Sagger dumping device

By designing a sagger tilting device that includes tilting, material collection, and dust recovery components, the problem of dust flying during sagger tilting was solved, achieving efficient material collection and transportation and reducing environmental pollution.

CN224132260UActive Publication Date: 2026-04-17JINGMEN POWER BATTERY RECYCLING TECH CO LTD +3
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
JINGMEN POWER BATTERY RECYCLING TECH CO LTD
Filing Date
2025-04-18
Publication Date
2026-04-17

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Abstract

The utility model provides a sagger dumping device which comprises a sagger conveying assembly, a dumping assembly, a material collecting assembly and a dust recycling assembly, the dumping assembly is provided with a turnover dumping end, and the material collecting assembly is arranged on one side of the dumping assembly and correspondingly matched with the dumping end. The material collecting assembly is fixed to the material collecting assembly and used for receiving materials poured out when the dumping end is turned over, the dust recycling assembly is fixed to the material collecting assembly and used for collecting dust generated when the dumping end is turned over, and the sagger conveying assembly is provided with a conveying end capable of moving relative to the dumping assembly. And the transportation end is used for placing the saggar to be dumped on the dumping end. The dust recovery assembly is arranged and fixed to the material collection assembly, dust generated during dumping can be recovered when the dumping end is turned over to pour out materials, waste of the materials can be avoided, flying of the dust can be avoided, and pollution to the production environment is reduced.
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Description

Technical Field

[0001] This utility model relates to the field of ternary material manufacturing, and in particular to a sagger tilting device. Background Technology

[0002] Ternary lithium-ion battery cathode materials have high energy density and good cycle stability and thermal stability, and are widely used in electric vehicles and hybrid electric vehicles. In the cathode material manufacturing process, metal powder needs to be loaded into a sagger (ceramic box) for cyclic sintering. After sintering is completed, the material in the sagger needs to be poured out.

[0003] For example, patent CN207702999U provides a device with automatic replacement of old and new crucibles and crucible tilting function, including a robot docking line, a robot gripper, an end lifting device, a double-layer roller conveyor, an end lifting device, and an AGV trolley; the end lifting device, the double-layer roller conveyor, and the end lifting device are connected in sequence through a connecting plate; the robot docking line is fixed according to the transmission requirements; the robot gripper is positioned to be able to grab new crucibles from the robot docking line, place old crucibles on the double-layer roller conveyor, and tilt the crucible material onto the crusher; the AGV trolley is placed at the end lifting device and can also move around as needed; during tilting, it mainly relies on the robot gripper to flip.

[0004] The existing technology has the following problems: when the sagger is tilted, dust will be raised, resulting in material waste and pollution to the production environment. Utility Model Content

[0005] In view of this, it is necessary to provide a sagger tilting device that can solve the problem of dust flying during tilting.

[0006] This utility model provides a sagger tilting device, comprising:

[0007] The tilting assembly has a tilting end that can be flipped over;

[0008] A material collection component is disposed on one side of the tilting component and corresponds to and matches the tilting end, for receiving the material poured out when the tilting end is tilted.

[0009] A dust recovery assembly, fixed to the material collection assembly, is used to collect dust generated when the tipping end is overturned; and

[0010] A sagger transport assembly has a transport end movable relative to the tilting assembly, the transport end being used to place a sagger to be tilted onto the tilting end.

[0011] In other embodiments, the material collection assembly includes a material collection hopper and a material recovery pipe. The material collection hopper is fixed to one side of the tilting assembly, and the top of the material collection hopper has a feed inlet that corresponds to the flipping end of the tilting assembly. The material recovery pipe is connected to the bottom of the material collection hopper.

[0012] In other embodiments, the dust recovery assembly includes a baffle and a negative pressure component. The baffle is fixed to the top of the material collection hopper and surrounds the side of the feed inlet away from the pouring assembly. The negative pressure component is in communication with the baffle and is used to generate negative pressure.

[0013] In other embodiments, the other end of the negative pressure element is connected to the material recovery pipe.

[0014] In other embodiments, the negative pressure component includes a negative pressure pipe and a negative pressure fan, with one end of the negative pressure pipe fixedly connected to the baffle and the other end fixedly connected to the material recovery pipe.

