Crusher capable of recycling resources
By designing a combined structure of the crusher's crushing module and recovery module, using magnet plates to separate magnetic materials, and combining brush cleaning and pre-pressing modules to process large materials, the problem that existing crushers are unable to separate magnetic and non-magnetic materials is solved, and efficient resource recycling is achieved.
Patent Information
- Application Number
- CN202422186726.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-05
- Publication Date
- 2025-09-19
- Estimated Expiration
- 2034-09-05
AI Technical Summary
Existing crushers are unable to effectively separate magnetic materials from non-magnetic materials, resulting in low recovery efficiency and failure to meet the needs of resource recycling.
A resource recycling crusher is designed, which adopts a combined structure of a crushing module and a recovery module. A magnet plate is used to absorb and separate magnetic materials. A brush cleaning and pre-pressing module is combined to process large materials, thereby realizing the classified recycling of magnetic and non-magnetic materials.
It achieves efficient separation and recovery of magnetic and non-magnetic materials, improves crushing efficiency and recovery efficiency, and enhances the practicality and environmental protection of the equipment.
Smart Images

Figure CN223351844U_ABST
Abstract
Description
Technical Field
[0001] The present application belongs to the technical field of crushers, and in particular relates to a crusher for resource recycling. Background Art
[0002] With the development of the times, people pay more and more attention to the recycling of various materials after use. The recycling of materials can not only bring sustainable development to people's lives, but also bring good economic benefits to people. When materials need to be crushed and then recycled, a crusher with recycling function is particularly important.
[0003] For example, the Chinese patent with publication number CN221492604U discloses a waste glass recycling crusher, which includes a box body with a feed port on the top of the box body. The waste glass recycling crusher is provided with a linkage assembly. When the motor is turned on, the belt drives the reciprocating screw to rotate. At this time, the stabilizing plate drives the slide bar to perform linear reciprocating motion, and the connecting frame moves synchronously. At this time, the V-groove surface of the connecting frame contacts the surface of the slide plate, causing the slide plate to move inward. The top of the slide plate blocks the feed port, and then a quantitative input can be performed to prevent excessive input from causing incomplete crushing and affecting efficiency. When the connecting frame drives the connecting frame to move outward, the slide plate returns to its position under the action of the spring. When the slide plate moves inward, it drives the fixed plate and the impact block to move inward, and then the glass can be preliminarily crushed. In combination with the crushing roller one and the crushing roller two, the crushing can be better performed, which is convenient for subsequent processing.
[0004] Although this type of waste glass recycling crusher can achieve the effect of better crushing of glass to facilitate secondary processing by using multiple workpieces such as linkage components, when the waste glass recycling crusher of this solution needs to crush products such as toys composed of magnetic metal and plastic, it is impossible to separate the magnetic metal and plastic and recycle them separately to facilitate secondary processing. Utility Model Content
[0005] The purpose of this utility model is to provide a resource recycling crusher to solve the above-mentioned technical problems, so as to achieve the effect of separately recovering magnetic materials and other non-magnetic materials in products to be crushed.
[0006] In view of this, the utility model provides a resource recycling crusher, comprising:
[0007] A box body, wherein a crushing chamber is provided inside the box body, an inlet is provided on one side of the top of the box body, an outlet is provided at the bottom of the box body, and a plurality of supporting legs are evenly arranged in an array at the bottom of the box body;
[0008] A crushing module is placed on the box body. The crushing module consists of a crushing motor, an active crushing roller and a driven crushing roller. The crushing motor is placed at the rear end of the box body. The active crushing roller and the driven crushing roller are against each other on their sides. The active crushing roller and the driven crushing roller are respectively provided with an active connecting rod and a driven connecting rod on the side away from the rear end of the box body. The active connecting rod and the driven connecting rod extend through the box body. The active crushing roller and the driven crushing roller are placed in the crushing chamber and are arranged horizontally and parallel. The output shaft of the crushing motor is connected to the active crushing roller. The active connecting rod and the driven connecting rod are respectively provided with a driving gear and a driven gear, and the driving gear is meshed with the driven gear.
