Efficient energy-saving plastic particle regenerator

By employing a central shaft moving part and a buffer spring structure in the plastic pellet recycling machine, the problems of high energy consumption and vibration noise in the existing technology have been solved, achieving a highly efficient, energy-saving, and safe cleaning process.

CN223589819UActive Publication Date: 2025-11-25LIAOCHENG HUILI PLASTIC WEAVING CO LTD
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Patent Information

Application Number
CN202422347751.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-26
Publication Date
2025-11-25
Estimated Expiration
2034-09-26

AI Technical Summary

Technical Problem

Existing plastic pellet recycling machines require independent mixing and spraying systems during the cleaning process, which increases energy consumption and costs. In addition, the equipment generates vibration and noise during operation, affecting user experience and safety.

Method used

It adopts a central shaft moving part and a buffer spring structure, and drives the stirring and spraying of cleaning agent by a single motor. The buffer spring absorbs the vibration of the equipment, reducing energy consumption and noise.

Benefits of technology

It enables the mixing and spraying of cleaning agents to be completed with a single motor, reducing energy consumption and production costs, reducing equipment vibration and noise, and improving user experience and safety.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides an efficient energy-saving plastic particle regenerator, which relates to the technical field of plastic regeneration equipment, and comprises a workbench, a cleaning device fixed on the top of the workbench, a material cylinder fixed on the inner wall of the cleaning device, movable block long grooves arranged on both sides of the inner wall of the cleaning device, and sliding grooves arranged on both sides of the inner wall of the cleaning device. In the plastic particle regeneration process, the mode that a middle shaft moving part is installed is adopted, it is a crucial step that it is ensured that the plastic particles are cleaned in the plastic particle regeneration process, an existing plastic particle regeneration machine usually adopts a specific system to spray medicine to clean the plastic particles, and the system needs an independent stirring mechanism to clean the particles and does not need an independent stirring mechanism to clean the plastic particles. Special spraying equipment is required to be mounted to ensure that the cleaning agent can cover all the particles, the equipment is driven by different kinetic energy output devices, the energy consumption and the overall cost of the machine are correspondingly increased when one set of equipment is additionally arranged, the energy consumption expenditure during operation of the machine is increased, and the long-term operation cost of the equipment is increased.
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Description

TECHNICAL FIELD

[0001] The utility model relates to plastic regenerating equipment technical field especially relates to high -efficient energy -conserving type plastic particle regenerating machine. BACKGROUND

[0002] Plastic particle regenerating machine is a kind of equipment that waste plastics are reprocessed into reusable particles, it is converted into raw material particles by crushing, cleaning, drying and granulating etc.

[0003] In the prior art, ensuring the cleanliness of plastic particles is a crucial step in the plastic particle regeneration process. The existing plastic particle regenerating machine usually uses a specific system to spray chemicals for cleaning the plastic particles. This system not only requires an independent stirring mechanism to evenly clean the particles, but also requires the installation of a dedicated spraying device to ensure that the cleaning agent can cover all the particles. These devices need to be driven by different kinetic energy output devices, such as motors or hydraulic systems. Each additional set of such equipment increases the energy consumption and overall cost of the machine. Specifically, the independent operation of the stirring and spraying systems means that the manufacturer of the plastic particle regenerating machine has to install and maintain multiple power systems, which increases the energy consumption of the machine during operation and raises the initial investment cost and long-term operating cost of the equipment. SUMMARY

[0004] The utility model aims at solving the shortcomings in the prior art and provides a high-efficiency energy-saving plastic particle regenerating machine.

