Continuous casting machine
By setting up a moving block and scraper system on the continuous casting machine, the foam in the ingot mold is directly scraped and collected, which solves the problem that the foam on the ingot mold surface requires multiple operations, and improves production efficiency and simplicity of operation.
Patent Information
- Application Number
- CN202311835974.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2023-12-28
- Publication Date
- 2025-07-01
AI Technical Summary
During the solution delivery process of existing continuous casting machines, foam is easily formed on the inner surface of the ingot mold, and staff need to operate multiple times to clamp the foam into other areas and place it in the barrel, which is cumbersome.
A continuous casting machine is designed to use the moving parts, connectors, collectors and guards to drive the connecting pieces and vertical rods to move together with the scraper by using the moving pieces on the conveyor belt, scraping the foam directly and collecting them to the collection barrel without multiple operations.
The efficient scraping and collection of foam is achieved, and the operation steps are simplified, which prevents foam from flowing out from both sides of the scraper, which improves production efficiency.
Smart Images

Figure CN120228256A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of casting machines, and in particular to a continuous casting machine. Background Art
[0002] A continuous casting machine is an automated continuous casting equipment for magnesium ingots integrating machinery, electricity, hydraulics, and pneumatics. The system work consists of casting, skin scraping, condensation, ingot taking, pneumatic actuators, and a control system. The control system is the key to ensuring the coordinated, stable, and reliable operation of the magnesium ingot casting process.
[0003] However, the existing technologies have the following deficiencies: The continuous casting machine transports the solution into the ingot mold through a connecting pipe. When the solution enters the ingot mold, due to the continuous transportation of the solution, some foams are formed on the surface of the solution in the ingot mold. At this time, the staff needs to clamp the foams into the placement bucket in other areas, and this process requires multiple operations. Summary of the Invention
[0004] The purpose of the present invention is to provide a continuous casting machine to solve the problem that when the continuous casting machine transports the solution into the ingot mold through a connecting pipe, when the solution enters the ingot mold, due to the continuous transportation of the solution, some foams are formed on the surface of the solution in the ingot mold. At this time, the staff needs to clamp the foams into the placement bucket in other areas, and this process requires multiple operations.
[0005] To achieve the above purpose, the present invention provides the following technical solutions: The present invention is a continuous casting machine, including: A main body component, including a conveyor belt; A moving member, the moving member is arranged above the conveyor belt and includes a connecting plate above it; Connection seats and support plates are arranged below both ends of the connecting plate; A connecting member, the connecting member is connected below the connecting plate and includes a vertical rod below it; A push rod is arranged at the bottom end of the vertical rod; A collecting member, the collecting member is arranged inside the connection seat and includes a collecting bucket inside it; A protective member, the protective member is connected below both sides of the connecting plate and includes a group of protective plates on both sides of it.
[0006] By setting these components, a more comprehensive understanding of how to apply them can be obtained.
[0007] As a further solution of the present invention: The main body assembly further includes a workbench connected to the rear side of the conveyor belt, a mounting barrel arranged on the left side of the workbench, a connecting platform connected to the left side of the mounting barrel, a set of connecting brackets arranged at the front and rear ends of the connecting platform, a connecting barrel connected to the left side of the connecting platform, a condenser arranged above the conveyor belt, and an ingot mold arranged inside the conveyor belt.
[0008] Through the conveyor belt, the ingot mold inside the conveyor belt can be moved and transported; the workbench processes the magnesium ingot solution; the mounting barrel is used for other processing of the solution; the connecting platform is used for processing the solution; the connecting brackets are used for placing other objects; the connecting barrel is used for placing other objects; the condenser processes the poured solution; the ingot mold is used for placing the solution.
[0009] As a further solution of the present invention: The moving member further includes a set of connecting grooves, connecting blocks, moving blocks, fixed blocks, and triangular blocks; The connecting seat is connected to the front side of the conveyor belt, the support plate is arranged at the rear end of the upper surface of the conveyor belt, the connecting grooves are arranged on the upper surface of the connecting plate, the connecting blocks and the moving blocks are both arranged in the connecting grooves, the fixed blocks are connected to the upper surface of the part between the connecting grooves, and the triangular blocks are arranged at one end of the upper surface of the fixed blocks; A second spring is arranged at the front end of the connecting block, and an installation rod is arranged at the front end of the second spring. The second spring is connected to the inner side of the connecting groove through the installation rod; A clamping groove is arranged on the inner bottom surface of the connecting groove where the connecting block is located, and a set of stoppers is arranged on both sides at one end of the clamping groove.
