Treatment equipment for new energy battery recycling
By designing a new energy battery recycling and processing equipment that includes a support mechanism, a knocking mechanism, a collection mechanism and an extrapolation mechanism, the problem that existing equipment cannot automatically collect and break batteries is solved, and efficient battery recycling and space conservation are achieved.
Patent Information
- Application Number
- CN202510547356.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-28
- Publication Date
- 2025-06-10
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The existing new energy battery recycling and processing equipment cannot automatically push the battery into the collection box and crush it, resulting in a large space occupancy.
A processing device including a stabilizing seat, side plate, support mechanism, strike mechanism, track, collection mechanism and extrapolation mechanism is designed. The support mechanism is used to push the battery upward and through the through port, the strike mechanism is used to break the battery, the collection mechanism is used to collect the broken battery, and the extrapolation mechanism is used to push the battery into the collection mechanism.
It realizes automatic collection and crushing of batteries, reducing the space occupied by a single battery during recycling, making it simple to operate and highly practical.
Smart Images

Figure CN120115210A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of battery recycling, and particularly relates to a processing device for new energy battery recycling. Background Art
[0002] New energy batteries are a new type of energy storage device, mainly used to convert renewable energy (such as solar energy, wind energy, water energy, etc.) into chemical energy for storage and release it for people to use when needed. It is of great significance in promoting the development of renewable energy and achieving sustainable development.
[0003] When new energy batteries are scrapped, they need to be uniformly recycled. Although the existing recycling processing equipment can recycle new energy batteries, there are still some problems. First, the current recycling processing equipment cannot automatically push the batteries into the collection box for collection after battery processing. Second, the current recycling processing equipment fails to knock and break the new energy batteries, resulting in a large space occupation during the recycling of a single new energy battery. Therefore, a processing device for new energy battery recycling is needed to solve the above problems. Summary of the Invention
[0004] The purpose of the embodiments of the present invention is to provide a processing device for new energy battery recycling, aiming to solve the following problems: the existing recycling processing equipment cannot automatically push the batteries into the collection box for collection after battery processing and fails to knock and break the new energy batteries.
[0005] An embodiment of the present invention is implemented as follows. A processing device for new energy battery recycling includes: a stabilizing base and side plates. The side plates are fixedly connected to the stabilizing base, and there are two side plates and stabilizing bases. A platform is fixedly arranged on the two side plates, and the platform is provided with a through opening; a reinforcing plate, the two ends of which are fixedly connected to the two side plates. A supporting mechanism is installed on the reinforcing plate, and a new energy battery can be placed on the supporting mechanism. The supporting mechanism is used to push the new energy battery upward and pass through the through opening; a knocking mechanism, which is fixedly installed on the platform and is used to knock and break the new energy battery on the supporting mechanism; a track, which is fixedly installed on the reinforcing plate and is arranged on one side of the supporting mechanism. A collecting mechanism is arranged on the track, and the collecting mechanism is used to collect the broken new energy battery. The collecting mechanism can move on the track to transfer the broken new energy battery; an external pushing mechanism, which is installed on the platform and the reinforcing plate. The power input end of the external pushing mechanism is connected to the supporting mechanism, and the power output end is slidably arranged on the supporting mechanism and is used to push the new energy battery on the supporting mechanism into the collecting mechanism for collection; a control panel, which is fixedly installed on the platform and is arranged on one side of the knocking mechanism and is used to control the supporting mechanism and the knocking mechanism. An electric control cabinet is fixedly arranged on the platform on the other side of the knocking mechanism, and the electric control cabinet is used to supply power to the supporting mechanism, the knocking mechanism and the control panel.
[0006] Preferably, the supporting mechanism includes: a first power component, which is fixedly installed on the reinforcing plate. The output shaft of the first power component is connected to a threaded cylinder rotatably installed on the reinforcing plate. The power input end of the external pushing mechanism is connected to the threaded cylinder. The threaded cylinder is threadedly connected to a threaded column, and a supporting platform is fixedly connected to the threaded column. A new energy battery can be placed on the supporting platform. The power output end of the external pushing mechanism is in sliding contact with the supporting platform; a sliding column, the end of which is fixedly connected to the reinforcing plate. A sliding sleeve fixedly connected to the supporting platform is sleeved on the sliding column.