[0005] In order to achieve the above object, the utility model discloses the following technical scheme: High -efficient energy -saving type plastic particle regenerator, including work head, the work head top is fixed with cleaning equipment, the cleaning equipment inner wall is fixed with the material jar, the cleaning equipment includes sliding mechanism, the sliding mechanism drives to the designated position of inverted U spare, the sliding mechanism includes track block, and the both sides of cleaning equipment inner wall are all seted up movable piece long slot, the both sides of cleaning equipment inner wall are all seted up sliding slot, the sliding slot inner wall slidingly connected with track block, the track block inner wall is connected with screw rod, and the screw rod one end is rotatably connected with the cleaning equipment inner wall, and the screw rod is driven through transmission motor, the one side of track block is fixed with inverted U spare, the linear array rotation of inverted U spare top is connected with the pinion, the pinion is driven through transmission motor, the bottom rotation of inverted U spare is connected with the middle axle movable piece, the middle axle movable piece side is seted up and pushes the slot, the middle axle movable piece side is seted up and pushes the arc slot, the middle axle movable piece bottom is fixed with the middle movable rod, the middle movable rod bottom is fixed with reciprocating stirring board, the pinion bottom fixedly connected with side movable rod, the side movable rod bottom is fixed with stirring board, the side movable rod top end circumferential surface is fixed with L type post, the side movable rod top end circumferential surface is fixed with short diameter arc plate, the short diameter arc plate bottom is fixed with long diameter arc plate, the dispensing equipment includes air pressure spare, the air pressure spare inner wall is seted up and is seted up and is seted up and is seted 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bottom of the side driving rod is continuously rotated to mix the material, the material is uniformly stirred, the long-diameter arc plate is also rotated when the side driving rod is rotated, the long-diameter arc plate is in contact with the arc groove piece every time the long-diameter arc plate is rotated to one end, the arc groove piece is pushed inward, the connecting column and the air pressing plate are pressed inward to squeeze the air in the air groove, the air is squeezed into the inner liquid pipe through the air connecting channel, the air pushes the inner liquid pipe to two ends, part of the air leaves through the liquid outlet channel, the other part makes the blocking ball block the thick wall layer, then the elastic potential energy of the reset spring is released to push the arc groove piece out again, the air pressing plate is pulled outwards, the air pressure at the position where the air pressing plate leaves is reduced, the blocking ball is sucked back, the thick wall layer is no longer hindered, the inner liquid pipe sucks the cleaning agent into the liquid storage barrel, the cleaning liquid is sucked into the inner liquid pipe, when the arc groove piece is pressed again, the gas pushes the cleaning liquid out of the two ends of the inner liquid pipe again, because the blocking ball at the thick wall layer prevents the cleaning liquid from flowing back, most of the cleaning liquid is sprayed out of the liquid outlet channel and into the material cylinder, so that the device can complete the stirring and spraying of the cleaning agent by using only a single motor, which greatly reduces energy consumption, reduces equipment wear and tear, reduces production and equipment costs, reduces production costs, and improves user experience.

[0006] Preferably, the bottom of the workbench is fixed with a bearing plate, the bottom of the bearing plate is fixed with a buffer spring, the bottom of the buffer spring is fixed with a groove pad, the bottom of the bearing plate is fixed with a limiting T piece, the four corners of the groove pad are provided with sliding T grooves, the inner wall of the sliding T groove is in sliding connection with the surface of the limiting T piece, and the bottom of the groove pad is fixed with a bottom bearing plate. In the prior art, vibration is inevitably generated during the operation of the equipment, which causes the bottom of the equipment to continuously collide with the ground, resulting in loud noise, reduced user experience, and frequent vibration that easily causes component fatigue and reduces the service life of the equipment. To solve such problems, the buffer spring is installed to achieve the effect of improving user experience.

[0007] Preferably, the bottom plate is fixed with a trapezoidal pad at the bottom, and the bottom plate is generally made of metal material in the prior art, and the metal material has a relatively low friction coefficient, so that the equipment is easily deviated on the ground under the influence of vibration, and an accident occurs, aiming at the problems, the trapezoidal pad is adopted to solve the problems, the friction between the component and the ground is improved, the equipment is prevented from slipping, the user experience is improved, and the production safety is improved.

[0008] Preferably, the trapezoidal pad is provided with a bottom anti-skid groove at the bottom, the friction is improved, and the production safety is improved.

[0009] Preferably, the bottom plate is fixed with a protective pad at the top, the collision between the components is prevented, and the service life of the equipment is improved.

[0010] Preferably, the track block is trapezoidal, and the sliding groove is trapezoidal, the sliding stability of the component is improved, the deviation is prevented, and the stability of the equipment is improved.

