Inner cover feeding device for barreling stripping liquid

By designing a servo motor-driven turntable and a limiting cylindrical structure, the problems of uncertain posture adjustment and low efficiency of the inner lid in the desiccant container were solved, achieving correct posture of the inner lid and efficient sorting and dispensing, thus improving container filling efficiency.

CN224147696UActive Publication Date: 2026-04-21MIANYANG MEEM ELECTRONIC MATERIALS CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
MIANYANG MEEM ELECTRONIC MATERIALS CO LTD
Filing Date
2025-05-14
Publication Date
2026-04-21

AI Technical Summary

Technical Problem

In existing technologies, the orientation adjustment of the inner lid of the stripping fluid container is uncertain and inefficient, and the automatic feeding system has the problem of incorrect orientation of the inner lid.

Method used

Design a device for feeding inner caps for peeling liquid into barrels. The device uses a servo motor to drive a turntable and combines a limiting cylinder and a guide channel structure. The rotation of the turntable enables the adjustment of the inner cap's posture and the sorting and dispensing. The design of the guide channel and the discharge hole ensures the correct posture of the inner cap.

Benefits of technology

It significantly improves the accuracy and efficiency of inner lid placement, eliminates inner lids with incorrect posture, ensures the correct posture of inner lids during transportation, and improves barrel filling efficiency.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224147696U_ABST
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Abstract

An inner cover feeding device for stripping liquid barreling comprises a base, an upward extending arm is arranged on the base, an inner disc is installed on the upward extending arm through a bolt, a servo motor is installed on the inner disc, an output shaft of the servo motor is connected with a rotary disc, the rotary disc is sleeved with a material guiding piece, and a limiting cylinder is coaxially arranged on the rotary disc. According to the inner cover feeding device, the inner covers can be transferred through the rotating disc which is rotationally arranged, meanwhile, classified feeding can be carried out according to the postures of the inner covers, the feeding correctness of the inner covers is ensured, and compared with the mode that the inner covers with incorrect postures are removed in the conveying process and are made to move again in the prior art, the feeding efficiency is improved. According to the scheme, the efficiency can be remarkably improved. The arranged limiting cylinder can enable the inner cover with the correct posture to be discharged downwards, and in addition, in order to further ensure the correctness of the posture of the inner cover, a first discharging hole and a second discharging hole are further formed.
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Description

Technical Field

[0001] This utility model relates to the field of stripping fluid barrel filling technology, and in particular to an inner cover feeding device for stripping fluid barrel filling. Background Technology

[0002] After the stripping fluid is produced, it is packaged in plastic drums. To ensure safety during transportation and prevent leakage, an inner cap is installed on the drum, and then an outer cap is screwed on. To improve safety and efficiency during drum filling, an automatic capping device is often used. However, currently, operators must manually place the inner cap onto the automatic device in a predetermined position, which is cumbersome and prone to errors. While automatic feeding systems are also used for stacking and feeding the inner caps, they also suffer from the problem of incorrect inner cap placement. Utility Model Content

[0003] This utility model provides an inner cover feeding device for packing stripping liquid into barrels, which solves the shortcomings of the prior art, such as the uncertainty and low efficiency of inner cover posture adjustment, and has strong practicality.

[0004] In order to achieve the purpose of this utility model, the following technology is proposed to be adopted:

[0005] A feeding device for inner cover of stripping fluid in a barrel includes a base, an upper extension arm on the base, an inner plate on the upper extension arm by bolts, a servo motor on the inner plate, a turntable connected to the output shaft of the servo motor, a guide component on the outer sleeve of the turntable, and a limiting cylinder coaxially provided on the turntable.

[0006] Furthermore, the inner plate has a pair of grooves extending through the outer periphery. The length directions of the grooves are perpendicular to each other, and a circular groove is formed at the intersection of the grooves. The limiting cylinder passes through the circular groove.

[0007] Furthermore, raised strips are formed on both sides of the inner side of the groove, and there is an inner gap between the raised strips and the bottom of the groove. There is a stepped groove between the raised strips and the end face of the inner plate.

