A processing device
By designing automated processing equipment for feeding, impregnation and packaging devices, the problem of multi-process connection in electrolytic capacitor production is solved, efficient production without manual operation is achieved, product quality is improved and cost is reduced.
Patent Information
- Application Number
- CN202010779543.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2020-08-05
- Publication Date
- 2025-07-04
- Estimated Expiration
- 2040-08-05
AI Technical Summary
In the prior art, the processing equipment of electrolytic capacitors cannot connect multiple processing processes, resulting in the product being easily damaged during manual operation and increasing the cost of manual production.
A processing equipment including a feeding device, an immersion device and a packaging device is designed, and multiple process flows are carried out through the machine's automated connection to avoid manual operations, and specifically includes a feeding device for outputting particles that meet the impregnation treatment conditions, an immersion device for impregnation treatment, a packaging device for packaging combination, and a plurality of devices are arranged on the rack to work together.
It realizes automated production without manual operation, avoids product collision damage, improves product quality and reduces manual production costs.
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Figure CN111785540B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of mechanical equipment, and particularly to a processing device. Background Art
[0002] Currently, the production of high-quality electrolytic capacitors requires processing techniques such as impregnation, assembly, and encapsulation. In the prior art, there is no suitable processing device for electrolytic capacitors that can complete multiple processing techniques simultaneously. The separate devices are not connected during the production of electrolytic capacitors. Currently, materials enter and exit one device and are manually transferred to another device. This can cause collision damage to the products due to manual operation during the production process, reducing the product quality and increasing the labor production cost. Summary of the Invention
[0003] Based on this, it is necessary to provide a processing device to solve the technical problems in the prior art, such as collision damage to products due to the inability to connect multiple processing techniques simultaneously, reduction of product quality, and increase of labor production cost.
[0004] A processing device includes:
[0005] A feeding device for successively outputting elements meeting the impregnation treatment conditions;
[0006] An impregnation device for impregnating the elements output by the feeding device;
[0007] An encapsulation device for encapsulating and combining the elements output by the impregnation device with a sealing body and a housing to obtain a product; and
[0008] A frame, on which the feeding device, the impregnation device, and the encapsulation device are all arranged.
[0009] Further, the feeding device includes a first adjustment mechanism and a feeding mechanism. The first adjustment mechanism is used to perform physical treatment on the elements to make the elements meet the impregnation treatment conditions, and the feeding mechanism is used to successively output the elements meeting the impregnation treatment conditions output by the first adjustment mechanism.
[0010] Further, the first adjustment mechanism includes a first temperature regulator and a first humidity regulator. The first temperature regulator is used to adjust the temperature of the elements to adjust the ambient temperature of the placement space of the elements to a preset temperature, and the first humidity regulator is used to adjust the ambient humidity of the placement space of the elements to adjust the ambient humidity of the placement space of the elements to a preset humidity, so as to make the elements meet the impregnation treatment conditions.
[0011] Further, the feeding mechanism includes a support frame and a first manipulator. The support frame is used to place a plurality of the elements that meet the impregnation treatment conditions, and the first manipulator is used to sequentially remove the elements that meet the impregnation treatment conditions from the support frame and transfer them to the impregnation device.
[0012] Further, the impregnation device includes a second adjustment mechanism and an impregnation mechanism. The second adjustment mechanism is used to perform physical treatment on the elements output by the feeding device so that the elements output by the feeding device maintain the conditions meeting the impregnation treatment, and the impregnation mechanism is used to perform impregnation treatment on the elements that meet the impregnation treatment conditions output by the second adjustment mechanism.
[0013] Further, the impregnation mechanism has a reaction chamber, and the reaction chamber is used for the elements that meet the impregnation treatment conditions and the electrolyte accommodated therein to carry out a chemical reaction under a negative pressure condition to achieve the impregnation treatment of the elements.
