Filling equipment
By designing and coordinating adjustment components and conveying parts, the problem of difficulty in adjusting the powder flow rate in real time was solved, enabling efficient filling of dry powder barrels of different capacities, improving work efficiency and preventing dry powder overflow.
Patent Information
- Application Number
- CN202423211573.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-24
- Publication Date
- 2025-11-18
- Estimated Expiration
- 2034-12-24
AI Technical Summary
Existing filling equipment has difficulty adjusting the powder flow rate in real time, which requires stopping the line to adjust when filling dry powder barrels with different capacities, thus affecting work efficiency.
A filling device including an adjustment component was designed. The powder outlet diameter is adjusted by a rack and pinion structure and a transmission ring. Combined with a conveying component and a lifting component, it can achieve precise filling of dry powder barrels of different capacities.
It enables the powder dispensing rate to be adjusted according to the capacity of the dry powder container without interrupting the production line, thereby improving filling efficiency, preventing dry powder overflow, and enhancing work efficiency.
Smart Images

Figure CN223560018U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to filling technology field especially relates to a filling equipment. BACKGROUND
[0002] Hemodialysis dry powder is important medical supplies for treating chronic renal failure and acute kidney injury, and in the treatment process, hemodialysis dry powder often plays a role in removing urea, creatinine and other metabolic waste in blood and maintaining electrolyte balance.
[0003] In the production process of hemodialysis dry powder, the filling equipment is used to fill the processed dry powder into the dry powder barrel for packaging. Since the powder discharge flow of the existing filling equipment is a fixed value and is difficult to adjust in real time, when the dry powder barrels with different filling capacities are filled, it is usually necessary to stop the line to adjust the powder discharge flow of the filling equipment or change the filling time of the dry powder barrel in the filling equipment to adjust the filling capacity. However, when the dry powder barrel with a larger filling capacity is filled, the filling time required by the dry powder barrel increases, thereby increasing the residence time of the dry powder barrel in the filling equipment, and further prolonging the interval time between the start and stop of the conveying line, resulting in an increase in the overall filling time of the dry powder and affecting the work efficiency. Therefore, the present application provides a filling equipment with adjustable powder discharge flow. SUMMARY
[0004] The main purpose of the utility model is to provide a filling equipment with adjustable powder discharge flow.
[0005] To achieve the above-mentioned purpose, the utility model provides a filling equipment, which comprises:
[0006] The filling component comprises a storage tank for storing dry powder, a feed inlet is formed on one side of the storage tank, a plurality of powder discharge ports for discharging dry powder are further formed below the storage tank, and an adjusting assembly is arranged in the storage tank, the adjusting assembly is communicated with each powder discharge port, the adjusting assembly can adjust the powder discharge aperture of each powder discharge port, thereby controlling the powder discharge amount of each powder discharge port.
[0007] The conveying component is arranged below the storage tank and is used for conveying the dry powder barrel.
[0008] Further, a first cavity is formed in the storage tank and arranged along the distribution direction of the powder discharge ports, and the first cavity is arranged on one side of each powder discharge port.
[0009] The adjusting assembly comprises a rack slidingly arranged in the first chamber and a plurality of regulating members, each of the regulating members is arranged around the corresponding powder discharge port, and one end of each of the regulating members is connected with the rack, when the rack moves, the rack is used to drive each of the regulating members to adjust the powder discharge aperture of the corresponding powder discharge port, the first power unit is arranged at one side of the storage tank, the moving end of the first power unit extends into the first chamber and is connected with the rack, and the first power unit is used to drive the rack to reciprocatingly move in the first chamber along the direction in which the first chamber is opened.
