A layered cleaning type plastic debris rinsing machine
Through the layered cleaning structure of the rinsing machine, the rinsing tank is divided into multiple chambers using sedimentation partitions and rinsing partitions, which realizes multiple cleaning of plastic debris, solves the problem of the rinsing machine occupying a large space, and improves flexibility and cleaning effect.
Patent Information
- Application Number
- CN202410826752.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-25
- Publication Date
- 2025-09-23
- Estimated Expiration
- 2044-06-25
AI Technical Summary
In the prior art, the length of the rinsing tank is extended, resulting in an increase in the space occupied by the rinsing machine, which is not conducive to flexible placement.
A layered cleaning structure is adopted, including sedimentation partitions and rinsing partitions, which divide the rinsing tank into multiple chambers. The plastic debris flows through different chambers in sequence through the feeding part for cleaning, thereby extending the cleaning stroke without extending the length of the rinsing tank.
Without increasing the length of the rinsing tank, the cleaning stroke of plastic debris is extended, the placement flexibility of the rinsing machine is improved, and the sedimentation partition is used to prevent sediment from entering the cleaning chamber, thereby improving the cleaning effect.
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Figure CN118650779B_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of plastic rinsing equipment, and in particular to a layered cleaning type plastic debris rinsing machine. Background Art
[0002] The recycling of plastic products can effectively solve the problem of plastic waste pollution. During recycling, a plastic debris rinser is required to rinse the crushed waste plastic. For example, patent CN 202212391 U discloses a waste plastic bottle rinser, which is provided with a rinse tank on a frame. The upper end of the rinse tank is open, and a discharge port is provided at one top end. The rinse tank is provided with a stirring cleaning rod with stirring blades. One end of the stirring cleaning rod is connected to a reducer, and the other end extends into the discharge port. The reducer is connected to an external transmission motor, which drives the stirring cleaning rod to rotate, thereby cleaning and driving the plastic debris toward the discharge port.
[0003] Existing patents generally extend the length of the rinsing tank to extend the cleaning stroke of plastic debris to achieve the effect of improving the cleaning degree. However, extending the length of the rinsing tank increases the occupied space of the rinsing machine, which is not conducive to the flexible placement of the rinsing machine. Summary of the Invention
[0004] The purpose of the present invention is to overcome the above technical deficiencies and propose a layered cleaning plastic debris rinsing machine to solve the technical problem in the prior art that extending the length of the rinsing tank increases the occupied space of the rinsing machine, which is not conducive to the flexible placement of the rinsing machine.
[0005] In order to achieve the above technical objectives, the present invention adopts the following technical solutions:
[0006] The present invention provides a layered cleaning type plastic debris rinsing machine, comprising:
[0007] A rinsing tank, comprising a tank body, a sedimentation baffle and a rinsing baffle, wherein the sedimentation baffle divides the tank body from top to bottom into a cleaning chamber and a feeding chamber, and a feeding port is provided at one end thereof, and a feeding port is provided at the end of the feeding chamber away from the feeding port, the rinsing baffle divides the cleaning chamber into a front rinsing chamber and a rear rinsing chamber in the horizontal direction, and a connecting port is provided at the end thereof away from the feeding port, the connecting port connects the front rinsing chamber and the rear rinsing chamber, and the front rinsing chamber connects to the feeding chamber via the feeding port; and
[0008] The material conveying part is arranged in the tank body and is used to drive the material to follow the cleaning liquid from the feed port and flow through the feed cavity, the front rinsing cavity and the rear rinsing cavity in sequence.
[0009] In some embodiments, the rinsing tank further includes an additional partition, which divides the feed chamber into a front sedimentation chamber and a rear sedimentation chamber along its width direction, and is provided with a feed port connecting the front sedimentation chamber and the rear sedimentation chamber;
[0010] The feed port is connected to the front sedimentation chamber, and is located at both ends of the front sedimentation chamber in the length direction with the feed port respectively. The feed port is located between the rear sedimentation chamber and the front rinsing chamber, and is located at the same end of the front sedimentation chamber with the feed port.
[0011] In some embodiments, the bottom of the feed chamber is tapered downward to form a sinking hopper, and the bottoms of the front sedimentation chamber and the rear sedimentation chamber are connected and respectively connected to the sinking hopper;
[0012] The layered cleaning type plastic debris rinsing machine further includes a discharge pipe, which is connected to the bottom of the sedimentation hopper and is used to discharge the sediment in the sedimentation hopper.
