A processing device for polyethylene waste wax recycling
The device addresses wax residue separation by using a V-shaped melting pool and controlled airflow to enhance wax recovery from impurities, improving the recycling process efficiency.
Patent Information
- Application Number
- CN202411442445.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-16
- Publication Date
- 2025-07-15
- Estimated Expiration
- 2044-10-16
AI Technical Summary
Existing recycling equipment cannot effectively separate the wax liquid remaining in impurities such as stones, resulting in wasting of wax liquid.
The design of components such as electric heating melting tank, cylinder, connecting plate, filter frame, fan, etc. is adopted to achieve separation and collection of wax liquid by blowing and moving the filter frame structure by hot air.
Effectively prevent the waste of wax liquid, improve the collection speed of wax liquid, and ensure the subsequent treatment efficiency of polyethylene wax waste.
Smart Images

Figure CN119305062B_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field of chemical engineering, and particularly relates to a processing device for recycling polyethylene waste wax. Background Technique
[0002] When recycling polyethylene waste wax, the polyethylene waste wax is first melted, and then a filter screen is used to filter out impurities such as stones, and then the wax liquid without impurities is re-injected into the mold for subsequent re-manufacture of new chemical polyethylene wax.
[0003] Chinese Patent: CN208788851U, a device for reusing polyethylene waste wax, filters out impurities such as stones through a filter screen; however, after filtering out impurities such as stones with the filter screen, there will be wax liquid remaining on the surface of the impurities such as stones, and the current recycling equipment cannot separate and recycle the wax liquid remaining in the impurities such as stones, resulting in waste of wax liquid. Summary of the Invention
[0004] In order to overcome the defect that the current recycling equipment cannot separate and recycle the wax liquid remaining in the impurities such as stones, resulting in waste of wax liquid, the present invention provides a processing device for recycling polyethylene waste wax.
[0005] The technical implementation scheme of the present invention is: a processing device for recycling polyethylene waste wax, including an electric heating melting pool and a through pipe; several through pipes are connected to the lower part of the electric heating melting pool, and the lower part of the electric heating melting pool is set in a V shape; it also includes a cylinder I, a connecting plate, a filter frame, a mounting frame, a cylinder II, a power unit and a fan I; several cylinder Is are fixedly connected to the electric heating melting pool; the telescopic end of each cylinder I is fixedly connected with a connecting plate; all the connecting plates are in contact with the inner side of the electric heating melting pool; a filter frame is detachably connected to the lower part of all the connecting plates together, and all the through pipes are communicated with the filter frame; the filter frame is located at the inner bottom of the electric heating melting pool; a mounting frame is arranged on the upper part of the electric heating melting pool, and the mounting frame is fixedly connected with an external fixing frame; several cylinder IIs are fixedly connected to the mounting frame; the telescopic ends of all the cylinder IIs are jointly connected with a power unit; the power unit is connected with two fans I arranged symmetrically left and right, and an air outlet is respectively arranged on the opposite sides of the two fans I, and the power unit is used to drive the fans I to move left and right.
[0006] More preferably, the upper side of the filter frame is set to be inclined inward.
[0007] More preferably, it also includes a cylinder III and a fan II; two cylinder IIIs are fixedly connected to the mounting frame; the telescopic end of each cylinder III is fixedly connected with a fan II; an air outlet is respectively arranged on the opposite sides of the two fans II; an air outlet is also respectively arranged on the opposite sides of the two fans I.
[0008] More preferably, it further includes a partition plate I, a partition frame, and a partition plate II; several partition plates I are fixedly connected to both the left and right parts of the filter frame; several partition frames are fixedly connected in the filter frame at equal intervals; several partition plates II are respectively fixedly connected in each partition frame, and each partition plate II is flush with the corresponding partition plate I.
[0009] More preferably, the upper part of the partition frame is arranged in a conical shape.
[0010] More preferably, it further includes a spring telescopic rod and a closing plate; two spring telescopic rods are connected to the power unit; a closing plate is fixedly connected to the telescopic end of each spring telescopic rod.