[0007] Preferably, the knocking mechanism includes: an explosion-proof box fixedly installed on the platform. A wheel frame is fixedly arranged inside the explosion-proof box. A second power member is installed on the wheel frame. An output shaft of the second power member is fixed with an incomplete gear rotatably installed on the wheel frame. A guide rod, both ends of which are fixedly connected to the inner wall of the explosion-proof box. A rack that is intermittently engaged with the incomplete gear is sleeved on the guide rod. A return spring is fixedly connected between the rack and the inner wall of the explosion-proof box. A protection box is fixedly connected to the rack. A third power member is installed inside the protection box. An output shaft of the third power member is fixedly connected with a cam. A slide rod, both ends of which are fixedly connected to the inner wall of the protection box. A slide plate is sleeved on the slide rod. The slide plate is in sliding contact with the cam. A return spring is fixedly connected between the slide plate and the inner wall of the explosion-proof box. An extension rod, one end of which is fixedly connected to the slide plate and the other end is fixedly connected with a knocking block for knocking and crushing the new energy battery. A long strip plate, both ends of which are fixedly connected to the inner wall of the explosion-proof box. The long strip plate is provided with a long strip opening. The protection box passes through the long strip opening. A folding plate is arranged in the long strip opening opened by the long strip plate. The protection box passes through and is fixedly connected with the folding plate.
[0008] Preferably, the collection mechanism includes: a collection box. Moving wheels are installed on the collection box. The moving wheels are slidably arranged on the track. The crushed new energy battery can be pushed into the collection box for collection. A connecting rod is slidably arranged on the collection box. One end of the connecting rod is fixedly connected with a clamping plate. A clamping opening is provided on the clamping plate. A handle is fixedly arranged on the clamping plate. A pressing plate is fixedly connected with the other end of the connecting rod. A pushing spring for pushing the pressing plate to press the new energy battery tightly is fixed between the pressing plate and the inner wall of the collection box. A locking component is fixedly installed on the collection box. The locking component can be inserted into the clamping opening to clamp the clamping plate tightly.
[0009] Preferably, the locking component includes: a fixing plate fixedly installed on the collection box. A sleeve is fixedly arranged on the fixing plate. A sleeve rod is slidably arranged on the sleeve. A clamping block is fixedly arranged on the sleeve rod. A compression spring for pushing the clamping block into the clamping opening is fixed between the clamping block and the sleeve. A pull rod, one end of which is fixedly connected with the clamping block and the other end is fixedly connected with a pull handle.
[0010] Preferably, the outer pushing mechanism includes: a first bevel gear fixedly installed on the threaded barrel. A supporting circular sleeve is fixedly installed on the reinforcing plate. A linkage rod is rotatably arranged inside the supporting circular sleeve. A second bevel gear meshing with the first bevel gear is fixed at one end of the linkage rod. A third bevel gear is fixed at the other end of the linkage rod. A pushing and pulling component is installed on the platform and the reinforcing plate and meshes with the third bevel gear for pushing the new energy battery on the supporting table into the collection mechanism for storage.
[0011] Preferably, the push-pull assembly includes: a column rotatably mounted on the reinforcement plate, a fourth bevel gear fixed on the column and meshing with the third bevel gear, and a first pulley fixed on the column below the fourth bevel gear; a trough fixedly mounted on the platform, a lead screw rotatably arranged in the trough, a second pulley fixedly arranged on one side of the lead screw, and a belt connected between the second pulley and the first pulley; a rotation-limiting column, both ends of which are fixedly connected to the inner wall of the trough, a reciprocating block threaded with the lead screw sleeved on the rotation-limiting column, a push rod fixedly arranged on the reciprocating block, a push sleeve sleeved on the push rod, a push plate fixedly arranged on the push sleeve and in sliding contact with the support table, and a top spring fixedly connected between the push sleeve and the reciprocating block; a support ring fixed on the reciprocating block, a winding drum rotatably arranged on the support ring, a lifting column fixed at the end of the winding drum, and the lifting column slidably arranged on the column; a pull rope, one end of which is fixedly connected to the winding drum and the other end is fixedly connected to the push sleeve, and the winding drum can rotate to wind up the pull rope.
