A sorting and control mechanism for mineralized filter cartridges

CN224618917UActive Publication Date: 2026-08-11ZHEJIANG JINGXIN NEW MATERIALS CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-04
Publication Date
2026-08-11

AI Technical Summary

Technical Problem

[0003]本实用新型的目的是为了解决现有技术中部分滤芯焊接设备需要工人手动将滤芯放入的问题,而提出的一种矿化滤芯的整控分拣机构

Benefits of technology

[0013]1、该矿化滤芯的整控分拣机构,通过将待加工的矿化滤芯整齐堆放在三角台,依靠矿化滤芯自身的重力依次进入矩形槽内,并在对接板的带动下将矿化滤芯翻转进入加工台上,从而减少人工手动将矿化滤芯放入加工台上,且加工台在加工完成后,圆环内的压缩气将矿化滤芯吹起,使得矿化滤芯的上端与斜板接触,实现将矿化滤芯与圆环分离,便于该焊接设备主体自动持续将多个矿化滤芯有序放入加工台上进行密封焊接工作。

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Patent Text Reader

Abstract

This utility model discloses a sorting mechanism for mineralized filter cartridges, belonging to the field of mineralized filter cartridge sorting. The sorting mechanism includes a welding equipment body with a processing table rotatably connected to it. Multiple mineralized filter cartridges to be processed are arranged on the upper part of the processing table. A placement mechanism for placing the mineralized filter cartridges is connected to one side of the welding equipment body. This utility model neatly stacks the mineralized filter cartridges to be processed on a triangular platform, allowing them to enter a rectangular groove sequentially by their own weight. Driven by a connecting plate, the filter cartridges are flipped onto the processing table, reducing manual placement. Compressed air within a ring blows the filter cartridges, separating them from the ring, facilitating the automatic and continuous placement of multiple filter cartridges onto the processing table for sealing welding.
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Description

Technical Field

[0001] This utility model relates to the field of mineralized filter cartridge sorting technology, and in particular to a sorting mechanism for mineralized filter cartridges. Background Technology

[0002] Mineralized filter cartridges are a type of functional filter cartridge used in water purification equipment. They are mainly used to add beneficial minerals (such as calcium, magnesium, potassium, zinc, etc.) to filtered water to improve its taste and health value. During the production of mineralized filter cartridges, after the filter cartridge and mineralized material are placed inside the outer shell, both ends of the mineralized filter cartridge need to be welded and sealed. However, the existing general welding method requires workers to manually place the mineralized filter cartridges into automatic welding equipment one by one for welding and sealing. This repeated handling of the mineralized filter cartridges increases the monotony of the work and results in low welding efficiency, making it inconvenient for workers to perform welding and sealing work on mineralized filter cartridges in their daily work. Utility Model Content

[0003] The purpose of this invention is to solve the problem that some filter element welding equipment in the prior art requires workers to manually put the filter elements in, and to propose a sorting and control mechanism for mineralized filter elements.

[0004] To achieve the above objectives, the present invention adopts the following technical solution:

[0005] A sorting and control mechanism for mineralized filter cartridges includes a welding equipment body, a processing table rotatably connected to the welding equipment body, a plurality of mineralized filter cartridges to be processed being provided on the upper end of the processing table, a plurality of built-in grooves being provided on the upper end of the processing table, a rectangular block being slidably connected in the built-in grooves, a first spring being provided between the rectangular block and the built-in groove, and a ring being rotatably connected to the upper end of the rectangular block, an air groove being provided on the surface of the rectangular block, the air groove being connected to the ring, a compressed air pump being connected to the surface of the welding equipment body, the compressed air pump being connected to the air groove, and an inclined plate being provided inside the welding equipment body, the inclined plate being located directly above the ring, and a placement mechanism for placing mineralized filter cartridges being connected to one side of the welding equipment body.

[0006] Preferably, the placement mechanism includes a servo motor installed on one side of the welding equipment body, one end of the output shaft of the servo motor is connected to a docking plate, and a plurality of rectangular slots are symmetrically and evenly arranged in the docking plate. A triangular platform is installed on one side of the welding equipment body, and the triangular platform is placed facing the single rectangular slot.