[0008] Furthermore, an outer plate is provided at the outer end of the limiting cylinder, and the outer plate is fixed to the guide component by screws. A guide groove is provided through the outer periphery of the limiting cylinder, and a clearance step groove is formed on both sides of the inner side of the guide groove so that the guide groove has a convex structure, and the width dimension of the end facing the turntable is greater than the width dimension of the other end.

[0009] Furthermore, the length direction of the guide channel forms a 45-degree angle with the vertical direction.

[0010] Furthermore, the guide component includes a fixed protrusion plate installed on the inner plate by screws. The inner side of the fixed protrusion plate is provided with an outer ring, which is sleeved on the outer periphery of the turntable. A feed pipe is connected to the outer ring. The length direction of the feed pipe forms a 45-degree angle with the vertical direction, and the length direction of the feed pipe is perpendicular to the length direction of the guide channel. The inner wall of the feed pipe is formed with a rectangular inner cavity. A feed port is opened on the outer periphery of the outer ring. The rectangular inner cavity is connected to the feed port. A feed side port is opened on the outer side of the other end of the feed pipe.

[0011] The outer ring is provided with a first discharge hole and a second discharge hole, which are symmetrically arranged.

[0012] Furthermore, the feed pipe has a V-shaped structure.

[0013] Furthermore, an arc-shaped feed component is welded to the outer wall of the other end of the feed pipe, and the arc-shaped feed component is welded to the feed side opening.

[0014] Furthermore, both the first discharge hole and the second discharge hole have a T-shaped structure, and the outer end opening width of the first discharge hole is smaller than the inner end opening width, while the outer end opening width of the second discharge hole is larger than the inner end opening width.

[0015] Furthermore, a first discharge pipe and a second discharge pipe are welded to the outer periphery of the outer ring. The first discharge pipe and the second discharge pipe have discharge cavities inside. The first discharge pipe is connected to the first discharge hole, and the second discharge pipe is connected to the second discharge hole.

[0016] The advantages of the above technical solution are:

[0017] This invention utilizes a rotating turntable, which not only transfers the inner covers but also categorizes and dispenses them based on their orientation. This ensures correct placement of the inner covers and significantly improves efficiency compared to existing technologies that discard incorrectly oriented inner covers during transport and then reposition them. A limiting cylinder ensures correctly oriented inner covers are discharged downwards. Furthermore, to further ensure the correct orientation of the inner covers, a first discharge port and a second discharge port are provided. Attached Figure Description

[0018] To make the objectives, technical solutions, and advantages of this utility model clearer, the following will provide a further detailed description of this utility model in conjunction with the accompanying drawings.

[0019] Figure 1 A three-dimensional structure of one embodiment is shown. Figure 1 .

[0020] Figure 2 A three-dimensional structure of one embodiment is shown. Figure 2 .

[0021] Figure 3 A three-dimensional structure of one embodiment is shown. Figure 3 .

[0022] Figure 4 A three-dimensional structure of one embodiment is shown. Figure 4 . Detailed Implementation

[0023] like Figures 1-4 As shown, a device for feeding an inner cover for a stripping fluid container includes a base 1, an upper extension arm 2 on the base 1, an inner plate 3 bolted to the upper extension arm 2, a servo motor 4 mounted on the inner plate 3, a turntable 62 connected to the output shaft of the servo motor 4, a guide component sleeved on the turntable 62, and a limiting cylinder 70 coaxially mounted on the turntable 62. Alternatively, the servo motor 4 can be replaced by an indexing plate transmission mechanism, which eliminates the need for frequent start-stop cycles of the driving motor. When transferring the inner cover, the servo motor 4 drives the turntable 62 to rotate, and the inner cover is transferred through the rotation of the turntable 62.

[0024] In order to classify the inner cover in its posture and transfer the inner cover as the inner plate 3 rotates, a pair of grooves 6 are provided on the outer periphery of the inner plate 3. The length directions of the grooves 6 are perpendicular to each other. A circular groove 60 is formed at the intersection of the grooves 6. A limiting cylinder 70 passes through the circular groove 60. The inner sides of the groove 6 are formed with protrusions 61. There is an inner gap 63 between the protrusions 61 and the bottom of the groove 6. There is a stepped groove 64 between the protrusions 61 and the end face of the inner plate 3. The stepped groove 64 and the inner gap 63 are to avoid the protruding edge of the inner cover. When the inner cover moves to the turntable 3 with the opening facing inward or outward, it can rotate with the turntable 3.

