Resin cartridge bin

By designing a resin cartridge compartment, the efficient transport of resin cartridges is achieved through the use of a vibrating plate and a chain propulsion mechanism, solving the problems of storage capacity and operational complexity, and improving the applicability and ease of maintenance of the equipment.

CN223659131UActive Publication Date: 2025-12-12JIANGXI XINTONG MASCH MFG CO LTD
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Patent Information

Application Number
CN202520173505.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-26
Publication Date
2025-12-12
Estimated Expiration
2035-01-26

AI Technical Summary

Technical Problem

Existing fully automatic resin cartridge installation devices have limited storage capacity, low efficiency, complex operation, and inconvenient maintenance.

Method used

The system adopts a resin cartridge storage structure, including a resin cartridge, a resin guide seat, and a chain-type cartridge propulsion mechanism. The cartridges are dropped in an orderly manner by a vibrating plate, and the combination of the guide seat and the chain propulsion mechanism achieves efficient conveying and simplifies the operation process.

Benefits of technology

It improves the storage capacity and conveying efficiency of resin drug rolls, is easy to operate, has good equipment applicability, and is easy to maintain.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model particularly discloses a resin cartridge bin. The resin cartridge bin comprises a resin bin body, a resin guide seat and a chain type cartridge pushing mechanism. The resin bin is used for containing resin cartridges of various specifications. A vibration plate is arranged in the resin bin and used for enabling the resin cartridges to fall down to the resin guide base in order along the side wall of the resin bin, and the accumulation or clamping condition is avoided. The two ends of the resin guide seat are connected with a medicine outlet of the resin bin and the chain type medicine roll pushing mechanism respectively, the medicine outlet is used for outputting resin medicine rolls to target positions, and the chain type medicine roll pushing mechanism is used for pushing the resin medicine rolls on the resin guide seat to the medicine outlet. According to the resin cartridge bin, by optimizing the structure of the resin cartridge bin, the resin cartridge bin has the good storage capacity and conveying efficiency, the operation process is simple, and maintenance is easy.
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Description

Technical Field

[0001] This utility model relates to the technical field of resin anchoring, and more specifically, to a resin medicine cartridge. Background Technology

[0002] Resin anchoring agent is a two-component packaged roll material commonly used in tunnel support, shaft installation, and prestressed anchor reinforcement in hydropower projects. The resin roll is mainly composed of unsaturated polyester resin, marble powder, accelerator, and excipients in a specific ratio. Currently, resin rolls are widely used in mining, tunnel construction, and underground engineering support, and their performance plays a crucial role in the stability and safety of the project.

[0003] In the prior art, by improving the filling equipment and method of resin cartridges, such as CN114000901B, a fully automatic resin cartridge installation device is provided. This device includes a storage chamber component for storing resin cartridges. The chamber is cylindrical, composed of a plate and two circumferentially distributed steel pipes, each containing a resin cartridge. An air-blowing component is installed at the lower end of the chamber support, using pressurized gas to install the resin cartridges into anchor bolt holes. An air-blowing channel is installed on the air-blowing component support. The air-blowing channel has a discharge steel pipe. During resin cartridge installation, the discharge steel pipe is concentrically arranged with the inner or outer steel pipe within the chamber. The discharge steel pipe is also connected to an air inlet. Under the action of compressed air, the air inlet blows the resin cartridges from the discharge steel pipe through its outlet and into the anchor bolt holes.

[0004] The aforementioned application solution for resin cartridges automates the filling process by modifying the filling equipment, thereby improving the safety of the filling operation. However, it still has certain drawbacks. On the one hand, the capacity of this fully automatic resin cartridge installation device is limited. Its cylindrical chamber consists of two rings of steel pipes, with each pipe storing one resin cartridge. Due to the limited number of steel pipes, the storage capacity is limited and cannot meet the needs of large-volume cartridge use. Each rotation of the chamber can only remove one cartridge, resulting in low work efficiency. On the other hand, the operation of the resin cartridges in this fully automatic installation device is inconvenient. The steel pipe design makes the filling and removal process of the cartridges relatively complex, requiring a servo motor to rotate and align with the air blowing channel. Maintenance and replacement operations are cumbersome. Utility Model Content

[0005] The purpose of this invention is to provide a resin drug cartridge that optimizes the structure of the resin drug cartridge, thereby enabling it to have better storage capacity and conveying efficiency, with a simple operation process and easy maintenance.

