Semi-automatic box nailing machine with safety structure
By setting protective components and automatic adjustment structure on the nail box machine, the damage problem of the nail box machine to the hand when processing materials is solved, and the safety and convenience are improved.
Patent Information
- Application Number
- CN202422384399.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-29
- Publication Date
- 2025-07-11
- Estimated Expiration
- 2034-09-29
AI Technical Summary
The existing nailing machine lacks effective protective measures when processing materials, which may cause damage to the hands of the user.
A semi-automatic nail box machine with protective components is designed, including a protective box, a slide rod and a spring structure. The slide rod and a protective box are moved up and down through the spring tensioning movement to protect the operator's hands; at the same time, the servo motor drives a combination of bidirectional screws and screws to realize the adjustment of the position of the nail holder and the automatic transportation of materials.
Effectively protect the operator's hands, avoid accidental damage, and automatically adjust the position of the nail holder and material transportation, improving the safety and convenience of operation.
Smart Images

Figure CN223085537U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of carton stapling machines, in particular to a semi-automatic carton stapling machine with a safety structure. Background Art
[0002] The carton stapling machine is one of the post-processing equipment for cartons. Its principle is the same as that of an ordinary stapler, except that the carton stapling machine uses tiger teeth as the backing plate and is specifically used for carton sealing. It has the advantages of being lightweight, easy to operate, good wear resistance, flat carton sealing, safe and firm, and can reduce labor intensity and improve work efficiency.
[0003] During the use of the relatively common devices on the market, materials are usually directly placed on the surface of the device by manual labor. However, in the process of continuous reciprocating feeding and production, since the existing devices cannot effectively protect the hands of the users, it is possible that when the device processes the materials, it may cause harm to the hands of the users, thus affecting the practicality of the device. Therefore, it is urgent to design a semi-automatic carton stapling machine with a safety structure to solve the above problems. Summary of the Utility Model
[0004] The purpose of the utility model is to solve the defect in the prior art that the device cannot be effectively protected, so that when the device processes materials, it will cause harm to the hands of the users, and a semi-automatic carton stapling machine with a safety structure is proposed.
[0005] In order to achieve the above purpose, the utility model adopts the following technical scheme:
[0006] A semi-automatic carton stapling machine with a safety structure, including a base, a protection component for protecting the hands of the user is arranged on the top of the base, the protection component includes a lifting plate, and a moving component for adjusting the protection component is arranged on one side of the lifting plate;
[0007] The protection component further includes sliding grooves, the sliding grooves are opened on both sides of the outer wall of the top of the lifting plate, connecting seats are slidably connected inside the sliding grooves, a stapler is installed on the outer wall of the bottom of the connecting seat through bolts, mounting columns are installed on both outer walls of the stapler through bolts, a spring groove is opened inside the mounting column, a sliding rod is slidably connected inside the spring groove, a spring sleeved on the outer wall of the sliding rod is inserted into the spring groove, and a protection box is installed on the outer wall of the bottom end of the sliding rod through bolts. The spring drives the sliding rod and the protection box to move up and down.
[0008] The key concept of the above technical solution is that: through the set spring, when the protective box touches the material, the protective box can drive the sliding rod to move. During the movement of the sliding rod, the sliding rod can utilize the fixed connection with the spring to enable the sliding rod and the protective box to move effectively. Such a structure can enable the operator to effectively protect the hands of the user during the processing of the material, avoiding the drawback of causing harm to the hands of the user due to the accidental touch of the user.
[0009] Preferably, a plurality of balls are arranged on both sides of the outer wall of the bottom of the protective box, and the balls are distributed in a horizontal structure.
[0010] Preferably, a support frame is installed on one side of the outer wall of the top of the base through bolts, and a top plate is installed on the outer wall of the top end of the support frame through bolts.
[0011] Preferably, a telescopic cylinder is installed on one side of the outer wall of the bottom of the top plate through bolts, and the output end of the telescopic cylinder is installed on the outer wall of the top of the lifting plate through bolts. The telescopic cylinder can drive the lifting plate to move up and down.
[0012] Preferably, the moving component includes a moving groove opened in the base. A motor is installed on one inner wall of the moving groove through bolts. The output end of the motor is installed with a lead screw through a coupling. The motor can drive the lead screw to rotate inside the moving groove. A moving plate extending outside the moving groove is threadedly connected to the outer wall of the lead screw. A push plate is installed on the outer wall of the top of the moving plate through bolts. The rotation of the lead screw can drive the moving plate and the push plate to move horizontally.