[0012] The processing equipment for new energy battery recycling provided by the present invention can not only recycle new energy batteries, but also automatically push the batteries into the collection box for collection after battery processing. Further, it can knock and break the new energy batteries, reducing the space occupied by a single battery during recycling, with simple operation and strong practicability. BRIEF DESCRIPTION OF THE DRAWINGS
[0013] Figure 1 It is a three-dimensional schematic diagram of the processing equipment for new energy battery recycling.
[0014] Figure 2 It is a schematic diagram of the processing equipment for new energy battery recycling.
[0015] Figure 3 It is a schematic diagram of the support mechanism and the external push mechanism of the processing equipment for new energy battery recycling.
[0016] Figure 4 It is a schematic diagram of the knocking mechanism of the processing equipment for new energy battery recycling.
[0017] Figure 5 It is a schematic diagram of the interior of the protective box of the processing equipment for new energy battery recycling.
[0018] Figure 6 It is a schematic diagram of the collection mechanism of the processing equipment for new energy battery recycling.
[0019] Figure 7 It is a schematic diagram of the locking component of the processing equipment for new energy battery recycling.
[0020] In the accompanying drawings: 1 - stable base, 2 - side plate, 3 - platform, 4 - reinforcement plate, 5 - supporting mechanism, 6 - knocking mechanism, 7 - track, 8 - collection mechanism, 9 - outward pushing mechanism, 10 - control panel, 11 - electric control cabinet, 51 - first power component, 52 - threaded cylinder, 53 - threaded column, 54 - supporting table, 55 - sliding column, 56 - sliding sleeve, 61 - explosion-proof box, 62 - wheel frame, 63 - second power component, 64 - incomplete gear, 65 - guiding rod, 66 - rack, 67 - return spring, 68 - protection box, 69 - third power component, 610 - cam, 611 - sliding rod, 612 - sliding plate, 613 - return spring, 614 - extension rod, 615 - knocking block, 616 - long strip plate, 617 - folding plate, 81 - collection box, 82 - moving wheel, 83 - connecting rod, 84 - clamping plate, 85 - handle, 86 - pressing plate, 87 - pushing spring, 88 - locking assembly, 881 - fixing plate, 882 - sleeve, 883 - sleeve rod, 884 - clamping block, 885 - compression spring, 886 - pull rod, 887 - pull handle, 91 - first bevel gear, 92 - supporting round sleeve, 93 - linkage rod, 94 - second bevel gear, 95 - third bevel gear, 96 - pushing and pulling assembly, 961 - column, 962 - fourth bevel gear, 963 - first pulley, 964 - trough body, 965 - lead screw, 966 - second pulley, 967 - belt, 968 - rotation limiting column, 969 - reciprocating block, 9610 - push rod, 9611 - push sleeve, 9612 - push plate, 9613 - top spring, 9614 - supporting ring, 9615 - winding drum, 9616 - lifting column, 9617 - pulling rope. Detailed implementation manners
[0021] In order to make the objectives, technical solutions and advantages of the present invention clearer and more understandable, the present invention will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present invention and do not limit the present invention.
[0022] The specific implementation of the present invention will be described in detail below with reference to specific embodiments.