[0014] Further, the impregnation device includes a fixing jig and a rotating disk. At least three workstations are spaced on the outer periphery of the rotating disk. The fixing jig, the second adjustment mechanism and the impregnation mechanism are respectively arranged at the corresponding one of the workstations of the rotating disk, and the fixing jig is connected to the rotating disk. The second adjustment mechanism and the impregnation mechanism are located outside or above the rotating disk. The fixing jig is used to fix the elements, and the rotating disk can rotate around its own rotation center line to drive the fixing jig to switch between the workstations, so as to make the fixing jig approach or move away from the second adjustment mechanism and the impregnation mechanism.
[0015] Further, the encapsulation device includes a housing, a first operation component and a second operation component. A cavity is formed in the housing, and the housing has a first open end and a second open end opposite to the first open end;
[0016] The first operation component is used to fix the element and the sealing body output by the impregnation device, and the second operation component is used to fix the outer shell. The first operation component can be connected to the first open end, and the second operation component can be connected to the second open end, so that the first operation component and the second operation component respectively seal the corresponding openings of the first open end and the second open end to seal the cavity, and the element, the sealing body and the outer shell can be accommodated in the cavity;
[0017] By pumping out the air in the cavity to make the cavity in a negative pressure state, the first operation component can move in a direction close to the second operation component, so that the element and the sealing body are encapsulated with the sealing body and the outer shell into one body under the negative pressure state to obtain a product.
[0018] Furthermore, the processing equipment further includes a beam body device, which is arranged on the frame. The beam body device is used to reduce the diameter of the product to obtain a beamed product.
[0019] Furthermore, the beam body device includes a beam mold mechanism and a clamping mechanism. The beam mold mechanism is a flexible structure and is used to accommodate the product. The clamping mechanism is used to clamp the beam mold mechanism to cause elastic deformation of the beam mold mechanism, and then the product is elastically tightened by the elastically deformed beam mold mechanism to reduce the diameter of the product.
[0020] As can be seen from the above embodiments, a processing equipment includes a feeding device, an impregnating device, a packaging device and a frame. The feeding device is used to output one by one the elements that meet the impregnating treatment conditions. The impregnating device is used to perform impregnating treatment on the elements output by the feeding device. The packaging device is used to package and combine the elements output by the impregnating device with a sealing body and a housing to obtain a product. Through the mutual cooperation of the feeding device, the impregnating device, the packaging device and the frame, multiple processing processes are connected in series. The elements pass through the feeding device, the impregnating device and the packaging device, and all are operated by machines without manual operation, thus avoiding collision damage to the product caused by manual operation, improving the quality of the product, and reducing the labor production cost. BRIEF DESCRIPTION OF THE DRAWINGS
[0021] In order to more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the following will briefly introduce the drawings required for the description of the embodiments or the prior art. Obviously, the following drawings are only some embodiments of the present invention. For those of ordinary skill in the art, other drawings can be obtained based on the structures shown in these drawings without creative efforts.
[0022] Figure 1 It is a schematic structural diagram of a processing equipment in an embodiment of the present invention;
[0023] Figure 2 It is a schematic structural diagram of the feeding device in an embodiment of the present invention;
[0024] Figure 3 It is a schematic structural diagram of the first adjustment mechanism in an embodiment of the present invention;
[0025] Figure 4 It is a schematic structural diagram of the feeding mechanism in an embodiment of the present invention;
[0026] Figure 5 It is a schematic structural diagram of the second adjustment mechanism in an embodiment of the present invention;
[0027] Figure 6This is a schematic structural diagram of the encapsulation device in the embodiments of the present invention.
[0028] Main components
[0029] 100, Feeding device; 110, First adjusting mechanism; 120, Feeding mechanism; 111, First temperature regulator; 112, First humidity regulator; 120, Feeding mechanism; 121, Support frame; 122, First manipulator; 130, First checker; 200, Impregnation device; 210, Second adjusting mechanism; 211, Second temperature regulator; 212, Second humidity regulator; 220, Impregnation mechanism; 230, Fixing jig; 240, Rotary disk; 250, Second manipulator; 300, Encapsulation device; 310, Housing; 320, First operation component; 330, Second operation component; 400, Frame; 500, Bunching device; 510, Bunching die mechanism; 520, Clamping mechanism; 530, Positioning mechanism; 540, Third manipulator; 600, Second checker; 700, Control device.
