A transfer mechanism for ladle production
By designing the automatic ladle restriction mechanism in the transmission mechanism for ladle production, the problem of insufficient safety during ladle transmission in the prior art is solved, and the safe movement of the ladle during the transmission process is realized, and transmission accidents and personnel injuries are avoided.
Patent Information
- Application Number
- CN202510322790.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-19
- Publication Date
- 2025-05-30
- Estimated Expiration
- 2045-03-19
AI Technical Summary
The existing conveyors for ladle production lack a ladle restriction mechanism when transmitting ladles, which cannot effectively ensure the safety of ladles during the transmission process. There is a risk of transmission accidents, which may cause serious losses and personnel injury.
A transmission mechanism for ladle production is designed, including a transmission tray, a ladle automatic restriction mechanism, a load-bearing rod, a side chassis and a restriction mechanism reset assembly. The automatic ladle restriction mechanism can limit the ladle during the transportation process and move with the ladle to ensure the safety of the ladle during the transmission process.
By setting up an automatic ladle limiting mechanism, the limit of the ladle can be automatically realized, ensuring the safety of the ladle during the transmission process, avoiding transmission accidents, and reducing the risk of losses and personnel injury.
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Figure CN119841005B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of ladle production, and specifically to a transmission mechanism for ladle production. Background Art
[0002] A ladle is a container made of steel with refractory bricks lined inside. It is a very important equipment in the iron and steel smelting process, mainly used for containing and transporting molten steel and for out-of-furnace refining.
[0003] During the production of ladles, conveyors are needed to transport them. The conveyor is mainly used to move the ladle from one place to another, such as from the manufacturing area to the baking area, or from the storage area to the use area. However, the existing conveyors for ladle production do not have a ladle limiting mechanism for the ladle, and cannot fully ensure the safety of the ladle during transportation. The weight of the ladle itself is relatively large, and once a transportation accident occurs during transportation, serious losses will be caused, and it is very likely to harm the staff. Summary of the Invention
[0004] The purpose of the present invention is to provide a transmission mechanism for ladle production to solve the problems raised in the above background art.
[0005] To achieve the above purpose, the present invention provides the following technical solutions:
[0006] A transmission mechanism for ladle production includes a transmission platform frame. At both ends of each side of the transmission platform frame, support side plates are symmetrically and fixedly arranged, and load-bearing rods are fixedly arranged between the two support side plates on each side of the transmission platform frame;
[0007] A ladle automatic limiting mechanism is installed on the transmission platform frame. The ladle automatic limiting mechanism can limit the ladle during the ladle transportation process, move along with the ladle, and ensure the safety of the ladle during transportation;
[0008] The load-bearing rods support the ladle automatic limiting mechanism. A side bottom frame is also fixedly arranged on one side of the transmission platform frame, and a limiting mechanism reset component is arranged on the side bottom frame. When the ladle is transported to the other end of the transmission platform frame, the ladle automatic limiting mechanism is reset through the limiting mechanism reset component;
[0009] A ladle unlocking mechanism is also arranged at the other end of the transmission platform frame. The ladle unlocking mechanism acts on the ladle automatic limiting mechanism to release the ladle, ensuring the smooth reset of the ladle automatic limiting mechanism.
[0010] Preferably, the limiting mechanism reset component is a side bearing frame, and a horizontal limiting channel and an inclined upward limiting channel are arranged on the side bearing frame;
[0011] The horizontal limit channel and the obliquely upward limit channel are interconnected, and an anti-movement insertion hole is provided in the horizontal limit channel.
[0012] Preferably, the ladle automatic limiting mechanism includes a load-bearing follower frame, a movable support platen, a driving bearing plate, a limit ring frame, and an anti-dynamic load block. Activity insertion holes are symmetrically provided on both sides of the load-bearing follower frame, and load-bearing rods are inserted into the activity insertion holes.
[0013] A first installation channel is also provided on the load-bearing follower frame above the activity insertion hole.
