A power supply shell packaging device for mobile power supply production
By designing a power supply casing packaging device for mobile power bank production, the simultaneous application of adhesive and packaging, as well as withstand voltage testing, was achieved. This solved the problems of step-by-step processing and subsequent testing in existing technologies, and improved production efficiency and installation accuracy.
Patent Information
- Application Number
- CN202311555591.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-11-21
- Publication Date
- 2025-12-26
- Estimated Expiration
- 2043-11-21
AI Technical Summary
Existing mobile power bank casing mounting devices cannot perform adhesive application and encapsulation simultaneously, requiring separate processing steps. Furthermore, after encapsulation, the casing needs to be transported before pressure testing can be conducted.
A power supply housing packaging device for mobile power bank production was designed, including components such as chassis, limit rod, crossbeam, lifting rod, base, and limit plate. The device achieves simultaneous adhesive spraying and packaging through nozzles and material storage chambers, and performs a pressure resistance test after packaging is completed.
It enables simultaneous application of adhesive and encapsulation, ensuring stable installation of the housing, and automatically performs pressure resistance testing after encapsulation, thereby improving production efficiency and installation accuracy.
Smart Images

Figure CN117484887B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of mobile power supply production, in particular to a power supply shell packaging device for mobile power supply production. BACKGROUND
[0002] Mobile power supply is a portable charger that can be carried by individuals, stores electrical energy, and mainly charges handheld mobile devices and other consumer electronic products (such as wireless phones and notebook computers), especially in places without external power supply. Its main components include: a battery for storing electrical energy, a circuit for stabilizing the output voltage (DC-DC converter), and an external shell for protecting internal components.
[0003] The existing mobile power supply shell mounting device is difficult to synchronize the gluing and packaging when packaging the power supply shell, and needs to be processed in steps. After packaging, the mobile power supply needs to be transported for pressure testing.
[0004] Therefore, in view of the above, the existing structure and defects are improved, and a power supply shell packaging device for mobile power supply production is proposed. SUMMARY
[0005] The purpose of the present application is to provide a power supply shell packaging device for mobile power supply production to solve the problems raised in the background art.
[0006] To achieve the above purpose, the present application provides the following technical scheme: a power supply shell packaging device for mobile power supply production, comprising a chassis and a packaging assembly, the chassis is fixedly connected with a limiting rod at four corners, and the upper end of the limiting rod is fixedly connected with a cross beam, the lower part of the cross beam is fixedly connected with a lifting rod, and the lower end of the lifting rod is fixedly connected with a base, the outer periphery of the base is fixedly connected with a limiting plate, and the lower surface of the limiting plate is fixedly connected with a plug-in plate, a cavity is formed in the middle of the base, the packaging assembly is arranged in the base, the middle of the limiting rod is fixedly connected with a bottom plate, and the middle of the bottom plate is provided with a material placing assembly, a material placing groove is formed in the upper surface of the chassis, and a pressing assembly is symmetrically arranged around the material placing groove, and plug-in slots are symmetrically formed in the upper surface of the chassis.
[0007] Further, the limiting plate and the limiting rod are slidingly connected, the plug-in plate penetrates the upper and lower surfaces of the bottom plate, and the plug-in plate is slidingly connected with the chassis through the plug-in slot.
[0008] Further, the packaging assembly comprises a nozzle and a storage cavity, the nozzles are symmetrically formed in the four walls of the cavity, and the storage cavity is connected above the nozzles, and the nozzles are arrayed with respect to the cavity.
[0009] Further, the packaging assembly further comprises an air cavity, a first one-way valve and a second one-way valve, the air cavity is arranged above the cavity, and the first one-way valve is symmetrically arranged around the air cavity, the second one-way valve is arranged above the air cavity, and the air cavity is communicated with the storage cavity through the first one-way valve.
[0010] Further, the packaging assembly further comprises a compression spring, a pressing plate, a backing plate, a clamping cavity and a clamping groove, the compression spring is fixedly connected symmetrically in the cavity, the lower end of the compression spring is fixedly connected with the pressing plate, the middle of the pressing plate is fixedly connected with the backing plate, the middle of the backing plate is symmetrically provided with the clamping cavity, the clamping groove is symmetrically arranged around the clamping cavity, and the pressing plate is elastically connected with the cavity through the compression spring.
