Deviation-preventing dotter
By designing a stable component including the first stabilization mechanism and the second stabilization mechanism in the buckle machine, the problem of insufficient fastener stability when the load thickness of the existing buckle machine is uneven, and high-precision pressing of the fastener and significant improvement in the finished product quality is achieved.
Patent Information
- Application Number
- CN202422256697.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-14
- Publication Date
- 2025-06-27
- Estimated Expiration
- 2034-09-14
AI Technical Summary
The existing buckle machines have shortcomings in stabilizing fasteners and ensuring the quality of finished products. Especially when the thickness of the carrier is uneven, the stability of male and female buckles and surface buckles is difficult to ensure, resulting in the occurrence of unqualified products.
A buckle machine that is anti-bounce is designed, and a stabilizing assembly including a first stabilizing mechanism and a second stabilizing mechanism is adopted. The first stabilization mechanism is movably connected to the punch mechanism to ensure that the male and female buckles remain parallel during the pressing process; the second stabilization mechanism is movably connected to the mold to maintain the parallel position of the surface buckles in real time to avoid displacement.
By precisely controlling the stable components, the stability and high precision of fasteners are ensured in the production process, the quality of finished products is significantly improved, the generation of unqualified products is reduced, the production process is smoother, and the production efficiency is improved.
Smart Images

Figure CN223028296U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of button machines, and particularly to a button machine for preventing deviation in button pressing. Background Art
[0002] In modern manufacturing, button machines, as important industrial equipment, are widely used in the production process of various fasteners. Button machines mainly complete the pressing and forming of fasteners through a pressing component, and its core components include a frame, a punch mechanism, a mold, and a stabilizing component. Although the designs of current button machines on the market are relatively mature, there are still some deficiencies, especially in the process of stabilizing fasteners and ensuring the quality of finished products.
[0003] The button machines in the prior art generally use a punch mechanism and a mold to perform the pressing process of fasteners. However, these devices often encounter problems with the stability of male and female buttons and surface buttons during actual operation. Male and female buttons and surface buttons, as important components of fasteners, their stability directly affects the quality of the final product. Due to deficiencies in the design of the existing pressing components, it is difficult to ensure the stability of fasteners during the production process, resulting in many unqualified products. Specifically, when the thickness of the load-bearing object is uneven, the stabilizing component of the existing button machine fails to effectively address this issue. When the male and female buttons come into contact with the load-bearing object, due to the uneven surface of the load-bearing object, the male and female buttons cannot be kept parallel to the surface button. This not only affects the normal pressing of the fastener but also causes the final product to fail to meet the standards, resulting in a large number of unqualified products. The existence of this problem not only wastes raw materials but also increases production costs and the difficulty of post-processing. In addition, the button machines in the prior art also have the problem of occasional displacement when dealing with surface buttons. During the pressing process, the surface button may be displaced for various reasons, resulting in the punch being unable to accurately complete the pressing of the surface button. This displacement not only affects the forming accuracy of the fastener but also increases the uncertainty during the production process, further exacerbating the generation of unqualified products.
[0004] Therefore, there is an urgent need to provide a new type of button machine for preventing deviation in button pressing to solve the above problems existing in the prior art. Summary of the Utility Model
[0005] The main purpose of the utility model is to provide a button machine for preventing deviation in button pressing, aiming to solve the technical problems of the deficiencies in the stability and finished product quality control of existing button machines.
[0006] To achieve the above purpose, the utility model provides a button machine for preventing deviation in button pressing, including:
[0007] A frame, on which a pressing component is arranged. The pressing component is used for pressing fasteners. The pressing component includes a punch mechanism that can move up and down and a die fixed on the frame. The punch completes the pressing and forming of the fasteners in cooperation with the die. Among them, the fasteners include male and female fasteners and face fasteners;
[0008] A stability component, including a first stability mechanism and a second stability mechanism. The first stability mechanism is movably connected to the punch mechanism and is used to keep the male and female fasteners stable when pressing the fasteners. The second stability mechanism is movably connected to the die and is used to keep the face fasteners stable when pressing the fasteners.