[0014] An upper top support frame is fixedly provided at the upper end of the load-bearing follower frame. A mating limit rod is fixedly provided on the upper top support frame, and a second installation channel is provided on one side of the upper top support frame close to the side load-bearing frame.
[0015] Preferably, a movable support platen is installed on the upper top support frame. A limit mating hole is provided on the movable support platen, and a mating limit rod is inserted into the limit mating hole.
[0016] A linkage through hole is also provided on the movable support platen, and a driving bearing plate is installed on the movable support platen. A contact runner is installed at the lower end of the driving bearing plate.
[0017] A load-bearing insertion rod is fixedly provided at the upper end of the driving bearing plate, and the load-bearing insertion rod is inserted into the linkage through hole.
[0018] Preferably, an activity plate strip is fixedly provided at the other end of the load-bearing insertion rod, and an insertion plate strip is fixedly provided on the activity plate strip.
[0019] Connecting vertical plates are symmetrically and fixedly provided at both ends of the activity plate strip. A mating push-pull rod is hinged at the lower end of the connecting vertical plate, and the other end of the mating push-pull rod is connected to the limit ring frame.
[0020] Preferably, there are two limit ring frames, which are symmetrically installed on both sides of the load-bearing follower frame. A support installation rod is fixedly provided on the limit ring frame, and the support installation rod is inserted into the first installation channel.
[0021] A return spring is sleeved on the support installation rod, and a support load strip is fixedly provided on the support installation rod. A linkage load-bearing vertical rod is fixedly provided on the support load strip, and a linkage mating block is sleeved on the linkage load-bearing vertical rod.
[0022] An activity through hole is provided on the linkage mating block, and the activity through hole cooperates with the linkage load-bearing vertical rod. The linkage mating block is hinged to the mating push-pull rod.
[0023] Preferably, an anti-dynamic load block is installed on one side of the upper support frame close to the side support frame. A support top rod is fixedly arranged at the upper end of the anti-dynamic load block. The support top rod is inserted into the second installation channel, and a limit top block is fixedly arranged at the upper end of the support top rod.
[0024] A channel matching column is fixedly arranged on the anti-dynamic load block. Before the load following frame moves, the channel matching column is inserted into the horizontal limit channel.
[0025] An insertion channel is opened on the channel matching column. The insertion channel penetrates through the anti-dynamic load block, and an anti-dynamic insertion rod is inserted into the insertion channel.
[0026] Preferably, when the anti-dynamic insertion rod fixes the load following frame, it is inserted into the anti-dynamic insertion hole.
[0027] One end of the anti-dynamic insertion rod is fixedly provided with a movable load plate. A load matching bottom plate is fixedly arranged at the lower end of the movable load plate. A contact matching plate is fixedly arranged on the load matching bottom plate. An elastic reset piece is fixedly arranged on the contact matching plate, and the other end of the elastic reset piece is fixed on the anti-dynamic load block.
[0028] Preferably, the ladle unlocking mechanism includes a support end plate, a movable plate body and a driving strip block. The support end plate is fixedly arranged at one end of the transmission platform frame. A moving matching hole is opened on the support end plate, and a limit vertical rod is fixedly arranged on the support end plate.
[0029] A moving rod is fixedly arranged on the movable plate body. The moving rod is inserted into the moving matching hole, and a limiting load block is fixedly arranged on the moving rod.
[0030] An upper push connecting rod is hinged on the movable plate body, and the upper end of the upper push connecting rod is hinged with the driving strip block.
[0031] Preferably, a limit insertion channel is opened on the driving strip block. The limit vertical rod is inserted into the limit insertion channel, and a driving matching channel is also opened on the driving strip block.
[0032] Compared with the prior art, the beneficial effects of the present invention are as follows: The structure of the present invention is reasonably arranged and has strong functionality, and has the following advantages:
[0033] 1. A load following frame is arranged on the transmission platform frame. During the conveying process of the ladle, the load following frame can move together with it, playing a limiting role during the conveying process of the ladle, ensuring the safe movement of the ladle, and automatically realizing the limitation of the ladle without manual operation, which is very convenient.
