Label discharging device and sawing machine
By introducing movable marking components, top rolling components and transmission components into the sawing machine, the problem of low automation of the discharge label device of the sawing machine is solved, efficient conveying and precise marking of profiles is achieved, and production efficiency and equipment adaptability are improved.
Patent Information
- Application Number
- CN202421989913.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-15
- Publication Date
- 2025-07-04
- Estimated Expiration
- 2034-08-15
AI Technical Summary
The existing sawing machine has low degree of automation in its output labeling device and lacks an effective conveying system, resulting in inaccurate marking, low profile retention and low production efficiency, and may affect product quality.
A discharge label device is designed, including a movable marking assembly, a top rolling assembly and a transmission assembly, combined with the cylinder and rail structure, to realize the automatic conveying and precise marking of profiles, use the synchronous belt assembly to improve the conveying efficiency, and simplify the operation process through integrated design.
It improves marking accuracy and production efficiency, reduces profile stagnation and collision, reduces labor intensity, and ensures product quality and equipment adaptability and reliability.
Smart Images

Figure CN223056851U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of sawing and milling equipment, in particular to a discharging label device and a sawing machine. Background Art
[0002] A sawing machine is a common processing equipment, which is mainly used for sawing pipes, strips, etc. to reach the required length. However, some sawing machines on the current market have obvious functional defects. First of all, although some sawing machines are equipped with a label device, their automation degree is relatively low, which affects the accuracy and quality of labeling. Inaccurate labeling may not only cause label misalignment and blurring, but also affect the quality traceability and identification of sawn products. In addition, many existing sawing machines lack an effective conveying system after labeling, resulting in the inefficient movement of the profiled materials after labeling, often causing the problem of retention of profiled materials, occupying production space, and thus restricting production efficiency and production capacity. More seriously, the accumulation and collision of profiled materials may damage the products and affect the final quality of the products. Summary of the Utility Model
[0003] Based on this, it is necessary to provide a discharging label device and a sawing machine for the problems of low automation degree of the discharging label device of the sawing machine and lack of an effective conveying system.
[0004] A discharging label device includes: a discharging rack, the discharging rack is provided with a feeding end; a marking assembly, the marking assembly is arranged on the discharging rack and located at the feeding end, and a part of the marking assembly can move relative to the discharging rack; a top roller assembly, the top roller assembly is arranged on the discharging rack, the top roller assembly can move longitudinally relative to the discharging rack, and the top roller assembly is used for conveying the profiled materials along the length direction of the discharging rack; a transmission assembly, the transmission assembly is arranged on the discharging rack, the transmission assembly is used for conveying the profiled materials, and the direction of the transmission assembly for conveying the profiled materials intersects with the length direction of the discharging rack.
[0005] The present application discloses a discharging label device. By installing the marking component on the discharging rack and at the feeding end of the discharging rack, it is possible to perform marking instantaneously during the profile discharging process, reducing additional marking procedures and thus improving production efficiency. The marking component can move relative to the discharging rack, meaning that the discharging label device can adjust the marking position according to different profile sizes and shapes, improving the adaptability and flexibility of the device. The setting of the transmission component and the top roller component enables efficient profile conveying and marking within a limited space, reducing the stagnation time of the profile during conveying and saving production space. The automated conveying and marking processes reduce manual intervention, lower labor intensity, and at the same time reduce production accidents caused by improper manual operation. In addition, the structural design of the marking component can mark the profile more precisely, ensuring the accuracy of the marking position and the marking quality.
[0006] In one embodiment, the marking component includes a frame assembly, a marking machine, and a first cylinder assembly. The marking machine and the first cylinder assembly are respectively arranged on the frame assembly. One end of the first cylinder assembly is connected to the frame assembly, and the end of the first cylinder assembly away from the frame assembly is connected to the marking machine. The first cylinder assembly can drive the marking machine to slide longitudinally relative to the frame assembly. By arranging the marking machine and the first cylinder assembly on the frame assembly, the compactness of the structure is achieved, space is saved, and it is convenient for installation and maintenance. The marking machine slides longitudinally under the drive of the first cylinder assembly, which can quickly adjust the marking position to mark profiles of different sizes and shapes, ensuring the marking accuracy and quality. At the same time, it makes the marking process more flexible and improves production efficiency.