[0030] The realization, functional features and advantages of the object of the present invention will be further described with reference to the embodiments and the accompanying drawings. Specific embodiments
[0031] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described with reference to the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.
[0032] It should be noted that all directional indications (such as up, down, left, right, front, back...) in the embodiments of the present invention are only used to explain the relative positional relationship and movement conditions between components in a specific posture (as shown in the drawings). If the specific posture changes, the directional indications will also change accordingly.
[0033] In addition, the descriptions involving "first", "second", etc. in the present invention are only for descriptive purposes and should not be construed as indicating or implying their relative importance or implicitly specifying the quantity of the indicated technical features. Thus, the features defined with "first" and "second" may explicitly or implicitly include at least one of such features. In addition, "and / or" throughout the text includes three scenarios. Taking A and / or B as an example, it includes the technical solution of A, the technical solution of B, and the technical solution where both A and B are satisfied simultaneously. In addition, the technical solutions between various embodiments can be combined with each other, but it must be based on the ability of those of ordinary skill in the art to implement. When the combination of technical solutions results in contradictions or inability to implement, it should be considered that such a combination of technical solutions does not exist and is not within the scope of protection required by the present invention.
[0034] Please refer to Figures 1 to 6 , in one embodiment, a processing device includes a feeding device 100, an impregnating device 200, a packaging device 300, and a frame 400. The feeding device 100 is used to output one by one the elements that meet the impregnating treatment conditions. The impregnating device 200 is used to perform impregnating treatment on the elements output by the feeding device 100. The packaging device 300 is used to package and combine the elements output by the impregnating device 200 with a sealing body and a housing to obtain a product. The feeding device 100, the impregnating device 200, and the packaging device 300 are all arranged on the frame 400. Through the mutual cooperation of the feeding device 100, the impregnating device 200, the packaging device 300, and the frame 400, multiple processing processes are connected in series. The elements pass through the feeding device 100, the impregnating device 200, and the packaging device 300, and all are operated by machines without manual operation, thereby avoiding collision damage to the product caused by manual operation, improving the quality of the product, and reducing the labor production cost.
[0035] In some embodiments, the feeding device 100 includes a first adjusting mechanism 110 and a feeding mechanism 120. The first adjusting mechanism 110 is used to perform physical treatment on the elements to make the elements meet the impregnating treatment conditions. The feeding mechanism 120 is used to output one by one the elements that meet the impregnating treatment conditions output by the first adjusting mechanism 110. The first adjusting mechanism 110 performs physical treatment on the elements and can adjust physical properties such as the ambient temperature of the placement space of the elements, the ambient humidity of the placement space, and the conductivity. The first adjusting mechanism 110 includes a first temperature regulator 111 and a first humidity regulator 112. The first temperature regulator 111 is used to adjust the ambient temperature of the placement space of the elements to adjust the ambient temperature of the placement space of the elements to a preset temperature. The first humidity regulator 112 is used to adjust the ambient humidity of the placement space of the elements to adjust the ambient humidity of the placement space of the elements to a preset humidity, thereby making the elements meet the impregnating treatment conditions.
[0036] Specifically, the element is transported from the previous working position of the rack 400 to the working position where the first temperature regulator 111 is located. The first temperature regulator 111 adjusts the ambient temperature of the placement space of the element to adjust the ambient temperature of the placement space of the element to a preset temperature. The preset temperature can be from 0°C to 200°C. The first temperature regulator 111 can be a heater. The element is transported from the working position where the first temperature regulator 111 is located to the working position where the first humidity regulator 112 is located by the first manipulator 122. The first humidity regulator 112 adjusts the ambient humidity of the placement space of the element to adjust the ambient humidity of the placement space of the element to a preset humidity. The element in the placement space environment with the preset humidity can be in a dry state. The first humidity regulator 112 can be a dryer.
