A wrought iron flower cage twisting machine

CN224629668UActive Publication Date: 2026-08-14QINGDAO BENXIANG IRON ART CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-06-18
Publication Date
2026-08-14

AI Technical Summary

Technical Problem

[0005]本实用新型的目的在于提供一种铁艺花笼扭笼机,以解决若使用手工,制作速度慢,难以满足大规模生产的需求,使用机器生产时,钢管或者铁丝在弯曲时容易和夹具产生连接,需要手动取下,较为繁琐的问题

Benefits of technology

1、通过施加的压力使钢管朝向第一滚轮,并且通过挤压发生变形,从而达到加工的目的,使钢管形成和挤压块两侧弧面对应的形状,达到后续花笼加工需要的形状,第一滚轮的滚动还能够对钢管的变形起到一定的引导作用,使钢管的变形更加均匀和顺畅。

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Abstract

This utility model discloses a wrought iron flower cage twisting machine, relating to the field of wrought iron flower cage production, including a base plate; an extrusion block, which is telescopically connected to one side of the top of the base plate; and a receiving block, which is telescopically connected to the other side of the top of the base plate. A steel pipe is disposed between the extrusion block and the receiving block. First fixed seats are provided on both sides of the receiving block, and first rollers are rotatably connected to opposite sides of the two first fixed seats. By applying pressure, the steel pipe is forced towards the first rollers and deformed through extrusion, thereby achieving the processing purpose. The steel pipe is formed into a shape corresponding to the arc surfaces on both sides of the extrusion block, achieving the shape required for subsequent flower cage processing. The rolling of the first rollers also guides the deformation of the steel pipe, making the deformation more uniform and smooth.
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Description

Technical Field

[0001] This utility model relates to the field of wrought iron flower cage production, and in particular to a wrought iron flower cage twisting machine. Background Technology

[0002] Wrought iron flower cages are widely used in decoration, gardening, and home furnishing, and are loved for their unique artistic style and practicality. Traditional wrought iron flower cage production relies mainly on handcrafting. Workers use tools such as hammers and pliers to bend and twist iron wire or steel pipes to form the shape of the flower cage. However, forming a flower cage requires bending and assembling multiple steel pipes or iron wires.

[0003] If done manually, the production speed is slow and it is difficult to meet the needs of large-scale production. When using machines for production, steel pipes or wires are prone to getting connected to the clamps when bent, which requires manual removal and is quite cumbersome.

[0004] Therefore, it is necessary to propose a wrought iron flower cage twisting machine to solve the above problems. Utility Model Content

[0005] The purpose of this utility model is to provide a wrought iron flower cage twisting machine to solve the problems that if manual production is used, the production speed is slow and it is difficult to meet the needs of large-scale production. When using the machine for production, the steel pipe or wire is easy to get connected to the clamp when bending, which requires manual removal and is quite cumbersome.

[0006] To achieve the above objectives, this utility model provides the following technical solution: a wrought iron flower cage twisting machine, including a base plate; An extrusion block, which is telescopically connected to one side of the top of the base plate; A receiving block, which is telescopically connected to the other side of the top of the base plate; A steel pipe is provided between the extrusion block and the receiving block, and a first fixed seat is provided on both sides of the receiving block. A first roller is rotatably connected to one side of each of the two first fixed seats. Both sides of the base plate are provided with support seats, and the top center of the two support seats is provided with a groove. The groove faces the receiving block and is connected to the outside. The two ends of the steel pipe are placed in the corresponding grooves.

[0007] Preferably, both sides of the extrusion block are set as arc surfaces, and an embedded groove is opened on the outer side of the extrusion block, which matches the outer side of the steel pipe.

[0008] Preferably, a first cylinder is fixed to one side of the top of the base plate, and the telescopic end of the first cylinder is connected to one side of the extrusion block; A fixing block is fixed on the other side of the top of the base plate. A spring telescopic rod is connected to the side of the fixing block facing the extrusion block. The receiving block is fixed to one end of the spring telescopic rod. A circular groove is opened on the side of the receiving block near the extrusion block.

[0009] Preferably, a material ejection block is provided on both sides of the first cylinder, and a material ejection groove is provided on the side of the material ejection block near the receiving block.

