A packaging device for finished brazing tools
By introducing baffle, conveying component and adjustment component into the brazing tool packaging equipment, the problem of inconvenience in bundling of brazing tools is solved, and the brazing tool is automatically approached by the bazing and limited position, reducing gaps and facilitating bundling and packaging.
Patent Information
- Application Number
- CN202510161989.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-14
- Publication Date
- 2025-07-25
- Estimated Expiration
- 2045-02-14
AI Technical Summary
During the bundling process, existing brazing tool packaging equipment requires manual pushing of the drill rod to get close to and tie, resulting in inconvenient operation.
Packaging equipment including frame, baffle, conveying assembly and adjustment assembly is adopted. The conveyor belt and adjustment assembly automatically make the brazing tool close to the bazing plate and limit it, reducing the gap between the brazing tool and making it easier to tie.
The brazing tool is automatically approached to the baffle and limited, reducing the gap between the brazing tool, facilitating subsequent bundling and packaging, and improving packaging efficiency.
Smart Images

Figure CN119611879B_ABST
Abstract
Description
Technical Field
[0001] This application relates to the technical field of drill tool packaging equipment, and in particular to a packaging equipment for finished drill tools. Background Art
[0002] A drill tool is a working tool for rock drilling holes, that is, a general term for a connecting rod shank, a drill rod, a coupling sleeve, a drill bit, an integral drill rod, etc. After production, the drill tools need to be packaged for subsequent transportation.
[0003] For example, the Chinese patent document with the publication number CN215205629U discloses a drill tool packaging equipment, including a frame, a film wrapping assembly and a cutting assembly arranged in sequence on the frame; the frame is also provided with a conveying assembly for moving the workpiece from the film wrapping assembly and passing through the cutting assembly; by setting a packaging assembly, a cutting assembly and a conveying assembly, the operator only needs to continuously replenish the workpiece into the film wrapping table, and the equipment can perform packaging operations on the workpiece. However, when packaging multiple drill tools at the same time, the multiple drill tools in the packaging bag are not fixed and are prone to rolling. In the prior art, when bundling and packaging drill rods, it is necessary to manually place multiple drill rods on the bundling rack in sequence, and then arrange the multiple drill rods on the bundling rack. After the arrangement is completed, they are fixed by bundling, and then the bundled drill rods are packaged again through a packaging bag or a wooden box for subsequent transportation.
[0004] In the above related technologies, although the bundling and packaging of drill tools can be achieved, during the bundling process, in order to make the bundling effect of the drill rods better, it is necessary to manually push the drill rods to make the multiple drill rods approach each other, reduce the distance between the drill rods, and finally facilitate bundling and fixing with a tie; during the entire packaging and bundling process, one person needs to push multiple drill rods to approach each other, and another person needs to tie the tie to complete, resulting in great inconvenience in packaging the drill rods. Summary of the Invention
[0005] This application provides a packaging equipment for finished drill tools, aiming to solve the problem of inconvenient packaging of drill tools in the related technologies.
[0006] The packaging equipment for finished drill tools provided by this application adopts the following technical solutions:
[0007] A packaging device for finished brazing tools, comprising a frame, on which there is a baffle for limiting the placed brazing tools, and a conveying assembly for conveying the brazing tools towards the baffle; the conveying assembly includes two driving rollers rotatably connected to the frame, a first moving roller and a second moving roller slidably connected to the frame, and a conveyor belt wound around the two driving rollers, and the conveyor belt is also wound around the first moving roller and the second moving roller; an adjusting assembly for adjusting the position of the conveyor belt is arranged on the frame, and the adjusting assembly makes the conveyor belt form a first horizontal part, a connecting part and a second horizontal part, the first horizontal part is used for placing the brazing tools to be bundled, the connecting part is used for limiting and clamping the brazing tools placed on the first horizontal part, the second horizontal part is used for conveying the brazing tools to the first horizontal part, and the adjusting assembly is also used for driving the second horizontal part to move away from or towards the first horizontal part.