[0013] In some embodiments, a sinking port is provided at the bottom of the additional partition, the sinking port is connected to the front sedimentation chamber and the rear sedimentation chamber, and is connected to the sinking hopper, and is spaced below the feed port.
[0014] In some embodiments, the sedimentation baffle is provided with a discharge port at the position of the front rinsing chamber and the rear rinsing chamber respectively;
[0015] The layered cleaning type plastic debris rinsing machine also includes two sets of baffle mechanisms, which are arranged on the sedimentation partition and correspond to the two discharge ports respectively, and are used to control the opening and closing of the corresponding discharge ports.
[0016] In some embodiments, the sedimentation baffles are located at the front rinsing chamber and the rear rinsing chamber and are tapered downward to form a lower hopper, and the two lower openings are respectively located at the bottom of the two lower hoppers.
[0017] In some embodiments, the baffle mechanism includes a baffle, a traction rope and a hoisting motor. The baffle is slidably arranged on the side wall of the discharge hopper and can press against and move away from the opposite side wall of the discharge hopper during the sliding stroke to close and open the discharge port. One end of the traction rope is connected to the baffle, and the other end is connected to the hoisting motor. The hoisting motor is arranged outside the rinsing tank and is used to tighten and loosen the traction rope so that the baffle can slide to block and open the discharge port.
[0018] In some embodiments, the baffle mechanism further includes a plurality of guide rings, which are spaced apart on the side walls of the lower hopper and the side walls of the cleaning chamber, and the traction rope is sequentially passed through the plurality of guide rings.
[0019] In some embodiments, the feeding part includes a first auger, a second auger and a third auger. The first auger is arranged in the feed chamber, and is used to transport the material from the feed port to the feed port. The second auger is arranged in the front rinsing chamber, and is used to transport the material from the feed port to the connecting port. The third auger is arranged in the rear rinsing chamber, and is used to transport the material from the connecting port to the end of the rear rinsing chamber opposite to the connecting port.
[0020] In some embodiments, the layered cleaning type plastic debris rinsing machine further includes a material lifter, which is disposed at one end of the rear rinsing chamber away from the connecting port and is used to lift and output the rinsed material.
[0021] Compared to the prior art, the present invention provides a layered cleaning type plastic debris rinsing machine. Plastic debris enters the feed chamber from the feed port, where lightweight plastic debris floats to the upper layer of the feed chamber, while heavier debris settles to the bottom of the feed chamber, achieving a preliminary cleaning of the debris. After the preliminary cleaning, the plastic debris enters the front rinsing chamber from the feed port under the propulsion of the feed unit. The lightweight plastic debris can float to the water surface of the front rinsing chamber and continue to move toward the connecting port under the propulsion of the feed unit until it enters the rear rinsing chamber from the connecting port. Under the propulsion of the feed unit, it continues to move toward the end of the rear rinsing chamber away from the connecting port. In this way, the plastic debris can pass through the feed chamber, the front rinsing chamber, and the rear rinsing chamber in sequence. While extending the cleaning distance of the plastic debris, it does not need to extend the length of the rinsing tank, reducing the space occupied by the rinsing tank and improving the placement flexibility of the rinsing machine. The sedimentation baffle can effectively prevent the sediment in the feed chamber from entering the cleaning chamber, thereby improving the subsequent cleaning effect. BRIEF DESCRIPTION OF THE DRAWINGS
[0022] Figure 1 1 is a top view of a layered cleaning type plastic debris rinsing machine provided by an embodiment of the present invention;
[0023] Figure 2 yes Figure 1 Cross-sectional view of the medium-layer cleaning plastic debris rinsing machine on plane AA;
[0024] Figure 3 yes Figure 1 Cross-sectional view of the middle tank body at plane BB;
[0025] Figure 4 yes Figure 1 Top view of the middle pool;
[0026] Figure 5 yes Figure 2 A partial enlarged view of the middle tank body and baffle mechanism.