[0034] 2. When transporting the ladle, place it on the transfer bench. As the ladle moves, it will come into contact with the contact runner. In this way, under the action of the ladle, the driving bearing plate will be driven to move. As the driving bearing plate moves, under the cooperation of the push-pull rod, the limiting ring frames on both sides of the bearing follower frame will be driven to move towards each other and close together, wrapping the ladle in the limiting ring frames, playing a role in limiting the ladle during the transportation process. Moreover, when one of the limiting ring frames on the bearing follower frame moves, it will also drive the anti-movement plugging rod to move. In this way, when the driving bearing plate comes into contact with the movable support platen, the anti-movement plugging rod will completely withdraw from the anti-movement plugging hole, and the ladle can move together with the bearing follower frame.
[0035] 3. When the ladle is about to be transported to the working position, at this time, the plugging plate strip will be plugged into the driving cooperation channel. At the same time, the ladle comes into contact with the movable plate body. In this way, under the action of the ladle, the movable plate body will be pushed to move. As the movable plate body moves, under the action of the upward push connecting rod, the driving strip will be pushed to move upward, and then drive the driving bearing plate to move upward. As the driving bearing plate moves upward, the contact runner will be separated from the ladle, causing the driving bearing plate to lose its restriction. The limiting ring frame will be reset under the action of the return spring. At the same time, the bearing follower frame will move in the opposite direction and reset under the action of the inclined upward limiting channel, facilitating its next use. Description of the Drawings
[0036] Figure 1 It is a schematic diagram of the first perspective of the assembly of the transfer bench.
[0037] Figure 2 It is a schematic diagram of the second perspective of the assembly of the transfer bench.
[0038] Figure 3 It is a schematic diagram of the third perspective of the assembly of the transfer bench.
[0039] Figure 4 For Figure 3 The enlarged schematic diagram at position A in
[0040] Figure 5 It is a schematic diagram of the first perspective structure of the transfer bench.
[0041] Figure 6 It is a schematic diagram of the first perspective of the assembly of the bearing follower frame.
[0042] Figure 7 It is a schematic diagram of the first perspective of the assembly of the bearing follower frame.
[0043] Figure 8 It is a schematic diagram of the structure of the bearing follower frame.
[0044] Figure 9 It is a schematic diagram of the assembly of the anti-movement load block.
[0045] Figure 10 Schematic diagram of the assembly of the moving plate body and the driving strip block.
[0046] In the figure: 1. Transmission bench; 11. Support side plate; 12. Load-bearing rod; 13. Side bottom frame; 14. Side bearing frame; 15. Horizontal limit channel; 16. Oblique upward limit channel; 17. Anti-movement jack; 18. Support end plate; 181. Moving fit hole; 19. Limit vertical rod; 2. Load-bearing follower frame; 21. Movable insertion hole; 22. First installation channel; 23. Upper supporting frame; 24. Matching limit rod; 25. Second installation channel; 3. Movable support table plate; 31. Limit matching hole; 32. Linkage through hole; 4. Driving load-bearing plate; 41. Contact runner; 42. Load-bearing insertion rod; 43. Movable plate strip; 44. Insertion plate strip; 45. Connecting vertical plate; 46. Matching push-pull rod; 5. Limit ring frame; 51. Support installation rod; 52. Return spring; 53. Support load strip; 54. Linkage load-bearing vertical rod; 55. Linkage matching block; 56. Movable through hole; 6. Anti-movement load block; 61. Support top rod; 62. Limit top block; 63. Channel matching column; 64. Insertion channel; 65. Anti-movement insertion rod; 66. Movable load plate; 67. Load-bearing bottom plate; 68. Contact matching plate; 69. Elastic return piece; 7. Moving plate body; 71. Moving rod; 72. Limit load block; 73. Upper push connecting rod; 8. Driving strip block; 81. Limit insertion channel; 82. Driving matching channel. Specific embodiments
[0047] The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.