[0008] By adopting the above technical solution, the brazing tools are directly conveyed to the connecting part through the second horizontal part and finally conveyed to the first horizontal part through the connecting part. Since the conveyor belt is always rotating, it will move the brazing tools on the first horizontal part towards the baffle, and finally make the bottommost brazing tools placed side by side on the first horizontal part. Then, the adjusting assembly drives the second horizontal part to move away from the first horizontal part, and the connecting part can clamp and limit the brazing tools placed in the lower layer, so as to reduce the gap between the brazing tools and facilitate the subsequent bundling and packaging of the stacked brazing tools by the staff.
[0009] Optionally, a moving plate is arranged on the frame, the adjusting assembly is arranged on the moving plate, and a driving member is arranged on the frame, and the driving member is used for driving the moving plate and the adjusting assembly to be slidably connected to the frame in the horizontal direction; the adjusting assembly includes an adjusting plate slidably connected to the moving plate, a supporting roller, a limiting roller and an adjusting roller rotatably connected to the adjusting plate, the surface of the limiting roller is flush with the surface of the first horizontal part, the adjusting plate includes a fixed part and a moving part, the moving part is slidably connected to the fixed part, the second moving roller is rotatably connected to the fixed part, and a driving member for driving the adjusting plate to slide in the vertical direction is also arranged on the moving plate.
[0010] By adopting the above technical solution, after the bottommost brazing tools are placed, the driving member drives the adjusting plate to move away from the ground, and then the adjusting roller and the second moving roller will move away from the first horizontal part in the vertical direction. At this time, the second horizontal part is above the first horizontal part, and at the same time, the length of the connecting part becomes longer. Under the action of the baffle, the connecting part can limit the brazing tools placed in the lower layer, so it is more convenient to use.
[0011] Optionally, an installation block is slidably connected to the moving part, the adjusting roller is rotatably connected to the installation block, and a driving member is also provided on the moving part. The driving member is used to drive the installation block to be slidably connected to the moving part in the horizontal direction.
[0012] By adopting the above technical solution, the driving member on the adjusting plate can drive the installation block to move in the horizontal direction. After the lower-layer drill tools are placed, the distance between the first horizontal part and the second horizontal part is made the same as the height of the drill tools. Then, the driving member drives the installation block and the adjusting roller to move towards the direction close to the baffle. During the movement, the connecting part will be inclined and will squeeze the lower-layer placed drill tools, so that the gaps between the lower-layer placed drill tools are smaller, which is more convenient for packaging.
[0013] Optionally, a blanking assembly is provided on the frame. The blanking assembly includes a blanking hopper fixed on the frame and a blanking frame slidably connected to the blanking hopper. The blanking frame slides in the vertical direction, and the drill tools in the blanking frame fall onto the second horizontal part under the action of gravity. A pushing assembly for pushing the blanking frame to move away from the ground is provided on the fixing part.
[0014] By adopting the above technical solution, since the blanking frame slides on the blanking hopper, the blanking frame can abut against the pushing assembly under the action of gravity. Then, when the fixing part moves away from the ground, the pushing assembly will push the blanking frame to move. When the fixing part moves towards the direction close to the ground, the blanking frame will still abut against the pushing assembly under the action of gravity, and then it is convenient for the drill tools in the blanking frame to fall onto the upper surface of the second horizontal part.
[0015] Optionally, the pushing assembly includes a pushing plate and a mounting bolt. A kidney-shaped slot is formed on the pushing plate. The mounting bolt is threadedly connected to the fixing part through the kidney-shaped slot, and the pushing plate abuts against the end face of the blanking frame.
[0016] By adopting the above technical solution, due to the setting of the kidney-shaped slot, when the mounting bolt is at different positions in the kidney-shaped slot, the distance between the lower end face of the blanking frame and the second horizontal part is also different. Specifically in use, the distance between the lower end face of the blanking frame and the surface of the second horizontal part is set according to actual needs, and then the drill tools falling onto the second horizontal part can be conveyed to the first horizontal part.
[0017] Optionally, a limiting assembly for limiting both ends of the drill tool is provided on the fixing part; the limiting assembly includes a bidirectional screw rotatably connected to the fixing part and limiting plates threadedly connected to the bidirectional screw. Two limiting plates are provided. The two limiting plates are arranged on the opposite sides of the blanking frame and are slidably connected to the fixing part.