[0037] Further, the feeding mechanism 120 includes a support frame 121 and a first manipulator 122. The support frame 121 is used to place a plurality of elements that meet the impregnation treatment conditions. The first manipulator 122 is used to remove the elements that meet the impregnation treatment conditions from the support frame 121 one by one and transfer them to the impregnation device 200. The support frame 121 is moved by the first manipulator 122 to move the elements that meet the impregnation treatment conditions.
[0038] Furthermore, a tape is provided on the element, and the element is fixed to the support frame 121 through the tape. The elements are in a stacked state on the support frame 121. The first manipulator 122 is used to remove the elements connected with the tape from the support frame 121 one by one. After the removal operation is completed, the support frame 121 is recycled by the first manipulator 122. The feeding mechanism 120 further includes a cutter, and the cutter is used to cut the element connected with the tape to separate the element from the tape. The first manipulator 122 is also used to transfer the cut tape to the tape recycling area to realize the recycling and utilization of the cut tape. In one embodiment, the first manipulator 122 is also used to transfer the element without the tape to the impregnation device 200. Specifically, one end of the tape is welded to the element, and the other end of the tape is welded to the support frame 121. The tape can be an iron sheet or an iron bar.
[0039] In some embodiments, the feeding device 100 further includes a first inspector 130. The first inspector 130 is used to check whether the appearance of the element is qualified. Specifically, the unqualified elements are removed to the recycling area by the first manipulator 122, and the qualified elements are transferred to the impregnation device 200 by the first manipulator 122. Specifically, the first inspector 130 can be a CCD detector, and the CCD detector is an instrument that detects the appearance of an object through a CCD component and a display.
[0040] In some embodiments, the impregnation device 200 includes a second adjustment mechanism 210 and an impregnation mechanism 220. The second adjustment mechanism 210 is used to physically process the elements output by the feeding device 100 so that the elements output by the feeding device 100 maintain the conditions for impregnation processing. The impregnation mechanism 220 is used to perform impregnation processing on the elements that meet the impregnation processing conditions output by the second adjustment mechanism 210. During the process of transporting the elements physically processed by the first adjustment mechanism 110 to the impregnation mechanism 220, the elements are exposed to the air for a long time, which may cause changes in the physical properties of the elements, thus not meeting the conditions for impregnation processing. For example, the ambient temperature of the placement space of the elements does not reach the preset temperature or the ambient humidity of the placement space of the elements does not reach the preset humidity, thus not meeting the conditions for impregnation processing. The second adjustment mechanism 210 physically processes the elements output by the first manipulator 122 so that the elements output by the first manipulator maintain the conditions for impregnation processing.
[0041] The second adjustment mechanism 210 includes a second temperature regulator 211 and a second temperature regulator 212. The second temperature regulator 211 is used to adjust the ambient temperature of the placement space of the elements to adjust the ambient temperature of the placement space of the elements to the preset temperature. The second temperature regulator 212 is used to adjust the ambient humidity of the placement space of the elements to adjust the ambient humidity of the placement space of the elements to the preset humidity, so as to make the elements output by the feeding device 100 meet the conditions for impregnation processing.
[0042] Specifically, when the element is at the station where the second temperature regulator 211 is located, the second temperature regulator 211 adjusts the ambient temperature of the placement space of the element to adjust the ambient temperature of the placement space of the element to the preset temperature, so that the element can maintain the conditions for impregnation processing. The second temperature regulator 211 can be a heater. The element is transported from the station where the second temperature regulator 211 is located to the station where the second temperature regulator 212 is located by the second manipulator 250. The second humidity regulator 212 adjusts the ambient humidity of the placement space of the element to adjust the ambient humidity of the placement space of the element to the preset humidity, so that the element can maintain the conditions for impregnation processing. The element in the placement space environment with the preset humidity can be in a dry state, and the second temperature regulator 212 can be a dryer.