[0006] According to the purpose of this application, a resin cartridge container is provided, including a resin cartridge, a resin guide seat, and a chain-type cartridge propulsion mechanism; the resin cartridge is used to accommodate resin cartridges of various specifications; a vibrating plate is provided inside the resin cartridge, which is used to make the resin cartridges fall orderly along the side wall of the resin cartridge to the resin guide seat, avoiding accumulation or jamming; the two ends of the resin guide seat are respectively connected to the cartridge outlet of the resin cartridge and the chain-type cartridge propulsion mechanism, the cartridge outlet is used to output the resin cartridges to the target position, and the chain-type cartridge propulsion mechanism is used to push the resin cartridges on the resin guide seat to the cartridge outlet.

[0007] In some embodiments, the resin chamber is further provided with a driven plate, and the vibrating plate is provided with a top plate; wherein, one end of the top plate is connected to the vibrating plate, and the other end of the top plate abuts against the driven plate, so that the vibrating plate and the driven plate can move synchronously.

[0008] In some embodiments, the resin chamber is further provided with a camshaft, and the end of the camshaft is provided with a sprocket; at least one eccentric block is provided on the camshaft; the eccentric block abuts against the vibrating plate, wherein the camshaft can drive the eccentric block to rotate, and the eccentric block can drive the vibrating plate to move repeatedly.

[0009] In some embodiments, the resin chamber is further provided with a retaining ring shaft, and the end of the retaining ring shaft is provided with a sprocket; the retaining ring shaft is provided with at least one retaining ring; the retaining ring is provided with a drug loading groove that matches the resin cartridge; the retaining ring shaft can drive the retaining ring to rotate to adjust the orientation of the drug loading groove; after the resin cartridge falls orderly along the side wall of the resin chamber into the drug loading groove, the orientation of the drug loading groove is adjusted to ensure that the resin cartridge falls accurately into the resin guide seat.

[0010] In some embodiments, the sprocket is driven by a motor and rotates.

[0011] In some embodiments, the resin tank is further provided with a snap ring spare area; the snap ring spare area is provided with at least one snap ring post, and the snap ring post is fitted with at least one snap ring, and the snap ring spare area is used to place spare snap rings.

[0012] In some embodiments, the resin chamber is further provided with an adjustment plate, wherein by adjusting the position of the adjustment plate within the resin chamber, the resin chamber can be adapted to resin cartridges of different lengths.

[0013] In some embodiments, the resin container includes a drug inlet for inserting resin drug cartridges, the drug inlet having at least one container cover for opening or closing the drug inlet.

[0014] In some embodiments, a lid sensor is also included; the lid sensor is disposed at the drug inlet; the lid sensor is used to detect whether the drug inlet is in an open state.

[0015] In some embodiments, a drug roll quantity sensor is also included; the drug roll quantity sensor is disposed on both sides of the resin tank; the drug roll quantity sensor is used to detect whether the resin drug rolls in the resin tank are used up.

[0016] According to the technical solution of this utility model, the resin cartridge hopper includes a resin hopper, a resin guide seat, and a chain-type cartridge propulsion mechanism. The resin cartridge hopper with this structure has a large storage capacity and high conveying efficiency. The resin hopper can accommodate resin cartridges of various specifications. The setting of its vibrating plate allows the resin cartridges to fall orderly along the side wall to the resin guide seat, avoiding the accumulation or jamming of the resin cartridges. The resin cartridges falling onto the resin guide seat are within the pushable range of the chain-type cartridge propulsion mechanism. Thus, the resin cartridges can be pushed to the outlet by the chain-type cartridge propulsion mechanism. The operation process is simple, the equipment has good applicability, and is easy to maintain. Attached Figure Description

[0017] The above and other features, properties and advantages of this application will become more apparent from the following description taken in conjunction with the accompanying drawings and embodiments. It should be noted that the drawings are merely illustrative and are not drawn to scale, and should not be construed as limiting the scope of protection of this application, wherein:

[0018] Figure 1 This is a perspective view of the resin drug cartridge of this application;

[0019] Figure 2 This is a schematic diagram of the internal structure of the resin drug cartridge in this application;

[0020] Figure 3 This is a first-view cross-sectional structural diagram of the resin drug cartridge of this application;

[0021] Figure 4 This is a cross-sectional structural diagram of the resin drug cartridge of this application from a second perspective;

[0022] Figure 5 This is a right view of the frame structure of the resin drug cartridge of this application;