[0010] By setting the spring, when being squeezed, it can react on the connecting block and pop the connecting block in the reverse direction. At the same time of popping, the connecting block is restricted by the spring and will not shake or fall off when popping; the stoppers are to prevent the connecting block from popping out excessively and avoid falling off; setting the clamping groove is to facilitate the connecting block to drive other components to move together.
[0011] As a further solution of the present invention: The connecting member further includes a separating ring, a connecting ring, a third spring, and a scraping plate; The vertical rod is arranged on the bottom surface of the connecting plate. The bottom end of the vertical rod is sleeved with the top end of the push rod. The separating ring is sleeved above the vertical rod, the connecting ring is sleeved below the push rod, the third spring is arranged between the separating ring and the connecting ring, the scraping plate is sleeved at the bottom end of the push rod, and the scraping plate is located above the ingot mold; The top end of the vertical rod extends into the clamping groove, and the top end of the vertical rod is connected to the bottom surface of the connecting block.
[0012] By setting the vertical rod, when the connecting block moves, it can drive the vertical rod and the push rod to move together, so as to drive the scraping plate to move and scrape the foam in the ingot mold; when the scraping plate moves to the upper surface of other objects, the force of extrusion between the scraping plate and other objects causes the spring to contract, thereby driving the push rod to move into the vertical rod.
[0013] As a further solution of the present invention: the collecting member further includes an inclined plate, a bottom plate, a support rod, and a placement groove; The inclined plate is arranged at one end of the ingot mold, the top end of the collecting barrel is connected to the front end of the inclined plate, the bottom plate is arranged below the connection between the collecting barrel and the inclined plate, the support rod is connected below the bottom plate, and the placement groove is arranged on the upper surface inside the connection seat; The bottom end of the collecting barrel extends into the placement groove.
[0014] By providing the collecting barrel, the scraped foam can be collected; the bottom plate and the support rod support the inclined plate; the placement groove is used to place the collecting barrel and is convenient for taking the collecting barrel; when the scraper moves onto the inclined plate, the inclined force causes the spring to drive the push rod to move to the vertical rod, and the connecting block continues to drive the scraper to move on the inclined plate until the scraper pushes the foam into the collecting barrel, and then the connecting block drives the scraper to move in the reverse direction.
[0015] As a further solution of the present invention: the protective member further includes a support seat, a moving plate, a vertical rod, a long plate, a fourth spring, a movable plate, and a movable groove; The rear end of the protective plate extends to the upper surface rear end of the conveyor belt, the front end bottom surface of the protective plate extends to the upper surface of the inclined plate, the support seat is connected to the outside of the front end of the protective plate, the moving plate is arranged inside the left protective plate, the vertical rod is connected to the upper end of the moving plate, the long plate is arranged between the vertical rods, the fourth spring is arranged around the vertical rod, the movable plate is connected to the upper parts of the front and rear ends of the protective plate, and the movable groove is arranged at the connection between the protective plate and the movable plate; Grooves are arranged on both sides of the left protective plate, and a moving groove is arranged inside the left protective plate for the moving plate; The right protective plate is arranged below the connecting plate and is located between the connection seat and the inside of the support plate.
[0016] By providing the protective plate, when the scraper moves to scrape, it can prevent the foam from flowing out from both sides of the scraper and flowing into other ingot molds; after other ingot molds move below the connecting plate, press down the long plate, so that the long plate presses down the vertical rod and the moving plate, causing the moving plate to move to the top surface of the ingot mold, and then the movable plate rotates inwards and fits with the long plate, so that the movable plate limits the long plate; when the next ingot mold moves, the movable plate rotates outwards, the force squeezing the fourth spring disappears, causing the fourth spring to pop out in the reverse direction and drive the moving plate to move upwards, facilitating the next ingot mold to move below the connecting plate.
[0017] As a further solution of the present invention: an installation block is arranged on the right side of the connecting block, one end of the installation block extends into the connecting block, a hollow groove is arranged inside the connecting block, and a connecting rod is arranged in the groove. One end of the connecting rod is connected to the inner side end of the installation block, and the other end extends to the outside of the connecting block.
