Particle collecting device
By designing a particle collection device that includes a vibration motor, spiral blade, heating assembly and stirring assembly, the problem of impurities mixed after plastic pellet production is solved, efficient filtration and dehumidification of particles is achieved, and the workload of operators is reduced.
Patent Information
- Application Number
- CN202421703077.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-18
- Publication Date
- 2025-06-03
- Estimated Expiration
- 2034-07-18
AI Technical Summary
Plastic pellets are often mixed with impurities after production, which affects subsequent production and uses and increases the workload of operators.
A particle collection device is designed, including a box, a connecting pipe, a separation chamber, a filter plate, a vibration motor, a feed pipe, a spiral blade, a rotating shaft, a first motor, a discharge silo, a heating assembly, a stirring assembly and a discharge assembly. Through the vibration filtration of the vibration motor, the threaded structure of the spiral blades, the heating assembly and the stirring assembly, the effective filtration and discharge of plastic particles is achieved.
Effectively remove impurities from plastic particles, improve the quality of particles, reduce problems in subsequent production, and reduce the workload of operators.
Smart Images

Figure CN222933118U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of plastic production, in particular to a particle collection device. Background Art
[0002] After long-term struggle and opening up to the world, the plastic industry has formed a relatively complete industrial system and become a basic material industry on a par with steel, cement, and wood. The plastic industry has achieved remarkable achievements and realized a historic leap. As one of the pillar industries in the light industry, the plastic industry shows a strong development momentum in terms of synthetic resin, plastic machinery, and plastic product production. Plastic particles refer to granular plastics, generally divided into more than 200 types, mainly including polypropylene particles, nylon particles, PC, ABS alloy, ABS, etc. Generally, special devices are required for plastic particle collection.
[0003] At present, the plastic particles produced are mixed with impurities, which is not conducive to subsequent production and use and easily increases the workload of operators. Summary of the Utility Model
[0004] The purpose of the utility model is to provide a particle collection device, aiming to solve the problems that the plastic particles produced at present are mixed with impurities, which is not conducive to subsequent production and use and easily increases the workload of operators.
[0005] To achieve the above purpose, the utility model provides a particle collection device, including a box body, a connecting pipe, a separation chamber, a filter plate, a vibration motor, a feed pipe, a spiral blade, a rotating shaft, a first motor, a discharge chamber, a heating component, a stirring component, and a discharging component. The connecting pipe is communicated with the box body and is located above the box body. The separation chamber is communicated with the connecting pipe and is located above the connecting pipe. The filter plate is fixedly connected to the separation chamber and is located on the inner side wall of the separation chamber. The vibration motor is fixedly connected to the filter plate and is located below the filter plate. The feed pipe is communicated with the separation chamber and is located above the separation chamber. The first motor is fixedly connected to the separation chamber and is located at one end of the separation chamber. The output end of the first motor penetrates the separation chamber. One end of the rotating shaft is rotatably connected to the separation chamber and is located on the inner side wall of the separation chamber. The other end of the rotating shaft is fixedly connected to the first motor and is located at the output end of the first motor. The spiral blade is fixedly connected to the rotating shaft and is located on the outer side wall of the rotating shaft, and the spiral blade is adapted to the separation chamber. The discharge chamber is communicated with the separation chamber and is located below the filter plate. The heating component is arranged on the outer side wall of the box body. The stirring component is arranged on the inner side wall of the box body. The discharging component is arranged at the bottom of the box body.
[0006] Among them, the heating component includes a suction fan, a heating chamber, heating wires, and a control board. The heating chamber is communicated with the box body and is located above the box body. The suction fan is communicated with the heating chamber and is located above the heating chamber. The heating wires are fixedly connected to the heating chamber and are located on the inner side wall of the heating chamber. The control board is fixedly connected to the box body and is located on the outer side wall of the box body, and the control board is electrically connected to the heating wires, the suction fan, and the first motor.
[0007] Among them, the stirring component includes a connecting shaft, a second motor, and stirring blades. The second motor is fixedly connected to the box body and is located above the box body. The output end of the second motor penetrates the box body. The connecting shaft is fixedly connected to the second motor and is located at the output end of the second motor. The stirring blades are fixedly connected to the connecting shaft and are located on the outer side wall of the connecting shaft, and the stirring blades are adapted to the box body.