[0048] The present invention provides a technical solution:
[0049] As Figure 1 、 Figure 2 and Figure 3As shown in the figure, a transmission mechanism for ladle production includes a transmission bench 1. At both ends of each side of the transmission bench 1, support side plates 11 are symmetrically and fixedly arranged. Between the two support side plates 11 on each side of the transmission bench 1, a load-bearing rod 12 is fixedly arranged. A ladle automatic limiting mechanism is installed on the transmission bench 1. The ladle automatic limiting mechanism can limit the ladle during the ladle transportation process, move along with the ladle, ensure the safety of the ladle during transportation. The load-bearing rod 12 supports the ladle automatic limiting mechanism. On one side of the transmission bench 1, a side bottom frame 13 is also fixedly arranged. A limiting mechanism reset component is arranged on the side bottom frame 13. When the ladle is transported to the other end of the transmission bench 1, the ladle automatic limiting mechanism is reset through the limiting mechanism reset component. At the other end of the transmission bench 1, a ladle unlocking mechanism is also arranged. The ladle unlocking mechanism acts on the ladle automatic limiting mechanism to release the ladle, ensuring the smooth reset of the ladle automatic limiting mechanism.
[0050] As Figure 2 and Figure 5 shown in the figure, the limiting mechanism reset component is a side bearing frame 14. A horizontal limiting channel 15 and an inclined upward limiting channel 16 are arranged on the side bearing frame 14. The horizontal limiting channel 15 and the inclined upward limiting channel 16 are connected. And an anti-movement insertion hole 17 is opened in the horizontal limiting channel 15. In addition, the inner walls of the horizontal limiting channel 15 and the inclined upward limiting channel 16 are smooth and free of burrs, and their heights are equal.
[0051] As Figure 6 and Figure 8 shown in the figure, the ladle automatic limiting mechanism includes a load-bearing follower frame 2, a movable support table plate 3, a driving load-bearing plate 4, a limiting ring frame 5 and an anti-movement load block 6. Activity insertion holes 21 are symmetrically opened on both sides of the load-bearing follower frame 2. The load-bearing rod 12 is inserted into the activity insertion holes 21. A first installation channel 22 is also opened on the load-bearing follower frame 2 above the activity insertion holes 21. An upper top support frame 23 is fixedly arranged at the upper end of the load-bearing follower frame 2. A matching limiting rod 24 is fixedly arranged on the upper top support frame 23. And a second installation channel 25 is opened on one side of the upper top support frame 23 close to the side bearing frame 14.
[0052] As Figure 6 and Figure 7 shown in the figure, a movable support table plate 3 is installed on the upper top support frame 23. A limiting matching hole 31 is opened on the movable support table plate 3. The matching limiting rod 24 is inserted into the limiting matching hole 31. A linkage through hole 32 is also opened on the movable support table plate 3. And a driving load-bearing plate 4 is installed on the movable support table plate 3. A contact runner 41 is installed at the lower end of the driving load-bearing plate 4. A load-bearing insertion rod 42 is fixedly arranged at the upper end of the driving load-bearing plate 4. The load-bearing insertion rod 42 is inserted into the linkage through hole 32. When the load-bearing follower frame 2 moves along with the ladle, the contact runner 41 contacts the ladle.
[0053] As Figure 6 shown, at the other end of the load-bearing insertion rod 42, a movable slat 43 is fixedly arranged, on the movable slat 43, an insertion slat 44 is fixedly arranged, and at both ends of the movable slat 43, connecting vertical plates 45 are symmetrically and fixedly arranged. At the lower end of the connecting vertical plate 45, a cooperating push-pull rod 46 is hinged, and at the other end of the cooperating push-pull rod 46, a limiting ring frame 5 is connected.
