Special manufacturing equipment for winter streetscape ice sculpture
By simultaneously making ice sculptures with multiple molds and combining water inlet components and micro-seismic components, the problems of low efficiency and impact of bubbles in winter street scene ice sculptures are solved, and efficient and high-quality ice sculpture production is achieved.
Patent Information
- Application Number
- CN202510838487.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-23
- Publication Date
- 2025-08-19
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
In the prior art, the production efficiency of street scene ice sculptures in winter is low, and bubbles are easily generated in the liquid to affect the quality of ice sculptures.
Ice sculptures are made at the same time using multiple molds, and through the design of water inlet components and micro-seismic components, the uniform injection of liquid and bubble removal are achieved.
It significantly improves the efficiency of ice sculpture production, ensures the quality of ice sculptures, and shortens the production cycle.
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Figure CN120503531A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of ice sculpture production, in particular to a special production device for winter street scene ice sculptures. Background Art
[0002] Ice sculpture is an art form that uses ice as its primary material. It emphasizes the use of tools, surface treatment, and the carving of knife marks. The artist relies on the varying shadows created by the undulations of the form to captivate the viewer. Like sculptures made of other materials, ice sculptures can be categorized into three types: round, relief, and openwork. Suitable ice is harvested in freezing regions or large ice storage facilities. The sculpture is first shaped and trimmed to the desired shape and size using an electric saw or other tool. Cutters are then used to meticulously carve the ice, creating the sculpture's contours and details.
[0003] After searching, the invention patent with Chinese patent number CN110843399A discloses a special production equipment and ice sculpture forming method for winter street scenes. Compared with the existing technology, the invention patent with Chinese patent number CN110843399A uses the severe cold temperature in winter to freeze the injected water into ice sculptures, which reduces the time spent on manual stacking, shaping and carving design during the construction of ice sculptures. The street construction takes a short time and has little impact on pedestrians and vehicles, which is conducive to increasing the street ice sculpture coverage rate.
[0004] However, in actual use, the above device is used individually for production, which has low production efficiency. In addition, when pouring water into the mold, it is poured directly, which easily generates bubbles in the liquid. The bubbles easily affect the quality of the ice sculpture. Therefore, a special production equipment for winter street scene ice sculptures is proposed. Summary of the Invention
[0005] The purpose of the present invention is to solve the shortcomings of the prior art that individual production is carried out, the production efficiency is low, bubbles are easily generated in the liquid, and the bubbles easily affect the quality of the ice sculptures, and a special production equipment for winter street scene ice sculptures is proposed.
[0006] In order to achieve the above object, the present invention adopts the following technical solutions:
[0007] A device specifically designed for making winter street scene ice sculptures comprises a base, a support plate symmetrically slidably provided on the upper portion of the base, a plurality of molds movably connected to each other on the sides of two support plates, a semicircular groove and a square groove respectively provided on the upper portion of the mold, a guide plate installed on the upper portion of the mold, a water inlet assembly for the mold provided on the base, the water inlet assembly comprising a connecting pipe movably connected to the base, and a plurality of water outlet pipes installed at the bottom of the connecting pipe, water entering the semicircular groove and the square groove both through the water outlet pipes, a third sliding block slidably provided on the inner side of the base, and a fourth sliding block slidably provided on the inner side of the third sliding block;
[0008] The upper part of the fourth sliding block is movably connected to a connecting plate, and a plurality of second L-shaped rods are installed on the side of the connecting plate away from the fourth sliding block. A micro-seismic assembly for the second L-shaped rod is commonly provided on the base and the third sliding block, and the micro-seismic assembly includes a second protrusion rotatably connected in the base, and a first protrusion installed on the side of the third sliding block, and the first protrusion is on the movement trajectory of the second protrusion. Multiple molds can be used to produce ice sculptures at the same time, which can significantly improve the production efficiency.
