A rubber and plastic layered filtering device
Through the design of the support component and the polyester filtering and stirring component, the problem of uneven stirring of the rubber and plastic filtering device when there are fewer raw materials is solved, and the gathering and uniform stirring of the raw materials are achieved, filtration efficiency and adaptability are improved, odor and heat leakage are avoided, and the stability of the device is ensured.
Patent Information
- Application Number
- CN202310516990.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-05-09
- Publication Date
- 2025-08-26
- Estimated Expiration
- 2043-05-09
AI Technical Summary
The existing rubber and plastic filtration devices are unevenly stirred when there are fewer raw materials, resulting in poor filtration effect and inability to effectively gather raw materials, affecting filtration efficiency and adaptability.
A rubber-plastic layered filtration device is designed, including a support assembly with adjustable angles and a polymer filtering stirring assembly. The rotation of the support column is adjusted by using hydraulic rods and pulling plates, combined with the flip of the arc-shaped filter plate and sealing cover, to achieve the gathering and uniform stirring of raw materials, and the airflow flow rate is adjusted through the air pump to avoid heat leakage.
It improves the stirring and filtration efficiency of raw materials and the adaptability of the device, avoids odor leakage and heat loss when heating raw materials, ensures the stability of the filtration effect and adapts to different amounts of raw materials.
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Figure CN116850688B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of rubber and plastic filtering devices, and more particularly to a rubber and plastic layered filtering device. Background Art
[0002] Rubber and plastics are a general term for the rubber and plastics industries. They are both by-products of petroleum and have the same source. However, in the process of making products, their physical properties are different and their uses are even more different. The most widely used rubber is tires, and plastics are becoming more and more widely used with the demand of technology and market. They are already indispensable in our daily lives. When rubber and plastic materials are produced, their mortar raw materials need to be filtered.
[0003] Among them, after searching, the patent application number CN201821698605.2 discloses a filtering device for rubber and plastic materials, including a filter box, the outer surface of which is fixedly connected to two symmetrically arranged support legs, and the upper surface of the filter box is fixedly connected to a feed funnel connected to the interior thereof;
[0004] When this structure is in use, the electric heating wire can heat the air in the heating box, thereby heating the filter, so that the slurry can quickly pass through the filter. The motor can drive the stirring blade to rotate, thereby stirring the slurry at the discharge port, so that the slurry can be quickly discharged from the discharge port. However, this structure cannot gather the raw materials when in use, resulting in uneven stirring and filtering effects when there is less raw material. Summary of the Invention
[0005] The technical solution of the present invention addresses the technical problem that the existing technical solution is too simple and provides a solution that is significantly different from the existing technology. In order to overcome the above-mentioned defects of the existing technology, the present invention provides a rubber-plastic layered filtration device, which is intended to solve the problems raised in the above background technology.