[0043] Specifically, the impregnation mechanism 220 has a reaction chamber, and the reaction chamber is used for the chemical reaction of the received elements that meet the impregnation processing conditions and the electrolyte under negative pressure conditions to achieve the impregnation processing of the elements.
[0044] More specifically, after the element is processed by the second temperature regulator 211 and the second temperature regulator 212, the element that meets the impregnation conditions and the electrolyte are accommodated in the reaction chamber, and the reaction chamber is sealed. The reaction chamber is evacuated to a negative pressure state. In the negative pressure state, the electrolyte can penetrate the element faster. The element undergoes a chemical reaction under the action of the electrolyte to generate substances such as aluminum trioxide, so that the element has the chemical properties of an electrolytic capacitor, thereby completing the impregnation process of the element. Further, the second manipulator 250 transports the element from the reaction chamber to the encapsulation device 300.
[0045] In some embodiments, the impregnation device 200 includes a fixing jig 230 and a rotating disk 240. At least three stations are spaced apart on the outer periphery of the rotating disk 240. The fixing jig 230, the second adjustment mechanism 210, and the impregnation mechanism 220 are respectively disposed at a corresponding station of the rotating disk 240. The fixing jig 230 is connected to the rotating disk 240. The second adjustment mechanism 210 and the impregnation mechanism 220 are located outside or above the rotating disk 240. The fixing jig 230 is used to fix the element. The rotating disk 240 can rotate around its own rotation center line to drive the fixing jig 230 to switch between each station, so as to make the fixing jig 230 approach or move away from the second adjustment mechanism 210 and the impregnation mechanism 220.
[0046] Specifically, the rotating disk 240 can have more than four stations to enable the fixing jig 230 to switch between different stations. By rotating the rotating disk 240 to sequentially switch each station, the second temperature regulator 211, the second temperature regulator 212, and the impregnation mechanism 220 can simultaneously process the element, which can greatly improve the efficiency of the impregnation process.
[0047] More specifically, the rotating disk 240 has four stations, namely the first station, the second station, the third station, and the fourth station. The fixed fixture 230 includes a first fixed fixture, a second fixed fixture, a third fixed fixture, and a fourth fixed fixture. When the rotating disk 240 is at the first station, the first fixed fixture, the second fixed fixture, the third fixed fixture, and the fourth fixed fixture are all filled with blank elements. When the rotating disk 240 is at the second station, the first fixed fixture is at the second temperature regulator 211. When the rotating disk 240 is at the second station, the first fixed fixture is at the second temperature regulator 212, and the second fixed fixture is at the second temperature regulator 211. When the rotating disk 240 is at the third station, the first fixed fixture is at the impregnation mechanism 220, the second fixed fixture is at the second temperature regulator 212, and the third fixed fixture is at the second temperature regulator 211. When the rotating disk 240 is at the fourth station, the first fixed fixture releases the blank element, and the second manipulator 250 transports the blank element to the encapsulation device 300. The second fixed fixture is at the impregnation mechanism 220, the third fixed fixture is at the second temperature regulator 212, and the fourth fixed fixture is at the second temperature regulator 211.
[0048] In some embodiments, the encapsulation device 300 includes a housing 310, a first operation component 320, and a second operation component 330. A cavity is formed inside the housing 310. The housing 310 has a first open end and a second open end opposite to the first open end. The first operation component 320 is used to fix the blank element and the sealing body, and the second operation component 330 is used to fix the outer shell. The outer shell is a hollow structure and has an opening at one end. The first operation component 320 can be connected to the first open end, and the second operation component 330 can be connected to the second open end, so that the first operation component 320 and the second operation component 330 respectively seal the openings corresponding to the first open end and the second open end to seal the cavity, and the blank element, the sealing body, and the outer shell can be received in the cavity. By evacuating the air in the cavity to make the cavity in a negative pressure state, the first operation component 320 can move towards the direction close to the second operation component 330, so that the blank element, the sealing body, and the outer shell are encapsulated together under the negative pressure state to obtain a product.