[0025] When the inner cover enters, it is prevented from being discharged directly. When the inner cover with the opening facing inward moves 90 degrees, it can be discharged downward. Therefore, an outer plate 7 is provided at the outer end of the limiting cylinder 70. The outer plate 7 is fixed to the guide component by screws. A guide groove 71 is provided through the outer periphery of the limiting cylinder 70. When the inner cover with the opening facing inward is directly opposite the guide groove 71, it can be discharged. Therefore, the inner sides of the guide groove 71 are formed with clearance step grooves 72 so that the guide groove 71 has a convex structure. The width dimension of the end facing the turntable 62 is greater than the width dimension of the other end. The length direction of the guide groove 71 forms a 45-degree angle with the vertical direction.

[0026] To facilitate the feeding of the inner cover and its transfer via the rotation of the turntable 3 after feeding, the guide component includes a fixing protrusion 50 mounted on the inner plate 3 with screws. An outer ring 5 is provided on the inner side of the fixing protrusion 50, and a cover body is formed on the outer ring 5. A central hole is provided on the cover body, through which a limiting cylinder 70 passes. The outer ring 5 is fitted onto the outer circumference of the turntable 62, and a feed pipe 53 is connected to the outer ring 5. The feed pipe 53 has a V-shaped structure, with a vertical section at the upper end and an inclined section at the lower end. The angle between the inclined section and the horizontal plane is 45 degrees. The length direction of the feed pipe 53 forms a 45-degree angle with the vertical direction, and the length direction of the feed pipe 53 is perpendicular to the length direction of the guide channel 71. The inner wall of the feed pipe 53 is formed with a rectangular inner cavity. A feed port is opened on the outer periphery of the outer ring 5. The rectangular inner cavity is connected to the feed port. A feed side opening 54 is opened on the outer side of the other end of the feed pipe 53. A first discharge hole 57 and a second discharge hole 58 are opened on the outer ring 5. The first discharge hole 57 and the second discharge hole 58 are symmetrically arranged. An arc-shaped feed component 55 is welded to the outer wall of the other end of the feed pipe 53. The arc-shaped feed component 55 is welded to the feed side opening 54, and the outer end of the arc-shaped feed component 55 extends upward at an angle. During feeding, the neatly stacked inner caps are placed in the arc-shaped feed component 55. Both the first discharge hole 57 and the second discharge hole 58 have a T-shaped structure. The outer end opening width of the first discharge hole 57 is smaller than the inner end opening width, and the outer end opening width of the second discharge hole 58 is larger than the inner end opening width. A first discharge pipe 51 and a second discharge pipe 52 are welded to the outer circumference of the outer ring 5. The first discharge pipe 51 and the second discharge pipe 52 have discharge cavities. The first discharge pipe 51 is connected to the first discharge hole 57, and the second discharge pipe 52 is connected to the second discharge hole 58.

[0027] In this embodiment, during operation, the operator or the material discharge device neatly places the inner covers in the arc-shaped feed member 55. Then, the inner covers move downwards along the arc-shaped feed member 55 to the feed side opening 54, and then move along the feed pipe 53 into the outer ring 5. At this time, one of the grooves 6 on the turntable 3 is directly opposite the inner cover. Therefore, the inner cover will roll downwards into the groove 6 by its own weight, and its inner side is limited by the circumference of the limiting cylinder 70. Then, the turntable 3 rotates 90 degrees under the drive of the servo motor 4. At this time, the inner cover will be directly opposite the guide groove 71. If the opening of the inner cover is facing inwards at this time, that is, the protrusion on the inner cover is tightly attached to the turntable 3. If the inner cover is discharged along the groove 6, the guide groove 71, the first discharge hole 57, and the first discharge pipe 51, and if the opening of the inner cover is facing outward, that is, if the convex edge on the inner cover is facing the cover body, the barrel cover will also roll into the groove 6 and rotate 90 degrees with the turntable 3. At this time, because the convex edge of the barrel cover is facing outward, it cannot roll down along the groove 6. Then the inner cover will rotate 90 degrees again with the turntable 3. At this time, the inner cover will be facing the second discharge pipe 52 and the second discharge hole 58. Then the inner cover will be discharged along the second discharge pipe 52 and the second discharge hole 58. In this way, the sorting and transfer operation of the inner cover is completed.