[0015] In other embodiments, the crucible transport assembly includes a transport frame, a first movable transport member, a second movable transport member, a temporary storage platform, and an empty crucible transport line. The temporary storage platform and the empty crucible transport line are located on the side of the pouring assembly away from the material collection assembly. The transport frame spans the pouring assembly, the temporary storage platform, and the empty crucible transport line. One side of the transport frame forms a storage area for crucibles to be poured. The first movable transport member and the second movable transport member are slidably mounted on the transport frame. The first movable transport member can reciprocate along the transport frame and corresponds to the storage area for crucibles to be poured. The first movable transport member is used to transport the crucible to be poured from the storage area of ​​the crucible to be poured to the temporary storage platform. The second movable transport member is slidably disposed on the transport frame. The second movable transport member can reciprocate along the transport frame and has a third position corresponding to the temporary storage platform, a fourth position corresponding to the pouring end, and a fifth position corresponding to the empty crucible transport line. The second movable transport member is used to transport the crucible to be poured from the temporary storage platform to the pouring assembly for pouring and to transport the poured crucible to the crucible transport line.

[0016] In other embodiments, the empty cask transport line, the temporary storage platform, and the cask dumping storage area are arranged sequentially along the direction of the dumping assembly away from the material collection assembly.

[0017] In other embodiments, the first movable transport component includes a first slider, a first lifting cylinder, a first double-headed cylinder, and a pair of first clamping plates. The first slider is slidably connected to the transport frame. The first lifting cylinder is fixed to the bottom of the first slider and has a lifting end that can be raised or lowered. The first double-headed cylinder is fixed to the lifting end of the first lifting cylinder. The first clamping plate is fixed to the movable end of the first double-headed cylinder. The movable end of the first double-headed cylinder extends and retracts, causing the first clamping plate to move relative to or away from each other.

[0018] In other embodiments, the second moving transport component includes a second slider, a second lifting cylinder, a second double-headed cylinder, and a pair of second clamping plates. The second slider is slidably connected to the transport frame. The second lifting cylinder is fixed to the bottom of the second slider and has a lifting end that can be raised or lowered. The second double-headed cylinder is fixed to the lifting end of the second lifting cylinder. The second clamping plate is fixed to the movable end of the second double-headed cylinder. The movable end of the second double-headed cylinder extends and retracts, causing the second clamping plate to move relative to or away from each other.

[0019] In other embodiments, the tilting assembly includes a support platform, a tilting member, and a clamping member. The tilting member is fixed to the support platform and has a tilting portion that can be tilted relative to the support platform. The clamping member is fixed to the tilting portion and is used to fix the sagger to be tilted.

[0020] The beneficial effects of this utility model are as follows:

[0021] This utility model includes a sagger transport assembly, a tilting assembly, a material collection assembly, and a dust recovery assembly. The tilting assembly has a tilting end that can be flipped. The material collection assembly is disposed on one side of the tilting assembly and corresponds to and matches the tilting end, serving to receive the material poured out when the tilting end is tilted. The dust recovery assembly is fixed to the material collection assembly and serves to collect the dust generated when the tilting end is tilted. The sagger transport assembly has a transport end that can move relative to the tilting assembly, and the transport end is used to place the sagger to be tilted onto the tilting end. This utility model includes a dust recovery assembly, which is fixed to the material collection assembly. This dust recovery assembly can recover the dust generated when the tilting end tilts to pour out material, thus avoiding material waste and preventing dust from flying everywhere, reducing pollution to the production environment. Attached Figure Description

[0022] To more clearly illustrate the technical solutions in the embodiments of this utility model, the drawings used in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0023] Figure 1 This is a schematic diagram of the structure of the sagger tilting device in this utility model;

[0024] Figure 2 for Figure 1 A schematic diagram of the structure of the first moving transport component;

[0025] Figure 3 for Figure 1 Schematic diagram of the structure of the second moving transport component;

[0026] Figure 4 for Figure 1 A top view of the tilting assembly;