[0006] To achieve the above object, the present invention provides the following technical solution: a rubber and plastic layered filtration device, comprising a reinforced base, the reinforced base being provided with an angle-adjustable support assembly, the support assembly being provided with a material-aggregating filtering and stirring assembly;
[0007] The support assembly comprises:
[0008] Two first supporting columns arranged opposite to each other for support, wherein each of the first supporting columns is respectively arranged on both sides of the top of the reinforced base and is movably connected to the first supporting columns via an axle pin;
[0009] Two second supporting columns arranged opposite to each other for support, and each of the second supporting columns is respectively arranged on one side of the corresponding first supporting column and is detachably connected to the reinforcement base by bolts;
[0010] A support plate for supporting, the support plate being arranged on top of the first support column and the second support column;
[0011] The tops of the first support column and the second support column extend to the support plate and are interactively connected to the support plate through axle pins;
[0012] Two hydraulic rods, one end of each hydraulic rod is mounted on the reinforced base and movably connected to the reinforced base via an axle pin;
[0013] Two pulling plates, each of which is provided at a corresponding hydraulic rod output end and movably connected to the hydraulic rod output end via an axis, and the bottom of the pulling plate is on the same axis as the connection point between the first support column and the reinforced base;
[0014] Wherein, one side of each pulling plate extends to the corresponding first supporting column and is detachably connected to the first supporting column:
[0015] The aggregate filtering and stirring assembly comprises:
[0016] A heating box for heating the material, the heating box being arranged on top of the support plate;
[0017] A mounting frame for support, the mounting frame is arranged on one side of the surface of the heating box, and the mounting frame is detachably connected to the heating box;
[0018] A motor for driving, wherein the motor is mounted on a mounting frame;
[0019] A rotatable shaft is disposed in the heating box, one end of the shaft sequentially passes through the heating box and the mounting frame and is detachably connected to the output end of the motor;
[0020] A plurality of arc-shaped filter plates each having an arc-shaped cross-section, each of the arc-shaped filter plates being distributed on the rotating shaft along the circumference of the axis of the rotating shaft, and each of the arc-shaped filter plates being provided with a plurality of filter holes;
[0021] A reversible sealing cover is provided on one side of the surface of the heating box and is movably connected to the heating box via a shaft pin;
[0022] Used to drive the telescopic rod, which is arranged at the end of the surface of the heating box and is movably connected to the heating box through an axle pin. The telescopic rod is arranged obliquely and the output end of the telescopic rod extends to the sealing cover and is movably connected to the sealing cover through the axle pin;
[0023] An air extraction hopper for diversion, the air extraction hopper is arranged between the sealing cover and the heating box, and a slot for installing the air extraction hopper is opened at the bottom of the sealing cover;
[0024] Two plug plates for blocking flow, each of which is disposed on either side of the exhaust hopper, one end of each plug plate being mounted on the heating box and slidably connected to the heating box, and the other end of each plug plate extending into the exhaust hopper, with the two plug plates being in contact at both ends within the exhaust hopper;
[0025] Two supporting plates, both of which are arranged between the supporting plate and the heating box, and each of which is detachably connected to the side of the supporting plate by bolts;
[0026] A reinforcement plate for positioning, the reinforcement plate being arranged between the two supporting plates;
[0027] A plurality of rubber pads for support, wherein each rubber pad forms a group of two and is respectively arranged at both ends of the corresponding support plate;
[0028] A plurality of rubber rods for support, wherein each of the rubber rods is respectively arranged on top of a corresponding rubber pad;
[0029] A plurality of concave brackets for lifting, each of which is respectively arranged on the top of a corresponding rubber rod, and the concave bracket is detachably connected to the heating box by bolts;
[0030] A material guide frame for protection is provided at the bottom of the heating box and located between multiple recessed brackets. The material guide frame is detachably connected to the heating box by bolts, and an electric valve for discharging material is provided at the bottom of the heating box, which extends into the material guide frame. A guide concave cavity plate for guiding material is provided in the material guide frame and at the bottom of the electric valve. One end of the guide concave cavity plate extends to one side of the bottom surface of the heating box, and a protective cover is provided at the top of the guide concave cavity plate and located on one side of the heating box. A discharge pipe port is provided at one end of the protective cover.
[0031] Technical effects and advantages of the present invention:
[0032] The present invention seals and opens the heating box by flipping the sealing cover, which is convenient for the staff to guide the materials. The gas generated by the raw materials being heated and filtered in the heating box is extracted in conjunction with an external pump, thereby preventing the leakage of odor generated when the raw materials are heated.
[0033] During the exhaust process, the present invention can adjust the distance between the two plug plates extending into the exhaust hopper by pushing the plug plate to move on the heating box, thereby adjusting the flow rate of the airflow through the exhaust hopper, thereby preventing excessive heat leakage during the heating and filtration of the raw materials due to excessive flow, thereby affecting the heating and filtration effect;
[0034] In order to improve the efficiency of stirring and filtering raw materials and the adaptability of the device, the present invention drives the support plate to rotate by rotating the first support column, so that the raw materials in the heating box are gathered on one side of the inner cavity of the heating box, thereby avoiding poor stirring and filtering effect caused by the low density of the raw materials in the heating box. At the same time, the adaptability of the device during use is improved, so that the device can adapt to different amounts of raw materials during use. At the same time, the curved filter plate rotates along the axis of the rotating shaft to stir the raw materials in the heating box. The raw materials come into contact with the curved filter plate, and impurities in the raw materials are filtered on the curved filter plate.