[0023] Please refer to Figure 1 and Figure 2 , a processing device for new energy battery recycling provided by an embodiment of the present invention, the processing device for new energy battery recycling includes:
[0024] A stable base 1 and side plates 2, the side plates 2 and the stable base 1 are fixedly connected, and there are two side plates 2 and stable bases 1. A platform 3 is fixedly arranged on the two side plates 2, and the platform 3 is provided with a through opening; a reinforcing plate 4, the two ends of which are fixedly connected to the two side plates 2. A supporting mechanism 5 is installed on the reinforcing plate 4. A new energy battery can be placed on the supporting mechanism 5, and the supporting mechanism 5 is used to push the new energy battery upward and pass through the through opening; a knocking mechanism 6, which is fixedly installed on the platform 3 and is used to knock and break the new energy battery on the supporting mechanism 5; a track 7, which is fixedly installed on the reinforcing plate 4 and is arranged on one side of the supporting mechanism 5. A collecting mechanism 8 is arranged on the track 7, and the collecting mechanism 8 is used to collect the broken new energy battery. The collecting mechanism 8 can move on the track 7 to transfer the broken new energy battery; an outward pushing mechanism 9, which is installed on the platform 3 and the reinforcing plate 4. The power input end of the outward pushing mechanism 9 is connected to the supporting mechanism 5, and the power output end is slidably arranged on the supporting mechanism 5 and is used to push the new energy battery on the supporting mechanism 5 into the collecting mechanism 8 for collection; a control panel 10, which is fixedly installed on the platform 3 and is arranged on one side of the knocking mechanism 6 and is used to control the supporting mechanism 5 and the knocking mechanism 6. An electric control cabinet 11 is fixed on the platform 3 on the other side of the knocking mechanism 6, and the electric control cabinet 11 is used to supply power to the supporting mechanism 5, the knocking mechanism 6 and the control panel 10.
[0025] When using this processing equipment for new energy battery recycling, first turn on the supporting mechanism 5. The power output end of the supporting mechanism 5 moves upward. When the supporting mechanism 5 moves upward, it can also make the power output end of the outward pushing mechanism 9 disengage from the supporting mechanism 5. At this time, the new energy battery to be processed can be placed on the supporting mechanism 5. Continue to turn on the supporting mechanism 5, and the supporting mechanism 5 can drive the battery to pass through the through opening. At the same time, the supporting mechanism 5 closes the through opening. After closing, turn on the knocking mechanism 6, and the knocking mechanism 6 can gradually knock and break the new energy battery on the supporting mechanism 5. After the breaking is completed, turn on the supporting mechanism 5 in the reverse direction, and the supporting mechanism 5 can gradually move downward. The supporting mechanism 5 can also drive the outward pushing mechanism 9 to push the broken new energy battery into the collecting mechanism 8 for collection. The collecting mechanism 8 can hold the collected new energy battery tightly. Subsequently, the collected new energy battery can be transferred by sliding the collecting mechanism 8 on the track 7. The supporting mechanism 5 and the knocking mechanism 6 can be controlled through the control panel 10, and the electric control cabinet 11 can supply power to the supporting mechanism 5, the knocking mechanism 6 and the control panel 10.
[0026] Such as Figure 3As shown, as a preferred embodiment of the present invention, the supporting mechanism 5 includes: a first power member 51 fixedly installed on the reinforcement plate 4, a threaded cylinder 52 rotatably installed on the reinforcement plate 4 is connected to the output shaft of the first power member 51, the power input end of the pushing mechanism 9 is connected to the threaded cylinder 52, the threaded cylinder 52 is threadedly connected to a threaded column 53, a supporting platform 54 is fixedly connected to the threaded column 53, a new energy battery can be placed on the supporting platform 54, and the power output end of the pushing mechanism 9 is in sliding contact with the supporting platform 54; a sliding column 55, the end of which is fixedly connected to the reinforcement plate 4, and a sliding sleeve 56 fixedly connected to the supporting platform 54 is sleeved on the sliding column 55.
[0027] When pushing the new energy battery to move upward, the first power member 51 is turned on. The first power member 51 is specifically a motor. The output shaft of the first power member 51 drives the threaded cylinder 52 to rotate. The rotation of the threaded cylinder 52 can make the threaded column 53 drive the supporting platform 54 and the sliding sleeve 56 to move upward along the sliding column 55. As the supporting platform 54 moves upward, the rotation of the threaded cylinder 52 also makes the power output end of the pushing mechanism 9 move leftward and disengage from the supporting platform 54. At this time, the new energy battery is placed on the supporting platform 54. The supporting platform 54 can gradually push the new energy battery through the through hole, and at the same time, the supporting platform 54 closes the through hole. At this time, the knocking mechanism 6 is turned on to knock and break the new energy battery. After breaking, the first power member 51 is turned on in the reverse direction, and the supporting platform 54 can gradually move downward to reset. At the same time, the reverse rotation of the threaded cylinder 52 can make the pushing mechanism 9 be in sliding contact with the supporting platform 54 and push the broken new energy battery into the collection mechanism 8 for collection.