[0009] A recovery module is placed at the lower end of the crushing module. The recovery module consists of a recovery slot, a guide block and a magnet plate. The recovery slot is placed on the left side wall of the box body and runs through the left and right sides of the box body. The guide block is placed in the crushing chamber. The guide blocks are symmetrically arranged on both sides of the recovery slot. The guide blocks are symmetrically provided with guide slots. The magnet plate is placed in the guide slot and is slidably connected to the guide block. The magnet plate is provided with a plurality of filter holes.
[0010] Brushes are arranged horizontally and symmetrically in the crushing chamber. The brushes are in the same plane as the active crushing roller and the driven crushing roller, and the bristle surfaces of the brushes are against the active crushing roller and the driven crushing roller.
[0011] In this technical solution, the resource recycling crusher consists of a box, a crushing module and a recovery module, wherein a crushing chamber is provided inside the box, a feed port is provided on one side of the top of the box, and a discharge port is provided at the bottom of the box. A number of support legs are evenly arranged in an array at the bottom of the box, and the support legs are used to raise the bottom surface of the box to form a space for recycling waste between the box and the ground.
[0012] The crushing module is placed on the box body, and the crushing module consists of a crushing motor, an active crushing roller and a driven crushing roller. The crushing motor is placed at the rear end of the box body and is fixedly connected to the box body. The output shaft of the crushing motor is arranged toward the box body, and the active crushing roller and the driven crushing roller are against each other on the side. The active crushing roller and the driven crushing roller are placed in the crushing chamber and are arranged horizontally and parallel. The active crushing roller and the driven crushing roller are respectively provided with an active connecting rod and a driven connecting rod on the side away from the rear end of the box body. The active connecting rod and the driven connecting rod extend through the box body, and the output shaft of the crushing motor passes through the box body and is connected with the active crushing roller. The active connecting rod and the driven connecting rod are respectively provided with a driving gear and a driven gear, and the driving gear is meshed with the driven gear, and the active crushing roller is driven by the driving gear and the driven gear to rotate.
[0013] The recovery module is placed at the lower end of the crushing module. The recovery module consists of a recovery slot, a guide block and a magnet plate. The recovery slot is placed on the left side wall of the box and runs through the left and right sides of the box. The guide block is placed in the crushing chamber. The guide blocks are symmetrically arranged on both sides of the recovery slot. The guide blocks are symmetrically provided with guide grooves. The guide grooves make the cross-section of the guide block C-shaped. The magnet plate is placed in the guide groove and is slidably connected to the guide block. The magnet plate can also be removed from the guide block through the recovery slot. A number of filter holes are provided on the magnet plate.
[0014] A sliding plate is arranged obliquely in the crushing chamber, and the sliding plate is placed at the upper end of the crushing module. The bottom of the sliding plate is just above the point where the active crushing roller and the driven crushing roller are in contact with each other. The sliding plate can be used to make the product to be crushed enter the crushing chamber from the feed port and then slide down the sliding plate and enter the crushing module from the point where the active crushing roller and the driven crushing roller are in contact with each other, which can improve the crushing efficiency. A brush is arranged horizontally and symmetrically in the crushing chamber, and the brush is in the same plane as the active crushing roller and the driven crushing roller. The bristle surface of the brush is in contact with the active crushing roller and the driven crushing roller. After the product is crushed, some waste materials stick to the active crushing roller and the driven crushing roller, and the brush can be used to brush these waste materials off the active crushing roller and the driven crushing roller.
[0015] In this technical solution, when the product needs to be crushed and the magnetic material and non-magnetic material need to be recovered separately, the product is put into the feed port, and falls into the crushing module just above the point where the active crushing roller and the driven crushing roller abut each other through the sliding plate for crushing. After the crushing is completed, the waste material falls from the lower end of the crushing module and passes through the recovery module. The magnetic material is absorbed by the magnetism of the magnet plate through the filtration of the recovery module, and the non-magnetic material falls through the filter port on the magnet plate and escapes from the discharge port of the box.
[0016] Furthermore, a first extension plate is horizontally symmetrically arranged at a position corresponding to the recycling slot on the right side of the box body, and a rotating column is symmetrically arranged horizontally on the first extension plate. A rotating wheel is fixedly connected to the rotating column, and the rotating column is transmission-connected to the active connecting rod. A transmission column is eccentrically arranged on the rotating wheel, and a transmission rod is hinged on the transmission rod. The transmission rod is hinged to one side of the magnet plate, and the transmission rod is detachably connected to the magnet plate. A cover plate is detachably connected to the position corresponding to the recycling slot on the left side of the box body.