[0009] Further, the first stability mechanism includes a connecting piece and a first clamping piece. The inner wall of the first clamping piece is provided with a first limiting groove and a first limiting hole corresponding to the shape of the male and female fasteners. The first limiting groove and the first limiting groove communicate to form a first limiting channel. The first limiting hole faces the output end of the punch. The side surface of the connecting piece is movably connected to the side surface of the punch, and the connecting piece is connected to the first clamping piece.
[0010] Further, the second stability mechanism includes a second clamping piece. The inner wall of the second clamping piece is provided with a second limiting groove and a second limiting hole corresponding to the shape of the face fastener. The second limiting groove and the second limiting groove communicate to form a second limiting channel.
[0011] Further, the first stability mechanism further includes a first reset mechanism, and the first reset mechanism is connected to the end of the connecting piece far away from the first clamping piece; the first reset mechanism includes a first elastic member, a first reset rod and a sliding block. The first elastic member is sleeved on the first reset rod. One end of the sliding block is connected to the punch mechanism, and the other end is connected to the connecting piece. The first elastic member and the first reset rod are connected to both ends of the inner wall of the sliding block.
[0012] Further, the second stability mechanism further includes a linkage rod and a second reset mechanism. The linkage rod is connected to the punch mechanism. One end of the linkage rod is movably connected to the punch mechanism, and the other end is connected to the second clamping piece and the second mechanism. The linkage rod is used to drive the second clamping piece to move synchronously when the punch mechanism moves. The second reset mechanism is used to reset the second clamping piece to the initial position after the second clamping piece completes the pressing action.
[0013] Further, the second reset mechanism includes an elastic hook. A through hole is provided on the linkage rod. The elastic hook passes through the through hole and both ends are connected to the second clamping piece, and is used to pull the second clamping piece back to the initial position by elastic force when the linkage rod moves to a specific position.
[0014] Further, it further includes a material tray and a transportation component. The material tray is used for storing the fasteners to be processed. The transportation component includes a conveyor belt and a driving motor. The conveyor belt is connected between the material tray and the pressing component and is used to transport the fasteners from the material tray to the pressing component.
[0015] Further, it further includes a pushing plate. The pushing plate is arranged on one side of the conveyor belt and is used to push the fasteners forward during the transportation process of the fasteners, so as to push the fasteners to reach the pressing component.
[0016] Further, the first clamping member includes a first part and a second part. The first part and the second part are symmetrically arranged. The first part and the second part include a clamping state and a releasing state. The first part and the second part are connected by a rotating shaft. The rotating shaft is located on the symmetry center line of the first part and the second part. The first part and the second part hold the male and female fasteners tightly through an elastic element in the clamping state, and rotate and separate the first part and the second part in the releasing state.
[0017] Further, the second clamping member includes a first unit and a second unit. The first unit and the second unit are symmetrically arranged. The first unit and the second unit include a clamping state and a releasing state. The first unit and the second unit hold the surface fastener tightly through an elastic element in the clamping state and separate in the releasing state.