[0013] Preferably, the moving component further includes a servo motor. The output end of the servo motor is installed with a bidirectional screw arranged inside the sliding groove through a coupling, and the bidirectional screw is threadedly connected to the connecting seat.
[0014] The beneficial effects of the present utility model are:
[0015] 1. Through the set spring, when the protective box touches the material, the protective box can drive the sliding rod to move. During the movement of the sliding rod, the sliding rod can utilize the fixed connection with the spring to enable the sliding rod and the protective box to move effectively. Such a structure can enable the operator to effectively protect the hands of the user during the processing of the material, avoiding the drawback of causing harm to the hands of the user due to the accidental touch of the user.
[0016] 2. By means of the provided moving component, when the servo motor is started, the servo motor can drive the bidirectional screw to rotate. During the rotation of the bidirectional screw, the bidirectional screw can utilize the threaded connection with the connecting seat to enable the connecting seat to drive the stapler to move. Such a setting enables the operator to adjust the position of the stapler according to the width of the material, facilitating the operator's use of the device. The combined use of the motor, screw rod, moving plate, and push plate enables the operator to effectively convey and move the material. Brief Description of the Drawings
[0017] Figure 1 is a schematic structural diagram of a semi-automatic carton stapling machine with a safety structure proposed by the present utility model;
[0018] Figure 2 is a schematic cross-sectional structural diagram of the base of a semi-automatic carton stapling machine with a safety structure proposed by the present utility model;
[0019] Figure 3 is a schematic structural diagram of the servo motor and bidirectional screw of a semi-automatic carton stapling machine with a safety structure proposed by the present utility model;
[0020] Figure 4 is a schematic cross-sectional structural diagram of the protective box of a semi-automatic carton stapling machine with a safety structure proposed by the present utility model.
[0021] In the figure: 1 base, 2 support frame, 3 top plate, 4 telescopic cylinder, 5 lifting plate, 6 protective component, 61 sliding groove, 62 connecting seat, 63 stapler, 64 mounting column, 65 spring groove, 66 sliding rod, 67 spring, 68 protective box, 69 ball, 7 moving component, 71 moving groove, 72 motor, 73 screw rod, 74 moving plate, 75 push plate, 76 servo motor, 77 bidirectional screw. Detailed Embodiment
[0022] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all of the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present utility model.
[0023] It should be noted that when a component is referred to as "fixed to" another component, it can be directly on the other component or there may also be an intermediate component. When a component is considered to be "connected to" another component, it can be directly connected to the other component or there may be an intermediate component at the same time. When a component is considered to be "disposed on" another component, it can be directly disposed on the other component or there may be an intermediate component at the same time. The terms "vertical", "horizontal", "left", "right" and similar expressions used in this article are for illustrative purposes only.
[0024] Unless otherwise defined, all technical and scientific terms used in this article have the same meaning as commonly understood by those of ordinary skill in the technical field to which this utility model belongs. The terms used in the specification of this utility model in this article are only for the purpose of describing specific embodiments, and are not intended to limit this utility model. The term "and / or" used in this article includes any and all combinations of one or more of the related listed items.
[0025] Please also refer to Figures 1 to 4 , a semi-automatic carton stapling machine with a safety structure, including a base 1, a protective component 6 for protecting the hands of the user is provided on the top of the base 1, the protective component 6 includes a lifting plate 5, and a moving component 7 for adjusting the protective component 6 is provided on one side of the lifting plate 5;
[0026] The protective component 6 further includes a chute 61 which is opened on both sides of the top outer wall of the lifting plate 5. A connecting seat 62 is slidably connected to the inside of each chute 61. A stapler 63 is mounted on the bottom outer wall of the connecting seat 62 by bolts. Mounting columns 64 are mounted on both outer walls of the stapler 63 by bolts. A spring groove 65 is opened inside the mounting column 64. A sliding rod 66 is slidably connected to the inside of the spring groove 65. A spring 67 sleeved on the outer wall of the sliding rod 66 is inserted into the spring groove 65. A protective box 68 is mounted on the bottom outer wall of the sliding rod 66 by bolts. The spring 67 drives the sliding rod 66 and the protective box 68 to move up and down. When the protective box 68 contacts the material and continues to move downward, the protective box 68 will drive the sliding rod 66 to move horizontally upward inside the spring groove 65. During the continuous movement of the sliding rod 66, the sliding rod 66, by virtue of its fixed connection with the spring 67, causes the spring 67 to be stretched. During the stretching process of the spring 67, the protective box 68 will move on the outer wall of the stapler 63, so that this structure can protect the hands of the user, avoiding the user's hands being injured due to accidentally touching the stapler 63. A plurality of balls 69 are arranged on both sides of the bottom outer wall of the protective box 68. The balls 69 are horizontally distributed. When the material moves on the top outer wall of the base 1, the material can, by virtue of the action of the balls 69 on its bottom outer wall, cause the balls 69 to rotate inside the protective box 68, and due to the arrangement of the balls 69, it will not affect the normal movement of the material paper.