[0018] By setting the triangular block, when the connecting block touches the triangular block, the triangular block presses the mounting block, causing the mounting ring block to move into the connecting block. At the same time, the first spring is compressed and the connecting rod moves outward. At this time, the connecting block can move to one side of the fixed block.
[0019] As a further solution of the present invention: an installation end is provided at the outer end of the connecting rod, and a first spring is provided on the surface of the connecting rod. One end of the first spring is connected to the connecting rod, and the other end is connected to the inner side surface of the connecting block; A trigger block is provided on the left side surface of the moving block, and a motor is provided inside the connecting plate.
[0020] By setting the motor, the motor drives the moving block to move. When the moving block drives the trigger block to move to one side of the mounting block, the trigger block drives the mounting block and the connecting block to move together. At this time, the connecting block drives the scraper below to scrape the foam on the surface of the solution; when the trigger block touches the inclined surface of the mounting block, the trigger block presses the mounting block through the inclined surface. At this time, the mounting block moves into the connecting block through the first spring, causing the moving block to directly pass over the connecting block without acting on the connecting block; the motor model is Y80M1-2.
[0021] As a further solution of the present invention: the connection between the collection bucket and the inclined plate has magnetism and they are adsorbed to each other.
[0022] By setting the collection bucket, the foam scraped by the scraper can be collected. When the collection bucket is relatively full, the collection bucket can be directly taken by hand, which is convenient for subsequent treatment of the foam in the collection bucket.
[0023] As a further solution of the present invention: the top end of the fourth spring is connected to the vertical rod, and the bottom end is connected to the top surface of the protection plate. A set of movable shafts is provided outside the connection between the movable plate and the protection plate.
[0024] By setting the fourth spring, the vertical rod can be driven to move in the reverse direction, and the movable plate rotates through the movable shaft. The movable shaft is electrically connected to the casting machine device.
[0025] Compared with the prior art, the beneficial effects of the present invention are: By setting the moving block and the connecting block, the moving block drives the connecting block to move through the trigger block. When the connecting block moves, it drives the vertical rod and the scraper below to move together, so that the foam can be scraped and removed. At the same time, a collection bucket is set to collect the scraped foam. In this way, the foam can be directly scraped into the collection bucket at one time, without scraping the foam multiple times and moving it to other utensils for placement, simplifying the steps.
[0026] Based on beneficial effect one, a set of protective plates is provided on both sides of the ingot mold that needs to scrape off the foam to protect the foam during scraping, preventing the foam from flowing outwards from both sides of the scraper. At the same time, grooves are provided on both sides of one of the protective plates, and the grooves facilitate the movement of the ingot mold. When the ingot mold moves behind the moving plate, the moving plate moves down to the top surface of the ingot mold to protect the foam, and the ingot mold after scraping off the foam can directly pass through the other protective plate. Brief Description of the Drawings
[0027] Figure 1 It is a schematic diagram of the external structure of the present invention; Figure 2 It is a schematic diagram of the structures of the moving member, connecting member, and protective member of the present invention; Figure 3 It is a schematic diagram of the specific structure of the moving member of the present invention; Figure 4 It is a schematic diagram of the structure of the connecting block of the present invention; Figure 5 It is a schematic diagram of the specific structure of the connecting member of the present invention; Figure 6 It is a schematic diagram of the structure of the moving member of the present invention; Figure 7 It is a schematic diagram of the structure of the collecting member of the present invention; Figure 8 It is a schematic diagram of the specific structure of the protective member of the present invention; Figure 9 Of the present invention Figure 8 Enlarged schematic diagram of part A; Figure 10 Of the present invention Figure 8 Enlarged schematic diagram of part B.