[0011] Further, the packaging assembly further comprises a clamping plate, a clamping rod and a clamping block, the clamping plate is slidingly connected in the air cavity, the lower part of the clamping plate is fixedly connected with the clamping rod, the lower end of the clamping rod is fixedly connected with the clamping block, the clamping rod is slidingly connected with the backing plate through the clamping cavity, and the clamping block is slidingly connected with the backing plate through the clamping groove.
[0012] Further, the material placing assembly comprises a material placing plate and a sliding groove, the middle of the bottom plate is rotatably connected with the material placing plate, and the sliding groove is symmetrically arranged around the bottom plate, the material placing plate is a triangular prism, and four material placing plates are arranged.
[0013] Further, the material placing assembly further comprises a spring, a sliding plate, an inclined plate and a supporting plate, the spring is fixedly connected in the sliding groove, the other end of the spring is fixedly connected with the sliding plate, the upper end of the sliding plate is fixedly connected with the inclined plate, and the lower end of the sliding plate is fixedly connected with the supporting plate, the sliding plate is elastically connected with the sliding groove through the spring, and the sliding plate is slidingly connected with the bottom plate through the sliding groove.
[0014] Further, the pressure applying assembly comprises a sliding cavity and a tension spring, the sliding cavity is symmetrically arranged around the material placing groove, and the tension spring is fixedly connected in the sliding cavity, and four sliding cavities are arranged.
[0015] Further, the pressure applying assembly further comprises a clamping plate and a moving plate, one end of the tension spring is fixedly connected with the clamping plate, the middle of the clamping plate is fixedly connected with the moving plate, the clamping plate is elastically connected with the sliding cavity through the tension spring, one end of the moving plate is provided with an inclined surface, and the end of the moving plate provided with the inclined plate is located in the insertion groove.
[0016] The power supply shell packaging device for mobile power supply production has the following beneficial effects: when used, glue can be sprayed while the shell is packaged, so that the shell is installed stably, the material can be automatically centered when the material is placed, and the product can be pressure tested after packaging is completed.
[0017] 1. In use, the cover is placed in the center of the base plate and pressed against the material placement plate. When placing the cover, the cover can press against the inclined plate and drive the sliding plate to slide in the groove, compressing the spring. When the cover is pressed against the material placement plate, the spring can drive the sliding plate to apply force evenly to the cover through the inclined plate, positioning it in the center of the base plate and preventing installation failure due to positional deviation. At the same time, the support plate can provide support for the material placement plate, keeping it horizontal and preventing the material placement plate from rotating downwards on the base plate under the weight of the cover and itself, causing the cover to fall off the base plate. In summary, in use, the cover can be supported and automatically centered to ensure installation accuracy.
[0018] 2. During installation, the lifting rod lowers the base, which then engages the cover shell into the cavity. As the base continues to descend, it applies pressure to the inclined plate, moving it away from the cover shell. The sliding plate then moves the support plate, releasing the support plate from its constraint on the material placement plate. This allows the material placement plate to rotate on the base plate, enabling the base to carry the cover shell through it. Once the base has installed the cover shell onto the base, the pressure plate compresses the spring, expelling the nozzle. Simultaneously, the locking rod slides within the locking cavity, and the locking block restricts the locking rod through the locking groove, maintaining its stability. This, in turn, stabilizes the pressure plate through the pad. When the locking block moves to the lower end of the locking groove, the pad can move the locking plate within the air chamber via the locking rod. This forces air from the air chamber into the storage chamber through the first one-way valve, evenly spraying the adhesive from the storage chamber onto the mounting points of the base and cover shell through the nozzle. As the locking plate moves... During operation, the lever can simultaneously restrict the movement of the clamping plate and the pad to maintain stability and prevent tilting. After the adhesive is sprayed, the base continues to descend until the rebound force of the compression spring exceeds the installation resistance. Then, the pressure plate can press the cover onto the bottom shell, completing the installation. After installation, the lifting rod continues to apply pressure to the base, and the pressure plate can then apply pressure to the product to test the pressure resistance of the product's upper and lower sides. After the test, the lifting rod drives the base to rise, and the pressure plate can then reset the pad under the action of the compression spring. In turn, the lever drives the clamping plate to reset. Air can enter the air chamber through the second one-way valve to replenish the air in the air chamber. The first and second one-way valves can prevent the adhesive in the storage chamber from being sucked into the air chamber. In summary, during installation, adhesive spraying and sealing can be performed sequentially, and the pressure resistance test of the upper and lower sides of the product can be performed after sealing.