[0054] As Figure 1 and Figure 6 shown, there are two limiting ring frames 5, symmetrically installed on both sides of the load-bearing follower frame 2. On the limiting ring frame 5, a support installation rod 51 is fixedly arranged. The support installation rod 51 is inserted into the first installation channel 22. A return spring 52 is sleeved on the support installation rod 51. And on the support installation rod 51, a support load strip 53 is fixedly arranged. On the support load strip 53, a linkage load-bearing vertical rod 54 is fixedly arranged. A linkage cooperation block 55 is sleeved on the linkage load-bearing vertical rod 54. An activity through hole 56 is opened on the linkage cooperation block 55. The activity through hole 56 cooperates with the linkage load-bearing vertical rod 54. And the linkage cooperation block 55 is hinged with the cooperating push-pull rod 46. Both ends of the return spring 52 are respectively fixed on the support load strip 53 and the load-bearing follower frame 2.
[0055] In addition, when the limiting ring frame 5 restricts the ladle, it closes together.
[0056] As Figure 1 、 Figure 4 and Figure 9 shown, on the upper top support frame 23, on one side close to the side load-bearing frame 14, an anti-dynamic load block 6 is installed. At the upper end of the anti-dynamic load block 6, a support top rod 61 is fixedly arranged. The support top rod 61 is inserted into the second installation channel 25. And at the upper end of the support top rod 61, a limit top block 62 is fixedly arranged. On the anti-dynamic load block 6, a channel cooperation column 63 is fixedly arranged. Before the load-bearing follower frame 2 moves, the channel cooperation column 63 is inserted into the horizontal limit channel 15. The channel cooperation column 63 is in contact with the inner wall of the horizontal limit channel 15. An insertion channel 64 is opened on the channel cooperation column 63. The insertion channel 64 penetrates through the anti-dynamic load block 6. And an anti-dynamic insertion rod 65 is inserted into the insertion channel 64.
[0057] As Figure 2 and Figure 9 shown, when the anti-dynamic insertion rod 65 fixes the load-bearing follower frame 2, it is inserted into the anti-dynamic insertion hole 17. At one end of the anti-dynamic insertion rod 65, a movable load plate 66 is fixedly arranged. At the lower end of the movable load plate 66, a load-bearing bottom plate 67 is fixedly arranged. On the load-bearing bottom plate 67, a contact cooperation plate 68 is fixedly arranged. On the contact cooperation plate 68, an elastic return piece 69 is fixedly arranged. The other end of the elastic return piece 69 is fixed on the anti-dynamic load block 6.
[0058] As Figure 5As shown in the figure, the ladle unlocking mechanism includes a support end plate 18, a moving plate body 7, and a driving strip 8. The support end plate 18 is fixedly arranged at one end of the transfer bench 1. A moving fitting hole 181 is formed in the support end plate 18, and a limiting vertical rod 19 is fixedly arranged on the support end plate 18.
[0059] As Figure 3 and Figure 10 shown in the figure, a moving rod 71 is fixedly arranged on the moving plate body 7. The moving rod 71 is inserted into the moving fitting hole 181, and a limiting load block 72 is fixedly arranged on the moving rod 71. An upper push connecting rod 73 is hinged on the moving plate body 7. The upper end of the upper push connecting rod 73 is hinged to the driving strip 8. A limiting insertion channel 81 is formed in the driving strip 8. The limiting vertical rod 19 is inserted into the limiting insertion channel 81, and a driving fitting channel 82 is also formed in the driving strip 8.