[0010] Further, a plurality of second chambers are arranged in the storage tank, each of the second chambers is arranged around the corresponding powder discharge port and is communicated with the powder discharge port, each of the second chambers is also communicated with the first chamber, and each of the regulating members is arranged in the corresponding second chamber;
[0011] The regulating member comprises a first transmission ring rotatingly arranged in the second chamber, the first transmission ring is coaxially arranged with the corresponding powder discharge port, and an outer gear ring engaged with the rack is arranged on the first transmission ring, when the rack moves, the rack is engaged with each of the outer gear rings to drive each of the first transmission rings to rotate around the center of the corresponding powder discharge port, a plurality of arc-shaped guide grooves are circumferentially distributed on the first transmission ring, a second transmission ring is arranged below the first transmission ring, the second transmission ring is arranged in the second chamber, and a sliding groove corresponding to each of the guide grooves is arranged on the top surface of the second transmission ring, a plurality of adjusting pieces are circumferentially distributed between the first transmission ring and the second transmission ring, the top surface of each of the adjusting pieces is slidingly arranged in the corresponding guide groove in sequence, the bottom of each of the adjusting pieces is slidingly arranged in the corresponding sliding groove, and the top surface of each of the adjusting pieces abuts the bottom of the next adjusting piece in sequence, so that the adjusting aperture for controlling the size of the powder discharge aperture is formed between each of the adjusting pieces, the adjusting aperture is coaxially arranged with the powder discharge port, and when the first transmission ring rotates, the first transmission ring drives each of the adjusting pieces to move towards or away from the center of the powder discharge port.
[0012] Further, a scraping ring is arranged at the inner ring of the first transmission ring, the scraping ring is coaxially arranged with the first transmission ring, and the scraping surface of the scraping ring is in contact with the top surface of each of the adjusting pieces, and the scraping ring is used to scrape off the dry powder attached to the top surface of each of the adjusting pieces.
[0013] Further, the storage tank is provided with stirring components, the stirring components include stirring rods arranged in the storage tank along the distribution direction of the powder discharge ports, and a second power unit arranged on one side of the storage tank, a moving end of the second power unit extends into the storage tank and is connected with the stirring rods, and the connection between the second power unit and the storage tank is a dynamic sealing connection, and the second power unit is used for driving the stirring rods to rotate.
[0014] Further, the conveying components include a conveying belt assembly arranged below the storage tank, and a connecting frame arranged between the conveying belt assembly and the storage tank and used for supporting the storage tank, and a plurality of positioning assemblies are arranged on the conveying belt assembly, each of the positioning assemblies includes a plurality of positioning seats used for restricting the movement of the dry powder barrels, each of the positioning seats is distributed along the distribution direction of the powder discharge ports, and the mounting positions of the positioning seats correspond to the opening positions of the powder discharge ports one by one, and when the conveying belt assembly works and drives the conveying belt to drive each of the positioning seats in the same positioning assembly to move below the storage tank, each of the positioning seats is arranged below the corresponding powder discharge port.
[0015] Further, a plurality of flow guide rings are arranged on the storage tank, each of the flow guide rings is vertically and slidably arranged at the corresponding powder discharge port, and each of the flow guide rings is used for guiding the dry powder to be discharged.
[0016] Further, the storage tank is provided with lifting components, the lifting components include third power units arranged on both sides of the storage tank, respectively, and a connecting plate arranged below each of the third power units, and the two ends of the connecting plate are connected with the moving ends of the corresponding third power units, respectively, the third power units are used for driving the connecting plate to vertically and reciprocally move, the connecting plate is connected with the flow guide rings, and the connecting plate drives the flow guide rings to move together when the connecting plate vertically and reciprocally moves.
[0017] The beneficial effects of the present application are as follows:
[0018] According to the present application, the filling components and the conveying components are matched, when the conveying components convey the dry powder barrels to below the corresponding powder discharge ports, the adjusting assembly opens the powder discharge ports to fill the dry powder barrels, and the powder discharging amount of the powder discharge ports is adjusted according to the capacity of the dry powder barrels, when the capacity of the dry powder barrel is large, the adjusting assembly increases the powder discharging amount of the powder discharge ports to reduce the filling time, and when the capacity of the dry powder barrel is small, the adjusting assembly reduces the powder discharging amount of the powder discharge ports to avoid the dry powder from being accidentally overflowed, so that the powder discharging amount of the powder discharge ports can be adjusted according to the capacity of the dry powder barrel without stopping the line, and the work efficiency is improved. BRIEF DESCRIPTION OF DRAWINGS
[0019] Figure 1 is a perspective view of the filling equipment.