[0010] Preferably, a second cylinder is provided on the side of each of the two first fixed seats away from the receiving block, and a telescopic end is provided on the side of the second cylinder near the receiving block. The telescopic end of the second cylinder is connected to a second fixed seat, and a second roller is rotatably connected inside the second fixed seat.

[0011] Furthermore, the two first fixed seats are set close to each other at an angle.

[0012] The technical effects and advantages of this utility model are as follows: 1. By applying pressure, the steel pipe is directed toward the first roller and deformed through extrusion, thereby achieving the processing purpose. This causes the steel pipe to form a shape corresponding to the arc surfaces on both sides of the extrusion block, achieving the shape required for subsequent flower cage processing. The rolling of the first roller also guides the deformation of the steel pipe, making the deformation more uniform and smooth.

[0013] 2. The shape and size of the groove match the outer diameter of the steel pipe, which can provide good support and positioning for the steel pipe. The side of the groove facing the receiving block is connected to the outside, so it will not be blocked when the steel pipe is pushed and bent.

[0014] 3. In the actual operation of this utility model, if the steel pipe is still stuck on the outside of the extrusion block after being extruded, the first cylinder will drive the extrusion block to retract, so that the two ends of the steel pipe after bending can abut against the unloading groove. The abutment force will be used to make the steel pipe detach from the extrusion block, which will facilitate unloading. Attached Figure Description

[0015] Figure 1 This is a schematic diagram of the structure of the wrought iron flower cage twisting machine of this utility model.

[0016] Figure 2 This utility model Figure 1 Enlarged diagram of point A in the middle.

[0017] Figure 3 This utility model Figure 1 Enlarged diagram of point B in the middle.

[0018] In the diagram: 1. Base plate; 2. Support seat; 3. Groove; 4. Steel pipe; 5. First cylinder; 6. Extrusion block; 7. First fixed seat; 8. First roller; 9. Fixed block; 10. Spring telescopic rod; 11. Receiving block; 12. Unloading block; 13. Unloading groove; 14. Second cylinder; 15. Second fixed seat. Detailed Implementation

[0019] This utility model provides, for example Figures 1-3 The wrought iron flower cage twisting machine shown includes a base plate 1, which is the basic component of the entire machine, providing a platform for the installation and support of other components. The base plate 1 is typically made of high-strength steel to ensure sufficient load-bearing capacity and stability to withstand various forces generated during processing.

[0020] Extrusion block 6 is telescopically connected to one side of the top of base plate 1; Support block 11 is telescopically connected to the other side of the top of the base plate 1; Among them, a steel pipe 4 is provided between the extrusion block 6 and the receiving block 11, and a first fixing seat 7 is provided on both sides of the receiving block 11. A first roller 8 is rotatably connected to the opposite side of the two first fixing seats 7. When the telescopic end of the first cylinder 5 pushes the extrusion block 6 to move towards the receiving block 11, the arc surface and inner groove of the extrusion block 6 will tightly wrap around the steel pipe 4. The applied pressure will cause the steel pipe 4 to face the first roller 8 and deform through extrusion, thereby achieving the processing purpose. The steel pipe 4 will form a shape corresponding to the arc surfaces on both sides of the extrusion block 6, achieving the shape required for subsequent flower cage processing. The rolling of the first roller 8 can also guide the deformation of the steel pipe 4 to a certain extent, making the deformation of the steel pipe 4 more uniform and smooth.

[0021] Both sides of the extrusion block 6 are set as arc surfaces, and an inner groove is opened on the outer side of the extrusion block 6, which matches the outer side of the steel pipe 4.

[0022] A first cylinder 5 is fixed to one side of the top of the base plate 1, and the telescopic end of the first cylinder 5 is connected to one side of the extrusion block 6. A fixing block 9 is fixed on the other side of the top of the base plate 1. A spring telescopic rod 10 is connected to the side of the fixing block 9 facing the extrusion block 6. A receiving block 11 is fixed to one end of the spring telescopic rod 10. A circular groove is opened on the side of the receiving block 11 near the extrusion block 6.