[0028] As Figure 4 and Figure 5As shown, as a preferred embodiment of the present invention, the knocking mechanism 6 includes: an explosion-proof box 61 fixedly installed on the platform 3. Inside the explosion-proof box 61, a wheel frame 62 is fixedly arranged. A second power member 63 is installed on the wheel frame 62. A rotating and incompletely-gear 64 rotatably installed on the wheel frame 62 is fixed to the output shaft of the second power member 63; a guide rod 65, whose two ends are fixedly connected to the inner wall of the explosion-proof box 61. A rack 66 that meshes with the incompletely-gear 64 intermittently is sleeved on the guide rod 65. A return spring 67 is fixedly connected between the rack 66 and the inner wall of the explosion-proof box 61; a protection box 68 fixedly connected to the rack 66. A third power member 69 is installed inside the protection box 68. A cam 610 is fixedly connected to the output shaft of the third power member 69; a slide rod 611, whose two ends are fixedly connected to the inner wall of the protection box 68. A slide plate 612 is sleeved on the slide rod 611. The slide plate 612 is in sliding contact with the cam 610. A return spring 613 is fixedly connected between the slide plate 612 and the inner wall of the explosion-proof box 61; an extension rod 614, one end of which is fixedly connected to the slide plate 612 and the other end is fixedly connected to a knocking block 615 for knocking and crushing the new energy battery; a long strip plate 616, whose two ends are fixedly connected to the inner wall of the explosion-proof box 61. The long strip plate 616 is provided with a long strip opening. The protection box 68 passes through the long strip opening. A folding plate 617 is arranged in the long strip opening opened on the long strip plate 616. The protection box 68 passes through and is fixedly connected to the folding plate 617.
[0029] When knocking and crushing the new energy battery, turn on the third power member 69. The third power member 69 is specifically a motor. The output shaft of the third power member 69 drives the cam 610 to rotate. Under the elastic cooperation of the return spring 613 during the rotation of the cam 610, the slide plate 612 drives the extension rod 614 and the knocking block 615 to reciprocate up and down along the slide rod 611, and the knocking block 615 can knock and crush the new energy battery. During the knocking process, the second power member 63 can be turned on. The second power member 63 is specifically a motor. The second power member 63 drives the incompletely-gear 64 to rotate. Since the incompletely-gear 64 meshes with the rack 66 intermittently, under the return elastic force of the return spring 67, the incompletely-gear 64 can make the rack 66 reciprocate along the guide rod 65. The reciprocating movement of the rack 66 can drive the protection box 68 to reciprocate, thereby driving the knocking block 615 to reciprocate, and then the new energy battery can be knocked and crushed at different positions. The setting of the folding plate 617 can protect the components on its upper side and prevent the components on the upper side of the folding plate 617 from being damaged.
[0030] As Figure 6As shown, as a preferred embodiment of the present invention, the collection mechanism 8 includes: a collection box 81, on which moving wheels 82 are installed. The moving wheels 82 are slidably arranged on the track 7, and the crushed new energy batteries can be pushed into the collection box 81 for collection; a connecting rod 83, which is slidably arranged on the collection box 81. One end of the connecting rod 83 is fixedly connected with a clamping plate 84. The clamping plate 84 is provided with a bayonet, and a handle 85 is fixedly arranged on the clamping plate 84; a pressing plate 86, which is fixedly connected with the other end of the connecting rod 83. A push spring 87 for pushing the pressing plate 86 to press the new energy battery tightly is fixed between the pressing plate 86 and the inner wall of the collection box 81; a locking component 88, which is fixedly installed on the collection box 81 and can be inserted into the bayonet to clamp the clamping plate 84.
