Petal shaping device for artificial flower manufacturing

By designing a detachable and connected fake flower petal shaping device, the problem that the existing technology cannot adapt to different shapes of petals is solved, and the rapid replacement of molds and the satisfaction of diversified orders is achieved, and the production efficiency and mold life are improved.

CN222828167UInactive Publication Date: 2025-05-06GAOMI FUCHENG ARTS & CRAFTS CO LTD
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Patent Information

Application Number
CN202422376020.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-29
Publication Date
2025-05-06
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

The existing petal pressing devices used for simulated flower production cannot adapt to petals of different shapes, and the fixed pressing molds and molding tables are only suitable for one petal shape.

Method used

A petal shaping device for making a fake flower is designed, including a base plate, a shaping mold assembly and a pressing mold assembly, and the detachable connection and rapid replacement of the mold are realized through the first and second connecting components.

Benefits of technology

The device can quickly replace molds according to different petal shape requirements, adapt to diversified orders, improve production efficiency, reduce maintenance costs, and extend mold life.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of artificial flower manufacturing, in particular to a petal shaping device for artificial flower manufacturing, which comprises a bottom plate, a shaping mold component is arranged at the top of the bottom plate close to the center, the bottom plate is detachably connected with the shaping mold component through a first connecting component, and a pressing mold component is arranged above the shaping mold component. Guide columns are symmetrically arranged at the positions, located on the two sides of the shaping mold assembly, of the top of the bottom plate, the tops of the guide columns are fixedly connected with the same top plate, a movable plate is slidably arranged between the two guide columns, and the movable plate is detachably connected with the pressing mold assembly through a second connecting assembly. Driving devices for driving the moving plate to move up and down are symmetrically arranged on two sides between the top plate and the moving plate; the petal forming die is reasonable in structural design and convenient to operate, the die can be rapidly replaced according to the requirements of different petal shapes, and therefore petals in different shapes can be pressed and formed.
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Description

Technical Field

[0001] The utility model relates to the technical field of artificial flower production, in particular to a petal shaping device for artificial flower production. Background Art

[0002] Artificial flowers refer to artificial flowers made of materials such as stretched silk, crepe paper, polyester, plastic, crystal, and dried flowers. They are generally called artificial flowers in the industry. As the name suggests, artificial flowers are made of cloth, yarn, silk, plastic and other materials based on fresh flowers. Today, the craftsmanship of artificial flowers is getting more and more refined, and they are almost indistinguishable from the real thing. In addition to various imitations of flowers, there are also varieties such as artificial leaves, artificial branches, artificial weeds, artificial trees, and artificial plants on the market.

[0003] A petal pressing device for artificial flower production with the announcement number CN218571483U is retrieved, wherein the bottom surface of the mounting seat is provided with a mounting plate, the bottom surface of the mounting plate is provided with a pressing mold, the top surface of the balancing base is provided with a workbench, the top surface of the workbench is provided with a forming table, the side of the support rod is provided with an electric push plate, the side of the electric push plate is provided with an L-shaped plate, and the bottom surface of the L-shaped plate is provided with a scraper. The petal pressing device for artificial flower production drives the pressing mold on the bottom surface of the mounting plate to align with the forming table for pressing by a reciprocating screw rod driving a matching slider, and at the same time, the scraper on the bottom surface of the L-shaped plate is aligned with the side of the forming table and then adjusted to the inner side of the support rod, so that the reciprocating screw rod drives the pressing mold to move vertically up and down to align with the petal groove for precise pressing, and when the forming table rotates, the scraper shovels the formed artificial flower petals to the top surface of the workbench, and the workers collect them uniformly, thereby improving the workers' work efficiency.

[0004] However, the above device still has some shortcomings during use. The pressing mold and the forming table in the device are fixedly arranged, and can only press and shape one type of petals, but cannot press and shape petals of different shapes. Utility Model Content

[0005] The main technical problem to be solved by the utility model is to provide a petal shaping device for artificial flower production, which has reasonable structural design, is easy to operate, and can quickly replace molds according to different petal shape requirements, thereby being able to press and shape petals of different shapes.