[0011] More preferably, it further includes a guide block; a guide block is arranged between two adjacent partition frames, between the frontmost partition frame and the filter frame, and between the rearmost partition frame and the filter frame.
[0012] More preferably, it further includes a guide plate; several guide plates are fixedly connected at equal intervals between two adjacent partition frames, between the frontmost partition frame and the filter frame, and between the rearmost partition frame and the filter frame; several vertical grooves are formed in each guide plate.
[0013] More preferably, it further includes a flexible corrugated plate; several flexible corrugated plates are fixedly connected at equal intervals to the lower side of the filter frame; only the left and right ends of the flexible corrugated plate are fixedly connected to the filter frame.
[0014] More preferably, several vertical grooves are formed in the flexible corrugated plate.
[0015] Compared with the prior art, the present invention has the following advantages: 1. The present invention moves the filter frame above the electric heating melting pool and then stands for a period of time, so that the wax liquid adhering to impurities such as stones drips back into the electric heating melting pool, avoiding waste of wax liquid; and hot air is blown obliquely downward, that is, blown towards the filter frame, by the fan I, so as to accelerate the dripping of the wax liquid adhering to impurities such as stones, accelerate the collection speed, and prevent affecting the treatment of subsequent polyethylene wax waste.
[0016] 2. After the filter frame is disassembled from the connecting plate, the present invention controls the two fans I and the two fans II to move downward along the inner wall of the electric heating melting pool, and blows the wax liquid remaining on the inner wall of the electric heating melting pool downward, so that the wax liquid flows towards the through pipe, preventing waste of wax liquid.
[0017] 3. The present invention blows hot air towards the partition frame, and after the hot air collides in the partition frame, it horizontally blows towards impurities such as stones on the side of the partition frame, so as to blow the hot air towards impurities such as stones in the middle and lower parts. In this process, the air flow can only flow out from the lower opening of the filter frame, and the blown hot air will only come out from below the filter frame finally, which is beneficial for the hot air to carry the wax liquid downward and accelerate the downward flow speed of the wax liquid, so as to accelerate the collection speed and prevent affecting the treatment of subsequent polyethylene wax waste. Description of the Drawings
[0018] Figure 1 This is a three-dimensional structural schematic diagram of the processing equipment for polyethylene waste wax recycling according to the present invention;
[0019] Figure 2 This is a combined three-dimensional structural schematic diagram of the through pipe, cylinder I, connecting plate and filter frame of the processing equipment for polyethylene waste wax recycling according to the present invention;
[0020] Figure 3 This is a three-dimensional structural sectional view of the electric heating melting pool of the processing equipment for polyethylene waste wax recycling according to the present invention;
[0021] Figure 4 This is a combined three-dimensional structural schematic diagram of cylinder II, electric slide rail and electric slider of the processing equipment for polyethylene waste wax recycling according to the present invention;
[0022] Figure 5 This is a combined three-dimensional structural schematic diagram of the spring telescopic rod and the closing plate of the processing equipment for polyethylene waste wax recycling according to the present invention;
[0023] Figure 6 This is a three-dimensional structural schematic diagram of partition I of the processing equipment for polyethylene waste wax recycling according to the present invention;
[0024] Figure 7 This is a combined three-dimensional structural schematic diagram of the partition frame, guide plate and guide block of the processing equipment for polyethylene waste wax recycling according to the present invention;
[0025] Figure 8 This is a combined three-dimensional structural schematic diagram of the partition frame and partition II of the processing equipment for polyethylene waste wax recycling according to the present invention;
[0026] Figure 9 This is a three-dimensional structural schematic diagram of the flexible corrugated plate of the processing equipment for polyethylene waste wax recycling according to the present invention.