[0011] Beneficial effects:

[0012] 1. In existing technologies, ensuring the cleanliness of plastic granules is a crucial step in the plastic granule recycling process. Current plastic granule recycling machines typically employ a specific system to spray chemicals to clean the plastic granules. This system requires not only an independent stirring mechanism to evenly clean the granules but also specialized spraying equipment to ensure that the cleaning agent covers all granules. Each of these devices needs to be driven by different power output devices, such as motors or hydraulic systems. Each additional set of such equipment increases the machine's energy consumption and overall cost. Specifically, independently operating stirring and spraying systems mean that plastic granule recycling machines... Manufacturers often have to install and maintain multiple power systems, increasing energy consumption during machine operation and driving up initial investment and long-term operating costs. To address this issue, this invention solves the problem by installing a central shaft moving component. When the operator feeds plastic granules into the material cylinder, the motor starts, causing the screw to rotate. The threaded connection drives the track block, moving the inverted U-shaped component forward to the transmission motor. The operator then uses the transmission motor to drive multiple moving gears, which in turn rotate the side moving rod. When the L-shaped column of the side moving rod rotates, it slides into the actuating groove of the central shaft moving component, causing the central shaft moving component to rotate. Simultaneously, the rotation of the central moving rod causes the reciprocating stirring plate below to rotate. The material is stirred by side-moving rods on both sides, causing the reciprocating stirring plate to rotate 90 degrees back and forth. Simultaneously, the stirring plate at the bottom of the side-moving rods rotates continuously, coordinating and stirring the material to ensure uniform mixing. As the side-moving rods rotate, the long-diameter arc plate also rotates. Whenever the long-diameter arc plate rotates to one end, it contacts the arc groove component and pushes it inward, causing the connecting column and air pressure plate to compress the air in the air groove. This air is forced through the air passage into the inner liquid pipe, pushed towards both ends. Part of the air leaves through the liquid outlet, while the other part causes the blocking ball to block the thick-walled layer. Subsequently, the return spring releases its elastic potential energy, pushing the arc groove component back out and simultaneously pulling the air pressure plate outward. The air pressure at the point where the pressure plate leaves decreases, causing the blocking ball to be sucked back. The thick-walled layer loses its obstruction, allowing the inner liquid pipe to draw detergent into the storage tank. The detergent is drawn into the inner liquid pipe, and when the arc-shaped groove is pressed again, the gas pushes the detergent back towards both ends of the inner liquid pipe. Because the blocking ball at the thick-walled layer prevents the detergent from flowing back, most of the detergent is sprayed out from the outlet and into the material cylinder. This allows the equipment to complete the mixing and spraying of detergent using only a single motor, significantly reducing energy consumption, equipment wear and tear, and production and equipment costs, thus achieving the effect of reducing production costs and improving user experience.

[0013] 2、In the prior art, the device inevitably generates vibration when running, which causes the device bottom to continuously collide with the ground, resulting in relatively large noise, reducing user experience, and frequent vibration easily causes component fatigue, reducing the service life of the device, to solve such problems, the utility model adopts the mode of installing a buffer spring, when the device vibrates, the bearing plate receives the vibration, transmits the vibration to the buffer spring, the buffer spring absorbs the vibration and converts it into elastic potential energy, when the elastic potential energy is released, the sliding friction between the inner wall of the sliding T groove and the limiting T piece converts the elastic potential energy into internal energy, thereby reducing the influence of vibration, achieving the effect of improving user experience.

[0014] 3、In the prior art, the bottom bearing plate is generally made of metal material, and due to the relatively low friction coefficient of the metal material, the device is easily offset on the ground under the influence of vibration, causing accidents, to solve such problems, the utility model adopts the mode of installing a trapezoidal pad, which improves the friction between the component and the ground, prevents the device from slipping, improves user experience, and achieves the effect of improving production safety. BRIEF DESCRIPTION OF DRAWINGS

[0015] Figure 1 It is a three-dimensional structure schematic view of the utility model;

[0016] Figure 2 It is a three-dimensional structure schematic view of the bearing plate of the utility model;

[0017] Figure 3 It is a sectional view of the inverted U-shaped piece of the utility model;

[0018] Figure 4 It is a sectional view of the side arc groove of the utility model;

[0019] Figure 5 It is a sectional view of the L-shaped column rod of the utility model;

[0020] Figure 6 It is a sectional view of the air pressure piece of the utility model;

[0021] Figure 7 It is a sectional view of the air pressure plate of the utility model;

[0022] Figure 8 It is a three-dimensional structure schematic view of the groove pad piece of the utility model;

[0023] Figure 9 It is a three-dimensional structure schematic view of the buffer spring of the utility model.

