Silicon-carbon composite powder packaging equipment

By designing automated silicon-carbon composite powder encapsulation equipment, the problem of low efficiency in traditional manual encapsulation has been solved, realizing a high-efficiency and precise powder encapsulation process, which is applicable to fields such as lithium-ion batteries and electronic devices.

CN224393130UActive Publication Date: 2026-06-23YUAN XISHENG (YANGZHOU) EQUIP MFG CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
YUAN XISHENG (YANGZHOU) EQUIP MFG CO LTD
Filing Date
2025-07-05
Publication Date
2026-06-23

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  • Figure CN224393130U_ABST
    Figure CN224393130U_ABST
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Abstract

The utility model relates to powder packaging equipment technical field especially relates to a kind of silicon-carbon composite powder packaging equipment.The silicon-carbon composite powder packaging equipment includes substrate, and is fixedly installed with riser and is installed in the substrate one side, riser is installed with support truss between substrate, high-precision screw rod conveyor is installed on support truss, control box is installed on riser, and column is fixedly installed on substrate;Bag storage component is used to store the bag storage component for the packaging bag of powder packaging and is fixedly installed in riser top end, and the bottom end of riser is installed with bag taking component;Bag opening mechanism is used to the bag opening mechanism of packaging bag inflation opening bag and is installed on column, inflation component for opening bag inflation is installed on column, bag moving component is installed on substrate, bottom support component is installed in the bottom end of column, and heat sealing component is installed in the top end of column.The silicon-carbon composite powder packaging equipment provided by the utility model has the advantages of stable and convenient bag opening, high packaging efficiency.
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Description

Technical Field

[0001] This utility model relates to the field of powder packaging equipment technology, and in particular to a silicon-carbon composite powder packaging equipment. Background Technology

[0002] Silicon-carbon composite powder is a functional powder material made by combining silicon (Si) and carbon (C) materials through physical or chemical methods. It is widely used in lithium-ion batteries, electronic devices, composite materials and other fields.

[0003] Silicon-carbon composite powder needs to be filled and transported after processing. Due to the characteristics of silicon-carbon composite powder, in order to reduce the oxidation of silicon-carbon composite powder by oxygen during filling, inert gas needs to be filled into the packaging bag. The traditional manual sealing method is inefficient and not suitable for automated mass production.

[0004] Therefore, it is necessary to provide a new silicon-carbon composite powder encapsulation device to solve the above-mentioned technical problems. Utility Model Content

[0005] To solve the above-mentioned technical problems, this utility model provides a silicon-carbon composite powder packaging device.

[0006] The silicon-carbon composite powder packaging equipment provided by this utility model includes: a substrate, and a vertical plate fixedly installed on one side of the substrate, a support truss installed between the vertical plate and the substrate, a high-precision screw conveyor installed on the support truss, a storage bin installed at the feed inlet of the high-precision screw conveyor, a control box fixedly installed on the vertical plate, the control box being electrically connected to the high-precision screw conveyor, and a column fixedly installed on the substrate.

[0007] A bag storage assembly for storing packaging bags for powder packaging is fixedly installed at the top of the vertical plate, and a bag retrieval assembly is installed at the bottom of the vertical plate.

[0008] A bag-opening mechanism for inflating and opening packaging bags is mounted on the column. The bag-opening mechanism includes an upper support arm, which is rotatably mounted on the column. A U-shaped frame is fixedly mounted on one end of the upper support arm away from the column. Electric rods are symmetrically mounted on both sides of the U-shaped frame. The electric rods are electrically connected to a control box. A suction plate is fixed to the telescopic end of the electric rods. Several vacuum suction cups are fixedly mounted on the suction plate. A vacuum pump is mounted on the base plate. The vacuum pump is electrically connected to the control box. The suction end of the vacuum pump is connected to several vacuum suction cups through a conduit. An inflation assembly for inflating and opening the bag is mounted on the column. A bag-transfer assembly is mounted on the base plate. A base support assembly is mounted at the bottom of the column. A heat-sealing assembly is mounted at the top of the column.

[0009] Preferably, the bag storage assembly includes a fixed L-shaped frame, which is fixedly installed on one side of the vertical plate, and a connecting plate is fixedly installed on the back side of the L-shaped frame, with a curved board installed on the side of the connecting plate opposite to the L-shaped frame.