[0027] The markings of each component in the drawings are as follows: 1 - electric heating melting pool, 2 - through pipe, 3 - cylinder I, 4 - connecting plate, 5 - filter frame, 6 - mounting rack, 7 - cylinder II, 8 - electric slide rail, 9 - electric slider, 10 - fan I, 11 - partition I, 12 - cylinder III, 13 - fan II, 21 - partition frame, 22 - partition II, 23 - spring telescopic rod, 24 - closing plate, 25 - guide plate, 31 - guide block, 32 - flexible corrugated plate. Detailed Embodiments
[0028] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.
[0029] Embodiment 1
[0030] A processing device for recycling polyethylene waste wax, as Figures 1 - 4 shown, includes an electric heating melting pool 1 and a through pipe 2; three through pipes 2 are connected to the lower part of the electric heating melting pool 1, and the lower part of the electric heating melting pool 1 is set in a V shape;
[0031] It further includes a cylinder I 3, a connecting plate 4, a filter frame 5, a mounting frame 6, a cylinder II 7, a power unit, and a blower I 10; two cylinders I 3 are fixedly connected to the electric heating melting pool 1; a connecting plate 4 is fixedly connected to the telescopic end of each cylinder I 3; all the connecting plates 4 are in contact with the inner side of the electric heating melting pool 1; a filter frame 5 is detachably connected to the lower parts of all the connecting plates 4, and all the through pipes 2 are communicated with the filter frame 5; the filter frame 5 is located at the inner bottom of the electric heating melting pool 1; a mounting frame 6 is arranged on the upper part of the electric heating melting pool 1, and the mounting frame 6 is fixedly connected to an external fixing frame; two cylinders II 7 are fixedly connected to the mounting frame 6; the telescopic ends of all the cylinders II 7 are jointly connected to a power unit; the power unit is connected to two blowers I 10 arranged symmetrically left and right, and an air outlet is arranged on the opposite side of each of the two blowers I 10.
[0032] In order to facilitate the falling of impurities such as stones into the filter frame 5, the upper side of the filter frame 5 is set to be inclined inward.
[0033] The power unit includes an electric slide rail 8 and an electric slider 9; the telescopic ends of all the cylinders II 7 are jointly fixedly connected to the electric slide rail 8; two electric sliders 9 are slidably connected to the electric slide rail 8; both of the two electric sliders 9 are fixedly connected to a blower I 10.
[0034] It further includes a cylinder III 12 and a blower II 13; two cylinders III 12 are fixedly connected to the mounting frame 6; a blower II 13 is fixedly connected to the telescopic end of each cylinder III 12; an air outlet is arranged on the opposite side of each of the two blowers II 13; an air outlet is also arranged on the opposite side of each of the two blowers I 10.
[0035] The first step: A valve is installed at the lower part of each through pipe 2. Put the polyethylene waste wax into the electric heating melting pool 1, start the heating function of the electric heating melting pool 1, heat the waste wax in the electric heating melting pool 1 to melt the waste wax. The lower part of the electric heating melting pool 1 is set in a V shape, so that it is convenient for the waste wax and impurities such as stones to fall into the filter box 5; then open the valve at the lower part of the through pipe 2, drain the wax liquid in the electric heating melting pool 1 into a specified container, and the impurities such as stones in the waste wax will gather in the filter box 5 for collection.
[0036] The second step: Control the cylinder I 3 to drive the connecting plate 4 and the filter box 5 to move upward, so that the filter box 5 moves above the electric heating melting pool 1, and then let it stand for a period of time to make the wax liquid adhering to the impurities such as stones drip back into the electric heating melting pool 1 and then drain out through the through pipe 2 to avoid waste of wax liquid; finally, detach the filter box 5 from the connecting plate 4, clean the impurities such as stones and then install it back.