[0024] LEGEND:

[0025] 1, workbench; 101, cleaning device; 102, material cylinder; 2, chute; 201, screw; 202, track block; 203, moving block long slot; 204, inverted U-shaped piece; 205, moving gear; 206, transmission motor; 207, central shaft moving piece; 208, shifting groove; 209, side arc groove; 2010, central moving rod; 2011, reciprocating stirring plate; 2012, side moving rod; 2013, short diameter arc plate; 2014, long diameter arc plate; 2015, stirring plate; 2016, L-shaped column rod; 3, air pressure piece; 301, air groove; 302, arc groove piece; 303, connecting column; 304, air pressing plate; 305, reset spring; 306, liquid storage barrel; 307, liquid connecting groove; 308, liquid piece; 309, inner liquid pipe; 3010, air connecting channel; 3011, thick wall layer; 3012, blocking spring; 3013, blocking ball; 3014, liquid outlet channel; 4, bearing plate; 401, buffer spring; 402, groove pad piece; 403, limiting T piece; 404, sliding T groove; 405, bottom bearing plate; 406, protective pad; 407, trapezoidal pad; 408, bottom anti-skid groove. DETAILED DESCRIPTION

[0026] In order to make the technical means, creative features, purposes and effects of the utility model easy to understand, the utility model is further described below in combination with specific embodiments and drawings, but the following embodiments are only preferred embodiments of the utility model, not all. Based on the embodiments in the embodiments, other embodiments obtained by those skilled in the art without creative labor belong to the protection scope of the utility model.

[0027] The specific embodiments of the utility model are described below in combination with the drawings. Specific embodiments:

[0029] Reference Figures 1-9The utility model provides a high -efficient energy -conserving type plastic particle regenerator, including workbench 1, the top of workbench 1 is fixed with cleaning equipment 101, the inner wall of cleaning equipment 101 is fixed with material cylinder 102, the both sides of cleaning equipment 101 inner wall all are set up with movable block long slot 203, the both sides of cleaning equipment 101 inner wall all are set up with sliding slot 2, the inner wall sliding connection of sliding slot 2 is connected with track block 202, the inner wall screw connection of track block 202 is connected with screw 201, and one end of screw 201 is rotatably connected with the inner wall of cleaning equipment 101, and screw 201 is driven through transmission motor 206, one side of track block 202 is fixed with inverted U piece 204, and linear array rotatable connection is set up at the top of inverted U piece 204 and has driving gear 205, and driving gear 205 is driven through transmission motor 206, and inverted U piece 204 bottom rotatable connection has middle axle moving part 207, and the side of middle axle moving part 207 is set up with the slot 208 of pushing, and the side of middle axle moving part 207 is set up with side arc slot 209, and middle axle moving part 207 bottom is fixed with middle moving rod 2010, and middle moving rod 2010 bottom is fixed with reciprocating stirring plate 2011, and driving gear 205 bottom fixed connection has side moving rod 2012, and side moving rod 2012 bottom is fixed with stirring plate 2015, and the periphery of side moving rod 2012 top is fixed with L type column rod 2016, and the periphery of side moving rod 2012 top is fixed with short diameter arc plate 2013, and short diameter arc plate 2013 bottom is fixed with long diameter arc plate 2014, and the both sides of cleaning equipment 101 inner wall are all fixed with gas pressure spare 3, and the inner wall of gas pressure spare 3 is set up with gas groove 301, and the inner wall sliding connection of gas pressure spare 3 is connected with arc groove spare 302, and one end of arc groove spare 302 is fixed with connecting column 303, and the surface of connecting column 303 is equipped with reset spring 305, and one end of connecting column 303 is fixed with gas pressure plate 304, and one side of gas pressure spare 3 is set up with liquid connection groove 307, and one end of liquid connection groove 307 is fixed with connecting pipe, and one end of connecting pipe is fixed with liquid storage barrel 306, and the bottom of gas pressure spare 3 is fixed with liquid place spare 308, and the inner wall of liquid place spare 308 is fixed with inner liquid pipe 309, and one end of inner liquid pipe 309 is fixed with the inner wall of liquid connection groove 307, and the surface of inner liquid pipe 309 is fixed with connecting gas channel 3010, and one end of connecting gas channel 3010 is fixed in the inner wall of gas groove 301, and one end of inner liquid pipe 309 inner wall is fixed with thick wall layer 3011, and the inner wall of inner liquid pipe 309 is fixed with jam spring 3012, and one end of jam spring 3012 is fixed with jam ball 3013, and one end of inner liquid pipe 309 is set up with liquid outlet 3014,The initial investment cost and long-term operation cost of the equipment are increased, which is solved by installing the middle shaft movable part 207. After the worker puts the plastic particles into the cylinder 102, the motor is started to rotate the screw 201 to drive the rail block 202 to move forward to the transmission motor 206. The worker drives the plurality of movable gears 205 to rotate by using the transmission motor 206, and drives the side movable rod 2012 to rotate. When the L-shaped column 2016 of the side movable rod 2012 rotates, it slides into the pushing groove 208 of the middle shaft movable part 207, and drives the middle shaft movable part 207 to rotate. At the same time, the rotation of the middle movable rod 2010 drives the reciprocating stirring plate 2011 below to rotate and stir the material. Because the side movable rods 2012 are arranged on both sides, the reciprocating stirring plate 2011 rotates at 90 degrees to stir the material. At the same time, the stirring plate 2015 at the bottom of the side movable rod 2012 rotates continuously, and is matched with the stirred material to make the material stirred uniformly. When the side movable rod 2012 rotates, the long-diameter arc plate 2014 also rotates. When the long-diameter arc plate 2014 rotates to one end, it will contact the arc groove part 302 and push the arc groove part 302 inward, so that the connecting column 303 and the air pressing plate 304 extrude the air in the air groove 301 inward. The air is extruded into the inner liquid pipe 309 through the air duct 3010. The air pushes the two ends of the inner liquid pipe 309. Part of the air leaves the liquid outlet 3014, and the other part makes the blocking ball 3013 block the thick wall layer 3011. Then, the elastic potential energy of the reset spring 305 is released to push the arc groove part 302 out again, and at the same time, the air pressing plate 304 is pulled outwards, so that the air pressure at the position where the air pressing plate 304 leaves is reduced, the blocking ball 3013 is sucked back, the thick wall layer 3011 is lost, and the inner liquid pipe 309 sucks the cleaning agent into the liquid storage barrel 306. The cleaning liquid is sucked into the inner liquid pipe 309. When the arc groove part 302 is pressed again, the gas pushes the cleaning liquid out of the two ends of the inner liquid pipe 309. Because the blocking ball 3013 at the thick wall layer 3011 prevents the cleaning liquid from flowing back, most of the cleaning liquid is sprayed from the liquid outlet 3014 and enters the cylinder 102. Therefore, the equipment can complete stirring and spraying of cleaning agent by using only a single motor, which greatly reduces energy consumption, reduces equipment wear and tear, and reduces production cost and equipment cost, thereby reducing production cost and improving user experience.

[0030] The bottom of the workbench 1 is fixed with a bearing plate 4, the bottom of the bearing plate 4 is fixed with a buffer spring 401, the bottom of the buffer spring 401 is fixed with a groove pad 402, the bottom of the bearing plate 4 is fixed with a limiting T piece 403, the four corners of the groove pad 402 are provided with sliding T grooves 404, the inner wall of the sliding T groove 404 is in sliding connection with the surface of the limiting T piece 403, the bottom of the groove pad 402 is fixed with a bottom bearing plate 405, the equipment inevitably generates vibration during operation, which causes the bottom of the equipment to continuously collide with the ground, resulting in relatively large noise, reducing the user experience, and at the same time, frequent vibration can easily cause component fatigue, reducing the service life of the equipment, and the installation of the buffer spring 401 solves the problem, realizes that when the equipment vibrates, the bearing plate 4 receives the vibration and transmits the vibration to the buffer spring 401, the buffer spring 401 absorbs the vibration and converts it into elastic potential energy, when it releases the elastic potential energy, the sliding friction between the inner wall of the sliding T groove 404 and the limiting T piece 403 converts the elastic potential energy into internal energy, thereby reducing the influence of vibration and improving the user experience. The bottom of the bottom bearing plate 405 is fixed with a trapezoidal pad 407, the bottom bearing plate 405 is generally made of metal material, and due to the relatively low friction coefficient of the metal material, the equipment is easily offset on the ground under the influence of vibration, causing accidents to occur, the installation of the trapezoidal pad 407 solves the problem, realizes the improvement of the friction between the component and the ground, prevents the equipment from slipping, improves the user experience, and improves the production safety. The bottom of the trapezoidal pad 407 is provided with a bottom anti-skid groove 408, which improves the friction and improves the production safety. The top of the bottom bearing plate 405 is fixed with a protective pad 406, which prevents the collision between components and improves the service life of the equipment.