[0017] In the present technical solution, a first extension plate is horizontally symmetrically provided at a position corresponding to the recycling slot on the right side of the box body, and a rotating column is symmetrically and horizontally provided on the first extension plate, and a rotating wheel is fixedly connected to the rotating column, and a transmission wheel is provided on the active connecting rod and the rotating column, and a transmission belt is provided on the transmission wheel. The rotating column and the active connecting rod are connected for transmission by the transmission wheel and the transmission belt, and a transmission column is eccentrically provided on the rotating wheel, and a transmission rod is hinged on the transmission rod, and the transmission rod is hinged to one side of the magnet plate, and the transmission rod is detachably connected to the magnet plate, and a cover plate is detachably connected to the position corresponding to the recycling slot on the left side of the box body. The cover plate can prevent the waste from flying out of the recycling slot when filtering the waste, affecting the recycling efficiency and the environment, thereby improving the practicality of the present technical solution.
[0018] In the present technical solution, when the crushing motor rotates, the transmission wheel and the transmission belt are used to drive the rotating column to rotate, and then drive the rotating wheel to rotate. Because the transmission column is eccentrically arranged on the rotating wheel, the two ends of the transmission rod are respectively hinged to the transmission rod and the magnet plate, thereby driving the magnet plate to move back and forth left and right in the guide groove. Through the continuous displacement and shaking of the magnet plate, the non-magnetic material on the magnet plate is shaken off the magnet plate, thereby improving the accuracy of waste classification of the present technical solution and improving the practicality of the present technical solution.
[0019] Furthermore, a sliding plate is obliquely arranged in the crushing chamber, the sliding plate is placed at the upper end of the crushing module, the bottom of the sliding plate is directly above the point where the active crushing roller and the driven crushing roller abut each other, and a pre-pressing module is arranged between the top of the crushing chamber and the crushing module.
[0020] In the present technical solution, a sliding plate is obliquely arranged in the crushing chamber, and the sliding plate is placed at the upper end of the crushing module. The bottom of the sliding plate is just above the point where the active crushing roller and the driven crushing roller abut each other. The sliding plate can be used to make the product to be crushed enter the crushing chamber from the feed port and then slide down the sliding plate and enter the crushing module just from the point where the active crushing roller and the driven crushing roller abut each other, which can improve the crushing efficiency. A pre-pressing module is arranged between the top of the crushing chamber and the crushing module.
[0021] The pre-pressing module consists of an extrusion plate, an extrusion table, and an extrusion block. The extrusion plate is vertically placed at the bottom of the sliding plate and welded to the bottom of the sliding plate. The extrusion table is horizontally placed in the crushing chamber. The plane on the extrusion table is flush with the bottom surface of the extrusion plate. There is a certain gap between the extrusion plate and the extrusion table. The extrusion block is placed on the extrusion table and is slidably connected to the extrusion table. A telescopic rod is provided on the side of the extrusion block away from the extrusion plate. The telescopic rod extends through the box and is slidably connected to the box. A second extension plate is symmetrically provided on the side of the box close to the extrusion block. A telescopic wheel is rotatably connected to the second extension plate. A telescopic shaft is eccentrically provided on the telescopic wheel. A transmission plate is hinged on the telescopic shaft. The end of the transmission plate away from the telescopic shaft is hinged to the telescopic rod, and the telescopic wheel is transmission-connected to the active connecting rod.
[0022] In this technical solution, when a larger product enters the crushing chamber from the feed port, the sliding plate causes the product to fall onto the extrusion table. Due to the large volume of the product, it cannot fall into the crushing module from the gap between the extrusion table and the extrusion plate, so it will remain on the extrusion plate. As the crushing motor rotates, the active connecting rod is driven to rotate, which in turn drives the telescopic rod to move left and right. The left and right displacement of the telescopic rod drives the extrusion block to move the product toward the extrusion plate and crush it. The crushing motor continues to rotate, the extrusion block retracts, and the extruded product falls from the gap into the crushing module for crushing. The extrusion block and the extrusion plate can be used to pre-crush large products, so that the crushing module can better crush the product, thereby improving the practicality of this technical solution.