[0018] Beneficial effects:
[0019] For the anti-offset buttoning machine of the present utility model, an innovative stable component design is adopted. The first stable mechanism is movably connected to the punch mechanism and can always maintain a parallel position with the surface fastener, ensuring that the male and female fasteners remain parallel during the pressing process, thereby avoiding stability problems caused by uneven thickness. The second stable mechanism is movably connected to the mold and can always keep the surface fastener in a parallel position in real time, ensuring that the surface fastener does not displace during the pressing process, thereby improving the precision of the pressing and forming. Through the precise control of the stable component, the present utility model ensures the stability of the fasteners during the production process, thereby significantly improving the quality of the finished products, reducing the generation of unqualified products, making the production process smoother, and improving the production efficiency. Description of the drawings
[0020] Figure 1 is the overall structural schematic diagram of the anti-offset buttoning machine according to an embodiment of the present utility model;
[0021] Figure 2 is Figure 1 the enlarged structural schematic diagram at I in
[0022] Figure 3It is a side view schematic diagram of a partial structure of a button - punching machine for preventing deviation in one embodiment of the present utility model;
[0023] Figure 4 It is a schematic structural diagram of a first stabilizing mechanism of a button - punching machine for preventing deviation in one embodiment of the present utility model;
[0024] Figure 5 It is a schematic structural diagram of a second stabilizing mechanism of a button - punching machine for preventing deviation in one embodiment of the present utility model;
[0025] Figure 6 It is a schematic structural diagram of a stabilizing assembly of a button - punching machine for preventing deviation in one embodiment of the present utility model.
[0026] Wherein: 1. Bracket; 2. Pressing assembly; 21. Punch mechanism; 22. Die; 3. Stabilizing assembly; 31. First stabilizing mechanism; 311. Connecting piece; 312. First clamping piece; 313. First limiting groove; 314. First limiting hole; 315. First limiting channel; 32. Second stabilizing mechanism; 321. Second clamping piece; 322. First limiting groove; 323. Second limiting hole; 324. Second limiting channel; 4. First reset mechanism; 41. First elastic member; 42. First reset rod; 43. Sliding block; 5. Second reset mechanism; 6. Linking connecting rod; 61. Through - hole; 71. Material tray; 72. Transport assembly; 8. Pushing plate.
[0027] The realization of the purpose, functional features and advantages of the present utility model will be further described with reference to the embodiments and the accompanying drawings. Specific embodiments
[0028] It should be understood that the specific embodiments described herein are only used to explain the present utility model and are not used to limit the present utility model.
[0029] In the description of the present utility model, it should be understood that the orientation or positional relationship indicated by terms such as "center", "longitudinal", "lateral", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", etc. is based on the orientation or positional relationship shown in the drawings. It is only for the convenience of describing the present utility model and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation. Therefore, it should not be construed as a limitation to the present utility model. In addition, the terms "first" and "second" are only used for descriptive purposes and cannot be understood as indicating or implying relative importance or implicitly specifying the quantity of the indicated technical features. Thus, the features defined with "first" and "second" may explicitly or implicitly include one or more of the said features. In the description of the present utility model, "a plurality of" means two or more, unless otherwise specifically and clearly defined.
[0030] In the description of the present utility model, it should be noted that unless otherwise clearly specified and defined, the terms "installed", "connected" and "coupled" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection, a direct connection, or an indirect connection through an intermediate medium, and it can be the communication inside two elements or the interaction relationship between two elements. For those of ordinary skill in the art, the specific meanings of the above terms in the present utility model can be understood according to specific circumstances.
[0031] In the present utility model, unless otherwise clearly specified and defined, the first feature being "on" or "under" the second feature may include the direct contact between the first and second features, or may include the situation where the first and second features are not in direct contact but in contact through additional features therebetween. Moreover, the first feature being "above", "over" and "on top of" the second feature includes that the first feature is directly above and obliquely above the second feature, or merely indicates that the horizontal height of the first feature is higher than that of the second feature. The first feature being "under", "beneath" and "underneath" the second feature includes that the first feature is directly below and obliquely below the second feature, or merely indicates that the horizontal height of the first feature is lower than that of the second feature.
[0032] Refer to Figures 1-6, A buckle - punching machine for preventing deviation in a specific embodiment of the utility model includes: a frame, on which a pressing assembly 2 is provided. The pressing assembly 2 is used for pressing buckles. The pressing assembly 2 includes a punch mechanism 21 that can move up and down and a die 22 fixed on the frame. The punch completes the pressing and forming of the buckle in cooperation with the die 22. Among them, the buckle includes male and female buckles and a face buckle; a stabilizing assembly 3, including a first stabilizing mechanism 31 and a second stabilizing mechanism 32. The first stabilizing mechanism 31 is movably connected to the punch mechanism 21 and is used to keep the male and female buckles stable when pressing the buckle. The second stabilizing mechanism 32 is movably connected to the die 22 and is used to keep the face buckle stable when pressing the buckle.
