Novel jacking label supply machine

By introducing an adjustable label compartment design into the label feeder, the problem of existing label feeders being unable to adapt to different label models is solved, achieving rapid label changeover and stable label dispensing.

CN223764923UActive Publication Date: 2026-01-06FOSHAN BAIZE JUNCHI INTELLIGENT TECHNOLOGY CO LTD
View PDF 1 Cites 0 Cited by

Patent Information

Application Number
CN202520314383.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-26
Publication Date
2026-01-06
Estimated Expiration
2035-02-26

AI Technical Summary

Technical Problem

The label dispenser of the existing label dispenser cannot be adjusted in size, which means it can only accommodate one type of label, limiting its application. Furthermore, changing the label style requires replacing parts, which is time-consuming and prone to losing parts.

Method used

A novel top-feed label feeding machine was designed, comprising a first adjustment section and a second adjustment section, forming an adjustable label chamber. The screw, limiting tube, and air hole structure ensure stable label positioning and removal, preventing adhesion.

Benefits of technology

It enables the label compartment to adapt to the positioning and placement of labels of different sizes, making label replacement simple and quick without disassembling parts, ensuring that only one label is retrieved at a time, thus improving operational efficiency and stability.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223764923U_ABST
    Figure CN223764923U_ABST
Patent Text Reader

Abstract

The utility model provides a novel jacking label supply machine, which relates to the technical field of label storage and pick-and-place devices and comprises a label positioning component provided with a first adjusting part and a second adjusting part. The first adjusting part comprises an adjusting screw rod, and the adjusting screw rod is in threaded connection with a spiral adjusting seat; the spiral adjusting seat is connected with a first limiting pipe, and when the adjusting screw rod is rotated, the first limiting pipe moves in the axial direction of the adjusting screw rod; the second adjusting parts are arranged in front of the first limiting pipe and on the left side and the right side of the first limiting pipe, and the positions of the second adjusting parts can move relative to the first limiting pipe. The label box has the beneficial effects that the label box is provided with the first adjusting part and the second adjusting part, the space defined by the first adjusting part and the second adjusting part forms the label bin for storing labels, and the internal size of the label bin can be adjusted, so that the label box can adapt to positioning and placement of labels with different sizes; moreover, when the size of the label bin is adjusted, parts do not need to be detached, and style changing is simple and rapid.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The utility model relates to the technical field of label storage and retrieval devices, and in particular to a novel top-feed label feeding machine. Background Technology

[0002] Label feeders are an important component of labeling machinery, and their main function is to feed labels according to specific process requirements. Label feeders typically include a label cassette and a label pushing device, which peels the label from the roll and transports it to the labeling position. Most label feeders on the market do not have adjustable label sizes in their label bins. Therefore, a single label feeder can only be used with one type of label, or when changing label styles, the corresponding parts of the label feeder need to be replaced as well. This results in significant time consumption for each style change, and the large number of parts required for each label style makes standardized storage difficult and prone to loss.

[0003] The technical content disclosed in Chinese patent document (publication number: CN220333235U, patent name: label supply mechanism) is as follows: This utility model discloses a label supply mechanism including a label storage compartment and a drive unit. The label storage compartment is filled with labels. The drive unit includes a label supply drive component and a label supply push component. The label supply push component is disposed at one end of the label storage compartment and pushes the labels in the label storage compartment to move, so that the topmost label is always at the same height. The label supply drive component is disposed at one end of the label supply push component and drives the label supply push component to move. By setting up the label supply drive component and the label supply push component, this application enables the label supply drive component to provide thrust to the labels in the label storage compartment when supplying labels to the molding equipment. In conjunction with the label feeding fixture, after each label is picked up, the topmost label in the label storage compartment is maintained at a constant height, thereby ensuring the stability of the label adsorption by the label feeding fixture when supplying labels to the molding equipment and ensuring processing efficiency.

[0004] As can be seen from the above implementation plan and the corresponding drawings, the label bin of the label supply mechanism cannot be adjusted in size, so the label bin can only accommodate one type of label, which limits the scope of use of the label supply machine. Utility Model Content

[0005] The utility model overcomes the shortcomings of the prior art and proposes a new type of top-feed label feeding machine, which is equipped with a first adjustment part and a second adjustment part. The space enclosed by the first adjustment part and the second adjustment part forms a label storage compartment. The internal size of the label compartment can be adjusted, so it can adapt to the positioning and placement of labels of different sizes. Moreover, the size of the label compartment can be adjusted without disassembling the parts, making the replacement simple and quick.