[0009] The above technical solution further includes:
[0010] The upper part of the base is symmetrically provided with a first sliding groove, and a first sliding block is slidingly provided inside the first sliding groove. The inner sides of the two first sliding grooves are connected with a first threaded rod that rotates together, and the first threaded rod and the first sliding block are threadedly connected. A first servo motor is installed on the side of the base, and the output end of the first servo motor extends to the inner side of the first sliding groove and is fixedly connected to the first threaded rod, and the first sliding block is fixedly connected to the support plate.
[0011] A plurality of circular plates are installed on the side of the support plate close to the mold, and a first telescopic rod and a first spring are respectively installed on the side of the circular plate away from the support plate. The first telescopic rod and the first spring are fixedly connected to the mold on the side away from the support plate.
[0012] A second sliding groove is provided on the upper portion of the base, a second sliding block is slidingly provided inside the second sliding groove, a second threaded rod is rotatably connected to the inner side of the second sliding groove, and the second threaded rod is threadedly connected to the second sliding block.
[0013] The upper part of the second sliding block is rotatably connected to the first rotating plate, the side of the first rotating plate away from the second sliding block is fixedly connected to the first L-shaped rod, a first magnet is installed on the side of the first rotating plate, and a second magnet is installed on the upper part of the base, and the second magnet is in contact with the first magnet.
[0014] A third sliding groove is provided on the upper part of the base, and the third sliding block is slidably arranged inside the third sliding groove. A second telescopic rod and a second spring are symmetrically installed on the side of the third sliding block, and the second telescopic rod and the second spring are fixedly connected to the inner wall of the third sliding groove on the side away from the third sliding block.
[0015] The inner side of the third sliding block is rotatably connected to the third threaded rod, the third threaded rod is threadedly connected to the fourth sliding block, the outer side of the third threaded rod is installed with a first bevel gear, the inner side of the third sliding block is rotatably connected to the rotating rod, and the second bevel gear is installed at one end of the rotating rod close to the third threaded rod, and the second bevel gear is meshed with the first bevel gear.
[0016] A fixed block is installed on the upper part of the fourth sliding block, the fixed block is rotatably connected to the fourth threaded rod, the fourth threaded rod is threadedly connected to the receiving block, and a guide plate is installed on the side of the fixed block close to the receiving block, and the guide plate is slidably connected to the receiving block, which can facilitate the connection and separation of the second L-shaped rod and the mold.
[0017] A second servo motor is installed on the side of the base, and a second rotating plate is installed on the output end of the second servo motor extending to the inner side of the third sliding groove. The second protrusion is installed on the side of the second rotating plate close to the third sliding block, and the first protrusion is installed on the side of the third sliding block close to the second rotating plate, so that the mold moves slightly back and forth, so that bubbles in the liquid in the mold rise to the surface and escape.
[0018] The cross sections of the first protrusion and the water outlet pipe are both arc-shaped.
[0019] The present invention has the following beneficial effects:
[0020] 1. In the present invention, ice sculptures are made simultaneously through multiple molds, which can significantly improve the production efficiency. The water inlet assembly allows the steps of water addition and separation to be carried out simultaneously, further shortening the production cycle and making the entire production process more efficient and orderly.
[0021] 2. In the present invention, the micro-vibration assembly allows the mold to move slightly back and forth through the second L-shaped rod when water is added. The vibration allows bubbles in the liquid in the mold to rise to the surface and escape, thereby producing better ice sculptures. The second L-shaped rod can also clamp the two molds to improve the sealing effect and avoid water overflow during the initial water addition. BRIEF DESCRIPTION OF THE DRAWINGS
[0022] Figure 1 This is a first overall structural diagram of a dedicated production device for winter street scene ice sculptures proposed by the present invention;
[0023] Figure 2 It is a side cross-sectional structural schematic diagram of the present invention;
[0024] Figure 3 Schematic diagram of the second overall structure of the present invention;
[0025] Figure 4 for Figure 1 A schematic diagram of the structure at center A;
[0026] Figure 5 for Figure 1 A magnified schematic diagram of the structure at point B in the middle;
[0027] Figure 6 for Figure 1A magnified schematic diagram of the structure at point C in the middle;
[0028] Figure 7 for Figure 1 A magnified schematic diagram of the structure at D in the middle;
[0029] Figure 8 for Figure 2 A magnified schematic diagram of the structure at E in the middle;
[0030] Figure 9 for Figure 8 Enlarged schematic diagram of the structure at F in the middle.