[0027] Description of reference numerals:
[0028] 1. Tank body; 1a. Feed port; 11. Cleaning chamber; 111. Front rinsing chamber; 112. Rear rinsing chamber; 113. Discharge hopper; 12. Feed chamber; 121. Front sedimentation chamber; 122. Rear sedimentation chamber; 123. Sedimentation hopper; 2. Sedimentation baffle; 2a. Feed port; 2b. Discharge port; 3. Rinse baffle; 3a. Connecting port; 4. Feeding section; 41. Second auger; 42. Third auger; 5. Additional baffle; 5a. Feed port; 5b. Discharge port; 6. Discharge pipe; 7. Baffle mechanism; 71. Shielding plate; 72. Traction rope; 73. Guide ring; 8. Lifting machine. DETAILED DESCRIPTION
[0029] In order to make the purpose, technical solutions and advantages of the present invention more clearly understood, the present invention will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present invention and are not intended to limit the present invention.
[0030] In order to solve the technical problem in the prior art that extending the length of the rinsing tank increases the space occupied by the rinsing machine, which is not conducive to the flexible placement of the rinsing machine, the present invention provides a layered cleaning plastic debris rinsing machine, which can extend the cleaning stroke of the plastic debris without extending the length of the rinsing tank, reducing the space occupied by the rinsing tank, and improving the placement flexibility of the rinsing machine. The sedimentation partition can effectively prevent the sediment in the feed chamber from entering the cleaning chamber, thereby improving the subsequent cleaning effect.
[0031] See also Figure 1 and Figure 2 , Figure 1 and Figure 2 The structural diagram of the layered cleaning type plastic debris rinsing machine in one embodiment of the present invention comprises a rinsing tank and a feeding part 4; the rinsing tank comprises a tank body 1, a sedimentation baffle 2 and a rinsing baffle 3, the sedimentation baffle 2 separates the tank body 1 from top to bottom into a cleaning chamber 11 and a feeding chamber 12, and a feeding port 2a is provided at one end of the tank body 1, and a feeding port 1a is provided at the end of the feeding chamber 12 away from the feeding port 2a. The rinsing baffle 3 separates the cleaning chamber 11 and the feeding chamber 12 from top to bottom. 1 is divided into a front rinsing chamber 111 and a rear rinsing chamber 112 in the horizontal direction, and a connecting port 3a is provided at the end away from the feeding port 2a, connecting the front rinsing chamber 111 and the rear rinsing chamber 112. The front rinsing chamber 111 is connected to the feeding chamber 12 via the feeding port 2a. The feeding part 4 is provided in the tank body 1, and is used to drive the material to follow the cleaning liquid from the feeding port 1a to flow through the feeding chamber 12, the front rinsing chamber 111 and the rear rinsing chamber 112 in sequence.
[0032] In the layered cleaning plastic debris rinsing machine provided by the present invention, plastic debris enters the feed chamber 12 from the feed port 1a. Light plastic debris floats to the upper layer of the feed chamber 12, while heavier debris settles to the bottom of the feed chamber 12, achieving preliminary cleaning of the plastic debris. After preliminary cleaning, the plastic debris enters the front rinsing chamber 111 from the feed port 2a under the propulsion of the feed unit 4. The light plastic debris can float to the water surface of the front rinsing chamber 111 and continue to move toward the connecting port 3a under the propulsion of the feed unit 4 until it enters the rear rinsing chamber 112 from the connecting port 3a. Under the propulsion of the feed unit 4, it continues to move toward the end of the rear rinsing chamber 112 away from the connecting port 3a. In this way, the plastic debris can pass through the feed chamber 12, the front rinsing chamber 111 and the rear rinsing chamber 112 in sequence. While extending the cleaning stroke of the plastic debris, there is no need to extend the length of the rinsing tank, reducing the space occupied by the rinsing tank, and improving the placement flexibility of the rinsing machine. The sedimentation baffle can effectively prevent the sediment in the feed chamber 12 from entering the cleaning chamber 11, thereby improving the subsequent cleaning effect.
[0033] It should be noted that in this embodiment, the layered cleaning plastic debris rinsing machine also includes a feeder 8, located at the end of the rear rinsing chamber 112 away from the connecting port 3a. This feeder 8 is used to lift and discharge the rinsed material. For ease of explanation, the end of the rear rinsing chamber 112 away from the connecting port 3a is defined as the discharge end. The specific structure and principle of the feeder 8 are prior art and will not be elaborated here. Furthermore, a feed conduit is provided corresponding to the feed port 1a. The feed conduit is arranged at an angle and contains a feed auger.
