abutment plate 403, the second loading sealing plate 401, the first abutment plate 303, the first loading sealing plate 301 and the double -cabin loading shell 1 form the second loading cabin;
[0033] The first loading sealing plate mechanism 3 and the second loading sealing plate mechanism 4 form the double -cabin loading structure in the double -cabin loading shell 1.
[0034] The utility model discloses a first loading sealing plate mechanism 3 and second loading sealing plate mechanism 4 are equipped with, when loading, first loading sealing plate mechanism 3 and second loading sealing plate mechanism 4 are in closed state, and the waste zip-top can enter the loading double -cabin shell 1 through the feeding hopper 5, falls on the first loading sealing plate 301 and the first abutted plate 303, then first loading sealing plate mechanism 3 unfolds, and first telescopic cylinder 304 elongation drives first connecting rod 305 movement, and then drive first rotary shaft 302 rotation, make first loading sealing plate 301 and the first abutted plate 303 separate unfolding, then the waste zip-top falls on second loading sealing plate 401 and the second abutted plate 403, then first telescopic cylinder 304 contraction drives first connecting rod 305 movement, and then drive first rotary shaft 302 rotation, make first loading sealing plate 301 and the first abutted plate 303 abutment closed, then second loading sealing plate mechanism 4 unfolds, and second telescopic cylinder 404 elongation drives second connecting rod 405 movement, make second loading sealing plate 401 and the second abutted plate 403 separate unfolding, and the waste zip-top falls into the feeding shell 2, and the feeding of paint stripping furnace is followed, and then second telescopic cylinder 404 contraction drives second connecting rod 405 movement, make second loading sealing plate 401 and the second abutted plate 403 abutment seal, and the above-mentioned operation is repeated to continuously load, and first loading sealing plate mechanism 3 and second loading sealing plate mechanism 4 alternate operation make double -cabin loading channel always be in sealed state, avoid the heat energy in paint stripping furnace to overflow outward, reduce heat energy loss, then reduce fuel use cost, improve the paint stripping efficiency of paint stripping furnace simultaneously.
[0035] In the embodiment, as shown in Figure 1 and Figure 2 The feeding shell 2 is obliquely arranged at the bottom of the loading double -cabin shell 1, facilitating the conveying of the waste zip-top into the paint stripping furnace.
[0036] In summary, the use method of the double-bin loading channel of the paint stripping furnace for recycled aluminum of the easy-open can provided in the embodiment is as follows: when loading, the first loading sealing plate mechanism 3 and the second loading sealing plate mechanism 4 are in a closed state, the waste easy-open can enters the loading double-bin shell 1 through the feeding hopper 5, falls on the first loading sealing plate 301 and the first abutting plate 303, then the first loading sealing plate mechanism 3 is unfolded, the first telescopic cylinder 304 is elongated to drive the first connecting rod 305 to move, and then the first rotating shaft 302 is rotated to make the first loading sealing plate 301 and the first abutting plate 303 disengage from unfolding, then the waste easy-open can falls on the second loading sealing plate 401 and the second abutting plate 403, then the first telescopic cylinder 304 is retracted to drive the first connecting rod 305 to move, and then the first rotating shaft 302 is rotated to make the first loading sealing plate 301 and the first abutting plate 303 abut to be closed, then the second loading sealing plate mechanism 4 is unfolded, the second telescopic cylinder 404 is elongated to drive the second connecting rod 405 to move, so that the second loading sealing plate 401 and the second abutting plate 403 disengage from unfolding, the waste easy-open can falls into the feeding shell 2 and is fed into the paint stripping furnace, then the second telescopic cylinder 404 is retracted to drive the second connecting rod 405 to move, so that the second loading sealing plate 401 and the second abutting plate 403 abut to be sealed, and the above operation is repeated to continuously load.
[0037] 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 the embodiments without departing from the principles and spirits of the utility model, and the scope of the utility model is defined by the appended claims and their equivalents.
Claims
1. A dual-compartment feeding channel based on a paint stripping furnace for recycled aluminum cans, characterized in that, include, Dual-compartment shell for feeding (1); Material conveying housing (2), which is disposed at the bottom of the feeding double-compartment housing (1); The first feeding sealing plate mechanism (3) is located inside the upper part of the feeding double-compartment shell (1); The second feeding sealing plate mechanism (4) is located in the lower part of the inner part of the feeding double-compartment shell (1); The first feeding sealing plate mechanism (3) and the second feeding sealing plate mechanism (4) form a feeding double-compartment structure inside the feeding double-compartment shell (1).
2. The dual-compartment feeding channel of the aluminum can recycling furnace according to claim 1, characterized in that: The top of the feeding double-compartment shell (1) is provided with a feeding hopper (5), which is a rectangular bucket-shaped structure that gradually shrinks from top to bottom, and the bottom of the feeding hopper (5) is adapted to the top of the feeding double-compartment shell (1).
3. The dual-compartment feeding channel of the aluminum can recycling furnace according to claim 1, characterized in that: The material conveying housing (2) is inclinedly disposed at the bottom of the feeding double-compartment housing (1).
4. The dual-compartment feeding channel of the aluminum can recycling furnace according to claim 1, characterized in that: The first feeding sealing plate mechanism (3) includes a first feeding 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 feeding sealing plate (301) is rotatably disposed inside the upper part of the feeding double-compartment housing (1) via the first rotating shaft (302) and bearing, and the first abutting plate (303) is disposed in the feeding double-compartment housing (1) at the position corresponding to the first feeding sealing plate (301); The first telescopic cylinder (304) is located on the outside of the feeding double-compartment housing (1), and the output end of the first telescopic cylinder (304) is connected to the first rotating shaft (302) through the first connecting rod (305).
5. The dual-compartment feeding channel of the aluminum can recycling furnace according to claim 4, characterized in that: The first abutment plate (303) is inclined downward inside the feeding double-compartment shell (1), and the first feeding sealing plate (301) abuts against the lowest end of the first abutment plate (303). The first feeding compartment is formed between the first abutment plate (303), the first feeding sealing plate (301) and the feeding double-compartment shell (1).
6. The dual-compartment feeding channel of the aluminum can recycling furnace according to claim 5, characterized in that: The second feeding sealing plate mechanism (4) includes a second feeding sealing plate (401), a second rotating shaft (402), a second abutment plate (403), a second telescopic cylinder (404), and a second connecting rod (405). The second feeding sealing plate (401) is rotatably disposed inside the lower part of the feeding double-compartment housing (1) via the second rotating shaft (402) and bearing, and the second abutment plate (403) is disposed in the feeding double-compartment housing (1) at the position corresponding to the second feeding sealing plate (401); The second telescopic cylinder (404) is located on the outside of the feeding double-compartment housing (1), and the output end of the second telescopic cylinder (404) is connected to the second rotating shaft (402) through the second connecting rod (405).
7. The dual-compartment feeding channel of the aluminum can recycling furnace according to claim 6, characterized in that: The second abutment plate (403) is inclined downward and disposed inside the feeding double-compartment shell (1). The second feeding sealing plate (401) abuts against the lowest end of the second abutment plate (403). The second feeding compartment is formed between the second abutment plate (403), the second feeding sealing plate (401), the first abutment plate (303), the first feeding sealing plate (301) and the feeding double-compartment shell (1).