[0019] 3、The application is in use, first put the bottom shell into the material groove, when the bottom shell is put in, the bottom shell can be pressed into the sliding cavity and the tension spring is compressed through the inclined surface of the clamping plate, when the bottom shell is completely put into the material groove, the clamping plate can clamp the bottom shell under the action of the tension spring, fix it in the material groove, and under the uniform force of the tension spring, the bottom shell can be centered and positioned in the center of the material groove, avoiding packaging failure caused by the inclination of the bottom shell, and after the cover shell is installed on the bottom shell, the limiting plate can drive the plug plate to insert into the plug slot, and the inclined surface of the moving plate can apply force to it, so that the clamping plate can apply pressure to the side of the product to test the side pressure resistance of the product, and when the lifting rod drives the base to descend, the limiting plate can limit the base through the limiting rod to avoid inclination during movement, which can cause installation failure, so that the bottom shell can be centered and clamped during use, avoiding the inclination of the bottom shell, and the product can be tested for side pressure resistance after packaging. BRIEF DESCRIPTION OF DRAWINGS
[0020] Figure 1 It is a whole front view structure schematic diagram of the power shell packaging device for mobile power supply production of the application;
[0021] Figure 2 It is a whole front view structure schematic diagram of the power shell packaging device for mobile power supply production of the application;
[0022] Figure 3 It is a base cross-sectional front view structure schematic diagram of the power shell packaging device for mobile power supply production of the application;
[0023] Figure 4 It is a base half-section schematic diagram of the power shell packaging device for mobile power supply production of the application;
[0024] Figure 5 It is a bottom plate top view structure schematic diagram of the power shell packaging device for mobile power supply production of the application;
[0025] Figure 6 It is a bottom plate cross-sectional top view structure schematic diagram of the power shell packaging device for mobile power supply production of the application;
[0026] Figure 7 It is a sliding plate schematic diagram of the power shell packaging device for mobile power supply production of the application.
[0027] In the figure: 1, chassis; 2, limiting rod; 3, crossbeam; 4, lifting rod; 5, base; 6, limiting plate; 7, plugboard; 8, cavity; 9, packaging assembly; 901, spout; 902, storage cavity; 903, air cavity; 904, first one-way valve; 905, second one-way valve; 906, compression spring; 907, pressing plate; 908, pad plate; 909, clamping cavity; 910, clamping groove; 911, clamping plate; 912, clamping rod; 913, clamping block; 10, bottom plate; 11, material placing assembly; 1101, material placing plate; 1102, sliding groove; 1103, spring; 1104, sliding plate; 1105, inclined plate; 1106, support plate; 12, material placing groove; 13, pressing assembly; 1301, sliding cavity; 1302, tension spring; 1303, clamping plate; 1304, moving plate; 14, insertion slot. DETAILED DESCRIPTION
[0028] Referring to Figures 1 to 7 The application provides the technical scheme: a power supply shell packaging device for mobile power supply production, which comprises a chassis 1 and a packaging assembly 9. The four corners of the chassis 1 are fixedly connected with limiting rods 2 in a symmetrical manner. The upper end of each limiting rod 2 is fixedly connected with a crossbeam 3. The lower part of the crossbeam 3 is fixedly connected with a lifting rod 4. The lower end of the lifting rod 4 is fixedly connected with a base 5. The outer periphery of the base 5 is fixedly connected with limiting plates 6 in a symmetrical manner. The lower surface of each limiting plate 6 is fixedly connected with a plugboard 7 in a symmetrical manner. A cavity 8 is formed in the middle of the base 5. The packaging assembly 9 is arranged in the base 5. The middle part of each limiting rod 2 is fixedly connected with a bottom plate 10. The middle part of the bottom plate 10 is provided with a material placing assembly 11. A material placing groove 12 is formed in the upper surface of the chassis 1. The material placing groove 12 is provided with pressing assemblies 13 in a symmetrical manner around the material placing groove 12. Insertion slots 14 are formed in the upper surface of the chassis 1 in a symmetrical manner around the four edges of the chassis 1.