[0033] In this embodiment, the first stabilizing mechanism 31 is movably connected to the punch mechanism 21 and can always maintain a parallel position with the face buckle, ensuring that the male and female buckles remain parallel during the pressing process, thus avoiding stability problems caused by uneven thickness of the carrier. The second stabilizing mechanism 32 is movably connected to the die 22 and can always keep the face buckle in a parallel position in real - time, ensuring that the face buckle does not displace during the pressing process, thereby improving the precision of the pressing and forming. Through the precise control of the stabilizing assembly 3 of the utility model, the stability of the buckle during the production process is ensured, thereby significantly improving the quality of the finished product, reducing the generation of unqualified products, making the production process smoother, and improving production efficiency.
[0034] Reference Figure 4 , In an embodiment, the first stabilizing mechanism 31 includes a connecting piece 311 and a first clamping piece 312. The inner wall of the first clamping piece 312 is provided with a first limiting groove 313 and a first limiting hole 314 corresponding to the shape of the male and female buckles. The first limiting groove 313 and the first limiting groove 313 communicate to form a first limiting channel 315. The first limiting hole 314 is directly opposite to the output end of the punch. The side surface of the connecting piece 311 is movably connected to the side surface of the punch, and the connecting piece 311 is connected to the first clamping piece 312.
[0035] In this embodiment, by providing the first limiting groove 313 and the first limiting hole 314, the male and female fasteners are accurately positioned and fixed during the pressing process. When the punch moves downward, the male and female fasteners are limited by the inner wall of the first clamping member 312, ensuring their stability during the pressing process and avoiding quality problems of the finished product caused by inaccurate positions of the male and female fasteners. At the same time, the design of the first limiting channel 315 enables the male and female fasteners to smoothly enter and exit during the pressing process, reducing damage to the male and female fasteners and improving production efficiency. Specifically, in this embodiment, the cooperative work of the connecting member 311 and the first clamping member 312 makes the entire pressing process more stable and accurate. The connecting member 311 is movably connected to the side surface of the punch, ensuring that when the punch moves downward, the first clamping member 312 can move synchronously with the punch, thereby maintaining the stability of the male and female fasteners. The first limiting groove 313 and the first limiting groove 313 communicate with each other to form a first limiting channel 315, enabling the male and female fasteners to smoothly enter and exit during the pressing process, reducing damage to the male and female fasteners and improving production efficiency. Specifically, in this embodiment, the cooperative work of the connecting member 311 and the first clamping member 312 makes the entire pressing process more stable and accurate. The connecting member 311 is movably connected to the side surface of the punch, ensuring that when the punch moves downward, the first clamping member 312 can move synchronously with the punch, thereby maintaining the stability of the male and female fasteners.
[0036] Reference Figure 5 , in one embodiment, the second stabilizing mechanism 32 includes a second clamping member 321. The inner wall of the second clamping member 321 is provided with a second limiting groove 322 and a second limiting hole 323 corresponding to the shape of the face fastener. The second limiting groove 322 and the second limiting groove 322 communicate with each other to form a second limiting channel 324.
[0037] In this embodiment, by providing the second limiting groove 322 and the second limiting hole 323, the face fastener is accurately positioned and fixed during the pressing process. When the mold 22 is closed, the face fastener is limited by the inner wall of the second clamping member 321, ensuring its stability during the pressing process and avoiding quality problems of the finished product caused by inaccurate positions of the face fastener. At the same time, the design of the second limiting channel 324 enables the face fastener to smoothly enter and exit during the pressing process, reducing damage to the face fastener and improving production efficiency. Specifically, in this embodiment, the independent work of the second clamping member 321 makes the entire pressing process more stable and accurate. The second clamping member 321 is movably connected to the mold 22, ensuring that when the mold 22 is closed, the second clamping member 321 can move synchronously with the lower mold 22. When the punch moves downward, the second clamping member 321 can move with the punch to maintain the stability of the face fastener.