[0023] Figure 6 This is a perspective view of the resin guide seat of this application;

[0024] Figure 7 This is a perspective view of the camshaft and eccentric block structure of this application;

[0025] Figure 8 This is a perspective view of the card roll ring of this application;

[0026] Figure 9 This is a perspective view of the vibrating plate of this application;

[0027] Figure 10 This is a perspective view of the top plate of this application;

[0028] In the diagram: 1. Resin chamber; 11. Vibrating plate; 110. Vibrating shaft; 111. Top plate; 12. Drug outlet; 13. Driven plate; 14. Camshaft; 141. Eccentric block; 15. Snap ring shaft; 151. Snap ring; 152. Drug loading trough; 16. Adjusting plate; 17. Drug inlet; 171. Chamber cover; 18. Guide partition; 181. First guide plate; 182. Second guide plate; 183. Third guide plate; 2. Resin guide seat; 21. Guide groove; 22. Guide slope; 23. Mounting plane; 3. Chain-type drug roll propulsion mechanism; 4. Resin drug roll; 5. Motor; 51. Sprocket; 6. Snap ring spare area; 61. Snap ring post; 7. Chamber cover sensor; 8. Drug roll quantity sensor. Detailed Implementation

[0029] The present invention will now be described in further detail with reference to specific embodiments and accompanying drawings.

[0030] The term "embodiment" as used herein means that a particular feature, structure, or characteristic described in connection with an embodiment may be included in at least one embodiment herein. This phrase appearing in the specification does not necessarily refer to the same embodiment, nor is it limited to mutually exclusive, independent, or alternative embodiments. Those skilled in the art will understand that the embodiments herein can be combined with other embodiments without causing structural conflicts.

[0031] In this description, unless otherwise expressly specified and limited, the technical terms "installation," "connection," "joining," etc., should be interpreted broadly, and can refer to movable connections, fixed connections, or integration. Those skilled in the art can understand the specific meaning of the above terms in the embodiments of this application according to the specific circumstances.

[0032] In this description, terms such as “up,” “down,” “left,” “right,” “height,” “length,” and “width,” which indicate orientation or positional relationships, are intended to accurately describe the embodiments and simplify the description, rather than to limit the parts or structures involved to have a specific orientation or to be installed or operated in a specific orientation.

[0033] Please see Figure 1 and Figure 2The diagram shows a perspective view and an internal structural diagram of the resin pill container of this application. The resin pill container 4 includes a resin container 1, which is used to accommodate resin pills 4 of various specifications. The resin container 1 includes an inlet 17 for inserting the resin pills 4. Specifically, the inlet 17 is provided with two covers 171, which are used to open or close the inlet 17. The resin pill container 4 also includes a chain-type pill propulsion mechanism 3, which can push the resin pills 4. The resin pill container 4 also includes two motors 5 for driving the shaft to rotate.

[0034] Preferably, in this embodiment, the resin drug cartridge 4 compartment further includes a compartment cover sensor 7. The compartment cover sensor 7 is disposed at the drug inlet 17 of the resin cartridge 1. The compartment cover sensor 7 is used to detect whether the drug inlet 17 is in an open state. Specifically, the compartment cover sensor 7 detects the state of the compartment cover 171 through pressure sensing or magnetic sensing. Taking pressure sensing as an example, the compartment cover sensor 7 is located below the compartment cover 171. After the compartment cover 171 flips over and closes the drug inlet 17, the compartment cover 171 presses down on the compartment cover sensor 7. The compartment cover sensor 7 is under pressure and detects that the drug inlet 17 is in a closed state. Conversely, when the compartment cover sensor 7 is not under pressure, it detects that the drug inlet 17 is in an open state. The advantage of this solution is that, with the cooperation of the control module, when the drug inlet 17 is detected to be in an open state, the control module can control the resin drug cartridge 4 compartment to stop working.

[0035] Preferably, in this embodiment, the resin pill 4 compartment further includes a pill quantity sensor 8, which is disposed on both sides of the resin compartment 1. The pill quantity sensor 8 is used to detect whether the resin pills 4 in the resin compartment 1 are used up.

[0036] Preferably, in this embodiment, the resin tank 1 is further provided with a retaining ring spare area 6, the retaining ring spare area 6 is provided with at least one retaining ring post 61, and the retaining ring post 61 is fitted with at least one retaining ring 151, the retaining ring spare area 6 is used to place a spare retaining ring 151.