[0049] In some embodiments, a processing device further includes a beam body device 500. The beam body device 500 is arranged on the frame 400. The beam body device 500 is used to reduce the diameter of the product, so that the product is more firmly sealed to obtain a beam-bodied product. Specifically, the beam body device 500 includes a beam die mechanism 510 and a clamping mechanism 520. The beam die mechanism 510 is a flexible structure. The beam die mechanism 510 is used to receive the product. The clamping mechanism 520 is used to clamp the beam die mechanism 510 to make the beam die mechanism 510 undergo elastic deformation. The beam die mechanism 510 that has undergone elastic deformation compresses the product to reduce the diameter of the product, thereby obtaining a beam-bodied product.
[0050] More specifically, the beam body device 500 further includes a positioning mechanism 530 and a third manipulator 540. The third manipulator 540 is used to convey the product from the station where the housing 310 is located to the station where the positioning mechanism 530 is located. The positioning mechanism 530 is used to fix the position of the element relative to the sealing body and the outer shell. The third manipulator 540 places the product into the beam die mechanism 510, and the clamping mechanism 520 clamps the beam die mechanism 510 to cause elastic deformation of the beam die mechanism 510. The beam die mechanism 510 with elastic deformation compresses the product to reduce the diameter of the product, that is, to reduce the diameters of the sealing body and the outer shell, so as to obtain the product after beam bodying, making the product more firmly sealed.
[0051] In some embodiments, a processing device further includes a second inspector 600. The second inspector 600 is disposed on the frame 400, and the second inspector 600 is used to check whether the appearance and performance of the product after beam bodying are qualified. Specifically, a plurality of second inspectors 600 may be provided, and the plurality of second inspectors 600 inspect the product from different angles. The defective products are removed by the third manipulator 540 for recycling. The qualified products are placed in the finished product area by the third manipulator 540. Specifically, the second inspector 600 may be an ESR (Equivalent Series Resistance) checker, or the second inspector 600 may be a combination of an ESR checker and a CCD detector.
[0052] In another embodiment, a processing device further includes a control device 700. The control device 700 is disposed on the frame 400. The control device 700 is respectively connected to each device of the processing device. Specifically, the control device 700 is respectively communicatively connected to each device of the processing device. The control device 700 collects the production data related to each device of the processing device into a database, and manages the operation situation by analyzing the production data, so as to produce higher-quality electrolytic capacitors. For example, the determination criteria or abnormal alarms of the first inspector 130 and the second inspector 600 for defective products or qualified products. The control device 700 may be a MES (Manufacturing Execution System), which is a set of production information management system for the workshop execution layer of manufacturing enterprises.
[0053] The above are only the preferred embodiments of the present invention, and do not limit the patent scope of the present invention accordingly. Any equivalent structural transformation made under the inventive concept of the present invention by using the content of the specification and drawings of the present invention, or directly / indirectly applied in other related technical fields, is included in the patent protection scope of the present invention.