[0010] Preferably, the bag-retrieving assembly includes a second electric rod, which is embedded in a through slot in the vertical plate. A rotary motor is fixedly installed at the telescopic end of the second electric rod, and a connecting rod is fixedly installed at the output end of the rotary motor. Three sets of horizontal plates are installed on the connecting rod, and vacuum suction cups are installed on each of the three sets of horizontal plates. A vacuum pump is installed on the base plate, and the vacuum pump is electrically connected to the control box. The suction end of the vacuum pump is connected to several vacuum suction cups via a conduit.

[0011] Preferably, the bag transfer assembly includes two sets of linear guide rails, which are symmetrically mounted on the base plate. A movable seat is slidably mounted on both sets of linear guide rails. An electric rod three is fixedly mounted on the vertical plate. The telescopic end of the electric rod three is fixedly connected to the movable seat. An electric rod four is symmetrically mounted on the top of the movable seat. A clamp is fixedly mounted on the telescopic end of the electric rod four. The electric rod four and the electric rod three are electrically connected to the control box.

[0012] Preferably, the inflation assembly includes a support frame, which is installed on one side of the column, and an electric rod five is fixedly installed on the support frame. An end plate is fixedly installed on the telescopic end of the electric rod five, and an inflation pipe is fixedly installed on the end plate. A control valve is fixedly installed at the top of the inflation pipe. The control valve is connected to an air storage tank, which stores inert gas, and the control valve is electrically connected to a control box.

[0013] Preferably, an external gear is installed on the upper support arm, a motor is installed on the column, the output end of the motor is connected to the external gear through a gear, and the motor is electrically connected to the control box.

[0014] Preferably, the base support assembly includes a lower support arm, which is rotatably mounted on the bottom end of the column, and an external gear II is fixedly mounted on the lower support arm. A motor II is fixedly mounted on one side of the column, and the output end of the motor II is connected to the external gear II via a gear transmission. The motor II is also electrically connected to the control box. An electric rod VI is fixedly mounted on the end of the lower support arm away from the column. A base plate is fixedly mounted on the telescopic end of the electric rod VI. Pressure sensors are fixedly mounted on the four corners of the top of the base plate, and a support plate is fixedly mounted on the top of the pressure sensors. The pressure sensors and the electric rod VI are electrically connected to the control box.

[0015] Preferably, the heat-sealing assembly includes an electric rod seven, which is fixedly installed on the top of the column via a support plate. A U-shaped frame two is fixedly installed at the telescopic end of the electric rod seven. Electric rods eight are symmetrically installed on both sides of the U-shaped frame two. A heat-pressing plate is fixedly installed at the telescopic end of the electric rod eight. A heat-sealing knife is fixedly installed on the inner side of the heat-pressing plate. A controller electrically connected to the heat-sealing knife is fixedly installed at the top of the U-shaped frame two. The controller, electric rods eight, and electric rod seven are electrically connected to a control box.

[0016] Compared with related technologies, the silicon-carbon composite powder encapsulation equipment provided by this utility model has the following beneficial effects:

[0017] 1. This utility model provides a silicon-carbon composite powder packaging device. A bag storage component is set on the vertical plate. In conjunction with the bag picking component and the bag transferring component, it is convenient to automatically pick up a single packaging bag. In conjunction with the upper support arm, external gear, U-shaped frame, electric rod, suction plate, vacuum suction cup, inflation component, support frame, electric rod five, end plate, inflation pipe, control valve, air tank and motor of the bag opening mechanism, automatic bag opening and inflation can be realized, which is convenient for subsequent powder filling.

[0018] 2. By setting a base support assembly and a heat sealing assembly on the column, the base support assembly is used for weighing during powder filling using a high-precision screw conveyor, which improves the accuracy of bagging. Then, the heat sealing assembly is used for automatic sealing, resulting in high overall powder sealing efficiency and automated powder sealing. Attached Figure Description

[0019] Figure 1 A schematic diagram of a preferred embodiment of the silicon-carbon composite powder encapsulation device provided by this utility model;

[0020] Figure 2 Another structural schematic diagram of the silicon-carbon composite powder encapsulation device provided by this utility model;

[0021] Figure 3 A schematic diagram of a bag transfer assembly mounted on a substrate provided by this utility model;

[0022] Figure 4 This is a schematic diagram of the bag-removing assembly provided by this utility model;

[0023] Figure 5 A schematic diagram of a bag-opening mechanism installed on a column provided by this utility model;

[0024] Figure 6 This is a structural schematic diagram from another perspective of the column on which the bag-opening mechanism is installed, which is provided by this utility model.