[0006] To solve the above-mentioned technical problems, the utility model is implemented through the following technical solution:

[0007] A novel top-feed label feeding machine includes a label positioning component, which is provided with a first adjustment part and a second adjustment part;

[0008] The first adjusting part includes an adjusting screw, which is threadedly connected to a spiral adjusting seat; the spiral adjusting seat is connected to a first limiting tube, and when the adjusting screw is rotated, the first limiting tube moves along the axial direction of the adjusting screw.

[0009] The second adjustment part is located in front of the first limiting tube and on the left and right sides. The position of the second adjustment part can be moved relative to the first limiting tube. Adjusting the space enclosed by the second adjustment part and the first limiting tube forms a tag storage compartment.

[0010] Furthermore, the two ends of the adjusting screw are connected to end bearing seats, the side of the first limiting tube is provided with a first air hole, and the top of the first limiting tube is provided with a first baffle.

[0011] Furthermore, the first baffle is provided with an eccentric connecting hole, which is connected to the top of the first limiting tube by a bolt.

[0012] Furthermore, the second adjustment part includes a first movable seat and a second movable seat, which are connected by a movable connecting bolt. A second limiting tube is connected to the first movable seat, and a second air hole is provided on the side of the second limiting tube. A second baffle is connected to the upper end of the second limiting tube.

[0013] The first limiting tube is connected to a first air connector;

[0014] The second limiting tube is connected to a second air connector.

[0015] Furthermore, both the first adjustment part and the second adjustment part are connected to the positioning adjustment plate;

[0016] The positioning adjustment plate is provided with a first adjustment elongated hole and a second adjustment elongated hole;

[0017] The first limiting tube is inserted into one of the first adjusting elongated holes;

[0018] The connecting bolt is inserted into one of the first adjusting elongated holes;

[0019] The connecting bolt is inserted into the second adjusting elongated hole.

[0020] Furthermore, the positioning adjustment plate is connected to the lifting cylinder, and the lifting cylinder is provided with lifting parts on both sides. The lifting parts include linear bearings, the linear bearings are connected to the positioning adjustment plate, the positioning adjustment plate is slidably inserted with a lifting rod, one end of the lifting rod is connected to the positioning plate, and the output end of the lifting cylinder is also connected to the positioning plate.

[0021] The positioning plate is provided with a first limiting elongated hole and a second limiting elongated hole.

[0022] Furthermore, a label-grabbing component is provided above the label positioning component. The label-grabbing component includes a label-grabbing lifting cylinder. The output end of the label-grabbing lifting cylinder is connected to a gripper mounting base. The gripper mounting base is connected to a first cylinder. The first cylinder is connected to a second cylinder.

[0023] Furthermore, the second cylinder is connected to the label-taking frame, the upper end of the label-taking frame is connected to the first buffer, the lower end of the label-taking frame is provided with a bottom rod, and the two sides of the label-taking frame are provided with slide rails.

[0024] The gripper mounting base is slidably connected to the slide rail, and a second buffer is connected to the gripper mounting base;

[0025] When the sampling lifting cylinder is extended to its final position, the second buffer contacts the bottom rod. When the sampling lifting cylinder is retracted to its final position, the first buffer contacts the gripper mounting seat.

[0026] Furthermore, the first cylinder is a rotary cylinder, and the second cylinder is connected to a suction cup mounting base, which is provided with at least one suction cup.

[0027] Compared with existing technologies, the advantages of this utility model are:

[0028] 1. A novel top-feed label feeding machine is proposed, which is equipped with a first adjustment part and a second adjustment part. The space enclosed by the first adjustment part and the second adjustment part forms a label storage compartment. The internal size of the label compartment is adjustable, so it can adapt to the positioning and placement of labels of different sizes. Moreover, the size of the label compartment can be adjusted without disassembling the parts, making the replacement simple and quick.