[0037] In the second step, the dripping speed of the wax liquid adhering to the impurities such as stones is slow, that is, the collection speed of the residual wax liquid is slow, which affects the treatment of subsequent polyethylene wax waste; therefore, after controlling the cylinder I 3 to drive the connecting plate 4 and the filter box 5 to move upward so that the filter box 5 moves above the electric heating melting pool 1, immediately control the cylinder II 7 to drive the electric slide rail 8, the electric slider 9 and the fan I 10 to move downward, so that the air outlet of the fan I 10 is slightly higher than the filter box 5, and then control the electric slide rail 8 to drive the two electric sliders 9 and their associated components to move towards each other, so that the two fans I 10 move towards each other, so that the right side of the left fan I 10 is adjacent to the left side of the filter box 5, and the left side of the right fan I 10 is adjacent to the right side of the filter box 5, and then control the fan I 10 to start, so that the fan I 10 blows hot air obliquely downward, that is, the hot air blows onto the impurities such as stones in the filter box 5, thereby accelerating the dripping of the wax liquid adhering to the impurities such as stones and accelerating the collection speed to prevent affecting the treatment of subsequent polyethylene wax waste.
[0038] In the second step, after the wax liquid is drained from the electrothermal melting pool 1, part of the wax liquid remains on the inner wall of the electrothermal melting pool 1, resulting in waste of the wax liquid; after the filter frame 5 is detached from the connecting plate 4, control the electric slide rail 8 to drive the electric slider 9 and the blower I 10 to move backward and reset, so that the air outlets on the back sides of the two blowers I 10 are located above the left inner wall and the right inner wall of the electrothermal melting pool 1. Then, close the air outlets on the opposite sides of the two blowers I 10, open the air outlets on the back sides of the two blowers I 10, and then control the cylinder II 7 to drive the electric slide rail 8, the electric slider 9 and the blower I 10 to move downward. The blower I 10 moves downward along the left inner wall and the right inner wall of the electrothermal melting pool 1. During this process, control the air outlets on the back sides of the two blowers I 10 to blow hot air obliquely downward. The hot air blows obliquely downward onto the left inner wall and the right inner wall of the electrothermal melting pool 1, and blows the wax liquid remaining on the left inner wall and the right inner wall of the electrothermal melting pool 1 downward to the V-shaped bottom of the electrothermal melting pool 1; at the same time, control the two cylinders III 12 to drive the two blowers II 13 to move downward. The two blowers II 13 move downward along the front inner wall and the back inner wall of the electrothermal melting pool 1. During this process, control the air outlets on the back sides of the two blowers II 13 to blow hot air obliquely downward. The hot air blows obliquely downward onto the left inner wall and the right inner wall of the electrothermal melting pool 1, and blows the wax liquid remaining on the front inner wall and the back inner wall of the electrothermal melting pool 1 downward to the V-shaped bottom of the electrothermal melting pool 1; then open the air outlets on the opposite sides of the two blowers I 10, close the air outlets on the back sides of the two blowers I 10, and control the electric slide rail 8 to drive the electric slider 9 and the blower I 10 to move toward each other. When moving, control the air outlets on the opposite sides of the two blowers I 10 to blow hot air obliquely downward. The hot air blows obliquely downward onto the V-shaped bottom of the electrothermal melting pool 1, so that the wax liquid flows into the through pipe 2, and the wax liquid in the electrothermal melting pool 1 can be drained into a specified container; in this way, by blowing hot air to move the wax liquid remaining on the inner wall of the electrothermal melting pool 1, waste is prevented.
[0039] Embodiment 2
[0040] On the basis of Embodiment 1, as Figures 5 - 8 shown, it further includes a partition I 11, a partition frame 21 and a partition II 22; two partition I 11 are welded to the left and right parts of the filter frame 5 respectively; a plurality of partition frames 21 are fixedly connected in the filter frame 5 at equal intervals; two partition II 22 are fixedly connected in each partition frame 21 respectively, and each partition II 22 is flush with the corresponding partition I 11.
[0041] In order to prevent stones from remaining, the upper part of the partition frame 21 is set to be conical.
[0042] It further includes a spring telescopic rod 23 and a closing plate 24; a spring telescopic rod 23 is fixedly connected to each of the two electric sliders 9; a closing plate 24 is fixedly connected to the telescopic end of each spring telescopic rod 23.