[0029] Referring to Figures 1 to 4The limiting plate 6 is in sliding connection with the limiting rod 2, the plug plate 7 penetrates the upper and lower surfaces of the bottom plate 10, and the plug plate 7 is in sliding connection with the bottom disc 1 through the insertion slot 14, the packaging assembly 9 comprises a nozzle 901 and a storage cavity 902, the four walls of the cavity 8 are symmetrically provided with the nozzles 901, and the upper part of the nozzle 901 is connected with the storage cavity 902; the nozzles 901 are arrayed about the cavity 8, the packaging assembly 9 further comprises an air cavity 903, a first one-way valve 904 and a second one-way valve 905, the upper part of the cavity 8 is provided with the air cavity 903, the four walls of the air cavity 903 are symmetrically provided with the first one-way valves 904, the upper part of the air cavity 903 is provided with the second one-way valve 905, the air cavity 903 is in communication with the storage cavity 902 through the first one-way valve 904, the packaging assembly 9 further comprises a compression spring 906, a pressing plate 907, a backing plate 908, a clamping cavity 909 and a clamping slot 910, the cavity 8 is fixedly connected with the compression spring 906 in a symmetrical manner, the lower end of the compression spring 906 is fixedly connected with the pressing plate 907, the middle part of the pressing plate 907 is fixedly connected with the backing plate 908, the middle part of the backing plate 908 is symmetrically provided with the clamping cavity 909, the four walls of the clamping cavity 909 are symmetrically provided with the clamping slot 910, the pressing plate 907 is in elastic connection with the cavity 8 through the compression spring 906, the packaging assembly 9 further comprises a clamping plate 911, a clamping rod 912 and a clamping block 913, the clamping plate 911 is in sliding connection with the air cavity 903, the lower part of the clamping plate 911 is fixedly connected with the clamping rod 912 in a symmetrical manner, the lower end of the clamping rod 912 is fixedly connected with the clamping block 913 in a symmetrical manner, the clamping rod 912 is in sliding connection with the backing plate 908 through the clamping cavity 909, and the clamping block 913 is in sliding connection with the backing plate 908 through the clamping slot 910;
[0030] Specific operation as follows, in the installation, the lifting rod 4 drives the base 5 to drop, the base 5 can be cover shell card into cavity 8, with the base 5 continues to drop, the base 5 to the inclined plate 1105 pressure, make it far from cover shell and through the slide plate 1104 drive the support plate 1106 moves, make the support plate 1106 remove the restriction to the material plate 1101, make the material plate 1101 on the bottom plate 10 rotation, let the base 5 can carry cover shell through the bottom plate 10, when the base 5 will cover shell installation to the bottom shell, the pressing plate 907 stress will compression spring 906, thereby the spout 901 leak, and the clamp bar 912 in the card cavity 909 sliding, the clamping block 913 through the card slot 910 to the clamp bar 912 is limited, keep the stability of the clamp bar 912, thereby through the backing plate 908 keep the stability of the pressing plate 907, when the clamping block 913 moves to the lower end of the card slot 910, the backing plate 908 can be driven by the clamp bar 912 to move the clamping plate 911 in the air cavity 903, the air in the air cavity 903 is pressed into the storage cavity 902 through the first one-way valve 904, the glue solution in the storage cavity 902 is evenly sprayed to the installation of the bottom shell and cover shell through the spout 901, and when the clamping plate 911 moves, the clamp bar 912 can limit the clamping plate 911 and the backing plate 908 at the same time, so as to keep the movement stable and avoid deflection, after the glue solution is sprayed, the base 5 continues to drop, so that the rebound force of the compression spring 906 is greater than the installation resistance, the pressing plate 907 can press the cover shell on the bottom shell, the installation is completed, after the installation is completed, the lifting rod 4 continues to press the base 5, so that the product can be pressed by the pressing plate 907, so as to test the pressure resistance of the product on both sides, after the test is completed, the lifting rod 4 drives the base 5 to rise, the pressing plate 907 can drive the backing plate 908 to reset under the action of the compression spring 906, and then the clamping plate 911 is reset by the clamp bar 912, air can enter the air cavity 903 from the second one-way valve 905, to supplement the air in the air cavity 903, and the first one-way valve 904 and the second one-way valve 905 can prevent the glue solution in the storage cavity 902 from being sucked into the air cavity 903, in summary, during installation, glue spraying and packaging can be carried out in sequence, and pressure test on both sides of the product can be carried out after packaging is completed.