[0028] In the figure: 1. Main body assembly; 11. Connecting barrel; 12. Connecting platform; 13. Installation barrel; 14. Workbench; 15. Connecting frame; 16. Conveyor belt; 17. Condenser; 18. Ingot mold; 2. Moving part; 21. Connecting seat; 22. Connecting plate; 221. Second spring; 222. Installation rod; 23. Connecting groove; 231. Card slot; 232. Stop block; 24. Connecting block; 241. Installation block; 242. Connecting rod; 243. Installation end; 244. First spring; 245. Hollow groove; 25. Moving block; 251. Trigger block; 26. Support plate; 27. Fixed block; 28. Triangular block; 3. Connecting piece; 31. Vertical rod; 32. Push rod; 33. Partition ring; 34. Connecting ring; 35. Third spring; 36. Scraper; 4. Collecting piece; 41. Inclined plate; 42. Collecting barrel; 43. Bottom plate; 44. Support rod; 45. Placing groove; 5. Protective piece; 51. Protective plate; 52. Support seat; 53. Moving plate; 531. Moving groove; 54. Vertical rod; 55. Long plate; 56. Fourth spring; 57. Movable plate; 571. Movable shaft; 58. Movable groove. Detailed implementation manners
[0029] To make the technical problems, technical solutions and advantages to be solved by the present invention clearer, the following will be described in detail with reference to the accompanying drawings and specific embodiments.
[0030] Please refer to Figures 1 to 7 , in an embodiment of the present invention, a continuous casting machine includes: a main body assembly 1, including a conveyor belt 16; a moving part 2, the moving part 2 is arranged above the conveyor belt 16, and includes a connecting plate 22 above it; connecting seats 21 and a support plate 26 are arranged below both ends of the connecting plate 22; a connecting piece 3, the connecting piece 3 is connected below the connecting plate 22, and includes a vertical rod 31 below it; a push rod 32 is arranged at the bottom end of the vertical rod 31; a collecting piece 4, the collecting piece 4 is arranged inside the connecting seat 21, and includes a collecting barrel 42 inside it; a protective piece 5, the protective piece 5 is connected below both sides of the connecting plate 22, and includes a group of protective plates 51 on both sides of it; the moving part 2 further includes a group of connecting grooves 23, connecting blocks 24, moving blocks 25, fixed blocks 27, and triangular blocks 28; the connecting seat 21 is connected to the front side of the conveyor belt 16, the support plate 26 is arranged at the rear end of the upper surface of the conveyor belt 16, the connecting grooves 23 are arranged on the upper surface of the connecting plate 22, the connecting blocks 24 and the moving blocks 25 are both arranged in the connecting grooves 23, the fixed blocks 27 are connected to the upper surface of the part between the connecting grooves 23, and the triangular blocks 28 are arranged at one end of the upper surface of the fixed block 27; A second spring 221 is arranged at the front end of the connecting block 24, and an installation rod 222 is arranged at the front end of the second spring 221. The second spring 221 is connected to the inner side of the connecting groove 23 through the installation rod 222; A clamping groove 231 is arranged on the inner bottom surface of the connecting groove 23 where the connecting block 24 is located, and a set of stoppers 232 are arranged on both sides at one end of the clamping groove 231; The connecting member 3 further includes a separating ring 33, a connecting ring 34, a third spring 35, and a scraping plate 36; The vertical rod 31 is arranged on the bottom surface of the connecting plate 22. The bottom end of the vertical rod 31 is sleeved with the top end of the push rod 32. The separating ring 33 is sleeved above the vertical rod 31. The connecting ring 34 is sleeved below the push rod 32. The third spring 35 is arranged between the separating ring 33 and the connecting ring 34. The scraping plate 36 is sleeved at the bottom end of the push rod 32, and the scraping plate 36 is located above the ingot mold 18; The top end of the vertical rod 31 extends into the clamping groove 231, and the top end of the vertical rod 31 is connected to the bottom surface of the connecting block 24; The collecting member 4 further includes an inclined plate 41, a bottom plate 43, a support rod 44, and a placing groove 45; The inclined plate 41 is arranged at one end of the ingot mold 18. The top end of the collecting bucket 42 is connected to the front end of the inclined plate 41. The bottom plate 43 is arranged below the connection between the collecting bucket 42 and the inclined plate 41. The support rod 44 is connected below the bottom plate 43. The placing groove 45 is arranged on the inner upper surface of the connection seat 21; The bottom end of the collecting bucket 42 extends into the placing groove 45; An installation block 241 is arranged on the right side of the connecting block 24. One end of the installation block 241 extends into the connecting block 24. A hollow groove 245 is arranged inside the connecting block 24. A connecting rod 242 is arranged in the groove. One end of the connecting rod 242 is connected to the inner side end of the installation block 241, and the other end extends to the outside of the connecting block 24; An installation end 243 is arranged at the outer side end of the connecting rod 242, and a first spring 244 is arranged on the surface of the connecting rod 242. One end of the first spring 244 is connected to the connecting rod 242, and the other end is connected to the inner side surface of the connecting block 24; A trigger block 251 is arranged on the left side surface of the moving block 25, and a motor is arranged inside the connecting plate 22; The connection between the collecting bucket 42 and the inclined plate 41 has magnetism and they are adsorbed to each other.