[0018] By adopting the above technical solution, by rotating the bidirectional screw, the distance between the two limiting plates can be adjusted, and finally, the drill tools of different lengths can be limited, so that the two ends of the drill tools moved onto the first horizontal part are neat.
[0019] Optionally, a positioning component for positioning the drill tools in the blanking frame is arranged on the blanking frame, which can prevent the drill tools on the blanking frame from falling onto the second horizontal part; the positioning component includes a positioning plate slidably connected to the blanking frame and an electric push rod fixed to the blanking frame, and the electric push rod pushes the positioning plate to move along the length direction of the blanking frame.
[0020] By adopting the above technical solution, when placing another layer of drill tools, the electric push rod drives the positioning plate to move, so that the positioning plate abuts against the end of the drill tool. At this time, the drill tools in the blanking frame are positioned. When blanking is required, the electric push rod drives the positioning plate to move in the reverse direction, and then the drill tools fall onto the second horizontal part under the action of gravity.
[0021] Optionally, a T-shaped block is fixedly installed on the moving part, a T-shaped groove is formed in the moving plate, the T-shaped groove is opened in the vertical direction, and the T-shaped block is slidably connected in the T-shaped groove.
[0022] In summary, the present application has the following beneficial effects:
[0023] By moving the adjusting plate upward, and at the same time, the mounting block drives the adjusting roller to move towards the baffle plate. At this time, the connecting part will limit and clamp the lower layer of drill tools, reduce the gap between the drill tools, and convey the drill tools to the lower layer of drill tools through the second horizontal part. After the conveying is completed, the stacked drill tools are bundled and packaged with zip ties, so that it is more convenient when bundling and packaging the drill tools. Description of the Drawings
[0024] Figure 1 is the overall structural schematic diagram of the embodiment of the present application.
[0025] Figure 2 is the structural schematic diagram of the adjusting component of the embodiment of the present application.
[0026] Figure 3 is the structural schematic diagram of the conveying component of the embodiment of the present application.
[0027] Figure 4 is the structural schematic diagram of the adjusting plate of the embodiment of the present application.
[0028] Figure 5 is the structural schematic diagram of the limiting component and the positioning component of the embodiment of the present application.
[0029] Figure 6 is Figure 5 the enlarged view of A in
[0030] : 01, frame; 02, baffle; 03, T-block; 04, T-slot; 05, moving block; 06, moving plate; 07, mounting block; 1, conveying assembly; 11, driving roller; 12, first moving roller; 13, second moving roller; 14, conveyor belt; 141, first horizontal portion; 142, connecting portion; 143, second horizontal portion; 2, unloading assembly; 21, unloading hopper; 22, unloading frame; 3, adjusting assembly; 31, adjusting plate; 311, fixing portion; 312, moving portion; 32, supporting roller; 33, limiting roller; 34, adjusting roller; 4, pushing assembly; 41, pushing plate; 42, mounting bolt; 43, waist-shaped groove; 5, limiting assembly; 51, bidirectional screw; 52, limiting plate; 6, positioning assembly; 61, positioning plate; 62, electric push rod; 7, driving member. DETAILED DESCRIPTION
[0031] The following combination Figures 1-6 This application is described in further detail.
[0032] The present application embodiment discloses a packaging device for finished brazing tools. Figure 1 and Figure 2 A packaging device for finished brazing tools comprises a frame 01 and a baffle 02 arranged on the frame 01. A conveying assembly 1 and a blanking assembly 2 are also arranged on the frame 01. A plurality of brazing tools are arranged in the blanking assembly 2. The conveying assembly 1 is used to convey the brazing tools in the blanking assembly 2 in sequence, and the brazing tools after conveyance are in a stacked state, so that it is convenient for staff to bundle and pack the stacked brazing tools.
[0033] Reference Figure 2 and Figure 3 The conveying assembly 1 includes two driving rollers 11 rotatably connected to the frame 01, a first moving roller 12 and a second moving roller 13 slidably connected to the frame 01, and a conveyor belt 14 wound around the two driving rollers 11, and the conveyor belt 14 is also wound around the first moving roller 12 and the second moving roller 13. The two driving rollers 11, one is arranged above the first moving roller 12, and the other is on the same horizontal plane as the first moving roller 12; when the brazing tool in the blanking assembly 2 falls onto the conveyor belt 14, the brazing tool is then conveyed toward the direction close to the baffle 02 by the conveyor belt 14, so that the brazing tool can be horizontally arranged on the conveyor belt 14. In this embodiment, a yielding portion is provided between the conveyor belts 14. Under the action of the yielding portion, two conveyor belts 14 arranged at intervals are formed on the frame 01, so that the brazing tool is more stable when being conveyed. At the same time, under the action of the yielding portion, it is convenient to bundle the brazing tool.