[0008] Among them, the discharging component includes a discharging pipe and an electromagnetic valve. The discharging pipe is communicated with the box body and is located at the bottom of the box body. The electromagnetic valve is communicated with the discharging pipe and is located in the middle of the discharging pipe.
[0009] Among them, the particle collection device further includes a sealing component, and the sealing component is arranged above the feeding pipe.
[0010] Among them, the sealing component includes a top cover and a handle. The top cover is detachably connected to the feeding pipe and is located above the feeding pipe. The handle is fixedly connected to the top cover and is located above the top cover.
[0011] For a particle collection device of the present utility model, plastic particles are poured from the feeding pipe into the separation chamber. At the same time, the first motor and the vibration motor are started. The vibration motor utilizes its own characteristics to vibrate and filter the plastic particles above the filter plate. Impurities are discharged from the discharging chamber. At this time, the rotating shaft drives the spiral blades to rotate. Due to the characteristics of the threads, the plastic particles are driven to fall from the connecting pipe into the box body. The heating component and the stirring component cooperate to perform a dehumidification operation on the plastic particles. The discharging component is used for discharging the plastic particles. By filtering the plastic particles in this way, it is beneficial for subsequent production and use and reduces the workload of the operators. Description of the Drawings
[0012] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the following will briefly introduce the drawings required for the description of the embodiments or the prior art.
[0013] Figure 1 It is a schematic structural diagram of the whole of the first embodiment of the present utility model.
[0014] Figure 2 It is the right view of the whole of the first embodiment of the present utility model.
[0015] Figure 3 It is of the present utility model Figure 2 Cross-sectional view taken along line A-A.
[0016] Figure 4 It is the structural schematic diagram of the whole of the second embodiment of the present utility model.
[0017] Figure 5 It is the right view of the whole of the second embodiment of the present utility model.
[0018] 101 - Box body, 102 - Connecting pipe, 103 - Separation bin, 104 - Filter plate, 105 - Vibration motor, 106 - Feed pipe, 107 - Spiral blade, 108 - Rotating shaft, 109 - First motor, 110 - Discharge bin, 111 - Heating component, 112 - Stirring component, 113 - Discharging component, 114 - Exhaust fan, 115 - Heating bin, 116 - Heating wire, 117 - Control board, 118 - Connecting shaft, 119 - Second motor, 120 - Stirring blade, 121 - Discharge pipe, 122 - Solenoid valve, 201 - Sealing component, 202 - Top cover, 203 - Handle. Specific embodiments
[0019] The embodiments of the present utility model will be described in detail below. The examples of the embodiments are shown in the accompanying drawings. The embodiments described below with reference to the accompanying drawings are exemplary and are intended to explain the present utility model, and should not be construed as a limitation to the present utility model.
[0020] First embodiment:
[0021] Please refer to Figures 1 to 3 , wherein, Figure 1 is the structural schematic diagram of the whole of the first embodiment of the present utility model, Figure 2 is the right view of the whole of the first embodiment of the present utility model, Figure 3 is of the present utility model Figure 2 Cross-sectional view taken along line A-A.
[0022] The utility model provides a particle collection device, which includes a box body 101, a connecting pipe 102, a separation bin 103, a filter plate 104, a vibration motor 105, a feed pipe 106, a spiral blade 107, a rotating shaft 108, a first motor 109, a discharge bin 110, a heating component 111, a stirring component 112 and a discharging component 113. The heating component 111 includes an exhaust fan 114, a heating bin 115, a heating wire 116 and a control board 117. The stirring component 112 includes a connecting shaft 118, a second motor 119 and a stirring blade 120. The discharging component 113 includes a discharge pipe 121 and an electromagnetic valve 122.