[0031] In this embodiment: The motor drives the moving block 25 to move, and the moving block 25 drives the trigger block 251 to move together. When the moving block 25 drives the trigger block 251 to move to the reverse side of the inclined surface of the mounting block 241, the moving trigger block 251 drives the mounting block 241 and the connecting block 24 to move in the connecting groove 23. At this time, the connecting block 24 drives the scraper 36 to scrape the foam on the surface of the solution through the vertical rod 31 and the push rod 32. When the mounting block 241 touches the fixed block 27, the moving block 25 directly moves to the rear side of the fixed block 27, so that the force driving the connecting block 24 to move disappears, and thus the first spring 244 acts in the reverse direction, driving the connecting block 24 to pop out in the reverse direction, so that the connecting block 24 drives the lower scraper 36 to scrape the foam back and forth; When the moving block 25 moves back, the trigger block 251 touches the inclined surface of the mounting block 241, so that the moving trigger block 251 squeezes the mounting block 241 inward through the inclined surface. At this time, the mounting block 241 moves into the connecting block 24 through the first spring 244 and the connecting rod 242. After the mounting block 241 moves into the connecting block 24, the trigger block 251 drives the moving block 25 to directly bypass the connecting block 24 without acting on the connecting block 24; Then the moving block 25 drives the trigger block 251 to move to the reverse side of the inclined surface of the mounting block 241, and can continue to drive the connecting block 24 to move through the mounting block 241 When the scraper 36 moves onto the inclined plate 41, due to the inclined force, the third spring 35 drives the push rod 32 to move to the vertical rod 31. At this time, the connecting block 24 continues to drive the scraper 36 to move on the inclined plate 41 until the scraper 36 pushes the foam into the collection bucket 42. At this time, the connecting block 24 drives the scraper 36 to move in the reverse direction; When the collection bucket 42 is relatively full, the collection bucket 42 can be directly taken by hand, which is convenient for subsequent processing of the foam in the collection bucket 42.
[0032] Please refer specifically to Figures 1 to 2 、 Figures 8 - 10 The protective member 5 further includes a support base 52, a moving plate 53, a vertical rod 54, a long plate 55, a fourth spring 56, a movable plate 57, and a movable groove 58; The rear end of the protective plate 51 extends to the upper surface rear end of the conveyor belt 16, and the front end bottom surface of the protective plate 51 extends to the upper surface of the inclined plate 41. The support base 52 is connected to the outside of the front end of the protective plate 51. The moving plate 53 is arranged inside the left protective plate 51. The vertical rod 54 is connected to the upper end of the moving plate 53. The long plate 55 is arranged between the vertical rods 54. The fourth spring 56 is arranged around the vertical rod 54. The movable plate 57 is connected to the upper parts of the front and rear ends of the protective plate 51. The movable groove 58 is arranged at the connection between the protective plate 51 and the movable plate 57; Grooves are arranged on both sides of the left protective plate 51, and the moving plate 53 is provided with a moving groove 531 inside the left protective plate 51; The protective plate 51 on the right side is arranged below the connecting plate 22 and is located between the inner sides of the connecting seat 21 and the support plate 26; The top end of the fourth spring 56 is connected to the vertical rod 54, and the bottom end is connected to the top surface of the protective plate 51. A set of movable shafts 571 are arranged on the outer side of the connection between the movable plate 57 and the protective plate 51.
[0033] In this embodiment: When the scraping plate 36 moves for scraping, the protective plate 51 prevents the foam from flowing outward from both sides of the scraping plate 36 and flowing into other ingot molds 18; After the other ingot molds 18 move below the connecting plate 22, press the long plate 55 downward by hand, so that the long plate 55 presses down the vertical rod 54 and the moving plate 53, and then the moving plate 53 moves to the top surface of the ingot mold 18. Then, the movable plate 57 rotates inward through the movable shaft 571. After rotation, the movable plate 57 fits with the long plate 55, so that the movable plate 57 limits the long plate 55; When the next ingot mold 18 moves, the movable plate 57 rotates outward, and the force squeezing the fourth spring 56 disappears, so that the fourth spring 56 pops out reversely, driving the moving plate 53 to move upward, facilitating the next ingot mold 18 to move below the connecting plate 22, and the ingot mold 18 after scraping the foam can directly pass through another protective plate 51.