[0034] In one embodiment, see Figure 3 The rinsing tank also includes an additional partition 5, which divides the feed chamber 12 into a front sedimentation chamber 121 and a rear sedimentation chamber 122 along its width direction, and is provided with a feed port 5a connecting the front sedimentation chamber 121 and the rear sedimentation chamber 122; the feed port 1a is connected to the front sedimentation chamber 121, and the feed port 5a is located at the two ends of the front sedimentation chamber 121 in the length direction respectively, and the feed port 2a is located between the rear sedimentation chamber 122 and the front rinsing chamber 111, and is located at the same end of the front sedimentation chamber 121 as the feed port 1a.
[0035] In this embodiment, the feed chamber 12 is also divided into a front sedimentation chamber 121 and a rear sedimentation chamber 122, so that the plastic debris passes through the feed port 1a, the front sedimentation chamber 121, the feed port 5a, the rear sedimentation chamber 122, the feed port 2a, the front rinsing chamber 111, the connecting port 3a, the rear rinsing chamber 112 and the discharge end in sequence, further extending the cleaning process of the plastic debris and improving the cleaning ability of the plastic debris. It should be noted that in this solution, the arrangement direction of the front rinsing chamber 111 and the rear rinsing chamber 112 is consistent with the arrangement direction of the front sedimentation chamber 121 and the rear sedimentation chamber 122, and the extension direction of the front sedimentation chamber 121, the rear sedimentation chamber 122, the front rinsing chamber 111 and the rear rinsing chamber 112 is consistent.
[0036] In one embodiment, the bottom of the feed chamber 12 is tapered downward to form a sedimentation hopper 123, and the bottoms of the front sedimentation chamber 121 and the rear sedimentation chamber 122 are connected and respectively connected to the sedimentation hopper 123; the layered cleaning type plastic debris rinsing machine also includes a discharge pipe 6, which is connected to the bottom of the sedimentation hopper 123 for outputting the sediment in the sedimentation hopper 123.
[0037] In this embodiment, after the plastic debris enters the feed chamber 12 through the feed port 1a, the sediment descends and moves down the sidewall of the sinking hopper 123 to the bottom of the sinking hopper 123, and is ultimately discharged into the rinsing tank through the discharge pipe 6. This improves cleaning capacity while making the overall structure relatively compact. It should be noted that in this embodiment, a lifting auger is provided in the discharge pipe 6 to lift the sediment at the bottom of the sinking hopper 123 out of the feed chamber 12.
[0038] In one embodiment, a sinking port 5b is provided at the bottom of the additional partition 5 , which is connected to the front sedimentation chamber 121 and the rear sedimentation chamber 122 , and is also connected to the sinking hopper 123 , and is spaced below the feed port 1a .
[0039] In this embodiment, the front settling chamber 121, rear settling chamber 122, and settling hopper 123 are connected via a sinking port 5b on the additional baffle 5. The sinking port 5b is positioned below the feed inlet 1a. This prevents plastic debris entering the front settling chamber 121 through the feed inlet 1a from directly entering the rear settling chamber 122 through the sinking port 5b, and instead encourages the sediment to enter the settling hopper. It should be noted that in this embodiment, the rinsing baffle 3 and the additional baffle 5 extend in the same direction.
[0040] In one embodiment, see Figure 4 and Figure 5 The sedimentation baffle 2 is located at the front rinsing chamber 111 and the rear rinsing chamber 112, and is respectively provided with a discharge port 2b; the layered cleaning type plastic debris rinsing machine also includes two sets of baffle mechanisms 7, which are arranged on the sedimentation baffle 2 and correspond to the two discharge ports 2b respectively, for controlling the opening and closing of the corresponding discharge ports 2b.
[0041] In this embodiment, when the rinsing machine is used for a certain period of time, after all the plastic debris in the feed chamber 12 enters the front rinsing chamber 111, the shielding mechanism can be driven to open the discharge port 2b, so that the sediment on the upper side of the sedimentation baffle 2 can fall to the bottom of the feed chamber 12, ensuring the cleanliness of the cleaning liquid on the upper layer of the sedimentation baffle 2, thereby improving the cleaning ability.
[0042] In one embodiment, the sedimentation baffles 2 are located at the front rinsing chamber 111 and the rear rinsing chamber 112 and are tapered downward to form a lower hopper 113 . The two lower openings 2 b are located at the bottom of the two lower hoppers 113 .