[0029] 2. The first limiting tube is provided with a first air hole, and the second limiting tube is provided with a second air hole. The first air hole and the second air hole can blow air to the side of a stack of labels, so that the labels will not stick together, thus ensuring that only one label is taken out each time. Attached Figure Description

[0030] The accompanying drawings are provided to further illustrate the utility model and, together with the embodiments of the utility model, are used to explain the utility model. They do not constitute a limitation on the utility model. In the drawings:

[0031] Figure 1 This is a schematic diagram of the overall label feeder according to an embodiment of the present utility model;

[0032] Figure 2 This is a schematic diagram of the label positioning component and label picking component according to an embodiment of the present utility model;

[0033] Figure 3 This is a schematic diagram of the label positioning component structure according to an embodiment of the present utility model;

[0034] Figure 4 This is an exploded view of the label positioning component according to an embodiment of the present invention;

[0035] Figure 5 This is an exploded view of the first adjusting part and the second adjusting part according to an embodiment of the present utility model;

[0036] Figure 6 This is an exploded view of the second adjusting part according to an embodiment of the present invention;

[0037] Figure 7 This is a first exploded view of the target-taking component according to an embodiment of the present invention;

[0038] Figure 8 This is a second exploded view of the target-taking component according to an embodiment of the present invention.

[0039] In the diagram: 1. Label positioning assembly; 101. Positioning adjustment plate; 1011. First adjustment elongated hole; 1012. Second adjustment elongated hole; 102. Positioning base plate; 1021. First limiting elongated hole; 1022. Second limiting elongated hole; 103. Lifting cylinder; 104. First adjustment part; 1041. Adjusting screw; 10411. Screw handle; 1042. End bearing seat; 1043. Screw adjustment seat; 1044. First air connector; 1045. First limiting tube; 10451. First air hole; 10452. First baffle; 105. Lifting part; 1051. Linear bearing; 052. Lifting rod; 106. Second adjusting part; 1061. First moving seat; 1062. Second moving seat; 1063. Second limiting tube; 10631. Second air hole; 10632. Second baffle; 1064. Second air connector; 1065. Moving connecting bolt; 2. Mark taking assembly; 201. Mark taking frame; 2011. Base rod; 2012. Slide rail; 202. Mark taking lifting cylinder; 203. First buffer; 204. Grab mounting seat; 205. Second buffer; 206. First cylinder; 207. Second cylinder; 208. Suction cup mounting seat; 209. Suction cup. Detailed Implementation

[0040] The preferred embodiments of the utility model are described below with reference to the accompanying drawings. It should be understood that the preferred embodiments described herein are for illustration and explanation only and are not intended to limit the utility model.

[0041] like Figures 1 to 8 As shown, a novel top-feed label feeding machine includes a label positioning assembly 1, which is provided with a first adjustment part 104 and a second adjustment part 106. The first adjustment part 104 includes an adjustment screw 1041, which is threadedly connected to a spiral adjustment seat 1043. The spiral adjustment seat 1043 is connected to a first limiting tube 1045. When the adjustment screw 1041 is rotated, the first limiting tube 1045 moves along the axial direction of the adjustment screw 1041. The second adjustment part 106 is located in front of and on the left and right sides of the first limiting tube 1045, and its position can move relative to the first limiting tube 1045. Adjusting the space enclosed by the second adjustment part 106 and the first limiting tube 1045 forms a label storage compartment. Therefore, the internal size of the label compartment can be adjusted, thus adapting to the positioning and placement of labels of different sizes. Moreover, adjusting the size of the label compartment does not require disassembly of parts, making label replacement simple and quick.

[0042] The two ends of the adjusting screw 1041 are connected to the end bearing seats 1042. The side of the first limiting tube 1045 is provided with a first air hole 10451. The first limiting tube 1045 is connected to a first air connector 1044. The top of the first limiting tube 1045 is provided with a first baffle 10452. The second adjusting part 106 includes a first moving seat 1061 and a second moving seat 1062. The first moving seat 1061 and the second moving seat 1062 are connected by a moving connecting bolt 1065. The first moving seat 1061 is connected to a second limiting tube 1063. The side of the second limiting tube 1063 is provided with a second air hole 10631. The upper end of the second limiting tube 1063 is connected to a second baffle 10632. The second limiting tube 1063 is connected to a second air connector 1064. The first air hole 10451 and the second air hole 10631 can blow air onto the sides of a stack of labels, so that the labels do not stick together, thus ensuring that only one label is taken out each time.