[0038] In one embodiment, the first stabilizing mechanism 31 further includes a first reset mechanism 4, and the first reset mechanism 4 is connected to one end of the connecting member 311 away from the first clamping member 312; the first reset mechanism 4 includes a first elastic member 41, a first reset rod 42 and a sliding block 43. The first elastic member 41 is sleeved on the first reset rod 42. One end of the sliding block 43 is connected to the punch mechanism 21, and the other end is connected to the connecting member 311. The first elastic member 41 and the first reset rod 42 are connected to both ends of the inner wall of the sliding block 43;
[0039] The second stabilizing mechanism 32 further includes a linkage rod 6 and a second reset mechanism 5. The linkage rod 6 is connected to the punch mechanism 21. One end of the linkage rod 6 is movably connected to the punch mechanism 21, and the other end is connected to the second clamping member 321 and the second mechanism. The linkage rod 6 is used to drive the second clamping member 321 to move synchronously when the punch mechanism 21 moves. The second reset mechanism 5 is used to reset the second clamping member 321 to the initial position after the second clamping member 321 completes the pressing action.
[0040] In this embodiment, by providing the first reset mechanism 4 and the second reset mechanism 5, it is ensured that after the pressing process is completed, the first clamping member 312 and the second clamping member 321 can quickly and accurately return to the initial position, preparing for the next pressing operation. The first reset mechanism 4 provides a stable reset force for the connecting member 311 through the cooperation of the first elastic member 41 and the first reset rod 42, so that the first clamping member 312 can quickly return to the initial position after the punch mechanism 21 rises, avoiding the influence on the accuracy of the next pressing due to inaccurate position of the clamping member. Similarly, the second reset mechanism 5 ensures that the second clamping member 321 can quickly reset after the mold 22 is opened through the cooperation of the linkage rod 6 and the second reset mechanism 5, thereby improving the production efficiency of the entire device. In this embodiment, the design of the linkage rod 6 not only realizes the synchronous movement of the second clamping member 321 and the mold 22, but also ensures the precise cooperation between the second clamping member 321 and the mold 22 when the punch mechanism 21 moves, thus ensuring the stability of the surface buckle during the pressing process. The use of the linkage rod 6 makes the entire pressing process more smooth, reduces the failures and downtime caused by uncoordinated mechanical movements, and further improves the production efficiency.
[0041] In summary, the anti-offset button punching machine of the present invention ensures the stability and high precision of the fastener during the production process through the precise control of the stabilizing component 3 and the rapid response of the reset mechanism, significantly improves the finished product quality, reduces the generation of unqualified products, makes the production process smoother, and improves the production efficiency. In addition, the present invention also has the advantages of simple structure, convenient operation, low maintenance cost, etc., and has a wide application prospect.
[0042] In one embodiment, the second reset mechanism 5 includes an elastic hook. A through hole 61 is provided on the linkage rod 6. The elastic hook passes through the through hole 61 and its two ends are connected to the second clamping member 321, and is used to pull the second clamping member 321 back to the initial position by elastic force when the linkage rod 6 moves to a specific position.