[0031] As Figure 7 As shown, as a preferred embodiment of the present invention, the locking component 88 includes: a fixing plate 881, which is fixedly installed on the collection box 81. A sleeve 882 is fixedly arranged on the fixing plate 881. A sleeve rod 883 is slidably arranged on the sleeve 882. A clamping block 884 is fixedly arranged on the sleeve rod 883. A compression spring 885 for pushing the clamping block 884 into the bayonet is fixed between the clamping block 884 and the sleeve 882; a pull rod 886, one end of which is fixedly connected with the clamping block 884, and the other end of the pull rod 886 is fixedly connected with a pull handle 887.
[0032] When pressing the crushed new energy battery tightly, after the new energy battery is pushed into the collection box 81, pull the pull handle 887. The pull handle 887 drives the clamping block 884 and the sleeve rod 883 to slide along the sleeve 882 and compress the compression spring 885. After the clamping block 884 disengages from the bayonet opened by the clamping plate 84, the push spring 87 can push the pressing plate 86 to press the crushed new energy battery tightly. When releasing the new energy battery, pull the handle 85. The handle 85 drives the clamping plate 84, the connecting rod 83 and the pressing plate 86 to move and compress the push spring 87 until the clamping block 884 is inserted into the bayonet. The moving wheels 82 can move through the guide rail 7, so as to facilitate the transfer of the collected new energy batteries.
[0033] As Figure 3 As shown, as a preferred embodiment of the present invention, the outer pushing mechanism 9 includes: a first bevel gear 91, which is fixedly installed on the threaded cylinder 52; a supporting circular sleeve 92, which is fixedly installed on the reinforcing plate 4. A linkage rod 93 is rotatably arranged in the supporting circular sleeve 92. One end of the linkage rod 93 is fixed with a second bevel gear 94 meshing with the first bevel gear 91, and the other end of the linkage rod 93 is fixed with a third bevel gear 95; a pushing and pulling assembly 96, which is installed on the platform 3 and the reinforcing plate 4 and meshes with the third bevel gear 95, and is used for pushing the new energy battery on the supporting table 54 into the collection mechanism 8 for storage.
[0034] As Figure 3As shown, as a preferred embodiment of the present invention, the push-pull assembly 96 includes: a column 961 rotatably mounted on the reinforcement plate 4, a fourth bevel gear 962 fixed on the column 961 and meshing with the third bevel gear 95, and a first pulley 963 fixed on the column 961 is arranged below the fourth bevel gear 962; a trough 964 fixedly mounted on the platform 3, a lead screw 965 rotatably arranged in the trough 964, a second pulley 966 fixedly arranged on one side of the lead screw 965, and a belt 967 is connected between the second pulley 966 and the first pulley 963; a rotation-limiting column 968, both ends of which are fixedly connected to the inner wall of the trough 964, a reciprocating block 969 threadedly connected to the lead screw 965 is sleeved on the rotation-limiting column 968, a push rod 9610 is fixedly arranged on the reciprocating block 969, a push sleeve 9611 is sleeved on the push rod 9610, a push plate 9612 in sliding contact with the support table 54 is fixedly arranged on the push sleeve 9611, and a top spring 9613 is fixedly connected between the push sleeve 9611 and the reciprocating block 969; a support ring 9614 fixed on the reciprocating block 969, a winding drum 9615 rotatably arranged on the support ring 9614, a lifting column 9616 fixed at the end of the winding drum 9615, and the lifting column 9616 is slidably arranged on the column 961; a pull rope 9617, one end of which is fixedly connected to the winding drum 9615 and the other end is fixedly connected to the push sleeve 9611, and the winding drum 9615 can rotate to wind up the pull rope 9617.