[0007] Preferably, one end of the rectangular groove is rotatably connected to a clamping plate, an L-shaped plate is slidably connected inside the docking plate, the L-shaped plate is slidably connected to the rectangular groove, two long grooves are symmetrically arranged inside the rectangular groove, each long groove is slidably connected to a slider, a rectangular plate is rotatably connected between the two sliders, a pressure plate is slidably connected inside the rectangular groove, and a second spring is provided between the pressure plate and the rectangular groove.

[0008] Preferably, both the docking plate and the clamping plate are cross-shaped.

[0009] Preferably, an arc-shaped plate is fixedly connected inside the main body of the welding equipment. The arc-shaped plate includes a raised section and a circular arc section. The arc-shaped plate is located directly above the processing table and is pressed together with a circular ring. The surface of the raised section is provided with a toothed groove group, and the side of the circular ring is provided with a gear that meshes with the toothed groove group.

[0010] Preferably, the upper end of each ring is provided with an arc plate extending outward from the end.

[0011] Preferably, the rotation axis of the rectangular plate is located on the side close to the pressure plate, and one end of the pressure plate is always above the rectangular plate.

[0012] Compared with the prior art, this utility model provides a sorting and control mechanism for mineralized filter cartridges, which has the following advantages:

[0013] 1. The sorting and control mechanism of this mineralized filter element neatly stacks the mineralized filter elements to be processed on a triangular platform. The mineralized filter elements enter the rectangular groove one by one by their own gravity, and are flipped onto the processing table by the action of the docking plate. This reduces the need for manual placement of the mineralized filter elements on the processing table. After the processing table is completed, the compressed air in the ring blows the mineralized filter elements up, so that the upper end of the mineralized filter elements contacts the inclined plate, thereby separating the mineralized filter elements from the ring. This facilitates the automatic and continuous placement of multiple mineralized filter elements into the processing table for sealing welding by the main body of the welding equipment.

[0014] 2. The sorting and control mechanism of this mineralized filter element rotates the processing table and slides the ring against the surface of the arc plate. When the ring is at the top of the raised section, it is closest to the docking plate, which facilitates the smooth entry of the mineralized filter element from the rectangular groove into the ring. This achieves the initial docking of the mineralized filter element onto the processing table. As the ring continues to slide and rotate in the raised section, the arc plate's rotation corrects the tilted state, thereby automatically and continuously adding mineralized filter elements to be processed to the main body of the welding equipment, improving the sealing welding efficiency of the mineralized filter element. Attached Figure Description

[0015] Figure 1 This is a schematic diagram of the overall structure of a mineralized filter element sorting and control mechanism proposed in this utility model.

[0016] Figure 2 This is a schematic diagram of the docking plate structure of the sorting and control mechanism for a mineralized filter element proposed in this utility model.

[0017] Figure 3 This is a schematic diagram of the rectangular groove side section of a sorting and control mechanism for mineralized filter cartridges proposed in this utility model.

[0018] Figure 4 This is a schematic diagram of part A of the sorting and control mechanism for a mineralized filter element proposed in this utility model.

[0019] Figure 5 This is a schematic diagram of the arc plate structure of the sorting and control mechanism for a mineralized filter element proposed in this utility model.

[0020] Figure 6 This is a schematic diagram of the gear and tooth groove group structure of the sorting and control mechanism for mineralized filter elements proposed in this utility model.

[0021] In the diagram: 1. Main body of welding equipment; 2. Processing table; 3. Mineralized filter element; 4. Built-in slide groove; 5. Rectangular block; 6. First spring; 7. Ring; 8. Air groove; 9. Compressed air pump; 10. Inclined plate; 11. Placement mechanism; 1101. Servo motor; 1102. Docking plate; 1103. Rectangular groove; 1104. Triangular platform; 1105. Clamping plate; 1106. L-shaped plate; 1107. Long groove; 1108. Slider; 1109. Rectangular plate; 1110. Pressure plate; 1111. Second spring; 1112. Arc plate; 1113. Protruding section; 1114. Arc section; 1115. Gear set; 1116. Gear; 1117. Arc plate. Detailed Implementation

[0022] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments.

[0023] In the description of this utility model, it should be understood that the terms "upper", "lower", "front", "rear", "left", "right", "top", "bottom", "inner", "outer", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model.