[0037] Please see Figure 3 and Figure 4The diagram shows a first-view cross-sectional view and a second-view cross-sectional view of the resin cartridge compartment of this application. The resin cartridge compartment 4 also includes a dispensing port 12, which is used to output the resin cartridge 4 to the target position. Specifically, the dispensing port 12 is funnel-shaped to facilitate the output of the resin cartridge 4. The resin cartridge compartment 4 also includes a resin guide seat 2, which is located at the lower end of the resin cartridge compartment 4. The two ends of the resin guide seat 2 are respectively connected to the dispensing port 12 of the resin compartment 1 and the chain-type cartridge propulsion mechanism 3. The resin compartment 1 is provided with a vibrating plate 11. One end of the vibrating plate 11 is rotatably connected to the resin compartment 1, and the other end of the vibrating plate 11 is set towards the side wall of the resin compartment 1. The vibrating plate 11 is used to make the resin cartridge 4 fall orderly along the side wall of the resin compartment 1 to the resin guide seat 2. By repeatedly oscillating the vibrating plate 11, accumulation or jamming can be avoided. The chain-type pill delivery mechanism 3 is used to push the resin pills 4 on the resin guide seat 2 to the drug outlet 12. The advantage of this solution is that the storage capacity of the resin pill 4 chamber is large and the conveying efficiency is high. The resin chamber 1 can be used to accommodate resin pills 4 of various specifications. Furthermore, the setting of the vibrating plate 11 allows the resin pills 4 to fall orderly along the side wall to the resin guide seat 2, avoiding accumulation or jamming of the resin pills 4. Furthermore, the resin pills 4 falling onto the resin guide seat 2 are within the pushable range of the chain-type pill delivery mechanism 3. The resin pills 4 can be pushed to the outside of the drug outlet 12 by the chain-type pill delivery mechanism 3. The operation process of the resin pill 4 chamber is simple, the amount of manual operation is small, the equipment has good applicability and is easy to maintain.

[0038] The resin chamber 1 is also provided with a driven plate 13. One end of the driven plate 13 is rotatably connected to the resin chamber 1, and the other end of the driven plate 13 is set towards the side wall of the resin chamber 1. Furthermore, the vibrating plate 11 is provided with a top plate 111. One end of the top plate 111 is connected to the vibrating plate 11, and the other end of the top plate 111 abuts against the driven plate 13. The vibrating plate 11 and the driven plate 13 can move synchronously. Specifically, the top plate 111 is connected to the vibrating plate 11 by a bolt structure, and the abutting end of the top plate 111 and the driven plate 13 is arc-shaped. It is preferable that by using the driven plate 13 to support part of the resin cartridge 4, the pressure on the vibrating plate 11 supporting the resin cartridge 4 can be reduced.

[0039] The resin chamber 1 is also equipped with a camshaft 14. Specifically, there are two camshafts 14 in the resin chamber 1. At least one eccentric block 141 is provided on the camshaft 14. Specifically, there are three eccentric blocks 141 on the camshaft 14. The eccentric blocks 141 are teardrop-shaped. The eccentric blocks 141 abut against the vibrating plate 11 and rotate synchronously with the camshaft 14. The rotation of the camshaft 14 drives the eccentric blocks 141 to rotate synchronously. The rotation of the eccentric blocks 141 repeatedly lifts and drives the vibrating plate 11 to move, thereby realizing the repeated oscillation of the vibrating plate 11.

[0040] The resin chamber 1 is equipped with a retaining ring shaft 15, specifically, there are two retaining ring shafts 15 in the resin chamber 1; the retaining ring shaft 15 is equipped with at least one retaining ring 151, specifically, there are four retaining rings 151 on the retaining ring shaft 15, and the retaining rings 151 are circular; the retaining rings 151 are equipped with a drug loading groove 152 that matches the resin cartridge 4, and the drug loading groove 152 is U-shaped. The retaining ring shaft 15 can drive the retaining rings 151 to rotate to adjust the orientation of the drug loading groove 152. Specifically, after the resin cartridge 4 falls orderly along the side wall of the resin chamber 1 into the drug loading groove 152, the orientation of the drug loading groove 152 is adjusted to ensure that the resin cartridge 4 falls accurately into the resin guide seat 2.