[0027] Wherein: 1-saggar transport assembly, 11-transport frame, 111-sliding rail, 12-first moving transport component, 121-first slider, 122-first lifting cylinder, 123-first double-headed cylinder, 124-first clamping plate, 13-second moving transport component, 131-second slider, 132-second lifting cylinder, 133-second double-headed cylinder, 134-second clamping plate, 14-temporary storage platform, 15-empty saggar transport line;

[0028] 2-Tilting assembly, 21-Bearing platform, 22-Tilting component, 221-High-speed rotating motor, 222-Rotating shaft, 23-Clamping component, 231-Clamping double-headed cylinder, 232-Tilting fixing clamp;

[0029] 3-Material collection assembly, 31-Material collection hopper, 32-Material recovery pipe;

[0030] 4-Dust recovery assembly, 41-Block cover, 42-Negative pressure component, 421-Negative pressure pipeline, 422-Negative pressure fan. Detailed Implementation

[0031] The preferred embodiments of the present invention will now be described in detail with reference to the accompanying drawings, which constitute a part of this application and are used together with the embodiments of the present invention to illustrate the principles of the present invention, but are not intended to limit the scope of the present invention.

[0032] like Figure 1-4As shown, an embodiment of this utility model provides a sagger tilting device, which includes: a sagger transport assembly 1, a tilting assembly 2, a material collection assembly 3, and a dust recovery assembly 4. The tilting assembly 2 has a tilting end that can be flipped. The material collection assembly 3 is disposed on one side of the tilting assembly 2 and corresponds to and matches the tilting end, and is used to receive the material poured out when the tilting end is tilted. The dust recovery assembly 4 is fixed on the material collection assembly 3 and is used to collect the dust generated when the tilting end is tilted. The sagger transport assembly 1 has a transport end that can move relative to the tilting assembly 2, and the transport end is used to place the sagger to be tilted on the tilting end.

[0033] In this utility model, a dust recovery component 4 is provided. The dust recovery component 4 is fixed on the material collection component 3. When the material is poured out by the tilting end, the dust generated during the pouring process can be recovered. On the one hand, this can avoid material waste, and on the other hand, it can prevent dust from flying around and reduce pollution to the production environment.

[0034] Specifically, the crucible transport assembly 1 includes a transport frame 11, a first movable transport component 12, a second movable transport component 13, a temporary storage platform 14, and an empty crucible transport line 15. The temporary storage platform 14 and the empty crucible transport line 15 are located on the side of the tilting assembly 2 away from the material collection assembly 3. The transport frame 11 spans the tilting assembly 2, the temporary storage platform 14, and the empty crucible transport line 15. One side of the transport frame 11 forms a storage area for crucibles to be tilted. The first movable transport component 12 and the second movable transport component 13 are slidably mounted on the transport frame 11. The first movable transport component 12 can reciprocate along the transport frame 11 and has contact with the storage area for the crucibles to be tilted. The first movable transport component 12 is used to transport the crucibles to be tilted from the storage area to the temporary storage platform 14 at a first position corresponding to the area, and at a second position corresponding to the temporary storage platform 14. The second movable transport component 13 is slidably mounted on the transport frame 11 and can reciprocate along the transport frame 11, having a third position corresponding to the temporary storage platform 14, a fourth position corresponding to the tilting end, and a fifth position corresponding to the empty crucible transport line 15. The second movable transport component 13 is used to transport the crucibles to be tilted from the temporary storage platform 14 to the tilting assembly 2 for tilting and to transport the tilted crucibles to the crucible transport line 15. The purpose of this design is to effectively improve the tilting and transport efficiency of the crucibles by using the first movable transport component 12 and the second movable transport component 13 to transport the crucibles in segments.

[0035] Furthermore, the empty cask transport line 15, the temporary storage platform 14, and the cask dumping storage area are arranged sequentially along the direction of the dumping assembly 2 away from the material collection assembly 3. The purpose of this design is to minimize the overlap between the travel distance of the second moving transport component 13 and the first moving transport component 12, thereby avoiding interference between them.

[0036] Furthermore, the transport frame 11 is provided with a sliding rail 111, and the first moving transport component 12 and the second moving transport component 13 are slidably connected to the sliding rail 111 and can slide along the sliding rail 111.