[0006] In order to solve the above technical problems, the utility model provides the following technical solutions:

[0007] A petal shaping device for artificial flower production comprises a bottom plate, a shaping mold assembly is arranged near the center position of the top of the bottom plate, the bottom plate and the shaping mold assembly are detachably connected via a first connecting assembly, a pressing mold assembly is arranged above the shaping mold assembly, and the pressing mold assembly and the shaping mold assembly are arranged in correspondence with each other up and down, guide columns are symmetrically arranged on both sides of the shaping mold assembly at the top of the bottom plate, the top of the guide columns is fixedly connected to the same top plate, a moving plate is slidably arranged between the two guide columns, the moving plate and the pressing mold assembly are detachably connected via a second connecting assembly, and driving devices for driving the moving plate to move up and down are symmetrically arranged at positions on both sides between the top plate and the moving plate.

[0008] The following is a further optimization of the above technical solution by the utility model:

[0009] The shaping mold assembly includes a shaping module, and a plurality of shaping molds are evenly fixedly arranged on the top of the shaping module; the pressing mold assembly includes a pressing module, and a plurality of pressing molds are evenly fixedly arranged on the bottom of the pressing module, and the pressing molds correspond to the shaping molds one by one above and below.

[0010] Further optimization: positioning rods are fixedly connected at the four corners of the bottom of the shaping module and the top of the pressing module, and positioning grooves matching the positioning rods are opened at the top of the bottom plate and the bottom of the movable plate.

[0011] Further optimization: The first connecting component includes two grooves symmetrically opened on the top of the shaping module, a plurality of sockets are opened on the inner walls of the two grooves away from each other, splints are movably arranged in the two grooves, a plurality of plug rods are arranged on the side walls of the two splints away from each other, and the plug rods are adapted to the sockets.

[0012] Further optimization: a movable groove is provided on the top of the base plate, and a first driving component is provided in the movable groove to drive the two splints to move closer to or away from each other. The first driving component includes a double-headed threaded rod rotatably arranged in the movable groove, and the rotation directions of the two ends of the double-headed threaded rod are opposite. One end of the double-headed threaded rod passes through the base plate, extends to its outside and is fixedly connected to a handle.

[0013] Further optimization: two driving blocks are symmetrically threadedly connected on the double-headed threaded rod, the top ends of the two driving blocks are fixedly connected to the corresponding clamping plates respectively, a guide groove is opened at the bottom of the movable groove along its length, two guide blocks are symmetrically slidably connected in the guide groove, and the top of the guide block is fixedly connected to the corresponding driving block.

[0014] Further optimization: the second connecting component includes a mounting block fixedly mounted on the top of the pressing mold assembly, a mounting groove is opened at the center of the movable plate, the top of the mounting block extends through the mounting groove to above it, and a plurality of card holes are symmetrically opened on two opposite side walls of the mounting block.

[0015] Further optimization: the movable plate is symmetrically provided with pressure plates on both sides of the mounting block, and the side walls of the two pressure plates close to each other are fixedly connected with clamping rods, and the clamping rods are adapted to the clamping holes.

[0016] Further optimization: the top of the movable plate is located on both sides of the mounting block and is symmetrically provided with a second driving component for driving the corresponding pressure plate to move closer to or away from the mounting block. The second driving component includes a support plate fixedly installed on the top of the movable plate, and a driving screw is threadedly sleeved on the support plate. One end of the driving screw is rotatably connected to the corresponding pressure plate, and the other end of the driving screw is fixedly connected to a knob.

[0017] The utility model provides a first connecting component and a second connecting component, thereby facilitating replacement of the shaping mold component and the pressing mold component to meet different petal shape requirements, satisfy diverse customer orders, and enhance corporate competitiveness; and the mold can be easily disassembled for repair or replacement when worn or damaged, saving time and labor costs, and being conducive to inspection and maintenance, extending the life of the mold, and reducing maintenance costs.