[0020] Figure 2 is the first sectional view of the filling equipment of the utility model;
[0021] Figure 3 is Figure 2 is the enlarged view of A in the middle;
[0022] Figure 4 is the second sectional view of the filling equipment of the utility model;
[0023] Figure 5 is the enlarged view of B in the middle; Figure 4
[0024] Figure 6 is the structural view of the regulating member;
[0025] Figure 7 is the exploded view of the regulating member.
[0026] Explanation of reference signs:
[0027] 1, filling part; 11, storage tank; 111, feeding port; 112, powder discharge port; 113, first cavity; 114, second cavity; 12, adjusting assembly; 121, rack; 122, regulating member; 1221, first transmission ring; 1222, outer gear ring; 1223, guide groove; 1224, second transmission ring; 1225, sliding groove; 1226, adjusting piece; 1227, adjusting port; 123, first power unit; 13, flow guide ring; 14, connecting frame; 2, conveying part; 21, conveying belt assembly; 22, positioning seat; 3, scraping ring; 4, stirring part; 41, stirring rod; 42, second power unit; 5, lifting part; 51, third power unit; 52, connecting plate; 6, dry powder barrel. Specific embodiments
[0028] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. The embodiments in the application and the features in the embodiments can be combined with each other without conflict.
[0029] Referring to Figures 1-7 .
[0030] The utility model discloses a kind of filling equipment, comprising:
[0031] The filling part 1 comprises a storage tank 11 for storing dry powder, the storage tank 11 is provided with a feeding port 111 on one side, and a plurality of powder discharge ports 112 for discharging dry powder are further provided below the storage tank 11, and the adjusting assembly 12 is arranged in the storage tank 11 and communicates with each powder discharge port 112, and the adjusting assembly 12 can adjust the powder discharge aperture of each powder discharge port 112, so as to control the powder discharge amount of each powder discharge port 112.
[0032] The conveying part 2 is arranged below the storage tank 11 and is used for conveying the dry powder barrels 6.
[0033] In a specific implementation, before the filling work is performed, each powder discharge port 112 is closed through the adjusting assembly 12, and an external powder conveying part (not shown in the figure) is connected with the feeding port 111 of the storage tank 11, so that the dry powder is conveyed into the storage tank 11 until the dry powder fills the storage tank 11, when the conveying part 2 conveys each dry powder barrel 6 to below the corresponding powder discharge port 112, the conveying part 2 stops working, the adjusting assembly 12 opens each powder discharge port 112 and adjusts the powder discharge aperture of each powder discharge port 112 according to the actual aperture of the dry powder barrel 6, so as to fill the dry powder into the corresponding dry powder barrel 6, when the capacity of the dry powder barrel 6 is large, the adjusting assembly 12 enlarges the powder discharge aperture of each powder discharge port 112, so as to increase the powder discharge amount of each powder discharge port 112, reduce the filling time and avoid that the filling time is too long, when the capacity of the dry powder barrel 6 is small, the adjusting assembly 12 reduces the powder discharge aperture of each powder discharge port 112, so as to reduce the powder discharge amount of each powder discharge port 112, so that the powder discharge amount of each powder discharge port 112 is more controllable without significantly affecting the filling time, and the overflow of the dry powder is avoided.