[0007] In one embodiment, the frame assembly includes a first frame body, a first slide rail, a first slider, and a second frame body. The first frame body is arranged on the discharging rack, the first slide rail is arranged on the first frame body, the first slider is arranged on the second frame body, the first slider is adapted to the first slide rail, the marking machine is arranged on the second frame body, and the first slider slides relative to the first slide rail, which can drive the marking machine to slide horizontally relative to the first frame body. Through the adaptive design of the first slider and the first slide rail, the marking machine is allowed to slide horizontally relative to the first frame body and the discharging rack, enabling the marking machine to adjust its position as needed to adapt to profiles of different sizes and shapes. In addition, the structural design of the first slide rail and the first slider ensures the stability of the marking machine during movement, reducing errors or damage caused by movement.
[0008] In one embodiment, the first cylinder assembly includes a cylinder block and a guide rod. The cylinder block is disposed on the frame assembly. The cylinder block is provided with a movable cavity. The guide rod is disposed on the cylinder block, and a part of the guide rod is located in the movable cavity and a part extends out of the movable cavity. The guide rod can move along the length direction of the movable cavity, and the part of the guide rod extending out of the movable cavity is connected to the marking machine. By disposing one end of the guide rod on the cylinder block and connecting the other end to the marking machine, and the guide rod can move longitudinally in the movable cavity. Thus, the longitudinal movement of the guide rod in the movable cavity can drive the marking machine to move longitudinally, so that the marking machine can accurately mark profiles of different sizes and shapes. At the same time, by using the driving mode of the cylinder, the movement of the marking machine is faster and more accurate, thereby reducing the adjustment time during the marking process and improving the production efficiency.
[0009] In one embodiment, the marking assembly further includes a second cylinder assembly. The second cylinder assembly is disposed on the frame assembly. The second cylinder assembly is used to drive the marking machine to move horizontally relative to the frame assembly. By using the second cylinder assembly to drive the marking machine to move horizontally relative to the frame assembly, rapid and accurate adjustment of the marking position can be achieved, thereby improving the production efficiency. By using the adjustment control mode of the cylinder drive, not only the time for adjusting the position can be reduced, but also the operation difficulty of the equipment is lowered.
[0010] In one embodiment, the top roller assembly includes a connecting plate, a second slide rail, a second slider and a roller assembly. The second slide rail and the second slider are respectively disposed on the discharge rack and the connecting plate. The second slide rail is adapted to the second slider. The second slider can slide relative to the second slide rail, and can drive the connecting plate to move longitudinally relative to the discharge rack. The roller assembly is disposed on one side of the connecting plate away from the second slider. By respectively disposing the second slide rail and the second slider on the discharge rack and the connecting plate, and the second slider can slide relative to the second slide rail, the connecting plate can move longitudinally relative to the discharge rack, and further the roller assembly can be adjusted up and down according to different operation requirements, so that the discharge label device can adapt to the discharge and marking of profiles of different heights, improving the applicable range of the equipment. And by using the structural design of the second slide rail and the second slider, the lifting operation of the roller assembly is simplified, improving the work efficiency.
[0011] In one embodiment, a third cylinder assembly is further included. The third cylinder assembly is disposed on the discharge rack. One end of the third cylinder assembly away from the discharge rack is connected to the connecting plate and / or the second slider. The third cylinder assembly can drive the second slider to slide longitudinally relative to the second slide rail. The third cylinder assembly can provide a stable driving force, ensuring that the longitudinal sliding of the second slider on the second slide rail is smoother and more accurate, thereby improving the positioning accuracy of the label. In addition, the automated cylinder driving method reduces the labor intensity of the operator and also reduces the errors caused by improper manual operation.
[0012] In one embodiment, a roller driving device is further included. The roller driving device is connected to the roller assembly and is used to drive the roller assembly to rotate. By connecting the roller driving device to the roller assembly, the roller assembly can be rotated automatically, thereby improving the working efficiency of the entire system. The roller driving device can adjust the rotation speed and direction of the roller assembly according to different application scenarios and requirements, such as automatically adjusting the rotation speed according to the weight or properties of the material.
[0013] In one embodiment, the number of the roller assemblies is multiple, and the multiple roller assemblies are arranged at intervals along the length direction of the connecting plate. By arranging multiple roller assemblies, the discharge label device can be adjusted according to different production requirements to adapt to profiles of different lengths. The multiple roller assemblies can convey the material more smoothly, reduce the friction and damage of the material during the conveying process, and improve the product quality. In addition, when a certain roller assembly needs to be maintained or replaced, the operation of other roller assemblies will not be affected, improving the reliability and maintainability of the equipment.