[0043] The first baffle 10452 is provided with an eccentric connecting hole, which is connected to the top of the first limiting tube 1045 by a bolt. The second baffle 10632 is also provided with an eccentric connecting hole. Therefore, by rotating the first baffle 10452 and the second baffle 10632, the area covered by the first baffle 10452 and the second baffle 10632 on the label can be adjusted. The area covered by the first baffle 10452 and the second baffle 10632 on the label can be set according to the thickness of different labels. When the label is removed, the first baffle 10452 and the second baffle 10632 can block the next label, so that the next label will not be lifted up.

[0044] Both the first adjusting part 104 and the second adjusting part 106 are connected to the positioning adjusting plate 101. The positioning adjusting plate 101 is provided with a first adjusting elongated hole 1011 and a second adjusting elongated hole 1012. A first limiting tube 1045 is inserted into one of the first adjusting elongated holes 1011. A connecting bolt 1065 is inserted into one of the first adjusting elongated holes 1011 and the second adjusting elongated hole 1012. When adjusting the size of the label compartment, rotating the screw handle 10411 allows the first limiting tube 1045 to move and change position along the first adjusting elongated hole 1011. Loosening the connecting bolt 1065 allows the second adjusting part 106 to move along either the first adjusting elongated hole 1011 or the second adjusting elongated hole 1012. This allows the internal dimensions of the label compartment, composed of the first limiting tube 1045 and the second limiting tube 1063, to be varied, enabling the label compartment to store labels of different sizes.

[0045] The positioning adjustment plate 101 is connected to the lifting cylinder 103. Lifting parts 105 are provided on both sides of the lifting cylinder 103. Each lifting part 105 includes a linear bearing 1051, which is connected to the positioning adjustment plate 101. A lifting rod 1052 is slidably inserted into the positioning adjustment plate 101. One end of the lifting rod 1052 is connected to the positioning plate 102, and the output end of the lifting cylinder 103 is also connected to the positioning plate 102. The positioning plate 102 is provided with a first limiting elongated hole 1021 and a second... The limiting elongated hole 1022, the first limiting elongated hole 1021 and the second limiting elongated hole 1022 are vertically arranged. The first limiting tube 1045 passes through one of the first limiting elongated holes 1021, and the second limiting tube 1063 passes through the other first limiting elongated hole 1021 and the second limiting elongated hole 1022. The label is placed on the positioning plate 102. Each time the label is picked up, the lifting cylinder 103 pushes the positioning plate 102 to rise, so that the label is raised for the label picking component 2 to pick up the label.

[0046] A label-picking component 2 is provided above the label positioning component 1. The label-picking component 2 includes a label-picking lifting cylinder 202. The output end of the label-picking lifting cylinder 202 is connected to a gripper mounting base 204. The gripper mounting base 204 is connected to a first cylinder 206. The first cylinder 206 is connected to a second cylinder 207. The second cylinder 207 is connected to the label-taking frame 201. The upper end of the label-taking frame 201 is connected to the first buffer 203, and the lower end of the label-taking frame 201 is provided with a bottom rod 2011. The two sides of the label-taking frame 201 are provided with slide rails 2012. The gripper mounting seat 204 is slidably connected to the slide rails 2012, and the second buffer 205 is connected to the gripper mounting seat 204. When the label-taking lifting cylinder 202 is pushed out to the end, the second buffer 205 contacts the bottom rod 2011. When the label-taking lifting cylinder 202 is retracted to the end, the first buffer 203 contacts the gripper mounting seat 204. In this way, the gripper mounting seat 204 can be buffered when it is raised and lowered, so the label being grabbed will not be subjected to a large impact force, making it difficult for the label to fall off from the suction cup 209.

[0047] The first cylinder 206 is a rotary cylinder, and the second cylinder 207 is connected to the suction cup mounting base 208. The suction cup mounting base 208 is equipped with at least one suction cup 209. After the label is reached, the first cylinder 206 causes the suction cup mounting base 208 to rotate 180 degrees, making it convenient for the external robotic arm to come over and remove the label. Because the label is rotated at a certain angle, the external robotic arm can pick up the label from both sides below the gripper mounting base 204 when it comes to remove the label, without having to raise the gripper mounting base 208 to a higher height to make way for the external robotic arm. Therefore, the distance that the gripper mounting base 208 moves does not need to be too long, ensuring the stability of the label after it is picked up by the suction cup 209.

[0048] Finally, it should be noted that the above are merely preferred embodiments of the utility model and are not intended to limit the utility model. Although the utility model has been described in detail with reference to the embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. However, any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the utility model should be included within the protection scope of the utility model.