[0031] In the figure: 1. Base; 2. First sliding groove; 3. First threaded rod; 4. First servo motor; 5. First sliding block; 6. Support plate; 7. Circular plate; 8. First telescopic rod; 9. First spring; 10. Mold; 11. Semicircular groove; 12. Guide plate; 13. Second sliding groove; 14. Second sliding block; 15. Second threaded rod; 16. First rotating plate; 17. First magnet; 18. Second magnet; 19. First L-shaped rod; 20. Connecting pipe; 21. Water outlet pipe; 22. Water inlet Tube; 23. third sliding groove; 24. third sliding block; 25. fourth sliding block; 26. third threaded rod; 27. first bevel gear; 28. rotating rod; 29. second bevel gear; 30. second telescopic rod; 31. second spring; 32. fixed block; 33. guide plate; 34. fourth threaded rod; 35. receiving block; 36. connecting plate; 37. second L-shaped rod; 38. second servo motor; 39. second rotating plate; 40. first protrusion; 41. second protrusion; 42. square groove. DETAILED DESCRIPTION
[0032] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0033] Example 1
[0034] like Figures 1-9As shown, the present invention proposes a special production equipment for winter street scene ice sculptures, including a base 1, a support plate 6 is symmetrically slidably provided on the upper part of the base 1, and a plurality of molds 10 are movably connected on the side of the two support plates 6 close to each other. The upper part of the mold 10 is respectively provided with a semicircular groove 11 and a square groove 42, and a guide plate 12 is installed on the upper part of the mold 10. A water inlet assembly for the mold 10 is provided on the base 1, and the water inlet assembly includes a connecting pipe 20 movably connected to the base 1, and a plurality of water outlet pipes 21 are installed at the bottom of the connecting pipe 20. Water enters the semicircular groove 11 and the square groove 42 through the water outlet pipe 21. A third sliding block 24 is slidably provided on the inner side of the base 1, and a fourth sliding block 25 is slidably provided on the inner side of the third sliding block 24.
[0035] The upper part of the fourth sliding block 25 is movably connected with a connecting plate 36, and a plurality of second L-shaped rods 37 are installed on the side of the connecting plate 36 away from the fourth sliding block 25. A micro-seismic assembly for the second L-shaped rod 37 is commonly provided on the base 1 and the third sliding block 24. The micro-seismic assembly includes a second protrusion 41 rotatably connected in the base 1, and a first protrusion 40 installed on the side of the third sliding block 24, and the first protrusion 40 is located on the movement trajectory of the second protrusion 41. The upper part of the base 1 is symmetrically provided with a first sliding groove 2, and a first sliding block 5 is slidingly provided inside the first sliding groove 2. The inner sides of the two first sliding grooves 2 are rotatably connected with a first threaded rod 3, and the first threaded rod 3 is threadedly connected to the first sliding block 5. A first servo motor 4 is installed on the side of the base 1, and the output end of the first servo motor 4 extending to the inner side of the first sliding groove 2 is fixedly connected to the first threaded rod 3, and the first sliding block 5 is fixedly connected to the support plate 6;
[0036] A plurality of circular plates 7 are installed on the side of the support plate 6 close to the mold 10, and a first telescopic rod 8 and a first spring 9 are respectively installed on the side of the circular plate 7 away from the support plate 6. The first telescopic rod 8 and the first spring 9 are fixedly connected to the mold 10 on the side away from the support plate 6. A second sliding groove 13 is provided on the upper part of the base 1, and a second sliding block 14 is slidingly provided inside the second sliding groove 13. The inner side of the second sliding groove 13 is rotatably connected to a second threaded rod 15, and the second threaded rod 15 is threadedly connected to the second sliding block 14. The upper part of the second sliding block 14 is rotatably connected to the first rotating plate 16, and the side of the first rotating plate 16 away from the second sliding block 14 is fixedly connected to the first L-shaped rod 19. A first magnet 17 is installed on the side of the first rotating plate 16, and a second magnet 18 is installed on the upper part of the base 1, and the second magnet 18 is in contact with the first magnet 17.