[0035] During subsequent discharge, the motor drives the rotating shaft to rotate the multiple curved filter plates. The raw materials in the heating box are affected by the curved cross-section of the curved filter plates and the traction force of the curved filter plates during rotation, so that the raw materials can flow in the heating box and discharge the materials quickly and conveniently.
[0036] To sum up, through the corresponding coordinated use of various structures, the gas generated by the heating and filtration of the raw materials in the heating box can be extracted, avoiding the leakage of odor generated when the raw materials are heated, and avoiding excessive leakage of heat during the heating and filtration of the raw materials due to excessive flow, thereby affecting the heating and filtration effect. The first supporting column is tilted so that the raw materials in the heating box are gathered on one side of the inner cavity of the heating box, avoiding the low density of the raw materials in the heating box and causing poor stirring and filtration effects. At the same time, the adaptability of the device during use is improved, so that the device can adapt to different amounts of raw materials during use, which is convenient to use and has good practicality. BRIEF DESCRIPTION OF THE DRAWINGS
[0037] To more clearly illustrate the technical solutions of the present disclosure, the following briefly introduces the drawings required for use in some embodiments of the present disclosure. Obviously, the drawings described below are only drawings of some embodiments of the present disclosure, and those skilled in the art can also derive other drawings based on these drawings. Furthermore, the drawings described below are schematic diagrams and are not intended to limit the actual dimensions of the products, actual processes of the methods, actual timing of signals, and the like involved in the embodiments of the present disclosure.
[0038] Figure 1 It is a schematic diagram of the overall structure of the present invention.
[0039] Figure 2 It is a side view of the overall structure of the present invention.
[0040] Figure 3 It is a side view of the overall cross-sectional structure of the present invention.
[0041] Figure 4 It is a front view of the support assembly of the present invention.
[0042] Figure 5 It is a front view of the upper structure of the heating box of the present invention.
[0043] Figure 6 It is a front view of the structure on the support plate of the present invention.
[0044] Figure 7 It is an exploded view of the local structure of the aggregate filtering and stirring assembly of the present invention.
[0045] The accompanying drawings are marked as follows: 1, reinforced base, 101, first supporting column; 102, second supporting column; 103, supporting plate; 104, hydraulic rod; 105, pulling plate;
[0046] 2. Heating box; 201. Mounting frame; 202. Motor; 203. Rotating shaft; 204. Curved filter plate; 205. Filter holes; 206. Sealing cover; 207. Telescopic rod; 208. Vacuum hopper; 209. Stopper;
[0047] 3. Support plate; 301. Reinforcement plate; 302. Rubber pad; 303. Rubber rod; 304. Concave bracket; 305. Material guide frame;
[0048] 4. Guide cavity plate; 401. Protective cover; 402. Feeding nozzle. Implementation Method
[0049] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0050] The terms "first", "second" and "third" in the embodiments of the present application are for descriptive purposes only and are not to be understood as indicating or implying relative importance or implicitly indicating the number of the indicated technical features. Thus, a feature defined as "first", "second" and "third" may explicitly or implicitly include at least one of the features. In the description of the present application, the meaning of "plurality" is at least two, such as two, three, etc., unless otherwise clearly and specifically defined. In addition, the terms "including" and "having" and any variations thereof are intended to cover non-exclusive inclusions. For example, a process, method, system, product or device that includes a series of steps or units is not limited to the listed steps or units, but optionally also includes steps or units that are not listed, or optionally also includes other steps or units inherent to these processes, methods, products or devices.