[0034] Working principle: S1. Preparation: Before starting the operation, it is necessary to inject the molten metal into the casting furnace and preheat the structural components of the casting machine to an appropriate temperature to ensure a smooth production process; S2. Pouring: When the metal in the metal furnace reaches the required temperature and liquid state, start the continuous pouring process. The metal in the furnace is evenly poured into the mold of the continuous casting machine through the gate in the casting furnace; S3. Scraping: The motor drives the moving block 25 to move, and the moving block 25 drives the connecting block 24 to move, so that the connecting block 24 drives the scraping plate 36 to scrape the foam on the surface of the solution through the vertical rod 31 and the push rod 32. The scraping plate 36 pushes the foam into the collection bucket 42; S4. Protection: When the scraping plate 36 scrapes, the protective plates 51 on both sides provide protection, which can prevent the foam during scraping from flowing outward. When the next ingot mold 18 moves, the movable plate 57 rotates outward, and the force squeezing the fourth spring 56 disappears, so that the fourth spring 56 pops out reversely, driving the moving plate 53 to move upward, facilitating the next ingot mold 18 to move below the connecting plate 22; S5. Crystallization: The metal rapidly cools in the mold to form a solid crystal. While the metal is cooling, the cooling equipment (such as a water cooler) on the continuous casting machine will further cool and solidify the metal to ensure that the metal blank has appropriate structure and properties; S6, Cutting and sizing: The cutting equipment on the continuous casting machine cuts the cooled and solidified metal billets into a certain length as required, and at the same time, treatments such as spraying water and oil are carried out to prevent the billets from sticking and improve the surface quality; S7, Transportation and stacking: After cutting, the metal billets are continuously transported to the next process, such as hot rolling or other further processing techniques, through conveying equipment; during transportation, the machine also measures and inspects the metal billets to ensure that they meet the specification requirements.
[0035] The above are only the preferred specific embodiments of the present invention, but the protection scope of the present invention is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present invention, according to the technical solution and inventive concept of the present invention, makes equivalent substitutions or changes, and should be covered by the protection scope of the present invention.
Claims
1. A continuous casting machine, characterized in that, Comprising: A main body component (1), including a conveyor belt (16); A moving member (2), the moving member (2) being arranged above the conveyor belt (16) and including a connecting plate (22) above it; Connecting seats (21) and support plates (26) are arranged below both ends of the connecting plate (22); A connecting member (3), the connecting member (3) being connected below the connecting plate (22) and including a vertical rod (31) below it; A push rod (32) is arranged at the bottom end of the vertical rod (31); A collecting member (4), the collecting member (4) being arranged inside the connecting seat (21) and including a collecting barrel (42) inside it; A protective member (5), the protective member (5) being connected to the lower sides of both sides of the connecting plate (22) and including a group of protective plates (51) on both sides of it.
2. The continuous casting machine according to claim 1, characterized in that, The main body component (1) further includes a workbench (14) connected to the rear side of the conveyor belt (16), an installation barrel (13) arranged on the left side of the workbench (14), a connecting platform (12) connected to the left side of the installation barrel (13), a group of connecting frames (15) arranged at the front and rear ends of the connecting platform (12), a connecting barrel (11) connected to the left side of the connecting platform (12), a condenser (17) arranged above the conveyor belt (16), and an ingot mold (18) arranged inside the conveyor belt (16).
3. A continuous casting machine according to claim 1, characterized in that, The moving member (2) further includes a group of connecting grooves (23), connecting blocks (24), moving blocks (25), fixed blocks (27), and triangular blocks (28); The connecting seat (21) is connected to the front side surface of the conveyor belt (16), the support plate (26) is arranged at the rear end of the upper surface of the conveyor belt (16), the connecting groove (23) is arranged on the upper surface of the connecting plate (22), the connecting block (24) and the moving block (25) are both arranged inside the connecting groove (23), the fixed block (27) is connected to the upper surface of the part between the connecting grooves (23), and the triangular block (28) is arranged at one end of the upper surface of the fixed block (27); A second spring (221) is arranged at the front end of the connecting block (24), and an installation rod (222) is arranged at the front end of the second spring (221), and the second spring (221) is connected to the inner side of the connecting groove (23) through the installation rod (222); A clamping groove (231) is arranged on the inner bottom surface of the connecting groove (23) where the connecting block (24) is located, and a group of blocking blocks (232) are arranged on both sides at one end of the clamping groove (231).