[0037] In this embodiment, when ice sculptures need to be made, water can be added through the water inlet pipe 22, and then distributed to each water outlet pipe 21 through the connecting pipe 20 for discharge. After being discharged from the water outlet pipe 21, the water flows into the semicircular groove 11 and finally enters the mold 10. In this way, multiple molds 10 can be filled with water at the same time, and then the ice sculpture is formed by the external low temperature. When water is added, the two molds 10 can be clamped by the second L-shaped rod 37 to improve the sealing effect and avoid water overflow in the early stage of water addition. The support plate 6 and the mold 10 are buffered by the first telescopic rod 8 and the first spring 9. Because water expands in volume when it freezes, the two molds 10 will be pushed to both sides. The first telescopic rod 8 and the first spring 9 allow the distance between the mold 10 and the support plate 6 to change. After the ice sculpture is formed, when it needs to be removed, the second threaded rod 15 can be rotated. The force generated by the rotation of the second threaded rod 15 drives the second sliding block 14 to move along the second sliding groove 13, and at the same time drives the first L-shaped rod 19 and the connecting pipe 20 to move until the water outlet pipe 21 is aligned with the guide plate 12. At this time, hot water can be added through the water inlet pipe 22. The hot water is discharged to the guide plate 12 through the water outlet pipe 21 and flows into the square groove 42 under the guidance of the guide plate 12. By using warm water, the edge of the mold 10 can be slightly heated, thereby facilitating the separation of the ice sculpture from the mold 10.
[0038] When separation is required, first rotate the first L-shaped rod 19 so that the first L-shaped rod 19 rotates through the first rotating plate 16 and the second sliding block 14, and at the same time separate the first magnet 17 from the second magnet 18 until the connecting tube 20 and the support plate 6 are in a vertical state. Then the first servo motor 4 can be started, and the first threaded rod 3 is driven to rotate by the first servo motor 4. The force generated when the first threaded rod 3 rotates can drive the two first sliding blocks 5 to move in opposite directions along the first sliding groove 2, and at the same time drive the two support plates 6 to move. When the two support plates 6 move, they drive the mold 10 to separate, and the ice sculpture can be taken out. In this way, making multiple ice sculptures at one time can significantly improve the production efficiency. Steps such as adding water and separation can be carried out simultaneously, further shortening the production cycle, and making the entire production process more efficient and orderly.
[0039] Example 2
[0040] like Figures 1-9As shown, based on the first embodiment, a third sliding groove 23 is provided on the upper part of the base 1, and the third sliding block 24 is slidably arranged inside the third sliding groove 23. The side of the third sliding block 24 is symmetrically installed with a second telescopic rod 30 and a second spring 31. The second telescopic rod 30 and the second spring 31 are fixedly connected to the inner wall of the third sliding groove 23 on one side away from the third sliding block 24. The inner side of the third sliding block 24 is rotatably connected to the third threaded rod 26, and the third threaded rod 26 is threadedly connected to the fourth sliding block 25. A first bevel gear 27 is installed on the outer side of the third threaded rod 26, and the inner side of the third sliding block 24 is rotatably connected to the rotating rod 28. The end of the rotating rod 28 close to the third threaded rod 26 is installed with a second bevel gear 29, and the second bevel gear 29 is meshed with the first bevel gear 27;
[0041] A fixed block 32 is installed on the upper part of the fourth sliding block 25, and the fixed block 32 is rotatably connected to the fourth threaded rod 34. The fourth threaded rod 34 is threadedly connected to the receiving block 35. A guide plate 33 is installed on the side of the fixed block 32 close to the receiving block 35, and the guide plate 33 and the receiving block 35 are slidably connected. A second servo motor 38 is installed on the side of the base 1, and the output end of the second servo motor 38 extending to the inner side of the third sliding groove 23 is installed with a second rotating plate 39. The second protrusion 41 is installed on the side of the second rotating plate 39 close to the third sliding block 24, and the first protrusion 40 is installed on the side of the third sliding block 24 close to the second rotating plate 39. The cross-sections of the first protrusion 40 and the water outlet pipe 21 are both arc-shaped.