[0034] Reference Figures 2 to 4, an adjusting assembly 3 is provided on the frame 01. The adjusting assembly 3 is used to adjust the position of the conveyor belt 14. Under the action of the adjusting assembly 3, the conveyor belt 14 can form a first horizontal portion 141, a connecting portion 142, and a second horizontal portion 143. The first horizontal portion 141 is used to place the drill tools to be bundled. The connecting portion 142 is used to limit and clamp the drill tools placed on the first horizontal portion 141. The second horizontal portion 143 is used to convey the drill tools in the blanking assembly 2 to the first horizontal portion 141. Additionally, when the adjusting assembly 3 adjusts the height of the second horizontal portion 143, the first moving roller 12 moves in the horizontal direction and towards the direction close to the lower driving roller 11, and the second moving roller 13 moves in the vertical direction away from the lower driving roller 11. While the first moving roller 12 and the second moving roller 13 are moving, the conveyor belt 14 is always kept in a taut state, thereby facilitating the conveyance of the drill tools.
[0035] Refer to Figures 2 to 4 , in order to facilitate driving the first moving roller 12 to slide on the frame 01, in this embodiment, a chute is provided on the frame 01. A moving block 05 is slidably connected in the chute. The first moving roller 12 is rotatably connected to the moving block 05. At the same time, a driving member 7 for driving the moving block 05 to slide in the horizontal direction is also provided on the frame 01.
[0036] Refer to Figures 2 to 4 , a moving plate 06 is provided on the frame 01. The adjusting assembly 3 is provided on the moving plate 06. At the same time, a driving member 7 is provided on the frame 01. The driving member 7 is used to drive the adjusting assembly 3 to be slidably connected to the frame 01 in the horizontal direction. The adjusting assembly 3 includes an adjusting plate 31 slidably connected to the moving plate 06, a support roller 32, a limiting roller 33, and an adjusting roller 34 rotatably connected to the adjusting plate 31. The support roller 32 and the adjusting roller 34 are provided below the conveyor belt 14. The limiting roller 33 is provided above the conveyor belt 14, and the surface of the limiting roller 33 is flush with the surface of the first horizontal portion 141. Additionally, a driving motor is provided on the frame 01. The driving motor is connected to the lower driving roller 11. By driving the driving roller 11 to rotate through the driving motor, the conveyor belt 14 can be rotated.
[0037] Refer to Figures 2 to 4 , the adjusting plate 31 includes a fixed portion 311 and a moving portion 312. The moving portion 312 is slidably connected to the fixed portion 311. The second moving roller 13 is rotatably connected to the fixed portion 311. In this embodiment, the conveyor belt 14 between the upper driving roller 11 and the support roller 32 is the first horizontal portion 141. The conveyor belt 14 between the limiting roller 33 and the adjusting roller 34 is the connecting portion 142. The conveyor belt 14 between the adjusting roller 34 and the second moving roller 13 is the second horizontal portion 143.
[0038] Refer to Figures 2 to 4, a mounting block 07 is slidably connected to the moving part 312, an adjusting roller 34 is rotatably connected to the mounting block 07, and a driving member 7 is also provided on the moving part 312. The driving member 7 is used to drive the mounting block 07 to be slidably connected to the moving part 312 in the horizontal direction. Moreover, a driving member 7 is also provided on the moving plate 06. The driving member 7 is used to drive the adjusting plate 31 to be slidably connected to the moving plate 06 in the vertical direction, so that the distance between the first horizontal part 141 and the second horizontal part 143 can be adjusted. The more layers of drill tools to be stacked, the greater the distance between the first horizontal part 141 and the second horizontal part 143. In addition, since the driving member 7 can drive the mounting block 07 to slide on the moving part 312, the adjusting roller 34 can be moved above the first horizontal part 141, and then the connecting part 142 can clamp the drill tools on the first horizontal part 141, which is convenient for subsequent workers to bundle and package with cable ties. In order to make the adjusting plate 31 slide more stably on the moving plate 06, a T-shaped block 03 is fixedly installed on the moving part 312, and a T-shaped groove 04 is opened on the moving plate 06. The T-shaped groove 04 is opened in the vertical direction. In this embodiment, the T-shaped block 03 is slidably connected in the T-shaped groove 04.