[0041] Preferably, in this embodiment, the sprocket 51 is driven and rotated by the motor 5. The end of the camshaft 14 is provided with a sprocket 51, and the end of the retaining ring shaft 15 is provided with a sprocket 51. The two sprockets 51 are connected by a chain. At least one sprocket 51 is connected to the motor 5. The motor 5 drives the sprocket 51 to rotate. The rotating sprocket 51 can drive the other sprocket 51 to rotate through the chain.

[0042] Preferably, in this embodiment, the resin chamber 1 is further provided with an adjustment plate 16. Specifically, by adjusting the setting position of the adjustment plate 16 in the resin chamber 1, the resin chamber 1 can be matched with resin rolls 4 of different lengths.

[0043] Please see Figure 5The image shows a right view of the frame structure of the resin cartridge compartment of this application. A guide partition 18 is provided inside the resin compartment 1, and the guide partition 18 is fixedly connected to the resin compartment 1. Specifically, the guide partition 18 includes a first guide plate 181, two second guide plates 182, and two third guide plates 183. The first guide plate 181 is located in the upper half of the resin compartment 1, and the inlet 17 is located in the upper half of the resin compartment 1. The first guide plate 181 is used to divide the upper half of the resin compartment 1, allowing resin cartridges 4 of different specifications to fall in sections. The two second guide plates 182 are located in the lower half of the resin compartment 1, and are respectively located on both sides of the first guide plate 181. The ends of the second guide plates 182 are connected to the first guide plate 181, and the two second guide plates 182 cooperate to form a U-shaped structure with the opening facing downwards. The two third guide plates 183 are located in the lower half of the resin compartment 1. The third guide plate 183 is located on both sides of the second guide plate 182, which has a U-shaped structure. The third guide plate 183 is a bent plate, and the bends of the two third guide plates 183 are respectively connected to the two second guide plates 182. The included angle of the third guide plate 183 is set away from the second guide plate 182. The third guide plate 183 is used to guide the resin roll to fall. The advantage of this solution is that, through the cooperation of the first guide plate 181, the two second guide plates 182 and the two third guide plates 183, the resin roll can be put into the upper part of the resin chamber 1. The specifications of the output resin roll can be adjusted by controlling the motor 5. It can also cooperate with the vibrating plate 11 to make the resin roll 4 fall orderly along the side wall of the resin chamber 1 to the resin guide seat 2. Furthermore, specifically, the drug outlet 12 is located in the lower part of the resin chamber 1, and the guide partition 18 is located between the drug inlet 17 and the drug outlet 12.

[0044] Please see Figure 6 The figure shows a perspective view of the resin guide seat of this application. The resin guide seat 2 includes a guide groove 21, two guide ramps 22, and two mounting planes 23. The guide groove 21 is structurally matched with the resin cartridge 4 to ensure that the orientation of the resin cartridge 4 on the resin guide seat 2 is accurately aligned with the dispensing port 12. The two guide ramps 22 are located on both sides of the guide groove 21. The two guide ramps 22 are inclined relative to each other and form a funnel structure. The two guide ramps 22 cooperate to allow the resin cartridge 4 to fall easily into the guide groove 21, thereby adjusting the output orientation of the resin cartridge 4. The two mounting planes 23 are located on both sides of the guide groove 21. Specifically, the guide ramps 22 are located between the guide groove 21 and the mounting planes 23. The mounting planes 23 are connected to the resin chamber 1 by bolts. The resin guide seat 2 and the resin chamber 1 are detachably connected.

[0045] Please see Figure 7The figure shows a perspective view of the camshaft and eccentric block structure of this application. The camshaft 14 is provided with three eccentric blocks 141, which are sleeved on the camshaft 14. The three eccentric blocks 141 are spaced apart and have the same eccentric orientation.

[0046] Please see Figure 8 The figure shows a perspective view of the card roll ring of this application. Unless otherwise indicated, the card roll ring 151 includes two annular blocks connected by bolts, wherein at least one annular block is provided with a drug loading groove 152.

[0047] Please see Figure 9 and Figure 10 The diagram shows a perspective view of the vibrating plate and a perspective view of the top plate of this application. The vibrating plate 11 is a rectangular plate. A vibrating shaft 110 is provided on the side of the vibrating plate 11. The vibrating shaft 110 is connected to the vibrating plate 11 and can drive the vibrating plate 11 to rotate. The vibrating plate 11 is provided with connecting screw holes that match the top plate 111. Specifically, the vibrating plate 11 is provided with two sets of connecting screw holes, which are respectively matched with two top plates 111. The structure of the top plate 111 is L-shaped.