[0035] When pushing the broken new energy battery into the collection mechanism 8 for collection, the first power component 51 is turned on. The first power component 51 drives the threaded cylinder 52 to rotate, so that the supporting platform 54 drives the broken new energy battery to move downward. The rotation of the threaded cylinder 52 simultaneously drives the first bevel gear 91 to rotate. The rotation of the first bevel gear 91 drives the second bevel gear 94, the linkage rod 93 and the third bevel gear 95 to rotate stably within the supporting circular sleeve 92. The rotation of the third bevel gear 95 drives the fourth bevel gear 962 and the column 961 to rotate. The rotation of the column 961 drives the first pulley 963 to rotate. The first pulley 963 drives the second pulley 966 and the lead screw 965 to rotate through the belt 967. The rotation of the lead screw 965 enables the reciprocating block 969 to move downward along the rotation-limiting column 968. The downward movement of the reciprocating block 969 drives the push rod 9610, the push sleeve 9611, the push plate 9612, the support ring 9614, the winding drum 9615 and the pull rope 9617 connected thereto to move downward synchronously. The lower side of the push plate 9612 is always flush with the upper side of the supporting platform 54 when it moves downward. At the same time, the rotation of the column 961 drives the winding drum 9615 to rotate on the support ring 9614 through the lifting column 9616, so as to unwind the pull rope 9617. Under the elastic push of the top spring 9613, the push sleeve 9611 drives the push plate 9612 to move to the right, so as to push the broken new energy battery on the supporting platform 54 into the collection mechanism 8 for collection. In addition, in this embodiment, the upper part of the lead screw 965 is not provided with threads. When the reciprocating block 969 rises to the highest position, the rotation of the lead screw 965 cannot make the reciprocating block 969 continue to move upward, and the winding drum 9615 can wind up the pull rope 9617, so as to avoid the push plate 9612 touching the platform 3 and causing movement interference.
[0036] The above are only the preferred embodiments of the present invention and are not intended to limit the present invention. Any modifications, equivalent replacements and improvements made within the spirit and principle of the present invention shall be included in the protection scope of the present invention.
Claims
1. A processing device for recycling new energy batteries, comprising a stabilizing seat and a side plate, characterized in that: The side panels are fixedly connected to the stabilizing seat, two side panels and two stabilizing seats are provided, platforms are fixedly provided on the two side panels, and a through opening is provided on the platforms; A reinforcing plate, both ends of which are fixedly connected to the two side plates, a supporting mechanism is installed on the reinforcing plate, and the new energy battery can be placed on the supporting mechanism, and the supporting mechanism is used to push the new energy battery upward and pass through the through opening; A knocking mechanism, which is fixedly mounted on the platform and is used to knock and crush the new energy battery on the supporting mechanism; A track, which is fixedly mounted on the reinforcement plate and arranged on one side of the supporting mechanism, wherein a collecting mechanism is arranged on the track, and the collecting mechanism is used to collect the crushed new energy batteries, and the collecting mechanism can move on the track to transport the crushed new energy batteries; The push-out mechanism is installed on the platform and the reinforcement plate, the power input end of the push-out mechanism is connected to the supporting mechanism, and the power output end is slidably arranged on the supporting mechanism, and is used to push the new energy battery on the supporting mechanism into the collecting mechanism for collection; A control panel is fixedly mounted on the platform and arranged on one side of the knocking mechanism, and is used to control the supporting mechanism and the knocking mechanism. An electric control cabinet fixed on the platform is arranged on the other side of the knocking mechanism, and the electric control cabinet is used to supply power to the supporting mechanism, the knocking mechanism and the control panel.
2. The processing equipment for recycling new energy batteries according to claim 1, characterized in that: The supporting mechanism comprises: The first power member is fixedly mounted on the reinforcement plate, the output shaft of the first power member is connected to a threaded barrel rotatably mounted on the reinforcement plate, the power input end of the external push mechanism is connected to the threaded barrel, the threaded barrel is threadedly connected to a threaded column, a support platform is fixedly connected to the threaded column, the new energy battery can be placed on the support platform, and the power output end of the external push mechanism is in sliding contact with the support platform; The end of the sliding column is fixedly connected to the reinforcing plate, and the sliding column is sleeved with a sliding sleeve fixedly connected to the supporting platform.