[0060] When transporting the ladle, place it on the transfer gantry 1, and then start the transfer gantry 1 which will drive the ladle to move. When the ladle moves, it will come into contact with the contact runner 41. Under the action of the ladle, the contact runner 41 will be pushed to move together with it, thereby pushing the driving bearing plate 4 to move. As the driving bearing plate 4 moves, the movable slat 43 will also be driven to move. In this way, under the cooperation of the push rod 46, the limiting ring frame 5 will be driven to move towards each other. As the limiting ring frame 5 moves, the support strip 53 on the limiting ring frame 5 close to the side bearing frame 14 will come into contact with the contact mating plate 68. Under the action of the support strip 53, the contact mating plate 68 will be pushed to move. As the contact mating plate 68 moves, it will drive the anti-movement plug rod 65 out of the anti-movement socket 17, and at the same time, the elastic reset piece 69 will be in a compressed state. At this time, the driving bearing plate 4 is in contact with the movable support table plate 3, and at this time, the limiting ring frames 5 are closed together to wrap the ladle, playing a good limiting role for it. Then, as the ladle moves, it will also drive the load-carrying follower frame 2 to move together with it, so that the limiting ring frame 5 can always wrap the ladle during the ladle transfer process, ensuring its safe transportation. During the transfer of the ladle, under the action of the inclined upper limit channel 16, the anti-movement load block 6 will be driven to move upward. When the ladle is about to reach the end of the transfer, the plugging strip 44 on the movable slat 43 will be plugged into the driving mating channel 82 on the driving strip 8. At the same time, the ladle comes into contact with the moving plate body 7. Under the action of the ladle, the moving plate body 7 will be pushed to move. As the moving plate body 7 moves, under the action of the upward push link 73, the driving strip 8 will be pushed to move upward, and then under the action of the driving strip 8, the driving bearing plate 4 will be driven to move upward to separate it from the ladle. As the driving bearing plate 4 separates from the ladle, it will lose its limiting effect. Under the action of the return spring 52, the limiting ring frame 5 will be reset to release the ladle. At the same time, under the action of gravity, the anti-movement load block 6 will move in the reverse direction along the inclined upper limit channel 16, and the downward sliding force generated by its gravity along the inclined upper limit channel 16 can drive the load-carrying follower frame 2 to move, thereby driving the load-carrying follower frame 2 to move in the reverse direction and reset, making preparations for the next use. And when the anti-movement load block 6 moves in the reverse direction and the anti-movement plug rod 65 aligns with the anti-movement socket 17, under the action of the elastic reset piece 69, the anti-movement plug rod 65 will be inserted into the anti-movement socket 17 again to fix the load-carrying follower frame 2. In addition, after the ladle is transferred away, the driving strip 8 will move downward and reset under the action of gravity, and then under the action of the upward push link 73, the moving plate body 7 will be pushed to reset, making preparations for the next work. The entire limiting and protecting process is very convenient.
[0061] Although embodiments of the present invention have been shown and described, it will be understood by those of ordinary skill in the art that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the present invention, and the scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A transmission mechanism for ladle production, comprising a transmission stand, characterized in that: Support side plates are symmetrically fixedly arranged at both ends of each side of the transmission platform, and a load-bearing rod is fixedly arranged between two supporting side plates on each side of the transmission platform; The conveying platform is equipped with an automatic ladle limiting mechanism, which can limit the ladle during the conveying process and move with the ladle to ensure the safety of the ladle during the conveying process. The load-bearing rod supports the automatic ladle limiting mechanism. A side chassis is also fixedly provided on one side of the transmission platform. A limiting mechanism reset component is provided on the side chassis. When the ladle is transported to the other end of the transmission platform, the automatic ladle limiting mechanism is reset by the limiting mechanism reset component. The other end of the transmission stand is also provided with a ladle unlocking mechanism, which acts on the ladle automatic limiting mechanism to release the ladle, thereby ensuring the smooth resetting of the ladle automatic limiting mechanism; The limiting mechanism reset component is a side bearing frame, and the side bearing frame is provided with a horizontal limiting channel and an inclined upper limiting channel; The horizontal limit channel and the oblique upper