[0043] In this embodiment, by adopting the design of the elastic hook, the rapid reset of the second clamping member 321 is realized. When the linkage rod 6 moves to a specific position, the elastic hook quickly pulls back the second clamping member 321 under the action of elastic force, ensuring that it can quickly and accurately return to the initial position. This not only simplifies the structure of the reset mechanism, but also improves the reliability of the reset action, and reduces production delays caused by untimely or inaccurate reset. In addition, the design of the elastic hook also has the advantage of convenient maintenance. Due to its simple structure, no complex tools or professional knowledge are required to replace or adjust the elastic hook, which greatly reduces the maintenance cost and time of the equipment. During long-term use, the elastic force of the elastic hook may gradually weaken. At this time, simply replacing or adjusting the elastic hook can restore its original reset effect and ensure the continuous and stable operation of the equipment. In this embodiment, the combined use of the linkage rod 6 and the elastic hook further improves the production efficiency and stability of the entire anti-offset buttoning machine. The linkage rod 6 drives the second clamping member 321 to move synchronously when the punch mechanism 21 moves, ensuring the stability of the surface button during the pressing process; while the elastic hook quickly pulls the second clamping member 321 back to the initial position when the linkage rod 6 moves to a specific position, ensuring the quick response and high-efficiency production of the equipment. This design not only improves the quality of the finished product, but also reduces the generation of unqualified products, making the production process smoother.
[0044] In one embodiment, it further includes a material tray 71 and a transportation component 72. The material tray 71 is used to store the fasteners to be processed. The transportation component 72 includes a conveyor belt and a driving motor. The conveyor belt is connected between the material tray 71 and the pressing component 2, and is used to transport the fasteners from the material tray 71 to the pressing component 2.
[0045] In this embodiment, by introducing the material tray 71 and the transportation component 72, the entire production process has achieved automation and continuity. The setting of the material tray 71 makes the storage of fasteners more orderly and convenient, facilitating batch processing. At the same time, the introduction of the transportation component 72 has greatly improved the production efficiency and reduced the time and labor intensity of manually handling fasteners. Specifically, as the core part of the transportation component 72, the conveyor belt ensures the smooth transmission of fasteners between the material tray 71 and the pressing component 2 during its stable operation. The use of the driving motor enables the conveyor belt to adjust its speed according to production requirements, thereby achieving precise control of the fastener transmission speed. In this embodiment, the surface of the conveyor belt is designed with anti-slip materials to ensure that the fasteners will not slip or be misaligned during transmission, guaranteeing the stability of the production process and the quality of the finished products.
[0046] In one embodiment, it further includes a pushing plate 8, and the pushing plate 8 is arranged on one side of the conveyor belt and is used to push the fasteners forward during the fastener transmission process to push the fasteners to reach the pressing component 2.
[0047] In this embodiment, the design of the pushing plate 8 further ensures the stable transmission of the fasteners on the conveyor belt. Since the fasteners may stagnate or deviate from the predetermined position during transmission due to vibration or insufficient friction, the function of the pushing plate 8 is to provide a continuous driving force to ensure that the fasteners can smoothly reach the pressing component 2. The combined use of the pushing plate 8 and the conveyor belt enables the fasteners to maintain a consistent spacing and direction during transmission, thereby improving the positioning accuracy and production efficiency of the pressing component 2. In practical applications, the position and angle of the pushing plate 8 can be adjusted according to the shape and size of the fasteners to adapt to the transmission requirements of different types of fasteners. In addition, the movement of the pushing plate 8 can be controlled by an independent driving device or linked with the driving motor of the conveyor belt to ensure good synchronism between the two. In this embodiment, the introduction of the pushing plate 8 not only improves the degree of automation of the production process but also reduces the failures and downtime caused by improper fastener transmission. By precisely controlling the fastener transmission process, the pushing plate 8 provides a strong guarantee for the stable operation of the entire anti-offset buttoning machine. At the same time, the use of the pushing plate 8 also enables the operator to manage the production process more easily, reduces the labor intensity, and improves the production safety.
[0048] In one embodiment, the first clamping member 312 includes a first part and a second part, the first part and the second part are symmetrically arranged, the first part and the second part include a clamping state and a release state, the first part and the second part are connected by a rotating shaft, the rotating shaft is located on the symmetry center line of the first part and the second part, and the first part and the second part clamp the male and female fasteners through an elastic element in the clamping state and rotate and separate the first part and the second part in the release state;
[0049] The second clamping member 321 includes a first unit and a second unit. The first unit and the second unit are symmetrically arranged. The first unit and the second unit have a clamping state and a release state. In the clamping state, the first unit and the second unit hold the clamping surfaces in a buckled manner through elastic elements and are separated in the release state.