Claims

1. A new type of top entry marking machine characterized in that, The label positioning assembly (1) is provided with a first adjusting part (104) and a second adjusting part (106); The first adjusting part (104) comprises an adjusting screw (1041) which is threadedly connected with a screw adjusting seat (1043); the screw adjusting seat (1043) is connected with a first limiting tube (1045); when the adjusting screw (1041) is rotated, the first limiting tube (1045) moves along the axial direction of the adjusting screw (1041); The second adjusting part (106) is arranged in front of and on the left and right sides of the first limiting tube (1045); the position of the second adjusting part (106) is movable relative to the first limiting tube (1045); the space enclosed by the second adjusting part (106) and the first limiting tube (1045) forms a label storage bin.

2. The new top-in sign machine according to claim 1, characterized in that, Both ends of the adjusting screw (1041) are connected with end bearing seats (1042); the side surface of the first limiting tube (1045) is provided with a first air hole (10451); the top of the first limiting tube (1045) is provided with a first baffle (10452).

3. The new top entry marker post machine of claim 2, wherein, The first baffle (10452) is provided with an eccentric connecting hole which is connected with the top of the first limiting tube (1045) through a bolt.

4. The new top entry marker post machine of claim 3, wherein, The second adjusting part (106) comprises a first moving seat (1061) and a second moving seat (1062); the first moving seat (1061) and the second moving seat (1062) are connected through a moving connecting bolt (1065); the first moving seat (1061) is connected with a second limiting tube (1063); the side of the second limiting tube (1063) is provided with a second air hole (10631); the upper end of the second limiting tube (1063) is connected with a second baffle (10632); The first limiting tube (1045) is connected with a first air joint (1044); The second limiting tube (1063) is connected with a second air joint (1064).

5. The new top entry marker post machine of claim 4, wherein, The first adjusting part (104) and the second adjusting part (106) are both connected with a positioning adjusting plate (101); The positioning adjusting plate (101) is provided with a first adjusting long hole (1011) and a second adjusting long hole (1012); The first limiting tube (1045) is inserted into one of the first adjusting long holes (1011); The connecting bolt (1065) is inserted into one of the first adjusting long holes (1011); The connecting bolt (1065) is inserted into the second adjusting long hole (1012).

6. The new top entry marker post machine of claim 5, wherein, The positioning adjusting plate (101) is connected with a lifting cylinder (103), the lifting cylinder (103) is provided with lifting parts (105) on both sides, the lifting parts (105) comprise linear bearings (1051), the linear bearings (1051) are connected with the positioning adjusting plate (101), the positioning adjusting plate (101) is slidably connected with lifting rods (1052), one end of the lifting rods (1052) is connected with a positioning plate (102), and the output end of the lifting cylinder (103) is also connected with the positioning plate (102); the positioning plate (102) is provided with first limiting long holes (1021) and second limiting long holes (1022).

7. The new top entry marker post machine according to any one of claims 1 to 5, characterized in that, The label positioning assembly (1) is provided with a label taking assembly (2) above, the label taking assembly (2) comprises a label taking lifting cylinder (202), the output end of the label taking lifting cylinder (202) is connected with a gripper mounting seat (204), the gripper mounting seat (204) is connected with a first cylinder (206), and the first cylinder (206) is connected with a second cylinder (207).

8. The new top entry marker post machine of claim 7, wherein, The second cylinder (207) is connected with a label taking frame body (201), the label taking frame body (201) is connected with a first buffer (203) at the upper end, the label taking frame body (201) is provided with a bottom rod (2011) at the lower end, and the label taking frame body (201) is provided with slide rails (2012) on both sides. The gripper mounting seat (204) is slidably connected with the slide rails (2012), and the second buffer (205) is connected with the gripper mounting seat (204). The label taking lifting cylinder (202) is pushed out to the last, the second buffer (205) is in contact with the bottom rod (2011), the label taking lifting cylinder (202) is retracted to the last, and the first buffer (203) is in contact with the gripper mounting seat (204).

9. The new top entry marker post machine of claim 8, wherein, The first cylinder (206) is a rotary angle cylinder, the second cylinder (207) is connected with a suction disc mounting seat (208), and the suction disc mounting seat (208) is provided with not less than one suction disc (209).

Citation Information

Patent Citations

  • Label supply mechanism

    CN220333235U