[0024] Reference Figure 1-6A sorting and control mechanism for mineralized filter cartridges includes a welding equipment body 1, a processing table 2 rotatably connected to the welding equipment body 1, on which mineralized filter cartridges 3 to be processed are reciprocated. The welding equipment body 1 rotates at its upper end and sequentially welds and seals both ends of the mineralized filter cartridges 3 on the upper end of the processing table 2. Multiple mineralized filter cartridges 3 to be processed are provided on the upper end of the processing table 2. Multiple sets of built-in sliding grooves 4 are provided on the upper end of the processing table 2. Rectangular blocks 5 are slidably connected within the built-in sliding grooves 4. A first... A spring 6 is provided, and a ring 7 is rotatably connected to the upper end of a rectangular block 5. The upper end of the ring 7 is provided with an arc plate 1117 extending outwards. An air groove 8 is formed on the surface of the rectangular block 5, communicating with the ring 7. During the rotation of the processing table 2, the rectangular block 5 and the ring 7 can rotate. The mineralized filter element 3 to be processed is placed inside the ring 7. At this time, during the rotation of the ring 7, the rectangular block 5 stretches the first spring 6, causing the rectangular block 5 to press tightly against the edge of the arc plate 1112. The rectangular block 5 can be supported by the arc plate 1112. The shape slides within the built-in groove 4, causing the ring 7 to move closer to the docking plate 1102, which facilitates the entry of the mineralized filter element 3 in the docking plate 1102 into the ring 7. A compressed air pump 9 is connected to the surface of the welding equipment body 1, and the compressed air pump 9 is connected to the air groove 8. An inclined plate 10 is provided inside the welding equipment body 1, located directly above the ring 7. The inclined plate 10 is tilted and located directly above the ring 7 where the mineralized filter element 3 has been welded. At this time, the compressed air pump 9 outputs a section of compressed air, which is sprayed from the air groove 8 inside the ring 7. The flow mechanism pushes the mineralized filter element 3 inside the ring 7 upwards, and it contacts the inclined surface of the inclined plate 10, causing the mineralized filter element 3 to tilt and separate from the ring 7. This facilitates the automatic removal of the mineralized filter element 3 and the automatic placement of the mineralized filter element 3 to be processed by the placement mechanism 11, thereby realizing the automatic welding processing of the mineralized filter element 3. One side of the welding equipment body 1 is connected to the placement mechanism 11 for placing the mineralized filter element 3, which can automatically put the mineralized filter element 3 that needs to be welded and sealed into the ring 7 and perform the sealing welding work.

[0025] The placement mechanism 11 includes a servo motor 1101 mounted on one side of the welding equipment body 1. One end of the output shaft of the servo motor 1101 is connected to a docking plate 1102. The servo motor 1101 can drive the docking plate 1102 to rotate at a specific angle at regular intervals. An arc-shaped plate 1112 is fixedly connected inside the welding equipment body 1. The arc-shaped plate 1112 includes a protruding section 1113 and an arc-shaped section 1114. The protruding section 1113 is close to the docking plate 1102, and the ring 7 is on the protruding section 1114. The protruding section 1113 is closest to the mating plate 1102. The arc-shaped plate 1112 is located directly above the processing table 2, and the arc-shaped plate 1112 is pressed and connected to the ring 7. The surface of the protruding section 1113 is provided with a toothed groove group 1115, and the side of the ring 7 is provided with a gear 1116 that meshes with the toothed groove group 1115. The number of teeth in the toothed groove group 1115 is an integer multiple of the number of teeth in the gear 1116. When the ring 7 slides on the protruding section 1113, the gear 1116 on its surface meshes with the toothed groove group. 1115 meshing transmission occurs, causing the ring 7 to drive the arc plate 1117 to rotate an integer number of revolutions. The side of the arc plate 1117 can gather the inclined mineralized filter element 3 into the ring 7. The docking plate 1102 is symmetrically and evenly provided with multiple rectangular grooves 1103. A triangular platform 1104 is installed on one side of the welding equipment body 1. The triangular platform 1104 and a single rectangular groove 1103 are placed facing each other. The mineralized filter element 3 to be processed is placed into the groove on the surface of the triangular platform 1104 by a conveyor belt or manually. Under the action of gravity, the rectangular groove 1103 closest to the horizontal end of the cross-shaped docking plate 1102 of the mineralized filter element 3 is squeezed into the rectangular groove 1103. At this time, the servo motor 1101 drives the docking plate 1102 to rotate, rotating the rectangular groove 1103 that just contains the mineralized filter element 3 from the horizontal state to the vertical state, and placing it on the same vertical plane as the ring 7, which is conducive to guiding the mineralized filter element 3 in the rectangular groove 1103 into the ring 7.