[0014] In one embodiment, the transmission assembly includes a synchronous belt assembly, a transmission wheel shaft, and a motor. The synchronous belt assembly is disposed on the discharge rack. The length direction of the synchronous belt assembly is staggered with the length direction of the discharge rack. The transmission wheel shaft is disposed on the synchronous belt assembly and penetrates through the synchronous belt assembly. The motor is disposed on the transmission wheel shaft and is partially connected to the synchronous belt assembly. The motor can drive the transmission wheel shaft to rotate, causing the synchronous belt assembly to be synchronously driven. By driving the transmission wheel shaft to rotate by the motor, the synchronous belt assembly is synchronously driven, so that the synchronous belt assembly has the function of conveying the profile. And by setting the length direction of the synchronous belt assembly to be staggered with the length direction of the discharge rack, the synchronous belt assembly can convey the profile in the transverse direction, effectively utilizing the space of the discharge rack, realizing the continuous flow of the production line, avoiding the accumulation of profiles resulting in production interruption, and at the same time avoiding the collision between profiles affecting the product quality. In addition, the automated conveying method simplifies the operation process and improves the production efficiency.
[0015] In one embodiment, the transmission assembly further includes a connecting member. The motor is provided with an adapter hole. The transmission wheel shaft sequentially passes through the synchronous belt assembly and the adapter hole and fits against the inner wall of the adapter hole. The connecting member is clamped between the transmission wheel shaft and the inner wall of the adapter hole. The transmission wheel shaft is provided with an adapter groove, and at least a part of the connecting member is adaptively clamped with the adapter groove. One side of the connecting member away from the adapter groove abuts against the inner wall of the adapter hole. By directly passing the transmission wheel shaft through the adapter hole and fitting against the inner wall of the adapter hole, the energy loss during the transmission process is reduced, and the transmission efficiency is improved. The connecting member is clamped between the transmission wheel shaft and the inner wall of the adapter hole, and at least a part of it is adaptively clamped with the adapter groove, which can prevent the transmission wheel shaft from accidentally falling off during operation, improve the safety of the equipment, and ensure the stable operation of the entire transmission system. Moreover, the design of the connecting member makes the connection between the motor and the synchronous belt assembly easy to disassemble and assemble, facilitating maintenance and component replacement.
[0016] In one embodiment, the number of the synchronous belt assemblies is multiple. The multiple synchronous belt assemblies are arranged in parallel at intervals. The transmission wheel shaft sequentially passes through the multiple synchronous belt assemblies. By setting multiple synchronous belt assemblies, the load can be dispersed, thereby improving the efficiency of the overall transmission system. Moreover, the multiple synchronous belt assemblies are arranged in parallel at intervals, which helps to maintain the stability of the transmission system and facilitates the maintenance and component replacement of a single synchronous belt assembly. The transmission wheel shaft sequentially passes through the multiple synchronous belt assemblies, enabling the multiple synchronous belt assemblies to always maintain the same frequency of transmission, improving the stability and reliability of the entire transmission system.
[0017] In one embodiment, it further includes a marking control system. The marking control system is electrically connected to the marking assembly and is used to control the marking action and marking content of the marking assembly. By electrically connecting or radio connecting the marking control system to the marking assembly, the automatic control of the marking action can be realized, improving the production efficiency. At the same time, the marking control system can precisely control the marking content, ensuring the accuracy and consistency of the label information and avoiding label errors caused by human operation errors. By setting the marking control system, the marking content and marking action can be flexibly adjusted according to different production requirements and product characteristics, improving the adaptability and customizability of the discharging label device.
[0018] In one embodiment, it further includes a protective cover assembly. The protective cover assembly surrounds the discharging rack. By setting the protective cover assembly, it can prevent operators from being accidentally injured during operation and reduce the operation risk. In addition, the protective cover assembly can avoid damage to the discharging label device caused by external factors and extend the service life of the equipment.
[0019] A sawing machine, comprising: a frame; a sawing device disposed on the frame; a feeding device disposed on the frame and at one end of the sawing device; a discharging device disposed on the frame and at one end of the sawing device away from the feeding device; and the above-mentioned discharging label device disposed at one end of the discharging device away from the sawing device.