[0025] Numbered in the diagram: 1. Base plate; 11. Vertical plate; 12. Support truss; 13. Column; 14. Vacuum pump II; 15. Vacuum pump I; 2. High-precision screw conveyor; 21. Storage hopper; 3. Bag storage assembly; 31. L-shaped frame; 32. Connecting plate; 33. Curved board; 4. Bag retrieval assembly; 41. Electric rod II; 42. Rotary motor; 43. Connecting rod; 44. Horizontal plate; 45. Vacuum suction cup II; 5. Bag transfer assembly; 51. Linear guide rail; 52. Moving seat; 53. Electric rod III; 54. Electric rod IV; 55. Clamping plate; 6. Bag opening mechanism; 61. Upper support arm; 611. External gear I; 62. 63. U-shaped frame 1; 64. Electric pole 1; 65. Suction plate; 66. Vacuum suction cup 1; 67. Inflation assembly; 68. Support frame; 69. Electric pole 5; 60. End plate; 61. Inflation pipe; 62. Control valve; 63. Air tank; 64. Motor 1; 75. Base support assembly; 76. Lower support arm; 77. External gear 2; 78. Electric pole 6; 79. Base plate; 70. Pressure sensor; 71. Support plate; 72. Motor 2; 83. Heat sealing assembly; 84. Electric pole 7; 85. U-shaped frame 2; 86. Controller; 87. Electric pole 8; 88. Heat pressing plate; 89. Heat sealing knife; 90. Control box. Detailed Implementation

[0026] To make the objectives, technical solutions, and advantages of this utility model clearer, the present utility model will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the present utility model and are not intended to limit the present utility model.

[0027] The specific implementation of this utility model will be described in detail below with reference to specific embodiments.

[0028] Please see Figures 1 to 6 This utility model provides a silicon-carbon composite powder encapsulation device, which includes:

[0029] A base plate 1, and a vertical plate 11 fixedly installed on one side of the base plate 1. A support truss 12 is installed between the vertical plate 11 and the base plate 1. A high-precision screw conveyor 2 is installed on the support truss 12. A storage bin 21 is installed at the feed inlet of the high-precision screw conveyor 2. A control box 9 is fixedly installed on the vertical plate 11. The control box 9 is electrically connected to the high-precision screw conveyor 2. A column 13 is fixedly installed on the base plate 1.

[0030] The bag storage assembly 3 is used to store the packaging bags for powder packaging. The bag storage assembly 3 is fixedly installed at the top of the vertical plate 11, and the bottom of the vertical plate 11 is equipped with a bag retrieval assembly 4.

[0031] The bag opening mechanism 6, used for inflating and opening the packaging bag, is installed on the column 13. The bag opening mechanism 6 includes an upper support arm 61, which is rotatably mounted on the column 13. A U-shaped frame 62 is fixedly installed at one end of the upper support arm 61 away from the column 13. Electric rods 63 are symmetrically installed on both sides of the U-shaped frame 62. The electric rods 63 are electrically connected to the control box 9. A suction plate 64 is fixedly installed at the telescopic end of the electric rods 63. Several vacuum suction cups 65 are fixedly installed on the suction plate 64. A vacuum pump 15 is on the base plate 1. The vacuum pump 15 is electrically connected to the control box 9. The suction end of the vacuum pump 15 is connected to several vacuum suction cups 65 through a conduit. An inflation assembly 66 for inflating and opening the bag is installed on the column 13. A bag transfer assembly 5 is installed on the base plate 1. A bottom support assembly 7 is installed at the bottom of the column 13. A heat sealing assembly 8 is installed at the top of the column 13.

[0032] The inflation component 66 includes a support frame 661, which is installed on one side of the column 13. An electric rod 662 is fixedly installed on the support frame 661. An end plate 663 is fixedly installed on the telescopic end of the electric rod 662. An inflation pipe 664 is fixedly installed on the end plate 663. A control valve 665 is fixedly installed at the top of the inflation pipe 664. The control valve 665 is connected to a gas storage tank 666, which stores inert gas. The control valve 665 is electrically connected to the control box 9.