[0023] The receiving block 11 has a circular groove on the side near the extrusion block 6. The size of this circular groove matches the outer diameter of the steel pipe 4, so that the steel pipe 4 can be stably placed in the circular groove, ensuring that the position of the steel pipe 4 is accurate during the processing.

[0024] Support seats 2 are provided on both sides of the base plate 1. A groove 3 is opened in the middle of the top of the two support seats 2. The side of the groove 3 facing the receiving block 11 is connected to the outside. The two ends of the steel pipe 4 are placed in the corresponding groove 3. The shape and size of the groove 3 match the outer diameter of the steel pipe 4, which can provide good support and positioning for the steel pipe 4. The side of the groove 3 facing the receiving block 11 is connected to the outside, so it will not be blocked when the steel pipe 4 is pushed and bent.

[0025] Both sides of the first cylinder 5 are provided with ejector blocks 12, and ejector blocks 12 are provided with ejector grooves 13 on the side near the receiving block 11.

[0026] In the actual operation of this utility model, if the steel pipe 4 is still stuck on the outside of the extrusion block 6 after being extruded, the first cylinder 5 drives the extrusion block 6 to retract, so that the two ends of the steel pipe 4 after bending can abut against the unloading groove 13. The abutting force is used to make the steel pipe 4 detach from the extrusion block 6, which is convenient for unloading.

[0027] Each of the two first fixed seats 7 is equipped with a second cylinder 14 on the side away from the receiving block 11. The second cylinder 14 has a telescopic end on the side closer to the receiving block 11. The telescopic end of the second cylinder 14 is connected to a second fixed seat 15. A second roller is rotatably connected inside the second fixed seat 15. The second roller contacts the surface of the steel pipe 4 and provides auxiliary support and positioning for the steel pipe 4 through rolling, further improving the stability of the steel pipe 4 during processing. Simultaneously, the rolling of the second roller also guides the deformation of the steel pipe 4, making the deformation more uniform and smooth.

[0028] Furthermore, the two first fixed seats 7 are set close to each other at an angle to facilitate the support of the steel pipe 4.

Claims

1. An iron flower cage twisting cage machine, characterized by: include: Base plate (1); The extrusion block (6) is telescopically connected to one side of the top of the base plate (1); The receiving block (11) is telescopically connected to the other side of the top of the base plate (1); A steel pipe (4) is provided between the extrusion block (6) and the receiving block (11). A first fixed seat (7) is provided on both sides of the receiving block (11). A first roller (8) is rotatably connected to the opposite side of the two first fixed seats (7). The base plate (1) is provided with support seats (2) on both sides. The top center of the two support seats (2) is provided with grooves (3). The grooves (3) are connected to the outside on the side facing the receiving block (11). The two ends of the steel pipe (4) are placed in the corresponding grooves (3).

2. The cage twisting machine according to claim 1, characterized in that: Both sides of the extrusion block (6) are set as arc surfaces, and an embedded groove is opened on the outer side of the extrusion block (6), which matches the outer side of the steel pipe (4).

3. The cage twisting machine according to claim 1, wherein: A first cylinder (5) is fixed on one side of the top of the base plate (1), and the telescopic end of the first cylinder (5) is connected to one side of the extrusion block (6). A fixing block (9) is fixed on the other side of the top of the base plate (1). A spring telescopic rod (10) is connected to the side of the fixing block (9) facing the extrusion block (6). The receiving block (11) is fixed to one end of the spring telescopic rod (10). A circular groove is opened on the side of the receiving block (11) near the extrusion block (6).

4. The cage twisting machine according to claim 3, wherein: The first cylinder (5) is provided with ejector blocks (12) on both sides, and ejector blocks (12) are provided with ejector grooves (13) on the side near the receiving block (11).

5. The cage twisting machine of claim 1, wherein: Two first fixed seats (7) are provided with a second cylinder (14) on the side away from the receiving block (11). The second cylinder (14) is provided with a telescopic end on the side close to the receiving block (11). The telescopic end of the second cylinder (14) is connected to a second fixed seat (15). A second roller is rotatably connected inside the second fixed seat (15). The two first fixed seats (7) are set close to each other at an angle.