[0020] In the second aspect of the present application, a sawing machine is disclosed. By arranging the feeding device, the sawing device, the discharging device and the discharging label device on the frame, this structural design simplifies the entire sawing process, reduces the floor area of the equipment. At the same time, an automated sawing process is realized, improving the production efficiency. In addition, the design of integrating all devices on the frame can simplify the operation process of the sawing machine, making the maintenance and repair work more concentrated and efficient, and reducing the maintenance cost of the sawing machine. Description of the Drawings
[0021] Figure 1 Is the first perspective view of the discharging label device;
[0022] Figure 2 Is the second perspective view of the discharging label device;
[0023] Figure 3 Is the perspective view of the marking assembly;
[0024] Figure 4 Is the structural schematic diagram of the frame assembly;
[0025] Figure 5 Is the perspective view of the top roller assembly and the discharging rack;
[0026] Figure 6 Is the structural schematic diagram of the top roller assembly and the discharging rack;
[0027] Figure 7 Is the perspective view of the transmission assembly and the discharging rack;
[0028] Figure 8 Is Figure 7 The partial enlarged view at position A of
[0029] Figure 9 Is the structural schematic diagram of the transmission wheel shaft and the connecting piece.
[0030] Among them, the corresponding relationship between the reference numerals and the component names is as follows:
[0031] 1 discharging rack;
[0032] 2 Marking assembly, 21 Frame assembly, 211 First frame body, 212 First slide rail, 213 First slider, 214 Second frame body, 22 Marking machine, 23 First cylinder assembly, 231 Cylinder block, 232 Guide rod,
[0033] 3 Top roller assembly, 31 Connecting plate, 32 Second slide rail, 33 Second slider, 34 Roller assembly;
[0034] 4 Transmission assembly, 41 Synchronous belt assembly, 42 Transmission wheel shaft, 43 Motor, 44 Connecting piece, 401 Adaptation hole, 402 Adaptation slot;
[0035] 5 Third cylinder assembly;
[0036] 6 Protective cover. Detailed implementation mode
[0037] In order to be able to more clearly understand the above-mentioned objects, features and advantages of the present application, the present application will be further described in detail below in conjunction with the accompanying drawings and specific implementation modes. It should be noted that, without conflict, the embodiments of the present application and the features in the embodiments can be combined with each other.
[0038] Many specific details are set forth in the following description in order to fully understand the present application. However, the present application may also be implemented in other ways different from those described herein. Therefore, the protection scope of the present application is not limited by the specific embodiments disclosed below.
[0039] The following describes some embodiments of the present application, the discharge label device and the sawing machine, with reference to the accompanying drawings.
[0040] Embodiment 1, as Figures 1 to 9 shown, this embodiment discloses a discharge label device, including: a discharge rack 1, the discharge rack 1 is provided with a feed end; a marking assembly 2, the marking assembly 2 is arranged on the discharge rack 1 and located at the feed end, and a part of the marking assembly 2 can move relative to the discharge rack 1; a top roller assembly 3, the top roller assembly 3 is arranged on the discharge rack 1, the top roller assembly 3 can move longitudinally relative to the discharge rack 1, and the top roller assembly 3 is used for conveying profiles along the length direction of the discharge rack 1; a transmission assembly 4, the transmission assembly 4 is arranged on the discharge rack 1, the transmission assembly 4 is used for conveying profiles, and the direction of the transmission assembly 4 for conveying profiles is staggered with the length direction of the discharge rack 1.
[0041] The first aspect of the present application discloses a discharging label device. By installing the marking component 2 on the discharging rack 1 and at the feeding end of the discharging rack 1, it can achieve instant marking during the profile discharging process, reducing additional marking procedures and thus improving production efficiency. The marking component 2 can move relative to the discharging rack 1, meaning that the discharging label device can adjust the marking position according to different profile sizes and shapes, improving the adaptability and flexibility of the equipment. The setting of the transmission component 4 and the top roller component 3 can achieve efficient profile conveying and marking in a limited space, reducing the stagnation time of the profile during conveying and saving production space. The automated conveying and marking process reduces manual intervention, lowers labor intensity, and at the same time reduces production accidents caused by improper manual operation. In addition, the structural design of the marking component 2 can mark the profile more precisely, ensuring the accuracy of the marking position and the marking quality.
[0042] As Figure 2 and Figure 3 shown, in addition to the features of the above embodiments, this embodiment further defines that: the marking component 2 includes a frame component 21, a marking machine 22, and a first cylinder component 23. The marking machine 22 and the first cylinder component 23 are respectively arranged on the frame component 21. One end of the first cylinder component 23 is connected to the frame component 21, and the end of the first cylinder component 23 far from the frame component 21 is connected to the marking machine 22. The first cylinder component 23 can drive the marking machine 22 to slide longitudinally relative to the frame component 21. By arranging the marking machine 22 and the first cylinder component 23 on the frame component 21, the compactness of the structure is achieved, space is saved, and it is convenient for installation and maintenance. The marking machine 22 slides longitudinally under the drive of the first cylinder component 23, which can quickly adjust the marking position, mark profiles of different sizes and shapes, ensure the marking accuracy and quality, and at the same time make the marking process more flexible and improve production efficiency.