[0018] The utility model has reasonable structural design and convenient operation, and the mold can be quickly replaced according to the requirements of different petal shapes, so that petals of different shapes can be pressed and formed.

[0019] The utility model is further described below in conjunction with the accompanying drawings and embodiments. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] Figure 1 It is a schematic diagram of the overall structure of an embodiment of the utility model;

[0021] Figure 2 This is a structural split diagram between the shaping mold assembly and the bottom plate in the embodiment of the utility model;

[0022] Figure 3 This is a structural breakdown diagram between the pressing mold assembly and the movable plate in an embodiment of the utility model.

[0023] In the figure: 1-bottom plate; 2-forming mold assembly; 21-forming module; 22-forming mold; 3-first connecting assembly; 31-groove; 32-jack; 33-clamp; 34-insertion rod; 35-movable groove; 36-first driving assembly; 361-stud screw rod; 362-handle; 363-driving block; 364-guide groove; 365-guide block; 4-pressing mold assembly; 41-pressing module; 42-pressing mold; 5-guide column; 6-top plate; 7-movable plate; 8-second connecting assembly; 81-mounting block; 82-mounting groove; 83-clamping hole; 84-pressing plate; 85-clamping rod; 86-second driving assembly; 861-support plate; 862-driving screw; 863-knob; 9-driving device; 10-positioning rod; 11-positioning groove. DETAILED DESCRIPTION

[0024] See also Figure 1-3 A petal shaping device for artificial flower production comprises a bottom plate 1, a shaping mold assembly 2 is arranged near the center position of the top of the bottom plate 1, the bottom plate 1 and the shaping mold assembly 2 are detachably connected through a first connecting assembly 3, a pressing mold assembly 4 is arranged above the shaping mold assembly 2, and the pressing mold assembly 4 and the shaping mold assembly 2 are arranged correspondingly up and down, guide columns 5 are symmetrically arranged on both sides of the shaping mold assembly 2 at the top of the bottom plate 1, the top of the guide column 5 is fixedly connected to the same top plate 6, a moving plate 7 is slidably arranged between the two guide columns 5, the moving plate 7 and the pressing mold assembly 4 are detachably connected through a second connecting assembly 8, and driving devices 9 for driving the moving plate 7 to move up and down are symmetrically arranged at both sides between the top plate 6 and the moving plate 7.

[0025] With this design, firstly, by setting up the first connecting component 3 and the second connecting component 8, it is not only convenient to replace the shaping mold component 2 and the pressing mold component 4 to adapt to different petal shape requirements, meet customers' diversified orders, and enhance the competitiveness of the enterprise; and the mold can be easily disassembled, repaired or replaced when worn or damaged, saving time and labor costs, and is conducive to inspection and maintenance, extending the life of the mold and reducing maintenance costs.

[0026] Secondly, the symmetrical guide columns 5 on both sides provide stable guidance for the movable plate 7, ensuring that the shaping mold assembly 2 and the pressing mold assembly 4 are accurately aligned, reducing stamping errors and improving the quality and consistency of the petals.

[0027] Then, the driving assembly directly drives the moving plate 7 to make the pressing die assembly 4 move more quickly and stably, reducing time waste. Rapid mold replacement also enables rapid production switching to adapt to different production tasks.

[0028] Finally, the design of the guide column 5 and the top plate 6 makes reasonable use of space, realizes the efficient petal stamping function in a small space, meets the needs of enterprises with limited production space, and improves space utilization.

[0029] The shaping mold assembly 2 comprises a shaping module 21 , and a plurality of shaping molds 22 are evenly and fixedly arranged on the top of the shaping module 21 .

[0030] The pressing die assembly 4 includes a pressing module 41 , and a plurality of pressing dies 42 are evenly and fixedly disposed at the bottom of the pressing module 41 , and the pressing dies 42 correspond to the shaping dies 22 one by one up and down.