[0043] In this embodiment, the bottom of the front rinsing chamber 111 and the rear rinsing chamber 112 are set as a downwardly tapering lower hopper 113 to accelerate the speed at which the sediment at the bottom of the front rinsing chamber 111 and the rear rinsing chamber 112 falls into the feeding chamber 12.
[0044] In one embodiment, the baffle mechanism 7 includes a baffle 71, a traction rope 72 and a winch motor. The baffle 71 is slidably arranged on the side wall of the discharge hopper 113, and can press against and move away from the opposite side wall of the discharge hopper 113 during the sliding stroke to close and open the discharge port 2b. One end of the traction rope 72 is connected to the baffle 71, and the other end is connected to the winch motor. The winch motor is arranged outside the rinsing pool and is used to tighten and loosen the traction rope 72 so that the baffle 71 can slide to block and open the discharge port 2b.
[0045] In this embodiment, when the discharge port 2b needs to be opened, the winch motor tightens the traction rope 72, and the traction rope 72 drives the baffle 71 away from the opposite side wall of the discharge hopper 113; and when the discharge port 2b needs to be closed, the winch motor only needs to loosen the traction rope 72, and the baffle 71 can move down along the side wall of the discharge hopper 113 under the drive of its own weight until it is pressed against the opposite side wall of the discharge hopper 113 to close the discharge port 2b. The operation is simple and convenient.
[0046] In one embodiment, the baffle mechanism 7 further includes a plurality of guide rings 73 , which are spaced apart on the side walls of the lower hopper 113 and the side walls of the cleaning chamber 11 , and the traction rope 72 is sequentially passed through the plurality of guide rings 73 .
[0047] In this embodiment, the traction rope 72 is moved along the side wall of the rinsing chamber by a plurality of guide rings 73 to prevent the traction rope 72 from interfering with other components.
[0048] In one embodiment, the feeding part 4 includes a first auger, a second auger 41 and a third auger 42. The first auger is arranged in the feed chamber 12, and is used to transport the material from the feed port 1a to the feed port 2a. The second auger 41 is arranged in the front rinsing chamber 111, and is used to transport the material from the feed port 2a to the connecting port 3a. The third auger 42 is arranged in the rear rinsing chamber 112, and is used to transport the material from the connecting port 3a to the end of the rear rinsing chamber 112 opposite to the connecting port 3a.
[0049] In this embodiment, the corresponding movement of the plastic debris is promoted by a spiral propulsion auger. It should be noted that the specific structure and principle of the spiral propulsion auger are prior art and will not be described in detail here. In addition, the feeding part 4 also includes a fourth auger, and the first auger is arranged in the front sedimentation chamber, and the fourth auger is arranged in the rear sedimentation chamber. In addition, the layered cleaning type plastic debris rinsing machine also includes a plurality of material transfer rollers, which are arranged on the upper side of the rinsing tank and correspond to the front rinsing chamber 111 and the rear rinsing chamber 112 respectively, and are used to move the plastic debris on the water surface. This is prior art and will not be described in detail here.
[0050] In order to better understand the present invention, the following Figures 1 to 5 The technical solution of the present invention is described in detail:
[0051] The plastic debris enters the front sedimentation chamber from the feed port 1a. Under the propulsion of the first auger, it flows from the feed port 1a in the front sedimentation chamber to the feed port 5a and enters the rear sedimentation chamber. Then, under the propulsion of the fourth auger, it flows from the feed port 5a in the rear sedimentation chamber to the feed port 2a to enter the front rinsing chamber 111, achieving preliminary separation of the plastic debris from the sediment in the feed chamber 12. The sedimentation baffle can effectively prevent the sediment at the bottom from entering the upper rinsing chamber, ensuring the upper cleaning capacity, and the sediment at the bottom of the feed chamber 12 can be discharged through the discharge pipe 6. Then, under the propulsion of the second auger 41, the plastic debris flows from the feed port 2a in the front rinsing chamber 111 to the connecting port 3a and enters the rear rinsing chamber 112. Finally, under the propulsion of the third auger 42, it flows from the connecting port 3a to the lifting machine 8, and is lifted and output by the lifting machine 8, achieving the cleaning of the plastic debris. At the same time, the baffle plate 71 can be moved to open the discharge port 2b to regularly clean the sediment in the rinsing chamber to ensure the cleaning capacity.
[0052] The specific embodiments of the present invention described above do not limit the scope of protection of the present invention. Any other corresponding changes and modifications made based on the technical concept of the present invention should be included in the scope of protection of the claims of the present invention.