[0037] Furthermore, the first mobile transport component 12 includes a first slider 121, a first lifting cylinder 122, a first double-headed cylinder 123, and a pair of first clamping plates 124. The first slider 121 is slidably connected to the sliding track 111. The first lifting cylinder 122 is fixed to the bottom of the first slider 121 and has a lifting end that can be raised or lowered. The first double-headed cylinder 123 is fixed to the lifting end of the first lifting cylinder 122. The first clamping plates 124 are fixed to the movable end of the first double-headed cylinder 123. The movable end of the first double-headed cylinder 123 extends and retracts, causing the first clamping plates 124 to move relative to or away from each other. In use, the first slider 121 moves to the first position, the movable end of the first lifting cylinder 122 extends, causing the first double-headed cylinder 123 to descend, the movable end of the first double-headed cylinder 123 retracts, causing the first clamping plate 124 to move relative to each other and clamp the sagger to be tilted, the movable end of the first lifting cylinder 122 retracts, causing the first double-headed cylinder 123 and the clamped sagger to rise; the first slider 121 moves to the second position, the movable end of the first lifting cylinder 122 extends, causing the first double-headed cylinder 123 to descend, the movable end of the first double-headed cylinder 123 extends, the first clamping plate 124 moves in opposite directions, and the clamped sagger is placed on the temporary storage platform 14, thereby the first moving transport component 12 completes a single transport task.

[0038] Furthermore, the second moving transport component 13 includes a second slider 131, a second lifting cylinder 132, a second double-headed cylinder 133, and a pair of second clamping plates 134. The second slider 131 is slidably connected to the sliding track 111. The second lifting cylinder 132 is fixed to the bottom of the second slider 131 and has a lifting end that can be raised or lowered. The second double-headed cylinder 133 is fixed to the lifting end of the second lifting cylinder 132. The second clamping plates 134 are fixed to the movable end of the second double-headed cylinder 133. The movable end of the second double-headed cylinder 133 extends and retracts, causing the second clamping plates 134 to move relative to or away from each other. In use, when the second slider 131 moves to the third position, the movable end of the second lifting cylinder 132 extends, causing the second double-headed cylinder 133 to descend. The movable end of the second double-headed cylinder 133 retracts, causing the second clamping plate 134 to move relative to it, gripping the crucible to be tilted on the temporary storage platform 14. The movable end of the second lifting cylinder 132 retracts, causing the second double-headed cylinder 133 and the gripped crucible to rise. When the second slider 131 moves to the fourth position, the movable end of the second lifting cylinder 132 extends, causing the second double-headed cylinder 133 to descend. The movable end of the second double-headed cylinder 133 extends, causing the second clamping plate 134 to move in opposite directions. The gripped crucible is then placed on the tilting assembly 2. The movable end of the second lifting cylinder 132 retracts, causing the... The second double-headed cylinder 133 rises; the tilting assembly 2 tilts the sagger, and after tilting is completed, the movable end of the second lifting cylinder 132 extends, causing the second double-headed cylinder 133 to descend. The movable end of the second double-headed cylinder 133 retracts, clamping the tilted sagger. The movable end of the second lifting cylinder 132 retracts, causing the second double-headed cylinder 133 and the clamped sagger to rise. The second slider 131 moves to the fifth position. The movable end of the second lifting cylinder 132 extends, causing the second double-headed cylinder 133 and the clamped sagger to descend. The movable end of the second double-headed cylinder 133 extends, and the second clamping plate 134 moves in opposite directions. The clamped sagger is then placed on the empty sagger transport line 15. Thus, the second moving transport component 13 completes a single transport task.

[0039] Furthermore, the empty crucible transport line 15 is a conventional material transport line used to transport the empty crucibles that have been dumped to the loading area.

[0040] Specifically, the tilting assembly 2 includes a support platform 21, a tilting component 22, and a clamping component 23. The tilting component 22 is fixed to the support platform 21 and has a tilting part that can be tilted relative to the support platform 21. The clamping component 23 is fixed to the tilting part and is used to fix the sagger to be tilted. During tilting, the clamping component 23 fixes the sagger to be tilted, and the tilting component 22 drives the clamping component 23 and the sagger to tilt and connect with the material collection assembly 3, so that the material in the sagger is poured into the material collection assembly 3, thereby realizing the tilting of the material.