[0023] For this specific embodiment, the connecting pipe 102 is communicated with the box body 101 and is located above the box body 101. The separation bin 103 is communicated with the connecting pipe 102 and is located above the connecting pipe 102. The filter plate 104 is fixedly connected to the separation bin 103 and is located on the inner side wall of the separation bin 103. The vibration motor 105 is fixedly connected to the filter plate 104 and is located below the filter plate 104. The feed pipe 106 is communicated with the separation bin 103 and is located above the separation bin 103. The first motor 109 is fixedly connected to the separation bin 103 and is located at one end of the separation bin 103. The output end of the first motor 109 penetrates through the separation bin 103. One end of the rotating shaft 108 is rotatably connected to the separation bin 103 and is located on the inner side wall of the separation bin 103. The other end of the rotating shaft 108 is fixedly connected to the first motor 109 and is located at the output end of the first motor 109. The spiral blade 107 is fixedly connected to the rotating shaft 108 and is located on the outer side wall of the rotating shaft 108, and the spiral blade 107 is adapted to the separation bin 103. The discharge bin 110 is communicated with the separation bin 103 and is located below the filter plate 104. The heating component 111 is arranged on the outer side wall of the box body 101. The stirring component 112 is arranged on the inner side wall of the box body 101. The discharging component 113 is arranged at the bottom of the box body 101. Pour the plastic particles into the separation bin 103 from the feed pipe 106, and at the same time start the first motor 109 and the vibration motor 105. The vibration motor 105 uses its own characteristics to vibrate and filter the plastic particles above the filter plate 104, and the impurities are discharged from the discharge bin 110. At this time, the rotating shaft 108 drives the spiral blade 107 to rotate. Due to the characteristics of the thread, it will drive the plastic particles to fall from the connecting pipe 102 into the box body 101. The heating component 111 and the stirring component 112 cooperate to perform dehumidification operations on the plastic particles. The discharging component 113 is used for discharging the plastic particles. Filtering the plastic particles in this way is beneficial to subsequent production and use and reduces the workload of operators.
[0024] Among them, the heating chamber 115 is communicated with the box body 101 and is located above the box body 101. The exhaust fan 114 is communicated with the heating chamber 115 and is located above the heating chamber 115. The heating wire 116 is fixedly connected to the heating chamber 115 and is located on the inner side wall of the heating chamber 115. The control board 117 is fixedly connected to the box body 101 and is located on the outer side wall of the box body 101. And the control board 117 is electrically connected to the heating wire 116, the exhaust fan 114 and the first motor 109. Click the control board 117 to set the temperature, and then turn on the heating wire 116 and the exhaust fan 114 to draw external air into the heating chamber 115. After heating, it is transported to the box body 101 to dehumidify the plastic particles and reduce the moisture in the plastic particles.
[0025] Secondly, the second motor 119 is fixedly connected to the box body 101 and is located above the box body 101. The output end of the second motor 119 penetrates the box body 101. The connecting shaft 118 is fixedly connected to the second motor 119 and is located at the output end of the second motor 119. The stirring blade 120 is fixedly connected to the connecting shaft 118 and is located on the outer side wall of the connecting shaft 118. And the stirring blade 120 is adapted to the box body 101. Start the second motor 119 to make the connecting shaft 118 drive the stirring blade 120 to stir and turn over the plastic particles for better dehumidification operation.
[0026] At the same time, the discharge pipe 121 is communicated with the box body 101 and is located at the bottom of the box body 101. The solenoid valve 122 is communicated with the discharge pipe 121 and is located in the middle of the discharge pipe 121. Open the solenoid valve 122 to discharge the plastic particles from the box body 101 for the convenience of the operator to use.
[0027] When using the particle collection device of the present utility model, plastic particles are poured from the feed pipe 106 into the separation chamber 103. At the same time, the first motor 109 and the vibration motor 105 are started. The vibration motor 105 uses its own characteristics to vibrate and filter the plastic particles above the filter plate 104, and impurities are discharged from the discharge bin 110. At this time, the rotating shaft 108 drives the spiral blade 107 to rotate. Due to the characteristics of the thread, the plastic particles will be driven to fall from the connecting pipe 102 into the box body 101. Click on the control panel 117 to set the temperature, and then turn on the heating wire 116 and the exhaust fan 114 to draw external air into the heating chamber 115, and after heating, it is transported to the box body 101. Start the second motor 119 to make the connecting shaft 118 drive the stirring blade 120 to stir and turn the plastic particles, so as to better perform the dehumidification operation. Open the solenoid valve 122 to discharge the plastic particles from the box body 101. Filtering plastic particles in this way is beneficial to subsequent production and use and reduces the workload of operators.
[0028] Second Embodiment:
[0029] Based on the first embodiment, please refer to Figure 4 and Figure 5 , where Figure 4 is the overall structural schematic diagram of the second embodiment of the present utility model, Figure 5 is the right view of the overall of the second embodiment of the present utility model.
