Framework glue spraying tool

By introducing a slidably connected skeleton tooling and a sub-skeleton tooling into the skeleton spraying tooling, combined with elastic blocks and airbag positioning columns, the problem of fixed number of skeleton slots is solved, the skeleton spraying is achieved quickly and evenly, and the production efficiency and product quality are improved.

CN223381838UActive Publication Date: 2025-09-26ANHUI JINGHONG SEAL TECH
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Patent Information

Application Number
CN202422576983.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-24
Publication Date
2025-09-26
Estimated Expiration
2034-10-24

AI Technical Summary

Technical Problem

The existing frame glue spraying tooling has a fixed number of frame slots and cannot adapt to different numbers of frames, resulting in low glue spraying efficiency, unevenness and low utilization rate, increasing the number of rework times, and affecting production efficiency and qualification rate.

Method used

A skeleton glue spraying tooling was designed. By setting a slidably connected skeleton tooling and a sub-skeleton tooling in the frame, elastic blocks and air bags were used to provide stable support. The positioning columns were combined to achieve rapid installation and positioning of the skeleton, ensuring uniform glue spraying.

Benefits of technology

It realizes the flexible adaptability of the frame spraying tooling, improves the frame installation speed and efficiency, ensures the uniformity of the spraying, reduces the installation error and the number of rework, and improves the production efficiency and qualification rate.

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Abstract

The utility model relates to the technical field of tools, in particular to a framework glue spraying tool which comprises a frame body, holes with the corresponding number are formed in the periphery of the frame body, two installation grooves are formed in the two opposite sides of the frame body at equal ratio, the inner wall of each installation groove is connected with a convex sliding block in a sliding mode, and the convex face of each convex sliding block is the side away from the corresponding installation groove. Two framework tools are connected into the frame body in a sliding mode, a plurality of first framework grooves used for containing frameworks are formed in the upper end faces of the framework tools in a rectangular array mode, and auxiliary framework tools are connected between the adjacent auxiliary framework tools in a sliding mode. The number of auxiliary framework tools can be increased through a first sliding rail and a first sliding way arranged in the framework tool, the number of the auxiliary framework tools can be rapidly increased through the arrangement of the first sliding rail and the first sliding way, the framework installation speed and efficiency are improved, meanwhile, airtight support can be provided in the placement process through the design of a square air bag, and the installation efficiency is improved. Therefore, the framework is more stable during installation, and installation errors are reduced.
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Description

Technical Field

[0001] The utility model relates to the technical field of tooling, in particular to a skeleton glue spraying tooling. Background Art

[0002] A frame glue spraying tool is a special tool device used when spraying glue on the frame. It is mainly used to fix the frame and ensure that the glue can be sprayed accurately and evenly on the specific parts of the frame to meet the production process requirements of the product.

[0003] The number of frame slots of the existing frame spraying tool is fixed, which makes it impossible to handle different numbers of frames, resulting in more frames and fewer frame slots, which requires two sprayings, increasing the time for frame spraying, and fewer frames and fewer frame slots, which make it impossible to completely place all of them, resulting in low utilization of the frame spraying tool. At the same time, the existing frame spraying tool cannot position the frames, which causes uneven spraying of the frames, resulting in more rework times, low efficiency, low pass rate, and low output value per shift. Utility Model Content

[0004] In view of the above-mentioned shortcomings of the prior art, the present invention provides a frame glue spraying tool, which can effectively solve the problem that the number of frame slots in the prior art frame glue spraying tool is fixed, and thus cannot meet the glue spraying requirements of different numbers of frames.

[0005] In order to achieve the above objectives, the present invention is implemented through the following technical solutions:

[0006] The utility model provides a skeleton glue spraying tool, comprising:

[0007] A frame body, wherein a corresponding number of holes are provided on all four sides of the frame body, and two mounting grooves are provided on opposite sides of the frame body at equal ratios, and the inner wall of each mounting groove is slidably connected with a convex slider, and the convex surface of the convex slider is the side away from the mounting groove, and two skeleton toolings are slidably connected inside the frame body, and a plurality of first skeleton grooves for placing the skeleton are provided in a rectangular array on the upper end surface of the skeleton tooling, and a first elastic block with compressibility is fixedly connected between two adjacent first skeleton grooves, and a first slide rail is provided on the opposite surfaces of the two first skeleton grooves and is fixedly connected with a first slide, and the first slide rail is slidably connected to the first slide, and the opposite surfaces of the two first skeleton grooves are slidably connected with a sub-skeleton tooling, and adjacent sub-skeleton toolings are also slidably connected with sub-skeleton tooling.