[0031] The utility model discloses a working principle: when the staff is thrown into plastic particles to the cylinder 102, starts motor and makes screw rod 201 rotate screw thread connection drive rail block 202 drive inverted U piece 204 to move to transmission motor 206, and the staff utilizes transmission motor 206 to drive multiple movable gear 205 rotation, drives side lever 2012 rotation, when the L type column rod 2016 of side lever 2012 rotates, slides into the poking groove 208 of central shaft movable element 207, and drives central shaft movable element 207 rotation, simultaneously, and the rotation of middle lever 2010 makes the rotation of reciprocating stirring plate 2011 below, stirs material, because both sides are equipped with side lever 2012, makes reciprocating stirring plate 2011 with 90 degrees reciprocating rotation stirs material, and the stirring plate 2015 of side lever 2012 bottom constantly rotates, and mixes and stirs material, makes material stirring uniform, when side lever 2012 rotates, long diameter arc plate 2014 also follows rotation, whenever long diameter arc plate 2014 rotates to one end, it will contact with arc groove piece 302, and pushes arc groove piece 302 inward, makes connecting column 303 and air pressing plate 304 inward extrude the air of air groove 301, and air is extruded into inner liquid pipe 309 through connecting air duct 3010, and air pushes to the both ends of inner liquid pipe 309, and a part leaves from liquid outlet 3014, and another part makes stop ball 3013 stop thick wall layer 3011, and then reset spring 305 releases elastic potential and pushes arc groove piece 302 out again, and simultaneously, air pressing plate 304 is pulled outwards, and makes air pressing plate 304 leave the air pressure reduction of place, and stop ball 3013 is sucked and retracts, and thick wall layer 3011 loses the hindering, and makes inner liquid pipe 309 suck the cleaning agent in storage liquid barrel 306, and cleaning liquid is sucked into inner liquid pipe 309, when arc groove piece 302 is pressed again, and gas pushes cleaning liquid to the both ends of inner liquid pipe 309 again, because the stop ball 3013 at thick wall layer 3011 prevents the backflow of cleaning liquid, and most of cleaning liquid is sprayed from liquid outlet 3014, and enters cylinder 102, and makes the equipment complete stirring and spraying cleaning agent under the condition of using single motor only.

[0032] In the utility model, unless another definite provision and limitation, first feature is on the "upper" or "lower" of second feature can include that first and second features are directly contacted, also can include that first and second features are not directly contacted but are contacted through other features between them. Moreover, first feature is on the "upper", "upper side" and "upper surface" of second feature includes that first feature is directly above and obliquely above second feature, or only indicates that the horizontal height of first feature is higher than second feature. First feature is on the "lower", "lower side" and "under surface" of second feature includes that first feature is directly below and obliquely below second feature, or only indicates that the horizontal height of first feature is less than second feature.

[0033] The basic principle, main features and advantages of the present application are shown and described above. It should be understood by those skilled in the art that the present application is not limited by the above examples, and the above examples and descriptions in the specification are only preferred examples of the present application and are not intended to limit the present application. Without departing from the spirit and scope of the present application, various changes and improvements can be made to the present application, and these changes and improvements all fall within the scope of the claimed present application. The scope of protection of the present application is defined by the appended claims and their equivalents.