[0033] An external gear 611 is installed on the upper support arm 61, and a motor 67 is installed on the column 13. The output end of the motor 67 is connected to the external gear 611 through a gear, and the motor 67 is electrically connected to the control box 9.

[0034] It should be noted that during use, aluminum foil packaging bags for packaging silicon carbide powder are stacked on the bag storage assembly 3. Then, the bag picking assembly 4 and bag transferring assembly 5 are used to move a single packaging bag to one side of the bag opening mechanism 6, between the two suction plates 64. The electric rod 63 drives the two suction plates 64 to clamp the top of the packaging bag. Then, the vacuum pump 15 is started, and the vacuum suction cup 65 is used to suction the two sides of the bag opening. After that, the electric rod 63 is controlled to drive the two suction plates 64 to separate, opening the bag opening. After opening, the electric rod 65 is controlled to... The drive end plate 663 drives the inflation tube 664 to be inserted into the packaging bag. Then, the control valve 665 is activated to introduce the inert gas in the gas storage tank 666 into the packaging bag. Then, the motor 67 is activated to drive the external gear 611 to rotate the upper support arm 61 ninety degrees to directly below the high-precision screw conveyor 2. Then, the bottom support assembly 7 is used to weigh the bottom of the packaging bag. Then, the high-precision screw conveyor 2 is activated to quantitatively fill the silicon carbide powder filled in the storage bin 21 into the packaging bag. After quantitative filling, it is rotated to the position of the heat sealing assembly 8 for heat sealing.

[0035] It should also be noted that the entire packaging equipment is controlled by programming through control box 9, thereby realizing the automated opening and packaging of silicon carbide powder.

[0036] In the embodiments of this utility model, please refer to Figures 1 to 6 The bag storage assembly 3 includes a fixed L-shaped frame 31, which is fixedly installed on one side of the vertical plate 11, and a connecting plate 32 is fixedly installed on the back side of the L-shaped frame 31. A curved board 33 is installed on the side of the connecting plate 32 away from the L-shaped frame 31.

[0037] The bag-retrieving assembly 4 includes an electric rod 41, which is embedded in a through slot in the vertical plate 11. A rotary motor 42 is fixedly installed at the telescopic end of the electric rod 41, and a connecting rod 43 is fixedly installed at the output end of the rotary motor 42. Three sets of horizontal plates 44 are installed on the connecting rod 43, and vacuum suction cups 45 are installed on each of the three sets of horizontal plates 44. A vacuum pump 14 is installed on the base plate 1. The vacuum pump 14 is electrically connected to the control box 9, and the suction end of the vacuum pump 14 is connected to several vacuum suction cups 45 through a conduit.

[0038] The bag transfer assembly 5 includes linear guide rails 51, with two sets of linear guide rails 51 symmetrically mounted on the base plate 1. A movable seat 52 is slidably mounted on both sets of linear guide rails 51. An electric rod 3 53 is fixedly mounted on the vertical plate 11. The telescopic end of the electric rod 3 53 is fixedly connected to the movable seat 52. An electric rod 4 54 is symmetrically mounted on the top of the movable seat 52. A clamping plate 55 is fixedly mounted on the telescopic end of the electric rod 4 54. The electric rod 4 54 and the electric rod 3 53 are electrically connected to the control box 9.

[0039] It should be noted that when using the bag storage assembly 3, the distance between the bottom end of the bend board 33 and the bottom end of the L-shaped frame 31 should be less than the width of the aluminum foil packaging bag used to store silicon carbide composite powder. This allows the stacked packaging bags to be positioned between the bottom end of the bend board 33 and the L-shaped frame 31. Then, the rotary motor 42 is started to rotate the horizontal plate 44 to a horizontal position, ensuring the vacuum suction cup 45 is horizontal. Next, the electric lever 41 is started to drive the entire rotary motor 42 and the vacuum suction cup 45 to the bottom of the stacked packaging bags. Then, the vacuum pump 14 is started, using the vacuum suction cup 45 to pick up the lowest packaging bag, and then the pump is driven... Electric lever 2 41 retracts to remove a single packaging bag, which is now horizontal. Then, the control motor 42 drives the horizontal plate 44 to rotate to a vertical position, making the packaging bag vertical. Electric lever 3 53 then pulls the moving seat 52 to slide along the linear guide rail 51 to the horizontal plate 44. Electric lever 4 54 then drives the clamping plate 55 to hold the packaging bag. The control vacuum suction cup 2 45 then releases the suction clamp on the packaging bag. Electric lever 3 53 then pushes the moving seat 52 to directly below the suction plate 64. At this point, the top of the packaging bag is positioned between the two suction plates 64, facilitating later opening of the bag.