[0008] Preferably, the two sides of the sub-skeleton tooling are respectively fixedly connected with a second slideway and a second slide rail opposite to the two first skeleton grooves, and the upper end of the sub-skeleton tooling is provided with a second skeleton groove corresponding to the first skeleton groove in the skeleton tooling, and a second elastic block with compressibility is fixedly connected between two adjacent second skeleton grooves, and a sub-tube is indirectly arranged between the second skeleton grooves of two adjacent sub-skeleton toolings, and a square airbag is fixedly connected in each of the installation grooves, and at least two extrusion blocks are fixedly connected to the side of the square airbag away from the installation groove.

[0009] Preferably, one end of the two extrusion blocks away from the square airbag contacts one side of the convex slider plane, and the opposite sides of the square airbag are fixedly connected with an air pipe that passes through the first skeleton groove, and the air pipe and the sub-tube are positioned correspondingly. The end of the air pipe away from the square airbag is fixedly connected with a mother pipe, and the mother pipe and the sub-tube are airtightly slidably connected. The first skeleton groove and the second skeleton groove are both slidably connected with positioning columns, and the positioning columns pass through the first skeleton groove and the second skeleton groove and are airtightly slidably connected to the air pipe and the sub-tube.

[0010] Compared with the prior art, the technical solution provided by this utility model has the following beneficial effects:

[0011] The skeleton glue spraying tooling can realize the addition of sub-skeleton tooling through the first slide rail and the first slideway provided in the skeleton tooling, thereby increasing the number of skeletons installed by the skeleton tooling. The square airbag provided in the installation groove of the frame can discharge the air stored therein to the air pipe when the skeleton tooling and the sub-skeleton tooling are placed in the frame, thereby causing the positioning column that is airtightly slidably connected to the air pipe to be affected by the air pipe and extend from the air pipe, thereby fixing the skeleton placed in the first skeleton groove and the second skeleton groove. By providing the first slide rail and the first slideway, the number of sub-skeleton tooling can be quickly increased, and the speed and efficiency of the skeleton installation can be improved. At the same time, the design of the square airbag can provide airtight support during the placement process, thereby ensuring that the skeleton is more stable during installation and reducing installation errors. BRIEF DESCRIPTION OF THE DRAWINGS

[0012] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the following briefly introduces the drawings required for the embodiments or the description of the prior art. Obviously, the drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be derived from these drawings without inventive effort.

[0013] Figure 1 It is a schematic diagram of the overall structure of the utility model;

[0014] Figure 2It is a structural diagram of the front side of the utility model;

[0015] Figure 3 This is a schematic structural diagram of the frame of the utility model;

[0016] Figure 4 This is a schematic diagram of the structure of the skeleton tooling of the utility model;

[0017] Figure 5 This is a schematic structural diagram of the positioning of a square airbag of the utility model;

[0018] Figure 6 This is a structural diagram of the auxiliary skeleton tooling of the utility model.

[0019] Figure numerals: 1. frame; 11. mounting groove; 12. convex slider; 2. skeleton tooling; 21. first elastic block; 22. first slide rail; 23. first skeleton groove; 24. first slide; 3. auxiliary skeleton tooling; 31. second elastic block; 32. second slide; 33. second skeleton groove; 34. second slide; 35. sub-tube; 4. square airbag; 41. extrusion block; 42. air supply pipe; 43. positioning column; 44. main tube. DETAILED DESCRIPTION

[0020] To make the purpose, technical solutions, and advantages of the embodiments of the present invention more clear, the technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are only some of the embodiments of the present invention, not all of them. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making any creative efforts are within the scope of protection of the present invention.

[0021] The present invention will be further described below with reference to the embodiments.