Claims

1. A high-efficiency and energy-saving plastic pellet recycling machine, comprising a workbench (1), wherein a cleaning device (101) is fixed on the top of the workbench (1), and a material cylinder (102) is fixed on the inner wall of the cleaning device (101), characterized in that: The cleaning device (101) includes a sliding mechanism that drives the inverted U-shaped part (204) to a designated position. The inverted U-shaped part (204) is fixed to one side of the track block (202). A moving gear (205) is linearly arrayed and rotatably connected to the top of the inverted U-shaped part (204). The moving gear (205) is driven by a transmission motor (206). A central shaft moving part (207) is rotatably connected to the bottom of the inverted U-shaped part (204). A toggle groove (208) and a side arc groove (209) are provided on the side of the central shaft moving part (207). 07) A central moving rod (2010) is fixed at the bottom, and a reciprocating stirring plate (2011) is fixed at the bottom of the central moving rod (2010). A side moving rod (2012) is fixedly connected to the bottom of the moving gear (205). A stirring plate (2015) is fixed at the bottom of the side moving rod (2012). An L-shaped column rod (2016) is fixed at the top circumference of the side moving rod (2012). A short-diameter arc plate (2013) is fixed at the top circumference of the side moving rod (2012). A long-diameter arc plate (2014) is fixed at the bottom of the short-diameter arc plate (2013). The cleaning equipment (101) includes a medicine dispensing device.

2. The high-efficiency and energy-saving plastic pellet recycling machine according to claim 1, characterized in that: The sliding mechanism includes a track block (202), and moving block long grooves (203) are provided on both sides of the inner wall of the cleaning device (101). Sliding grooves (2) are provided on both sides of the inner wall of the cleaning device (101). The track block (202) is slidably connected to the inner wall of the sliding groove (2). A screw (201) is threadedly connected to the inner wall of the track block (202). One end of the screw (201) is rotatably connected to the inner wall of the cleaning device (101). The screw (201) is driven by a transmission motor (206).

3. The high-efficiency energy-saving plastic pellet recycling machine according to claim 1, characterized in that: The dispensing equipment includes a pneumatic component (3). Pneumatic components (3) are fixed on both sides of the inner wall of the cleaning equipment (101). An air groove (301) is formed on the inner wall of the pneumatic component (3). An arc groove component (302) is slidably connected to the inner wall of the pneumatic component (3). A connecting column (303) is fixed to one end of the arc groove component (302). A return spring (305) is provided on the surface of the connecting column (303). A pressure plate (304) is fixed to one end of the connecting column (303). A liquid connecting groove (307) is formed on one side of the pneumatic component (3). A connecting pipe is fixed to one end of the liquid connecting groove (307). A liquid storage tank (306) is fixed to one end of the connecting pipe. The pneumatic component (3)... A liquid treatment component (308) is fixed at the bottom. An inner liquid pipe (309) is fixed on the inner wall of the liquid treatment component (308). One end of the inner liquid pipe (309) is fixed to the inner wall of the connecting liquid tank (307). A connecting air passage (3010) is fixed on the surface of the inner liquid pipe (309). One end of the connecting air passage (3010) is fixed to the inner wall of the air tank (301). A thick wall layer (3011) is fixed on one end of the inner wall of the inner liquid pipe (309). A blocking spring (3012) is fixed on the inner wall of the inner liquid pipe (309). A blocking ball (3013) is fixed on one end of the blocking spring (3012). A liquid outlet passage (3014) is opened on one end of the inner liquid pipe (309).

4. The high-efficiency and energy-saving plastic pellet recycling machine according to claim 1, characterized in that: The workbench (1) is fixed with a support plate (4) at the bottom, a buffer spring (401) is fixed at the bottom of the support plate (4), a groove pad (402) is fixed at the bottom of the buffer spring (401), a limit T-piece (403) is fixed at the bottom of the support plate (4), a sliding T-groove (404) is provided at the four corners of the groove pad (402), the inner wall of the sliding T-groove (404) is slidably connected to the surface of the limit T-piece (403), and a bottom support plate (405) is fixed at the bottom of the groove pad (402).

5. The high-efficiency energy-saving plastic pellet recycling machine according to claim 4, characterized in that: A trapezoidal pad (407) is fixed to the bottom of the bottom support plate (405).

6. The high-efficiency energy-saving plastic pellet recycling machine according to claim 5, characterized in that: The bottom of the trapezoidal pad (407) is provided with a bottom anti-slip groove (408).

7. The high-efficiency and energy-saving plastic pellet recycling machine according to claim 4, characterized in that: A protective pad (406) is fixed to the top of the bottom support plate (405).

8. The high-efficiency and energy-saving plastic pellet recycling machine according to claim 2, characterized in that: The track block (202) is trapezoidal, and the slide (2) is trapezoidal.