[0034] The utility model discloses, through the cooperation between filling part 1 and conveying part 2, when conveying part 2 conveys each dry powder barrel 6 to below the corresponding powder discharge port 112, adjusting assembly 12 opens each powder discharge port 112 and fills each dry powder barrel 6, and according to the capacity of dry powder barrel 6, the powder discharge amount of each powder discharge port 112 is adjusted, when the capacity of dry powder barrel 6 is large, adjusting assembly 12 increases the powder discharge amount of each powder discharge port 112 to reduce the filling time, when the capacity of dry powder barrel 6 is small, adjusting assembly 12 reduces the powder discharge amount of each powder discharge port 112, and the accidental overflow of dry powder is avoided, so that the powder discharge amount of each powder discharge port 112 can be adjusted according to the capacity of dry powder barrel 6 without stopping the line, and the working efficiency is improved.
[0035] In an embodiment, the first cavity 113 is arranged on one side of each powder discharge port 112 along the distribution direction of the powder discharge port 112.
[0036] The adjusting assembly 12 comprises a rack 121 slidingly arranged in the first chamber 113 and a plurality of adjusting members 122, each adjusting member 122 is arranged around a corresponding powder outlet 112, and one end of each adjusting member 122 is connected with the rack 121, when the rack 121 moves, the rack 121 is used to drive each adjusting member 122 to adjust the powder outlet diameter of the corresponding powder outlet 112, and the adjusting assembly 12 further comprises a first power unit 123 arranged at one side of the storage tank 11, the moving end of the first power unit 123 extends into the first chamber 113 and is connected with the rack 121, and the first power unit 123 is used to drive the rack 121 to reciprocatingly move in the first chamber 113 along the direction in which the first chamber 113 is opened.
[0037] In this way, when it is needed to increase the powder output, the first power unit 123 drives the rack 121 to move away from the first power unit 123, the rack 121 is connected with each adjusting member 122 and drives each adjusting member 122 to expand the powder outlet diameter of the corresponding powder outlet 112, when it is needed to reduce the powder output, the first power unit 123 drives the rack 121 to move close to the first power unit 123, the rack 121 drives each adjusting member 122 to reduce the powder outlet diameter of the corresponding powder outlet 112, and the adjustment is convenient.
[0038] Preferably, the first power unit 123 can adopt a cylinder in the prior art.
[0039] In an embodiment, a plurality of second chambers 114 are further arranged in the storage tank 11, each second chamber 114 is arranged around a corresponding powder outlet 112 and communicates with the powder outlet 112, each second chamber 114 further communicates with the first chamber 113, and each adjusting member 122 is arranged in a corresponding second chamber 114;
[0040] The regulating member 122 comprises a first transmission ring 1221 rotatably arranged in the second chamber 114, the first transmission ring 1221 is coaxially arranged with the corresponding powder outlet 112, and the first transmission ring 1221 is provided with an outer gear ring 1222 which is engaged with the gear rack 121, when the gear rack 121 moves, the gear rack 121 is engaged with each outer gear ring 1222 to drive each first transmission ring 1221 to rotate with the center of the corresponding powder outlet 112 as the center, and the first transmission ring 1221 is also circumferentially distributed with a plurality of arc-shaped guide grooves 1223, and the first transmission ring 1221 is further provided below with a second transmission ring 1224, the second transmission ring 1224 is arranged in the second chamber 114, and the top surface of the second transmission ring 1224 is provided with a sliding groove 1225 corresponding to each guide groove 1223, and the first transmission ring 1221 and the second transmission ring 1224 are also circumferentially distributed with a plurality of adjusting pieces 1226, the top surface of each adjusting piece 1226 is sequentially and slidingly arranged in the corresponding guide groove 1223, the bottom of each adjusting piece 1226 is slidingly arranged in the corresponding sliding groove 1225, and each adjusting piece 1226 is sequentially and abuttingly arranged at the head and tail, so that the adjusting pieces 1226 are formed between each other to form an adjusting opening 1227 for controlling the powder outlet diameter, and the adjusting opening 1227 is coaxially arranged with the powder outlet 112, when the first transmission ring 1221 rotates, the first transmission ring 1221 drives each adjusting piece 1226 to move towards or away from the center of the powder outlet 112.