[0043] As Figure 3 and Figure 4As shown, in addition to the features of the above embodiments, this embodiment further defines that the frame assembly 21 includes a first frame body 211, a first slide rail 212, a first slider 213, and a second frame body 214. The first frame body 211 is disposed on the discharge rack 1, the first slide rail 212 is disposed on the first frame body 211, the first slider 213 is disposed on the second frame body 214, the first slider 213 is adapted to the first slide rail 212, the marking machine 22 is disposed on the second frame body 214, and the first slider 213 slides relative to the first slide rail 212, capable of driving the marking machine 22 to slide horizontally relative to the first frame body 211. Through the adapted design of the first slider 213 and the first slide rail 212, the marking machine 22 is allowed to slide horizontally relative to the first frame body 211 and the discharge rack 1, so that the marking machine 22 can adjust its position as needed to adapt to profiles of different sizes and shapes. In addition, the structural design of the first slide rail and the first slider 213 ensures the stability of the marking machine 22 during movement, reducing errors or damages caused by movement.
[0044] As Figure 3 and Figure 4 As shown, in addition to the features of the above embodiments, this embodiment further defines that the first cylinder assembly 23 includes a cylinder body 231 and a guide rod 232. The cylinder body 231 is disposed on the frame assembly 21, the cylinder body 231 is provided with a movable cavity, the guide rod 232 is disposed on the cylinder body 231, and a part of the guide rod 232 is located in the movable cavity and a part extends out of the movable cavity. The guide rod 232 can move along the length direction of the movable cavity, and the part of the guide rod 232 extending out of the movable cavity is connected to the marking machine 22. By disposing one end of the guide rod 232 on the cylinder body 231 and the other end connected to the marking machine 22, and the guide rod 232 can move longitudinally in the movable cavity, thus, the longitudinal movement of the guide rod 232 in the movable cavity can drive the marking machine 22 to move longitudinally, so that the marking machine 22 can accurately mark profiles of different sizes and shapes. At the same time, by using the cylinder driving method, the movement of the marking machine 22 is made faster and more accurate, thereby reducing the adjustment time during the marking process and improving production efficiency.
[0045] In addition to the features of the above embodiments, this embodiment further defines that the marking assembly 2 further includes a second cylinder assembly. The second cylinder assembly is disposed on the frame assembly 21 and is used to drive the marking machine 22 to move horizontally relative to the frame assembly 21. By using the second cylinder assembly to drive the marking machine 22 to move horizontally relative to the frame assembly 21, rapid and accurate adjustment of the marking position can be achieved, thereby improving production efficiency. By using the adjustment control method of cylinder driving, not only can the time for adjusting the position be reduced, but also the operation difficulty of the equipment is lowered.
[0046] As Figure 5 and Figure 6As shown, in addition to the features of the above embodiments, this embodiment further defines that: the top roller assembly 3 includes a connecting plate 31, a second slide rail 32, a second slider 33 and a roller assembly 34. The second slide rail 32 and the second slider 33 are respectively arranged on the discharge rack 1 and the connecting plate 31. The second slide rail 32 is adapted to the second slider 33, and the second slider 33 can slide relative to the second slide rail 32, which can drive the connecting plate 31 to move longitudinally relative to the discharge rack 1. The roller assembly 34 is arranged on one side of the connecting plate 31 away from the second slider 33. By arranging the second slide rail 32 and the second slider 33 on the discharge rack 1 and the connecting plate 31 respectively, and the second slider 33 can slide relative to the second slide rail 32, the connecting plate 31 can move longitudinally relative to the discharge rack 1, so that the roller assembly 34 can be adjusted up and down according to different operation requirements, enabling the discharge label device to adapt to the discharge and marking of profiles with different heights, and improving the applicable range of the equipment. Moreover, by using the structural design of the second slide rail 32 and the second slider 33, the lifting operation of the roller assembly 34 is simplified, and the work efficiency is improved.
[0047] As Figure 2 and Figure 5 shown, in addition to the features of the above embodiments, this embodiment further defines that: it further includes a third cylinder assembly 5. The third cylinder assembly 5 is arranged on the discharge rack 1, and one end of the third cylinder assembly 5 away from the discharge rack 1 is connected to the connecting plate 31 and / or the second slider 33. The third cylinder assembly 5 can drive the second slider 33 to slide longitudinally relative to the second slide rail 32. By the third cylinder assembly 5, a stable driving force can be provided to ensure that the longitudinal sliding of the second slider 33 on the second slide rail 32 is smoother and more accurate, thereby improving the positioning accuracy of the label. In addition, the automated cylinder driving method reduces the labor intensity of the operator and also reduces the errors caused by improper manual operation.