[0027] See Figure 1 , Figure 2 and Figure 3 , a support frame 2 is mounted on one side of the top outer wall of the base 1 by bolts. A top plate 3 is mounted on the top outer wall of the support frame 2 by bolts. The arrangement of the support frame 2 can effectively support the installation of the top plate 3, and the arrangement of the top plate 3 can provide an installation position for the installation of the telescopic cylinder 4 and the protective component 6. A telescopic cylinder 4 is mounted on one side of the bottom outer wall of the top plate 3 by bolts. The output end of the telescopic cylinder 4 is mounted on the top outer wall of the lifting plate 5 by bolts. When the telescopic cylinder 4 is started, the telescopic cylinder 4, by virtue of the fixed connection between its output end and the lifting plate 5, causes the lifting plate 5 to move up and down accordingly, thus facilitating the operator to staple the material.
[0028] Preferably, the moving component 7 includes a moving groove 71 formed inside the base 1. On one inner wall of the moving groove 71, a motor 72 is installed through bolts. The output end of the motor 72 is installed with a lead screw 73 through a coupling. The motor 72 can drive the lead screw 73 to rotate inside the moving groove 71. A moving plate 74 extending outside the moving groove 71 is threadedly connected to the outer wall of the lead screw 73. A push plate 75 is installed on the top outer wall of the moving plate 74 through bolts. By rotating the lead screw 73, the moving plate 74 and the push plate 75 can be driven to move horizontally. When the motor 72 is started, the motor 72 uses the transmission connection between its output end and the lead screw 73 to make the lead screw 73 rotate inside the moving groove 71. During the continuous rotation of the lead screw 73, the lead screw 73 uses the threaded connection with the moving plate 74 to make the moving plate 74 drive the push plate 75 to move. The push plate 75 will drive the material to move horizontally, thus realizing the automatic conveying and adjustment function of the device for the material.
[0029] See Figure 2 and Figure 3 The moving component 7 further includes a servo motor 76. The output end of the servo motor 76 is installed with a bidirectional screw 77 arranged inside the sliding groove 61 through a coupling. The bidirectional screw 77 is threadedly connected to the connecting seat 62. When the servo motor 76 is started, the servo motor 76 drives the bidirectional screw 77 to rotate by the action of the coupling. The bidirectional screw 77 uses the threaded connection between its outer wall thread layer and the connecting seat 62 to make the connecting seat 62 approach or move away from each other inside the sliding groove 61. Such a structure enables the device to effectively adjust the position of the stapler 63 according to the width of the material, thus facilitating the operator to staple the material.
[0030] With the above, by setting the moving component 7, when the servo motor 76 is started, the servo motor 76 can drive the bidirectional screw 77 to rotate. During the rotation of the bidirectional screw 77, the bidirectional screw 77 can use the threaded connection with the connecting seat 62 to make the connecting seat 62 drive the stapler 63 to move. Such a setting enables the operator to adjust the position of the stapler 63 according to the width of the material, facilitating the operator to use the device. The combined use of the motor 72, the lead screw 73, the moving plate 74 and the push plate 75 enables the operator to effectively convey and move the material.