[0051] References to "embodiments" herein mean that a particular feature, structure, or characteristic described in connection with the embodiments may be included in at least one embodiment of the present application. The appearance of the phrase in various places in the specification does not necessarily refer to the same embodiment, nor does it constitute an independent or alternative embodiment that is mutually exclusive of other embodiments. It is understood, both explicitly and implicitly, by those skilled in the art that the embodiments described herein may be combined with other embodiments.
[0052] In the embodiment, as shown in the attached Figure 1-4 The rubber and plastic layered filtration device shown in the figure has a support assembly and a material gathering and filtering stirring assembly provided on a reinforced base 1, which facilitates adjustment of the device's tilt angle, gathers the materials together, and facilitates discharge. The specific structural arrangement of the assembly is as follows;
[0053] The support components include:
[0054] Two first support columns 101 are arranged opposite to each other for support, and each first support column 101 is respectively arranged on both sides of the top of the reinforced base 1 and is movably connected to the first support column 101 through an axle pin;
[0055] Two second supporting columns 102 are arranged opposite to each other for supporting, and each second supporting column 102 is respectively arranged on one side of the corresponding first supporting column 101 and is detachably connected to the reinforced base 1 by bolts;
[0056] A support plate 103 for supporting, the support plate 103 is arranged on top of the first support column 101 and the second support column 102;
[0057] The tops of the first support column 101 and the second support column 102 extend to the support plate 103 and are interactively connected to the support plate 103 via axle pins;
[0058] Two hydraulic rods 104, one end of each hydraulic rod 104 is mounted on the reinforced base 1 and movably connected to the reinforced base 1 via an axle pin;
[0059] Two pulling plates 105, each of which is provided at the output end of the corresponding hydraulic rod 104 and movably connected to the output end of the hydraulic rod 104 via an axis, and the bottom of the pulling plate 105 is on the same axis as the connection point between the first support column 101 and the reinforced base 1;
[0060] One side of each pulling plate 105 extends to the corresponding first supporting column 101 and is detachably connected to the first supporting column 101:
[0061] The aggregate filtering and stirring assembly includes:
[0062] A heating box 2 for heating the material, the heating box 2 is arranged on top of the support plate 103;
[0063] A mounting frame 201 for support, the mounting frame 201 is arranged on one side of the surface of the heating box 2, and the mounting frame 201 is detachably connected to the heating box 2;
[0064] A motor 202 for driving, the motor 202 is mounted on a mounting frame 201;
[0065] A rotatable shaft 203 is disposed in the heating box 2, one end of the shaft 203 sequentially passes through the heating box 2 and the mounting frame 201 and is detachably connected to the output end of the motor 202;
[0066] A plurality of arc-shaped filter plates 204 are each configured to have an arc-shaped cross-section, and each arc-shaped filter plate 204 is distributed on the rotating shaft 203 along the circumference of the axis point of the rotating shaft 203, and each arc-shaped filter plate 204 is provided with a plurality of filter holes 205;
[0067] A reversible sealing cover 206 is provided on one side of the surface of the heating box 2 and is movably connected to the heating box 2 via a shaft pin;
[0068] Used to drive the telescopic rod 207, the telescopic rod 207 is arranged on the surface end of the heating box 2 and is movably connected to the heating box 2 through an axle pin. The telescopic rod 207 is arranged obliquely and the output end of the telescopic rod 207 extends to the sealing cover 206 and is movably connected to the sealing cover 206 through an axle pin;
[0069] An air extraction hopper 208 for diversion is provided between the sealing cover 206 and the heating box 2, and a slot for installing the air extraction hopper 208 is provided at the bottom of the sealing cover 206;
[0070] Two plug plates 209 for blocking flow, and each plug plate 209 is respectively arranged on both sides of the exhaust hopper 208, one end of the plug plate 209 is mounted on the heating box 2 and is slidably connected to the heating box 2, and the other end of the plug plate 209 extends into the exhaust hopper 208, and the two plug plates 209 are in contact at both ends inside the exhaust hopper 208;
[0071] Two supporting plates 3, both of which are arranged between the supporting plate 103 and the heating box 2, and each supporting plate 3 is detachably connected to the side of the supporting plate 103 by bolts;