[0043] It further includes a guiding block 31; a guiding block 31 is provided between every two adjacent partition frames 21, between the foremost partition frame 21 and the filtering frame 5, and between the rearmost partition frame 21 and the filtering frame 5.
[0044] It further includes a guiding plate 25; five guiding plates 25 are fixedly connected at equal intervals between every two adjacent partition frames 21, between the foremost partition frame 21 and the filtering frame 5, and between the rearmost partition frame 21 and the filtering frame 5; a plurality of vertical grooves are formed in each guiding plate 25.
[0045] The blower I 10 blows out hot air obliquely downwards, that is, the hot air blows onto impurities such as stones in the filtering frame 5, so as to accelerate the dripping of the wax liquid adhering to the impurities such as stones. When the hot air can only blow onto the upper side of the impurities such as stones, if there is a large accumulation of impurities such as stones in the filtering frame 5, due to the obstruction of the outermost impurities such as stones, the impurities such as stones in the middle and lower parts cannot be blown by the hot air, and there is still a slow speed of collecting the residual wax liquid, which affects the treatment of subsequent polyethylene wax waste; therefore, after the impurities such as stones fall into the filtering frame 5, they are separated by a plurality of partition frames 21, and each partition frame 21 can ventilate, so that it is beneficial for the subsequent hot air to blow onto the impurities such as stones through each partition frame 21; when controlling the electric slide rail 8 to drive the two electric sliders 9 and their associated components to move towards each other, when the two blowers I 10 move towards each other, the spring telescopic rod 23 and the closing plate 24 move along with the electric slider 9. After moving, the two closing plates 24 are in contact with each other and are located directly above the filtering frame 5, that is, as Figure 5As shown; when the fan Ⅰ 10 is controlled to start, so that the hot air blown by the fan Ⅰ 10 blows obliquely downward, that is, blows towards the filter box 5, and after the wax liquid on the impurities such as stones above is blown off, the cylinder Ⅱ 7 is controlled to drive the electric slide rail 8, the electric slider 9, the fan Ⅰ 10, the spring telescopic rod 23 and the closing plate 24 to move downward. The closing plate 24 moves downward and contacts the partition frame 21 to close the upper opening of the filter box 5. After that, when the cylinder Ⅱ 7 drives the electric slide rail 8, the electric slider 9, the fan Ⅰ 10 and the spring telescopic rod 23 to continue to move downward, the closing plate 24 is blocked by the partition frame 21 and no longer continues to move downward, but will compress the spring telescopic rod 23, so that the upper opening of the filter box 5 always remains closed; when the air outlet of the fan Ⅰ 10 is located between the upper partition plate Ⅰ 11 and the filter box 5, it stops, and the two fans Ⅰ 10 are controlled to blow hot air into the partition frame 21 at the same time. The guide block 31 can concentrate the hot air and direct it to the partition frame 21, increasing the air volume blown towards the impurities such as stones. The blown hot air collides in the partition frame 21 and then blows horizontally towards the impurities such as stones on the side of the partition frame 21. The partition plate Ⅱ 22 is used to block the downward flow of the hot air after the collision, enhancing the intensity of the hot air blowing horizontally towards the impurities such as stones on the side of the partition frame 21. In this way, the hot air is blown towards the impurities such as stones in the middle, and since the upper opening of the filter box 5 is closed, the blown hot air will only come out from below the filter box 5 in the end, which is conducive to the hot air driving the wax liquid on the impurities such as stones in the middle downward, thereby accelerating the downward flow speed of the wax liquid; then continue to control the cylinder Ⅱ 7 to drive the electric slide rail 8, the electric slider 9, the fan Ⅰ 10 and the spring telescopic rod 23 to continue to move downward until the fan Ⅰ 10 is located between the two partition plates Ⅰ 11 and stops. At this time, the gap between the upper partition plate Ⅰ 11 and the filter box 5 is blocked by the opposite sides of the two fans Ⅰ 10, and the air flow can only flow out from the lower opening of the filter box 5. Then control the two fans Ⅰ 10 to blow hot air