[0031] Working principle: When in use, first place the material flat on the outer wall of the top of the base 1, and then start the servo motor 76 according to the width of the material. The servo motor 76 can drive the bidirectional screw 77 to rotate. During the rotation of the bidirectional screw 77, the bidirectional screw 77 can make the connecting seat 62 slide inside the chute 61 by using the threaded connection with the connecting seat 62. When the connecting seat 62 drives the stapler 63 to move to the specified position, start the motor 72. The motor 72 can drive the lead screw 73 to rotate. During the rotation of the lead screw 73, the lead screw 73 makes the moving plate 74 drive the push plate 75 to move by using the threaded connection with the moving plate 74. The push plate 75 drives the material to move on the outer wall of the top of the base 1. When the paper moves to directly below the stapler 63, start the telescopic cylinder 4. The telescopic cylinder 4 makes the lifting plate 5 drive the connecting seat 62 and the stapler 63 to move by using the fixed connection between its output end and the lifting plate 5. During the continuous movement of the stapler 63, the stapler 63 drives the mounting posts 64 on its two outer walls to move. During the continuous movement of the mounting posts 64, the mounting posts 64 drive the spring groove 65, the slide rod 66 and the spring 67 to move. During the continuous movement of the stapler 63, the protective box 68 contacts the material. The protective box 68 drives the slide rod 66 to move. The slide rod 66 makes the spring 67 be stretched by using the connection with the spring 67, and the stapler 63 can process the material.
[0032] The above is only a preferred specific embodiment of the present invention, but the protection scope of the present invention is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present invention, according to the technical solution of the present invention and its inventive concept, makes equivalent substitutions or changes, and all should be covered by the protection scope of the present invention.
Claims
1. A semi-automatic carton stapling machine with a safety structure, including a base (1), characterized in that, A protective component (6) for protecting the hands of the user is provided on the top of the base (1). The protective component (6) includes a lifting plate (5), and a moving component (7) for adjusting the protective component (6) is provided on one side of the lifting plate (5). The protective component (6) further includes sliding grooves (61) which are opened on both sides of the outer wall of the top of the lifting plate (5). Connecting seats (62) are slidably connected inside the sliding grooves (61). A stapler (63) is installed on the bottom outer wall of the connecting seat (62) by bolts. Mounting columns (64) are installed on both outer walls of the stapler (63) by bolts. A spring groove (65) is opened inside the mounting column (64). A sliding rod (66) is slidably connected inside the spring groove (65). A spring (67) sleeved on the outer wall of the sliding rod (66) is inserted into the spring groove (65). A protective box (68) is installed on the bottom outer wall of the sliding rod (66) by bolts. The spring (67) drives the sliding rod (66) and the protective box (68) to move up and down.
2. The semi-automatic carton stapling machine with a safety structure according to claim 1, characterized in that, A plurality of balls (69) are provided on both sides of the bottom outer wall of the protective box (68), and the balls (69) are distributed in a horizontal structure.
3. The semi-automatic box stapling machine with a safety structure according to claim 1, characterized in that, A support frame (2) is installed on one side of the outer wall of the top of the base (1) by bolts, and a top plate (3) is installed on the top outer wall of the support frame (2) by bolts.
4. The semi-automatic carton stapling machine with a safety structure according to claim 3, characterized in that, A telescopic cylinder (4) is installed on one side of the bottom outer wall of the top plate (3) by bolts, and the output end of the telescopic cylinder (4) is installed on the top outer wall of the lifting plate (5) by bolts. The telescopic cylinder (4) can drive the lifting plate (5) to move up and down.
5. A semi-automatic box stapling machine with a safety structure according to claim 1, characterized in that, The moving component (7) includes a moving groove (71) opened inside the base (1). A motor (72) is installed on one inner wall of the moving groove (71) by bolts. The output end of the motor (72) is installed with a lead screw (73) through a coupling. The motor (72) can drive the lead screw (73) to rotate inside the moving groove (71). A moving plate (74) extending outside the moving groove (71) is threadedly connected to the outer wall of the lead screw (73). A push plate (75) is installed on the top outer wall of the moving plate (74) by bolts. The rotation of the lead screw (73) can drive the moving plate (74) and the push plate (75) to move horizontally.
6. A semi-automatic carton stapling machine with a safety structure according to claim 1, characterized in that, The moving component (7) further includes a servo motor (76). The output end of the servo motor (76) is installed with a bidirectional screw (77) arranged inside the sliding groove (61) through a coupling, and the bidirectional screw (77) is threadedly connected to the connecting seat (62).