[0072] A reinforcement plate 301 for positioning, the reinforcement plate 301 is arranged between the two support plates 3;
[0073] A plurality of rubber pads 302 for support, wherein each rubber pad 302 is arranged in a group of two at both ends of the corresponding support plate 3;
[0074] A plurality of rubber rods 303 for support, and each rubber rod 303 is respectively arranged on top of a corresponding rubber pad 302;
[0075] Several concave brackets 304 for lifting, and each concave bracket 304 is respectively arranged on the top of the corresponding rubber rod 303, and the concave bracket 304 is detachably connected to the heating box 2 by bolts;
[0076] A material guide frame 305 for protection is provided at the bottom of the heating box 2 and located between multiple recessed brackets 304. The material guide frame 305 is detachably connected to the heating box 2 by bolts, and an electric valve for discharging material is provided at the bottom of the heating box 2 and extends into the material guide frame 305. A guide concave cavity plate 4 for guiding material is provided in the material guide frame 305 and at the bottom of the electric valve. One end of the guide concave cavity plate 4 extends to one side of the bottom surface of the heating box 2, and a protective cover 401 is provided on the top of the guide concave cavity plate 4 and located on one side of the heating box 2. A discharge pipe mouth 402 is provided at one end of the protective cover 401.
[0077] According to the above structure, when in use, the staff installs the device at the designated position. When filtering the raw materials, the telescopic rod 207 is activated to drive the sealing cover 206 to rotate along the axis pin point at the connection between the sealing cover 206 and the heating box 2, so that the heating box 2 can be opened. The staff adds the raw materials into the heating box 2, and the output end of the telescopic rod 207 is recovered to drive the sealing cover 206 to flip, thereby sealing the heating box 2. The raw materials are heated by the heating box 2, and at the same time, the external pump is connected to the mounting frame 201. The external pump extracts the gas generated by the heating and filtering of the raw materials in the heating box 2 to prevent the leakage of odor generated when the raw materials are heated.
[0078] At the same time, by pushing the plug plate 209 to move on the heating box 2, the distance between the two plug plates 209 and the inside of the suction hopper 208 is adjusted, thereby adjusting the flow rate of the airflow through the suction hopper 208 to avoid excessive heat leakage during the heating and filtration of the raw materials due to excessive flow, thereby affecting the heating and filtration effect;
[0079] At the same time, the filter holes 205 are activated to drive the rotating shaft 203 to rotate. When the rotating shaft 203 rotates, the multiple curved filter plates 204 rotate along the axis of the rotating shaft 203 at the same time, stirring the raw materials in the heating box 2. The raw materials come into contact with the curved filter plates 204, and impurities in the raw materials are filtered on the curved filter plates 204.
[0080] At the same time, in order to improve the efficiency of raw material stirring and filtering and the adaptability of the device, the output end of the hydraulic rod 104 can be recovered to drive the pulling plate 105 to rotate along the axis of the connection between the first support column 101 and the reinforced base 1, so that the pulling plate 105 drives the first support column 101 to rotate along the axis of the connection between the first support column 101 and the reinforced base 1, thereby causing the first support column 101 to rotate;
[0081] When the first support column 101 rotates, it drives the support plate 103 to rotate, so that the support plate 3 and the heating box 2 are tilted due to the traction force of the first support column 101 during rotation, so that the raw materials in the heating box 2 are gathered on one side of the inner cavity of the heating box 2, thereby avoiding poor stirring and filtering effect caused by low density of the raw materials in the heating box 2, and improving the adaptability of the device during use, so that the device can adapt to different amounts of raw materials during use;
[0082] At the same time, after the raw material filtering is completed, the electric valve at the bottom of the heating box 2 is opened, and the raw material in the heating box 2 flows into the guide cavity plate 4. The raw material is guided by the guide cavity plate 4 and discharged through the discharge pipe 402. During the discharge process, the motor 202 drives the rotating shaft 203 to drive multiple arc-shaped filter plates 204 to rotate. The raw material in the heating box 2 will be affected by the arc-shaped cross-section of the arc-shaped filter plate 204 and then cooperate with the traction force when the arc-shaped filter plate 204 rotates, so that the raw material can flow in the heating box 2 and discharge quickly and conveniently.