[0048] In addition to the features of the above embodiments, this embodiment further defines that: it further includes a roller driving device. The roller driving device is connected to the roller assembly 34, and the roller driving device is used to drive the roller assembly 34 to rotate. By connecting the roller driving device to the roller assembly 34, the roller assembly 34 can rotate automatically, thereby improving the working efficiency of the entire system. The roller driving device can adjust the rotation speed and direction of the roller assembly 34 according to different application scenarios and requirements, such as automatically adjusting the rotation speed according to the weight or properties of the material.
[0049] As Figure 6As shown, in addition to the features of the above embodiments, this embodiment further defines that the number of drum assemblies 34 is multiple, and the multiple drum assemblies 34 are arranged at intervals along the length direction of the connecting plate 31. By providing multiple drum assemblies 34, the discharging label device can be adjusted according to different production requirements to adapt to profiles of different lengths. The multiple drum assemblies 34 can convey materials more smoothly, reduce friction and damage of the materials during conveying, and improve product quality. In addition, when a certain drum assembly 34 needs to be maintained or replaced, the operation of other drum assemblies 34 will not be affected, improving the reliability and maintainability of the equipment.
[0050] As Figure 7 and Figure 8 As shown, in addition to the features of the above embodiments, this embodiment further defines that the transmission assembly 4 includes a synchronous belt assembly 41, a transmission wheel shaft 42, and a motor 43. The synchronous belt assembly 41 is arranged on the discharging rack 1, the length direction of the synchronous belt assembly 41 intersects with the length direction of the discharging rack 1, the transmission wheel shaft 42 is arranged on the synchronous belt assembly 41 and penetrates through the synchronous belt assembly 41, the motor 43 is arranged on the transmission wheel shaft 42 and is partially connected to the synchronous belt assembly 41, and the motor 43 can drive the transmission wheel shaft 42 to rotate to synchronously drive the synchronous belt assembly 41. By driving the transmission wheel shaft 42 to rotate by the motor 43 to achieve synchronous transmission of the synchronous belt assembly 41, the synchronous belt assembly 41 can thus function to convey profiles, and by setting the length direction of the synchronous belt assembly 41 to intersect with the length direction of the discharging rack 1, the synchronous belt assembly 41 can convey profiles in the lateral direction, effectively utilizing the space of the discharging rack 1, realizing continuous flow of the production line, avoiding production interruption caused by profile accumulation, and at the same time avoiding collision between profiles and affecting product quality. In addition, the automated conveying method simplifies the operation process and improves production efficiency.
[0051] As Figure 8 and Figure 9As shown, in addition to the features of the above embodiments, this embodiment further defines that: the transmission assembly 4 further includes a connecting member 44. The motor 43 is provided with an adaptation hole 401. The transmission wheel shaft 42 sequentially penetrates through the synchronous belt assembly 41 and the adaptation hole 401 and fits with the inner wall of the adaptation hole 401. The connecting member 44 is clamped between the transmission wheel shaft 42 and the inner wall of the adaptation hole 401. The transmission wheel shaft 42 is provided with an adaptation groove 402. At least part of the connecting member 44 is adaptively clamped with the adaptation groove 402. One side of the connecting member 44 away from the adaptation groove 402 abuts against the inner wall of the adaptation hole 401. By directly penetrating the adaptation hole 401 with the transmission wheel shaft 42 and fitting with the inner wall of the adaptation hole 401, the energy loss during the transmission process is reduced, and the transmission efficiency is improved. The connecting member 44 is clamped between the transmission wheel shaft 42 and the inner wall of the adaptation hole 401 and at least part of it is adaptively clamped with the adaptation groove 402, which can prevent the transmission wheel shaft 42 from accidentally falling off during operation, improve the safety of the equipment, and ensure the stable operation of the entire transmission system. And the design of the connecting member 44 makes the connection between the motor 43 and the synchronous belt assembly 41 easy to disassemble and assemble, facilitating maintenance and component replacement.
[0052] As Figure 7 shown, in addition to the features of the above embodiments, this embodiment further defines that: the number of the synchronous belt assemblies 41 is multiple. The multiple synchronous belt assemblies 41 are arranged in parallel at intervals. The transmission wheel shaft 42 sequentially penetrates through the multiple synchronous belt assemblies 41. By setting multiple synchronous belt assemblies 41, the load can be dispersed, thereby improving the efficiency of the overall transmission system. And the multiple synchronous belt assemblies 41 are arranged in parallel at intervals, which helps to maintain the stability of the transmission system and is convenient for maintaining and replacing components of a single synchronous belt assembly 41. The transmission wheel shaft 42 sequentially penetrates through the multiple synchronous belt assemblies 41, enabling the multiple synchronous belt assemblies 41 to always maintain the same frequency of transmission, improving the stability and reliability of the entire transmission system.