[0023] The beneficial effects of the utility model are:
[0024] 1. The recycling module can classify magnetic materials and non-magnetic materials and recycle them at the same time, which improves the practicality of this technical solution.
[0025] 2. The magnet plate can be displaced and shaken by the first extension plate and other workpieces, which can improve the separation efficiency of the present technical solution for magnetic materials and non-magnetic materials and improve the practicality of the present technical solution.
[0026] 3. The brush can be used to remove waste materials adhering to the active crushing roller and the driven crushing roller, thereby improving the crushing efficiency of the crushing module and the practicality of the technical solution. BRIEF DESCRIPTION OF THE DRAWINGS
[0027] Figure 1 It is a structural diagram of a resource recycling crusher of the present utility model;
[0028] Figure 2 This is a rear view of the structure of the resource recycling crusher of the present invention;
[0029] Figure 3This is a structural cross-sectional view of a resource recycling crusher according to the present invention;
[0030] The symbols in the figure are as follows: 100, box body; 110, crushing chamber; 111, feeding port; 112, discharging port; 113, supporting foot; 114, brush; 115, cover plate; 116, sliding plate; 200, crushing module; 210, crushing motor; 211, active crushing roller; 212, active connecting rod; 213, active gear; 220, driven crushing roller; 221, driven connecting rod; 222, driven gear; 300, recycling module; 310, recycling slot; 3 11. Guide block; 312. Guide groove; 320. Magnet plate; 321. Filter hole; 330. First extension plate; 331. Rotating column; 332. Rotating wheel; 333. Transmission column; 334. Transmission wheel; 335. Transmission belt; 336. Transmission rod; 400. Pre-pressing module; 410. Second extension plate; 411. Telescopic wheel; 412. Telescopic shaft; 413. Transmission plate; 420. Extrusion plate; 421. Extrusion table; 422. Extrusion block; 423. Telescopic rod. DETAILED DESCRIPTION
[0031] The following will be combined with the accompanying drawings in the embodiments of the present application to clearly describe the technical solutions in the embodiments of the present application. Obviously, the described embodiments are part of the embodiments of the present application, not all of the embodiments. Based on the embodiments in the present application, all other embodiments obtained by ordinary technicians in this field are within the scope of protection of this application.
[0032] In the description of this application, it should be noted that the terms used herein are only for describing specific embodiments and are not intended to limit the exemplary embodiments according to this application. For ease of description, the sizes of the various parts shown in the drawings are not drawn according to the actual proportional relationship. Technologies, methods and equipment known to ordinary technicians in the relevant fields may not be discussed in detail, but where appropriate, the technologies, methods and equipment should be considered as part of the authorization specification. In all examples shown and discussed here, any specific values should be interpreted as merely exemplary and not as limitations. Therefore, other examples of the exemplary embodiments may have different values. It should be noted that similar numbers and letters represent similar items in the following figures, so once an item is defined in one figure, it does not need to be further discussed in subsequent figures.
[0033] It should be noted that the terms "first," "second," etc. in the specification and claims of this application are used to distinguish similar objects, and are not used to describe a specific order or sequence. It should be understood that the data used in this way are interchangeable where appropriate, so that the embodiments of this application can be implemented in an order other than those illustrated or described herein, and that the objects distinguished by "first," "second," etc. are generally of the same type, and do not limit the number of objects. For example, the first object can be one or more. In addition, "and / or" in the specification and claims represents at least one of the connected objects, and the character " / " generally indicates that the objects associated with each other are in an "or" relationship.
[0034] It should be noted that, in the description of this application, the directions or positional relationships indicated by directional terms such as "front, back, up, down, left, right", "horizontal, vertical, vertical, horizontal" and "top, bottom" are usually based on the directions or positional relationships shown in the accompanying drawings. They are only for the convenience of describing this application and simplifying the description. Unless otherwise specified, these directional terms do not indicate or imply that the device or element referred to must have a specific direction or be constructed and operated in a specific direction. Therefore, they cannot be understood as limiting the scope of protection of this application; the directional terms "inside and outside" refer to the inside and outside relative to the outline of each component itself.