[0083] Different from the prior art, the present application discloses a rubber and plastic layered filtration device, which can seal and open the heating box 2 by turning over the sealing cover 206, so as to facilitate the staff to guide the material, and extract the gas generated by the raw materials being heated and filtered in the heating box 2 in conjunction with the external pump, so as to avoid the leakage of odor generated when the raw materials are heated. The plug plate 209 can be pushed to move on the heating box 2, and the distance between the two plug plates 209 and the inside of the air extraction hopper 208 can be adjusted, thereby adjusting the flow rate of the airflow through the air extraction hopper 208, so as to avoid the heat generated when the raw materials are heated and filtered due to excessive flow. To prevent excessive leakage of raw materials and affect the heating and filtering effect, the first support column 101 rotates to drive the support plate 103 to rotate, so that the raw materials in the heating box 2 are gathered on one side of the inner cavity of the heating box 2, avoiding the low density of the raw materials in the heating box 2 and causing poor stirring and filtering effects. At the same time, the adaptability of the device during use is improved, so that the device can adapt to different amounts of raw materials during use. At the same time, the arc filter plate 204 rotates along the axis point of the rotating shaft 203 to stir the raw materials in the heating box 2. The raw materials are in contact with the arc filter plate 204, and impurities in the raw materials are filtered on the arc filter plate 204.
[0084] The above are only preferred embodiments of the present invention and are not intended to limit the present invention. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.
Claims
1. A rubber-plastic layered filtration device, comprising a reinforced base (1), characterized in that: The reinforced base (1) is provided with a support assembly capable of adjusting an angle, and the support assembly is provided with a polymer filtering and stirring assembly; The support assembly comprises: Two first supporting columns (101) arranged opposite to each other for supporting, and each of the first supporting columns (101) is respectively arranged on both sides of the top of the reinforced base (1) and is movably connected to the first supporting columns (101) via an axle pin; Two second supporting columns (102) arranged opposite to each other for supporting, and each second supporting column (102) is respectively arranged on one side of a corresponding first supporting column (101) and is detachably connected to the reinforced base (1) via bolts; A support plate (103) for supporting, wherein the support plate (103) is arranged on top of the first support column (101) and the second support column (102); The tops of the first supporting column (101) and the second supporting column (102) both extend onto the supporting plate (103) and are interactively connected to the supporting plate (103) via axle pins; The aggregate filtering and stirring assembly comprises: A heating box (2) for heating materials, wherein the heating box (2) is arranged on top of the support plate (103); A mounting frame (201) for supporting, the mounting frame (201) being arranged on one side of the surface of the heating box (2), and the mounting frame (201) being detachably connected to the heating box (2); A motor (202) for driving, wherein the motor (202) is mounted on a mounting frame (201); A rotatable shaft (203), the shaft (203) being disposed in the heating box (2), one end of the shaft (203) sequentially passing through the heating box (2) and the mounting frame (201) and being detachably connected to the output end of the motor (202); A plurality of arc-shaped filter plates (204) each having an arc-shaped cross-section, each of the arc-shaped filter plates (204) being distributed on the rotating shaft (203) along the circumference of the axis of the rotating shaft (203), and each of the arc-shaped filter plates (204) being provided with a plurality of filter holes (205); The support assembly further comprises: Two hydraulic rods (104), one end of each hydraulic rod (104) is mounted on the reinforced base (1) and is movably connected to the reinforced base (1) via an axle pin; Two pulling plates (105), each of the pulling plates (105) is respectively arranged at the output end of the corresponding hydraulic rod (104) and is movably connected to the output end of the hydraulic rod (104) through an axis, and the bottom of the pulling plate (105) is on the same axis as the connection point of the first supporting column (101) and the reinforced base (1); One side of each pulling plate (105) extends to the corresponding first supporting column (101) and is detachably connected to the first supporting column (101).