Claims
1. A processing device, characterized in that, Including: A feeding device for outputting elements that meet the impregnation treatment conditions one by one; the feeding device includes a first inspector for inspecting whether the appearance of the elements is qualified; the feeding device includes a first adjusting mechanism and a feeding mechanism, the first adjusting mechanism is used to perform physical treatment on the elements so that the elements meet the impregnation treatment conditions, and the feeding mechanism is used to output one by one the elements that meet the impregnation treatment conditions output by the first adjusting mechanism; the first adjusting mechanism includes a first temperature regulator and a first humidity regulator, the first temperature regulator is used to adjust the ambient temperature of the placement space of the elements to adjust the ambient temperature of the placement space of the elements to a preset temperature, and the first humidity regulator is used to adjust the ambient humidity of the placement space of the elements to adjust the ambient humidity of the placement space of the elements to a preset humidity, so as to make the elements meet the impregnation treatment conditions; An impregnation device for performing impregnation treatment on the elements output by the feeding device; the impregnation device includes a second adjusting mechanism and an impregnation mechanism, the second adjusting mechanism is used to perform physical treatment on the elements output by the feeding device so that the elements output by the feeding device maintain the conditions for impregnation treatment, and the impregnation mechanism is used to perform impregnation treatment on the elements that meet the impregnation treatment conditions output by the second adjusting mechanism; the second adjusting mechanism includes a second temperature regulator and a second humidity regulator, the second temperature regulator is used to adjust the ambient temperature of the placement space of the elements to adjust the ambient temperature of the placement space of the elements to a preset temperature, and the second humidity regulator is used to adjust the ambient humidity of the placement space of the elements to adjust the ambient humidity of the placement space of the elements to a preset humidity, so that the elements can maintain the conditions for impregnation treatment; A packaging device for packaging and combining the elements output by the impregnation device with a sealing body and a housing to obtain a product; And A frame, on which the feeding device, the impregnation device and the packaging device are all arranged.
2. The processing device according to claim 1, characterized in that, The feeding mechanism includes a support frame and a first manipulator, the support frame is used to place a plurality of elements that meet the impregnation treatment conditions, and the first manipulator is used to move the elements that meet the impregnation treatment conditions out of the support frame one by one and transfer them to the impregnation device.
3. The processing device according to claim 1, characterized in that, The impregnation mechanism has a reaction chamber, and the reaction chamber is used for the elements that meet the impregnation treatment conditions and the electrolyte received therein to carry out a chemical reaction under negative pressure conditions to achieve the impregnation treatment of the elements.
4. The processing equipment according to claim 1, characterized in that, The impregnation device includes a fixing fixture and a rotating disk. At least three workstations are arranged at intervals on the outer periphery of the rotating disk. The fixing fixture, the second adjusting mechanism, and the impregnation mechanism are respectively disposed at a corresponding one of the workstations of the rotating disk. The fixing fixture is connected to the rotating disk. The second adjusting mechanism and the impregnation mechanism are located outside or above the rotating disk. The fixing fixture is used to fix the element. The rotating disk can rotate around its own rotation center line to drive the fixing fixture to switch between the workstations, so that the fixing fixture approaches or moves away from the second adjusting mechanism and the impregnation mechanism.
5. The processing device according to claim 1, characterized in that, The encapsulation device includes a housing, a first operation component, and a second operation component. A cavity is formed in the housing. The housing has a first opening end and a second opening end opposite to the first opening end. The first operation component is used to fix the element and the sealing body output by the impregnation device. The second operation component is used to fix the outer shell. The first operation component can be connected to the first opening end, and the second operation component can be connected to the second opening end, so that the first operation component and the second operation component respectively seal the corresponding openings of the first opening end and the second opening end to seal the cavity. The element, the sealing body, and the outer shell can be received in the cavity. By evacuating the air in the cavity to make the cavity in a negative pressure state, the first operation component can move in a direction close to the second operation component, so that the element and the sealing body are encapsulated with the sealing body and the outer shell in a negative pressure state to obtain a product.
6. The processing equipment according to claim 1, characterized in that, The processing equipment further includes a beam body device. The beam body device is arranged on the frame. The beam body device is used to reduce the diameter of the product to obtain a beam-shaped product.
7. The processing equipment according to claim 6, characterized in that The beam body device includes a beam die mechanism and a clamping mechanism. The beam die mechanism is a flexible structure. The beam die mechanism is used to receive the product. The clamping mechanism is used to clamp the beam die mechanism to make the beam die mechanism elastically deformed. Then, the elastically deformed beam die mechanism elastically compresses the product to reduce the diameter of the product.
Citation Information
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