[0039] In this embodiment, since the driving member 7 drives the moving plate 06 to move on the frame 01, the position of the adjusting assembly 3 in the horizontal direction can be adjusted according to the size of the packaged drill tools, and then the length of the first horizontal part 141 can be adjusted. The longer the length of the first horizontal part 141, the more drill tools can be placed in each layer.
[0040] Referring to Figures 1 to 4 , in the initial state, by adjusting the positions of the adjusting roller 34 and the moving plate 06, the length of the first horizontal part 141 is made the same as the width of the drill tools to be bundled. Then, the first horizontal part 141, the connecting part 142, and the second horizontal part 143 are on the same horizontal plane. At this time, the length of the connecting part 142 is the shortest. Then, the drill tools falling from the blanking assembly 2 are directly conveyed to the connecting part 142 through the second horizontal part 143, and finally conveyed to the first horizontal part 141 through the connecting part 142. Since the conveyor belt 14 is always rotating, the drill tools on the first horizontal part 141 will be moved in the direction close to the baffle 02, and finally the drill tools at the bottom layer are placed side by side on the first horizontal part 141.
[0041] After the drill tools are placed at the bottom layer, the driving member 7 drives the adjusting plate 31 to move away from the ground. Then, the adjusting roller 34 and the second moving roller 13 move away from the first horizontal portion 141 in the vertical direction. At this time, the second horizontal portion 143 is above the first horizontal portion 141, and at the same time, the length of the connecting portion 142 becomes longer. Under the action of the baffle 02, the arrangement of the connecting portion 142 can limit and clamp the drill tools placed in the lower layer, making the gaps between the stacked drill tools smaller, which is convenient for subsequent workers to tie and package the drill tools with cable ties.
[0042] Since the driving member 7 on the adjusting plate 31 can drive the mounting block 07 to move horizontally, after the drill tools in the lower layer are placed, the distance between the first horizontal portion 141 and the second horizontal portion 143 is made the same as the diameter of the drill tool. Then, the driving member 7 drives the mounting block 07 and the adjusting roller 34 to move towards the baffle 02. During the movement, the connecting portion 142 will be inclined, and it will squeeze the drill tools placed in the lower layer. At the same time, the second horizontal portion 143 is moved above the first horizontal portion 141. In this embodiment, while the adjusting roller 34 is moving, the first moving roller 12 will move towards the lower driving roller 11 under the action of the driving member 7.
[0043] When the second horizontal portion 143 moves above the first horizontal portion 141, the distance between the second horizontal portion 143 and the baffle 02 is made the same as the diameter of the drill tool. Then, it is convenient for the drill tools on the second horizontal portion 143 to fall onto the drill tools in the lower layer. After the drill tools near the baffle 02 have fallen, under the action of the driving member 7, the mounting block 07 and the adjusting roller 34 are driven to move towards the second moving roller 13. At this time, the moving block 05 and the first moving roller 12 move away from the lower driving roller 11, and the connecting portion 142 gradually changes from an inclined state to a vertical state.
[0044] Refer to Figures 2 to 6 As shown in [reference figure], the blanking assembly 2 includes a blanking hopper 21 fixed on the frame 01 and a blanking frame 22 slidably connected to the blanking hopper 21. The blanking frame 22 slides in the vertical direction. A pushing assembly 4 is provided on the fixing portion 311. The pushing assembly 4 is used to push the blanking frame 22 to move away from the ground. In this embodiment, since the blanking frame 22 slides on the blanking hopper 21, the blanking frame 22 can abut against the pushing assembly 4 under the action of gravity. Then, when the fixing portion 311 moves away from the ground, the pushing assembly 4 will push the blanking frame 22 to move. When the fixing portion 311 moves towards the ground, the blanking frame 22 will still abut against the pushing assembly 4 under the action of gravity, which is convenient for the drill tools in the blanking frame 22 to fall onto the upper surface of the second horizontal portion 143.