[0040] In the embodiments of this utility model, please refer to Figures 1 to 6 The base support assembly 7 includes a lower support arm 71, which is rotatably mounted on the bottom end of the column 13. An external gear 711 is fixedly mounted on the lower support arm 71. A motor 76 is fixedly mounted on one side of the column 13. The output end of the motor 76 is connected to the external gear 711 through a gear. The motor 76 is electrically connected to the control box 9. An electric rod 72 is fixedly mounted on the end of the lower support arm 71 away from the column 13. A base plate 73 is fixedly mounted on the telescopic end of the electric rod 72. Pressure sensors 74 are fixedly mounted on the four corners of the top of the base plate 73. A support plate 75 is fixedly mounted on the top of the pressure sensor 74. The pressure sensor 74 and the electric rod 72 are electrically connected to the control box 9.

[0041] It should be noted that when the bottom support assembly 7 is in use, when the packaging bag is moved directly under the high-precision screw conveyor 2 for powder filling, the electric lever 72 is activated to drive the bottom plate 73 to push the support plate 75 to the bottom of the packaging bag, thereby supporting the packaging bag. During the bottom support, the pressure sensor 74 monitors the weight of the packaging bag until the set weight is reached, completing the powder filling. After filling, the motor 76 drives the lower support arm 71 to rotate the filled packaging bag 90 degrees to the position of the heat sealing assembly 8.

[0042] In the embodiments of this utility model, please refer to Figures 1 to 6 The heat sealing assembly 8 includes an electric pole 7 81, which is fixedly installed on the top of the column 13 via a support plate. A U-shaped frame 2 82 is fixedly installed on the telescopic end of the electric pole 7 81. Electric poles 84 are symmetrically installed on both sides of the U-shaped frame 2 82. A heat-pressing plate 85 is fixedly installed on the telescopic end of the electric poles 84. A heat sealing knife 86 is fixedly installed on the inner side of the heat-pressing plate 85. A controller 83, which is electrically connected to the heat sealing knife 86, is fixedly installed on the top of the U-shaped frame 2 82. The controller 83, electric poles 84 and electric pole 7 81 are electrically connected to the control box 9.

[0043] It should be noted that after the packaged bag filled with powder moves to the station of the heat sealing component 8, the electric lever 7 81 is activated to drive the U-shaped frame 2 82 to slide down to the opening of the packaged bag. Then, the electric lever 84 and the controller 83 are activated to drive the two heat pressing plates 85 to move closer to each other until the opening of the packaged bag is heat-sealed by the heat sealing knife 86. After heat sealing, the vacuum suction cup 1 65 is released from the suction clamp of the packaged bag, and then the sealed packaged bag can be taken out by the external robotic arm. Then, it automatically enters the next sealing process to realize automated powder sealing.

[0044] The working principle of the silicon-carbon composite powder encapsulation equipment provided by this utility model is as follows:

[0045] When using the bag storage assembly 3, the distance between the bottom end of the bend board 33 and the bottom end of the L-shaped frame 31 should be less than the width of the aluminum foil packaging bag used to store silicon carbide composite powder. This allows the stacked packaging bags to be positioned between the bottom end of the bend board 33 and the L-shaped frame 31. Then, the rotary motor 42 is started to rotate the horizontal plate 44 to a horizontal position, making the vacuum suction cup 45 horizontal. Next, the electric lever 41 is started to drive the entire rotary motor 42 and the vacuum suction cup 45 to the bottom of the stacked packaging bags. Then, the vacuum pump 14 is started, using the vacuum suction cup 45 to suction the lowest packaging bag. Then, the electric lever 41 is driven to retract, removing the individual packaging bag. The removed packaging bag is horizontal. Finally, the rotary motor 42 is controlled... The horizontal plate 44 is rotated to a vertical position, making the packaging bag vertical. Then, the electric lever 53 pulls the moving seat 52 to slide along the linear guide rail 51 to the horizontal plate 44. Then, the electric lever 54 drives the clamping plate 55 to hold the packaging bag. Then, the vacuum suction cup 45 is controlled to release the suction clamp on the packaging bag. Then, the electric lever 53 is controlled to push the moving seat 52 to directly below the suction plate 64. At this time, the single packaging bag moves synchronously to one side of the bag opening mechanism 6 and moves between the two suction plates 64. The electric lever 63 drives the two suction plates 64 to press and clamp the top of the packaging bag. Then, the vacuum pump 15 is started, and the vacuum suction cup 65 sucks up the two sides of the bag opening. After that, the electric lever 1... 63 drives the two suction plates 64 to separate, opening the bag opening. After opening, the control electric lever 662 drives the end plate 663 to insert the inflation tube 664 into the bag. Then, the control valve 665 is activated to introduce the inert gas in the gas tank 666 into the bag. Then, the motor 67 drives the external gear 611 to rotate the upper support arm 61 90 degrees to directly below the high-precision screw conveyor 2. Then, the bottom support assembly 7 is used to support the bottom of the bag. When the bag is moved directly below the high-precision screw conveyor 2 for powder filling, the electric lever 72 drives the bottom plate 73 to push the support plate 75 to the bottom of the bag, thus supporting the bag. During the bottom support, the pressure sensor 74 is used to monitor the pressure. The weight of the packaging bag is monitored until the set weight is reached, completing the powder filling. After filling, the lower support arm 71 is driven by motor 2 76 to rotate the filled packaging bag 90 degrees to the position of the heat sealing component 8. After moving to the position of the heat sealing component 8, the electric rod 7 81 is started to drive the U-shaped frame 2 82 to slide down to the opening of the packaging bag. Then, the electric rod 84 and the controller 83 are started to drive the two hot press plates 85 to move closer to each other until the opening of the packaging bag is heat-sealed by the heat sealing knife 86. After heat sealing, the vacuum suction cup 1 65 is released from the suction clamp of the packaging bag, and then the sealed packaging bag is taken out by the external robotic arm. Then, it automatically enters the next sealing process to realize automated powder sealing.

[0046] The circuits and controls involved in this utility model are all existing technologies, and will not be described in detail here.

[0047] The above description is merely an embodiment of this utility model and does not limit the patent scope of this utility model. Any equivalent structural or procedural transformations made based on the content of this utility model specification and drawings, or direct or indirect applications in other related technical fields, are similarly included within the patent protection scope of this utility model.

Claims

1. A silicon-carbon composite powder encapsulation device, comprising: A base plate (1) and a vertical plate (11) fixedly installed on one side of the base plate (1). A support truss (12) is installed between the vertical plate (11) and the base plate (1). A high-precision screw conveyor (2) is installed on the support truss (12). A storage bin (21) is installed at the feed port of the high-precision screw conveyor (2). A control box (9) is fixedly installed on the vertical plate (11). The control box (9) is electrically connected to the high-precision screw conveyor (2). A column (13) is fixedly installed on the base plate (1). Its characteristic is that it further includes: The bag storage assembly (3) is used to store the packaging bags of powder packaging. The bag storage assembly (3) is fixedly installed on the top of the vertical plate (11), and the bottom of the vertical plate (11) is equipped with a bag retrieval assembly (4). A bag opening mechanism (6) for inflating and opening the packaging bag is mounted on the column (13). The bag opening mechanism (6) includes an upper support arm (61), which is rotatably mounted on the column (13). A U-shaped frame (62) is fixedly mounted on one end of the upper support arm (61) away from the column (13). Electric rods (63) are symmetrically mounted on both sides of the U-shaped frame (62). The electric rods (63) are electrically connected to the control box (9), and a suction plate (64) is fixed to the telescopic end of the electric rods (63). A plurality of vacuum suction cups (65) are fixedly installed on the suction plate (64). A vacuum pump (15) is on the substrate (1). The vacuum pump (15) is electrically connected to the control box (9). The suction end of the vacuum pump (15) is connected to the plurality of vacuum suction cups (65) through a conduit. An inflation assembly (66) for opening the bag and inflating is installed on the column (13). A bag transfer assembly (5) is installed on the substrate (1). A bottom support assembly (7) is installed at the bottom of the column (13). A heat sealing assembly (8) is installed at the top of the column (13).