[0031] Please refer to Figure 2 and Figures 5 to 7The material placing assembly 11 comprises a material placing plate 1101 and a sliding groove 1102. The middle part of the bottom plate 10 is symmetrically connected with the material placing plate 1101 in a rotating mode, and the periphery of the bottom plate 10 is symmetrically provided with the sliding groove 1102. The material placing plate 1101 is in a triangular prism shape, and four material placing plates 1101 are arranged in total. The material placing assembly 11 further comprises a spring 1103, a sliding plate 1104, an inclined plate 1105 and a supporting plate 1106. The spring 1103 is fixedly connected in the sliding groove 1102, and the other end of the spring 1103 is fixedly connected with the sliding plate 1104. The upper end of the sliding plate 1104 is fixedly connected with the inclined plate 1105, and the lower end of the sliding plate 1104 is fixedly connected with the supporting plate 1106. The sliding plate 1104 is elastically connected with the sliding groove 1102 through the spring 1103, and the sliding plate 1104 is slidingly connected with the bottom plate 10 through the sliding groove 1102. The pressing assembly 13 comprises a sliding cavity 1301 and a tension spring 1302. The periphery of the material placing groove 12 is symmetrically provided with the sliding cavity 1301, and the tension spring 1302 is fixedly connected in the sliding cavity 1301. Four sliding cavities 1301 are arranged in total. The pressing assembly 13 further comprises a clamping plate 1303 and a moving plate 1304. One end of the tension spring 1302 is fixedly connected with the clamping plate 1303, and the middle part of the clamping plate 1303 is fixedly connected with the moving plate 1304. The clamping plate 1303 is elastically connected with the sliding cavity 1301 through the tension spring 1302. One end of the moving plate 1304 is provided with an inclined surface, and one end of the moving plate 1304 provided with the inclined plate 1105 is located in the insertion groove 14.
[0032] Specific operation as follows, in use, the cover shell is placed in the middle of the bottom plate 10 and makes it close to the placement plate 1101, in the placement of the cover shell, the cover shell can be through the inclined plane of the inclined plate 1105 pressure inclined plate 1105 driven slide plate 1104 in the sliding slot 1102 sliding, and the spring 1103 compression, when the cover shell close to the placement plate 1101, spring 1103 can drive slide plate 1104 through the inclined plate 1105 on the cover shell even force, make it in the bottom plate 10 central, positioning the cover shell, avoid the cover shell in installation due to position offset resulting in installation failure, at the same time, the support plate 1106 can provide support for the placement plate 1101, make the placement plate 1101 keep horizontal state, avoid the placement plate 1101 under the action of the cover shell and its own gravity, on the bottom plate 10 downward rotation, resulting in the cover shell from the bottom plate 10 fall, on the whole, in use, can be on the cover shell and automatically centering to ensure installation accuracy, the bottom shell is put into the placement slot 12, when the bottom shell is put in, the bottom shell can be through the inclined plane of the clamp plate 1303 and press into the slide cavity 1301 and the tension spring 1302 compression, when the bottom shell is completely put into the placement slot 12, the clamp plate 1303 can be under the action of the tension spring 1302 on the bottom shell clamping, fixed in the placement slot 12, while under the uniform force of the tension spring 1302, can centering the bottom shell, make it positioning in the placement slot 12 central, avoid because the bottom shell skew resulting in packaging failure, and after the cover shell is installed on the bottom shell, the limit plate 6 can drive the plug plate 7 into the plug slot 14, and through the inclined plane of the moving plate 1304 on it, make it through the clamp plate 1303 on the product side pressure, side pressure test on the product, while the lifting rod 4 drive the base 5 down, the limit plate 6 can be through the limit rod 2 on the base 5 limit, avoid its in the moving process skew resulting in installation failure, on the whole, in use, can centering the bottom shell clamping, avoid the bottom shell skew, and after packaging, the product is tested on the side pressure.