[0048] The purpose of the above embodiments is to provide a detailed description of the present invention in conjunction with the accompanying drawings, so that those skilled in the art can understand the technical concept of the present invention. Within the scope of the claims of the present invention, optimization or equivalent replacement of the involved part structure, as well as combination of implementation methods in different embodiments without causing structural and principle conflicts, all fall within the protection scope of the present invention.

Claims

1. A resin-based medicine cartridge, characterized in that, It includes a resin tank (1), a resin guide seat (2), and a chain-type drug cartridge propulsion mechanism (3); The resin container (1) is used to hold resin cartridges (4) of various specifications; The resin chamber (1) is equipped with a vibrating plate (11), which is used to make the resin pills (4) fall orderly along the side wall of the resin chamber (1) to the resin guide seat (2) to avoid accumulation or jamming. The two ends of the resin guide seat (2) are respectively connected to the drug outlet (12) of the resin chamber (1) and the chain-type drug propulsion mechanism (3). The drug outlet (12) is used to output the resin pills (4) to the target position, and the chain-type drug propulsion mechanism (3) is used to push the resin pills (4) on the resin guide seat (2) to the drug outlet (12).

2. The resin-filled drug cartridge according to claim 1, characterized in that, The resin chamber (1) is also provided with a driven plate (13), and the vibrating plate (11) is provided with a top plate (111); wherein, one end of the top plate (111) is connected to the vibrating plate (11), and the other end of the top plate (111) abuts against the driven plate (13), so that the vibrating plate (11) and the driven plate (13) can move synchronously.

3. The resin-filled drug cartridge according to claim 1, characterized in that, The resin chamber (1) is also provided with a camshaft (14), and the end of the camshaft (14) is provided with a sprocket (51); at least one eccentric block (141) is provided on the camshaft (14); The eccentric block (141) abuts against the vibrating plate (11), wherein the camshaft (14) can drive the eccentric block (141) to rotate, and the eccentric block (141) can drive the vibrating plate (11) to move repeatedly.

4. The resin-filled drug cartridge according to claim 1, characterized in that, The resin chamber (1) is also provided with a retaining ring shaft (15), and the end of the retaining ring shaft (15) is provided with a sprocket (51); at least one retaining ring (151) is provided on the retaining ring shaft (15); The retaining ring (151) is provided with a drug loading groove (152) that matches the resin drug roll (4). The retaining ring shaft (15) can drive the retaining ring (151) to rotate so as to adjust the orientation of the drug loading groove (152). After the resin pills (4) fall orderly along the side wall of the resin chamber (1) into the drug loading tank (152), the orientation of the drug loading tank (152) is adjusted so that the resin pills (4) fall accurately into the resin guide seat (2).

5. The resin-filled drug cartridge according to claim 3 or 4, characterized in that, The sprocket (51) is driven by the motor (5) and rotates.

6. The resin-filled drug cartridge according to claim 4, characterized in that, The resin tank (1) is also provided with a spare area for retaining rings (6); The circlip spare area (6) is provided with at least one circlip post (61), and at least one circlip roll (151) is sleeved on the circlip post (61). The circlip spare area (6) is used to place spare circlip rolls (151).

7. The resin-filled drug cartridge according to claim 1, characterized in that, The resin chamber (1) is also provided with an adjustment plate (16), wherein by adjusting the setting position of the adjustment plate (16) in the resin chamber (1), the resin chamber (1) can be matched with resin rolls (4) of different lengths.

8. The resin-filled drug cartridge according to claim 1, characterized in that, The resin container (1) includes a drug inlet (17) for inserting resin drug rolls (4), and the drug inlet (17) is provided with at least one container cover (171) for opening or closing the drug inlet (17).

9. The resin-filled drug cartridge according to claim 8, characterized in that, It also includes a bin cover sensor (7); The lid sensor (7) is located at the medicine inlet (17); The cover sensor (7) is used to detect whether the medicine inlet (17) is in the open state.

10. The resin-filled drug cartridge according to claim 1, characterized in that, It also includes a drug roll quantity sensor (8); The drug roll quantity sensor (8) is located on both sides of the resin tank (1); The drug roll quantity sensor (8) is used to detect whether the resin drug rolls (4) in the resin tank (1) are used up.

Citation Information

Patent Citations

  • A fully automatic resin cartridge installation device

    CN114000901B