into the partition frame 21 at the same time, blowing the hot air towards the impurities such as stones in the lower part. In this way, the blown hot air will only come out from below the filter box 5 in the end, which is conducive to the hot air driving the wax liquid on the impurities such as stones in the lower part downward and away from the filter box 5, accelerating the downward flow speed of the wax liquid, thus accelerating the collection speed and preventing it from affecting the treatment of subsequent polyethylene wax waste. It should be noted that when the air outlet of the fan Ⅰ 10 is located between the upper partition plate Ⅰ 11 and the filter box 5, that is, when cleaning the residual wax liquid on the impurities such as stones in the middle of the filter box 5, part of the residual wax liquid on the impurities such as stones in the middle will be transferred to the impurities such as stones in the lower part, and when cleaning the residual wax liquid on the impurities such as stones in the middle of the filter box 5, it is impossible to ensure the cleaning of the residual wax liquid on the impurities such as stones in the lower part. Therefore, it is necessary to make the fan Ⅰ 10 located between the two partition plates Ⅰ 11 to clean the residual wax liquid on the impurities such as stones in the lower part. And when the fan Ⅰ 10 is located between the two partition plates Ⅰ 11, the gap between the upper partition plate Ⅰ 11 and the filter box 5 is blocked by the opposite sides of the two fans Ⅰ 10, avoiding the problem that the hot air blown by the fan Ⅰ 10 is transferred away from the gap between the upper partition plate Ⅰ 11 and the filter box 5, affecting the cleaning of the residual wax liquid on the impurities such as stones in the lower part by the hot air.
[0046] When the hot air blower Ⅰ 10 blows hot air into the partition frame 21, the blown hot air collides within the partition frame 21 and then horizontally blows towards the stones and other impurities on the side of the partition frame 21. At this time, a number of guide plates 25 are arranged on the path where the hot air blows out from the partition frame 21. When the hot air blows the residual wax liquid on the stones and other impurities, part of the wax liquid will directly flow out of the filter frame 5 through the vertical grooves of the guide plates 25, which further facilitates the cleaning operation of the wax liquid, reduces the cleaning burden of the hot air on the residual wax liquid on the stones and other impurities, and reduces energy consumption.
[0047] Embodiment 3
[0048] On the basis of Embodiment 2, as Figure 9 shown, it further includes a flexible corrugated plate 32; a number of flexible corrugated plates 32 are fixedly connected at equal intervals on the lower side of the filter frame 5; only the left end and the right end of the flexible corrugated plate 32 are fixedly connected to the filter frame 5.
[0049] In order to facilitate the downward flow of the wax liquid, a number of vertical grooves are formed on the flexible corrugated plate 32.
[0050] When the wax liquid flows downward out of the filter frame 5, part of the wax liquid will adhere and remain on the lower side of the filter frame 5, resulting in waste of the wax liquid; therefore, a flexible corrugated plate 32 is provided. Let the two hot air blowers Ⅰ 10 spray hot air towards the stones and other impurities, and after accelerating the downward flow rate of the wax liquid, the wax liquid flows downward, and most of it remains on the lower side of the filter frame 5. Then, control the cylinder Ⅱ 7 to drive the electric slide rail 8, the electric slider 9, the hot air blower Ⅰ 10 and the spring telescopic rod 23 to continue to move downward, so that the hot air blower Ⅰ 10 is located on the side of the flexible corrugated plate 32. Then, control the two hot air blowers Ⅰ 10 to alternately blow hot air towards the flexible corrugated plate 32, so that the flexible corrugated plate 32 swings in the horizontal direction. When swinging, a relative displacement occurs between the flexible corrugated plate 32 and the lower side of the filter frame 5. In this way, the wax liquid remaining on the lower side of the filter frame 5 is scraped off by the flexible corrugated plate 32, and finally flows down along the flexible corrugated plate 32 and returns to the electric heating melting pool 1 for collection. Since the flexible corrugated plate 32 is in a swinging state when cleaning the lower side of the filter frame 5, the wax liquid adhered when scraping on the flexible corrugated plate 32 will be swung off and no wax liquid will remain.