4. A continuous casting machine according to claim 1, characterized in that, The connecting member (3) further includes a separating ring (33), a connecting ring (34), a third spring (35), and a scraping plate (36); The vertical rod (31) is arranged on the bottom surface of the connecting plate (22), the bottom end of the vertical rod (31) is sleeved with the top end of the push rod (32), the separating ring (33) is sleeved above the vertical rod (31), the connecting ring (34) is sleeved below the push rod (32), the third spring (35) is arranged between the separating ring (33) and the connecting ring (34), the scraping plate (36) is sleeved at the bottom end of the push rod (32), and the scraping plate (36) is located above the ingot mold (18); The top end of the vertical rod (31) extends into the clamping groove (231) internally, and the top end of the vertical rod (31) is connected to the bottom surface of the connecting block (24).
5. A continuous casting machine according to claim 1, characterized in that, The collecting member (4) further includes an inclined plate (41), a bottom plate (43), a support rod (44), and a placement groove (45); The inclined plate (41) is arranged at one end of the ingot mold (18). The top end of the collecting bucket (42) is connected to the front end of the inclined plate (41). The bottom plate (43) is arranged below the connection part of the collecting bucket (42) and the inclined plate (41). The support rod (44) is connected below the bottom plate (43). The placement groove (45) is arranged on the inner upper surface of the connection seat (21); The bottom end of the collecting bucket (42) extends into the interior of the placement groove (45).
6. A continuous casting machine according to claim 1, characterized in that, The protection member (5) further includes a support seat (52), a moving plate (53), a vertical rod (54), a long plate (55), a fourth spring (56), a movable plate (57), and a movable groove (58); The rear end of the protection plate (51) extends to the upper surface rear end of the conveyor belt (16). The front end bottom surface of the protection plate (51) extends to the upper surface of the inclined plate (41). The support seat (52) is connected to the outer side of the front end of the protection plate (51). The moving plate (53) is arranged inside the left protection plate (51). The vertical rod (54) is connected to the upper end of the moving plate (53). The long plate (55) is arranged between the vertical rods (54). The fourth spring (56) is arranged around the vertical rods (54). The movable plate (57) is connected to the upper parts of the front and rear ends of the protection plate (51). The movable groove (58) is arranged at the connection part of the protection plate (51) and the movable plate (57); Grooves are arranged on both sides of the left protection plate (51). The moving plate (53) is provided with a moving groove (531) inside the left protection plate (51); The right protection plate (51) is arranged below the connection plate (22) and is located between the inner sides of the connection seat (21) and the support plate (26).
7. A continuous casting machine according to claim 3, characterized in that, An installation block (241) is arranged on the right side of the connection block (24). One end of the installation block (241) extends into the connection block (24). A hollow groove (245) is arranged inside the connection block (24), and a connecting rod (242) is arranged in the groove. One end of the connecting rod (242) is connected to the inner side end of the installation block (241), and the other end extends to the outside of the connection block (24).
8. A continuous casting machine according to claim 7, characterized in that, An installation end (243) is arranged at the outer side end of the connecting rod (242), and a first spring (244) is arranged on the surface of the connecting rod (242). One end of the first spring (244) is connected to the connecting rod (242), and the other end is connected to the inner side surface of the connection block (24); A trigger block (251) is arranged on the left side surface of the moving block (25), and a motor is arranged inside the connection plate (22).
9. A continuous casting machine according to claim 5, wherein The connection part of the collecting bucket (42) and the inclined plate (41) has magnetism and they are adsorbed to each other.
10. A continuous casting machine according to claim 6, characterized in that, The top end of the fourth spring (56) is connected to the vertical rod (54), and the bottom end is connected to the top surface of the protection plate (51). A set of movable shafts (571) is arranged on the outer side of the connection part of the movable plate (57) and the protection plate (51).