[0053] In addition to the features of the above embodiments, this embodiment further defines that: it further includes a marking control system. The marking control system is electrically connected to the marking assembly 2 and is used to control the marking action and marking content of the marking assembly 2. By electrically connecting or wirelessly connecting the marking control system to the marking assembly 2, the automated control of the marking action can be realized, improving the production efficiency. At the same time, the marking control system can accurately control the marking content, ensuring the accuracy and consistency of the label information and avoiding label errors caused by human operation errors. By setting the marking control system, the marking content and marking action can be flexibly adjusted according to different production requirements and product characteristics, improving the adaptability and customizability of the discharging label device.
[0054] As Figure 1As shown, in addition to the features of the above embodiments, this embodiment further defines that: it further includes a protective cover assembly 6, and the protective cover assembly 6 is arranged around the discharging rack 1. By providing the protective cover assembly 6, it is possible to prevent operators from suffering accidental injuries during operation and reduce the operation risk. In addition, the protective cover assembly 6 can avoid damage to the discharging label device caused by external factors and extend the service life of the equipment.
[0055] Embodiment 2, as Figures 1 to 9 shown, this embodiment discloses a sawing machine, including: a frame; a sawing device arranged on the frame; a feeding device arranged on the frame and at one end of the sawing device; a discharging device arranged on the frame and at the end of the sawing device away from the feeding device; the above-mentioned discharging label device located at the end of the discharging device away from the sawing device.
[0056] In the second aspect of this application, a sawing machine is disclosed. By arranging the feeding device, the sawing device, the discharging device and the discharging label device on the frame, this structural design simplifies the entire sawing process, reduces the floor area of the equipment. At the same time, it realizes an automated sawing process and improves the production efficiency. In addition, the design of integrating all devices on the frame can simplify the operation process of the sawing machine, making the maintenance and repair work more centralized and efficient, and reducing the maintenance cost of the sawing machine.
[0057] The technical features of the above-mentioned embodiments can be combined arbitrarily. For the sake of brevity of description, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, it should be considered as the scope described in this specification.
[0058] The above-mentioned embodiments only represent several implementation manners of the present utility model. The description is relatively specific and detailed, but it should not be construed as a limitation on the scope of the utility model patent. It should be noted that for those of ordinary skill in the art, without departing from the concept of the present utility model, several deformations and improvements can still be made, and these all belong to the protection scope of the present utility model. Therefore, the protection scope of the utility model patent shall be subject to the appended claims.
Claims
1. A discharging label device, characterized in that, Comprising: A discharging rack (1), the discharging rack (1) being provided with a feeding end; A marking assembly (2), the marking assembly (2) being arranged on the discharging rack (1) and located at the feeding end, and a part of the marking assembly (2) being capable of moving relative to the discharging rack (1); A top roller assembly (3), the top roller assembly (3) being arranged on the discharging rack (1), the top roller assembly (3) being capable of longitudinally moving relative to the discharging rack (1), and the top roller assembly (3) being used for conveying profiles along the length direction of the discharging rack (1); A transmission assembly (4), the transmission assembly (4) being arranged on the discharging rack (1), the transmission assembly (4) being used for conveying profiles, and the direction of conveying profiles by the transmission assembly (4) intersects with the length direction of the discharging rack (1).
2. The discharging label device according to claim 1, wherein, The marking assembly (2) includes a frame assembly (21), a marking machine (22) and a first cylinder assembly (23), the marking machine (22) and the first cylinder assembly (23) are respectively arranged on the frame assembly (21), one end of the first cylinder assembly (23) is connected to the frame assembly (21), and the end of the first cylinder assembly (23) far away from the frame assembly (21) is connected to the marking machine (22), and the first cylinder assembly (23) is capable of driving the marking machine (22) to longitudinally slide relative to the frame assembly (21).