Claims
1. A layered cleaning type plastic debris rinsing machine, characterized in that: include: A rinsing tank, comprising a tank body, a sedimentation baffle and a rinsing baffle, wherein the sedimentation baffle divides the tank body from top to bottom into a cleaning chamber and a feeding chamber, and a feeding port is provided at one end thereof, and a feeding port is provided at the end of the feeding chamber away from the feeding port, the rinsing baffle divides the cleaning chamber into a front rinsing chamber and a rear rinsing chamber in the horizontal direction, and a connecting port is provided at the end thereof away from the feeding port, the connecting port connects the front rinsing chamber and the rear rinsing chamber, and the front rinsing chamber connects to the feeding chamber via the feeding port; and A material conveying portion is provided in the tank body, and is used to drive the material to follow the cleaning liquid from the feed port and flow through the feed cavity, the front rinsing cavity and the rear rinsing cavity in sequence; Wherein, the rinsing tank further includes an additional partition, which divides the feed cavity into a front sedimentation cavity and a rear sedimentation cavity along its width direction, and is provided with a feed port communicating with the front sedimentation cavity and the rear sedimentation cavity; The feed port is connected to the front sedimentation chamber, and is located at both ends of the front sedimentation chamber in the length direction with the feed port respectively; the feed port is located between the rear sedimentation chamber and the front rinsing chamber, and is located at the same end of the front sedimentation chamber with the feed port; The sedimentation baffle is located in the front rinsing chamber and the rear rinsing chamber and is respectively provided with a discharge port; The layered cleaning type plastic debris rinsing machine further includes two sets of baffle mechanisms, which are arranged on the sedimentation partition and correspond to the two discharge ports respectively, for controlling the opening and closing of the corresponding discharge ports; The sedimentation baffles are located at the front rinsing chamber and the rear rinsing chamber and are tapered downward to form a lower hopper, and the two lower hopper openings are respectively located at the bottom of the two lower hoppers; The baffle mechanism includes a baffle, a traction rope and a hoisting motor. The baffle is slidably arranged on the side wall of the discharge hopper and can press against and move away from the opposite side wall of the discharge hopper during the sliding stroke to close and open the discharge port. One end of the traction rope is connected to the baffle, and the other end is connected to the hoisting motor. The hoisting motor is arranged outside the rinsing tank and is used to tighten and loosen the traction rope so that the baffle can slide to block and open the discharge port.
2. The layered cleaning type plastic debris rinsing machine according to claim 1, characterized in that: The bottom of the feed chamber is tapered downward to form a sinking hopper, and the bottoms of the front sedimentation chamber and the rear sedimentation chamber are connected and connected to the sinking hopper respectively; The layered cleaning type plastic debris rinsing machine further includes a discharge pipe, which is connected to the bottom of the sedimentation hopper and is used to discharge the sediment in the sedimentation hopper.
3. The layered cleaning type plastic debris rinsing machine according to claim 2, characterized in that: A sinking port is provided at the bottom of the additional partition, the sinking port is connected to the front sedimentation chamber and the rear sedimentation chamber, and is connected to the sinking hopper, and is spaced below the feed port.
4. The layered cleaning type plastic debris rinsing machine according to claim 1, characterized in that: The baffle mechanism further includes a plurality of guide rings, which are spaced apart on the side walls of the lower hopper and the side walls of the cleaning chamber, and the traction rope is sequentially passed through the plurality of guide rings.
5. The layered cleaning type plastic debris rinsing machine according to claim 1, characterized in that: The feeding part includes a first auger, a second auger and a third auger. The first auger is arranged in the feed chamber, and is used to transport the material from the feed port to the feed port. The second auger is arranged in the front rinsing chamber, and is used to transport the material from the feed port to the connecting port. The third auger is arranged in the rear rinsing chamber, and is used to transport the material from the connecting port to the end of the rear rinsing chamber opposite to the connecting port.
6. The layered cleaning type plastic debris rinsing machine according to claim 1, characterized in that: The layered cleaning type plastic debris rinsing machine also includes a material lifter, which is arranged at one end of the rear rinsing chamber away from the connecting port and is used to lift and output the rinsed material.
Citation Information
Patent Citations
Potcher for waste plastic bottles
CN202212391U
Waste plastic washing recovery processing line
CN102069535A
The system to wash bottles chip
KR100643789B1