[0035] It should be noted that, in the present application, the terms "comprise", "include" or any other variants thereof are intended to cover non-exclusive inclusion, so that a process, method, article or device comprising a series of elements includes not only those elements, but also other elements not explicitly listed, or also includes elements inherent to such process, method, article or device. In the absence of further restrictions, an element defined by the statement "comprises a ..." does not exclude the presence of other identical elements in the process, method, article or device comprising the element. In addition, it should be pointed out that the scope of the methods and devices in the embodiments of the present application is not limited to performing functions in the order shown or discussed, and may also include performing functions in a substantially simultaneous manner or in the opposite order according to the functions involved. For example, the described method may be performed in an order different from that described, and various steps may also be added, omitted, or combined. In addition, the features described with reference to certain examples may be combined in other examples.
[0036] Example 1
[0037] like Figure 1 、 2 As shown in FIG. 3 , the utility model provides a resource recycling crusher, comprising:
[0038] A box body 100 is provided with a crushing chamber 110 inside the box body 100, a feeding port 111 is provided on one side of the top of the box body 100, a discharging port 112 is provided at the bottom of the box body 100, and a plurality of supporting legs 113 are evenly arranged in an array at the bottom of the box body 100;
[0039] The crushing module 200 is placed on the box body 100. The crushing module 200 consists of a crushing motor 210, an active crushing roller 211 and a driven crushing roller 220. The crushing motor 210 is placed at the rear end of the box body 100. The active crushing roller 211 and the driven crushing roller 220 are against each other on the side. The active crushing roller 211 and the driven crushing roller 220 are respectively provided with an active connecting rod 212 and a driven connecting rod 221 on the side away from the rear end of the box body 100. The active connecting rod 212 and the driven connecting rod 221 extend through the box body 100. The active crushing roller 211 and the driven crushing roller 220 are placed in the crushing chamber 110 and arranged horizontally and parallel. The output shaft of the crushing motor 210 is connected to the active crushing roller 211. The active connecting rod 212 and the driven connecting rod 221 are respectively provided with a driving gear 213 and a driven gear 222, and the driving gear 213 is meshed with the driven gear 222.
[0040] The recovery module 300 is placed at the lower end of the crushing module 200. The recovery module 300 consists of a recovery slot 310, a guide block 311 and a magnet plate 320. The recovery slot 310 is placed on the left side wall of the box body 100 and runs through the left and right sides of the box body 100. The guide block 311 is placed in the crushing chamber 110. The guide blocks 311 are symmetrically arranged on both sides of the recovery slot 310. The guide blocks 311 are symmetrically provided with guide slots 312. The magnet plate 320 is placed in the guide slot 312 and is slidably connected to the guide block 311. The magnet plate 320 is provided with a plurality of filter holes 321;
[0041] Brushes 114 are horizontally symmetrically arranged in the crushing chamber 110 . The brushes 114 are in the same plane as the active crushing roller 211 and the driven crushing roller 220 . The bristle surfaces of the brushes 114 abut against the active crushing roller 211 and the driven crushing roller 220 .
[0042] In the present technical solution, the resource recycling crusher consists of a box body 100, a crushing module 200 and a recovery module 300, wherein a crushing chamber 110 is provided inside the box body 100, a feed port 111 is provided on one side of the top of the box body 100, a discharge port 112 is provided at the bottom of the box body 100, and a plurality of support legs 113 are evenly arranged in an array at the bottom of the box body 100. The support legs 113 are used to raise the bottom surface of the box body 100 to form a space for recycling waste between the box body 100 and the ground.
[0043] The crushing module 200 is placed on the box 100. The crushing module 200 consists of a crushing motor 210, an active crushing roller 211 and a driven crushing roller 220. The crushing motor 210 is placed at the rear end of the box 100 and is fixedly connected to the box 100. The output shaft of the crushing motor 210 is set toward the box 100. The active crushing roller 211 and the driven crushing roller 220 are against each other on the side. The active crushing roller 211 and the driven crushing roller 220 are placed in the crushing chamber 110 and are arranged horizontally and parallel. The active crushing roller 211 and the driven crushing roller 220 are away from the rear of the box 100. On one side of the end are respectively provided with an active connecting rod 212 and a driven connecting rod 221, the active connecting rod 212 and the driven connecting rod 221 extend through the box body 100, the output shaft of the crushing motor 210 passes through the box body 100 and is connected to the active crushing roller 211, the active connecting rod 212 and the driven connecting rod 221 are respectively provided with a driving gear 213 and a driven gear 222, the driving gear 213 and the driven gear 222 are meshed and connected, and the active crushing roller 211 can drive the driven crushing roller 220 to rotate by utilizing the active gear 213 and the driven gear 222.