[0033] In summary, the power source shell packaging device for mobile power supply production, in use, first, the bottom shell is placed in the material groove 12, when the bottom shell is placed, the bottom shell can be pressed into the sliding cavity 1301 through the inclined surface of the clamping plate 1303 and compress the tension spring 1302, when the bottom shell is completely placed in the material groove 12, the clamping plate 1303 can clamp the bottom shell under the action of the tension spring 1302, and the bottom shell is fixed in the material groove 12, and under the uniform force of the tension spring 1302, the bottom shell can be centered and positioned in the center of the material groove 12, avoiding packaging failure caused by the inclination of the bottom shell, then the cover shell is placed in the middle of the bottom plate 10 and tightly attached to the material plate 1101, when the cover shell is placed, the cover shell can press the inclined plate 1105 to drive the sliding plate 1104 to slide in the sliding groove 1102 through the inclined surface of the inclined plate 1105 and compress the spring 1103, when the cover shell is tightly attached to the material plate 1101, the spring 1103 can drive the sliding plate 1104 to uniformly press the cover shell through the inclined plate 1105, so that the cover shell is positioned in the center of the bottom plate 10, avoiding installation failure caused by the position deviation of the cover shell during installation, at the same time, the support plate 1106 can provide support for the material plate 1101, so that the material plate 1101 remains horizontal, avoiding the material plate 1101 rotating downward on the bottom plate 10 under the gravity of the cover shell and itself, causing the cover shell to fall off the bottom plate 10, during installation, the lifting rod 4 drives the base 5 to descend, the base 5 can clamp the cover shell into the cavity 8, as the base 5 continues to descend, the base 5 presses the inclined plate 1105 away from the cover shell and moves the support plate 1106 through the sliding plate 1104, so that the support plate 1106 releases the restriction of the material plate 1101, allowing the material plate 1101 to rotate on the bottom plate 10, enabling the base 5 to carry the cover shell through the bottom plate 10, when the base 5 installs the cover shell on the bottom shell, the pressing plate 907 is compressed to compress the compression spring 906, so that the nozzle 901 leaks, at the same time, the clamping rod 912 slides in the clamping cavity 909, the clamping block 913 restricts the clamping rod 912 through the clamping groove 910, keeping the clamping rod 912 stable, so that the pressing plate 907 remains stable through the spacer plate 908, when the clamping block 913 moves to the lower end of the clamping groove 910, the spacer plate 908 can move the clamping plate 911 in the air cavity 903 through the clamping rod 912, the air in the air cavity 903 is pressed into the storage cavity 902 through the first one-way valve 904, the glue liquid in the storage cavity 902 is uniformly sprayed to the installation position of the bottom shell and the cover shell through the nozzle 901, while the clamping rod 912 can restrict the clamping plate 911 and the spacer plate 908 simultaneously to keep the movement stable and avoid deviation when the clamping plate 911 moves, after the glue spraying is completed, the base 5 continues to descend, so that the rebound force of the compression spring 906 is greater than the installation resistance, the pressing plate 907 can press the cover shell tightly on the bottom shell, completing the installation, after the installation is completed, the lifting rod 4 continues to press the base 5, so that the product can be pressed through the pressing plate 907, thereby testing the pressure resistance of the product on both sides, at the same time, the limiting plate 6 drives the plug plate 7 to insert into the plug slot 14 and press it through the inclined surface of the moving plate 1304,The product side is pressed by the clamping plate 1303 to perform side pressure test, and when the base 5 is lowered by the lifting rod 4, the limiting plate 6 can limit the base 5 through the limiting rod 2 to avoid the installation failure caused by the deflection in the moving process, after the test is completed, the base 5 is lifted back by the lifting rod 4, the pressing plate 907 can drive the backing plate 908 to reset under the action of the compression spring 906, then the clamping plate 911 is reset through the clamping rod 912, air can enter the air cavity 903 from the second one-way valve 905 to supplement the air in the air cavity 903, and the first one-way valve 904 and the second one-way valve 905 can prevent the glue liquid in the storage cavity 902 from being sucked into the air cavity 903.
[0034] Embodiments of the application are presented for the purpose of illustration and description, and are not intended to be exhaustive or to limit the application to the precise forms disclosed. Many modifications and variations will be apparent to those of ordinary skill in the art. Embodiments were chosen and described in order to best explain the principles of the application and its practical application, and to enable others skilled in the art to understand the application for various embodiments with various modifications as are suited to the particular use contemplated.