[0028] The above description is merely a preferred embodiment of this utility model and is not intended to limit the scope of this utility model. Obviously, those skilled in the art can make various modifications and variations to this utility model without departing from its spirit and scope. Therefore, if these modifications and variations of this utility model fall within the scope of the claims of this utility model and their equivalents, this utility model also intends to include these modifications and variations.

Claims

1. A device for feeding a stripping fluid into a container with an inner lid, characterized in that, Includes a base (1), an upper extension arm (2) is provided on the base (1), an inner plate (3) is installed on the upper extension arm (2) by bolts, a servo motor (4) is installed on the inner plate (3), a turntable (62) is connected to the output shaft of the servo motor (4), a guide is provided on the outer sleeve of the turntable (62), and a limiting cylinder (70) is coaxially provided on the turntable (62).

2. The peeling solution tanking inner lid loading device according to claim 1, characterized by, The inner plate (3) has a pair of grooves (6) extending through the outer periphery. The length directions of the grooves (6) are perpendicular to each other. A circular groove (60) is formed at the intersection of the grooves (6). A limiting cylinder (70) passes through the circular groove (60).

3. The peeling solution tanking inner lid loading device according to claim 1, characterized by, The inner sides of the groove (6) are formed with ridges (61), the ridges (61) and the bottom of the groove (6) have an inner gap (63), and there is a stepped groove (64) between the ridges (61) and the end face of the inner plate (3).

4. The peeling solution tanking inner lid loading device according to claim 1, characterized by, The outer end of the limiting cylinder (70) is provided with an outer plate (7), which is fixed to the guide component by screws. A guide groove (71) is provided through the outer periphery of the limiting cylinder (70). The guide groove (71) has clearance step grooves (72) formed on both sides inside, so that the guide groove (71) has a convex structure and the width dimension of the end facing the turntable (62) is greater than the width dimension of the other end.

5. The peeling solution tanking inner lid loading device according to claim 4, characterized by, The length direction of the guide channel (71) forms a 45-degree angle with the vertical direction.

6. The peeling solution tanking inner lid loading device according to claim 4, characterized by The guide includes a fixed protrusion (50) mounted on the inner plate (3) by screws. The inner side of the fixed protrusion (50) is provided with an outer ring (5). The outer ring (5) is sleeved on the outer periphery of the turntable (62). A feed pipe (53) is connected to the outer ring (5). The length direction of the feed pipe (53) forms a 45-degree angle with the vertical direction. The length direction of the feed pipe (53) is perpendicular to the length direction of the guide groove (71). The inner wall of the feed pipe (53) is formed with a rectangular inner cavity. A feed port is opened on the outer periphery of the outer ring (5). The rectangular inner cavity is connected to the feed port. A feed side port (54) is opened on the outer side of the other end of the feed pipe (53). The outer ring (5) is provided with a first discharge hole (57) and a second discharge hole (58), which are symmetrically arranged.

7. The peeling solution tanking inner lid loading device according to claim 1, characterized by, The feed pipe (53) has a V-shaped structure.

8. The peeling solution tanking inner lid loading device according to claim 1, characterized by, An arc-shaped feed component (55) is welded to the outer wall of the other end of the feed pipe (53), and the arc-shaped feed component (55) is welded to the feed side opening (54).

9. The peeling solution tanking inner lid loading device according to claim 1, characterized by, Both the first discharge hole (57) and the second discharge hole (58) are T-shaped structures. The outer end opening width of the first discharge hole (57) is smaller than the inner end opening width, while the outer end opening width of the second discharge hole (58) is larger than the inner end opening width.

10. The peeling solution tanking inner lid loading device according to claim 9, characterized by The outer ring (5) is welded with a first discharge pipe (51) and a second discharge pipe (52). The first discharge pipe (51) and the second discharge pipe (52) have discharge cavities inside. The first discharge pipe (51) is connected to the first discharge hole (57), and the second discharge pipe (52) is connected to the second discharge hole (58).