[0044] The recovery module 300 is placed at the lower end of the crushing module 200. The recovery module 300 consists of a recovery slot 310, a guide block 311 and a magnet plate 320. The recovery slot 310 is placed on the left side wall of the box body 100 and runs through the left and right sides of the box body 100. The guide block 311 is placed in the crushing chamber 110. The guide blocks 311 are symmetrically arranged on both sides of the recovery slot 310. The guide blocks 311 are symmetrically provided with guide grooves 312. The guide grooves 312 make the cross-section of the guide blocks 311 C-shaped. The magnet plate 320 is placed in the guide groove 312 and is slidably connected to the guide block 311. The magnet plate 320 can also be removed from the guide block 311 through the recovery slot 310. A number of filter holes 321 are provided on the magnet plate 320.
[0045] The crushing chamber 110 is provided with a sliding plate 116 which is inclined. The sliding plate 116 is placed at the upper end of the crushing module 200. The bottom of the sliding plate 116 is located just above the contact point between the active crushing roller 211 and the driven crushing roller 220. The sliding plate 116 can be used to allow the product to be crushed to enter the crushing chamber 110 from the feed port 111 and then slide down the sliding plate 116 and enter the crushing module 200 from the contact point between the active crushing roller 211 and the driven crushing roller 220, thereby improving the crushing efficiency. Crushing efficiency: brushes 114 are horizontally symmetrically arranged in the crushing chamber 110. The brushes 114 are in the same plane as the active crushing roller 211 and the driven crushing roller 220. The hair surface of the brushes 114 is against the active crushing roller 211 and the driven crushing roller 220. After the product is crushed, some waste materials adhere to the active crushing roller 211 and the driven crushing roller 220. The brushes 114 can be used to brush these waste materials off the active crushing roller 211 and the driven crushing roller 220.
[0046] In this technical solution, when the product needs to be crushed and the magnetic material and non-magnetic material need to be recovered separately, the product is put into the feed port 111, and falls into the crushing module 200 just above the point where the active crushing roller 211 and the driven crushing roller 220 abut each other through the sliding plate 116 for crushing. After the crushing is completed, the waste material falls from the lower end of the crushing module 200 and passes through the recovery module 300. The waste material is filtered by the magnet plate 320 of the recovery module 300 and the magnetic material is absorbed by the magnetism of the magnet plate 320, while the non-magnetic material falls through the filter port on the magnet plate 320 and escapes from the discharge port 112 of the box 100.
[0047] Example 2
[0048] like Figure 1 、 2 As shown in FIG3 , this embodiment provides a resource recycling crusher, which, in addition to the technical solutions of the aforementioned embodiments, also has the following technical features.
[0049] A first extension plate 330 is horizontally symmetrically arranged at a position corresponding to the recovery slot 310 on the right side of the box body 100, and a rotating column 331 is symmetrically and horizontally arranged on the first extension plate 330. A rotating wheel 332 is fixedly connected to the rotating column 331, and the rotating column 331 is transmission-connected to the active connecting rod 212. A transmission column 333 is eccentrically arranged on the rotating wheel 332, and a transmission rod 336 is hinged on the transmission rod 336. The transmission rod 336 is hinged to one side of the magnet plate 320, and the transmission rod 336 is detachably connected to the magnet plate 320. A cover plate 115 is detachably connected to the position corresponding to the recovery slot 310 on the left side of the box body 100.
[0050] In this technical solution, a first extension plate 330 is horizontally symmetrically provided at a position corresponding to the recycling slot 310 on the right side of the box body 100, a rotating column 331 is symmetrically provided on the first extension plate 330, a rotating wheel 332 is fixedly connected to the rotating column 331, a transmission wheel 334 is provided on the active connecting rod 212 and the rotating column 331, a transmission belt 335 is provided on the transmission wheel 334, and the rotating column 331 and the active connecting rod 212 are transmitted by the transmission wheel 334 and the transmission belt 335. The rotating wheel 332 is eccentrically provided with a transmission column 333, and the transmission rod 336 is hingedly connected to the transmission rod 336. The transmission rod 336 is hinged to one side of the magnet plate 320, and the transmission rod 336 is detachably connected to the magnet plate 320. The left side of the box body 100 is detachably connected to the corresponding position of the recycling slot 310. The cover plate 115 can be used to prevent the waste from flying out of the recycling slot 310 when filtering the waste, affecting the recycling efficiency and the environment, thereby improving the practicality of the present technical solution.