Claims
1. A power source housing packaging device for mobile power source production, characterized by, The utility model provides a kind of packing assembly and bottom plate, bottom plate is fixedly connected with packing assembly, and packing assembly includes air cavity (903), first one-way valve (904) and second one-way valve (905), air cavity (903) is provided above cavity (8), and first one-way valve (904) is symmetrically provided around air cavity (903), second one-way valve (905) is provided above air cavity (903), air cavity (903) is communicated with storage cavity (902) by first one-way valve (904), packing assembly further includes compression spring (906), pressing plate (907), backing plate (908), clamping cavity (909) and clamping groove (910), cavity (8) is fixedly connected with compression spring (906) symmetrically, and compression spring (906) is fixedly connected with pressing plate (907) lower end, pressing plate (907) is fixedly connected with backing plate (908 middle part, and backing plate (908) middle part is symmetrically provided with clamping cavity (909), clamping cavity (909) is symmetrically provided with clamping groove (910 around, pressing plate (907) is elastically connected with cavity (8) by compression spring (906), packing assembly further includes clamping plate (911), clamping rod (912) and clamping block (913), air cavity (903) is connected with clamping plate (911) in clamping sliding, and clamping rod (912) is symmetrically fixedly connected with clamping plate (911) lower side, clamping block (913) is symmetrically fixedly connected with clamping rod (912) lower end, clamping rod (912) is slidably connected with backing plate (908) by clamping cavity (909), clamping block (913) is slidably connected with backing plate (908) by clamping groove (910), packing assembly (11) includes material placing plate (1101) and sliding groove (1102), bottom plate (10) middle part is rotatably connected with material placing plate (1101) symmetrically, and bottom plate (10) is symmetrically provided with sliding groove (1102 around, material placing plate (1101) is three prism, and material placing plate (1101) is provided with four, packing assembly (11) further includes spring (1103), sliding plate (1104), inclined plate (1105) and support plate (1106),The sliding slot (1102) is fixedly connected with a spring (1103), and the other end of the spring (1103) is fixedly connected with a sliding plate (1104), the upper end of the sliding plate (1104) is fixedly connected with an inclined plate (1105), and the lower end of the sliding plate (1104) is fixedly connected with a supporting plate (1106), the sliding plate (1104) is elastically connected with the sliding slot (1102) through the spring (1103), and the sliding plate (1104) is slidingly connected with the bottom plate (10) through the sliding slot (1102).
2. The power source housing packaging device for mobile power source production according to claim 1, characterized in that, The limiting plate (6) is in sliding connection with the limiting rod (2), the plug-in plate (7) penetrates the upper and lower surfaces of the bottom plate (10), and the plug-in plate (7) is in sliding connection with the bottom disc (1) through the plug-in slot (14).
3. The power source housing packaging device for mobile power source production according to claim 1, characterized in that, The packaging assembly (9) comprises a nozzle (901) and a storage cavity (902), symmetrically arranged nozzles (901) are arranged on the four walls of the cavity (8), and the storage cavity (902) is arranged above the nozzles (901), and the nozzles (901) are arrayed with respect to the cavity (8).
4. The power source housing packaging device for mobile power source production according to claim 1, characterized in that, The pressure applying assembly (13) comprises a sliding cavity (1301) and a tension spring (1302), the sliding cavities (1301) are symmetrically arranged around the material placing groove (12), and the tension spring (1302) is fixedly connected in the sliding cavity (1301), and four sliding cavities (1301) are arranged.
5. The power source housing packaging device for mobile power source production according to claim 4, characterized in that, The pressure applying assembly (13) further comprises a clamping plate (1303) and a moving plate (1304), one end of the tension spring (1302) is fixedly connected with the clamping plate (1303), the middle part of the clamping plate (1303) is fixedly connected with the moving plate (1304), the clamping plate (1303) is elastically connected with the sliding cavity (1301) through the tension spring (1302), one end of the moving plate (1304) is provided with an inclined surface, and one end of the moving plate (1304) provided with the inclined plate (1105) is located in the plug-in slot (14).
Citation Information
Patent Citations
Wireless charging automatic assembling equipment
CN117001306A
Electronic equipment assembling mechanism with precise dispensing function
CN218347722U