[0045] Refer to Figures 2 to 6, the pushing component 4 includes a pushing plate 41 and mounting bolts 42. A waist-shaped slot 43 is formed in the pushing plate 41. The mounting bolts 42 are threadedly connected to the fixing portion 311 through the waist-shaped slot 43. The pushing plate 41 abuts against the end face of the blanking frame 22. In this embodiment, two pushing components 4 are provided, and the two pushing components 4 are located at both ends of the blanking frame 22. Thus, when the adjusting plate 31 moves, it can drive the pushing plate 41 to move. Then, when the pushing plate 41 moves, it will push the blanking frame 22 to move, thereby achieving the purpose of facilitating the movement of the blanking frame 22.
[0046] Due to the setting of the waist-shaped slot 43, when the mounting bolts 42 are at different positions in the waist-shaped slot 43, the distance between the lower end face of the blanking frame 22 and the second horizontal portion 143 is also different, and drill tools with different diameters can be conveyed. Specifically, during use, the distance between the lower end face of the blanking frame 22 and the surface of the second horizontal portion 143 is set according to actual needs, and then the drill tools falling on the second horizontal portion 143 can be conveyed to the first horizontal portion 141.
[0047] Refer to Figures 2 to 6 , a limiting component 5 is provided on the fixing portion 311. The limiting component 5 is used to limit both ends of the drill tool to make the two ends of the drill tool moving onto the first horizontal portion 141 neat. The limiting component 5 includes a bidirectional screw 51 rotatably connected to the fixing portion 311 and a limiting plate 52 threadedly connected to the bidirectional screw 51. The limiting plate 52 is arranged below the blanking frame 22. Two limiting plates 52 are provided, and the two limiting plates 52 are arranged on opposite sides of the blanking frame 22, and the limiting plate 52 is slidably connected to the fixing portion 311. By rotating the bidirectional screw 51, the two limiting plates 52 can move in opposite directions, and the distance between the two limiting plates 52 can be adjusted, and finally drill tools with different lengths can be limited. In this embodiment, the driving members 7 are all set as electric push rods 62. The corresponding components are driven by the electric push rods 62. At the same time, a controller is provided on the frame 01, and the controller is connected to each driving member 7 to make the multiple driving members 7 cooperate with each other.
[0048] Refer to Figures 2 to 6 , a positioning component 6 is provided on the blanking frame 22. The positioning component 6 is used to position the drill tools in the blanking frame 22. At this time, it can prevent the drill tools on the blanking frame 22 from falling onto the second horizontal portion 143. The positioning component 6 includes a positioning plate 61 slidably connected to the blanking frame 22 and an electric push rod 62 fixed to the blanking frame 22. The electric push rod 62 pushes the positioning plate 61 to move along the length direction of the blanking frame 22. Thus, when placing another layer of drill tools, the electric push rod 62 drives the positioning plate 61 to move, so that the positioning plate 61 abuts against the end of the drill tool. At this time, the drill tools in the blanking frame 22 are positioned. When blanking is required, the electric push rod 62 drives the positioning plate 61 to move in the reverse direction, and then the drill tools fall onto the second horizontal portion 143 under the action of gravity.
[0049] The implementation principle of a packaging device for finished brazing tools in an embodiment of this application is as follows: When bundling and packaging brazing tools, first adjust the position of the moving plate 06 according to the bundling width, and then make the width of the first horizontal part 141 the same as the width of the brazing tools to be bundled. At this time, the brazing tools in the blanking frame 22 fall onto the second horizontal part 143, and then the brazing tools are conveyed to the first horizontal part 141 through the second horizontal part 143 and abut against the baffle 02. Arrange the brazing tools at the bottom layer neatly in sequence, and then move the adjusting plate 31 upward. At the same time, the mounting block 07 drives the adjusting roller 34 to move towards the baffle 02. At this time, the connecting part 142 will limit and clamp the brazing tools in the lower layer, reducing the gap between the brazing tools. The brazing tools are conveyed to the brazing tools in the lower layer through the second horizontal part 143. After the conveying is completed, the stacked brazing tools are bundled and packaged with a tie, making it more convenient when bundling and packaging brazing tools.