3. The processing equipment for recycling new energy batteries according to claim 1, characterized in that: The knocking mechanism comprises: An explosion-proof box is fixedly mounted on the platform, a wheel frame is fixedly arranged in the explosion-proof box, a second power member is mounted on the wheel frame, and an incomplete gear rotatably mounted on the wheel frame is fixed to the output shaft of the second power member; A guide rod, both ends of which are fixedly connected to the inner wall of the explosion-proof box, a rack that intermittently meshes with the incomplete gear is sleeved on the guide rod, and a return spring is fixedly connected between the rack and the inner wall of the explosion-proof box; A protection box, which is fixedly connected to the rack, a third power member is installed in the protection box, and a cam is fixedly connected to the output shaft of the third power member; A slide rod, both ends of which are fixedly connected to the inner wall of the protection box, a slide plate is sleeved on the slide rod, the slide plate is in sliding contact with the cam, and a return spring is fixedly connected between the slide plate and the inner wall of the explosion-proof box; An extension rod, one end of which is fixedly connected to the slide plate, and the other end of which is fixedly connected to a knocking block, the knocking block is used to knock and break the new energy battery; The two ends of the long strip are fixedly connected to the inner wall of the explosion-proof box. The long strip is provided with a long opening, and the protection box passes through the long opening. A folding plate is arranged in the long opening of the long strip, and the protection box passes through and is fixedly connected to the folding plate.
4. The processing equipment for recycling new energy batteries according to claim 1, characterized in that: The collection agencies include: A collection box, wherein the collection box is provided with moving wheels, which are slidably arranged on tracks, and the crushed new energy batteries can be pushed into the collection box for collection; A connecting rod is slidably arranged on the collecting box, one end of the connecting rod is fixedly connected to a card plate, the card plate is provided with a card slot, and a handle is fixedly arranged on the card plate; A pressure plate is fixedly connected to the other end of the connecting rod, and a push spring is fixed between the pressure plate and the inner wall of the collection box to push the pressure plate to press the new energy battery tightly; The locking component is fixedly mounted on the collection box, and the locking component can be inserted into the bayonet to clamp the card plate.
5. The processing equipment for recycling new energy batteries according to claim 4 is characterized in that: The locking assembly comprises: A fixed plate, which is fixedly mounted on the collection box, a sleeve is fixedly arranged on the fixed plate, a sleeve rod is slidably arranged on the sleeve, a clamping block is fixedly arranged on the sleeve rod, and a compression spring is fixed between the clamping block and the sleeve for pushing the clamping block into the clamping port; One end of the pull rod is fixedly connected to the clamping block, and the other end of the pull rod is fixedly connected to a pull handle.
6. The processing equipment for recycling new energy batteries according to claim 2, characterized in that: The extrapolation mechanism comprises: A first bevel gear, which is fixedly mounted on the threaded barrel; A supporting circular sleeve is fixedly mounted on the reinforcing plate, a linkage rod is rotatably arranged in the supporting circular sleeve, a second bevel gear meshing with the first bevel gear is fixed at one end of the linkage rod, and a third bevel gear is fixed at the other end of the linkage rod; The push-pull assembly is installed on the platform and the reinforcement plate and meshes with the third bevel gear, and is used to push the new energy battery on the supporting platform into the collection mechanism for storage.
7. The processing equipment for recycling new energy batteries according to claim 6 is characterized in that: The push-pull assembly comprises: A column is rotatably mounted on the reinforcement plate, a fourth bevel gear meshing with the third bevel gear is fixed on the column, and a first pulley fixed on the column is arranged at the lower side of the fourth bevel gear; A trough body, which is fixedly mounted on the platform, wherein a screw rod is rotatably arranged in the trough body, a second belt pulley is fixedly arranged on one side of the screw rod, and a belt is connected between the second belt pulley and the first belt pulley; A rotation-limiting column, both ends of which are fixedly connected to the inner wall of the tank body, a reciprocating block threadedly connected to the screw rod is sleeved on the rotation-limiting column, a push rod is fixedly arranged on the reciprocating block, a push rod is sleeved on the push rod, a push plate slidingly contacting with the supporting platform is fixedly arranged on the push sleeve, and a top spring is fixedly connected between the push sleeve and the reciprocating block; A support ring is fixed on the reciprocating block, a winding drum is rotatably arranged on the support ring, a lifting column is fixed on the end of the winding drum, and the lifting column is slidably arranged on the column; One end of the pull rope is fixedly connected to the winding drum, and the other end is fixedly connected to the push sleeve. The winding drum can be rotated to wind up the pull rope.