[0022] Example: Refer to Figures 1 to 6 , a skeleton glue spraying tool, comprising:

[0023] The frame 1 has a corresponding number of holes formed around it, and two mounting grooves 11 are formed on opposite sides of the frame 1 at equal ratios. The inner wall of each mounting groove 11 is slidably connected with a convex slider 12, and the convex surface of the convex slider 12 is on the side away from the mounting groove 11. Two skeleton toolings 2 are slidably connected inside the frame 1, and a plurality of first skeleton grooves 23 for placing the skeleton are formed in a rectangular array on the upper end surface of the skeleton tooling 2. A compressible first elastic block 21 is fixedly connected between two adjacent first skeleton grooves 23. The opposite surfaces of the two first skeleton grooves 23 are respectively provided with first slide rails 22 and fixedly connected with a first slideway 24, and the first slide rails 22 are slidably connected to the first slideway 24. The opposite surfaces of the two first skeleton grooves 23 are slidably connected with sub-skeleton tooling 3, and adjacent sub-skeleton toolings 3 are also slidably connected with sub-skeleton tooling 3.

[0024] By utilizing the first elastic block 21 disposed between two adjacent first frame grooves 23 and having contractility, when the frame tooling 2 is added with the auxiliary frame tooling 3 , sufficient space is provided to accommodate the auxiliary frame tooling 3 .

[0025] Reference Figures 1 to 6 The two sides of the sub-skeleton tooling 3 are respectively fixedly connected with a second slide 32 and a second slide rail 34 opposite to the two first skeleton grooves 23. The upper end of the sub-skeleton tooling 3 is provided with a second skeleton groove 33 corresponding to the first skeleton groove 23 in the skeleton tooling 2. A compressible second elastic block 31 is fixedly connected between two adjacent second skeleton grooves 33. A sub-tube 35 is indirectly arranged between the second skeleton grooves 33 of two adjacent sub-skeleton toolings 3. A square airbag 4 is fixedly connected in each mounting groove 11, and at least two extrusion blocks 41 are fixedly connected to the side of the square airbag 4 away from the mounting groove 11.

[0026] The second slideway 32 and the second slide rail 34 in the auxiliary skeleton tooling 3 and the first slide rail 22 and the first slideway 24 in the skeleton tooling 2 slide with each other, thereby fixing and positioning the auxiliary skeleton tooling 3.

[0027] Reference Figures 1 to 6 The two extrusion blocks 41 are in contact with one side of the plane of the convex slider 12 at one end away from the square airbag 4. The opposite sides of the square airbag 4 are fixedly connected with an air pipe 42 that passes through the first skeleton groove 23, and the air pipe 42 corresponds to the position of the sub-tube 35. The end of the air pipe 42 away from the square airbag 4 is fixedly connected with a mother pipe 44. The mother pipe 44 is airtightly slidably connected to the sub-tube 35. The first skeleton groove 23 and the second skeleton groove 33 are both slidably connected with a positioning column 43. The positioning column 43 passes through the first skeleton groove 23 and the second skeleton groove 33 and is airtightly slidably connected to the air pipe 42 and the sub-tube 35.

[0028] When the frame 1 is installed in the glue spraying equipment, the convex slider 12 in the frame 1 will be squeezed with the glue spraying equipment, causing the gas stored in the square airbag 4 to flow into the gas pipe 42, thereby increasing the air pressure inside the gas pipe 42, and pushing the positioning column 43 that is airtightly connected to the gas pipe 42 to slide out from the first skeleton groove 23 and the second skeleton groove 33 in the skeleton tooling 2 and the sub-skeleton tooling 3, thereby positioning the skeleton placed in the first skeleton groove 23 and the second skeleton groove 33.

[0029] The operating principle of this embodiment is as follows:

[0030] First, determine whether the number of the first skeleton slots 23 of the skeleton tooling 2 in the current frame 1 meets the needs of the current skeleton frame spraying. If it does, place the skeleton in the first skeleton slot 23. If it does not meet the needs, take the skeleton tooling 2 out of the frame 1, and at the same time, take out the sub-skeleton tooling 3 that meets the needs. Since the two skeleton toolings 2 are slidably connected by the first slide rail 22 and the first slide 24, the two skeleton toolings 2 are pulled apart from the first slide rail 22 and the first slide 24 by external force, so that the sub-skeleton tooling 3 is slid against the first slide rail 22 and the first slide 24 in the skeleton tooling 2 through the second slide 32 and the second slide rail 34, so that it fixes and positions the sub-skeleton tooling 3. At the same time, the first elastic block 21 set between two adjacent first skeleton slots 23 is used, and the first elastic block 21 has contractility, so that the skeleton tooling 2 adds a sub When the skeleton tooling 3 is installed, sufficient space is provided to accommodate the sub-skeleton tooling 3. When the sub-skeleton tooling 3 is placed in the skeleton tooling 2, the sub-tube 35 in the sub-skeleton tooling 3 will be connected with the main tube 44 in the skeleton tooling 2, thereby realizing the air flow transmission requirement of the air pipe 42. When the sub-skeleton tooling 3 is placed in the skeleton tooling 2, the skeleton tooling 2 will overlap with the frame 1 again. When the frame 1 is installed in the glue spraying equipment, the convex slider 12 in the frame 1 will be squeezed with the glue spraying equipment, causing the gas stored in the square airbag 4 to flow into the air pipe 42, thereby causing the air pressure inside the air pipe 42 to increase, and push the positioning column 43 that is airtightly connected to the air pipe 42 to slide out from the first skeleton groove 23 and the second skeleton groove 33 in the skeleton tooling 2 and the sub-skeleton tooling 3, thereby positioning the skeleton placed in the first skeleton groove 23 and the second skeleton groove 33.

[0031] The above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit it. Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art should understand that they can still modify the technical solutions described in the aforementioned embodiments, or make equivalent replacements for some of the technical features therein. However, these modifications or replacements will not cause the essence of the corresponding technical solutions to deviate from the protection scope of the technical solutions of the various embodiments of the present invention.

Claims

1. A skeleton glue spraying tool, characterized in that: include: A frame (1) is provided with a corresponding number of holes on all sides of the frame (1), two mounting grooves (11) are provided on opposite sides of the frame (1) at equal ratios, the inner wall of each mounting groove (11) is slidably connected with a convex slider (12), and the convex surface of the convex slider (12) is the side away from the mounting groove (11), the interior of the frame (1) is slidably connected with two skeleton toolings (2), the upper end surface of the skeleton tooling (2) is provided with a plurality of first skeleton grooves (23) for placing the skeleton in a rectangular array, a compressible first elastic block (21) is fixedly connected between two adjacent first skeleton grooves (23), the opposite surfaces of the two first skeleton grooves (23) are provided with a first slide rail (22) and a first slideway (24) fixedly connected, and the first slide rail (22) is slidably connected to the first slideway (24), the opposite surfaces of the two first skeleton grooves (23) are slidably connected with a sub-skeleton tooling (3), and adjacent sub-skeleton toolings (3) are also slidably connected with sub-skeleton toolings (3) with each other.

2. A skeleton glue spraying tool according to claim 1, characterized in that: The two sides of the sub-skeleton tooling (3) are respectively fixedly connected with a second slideway (32) and a second slide rail (34) opposite to the two first skeleton grooves (23); the upper end of the sub-skeleton tooling (3) is provided with a second skeleton groove (33) corresponding to the first skeleton groove (23) in the skeleton tooling (2); a second elastic block (31) with compressibility is fixedly connected between two adjacent second skeleton grooves (33); a sub-tube (35) is indirectly provided between the second skeleton grooves (33) of two adjacent sub-skeleton toolings (3); a square airbag (4) is fixedly connected in each of the mounting grooves (11); and at least two extrusion blocks (41) are fixedly connected on the side of the square airbag (4) away from the mounting groove (11).

3. A skeleton glue spraying tool according to claim 2, characterized in that: One end of the two extrusion blocks (41) away from the square airbag (4) contacts one side of the plane of the convex slider (12), and the opposite sides of the square airbag (4) are fixedly connected with an air pipe (42) that passes through the first skeleton groove (23), and the air pipe (42) and the sub-tube (35) are positioned at corresponding positions. The end of the air pipe (42) away from the square airbag (4) is fixedly connected with a mother pipe (44), and the mother pipe (44) and the sub-tube (35) are airtightly slidably connected. The first skeleton groove (23) and the second skeleton groove (33) are both slidably connected with a positioning column (43), and the positioning column (43) passes through the first skeleton groove (23) and the second skeleton groove (33) and is airtightly slidably connected to the air pipe (42) and the sub-tube (35).