[0041] In this way, when it is necessary to increase the powder output, the gear rack 121 moves away from the first power unit 123 and drives the first transmission ring 1221 to rotate, at this time, the first transmission ring 1221 moves each adjusting piece 1226 relatively, so that each adjusting piece 1226 slides in the corresponding guide groove 1223 and the sliding groove 1225, each adjusting piece 1226 moves away from the center of the powder outlet 112, so that the adjusting opening 1227 between each adjusting piece 1226 is enlarged, and each adjusting piece 1226 does not interfere with the dry powder outlet, so as to increase the powder discharge flow, when it is necessary to reduce the powder output, the gear rack 121 drives the first transmission ring 1221 to rotate in the opposite direction, at this time, the first transmission ring 1221 drives each adjusting piece 1226 to move towards the center of the powder outlet 112, so as to reduce the adjusting opening 1227 between each adjusting piece 1226, and each adjusting piece 1226 interferes with the dry powder outlet according to the extension amount, so as to reduce the powder discharge flow.
[0042] In an embodiment, the inner ring of the first transmission ring 1221 is provided with a scraping ring 3, the scraping ring 3 is coaxially arranged with the first transmission ring 1221, and the scraping surface of the scraping ring 3 is in contact with the top surface of each adjusting piece 1226, and the scraping ring 3 is used to scrape off the dry powder attached to the top surface of each adjusting piece 1226.
[0043] In this way, when each adjusting piece 1226 moves away from the center of the powder discharge port 112, each adjusting piece 1226 moves relative to the scraping ring 3. As each adjusting piece 1226 continues to move, the scraping ring 3 scrapes the dry powder adhering to the top surface of each adjusting piece 1226, reducing the dry powder entering the gap between each adjusting piece 1226 and the first transmission ring 1221.
[0044] In an embodiment, the storage tank 11 is provided with a stirring component 4, which includes a stirring rod 41 arranged in the storage tank 11 along the distribution direction of the powder discharge port 112, and a second power unit 42 arranged on one side of the storage tank 11. The moving end of the second power unit 42 extends into the storage tank 11 and is connected to the stirring rod 41. The connection between the second power unit 42 and the storage tank 11 is a dynamic seal connection. The second power unit 42 is used to drive the stirring rod 41 to rotate.
[0045] In this way, when filling the dry powder, the second power unit 42 drives the stirring rod 41 to rotate in the storage tank 11, so that the stirring rod 41 stirs and scatters the dry powder in the tank, avoiding the accumulation of dry powder in the tank and affecting the powder discharge efficiency.
[0046] Preferably, the second power unit 42 can adopt an electric motor in the prior art.
[0047] In an embodiment, the conveying component 2 includes a conveying belt assembly 21 arranged below the storage tank 11. A connecting frame 14 for supporting the storage tank 11 is arranged between the conveying belt assembly 21 and the storage tank 11. The conveying belt assembly 21 is further provided with a plurality of positioning assemblies on the transmission belt. Each positioning assembly includes a plurality of positioning seats 22 for restricting the movement of the dry powder barrel 6. Each positioning seat 22 is distributed along the arrangement direction of the powder discharge port 112. The installation position of each positioning seat 22 corresponds to the opening position of each powder discharge port 112. When the conveying belt assembly 21 works and the transmission belt drives each positioning seat 22 in the same positioning assembly to move below the storage tank 11, each positioning seat 22 is arranged directly below the corresponding powder discharge port 112.
[0048] In this way, when conveying the dry powder barrel 6, an external placing component (not shown in the figure) places each dry powder barrel 6 into the corresponding positioning seat 22. When the conveying belt assembly 21 conveys the dry powder barrel 6, each positioning seat 22 prevents the corresponding dry powder barrel 6 from moving unexpectedly on the transmission belt, thereby avoiding misalignment between the dry powder barrel 6 and the corresponding powder discharge port 112 during filling.
[0049] It should be noted that the conveying belt assembly 21 is well known to those skilled in the art, and therefore its structure and function will not be described in detail here.