[0030] The present utility model provides a particle collection device, which further includes a sealing assembly 201. The sealing assembly 201 includes a top cover 202 and a handle 203.
[0031] For this specific embodiment, the sealing assembly 201 is arranged above the feed pipe 106. Adding the sealing assembly 201 is to prevent plastic particles from jumping out of the feed pipe 106 during the impurity removal process, effectively reducing the cleaning frequency of operators and reducing the fatigue intensity of operators.
[0032] Among them, the top cover 202 is detachably connected to the feed pipe 106 and is located above the feed pipe 106. The handle 203 is fixedly connected to the top cover 202 and is located above the top cover 202. The top cover 202 below the handle 203 effectively prevents plastic particles from jumping out of the feed pipe 106 during the impurity removal process, can reduce the cleaning frequency of operators, and reduce the fatigue intensity of operators.
[0033] When using a particle collection device of the present utility model, the top cover 202 below the handle 203 effectively prevents plastic particles from jumping out of the feed pipe 106 during the impurity removal process, can reduce the cleaning frequency of operators, and reduce the fatigue intensity of operators.
[0034] The above-disclosed are only one or more preferred embodiments of the present application, and the scope of rights of the present application cannot be limited thereby. Those of ordinary skill in the art can understand all or part of the processes of implementing the above embodiments, and the equivalent changes made according to the claims of the present application still fall within the scope covered by the present application.
Claims
1. A particle collection device, characterized in that: It includes a box body, a connecting pipe, a separation bin, a filter plate, a vibration motor, a feed pipe, a spiral blade, a rotating shaft, a first motor, a discharge bin, a heating component, a stirring component and a discharge component. The connecting pipe is connected to the box body and is located above the box body. The separation bin is connected to the connecting pipe and is located above the connecting pipe. The filter plate is fixedly connected to the separation bin and is located on the inner side wall of the separation bin. The vibration motor is fixedly connected to the filter plate and is located below the filter plate. The feed pipe is connected to the separation bin and is located above the separation bin. The first motor is fixedly connected to the separation bin and is located One end of the separation bin, the output end of the first motor passes through the separation bin, one end of the rotating shaft is rotatably connected to the separation bin and is located on the inner wall of the separation bin, the other end of the rotating shaft is fixedly connected to the first motor and is located at the output end of the first motor, the spiral blade is fixedly connected to the rotating shaft and is located on the outer wall of the rotating shaft, and the spiral blade is adapted to the separation bin, the discharging bin is communicated with the separation bin and is located below the filter plate, the heating component is arranged on the outer wall of the box body, the stirring component is arranged on the inner wall of the box body, and the discharging component is arranged at the bottom of the box body.
2. The particle collection device according to claim 1, characterized in that The heating assembly includes an exhaust fan, a heating chamber, a heating wire and a control panel. The heating chamber is connected to the box and is located above the box. The exhaust fan is connected to the heating chamber and is located above the heating chamber. The heating wire is fixedly connected to the heating chamber and is located on the inner wall of the heating chamber. The control panel is fixedly connected to the box and is located on the outer wall of the box. The control panel is electrically connected to the heating wire, the exhaust fan and the first motor.
3. The particle collection device according to claim 2, characterized in that The stirring assembly includes a connecting shaft, a second motor and a stirring blade. The second motor is fixedly connected to the box and is located above the box. The output end of the second motor passes through the box. The connecting shaft is fixedly connected to the second motor and is located at the output end of the second motor. The stirring blade is fixedly connected to the connecting shaft and is located on the outer side wall of the connecting shaft, and the stirring blade is adapted to the box.
4. The particle collection device according to claim 3, characterized in that The discharge assembly includes a discharge pipe and a solenoid valve. The discharge pipe is connected to the box body and is located at the bottom of the box body. The solenoid valve is connected to the discharge pipe and is located in the middle of the discharge pipe.
5. The particle collection device according to claim 4, characterized in that The particle collection device further comprises a sealing assembly, which is arranged above the feeding pipe.
6. The particle collection device according to claim 5, characterized in that The closure assembly comprises a top cover and a handle, wherein the top cover is detachably connected to the feed pipe and is located above the feed pipe, and the handle is fixedly connected to the top cover and is located above the top cover.