[0041] Furthermore, the flipping component 22 includes a low-speed rotating motor 221, a rotating shaft 222, and a fixing plate. The low-speed rotating motor 221 is fixed on the support platform 21, the rotating shaft 222 is fixed to the rotating end of the low-speed rotating motor 221, the fixing plate is fixed to the rotating shaft 222 and extends in a direction perpendicular to the rotating shaft 222, and the clamping component 23 is fixed on the fixing plate. In use, the low-speed rotating motor 221 drives the rotating shaft 222 to rotate, thereby causing the fixing plate and the clamping component 23 to flip.

[0042] Furthermore, the clamping component 23 includes a clamping double-headed cylinder 231 and a pair of flipping fixed clamping plates 232. The clamping double-headed cylinder 231 is fixed on the fixed plate, and the flipping fixed clamping plates 232 are fixed to the movable end of the clamping double-headed cylinder 231. The movable end of the clamping double-headed cylinder 231 extends and retracts to drive the pair of flipping fixed clamping plates 232 to move relative to or away from each other in order to clamp or release the crucible.

[0043] Specifically, the material collection component 3 includes a material collection hopper 31 and a material recovery pipe 32. The material collection hopper 31 is fixed to one side of the tilting component 2. The top of the material collection hopper 31 has a feed inlet that corresponds to the flipping end of the tilting component 2. When the tilting component 2 is flipped, the material collection hopper 31 can receive the tilted material. The material recovery pipe 32 is connected to the bottom of the material collection hopper 31 and is used to guide the material collected by the material collection hopper 31 to the subsequent work station.

[0044] Specifically, the dust recovery assembly 4 includes a baffle 41 and a negative pressure component 42. The baffle 41 is fixed to the top of the material collection hopper 31 and surrounds the side of the feed inlet away from the pouring assembly 2. The negative pressure component 42 is connected to the baffle 41 and is used to generate negative pressure to collect the dust generated at the feed inlet through the baffle 41.

[0045] Furthermore, the other end of the negative pressure component 42 is connected to the material recovery pipe 32. The negative pressure component 42 collects dust and sends it into the material recovery pipe 32 to mix with the material, which facilitates subsequent collection and processing.

[0046] Furthermore, the negative pressure component 42 includes a negative pressure pipe 421 and a negative pressure fan 422. One end of the negative pressure pipe 421 is fixedly connected to the baffle 41, and the other end is fixedly connected to the material recovery pipe 32. The negative pressure fan 422 is fixed on the negative pressure pipe 421 and is used to generate negative pressure in the negative pressure pipe 421.

[0047] The beneficial effects of this utility model are:

[0048] This utility model includes a sagger transport assembly, a tilting assembly, a material collection assembly, and a dust recovery assembly. The tilting assembly has a tilting end that can be flipped. The material collection assembly is disposed on one side of the tilting assembly and corresponds to and matches the tilting end, serving to receive the material poured out when the tilting end is tilted. The dust recovery assembly is fixed to the material collection assembly and serves to collect the dust generated when the tilting end is tilted. The sagger transport assembly has a transport end that can move relative to the tilting assembly, and the transport end is used to place the sagger to be tilted onto the tilting end. This utility model includes a dust recovery assembly, which is fixed to the material collection assembly. This dust recovery assembly can recover the dust generated when the tilting end tilts to pour out material, thus avoiding material waste and preventing dust from flying everywhere, reducing pollution to the production environment.

[0049] The above are merely preferred embodiments of this utility model, but the scope of protection of this utility model is not limited thereto. Any variations or substitutions that can be easily conceived by those skilled in the art within the technical scope disclosed in this utility model should be included within the scope of protection of this utility model.

Claims

1. A sagger tilting device, characterized in that, include: The tilting assembly has a tilting end that can be flipped over; A material collection component is disposed on one side of the tilting component and corresponds to and matches the tilting end, for receiving the material poured out when the tilting end is tilted. A dust recovery assembly is fixed on the material collection assembly and is used to collect the dust generated when the tilting end is overturned. as well as A sagger transport assembly has a transport end movable relative to the tilting assembly, the transport end being used to place a sagger to be tilted onto the tilting end.