[0042] When the second rotatable plate 39 rotates, the second rotatable plate 39 can be driven to rotate. When the second rotatable plate 39 rotates, the second protrusion 41 can be used to squeeze the inclined surface of the first protrusion 40, thereby driving the third sliding block 24 to move. At this time, the second telescopic rod 30 and the second spring 31 are contracted. When the second protrusion 41 no longer squeezes the first protrusion 40, the second telescopic rod 30 and the second spring 31 are reset. When the first protrusion 40 rotates one circle, the third sliding block 24 is driven to move back and forth slightly once. At the same time, the connecting plate 36 is driven to move back and forth through the fourth threaded rod 34 and the receiving block 35, thereby driving the two molds 10 to move back and forth slightly through the second L-shaped rod 37. The bubbles in the liquid in the mold 10 rise to the surface and escape through vibration, thereby producing a better ice sculpture.
[0043] After the water is added, the rotating rod 28 can be rotated. Since the second bevel gear 29 is meshed with the first bevel gear 27, when the rotating rod 28 rotates, the third threaded rod 26 is driven to rotate through the second bevel gear 29 and the first bevel gear 27. The force generated when the third threaded rod 26 rotates can drive the fourth sliding block 25 to move. At the same time, the connecting plate 36 is driven to move through the fixed block 32, the fourth threaded rod 34 and the receiving block 35 until the second L-shaped rod 37 is separated from the two molds 10 respectively. At this time, the fourth threaded rod 34 is rotated, and the force generated by rotating the fourth threaded rod 34 drives the receiving block 35 to move in the direction close to the fixed block 32 through the guide plate 33. At the same time, the second L-shaped rod 37 is driven to move through the connecting plate 36, so that the second L-shaped rod 37 moves in the direction away from the mold 10, so as to avoid affecting the separation work.
[0044] While embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions, and variations may be made to these embodiments without departing from the principles and spirit of the invention, and that the scope of the invention is defined by the appended claims and their equivalents.
Claims
1. A device for making winter street scene ice sculptures, comprising a base (1), characterized in that: A support plate (6) is symmetrically slidably provided on the upper part of the base (1), and a plurality of molds (10) are movably connected to the sides of the two support plates (6) close to each other. A semicircular groove (11) and a square groove (42) are respectively provided on the upper part of the mold (10). A guide plate (12) is installed on the upper part of the mold (10). A water inlet assembly for the mold (10) is provided on the base (1), and the water inlet assembly includes a connecting pipe (20) movably connected to the base (1), and a plurality of water outlet pipes (21) are installed at the bottom of the connecting pipe (20). Water is introduced into the semicircular groove (11) and the square groove (42) through the water outlet pipe (21). A third sliding block (24) is slidably provided on the inner side of the base (1), and a fourth sliding block (25) is slidably provided on the inner side of the third sliding block (24). The upper part of the fourth sliding block (25) is movably connected to a connecting plate (36), and a plurality of second L-shaped rods (37) are installed on the side of the connecting plate (36) away from the fourth sliding block (25). A micro-seismic assembly for the second L-shaped rods (37) is commonly provided on the base (1) and the third sliding block (24). The micro-seismic assembly includes a second protrusion (41) rotatably connected in the base (1) and a first protrusion (40) installed on the side of the third sliding block (24), and the first protrusion (40) is located on the movement trajectory of the second protrusion (41).