[0051] The above are only the preferred embodiments of the present invention and are not intended to limit the present invention. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included in the protection scope of the present invention.
Claims
1. A processing device for recycling polyethylene waste wax, comprising an electric heating melting pool (1) and a through pipe (2); a plurality of through pipes (2) are communicated with the lower part of the electric heating melting pool (1), and the lower part of the electric heating melting pool (1) is arranged in a V shape; it is characterized in that, It also includes a cylinder I (3), a connecting plate (4), a filter frame (5), a mounting frame (6), a cylinder II (7), a power unit, and a fan I (10); several cylinders I (3) are fixedly connected to the electrothermal melting pool (1); a connecting plate (4) is fixedly connected to the telescopic end of each cylinder I (3); all the connecting plates (4) are in contact with the inner side of the electrothermal melting pool (1); a filter frame (5) is detachably connected to the lower parts of all the connecting plates (4), and all the through pipes (2) are communicated with the filter frame (5); the filter frame (5) is located at the inner bottom of the electrothermal melting pool (1); a mounting frame (6) is arranged above the electrothermal melting pool (1), and the mounting frame (6) is fixedly connected to an external fixing frame; several cylinders II (7) are fixedly connected to the mounting frame (6); the telescopic ends of all the cylinders II (7) are jointly connected to a power unit; the power unit is connected to two fans I (10) arranged symmetrically left and right, an air outlet is arranged on the facing side of each of the two fans I (10), and the power unit is used to drive the fans I (10) to move left and right; It also includes a spring telescopic rod (23) and a closing plate (24); two spring telescopic rods (23) are connected to the power unit; a closing plate (24) is fixedly connected to the telescopic end of each spring telescopic rod (23); It also includes a flexible corrugated plate (32); several flexible corrugated plates (32) are fixedly connected to the lower side of the filter frame (5) at equal intervals; only the left end and the right end of the flexible corrugated plate (32) are fixedly connected to the filter frame (5).
2. The processing equipment for polyethylene waste wax recycling according to claim 1, characterized in that, The upper side of the filter frame (5) is set to be inclined inward.
3. A processing device for polyethylene waste wax recycling according to claim 1, characterized in that, It also includes a cylinder III (12) and a fan II (13); two cylinders III (12) are fixedly connected to the mounting frame (6); a fan II (13) is fixedly connected to the telescopic end of each cylinder III (12); an air outlet is arranged on the back side of each of the two fans II (13); an air outlet is also arranged on the back side of each of the two fans I (10).
4. A processing device for polyethylene waste wax recycling according to any one of claims 1-3, characterized in that, It also includes a partition I (11), a partition frame (21), and a partition II (22); several partition I (11) are fixedly connected to the left and right parts of the filter frame (5); several partition frames (21) are fixedly connected to the filter frame (5) at equal intervals; several partition II (22) are fixedly connected to each partition frame (21), and each partition II (22) is flush with the corresponding partition I (11).
5. A processing device for polyethylene waste wax recycling according to claim 4, characterized in that, The upper part of the partition frame (21) is set to be conical.
6. The processing equipment for polyethylene waste wax recycling according to claim 4, characterized in that, It also includes a guide block (31); a guide block (31) is arranged between two adjacent partition frames (21), between the frontmost partition frame (21) and the filter frame (5), and between the rearmost partition frame (21) and the filter frame (5).
7. A processing device for polyethylene waste wax recycling according to claim 6, characterized in that, It also includes a guide plate (25); several guide plates (25) are fixedly connected to the filter frame (5) at equal intervals between two adjacent partition frames (21), between the frontmost partition frame (21) and the filter frame (5), and between the rearmost partition frame (21) and the filter frame (5); several vertical grooves are formed in each guide plate (25).
8. A processing device for polyethylene waste wax recycling according to claim 1, characterized in that, Several vertical grooves are formed in the flexible corrugated plate (32).
Citation Information
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