3. The discharging label device according to claim 2, wherein The frame assembly (21) includes a first frame body (211), a first slide rail (212), a first slider (213) and a second frame body (214), the first frame body (211) is arranged on the discharging rack (1), the first slide rail (212) is arranged on the first frame body (211), the first slider (213) is arranged on the second frame body (214), the first slider (213) is adapted to the first slide rail (212), the marking machine (22) is arranged on the second frame body (214), and the first slider (213) sliding relative to the first slide rail (212) can drive the marking machine (22) to horizontally slide relative to the first frame body (211); And / or the first cylinder assembly (23) includes a cylinder body (231) and a guide rod (232), the cylinder body (231) is arranged on the frame assembly (21), the cylinder body (231) is provided with a movable cavity, the guide rod (232) is arranged on the cylinder body (231), and a part of the guide rod (232) is located in the movable cavity and a part extends out of the movable cavity, the guide rod (232) can move along the length direction of the movable cavity, and the part of the guide rod (232) extending out of the movable cavity is connected to the marking machine (22); And / or the marking assembly (2) further includes a second cylinder assembly, the second cylinder assembly is arranged on the frame assembly (21), and the second cylinder assembly is used for driving the marking machine (22) to horizontally move relative to the frame assembly (21).
4. The discharging label device according to claim 1, characterized in that, The top roller assembly (3) includes a connecting plate (31), a second slide rail (32), a second slider (33), and a roller assembly (34). The second slide rail (32) and the second slider (33) are respectively arranged on the discharge rack (1) and the connecting plate (31). The second slide rail (32) is adapted to the second slider (33). The second slider (33) and the second slide rail (32) slide relative to each other, and can drive the connecting plate (31) to move longitudinally relative to the discharge rack (1). The roller assembly (34) is arranged on one side of the connecting plate (31) away from the second slider (33).
5. The discharge label device according to claim 4, characterized in that it further includes a third cylinder assembly (5). The third cylinder assembly (5) is arranged on the discharge rack (1). One end of the third cylinder assembly (5) away from the discharge rack (1) is connected to the connecting plate (31) and / or the second slider (33). The third cylinder assembly (5) can drive the second slider (33) to slide longitudinally relative to the second slide rail (32); and / or it further includes a roller driving device. The roller driving device is connected to the roller assembly (34), and the roller driving device is used to drive the roller assembly (34) to rotate; and / or the number of the roller assemblies (34) is multiple, and the multiple roller assemblies (34) are arranged at intervals along the length direction of the connecting plate (31).
6. The discharging label device according to claim 1, wherein The transmission assembly (4) includes a synchronous belt assembly (41), a transmission wheel shaft (42), and a motor (43). The synchronous belt assembly (41) is arranged on the discharge rack (1). The length direction of the synchronous belt assembly (41) is staggered with the length direction of the discharge rack (1). The transmission wheel shaft (42) is arranged on the synchronous belt assembly (41) and penetrates through the synchronous belt assembly (41). The motor (43) is arranged on the transmission wheel shaft (42) and is partially connected to the synchronous belt assembly (41). The motor (43) can drive the transmission wheel shaft (42) to rotate, so that the synchronous belt assembly (41) is synchronously transmitted.
7. The discharge label device according to claim 6, characterized in that the transmission assembly (4) further includes a connecting piece (44). The motor (43) is provided with an adaptation hole (401). The transmission wheel shaft (42) sequentially penetrates through the synchronous belt assembly (41) and the adaptation hole (401), and is in contact with the inner wall of the adaptation hole (401). The connecting piece (44) is clamped between the transmission wheel shaft (42) and the inner wall of the adaptation hole (401). The transmission wheel shaft (42) is provided with an adaptation groove (402). At least part of the connecting piece (44) is adapted and clamped with the adaptation groove (402). One side of the connecting piece (44) away from the adaptation groove (402) abuts against the inner wall of the adaptation hole (401); and / or the number of the synchronous belt assemblies (41) is multiple, and the multiple synchronous belt assemblies (41) are arranged in parallel at intervals, and the transmission wheel shaft (42) sequentially penetrates through the multiple synchronous belt assemblies (41).
8. The discharge label device according to claim 1, wherein It further includes a marking control system, and the marking control system is electrically connected to the marking assembly (2) and is used for controlling the marking action and marking content of the marking assembly (2).
9. The discharging label device according to claim 1, wherein It further includes a protective cover assembly (6), and the protective cover assembly (6) is arranged around the discharging rack (1).
10. A sawing machine, characterized in that, Comprising: a frame; a sawing device, and the sawing device is arranged on the frame; a feeding device, and the feeding device is arranged on the frame and is located at one end of the sawing device; a discharging device, and the discharging device is arranged on the frame and is located at the end of the sawing device far away from the feeding device; the discharging label device according to any one of claims 1 to 9, and the discharging label device is arranged on the frame and is located at the end of the discharging device far away from the sawing device.