[0051] In the present technical solution, when the crushing motor 210 rotates, the transmission wheel 334 and the transmission belt 335 are used to drive the rotating column 331 to rotate, and then drive the rotating wheel 332 to rotate. Because the transmission column 333 is eccentrically arranged on the rotating wheel 332, the two ends of the transmission rod 336 are respectively hinged to the transmission rod 336 and the magnet plate 320, thereby driving the magnet plate 320 to move back and forth left and right in the guide groove 312. Through the continuous displacement and shaking of the magnet plate 320, the non-magnetic material on the magnet plate 320 is shaken off the magnet plate 320, thereby improving the accuracy of waste classification of the present technical solution and improving the practicality of the present technical solution.
[0052] Example 3
[0053] like Figure 1 、 3 As shown, this embodiment provides a crusher for resource recycling, which, in addition to the technical solutions of the above embodiments, also has the following technical features.
[0054] A sliding plate 116 is obliquely arranged in the crushing chamber 110. The sliding plate 116 is placed at the upper end of the crushing module 200. The bottom of the sliding plate 116 is directly above the point where the active crushing roller 211 and the driven crushing roller 220 abut against each other. A pre-pressing module 400 is arranged between the top of the crushing chamber 110 and the crushing module 200.
[0055] In the present technical solution, a sliding plate 116 is obliquely arranged in the crushing chamber 110, and the sliding plate 116 is placed at the upper end of the crushing module 200. The bottom of the sliding plate 116 is located directly above the point where the active crushing roller 211 and the driven crushing roller 220 abut each other. The sliding plate 116 can be used to allow the product to be crushed to enter the crushing chamber 110 from the feed port 111 and then slide down the sliding plate 116 and enter the crushing module 200 from the point where the active crushing roller 211 and the driven crushing roller 220 abut each other, thereby improving the crushing efficiency. A pre-pressing module 400 is provided between the top of the crushing chamber 110 and the crushing module 200.
[0056] The pre-pressing module 400 is composed of an extrusion plate 420, an extrusion platform 421, and an extrusion block 422. The extrusion plate 420 is vertically placed at the bottom of the sliding plate 116 and welded to the bottom of the sliding plate 116. The extrusion platform 421 is horizontally placed in the crushing chamber 110. The upper surface of the extrusion platform 421 is flush with the bottom surface of the extrusion plate 420. There is a certain gap between the extrusion plate 420 and the extrusion platform 421. The extrusion block 422 is placed on the extrusion platform 421 and is slidably connected to the extrusion platform 421. The extrusion block 422 is set away from the side of the extrusion plate 420. There is a telescopic rod 423, which extends through the box body 100 and is slidably connected to the box body 100. A second extension plate 410 is symmetrically provided on the side of the box body 100 close to the extrusion block 422. The second extension plate 410 is rotatably connected to a telescopic wheel 411. A telescopic shaft 412 is eccentrically provided on the telescopic wheel 411. A transmission plate 413 is hinged on the telescopic shaft 412. The end of the transmission plate 413 away from the telescopic shaft 412 is hinged to the telescopic rod 423, and the telescopic wheel 411 is transmission-connected to the active connecting rod 212.
[0057] In the present technical solution, when a larger product enters the crushing chamber 110 from the feed port 111, the sliding plate 116 causes the product to fall onto the extrusion table 421. Due to the large size of the product, it cannot fall into the crushing module 200 from the gap between the extrusion table 421 and the extrusion plate 420, so it will be retained on the extrusion plate 420. As the crushing motor 210 rotates, the active connecting rod 212 is driven to rotate, and then the telescopic rod 423 is driven to move left and right. The left and right displacement of the telescopic rod 423 drives the extrusion block 422 to move the product toward the extrusion plate 420 and crush it. The crushing motor 210 continues to rotate, the extrusion block 422 retracts, and the extruded product falls from the gap into the crushing module 200 for crushing. The extrusion block 422 and the extrusion plate 420 can be used to pre-crush large products, so that the crushing module 200 can better crush the products, thereby improving the practicality of the present technical solution.