2. The sagger dumping apparatus of claim 1 wherein, The material collection assembly includes a material collection hopper and a material recovery pipe. The material collection hopper is fixed to one side of the tilting assembly. The top of the material collection hopper has a feed inlet that corresponds to the flipping end of the tilting assembly. The material recovery pipe is connected to the bottom of the material collection hopper.

3. The sagger dumping apparatus of claim 2 wherein, The dust recovery assembly includes a baffle and a negative pressure component. The baffle is fixed to the top of the material collection hopper and surrounds the side of the feed inlet away from the pouring assembly. The negative pressure component is connected to the baffle and is used to generate negative pressure.

4. The sagger dumping apparatus of claim 3 wherein, The other end of the negative pressure component is connected to the material recovery pipe.

5. The sagger dumping apparatus of claim 4 wherein, The negative pressure component includes a negative pressure pipe and a negative pressure fan. One end of the negative pressure pipe is fixedly connected to the baffle cover, and the other end is fixedly connected to the material recovery pipe.

6. The sagger dumping apparatus of claim 1 wherein, The crucible transport assembly includes a transport frame, a first movable transport component, a second movable transport component, a temporary storage platform, and an empty crucible transport line. The temporary storage platform and the empty crucible transport line are located on the side of the tilting assembly away from the material collection assembly. The transport frame spans the tilting assembly, the temporary storage platform, and the empty crucible transport line. One side of the transport frame forms a storage area for crucibles to be tilted. The first movable transport component and the second movable transport component are slidably mounted on the transport frame. The first movable transport component can reciprocate along the transport frame and has a first position corresponding to the storage area for crucibles to be tilted. The first movable transport member is used to transport the crucible to be poured from the storage area of ​​the crucible to be poured to the temporary storage platform. The second movable transport member is slidably disposed on the transport frame. The second movable transport member can reciprocate along the transport frame and has a third position corresponding to the temporary storage platform, a fourth position corresponding to the pouring end, and a fifth position corresponding to the empty crucible transport line. The second movable transport member is used to transport the crucible to be poured from the temporary storage platform to the pouring assembly for pouring and to transport the poured crucible to the crucible transport line.

7. The sagger dumping apparatus of claim 6 wherein, The empty cask transport line, the temporary storage platform, and the cask dumping storage area are arranged sequentially along the direction away from the material collection component from the dumping component.

8. The sagger dumping apparatus of claim 6 wherein, The first mobile transport component includes a first slider, a first lifting cylinder, a first double-headed cylinder, and a pair of first clamping plates. The first slider is slidably connected to the transport frame. The first lifting cylinder is fixed to the bottom of the first slider and has a lifting end that can be raised or lowered. The first double-headed cylinder is fixed to the lifting end of the first lifting cylinder. The first clamping plate is fixed to the movable end of the first double-headed cylinder. The movable end of the first double-headed cylinder extends and retracts, causing the first clamping plate to move relative to or away from each other.

9. The sagger dumping apparatus of claim 6 wherein, The second moving transport component includes a second slider, a second lifting cylinder, a second double-headed cylinder, and a pair of second clamping plates. The second slider is slidably connected to the transport frame. The second lifting cylinder is fixed to the bottom of the second slider and has a lifting end that can be raised or lowered. The second double-headed cylinder is fixed to the lifting end of the second lifting cylinder. The second clamping plate is fixed to the movable end of the second double-headed cylinder. The movable end of the second double-headed cylinder extends and retracts, causing the second clamping plate to move relative to or away from each other.

10. The sagger dumping apparatus of claim 1 wherein, The tilting assembly includes a support platform, a tilting component, and a clamping component. The tilting component is fixed to the support platform and has a tilting part that can be tilted relative to the support platform. The clamping component is fixed to the tilting part and is used to fix the sagger to be tilted.

Citation Information

Patent Citations

  • Device with automation replaces new and old casket -like bowl and function is emptyd to casket -like bowl

    CN207702999U