[0050] The above are all the preferred embodiments of this application. Without restricting the protection scope of this application based on this, therefore: All equivalent changes made according to the structure, shape, and principle of this application shall be covered within the protection scope of this application.
Claims
1. A packaging device for finished brazing tools, comprising a frame, characterized in that: A baffle for limiting the placed drill tools is arranged on the frame, and a conveying assembly for conveying the drill tools towards the baffle is arranged on the frame; the conveying assembly includes two driving rollers rotatably connected to the frame, a first moving roller and a second moving roller slidably connected to the frame, and a conveyor belt wound around the two driving rollers, and the conveyor belt is also wound around the first moving roller and the second moving roller; an adjusting assembly for adjusting the position of the conveyor belt is arranged on the frame, and the adjusting assembly makes the conveyor belt form a first horizontal portion, a connecting portion and a second horizontal portion. The first horizontal portion is used for placing the drill tools to be bundled, the connecting portion is used for limiting and clamping the drill tools placed on the first horizontal portion, the second horizontal portion is used for conveying the drill tools to the first horizontal portion, and the adjusting assembly is also used for driving the second horizontal portion to move away from or close to the first horizontal portion. A moving plate is arranged on the frame, the adjusting assembly is arranged on the moving plate, and a driving member is arranged on the frame. The driving member is used for driving the moving plate and the adjusting assembly to be slidably connected to the frame in the horizontal direction; the adjusting assembly includes an adjusting plate slidably connected to the moving plate, a supporting roller, a limiting roller and an adjusting roller rotatably connected to the adjusting plate. The surface of the limiting roller is flush with the surface of the first horizontal portion. The adjusting plate includes a fixed portion and a moving portion. The moving portion is slidably connected to the fixed portion. The second moving roller is rotatably connected to the fixed portion. A driving member for driving the adjusting plate to slide in the vertical direction is also arranged on the moving plate. An installation block is slidably connected to the moving portion, the adjusting roller is rotatably connected to the installation block, and a driving member is also arranged on the moving portion. The driving member is used for driving the installation block to slide in the horizontal direction.
2. The packaging device for finished brazing tools according to claim 1, characterized in that: A blanking assembly is arranged on the frame. The blanking assembly includes a blanking hopper fixed to the frame and a blanking frame slidably connected to the blanking hopper. The blanking frame slides in the vertical direction, and the drill tools in the blanking frame fall onto the second horizontal portion under the action of gravity. A pushing assembly for pushing the blanking frame to move away from the ground is arranged on the fixed portion.
3. The packaging device for finished drill tools according to claim 2, characterized in that: The pushing assembly includes a pushing plate and a mounting bolt. A kidney-shaped groove is formed in the pushing plate. The mounting bolt is threadedly connected to the fixed portion through the kidney-shaped groove, and the pushing plate abuts against the end face of the blanking frame.
4. A packaging device for finished brazing tools according to claim 3, characterized in that: A limiting assembly for limiting both ends of the drill tools is arranged on the fixed portion; the limiting assembly includes a bidirectional screw rotatably connected to the fixed portion and limiting plates threadedly connected to the bidirectional screw. Two limiting plates are provided. The two limiting plates are arranged on opposite sides of the blanking frame and are slidably connected to the fixed portion.
5. The packaging device for finished brazing tools according to claim 4, characterized in that: A positioning assembly for positioning the drill tools in the blanking frame is arranged on the blanking frame. The positioning assembly includes a positioning plate slidably connected to the blanking frame and an electric push rod fixed to the blanking frame. The electric push rod pushes the positioning plate to move along the length direction of the blanking frame.
6. The packaging device for finished brazing tools according to claim 5, wherein: A T-shaped block is fixedly installed on the moving portion, a T-shaped groove is formed in the moving plate, the T-shaped groove is formed in the vertical direction, and the T-shaped block is slidably connected to the T-shaped groove.
Citation Information
Patent Citations
Drilling tool packaging equipment
CN215205629U
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CN111332535A
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CN117963429A
Telescopic dry-mixed mortar conveying belt
CN215401153U
Bamboo stick bundling device
CN220221280U