2. The winter street scene ice sculpture production equipment according to claim 1, characterized in that: A first sliding groove (2) is symmetrically provided on the upper part of the base (1), a first sliding block (5) is slidingly provided inside the first sliding groove (2), a first threaded rod (3) is rotatably connected to the inner sides of the two first sliding grooves (2), the first threaded rod (3) and the first sliding block (5) are threadedly connected, a first servo motor (4) is installed on the side of the base (1), the output end of the first servo motor (4) extending to the inner side of the first sliding groove (2) is fixedly connected to the first threaded rod (3), and the first sliding block (5) is fixedly connected to the support plate (6).
3. The winter street scene ice sculpture production equipment according to claim 2, characterized in that: A plurality of circular plates (7) are installed on the side of the support plate (6) close to the mold (10), and a first telescopic rod (8) and a first spring (9) are respectively installed on the side of the circular plate (7) away from the support plate (6), and the first telescopic rod (8) and the first spring (9) are fixedly connected to the mold (10) on the side away from the support plate (6).
4. The winter street scene ice sculpture production equipment according to claim 1, characterized in that: A second sliding groove (13) is provided on the upper portion of the base (1), a second sliding block (14) is slidably provided inside the second sliding groove (13), a second threaded rod (15) is rotatably connected to the inner side of the second sliding groove (13), and the second threaded rod (15) is threadedly connected to the second sliding block (14).
5. The winter street scene ice sculpture production equipment according to claim 4, characterized in that: The upper portion of the second sliding block (14) is rotatably connected to a first rotating plate (16), a side of the first rotating plate (16) away from the second sliding block (14) is fixedly connected to a first L-shaped rod (19), a first magnet (17) is installed on the side of the first rotating plate (16), and a second magnet (18) is installed on the upper portion of the base (1), and the second magnet (18) is in contact with the first magnet (17).
6. The winter street scene ice sculpture production equipment according to claim 1, characterized in that: A third sliding groove (23) is provided on the upper portion of the base (1), and the third sliding block (24) is slidably arranged inside the third sliding groove (23). A second telescopic rod (30) and a second spring (31) are symmetrically installed on the side of the third sliding block (24), and the second telescopic rod (30) and the second spring (31) are fixedly connected to the inner wall of the third sliding groove (23) on a side away from the third sliding block (24).
7. The winter street scene ice sculpture production equipment according to claim 6, characterized in that: The inner side of the third sliding block (24) is rotatably connected to a third threaded rod (26), the third threaded rod (26) is threadedly connected to the fourth sliding block (25), the outer side of the third threaded rod (26) is installed with a first bevel gear (27), the inner side of the third sliding block (24) is rotatably connected to a rotating rod (28), the end of the rotating rod (28) close to the third threaded rod (26) is installed with a second bevel gear (29), and the second bevel gear (29) is meshed with the first bevel gear (27).
8. The winter street scene ice sculpture production equipment according to claim 7, characterized in that: A fixed block (32) is installed on the upper part of the fourth sliding block (25), the fixed block (32) is rotatably connected to the fourth threaded rod (34), the fourth threaded rod (34) is threadedly connected to the receiving block (35), a guide plate (33) is installed on the side of the fixed block (32) close to the receiving block (35), and the guide plate (33) is slidably connected to the receiving block (35).
9. The winter street scene ice sculpture production equipment according to claim 1, characterized in that: A second servo motor (38) is installed on the side of the base (1); a second rotating plate (39) is installed on the output end of the second servo motor (38) extending to the inner side of the third sliding groove (23); the second protrusion (41) is installed on a side of the second rotating plate (39) close to the third sliding block (24); and the first protrusion (40) is installed on a side of the third sliding block (24) close to the second rotating plate (39).
10. The winter street scene ice sculpture production equipment according to claim 9, characterized in that: The cross sections of the first protrusion (40) and the water outlet pipe (21) are both arc-shaped.
Citation Information
Patent Citations
Special manufacturing equipment for winter street view ice sculpture and ice sculpture forming method
CN110843399A