2. The silicon-carbon composite powder packaging equipment according to claim 1, characterized in that, The bag storage assembly (3) includes a fixed L-shaped frame (31), which is fixedly installed on one side of the vertical plate (11), and a connecting plate (32) is fixedly installed on the back side of the L-shaped frame (31). A curved board (33) is installed on the side of the connecting plate (32) away from the L-shaped frame (31).

3. The silicon-carbon composite powder packaging equipment according to claim 1, characterized in that, The bag-retrieving assembly (4) includes an electric rod (41), which is embedded in a through slot in the vertical plate (11). A rotary motor (42) is fixedly installed at the telescopic end of the electric rod (41), and a connecting rod (43) is fixedly installed at the output end of the rotary motor (42). Three sets of horizontal plates (44) are installed on the connecting rod (43), and vacuum suction cups (45) are installed on each of the three sets of horizontal plates (44). A vacuum pump (14) is installed on the base plate (1). The vacuum pump (14) is electrically connected to the control box (9), and the suction end of the vacuum pump (14) is connected to several vacuum suction cups (45) through a conduit.

4. The silicon-carbon composite powder packaging equipment according to claim 1, characterized in that, The bag transfer assembly (5) includes a linear guide rail (51), which has two sets. The two sets of linear guide rails (51) are symmetrically installed on the base plate (1), and a movable seat (52) is slidably installed on both sets of linear guide rails (51). An electric rod three (53) is fixedly installed on the vertical plate (11). The telescopic end of the electric rod three (53) is fixedly connected to the movable seat (52). An electric rod four (54) is symmetrically installed on the top of the movable seat (52). A clamp (55) is fixedly installed on the telescopic end of the electric rod four (54). The electric rod four (54) and the electric rod three (53) are electrically connected to the control box (9).

5. The silicon-carbon composite powder packaging equipment according to claim 1, characterized in that, The inflation assembly (66) includes a support frame (661), which is installed on one side of the column (13). An electric rod (662) is fixedly installed on the support frame (661). An end plate (663) is fixedly installed on the telescopic end of the electric rod (662). An inflation pipe (664) is fixedly installed on the end plate (663). A control valve (665) is fixedly installed at the top of the inflation pipe (664). The control valve (665) is connected to a gas storage tank (666). The gas storage tank (666) stores inert gas. The control valve (665) is electrically connected to the control box (9).

6. The silicon-carbon composite powder packaging equipment according to claim 1, characterized in that, An external gear (611) is installed on the upper support arm (61), and a motor (67) is installed on the column (13). The output end of the motor (67) is connected to the external gear (611) through a gear, and the motor (67) is electrically connected to the control box (9).

7. The silicon-carbon composite powder packaging equipment according to claim 1, characterized in that, The base support assembly (7) includes a lower support arm (71), which is rotatably mounted on the bottom end of the column (13). An external gear (711) is fixedly mounted on the lower support arm (71). A motor (76) is fixedly mounted on one side of the column (13). The output end of the motor (76) is connected to the external gear (711) via a gear. The motor (76) is electrically connected to the control box (9). An electric rod (72) is fixedly mounted on the end of the lower support arm (71) away from the column (13). A base plate (73) is fixedly mounted on the telescopic end of the electric rod (72). Pressure sensors (74) are fixedly mounted on the four corners of the top of the base plate (73). A support plate (75) is fixedly mounted on the top of the pressure sensor (74). The pressure sensor (74) and the electric rod (72) are electrically connected to the control box (9).

8. The silicon-carbon composite powder packaging equipment according to claim 1, characterized in that, The heat sealing assembly (8) includes an electric rod seven (81), which is fixedly installed on the top of the column (13) by a support plate. A U-shaped frame two (82) is fixedly installed on the telescopic end of the electric rod seven (81). Electric rod eight (84) is symmetrically installed on both sides of the U-shaped frame two (82). A heat pressure plate (85) is fixedly installed on the telescopic end of the electric rod eight (84). A heat sealing knife (86) is fixedly installed on the inner side of the heat pressure plate (85). A controller (83) electrically connected to the heat sealing knife (86) is fixedly installed on the top of the U-shaped frame two (82). The controller (83), electric rod eight (84) and electric rod seven (81) are electrically connected to the control box (9).