[0058] The embodiments of the present application are described above in conjunction with the accompanying drawings. Unless there is a conflict, the embodiments and features in the embodiments of the present application can be combined with each other. The present application is not limited to the specific implementation methods described. The specific implementation methods described are merely illustrative and not restrictive. Under the guidance of the present application, ordinary technicians in this field can also make many forms without departing from the purpose of the present application and the scope of protection of the claims, all of which are within the protection of the present application.
Claims
1. A crusher for recycling resources, characterized in that: include: The box (100) is provided with a crushing chamber (110) inside the box (100), and the top of the box (100) A material inlet (111) is provided on one side, a material outlet (112) is provided at the bottom of the box body (100), and the box body (100) The bottom array is evenly provided with a number of supporting legs (113); A crushing module (200), the crushing module (200) is placed on the box (100), the crushing module (200) It consists of a crushing motor (210), an active crushing roller (211) and a driven crushing roller (220). (210) is placed at the rear end of the box (100), and the active crushing roller (211) and the driven crushing roller (220) are against each other on the side. The active crushing roller (211) and the driven crushing roller (220) are provided with an active connecting rod (212) and a driven connecting rod (221) respectively on one side away from the rear end of the box (100), and the active connecting rod (212) and the driven connecting rod (221) pass through the box (100) and extend out; a recovery module (300) is placed at the lower end of the crushing module (200), and the recovery module (300) is composed of a recovery slot (310), a guide block (311) and a magnet plate (320). ), the recovery groove (310) is placed on the left side wall of the box body (100) and passes through the left and right sides of the box body (100), the guide block (311) is placed in the crushing chamber (110), the guide blocks (311) are symmetrically arranged on both sides of the recovery groove (310), the guide blocks (311) are symmetrically provided with guide grooves (312), the magnet plate (320) is placed in the guide groove (312) and is slidably connected to the guide block (311), and the magnet plate (320) is provided with a plurality of filter holes (321).
2. The resource recycling crusher according to claim 1, characterized in that: The main The driven crushing roller (211) and the driven crushing roller (220) are placed in the crushing chamber (110) and arranged horizontally and parallel to each other. The output shaft of the motor (210) is connected to the active crushing roller (211), and the active connecting rod (212) is connected to the driven connecting rod (221) is provided with a driving gear (213) and a driven gear (222), and the driving gear (213) and the driven gear (222) are respectively provided with a driving gear (213) and a driven gear (222). The movable gear (222) is meshed and connected.
3. The resource recycling crusher according to claim 1, characterized in that: A first extension plate (330) is horizontally symmetrically provided on the right side of the box body (100) at a position corresponding to the recovery slot (310). A rotating column (331) is symmetrically arranged horizontally on the first extension plate (330), and the rotating column (331) is fixedly connected to There is a rotating wheel (332), the rotating column (331) is connected to the active connecting rod (212) in a transmission manner, and the rotating wheel (332) is eccentrically provided with a transmission column (333), and a transmission rod (336) is hinged on the transmission column (333). The transmission rod (336) is hinged to one side of the magnet plate (320), and the transmission rod (336) and the magnet plate (320) are detachable. connect.
4. The resource recycling crusher according to claim 3, characterized in that: The box A cover plate (115) is detachably connected to a position on the left side of the body (100) corresponding to the recovery slot (310).
5. The resource recycling crusher according to claim 1, characterized in that: The broken A sliding plate (116) is tiltedly arranged in the crushing chamber (110), and the sliding plate (116) is placed on the crushing module (200). The bottom of the sliding plate (116) is located just above the contact point between the active crushing roller (211) and the driven crushing roller (220). square.
6. The resource recycling crusher according to claim 5, characterized in that: The broken A pre-pressing module (400) is provided between the top of the crushing chamber (110) and the crushing module (200).
7. The resource recycling crusher according to claim 1, characterized in that: The broken Brushes (114) are symmetrically arranged in the crushing chamber (110), and the brushes (114) are in contact with the active crushing rollers (211) and The driven crushing roller (220) is in the same plane, and the hair surface of the brush (114) is aligned with the active crushing roller (211) and the driven crushing roller (220). The crushing rollers (220) are against each other.
Citation Information
Patent Citations
Waste glass recycling crusher
CN221492604U