[0031] With this design, firstly, multiple molds are evenly distributed and can operate multiple products at the same time, thus improving production efficiency and meeting the needs of large-scale production.

[0032] Secondly, one-to-one correspondence ensures that each product is processed under the same conditions, ensuring the consistency of product size, shape and performance, and improving quality stability.

[0033] Furthermore, integrating multiple molds on the module optimizes space utilization, making the production site neater, more orderly and easier to operate and manage.

[0034] Finally, the one-to-one design can ensure uniform force during product processing, improve processing accuracy, reduce errors, and make product quality more reliable.

[0035] Positioning rods 10 are fixedly connected at the four corners of the bottom of the shaping module 21 and the top of the pressing module 41 , and positioning grooves 11 matching the positioning rods 10 are formed at the top of the bottom plate 1 and the bottom of the movable plate 7 .

[0036] With this design, firstly, by setting positioning rods 10 at the four corners of the shaping module 21 and the pressing module 41 and setting matching positioning grooves 11 on the bottom plate 1 and the movable plate 7, precise alignment of the upper and lower modules is achieved, thereby improving product processing accuracy and reducing errors.

[0037] Secondly, it provides additional support and stability for the mold assembly to prevent the module from shifting, shaking or tilting during the pressing process, ensuring the stable operation of the mold, improving product quality and extending the life of the mold.

[0038] Furthermore, it makes mold installation and disassembly more convenient and quick, without the need for complex adjustments and calibrations, thus improving production efficiency and reducing operation time and labor costs.

[0039] Finally, it improves production safety, ensures that the mold will not accidentally move or fall off during operation, reduces operator safety risks, and avoids product damage or equipment failure due to mold misalignment.

[0040] The first connection component 3 includes two grooves 31 symmetrically opened on the top of the shaping module 21 , and a plurality of plug holes 32 are opened on the inner walls of the two grooves 31 away from each other.

[0041] Clamps 33 are movably disposed in the two grooves 31 , and a plurality of inserting rods 34 are disposed on the side walls of the two clamps 33 that are away from each other, and the inserting rods 34 are matched with the insertion holes 32 .

[0042] A movable groove 35 is formed on the top of the bottom plate 1 , and a first driving component 36 is disposed in the movable groove 35 to drive the two clamping plates 33 to move closer to each other or away from each other.

[0043] The first driving assembly 36 includes a double-threaded rod 361 rotatably disposed in the movable groove 35 , and the rotation directions of the two ends of the double-threaded rod 361 are opposite. One end of the double-threaded rod 361 passes through the base plate 1 and extends to the outside thereof and is fixedly connected to a handle 362 .

[0044] The double-threaded rod 361 is symmetrically threaded with two driving blocks 363 , and the top ends of the two driving blocks 363 are fixedly connected to the corresponding clamping plates 33 .

[0045] A guide groove 364 is formed at the bottom of the movable groove 35 along its length. Two guide blocks 365 are symmetrically slidably connected in the guide groove 364 . The tops of the guide blocks 365 are fixedly connected to the corresponding driving blocks 363 .

[0046] When it is necessary to connect and fix the shaping module 21 to the base plate 1, first rotate the double-headed threaded rod 361 through the handle 362. Since the two ends of the double-headed threaded rod 361 rotate in opposite directions, as the rotation occurs, the two driving blocks 363 symmetrically threadedly connected to the double-headed threaded rod 361 make a linear motion away from each other along the double-headed threaded rod 361 under the limiting action of the guide block 365 and the guide groove 364. The movement of the driving block 363 drives the splint 33 fixedly connected thereto to move in the groove 31, so that the insertion rod 34 on the splint 33 is gradually inserted into the socket 32 ​​on the side wall of the groove 31. When the insertion rod 34 is fully inserted into the socket 32, a firm connection between the shaping module 21 and the base plate 1 is achieved.

[0047] When disassembly is required, the handle 362 is rotated in the opposite direction, the driving block 363 drives the clamping plates 33 to move closer to each other, and the insertion rod 34 is pulled out from the insertion hole 32, thereby releasing the connection between the shaping module 21 and the base plate 1.