[0026] A retaining plate 1105 is rotatably connected to one end of a rectangular groove 1103. Both the docking plate 1102 and the retaining plate 1105 are cross-shaped. An L-shaped plate 1106 is slidably connected inside the docking plate 1102. The horizontal end of the L-shaped plate 1106 contacts and presses against one end of the cross-shaped retaining plate 1105. A horizontal plate is provided at the vertical end of the L-shaped plate 1106 to prevent the L-shaped plate 1106 from detaching from the docking plate 1102. When the mineralizing filter element 3 is squeezed into the rectangular groove 1103, the upper end of the mineralizing filter element 3 pushes one end of the cross-shaped retaining plate 1105 to rotate. At this time, the cross-shaped retaining plate 1105... The other end of 105 pushes the L-shaped plate 1106 to slide, causing the mineralizing filter element 3 to enter between the cross-shaped clamping plate 1105 and the L-shaped plate 1106, thereby preventing the mineralizing filter element 3 from separating from the rectangular groove 1103 when it rotates with the docking plate 1102. The L-shaped plate 1106 is slidably connected to the rectangular groove 1103. Two long grooves 1107 are symmetrically arranged in the rectangular groove 1103. A slider 1108 is slidably connected in each of the long grooves 1107. A rectangular plate 1109 is rotatably connected between the two sliders 1108. The rotation axis of the rectangular plate 1109 is located near the pressure. One side of plate 1110, and one end of pressure plate 1110 is always above rectangular plate 1109. Pressure plate 1110 is slidably connected in rectangular groove 1103. A second spring 1111 is provided between pressure plate 1110 and rectangular groove 1103. When mineralizing filter element 3 is squeezed into rectangular groove 1103 and rotates 90 degrees with docking plate 1102, mineralizing filter element 3 changes from horizontal to vertical. The weight of mineralizing filter element 3 presses on pressure plate 1110 and the upper end of rectangular plate 1109, and compresses second spring 1111. 9 drives the slider 1108 to move to the bottom of the rectangular groove 1103. The center of the mineralized filter element 3 is located on the pressure plate 1110. The pressure plate 1110 continues to slide downward in the rectangular groove 1103 and promotes the rectangular plate 1109 to rotate around the axis. This causes the other end of the rectangular plate 1109 to push the lower end of the mineralized filter element 3 out of the rectangular groove 1103 and into the ring 7. This facilitates the automatic addition of the mineralized filter element 3 to be processed to the main body 1 of the welding equipment, thereby reducing the amount of manual insertion and improving the output efficiency of the mineralized filter element 3 through automated processing.

[0027] In this invention, multiple mineralized filter elements 3 to be processed are neatly arranged on a triangular table 1104 by a conveyor belt or manually. At this time, the end mineralized filter element 3 presses the previous mineralized filter element 3 into the rectangular groove 1103, and one end of the mineralized filter element 3 is pushed and enters between the clamping plate 1105 and the L-shaped plate 1106 to form a preliminary fixation of the mineralized filter element 3. The other end contacts the pressure plate 1110 and the rectangular plate 1109. When the servo motor 1101 drives the docking plate 1102 to rotate 90 degrees, the mineralized filter element 3 moves from a horizontal position... When the filter element 3 is in a vertical position, the gravity of the mineralized filter element 3 acts on the pressure plate 1110 and the rectangular plate 1109, causing the pressure plate 1110 and the rectangular plate 1109 to move downwards simultaneously within the rectangular groove 1103. When the sliders 1108 on both sides of the rectangular plate 1109 reach the bottom of the long groove 1107, the rectangular plate 1109 stops moving, and the pressure plate 1110 continues to move downwards and presses against one side of the rectangular plate 1109, causing the rectangular plate 1109 to rotate around the sliders 1108, promoting the pushing of one end of the rectangular plate 1109. The moving mineralizing filter element 3 moves out of the rectangular groove 1103 and into the annular ring 7. At this time, one end of the mineralizing filter element 3 is located between the clamping plate 1105 and the L-shaped plate 1106, and the other end is located inside the annular ring 7. At this time, the main body 1 of the welding equipment drives the annular ring 7 above the processing table 2 to rotate clockwise. The gear 1116 on the surface of the annular ring 7 meshes with the tooth groove group 1115 of the protruding section 1113, so that the arc plate 1117 rotates and contacts the inclined surface of the mineralizing filter element 3. The upper end of the arc plate 1117 extends outward, which can be used to rotate the filter element 3 in the annular ring. The inclined mineralized filter element 3 inside the ring 7 is straightened, thus starting the welding and sealing process. This reduces the amount of manual insertion and improves the welding efficiency of the main body 1 of the welding equipment. After welding is completed, the processing table 2 drives the ring 7 to a specific position. At this time, the compressed air pump 9 outputs compressed gas to blow the mineralized filter element 3 inside the ring 7 upward, and the upper end contacts the inclined plate 10 during the rising process. This causes the mineralized filter element 3 to detach from the ring 7 and enter the centralized storage area, which is conducive to realizing automated welding and sealing of the mineralized filter element 3 and improving the output efficiency of the mineralized filter element 3.