[0050] In an embodiment, the storage tank 11 is further provided with a plurality of flow guide rings 13, each flow guide ring 13 is vertically sleeved at a corresponding powder outlet 112, and each flow guide ring 13 is used to guide the dry powder to be discharged;
[0051] The storage tank 11 is further provided with a lifting component 5, the lifting component 5 comprises third power units 51 arranged on both sides of the storage tank 11 respectively, each third power unit 51 is further provided with a connecting plate 52 below, and both ends of the connecting plate 52 are connected with the moving end of the corresponding third power unit 51 respectively, the third power unit 51 is used to drive the connecting plate 52 to move vertically and reciprocally, the connecting plate 52 is connected with each flow guide ring 13, and when the connecting plate 52 moves vertically and reciprocally, the connecting plate 52 drives each flow guide ring 13 to move together.
[0052] In this way, when the small-size dry powder barrel 6 is filled, the third power unit 51 drives each flow guide ring 13 to move towards the corresponding dry powder barrel 6 through the connecting plate 52, so that the dry powder can be filled into the dry powder barrel 6 more accurately, and the dry powder is prevented from spilling accidentally, when the large-size dry powder barrel 6 is filled, the third power unit 51 drives each flow guide ring 13 to move away from the corresponding dry powder barrel 6 through the connecting plate 52, until each flow guide ring 13 moves above the corresponding dry powder barrel 6, so that the filling efficiency is ensured, and each flow guide ring 13 is prevented from interfering with the movement of the corresponding dry powder barrel 6, and the applicability is improved.
[0053] Preferably, the third power unit 51 can adopt a cylinder in the prior art.
[0054] The above only describes the preferred embodiments of the present application, and is not used to limit the present application, any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application should be included in the protection scope of the present application. In addition, "a plurality of", "a plurality of groups", "several" means two or more.
Claims
1. A filling device, characterized in that, include: The filling component (1) includes a storage tank (11) for storing dry powder. A feed inlet (111) is provided on one side of the storage tank (11). A plurality of powder discharge ports (112) for discharging dry powder are also provided below the storage tank (11). The component also includes an adjustment component (12) disposed in the storage tank (11). The adjustment component (12) is connected to each of the powder discharge ports (112). The adjustment component (12) can adjust the powder discharge diameter of each of the powder discharge ports (112) to control the powder discharge amount of each of the powder discharge ports (112). A conveying component (2) is disposed below the storage tank (11) for conveying dry powder barrels (6).
2. The filling equipment according to claim 1, characterized in that, The storage tank (11) has a first chamber (113) arranged along the distribution direction of the powder discharge port (112), and the first chamber (113) is arranged on one side of each of the powder discharge ports (112); The adjustment assembly (12) includes a rack (121) slidably disposed in the first chamber (113) and a plurality of adjustment components (122). Each adjustment component (122) surrounds the corresponding powder discharge port (112), and one end of each adjustment component (122) is connected to the rack (121). When the rack (121) moves, the rack (121) is used to drive each adjustment component (122) to adjust the powder discharge orifice diameter of the corresponding powder discharge port (112). The assembly also includes a first power unit (123) disposed on one side of the storage tank (11). The moving end of the first power unit (123) extends into the first chamber (113) and is connected to the rack (121). The first power unit (123) is used to drive the rack (121) to reciprocate in the first chamber (113) along the opening direction of the first chamber (113).