2. The rubber-plastic layered filtration device according to claim 1, characterized in that: The aggregate filtering and stirring assembly further comprises: A reversible sealing cover (206), the sealing cover (206) being arranged on one side of the surface of the heating box (2), the sealing cover (206) being movably connected to the heating box (2) via a shaft pin; a telescopic rod (207), the telescopic rod (207) being arranged at an end portion of a surface of the heating box (2) and being movably connected to the heating box (2) via an axle pin, the telescopic rod (207) being arranged at an angle, and an output end of the telescopic rod (207) extending to the sealing cover (206) and being movably connected to the sealing cover (206) via an axle pin; An air extraction hopper (208) for diverting flow is provided between the sealing cover (206) and the heating box (2), and a slot for installing the air extraction hopper (208) is provided at the bottom of the sealing cover (206).
3. The rubber-plastic layered filtration device according to claim 2, characterized in that: The aggregate filtering and stirring assembly further comprises: Two plug plates (209) for blocking flow, and each of the plug plates (209) is respectively arranged on both sides of the exhaust hopper (208), one end of the plug plate (209) is mounted on the heating box (2) and is slidably connected to the heating box (2), and the other end of the plug plate (209) extends into the exhaust hopper (208), and the two ends of the two plug plates (209) in the exhaust hopper (208) are in contact.
4. The rubber-plastic layered filtration device according to claim 1, characterized in that: The aggregate filtering and stirring assembly further comprises: Two supporting plates (3) for support, both of the supporting plates (3) are arranged between the supporting plate (103) and the heating box (2), and each of the supporting plates (3) is detachably connected to the side of the supporting plate (103) via bolts; A reinforcing plate (301) for positioning, the reinforcing plate (301) being arranged between two supporting plates (3); A plurality of rubber pads (302) for support, wherein each rubber pad (302) is formed into a group of two and is respectively arranged at both ends of a corresponding support plate (3); A plurality of rubber rods (303) for support, and each of the rubber rods (303) is respectively arranged on the top of a corresponding rubber pad (302).
5. The rubber-plastic layered filtration device according to claim 4, characterized in that: The aggregate filtering and stirring assembly further comprises: A plurality of concave brackets (304) for lifting are provided, and each of the concave brackets (304) is respectively arranged on the top of a corresponding rubber rod (303), and the concave brackets (304) are detachably connected to the heating box (2) via bolts.
6. The rubber-plastic layered filtration device according to claim 5, characterized in that: A material guide frame (305) for protection is provided at the bottom of the heating box (2) and between the multiple recessed brackets (304). The material guide frame (305) is detachably connected to the heating box (2) via bolts, and an electric valve for discharging material is provided at the bottom of the heating box (2) and extends into the material guide frame (305).
7. The rubber-plastic layered filtration device according to claim 6, characterized in that: A guide cavity plate (4) for guiding material is provided in the material guiding frame (305) and at the bottom of the electric valve, and one end of the guide cavity plate (4) extends to one side of the bottom surface of the heating box (2).
8. The rubber-plastic layered filtration device according to claim 7, characterized in that: A protective cover (401) is provided on the top of the guide cavity plate (4) and on one side of the heating box (2), and a discharge pipe opening (402) is provided at one end of the protective cover (401).
Citation Information
Patent Citations
Filtering device for rubber and plastic materials
CN209221594U
Plastic product machining and melting equipment
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Separating and filtering device for EP material mixture
CN217373038U