[0050] In this embodiment, the design of the first clamping member 312 enables it to maintain high stability and precision in both the clamping and release states. Through the arrangement of the rotating shaft, the first part and the second part can rotate synchronously, ensuring that the male and female fasteners are evenly and firmly clamped in the clamping state, avoiding fastener damage or production defects caused by uneven clamping. In the release state, the action of the elastic element enables the first part and the second part to quickly separate, preparing for the next clamping action, thereby improving the continuity and efficiency of the entire production process. Similarly, the design of the second clamping member 321 also adopts a symmetrical arrangement, ensuring that the face fasteners are evenly and stably clamped in the clamping state. The synchronous action of the first unit and the second unit makes the clamping and release processes faster and more accurate, reducing production delays and the generation of defective products caused by inaccurate clamping. In addition, the use of elastic elements not only improves the response speed of the clamping members but also reduces the wear of the equipment and extends the service life of the equipment. In this embodiment, the combined use of the first clamping member 312 and the second clamping member 321 further improves the production efficiency and stability of the entire anti-offset buttoning machine. By precisely controlling the actions of the clamping members, the stability and high precision of the fasteners during the production process are ensured, significantly improving the finished product quality and reducing the generation of defective products. At the same time, this design also has the advantage of convenient maintenance. Since its structure is simple, no complex tools or professional knowledge are required to replace or adjust the elastic elements, greatly reducing the equipment maintenance cost and time.
[0051] In a general embodiment, the designs of the first stabilizing mechanism 31 and the second stabilizing mechanism 32 are aimed at ensuring that the fasteners can be accurately pressed under various conditions of uneven thickness of the carriers. Through the ingenious cooperation of the limiting channels and the reset mechanism, the male and female fasteners and the surface fasteners are stably positioned before pressing, avoiding the misalignment or damage of the fasteners caused by the unevenness of the carriers. The design of the limiting channels enables them to flexibly give way during the pressing process, ensuring that the punch can accurately press the fasteners, thereby improving the production efficiency and the quality of the finished products. The function of the reset mechanism is to ensure that the limiting channels can quickly return to the initial position after the pressing is completed, preparing for the next pressing action. This rapid reset mechanism not only increases the production speed but also reduces the idle time of the equipment, further enhancing the production efficiency. The design of the driving mechanism ensures that the surface fastener stabilizing mechanism can move stably downward during the pressing process, preventing the surface fasteners from shifting during the pressing. Through the linkage of the follower connecting rods, the surface fastener stabilizing mechanism can synchronize with the punch mechanism 21, ensuring that the surface fasteners always remain in the correct position during the pressing, thus guaranteeing the production quality.
[0052] In summary, through the designs of the first stabilizing mechanism 31 and the second stabilizing mechanism 32 in this embodiment, the problem of fastener pressing under the condition of uneven carrier thickness is solved, and the production efficiency and the quality of the finished products are improved. At the same time, through the cooperation of the limiting channels and the reset mechanism, as well as the linkage of the driving mechanism, the stability and accuracy of the fasteners during the pressing process are ensured, significantly reducing the failure rate and downtime during the production process. Overall, this embodiment provides an efficient, stable and reliable solution for fastener pressing production.
[0053] The above are only the preferred embodiments of the present utility model, and do not limit the patent scope of the present utility model accordingly. Any equivalent structural or equivalent process transformations made by using the content of the specification and drawings of the present utility model, or directly or indirectly applied in other related technical fields, are equally included in the patent protection scope of the present utility model.