limit channel are interconnected, and an anti-movement socket is provided in the horizontal limit channel; The ladle automatic limiting mechanism comprises a load-bearing follower frame, a movable support table, a driving load-bearing plate, a limiting ring frame and an anti-movement load block. Both sides of the load-bearing follower frame are symmetrically provided with movable plug holes, and a load-bearing load rod is plugged into the movable plug holes. A first installation channel is also provided on the load-bearing follower frame on the upper side of the movable plug hole; An upper support frame is fixedly provided at the upper end of the load-bearing follower frame, a matching limit rod is fixedly provided on the upper support frame, and a second installation channel is opened on one side of the upper support frame close to the side load-bearing frame; A movable support platen is installed on the upper support frame, and a limited matching hole is provided on the movable support platen, and a matching limit rod is inserted into the limited matching hole; A linkage through hole is also provided on the movable support plate, and a driving bearing plate is installed on the movable support plate, and a contact rotating wheel is installed at the lower end of the driving bearing plate; A bearing plug-in rod is fixedly provided on the upper end of the driving bearing plate, and the bearing plug-in rod is plugged into the linkage through hole; The other end of the bearing plug-in rod is fixedly provided with a movable slat, and the movable slat is fixedly provided with a plug-in slat; The two ends of the movable slats are also symmetrically fixed with connecting vertical plates, the lower ends of the connecting vertical plates are hinged with matching push-pull rods, and the other ends of the matching push-pull rods are connected to a limiting ring frame; There are two limiting ring frames, which are symmetrically installed on both sides of the load-bearing follower frame. A support mounting rod is fixedly arranged on the limiting ring frame, and the support mounting rod is inserted into the first mounting channel; A return spring is sleeved on the support mounting rod, and a support carrying bar is fixedly arranged on the support mounting rod, a linkage bearing vertical rod is fixedly arranged on the support carrying bar, and a linkage matching block is sleeved on the linkage bearing vertical rod; The linkage matching block is provided with an active through hole, the active through hole matches with the linkage bearing vertical rod, and the linkage matching block is hinged with the matching push-pull rod; An anti-movement load block is installed on one side of the upper support frame close to the side support frame, a support top rod is fixedly provided on the upper end of the anti-movement load block, the support top rod is inserted in the second installation channel, and a limited top block is fixedly provided on the upper end of the support top rod; A channel matching column is fixedly arranged on the anti-movement load block, and before the load-bearing follower frame moves, the channel matching column is inserted into the horizontal limit channel; A plug-in channel is provided on the channel matching column, the plug-in channel penetrates the anti-movement carrier block, and an anti-movement plug-in rod is plugged into the plug-in channel; The anti-movement plug-in rod plays a role in fixing the load-bearing follower frame and is plugged into the anti-movement plug-in hole; A movable carrier plate is fixedly provided at one end of the anti-movement plug-in rod, a loading base plate is fixedly provided at the lower end of the movable carrier plate, a contact matching plate is fixedly provided on the loading base plate, an elastic reset sheet is fixedly provided on the contact matching plate, and the other end of the elastic reset sheet is fixed on the anti-movement carrier block.
2. A transmission mechanism for ladle production according to claim 1, characterized in that: The ladle unlocking mechanism includes a supporting end plate, a movable plate body and a driving bar block. The supporting end plate is fixedly arranged at one end of the transmission stand, a movable matching hole is opened on the supporting end plate, and a limiting vertical rod is fixedly arranged on the supporting end plate.
3. A transmission mechanism for ladle production according to claim 2, characterized in that: A moving rod is fixedly provided on the moving plate body, the moving rod is inserted into the moving matching hole, and a limiting load block is fixedly provided on the moving rod; A push-up connecting rod is hinged on the moving plate body, and a driving strip block is hinged on the upper end of the push-up connecting rod.
4. A transmission mechanism for ladle production according to claim 3, characterized in that: The driving strip block is provided with a limited position plug-in channel, a limited position vertical rod is plugged into the limited position plug-in channel, and the driving strip block is also provided with a driving matching channel.
Citation Information
Patent Citations
Automatic workpiece conveying device for laser cutting equipment
CN118218816A