[0028] The above description is only a preferred embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. Any equivalent substitutions or changes made by those skilled in the art within the technical scope disclosed in the present utility model, based on the technical solution and the inventive concept of the present utility model, should be included within the protection scope of the present utility model.

Claims

1. A kind of whole control sorting mechanism of mineralized filter element, including welding equipment main body (1), the welding equipment main body (1) is rotatably connected with processing table (2), and the upper end of processing table (2) is equipped with multiple mineralized filter elements (3) to be processed, it is characterized by, The processing table (2) has multiple sets of built-in sliding grooves (4) on its upper end. A rectangular block (5) is slidably connected in the built-in sliding groove (4). A first spring (6) is provided between the rectangular block (5) and the built-in sliding groove (4). A ring (7) is rotatably connected to the upper end of the rectangular block (5). An air groove (8) is provided on the surface of the rectangular block (5). The air groove (8) is connected to the ring (7). A compressed air pump (9) is connected to the surface of the welding equipment body (1). The compressed air pump (9) is connected to the air groove (8). An inclined plate (10) is provided inside the welding equipment body (1). The inclined plate (10) is located directly above the ring (7). A placement mechanism (11) for placing the mineralized filter element (3) is connected to one side of the welding equipment body (1).

2. The integrated control sorting mechanism of mineralized filter cartridges according to claim 1, characterized in that, The placement mechanism (11) includes a servo motor (1101) installed on one side of the welding equipment body (1). One end of the output shaft of the servo motor (1101) is connected to a docking plate (1102). Multiple rectangular slots (1103) are symmetrically and evenly arranged in the docking plate (1102). A tripod (1104) is installed on one side of the welding equipment body (1). The tripod (1104) and a single rectangular slot (1103) are placed facing each other.

3. A fully automated sorting mechanism for mineralized filter cartridges according to claim 2, characterized in that, One end of the rectangular groove (1103) is rotatably connected to a clamping plate (1105). An L-shaped plate (1106) is slidably connected inside the docking plate (1102). The L-shaped plate (1106) is slidably connected to the rectangular groove (1103). Two long grooves (1107) are symmetrically arranged inside the rectangular groove (1103). A slider (1108) is slidably connected inside each long groove (1107). A rectangular plate (1109) is rotatably connected between the two sliders (1108). A pressure plate (1110) is slidably connected inside the rectangular groove (1103). A second spring (1111) is provided between the pressure plate (1110) and the rectangular groove (1103).

4. The integrated control and sorting mechanism for mineralized filter cartridges of claim 3, wherein, Both the docking plate (1102) and the clamping plate (1105) are cross-shaped.

5. The integrated control and sorting mechanism for mineralized filter cartridges of claim 1, wherein, An arc plate (1112) is fixedly connected inside the main body (1) of the welding equipment. The arc plate (1112) includes a protruding section (1113) and an arc section (1114). The arc plate (1112) is located directly above the processing table (2), and the arc plate (1112) is pressed and connected to the ring (7). The surface of the protruding section (1113) is provided with a tooth groove group (1115), and the side of the ring (7) is provided with a gear (1116) that meshes with the tooth groove group (1115).

6. A fully automated sorting mechanism for mineralized filter cartridges according to claim 5, characterized in that, The upper end of each of the rings (7) is provided with an arc plate (1117) extending outward from the end.

7. The integrated control and sorting mechanism for mineralized filter cartridges of claim 3, wherein, The rotation axis of the rectangular plate (1109) is located on the side close to the pressure plate (1110), and one end of the pressure plate (1110) is always located above the rectangular plate (1109).