Claims
1. A buckle-locking machine for preventing buckling, characterized in that: include: A frame, on which a pressing assembly is arranged, the pressing assembly is used to press fasteners, the pressing assembly comprises a punch mechanism that can move up and down and a die fixed on the frame, the punch completes the pressing and forming of the fasteners in cooperation with the die, wherein the fasteners comprise male and female buckles and face buckles; The stabilizing assembly includes a first stabilizing mechanism and a second stabilizing mechanism. The first stabilizing mechanism is movably connected to the punch mechanism and is used to keep the male and female buckles stable when the fastener is pressed together. The second stabilizing mechanism is movably connected to the mold and is used to keep the surface buckle stable when the fastener is pressed together.
2. The anti-deviation button machine according to claim 1, characterized in that: The first stabilizing mechanism includes a connecting member and a first clamping member, the inner wall of the first clamping member is provided with a first limiting groove and a first limiting hole corresponding to the shape of the male and female buckles, the first limiting grooves are connected with the first limiting grooves to form a first limiting channel, the first limiting hole is opposite to the output end of the punch, the side surface of the connecting member is movably connected with the side surface of the punch, and the connecting member is connected to the first clamping member.
3. The anti-deviation button machine according to claim 1, characterized in that: The second stabilizing mechanism comprises a second clamping member, the inner wall of which is provided with a second limiting groove and a second limiting hole corresponding to the buckle shape, and the second limiting grooves are connected with each other to form a second limiting channel.
4. The anti-deviation button machine according to claim 2, characterized in that: The first stabilizing mechanism also includes a first reset mechanism, which is connected to one end of the connecting member away from the first clamping member; the first reset mechanism includes a first elastic member, a first reset rod and a sliding block, the first elastic member is sleeved on the first reset rod, one end of the sliding block is connected to the punch mechanism, and the other end is connected to the connecting member, and the first elastic member and the first reset rod are connected to both ends of the inner wall of the sliding block.
5. The anti-deviation button machine according to claim 3, characterized in that: The second stabilizing mechanism also includes a linkage connecting rod and a second reset mechanism, wherein the linkage connecting rod is connected to the punch mechanism, one end of the linkage connecting rod is movably connected to the punch mechanism, and the other end is connected to the second clamping member and the second mechanism, the linkage connecting rod is used to drive the second clamping member to move synchronously when the punch mechanism moves, and the second reset mechanism is used to reset the second clamping member to its initial position after the second clamping member completes the pressing action.
6. The anti-deviation buttoning machine according to claim 5, characterized in that: The second reset mechanism includes an elastic hook, a through hole is provided on the linkage link, the elastic hook passes through the through hole and both ends are connected to the second clamping member, and is used to pull the second clamping member back to the initial position by elastic force when the linkage link moves to a specific position.
7. The anti-deviation button machine according to claim 1, characterized in that: It also includes a material tray and a transport assembly, wherein the material tray is used to store fasteners to be processed, and the transport assembly includes a conveyor belt and a drive motor, and the conveyor belt is connected between the material tray and the pressing assembly to transfer the fasteners from the material tray to the pressing assembly.
8. The anti-deviation button machine according to claim 7, characterized in that: It also includes a pushing plate, which is arranged on one side of the conveyor belt and is used to push the fasteners forward during the fastener transmission process and push the fasteners to reach the pressing assembly.
9. The anti-deviation buttoning machine according to claim 2, characterized in that: The first clamping member includes a first part and a second part, the first part and the second part are symmetrically arranged, the first part and the second part include a clamping state and a releasing state, the first part and the second part are connected by a rotating axis, the rotating axis is located on the symmetry center line of the first part and the second part, the first part and the second part are kept clamped with a male and female buckle by an elastic element in the clamping state, and the first part and the second part are rotated and separated in the releasing state.
10. The anti-deviation button machine according to claim 3, characterized in that: The second clamping member includes a first unit and a second unit, the first unit and the second unit are symmetrically arranged, the first unit and the second unit include a clamping state and a releasing state, the first unit and the second unit are maintained to clamp the face buckle by an elastic element in the clamping state, and are separated in the releasing state.