3. The filling equipment according to claim 2, characterized in that, The storage tank (11) is further provided with a plurality of second chambers (114), each second chamber (114) surrounding the corresponding powder discharge port (112) and communicating with the powder discharge port (112), each second chamber (114) also communicating with the first chamber (113), and each regulating component (122) is respectively disposed in the corresponding second chamber (114); The regulating component (122) includes a first transmission ring (1221) rotatably disposed in the second chamber (114). The first transmission ring (1221) is coaxially disposed with the corresponding powder discharge port (112), and the first transmission ring (1221) is provided with an outer gear ring (1222) that meshes with the rack (121). When the rack (121) moves, the rack (121) meshes with each of the outer gear rings (1222) to drive each of the first transmission rings (1221) to rotate around the center of the corresponding powder discharge port (112). The first transmission ring (1221) is also circumferentially distributed with a plurality of arc-shaped guide grooves (1223). A second transmission ring (1224) is provided below the first transmission ring (1221). The second transmission ring (1224) is disposed in the second chamber (114) and the ... 24) has a sliding groove (1225) on its top surface that corresponds one-to-one with each of the guide grooves (1223). A plurality of adjusting pieces (1226) are also circumferentially distributed between the first transmission ring (1221) and the second transmission ring (1224). The top surface of each adjusting piece (1226) is slidably disposed in the corresponding guide groove (1223) and its bottom is slidably disposed in the corresponding sliding groove (1225). The ends of each adjusting piece (1226) abut against each other in sequence, thereby forming an adjusting port (1227) between each adjusting piece (1226) for controlling the size of the powder outlet. The adjusting port (1227) is coaxially disposed with the powder outlet (112). When the first transmission ring (1221) rotates, the first transmission ring (1221) drives each adjusting piece (1226) to move toward or away from the center of the powder outlet (112).
4. The filling equipment according to claim 3, characterized in that, The inner ring of the first transmission ring (1221) is provided with a scraper ring (3). The scraper ring (3) is coaxially arranged with the first transmission ring (1221) and its scraping surface is in contact with the top surface of each of the adjustment plates (1226). The scraper ring (3) is used to scrape off the dry powder attached to the top surface of each of the adjustment plates (1226).
5. The filling equipment according to claim 1, characterized in that, The storage tank (11) is provided with a stirring component (4). The stirring component (4) includes a stirring rod (41) arranged in the storage tank (11) along the distribution direction of the powder discharge port (112), and also includes a second power unit (42) arranged on one side of the storage tank (11). The moving end of the second power unit (42) extends into the storage tank (11) and is connected to the stirring rod (41). The connection between the second power unit (42) and the storage tank (11) is a dynamic seal connection. The second power unit (42) is used to drive the stirring rod (41) to rotate.
6. The filling equipment according to claim 1, characterized in that, The conveying component (2) includes a conveyor belt assembly (21) disposed below the storage tank (11). A connecting frame (14) for supporting the storage tank (11) is also provided between the conveyor belt assembly (21) and the storage tank (11). Multiple positioning components are also provided on the conveyor belt of the conveyor belt assembly (21). The positioning components include multiple positioning seats (22) for constraining the movement of the dry powder barrel (6). Each positioning seat (22) is distributed along the arrangement direction of the powder discharge port (112), and the installation position of each positioning seat (22) corresponds one-to-one with the opening position of each powder discharge port (112). When the conveyor belt assembly (21) works, its conveyor belt drives each positioning seat (22) in the same positioning component to move to below the storage tank (11). At this time, each positioning seat (22) is respectively positioned directly below the corresponding powder discharge port (112).
7. The filling equipment according to claim 1, characterized in that, The storage tank (11) is also provided with a plurality of flow guide rings (13), each of the flow guide rings (13) being vertically slidably sleeved at the corresponding powder discharge port (112), and each of the flow guide rings (13) being used to guide the dry powder to be discharged; The storage tank (11) is also provided with a lifting component (5). The lifting component (5) includes a third power unit (51) respectively disposed on both sides of the storage tank (11). A connecting plate (52) is also provided below each of the third power units (51). The two ends of the connecting plate (52) are respectively connected to the moving ends of the corresponding third power unit (51). The third power unit (51) is used to drive the connecting plate (52) to move vertically back and forth. The connecting plate (52) is connected to each of the diversion rings (13). When the connecting plate (52) moves vertically back and forth, the connecting plate (52) drives each of the diversion rings (13) to move together.