[0048] With such a design, firstly, the insertion rod 34 cooperates with the insertion hole 32 to firmly connect the shaping module 21 and the bottom plate 1, and can withstand external forces, thereby ensuring stable and safe production.

[0049] Secondly, the movement of the splint 33 can be controlled by turning the handle 362, which is convenient and efficient to operate, improves the efficiency of connection and disassembly, and saves time and labor costs.

[0050] Furthermore, the guide groove 364 and the guide block 365 ensure accurate alignment, improve product processing accuracy, and reduce errors.

[0051] In addition, the design is highly adaptable, and the plug rod 34, the socket 32 ​​and the double-headed threaded rod 361 can be adjusted as needed to meet different connection strength requirements; finally, it is easy to maintain and replace, and the handle 362 can be easily disassembled to reduce maintenance costs and downtime. The independence of the components facilitates separate replacement in the event of a failure, thereby improving equipment reliability.

[0052] The second connecting component 8 includes a mounting block 81 fixedly mounted on the top of the pressing mold component 4, a mounting groove 82 is opened at the center of the movable plate 7, the top end of the mounting block 81 extends through the mounting groove 82 to above it, and a plurality of card holes 83 are symmetrically opened on two opposite side walls of the mounting block 81.

[0053] The movable plate 7 is symmetrically provided with pressing plates 84 on both sides of the mounting block 81 , and the side walls of the two pressing plates 84 close to each other are fixedly connected with clamping rods 85 , and the clamping rods 85 are adapted to the clamping holes 83 .

[0054] The top of the movable plate 7 is symmetrically provided with second driving components 86 on both sides of the mounting block 81 for driving the corresponding pressing plates 84 to approach or move away from the mounting block 81 .

[0055] The second driving assembly 86 includes a supporting plate 861 fixedly mounted on the top of the moving plate 7, a driving screw 862 is threadedly sleeved on the supporting plate 861, one end of the driving screw 862 is rotatably connected to the corresponding pressing plate 84, and the other end of the driving screw 862 is fixedly connected to a knob 863.

[0056] When the pressing die assembly 4 needs to be connected and fixed to the movable plate 7, firstly, the top end of the mounting block 81 is passed through the mounting groove 82 at the center of the movable plate 7. At this time, the clamping hole 83 on the mounting block 81 is in a position where the clamping rod 85 can be inserted.

[0057] Then, the driving screw 862 is driven to rotate by rotating the knob 863. Since the driving screw 862 is threadedly sleeved with the support plate 861, and one end of the driving screw 862 is rotatably connected to the pressure plate 84, as the driving screw 862 rotates, the pressure plate 84 is pushed by the driving screw 862 to approach the mounting block 81, so that the clamping rod 85 on the pressure plate 84 gradually approaches the clamping hole 83 on the mounting block 81. When the clamping rod 85 is fully inserted into the clamping hole 83, the two pressure plates 84 tightly fix the mounting block 81 through the cooperation of the clamping rod 85 and the clamping hole 83, thereby realizing a firm connection between the pressing mold assembly 4 and the movable plate 7.

[0058] When disassembly is required, the knob 863 is rotated in the opposite direction to drive the screw 862 to drive the pressing plate 84 away from the mounting block 81 , so that the clamping rod 85 is pulled out of the clamping hole 83 , and the connection between the pressing die assembly 4 and the movable plate 7 is released.

[0059] With this design, first, the clamping hole 83 of the mounting block 81 cooperates with the clamping rod 85 of the pressing plate 84, and the plurality of clamping holes 83 increase the stability of the connection, can withstand pressure and impact force, and ensure stable and safe production.

[0060] Secondly, the operation can be performed by rotating the knob 863, which is simple and quick, improves the efficiency of connection and disassembly, and saves time and labor costs.

[0061] The driving device 9 may be an electric telescopic rod, a telescopic cylinder, a hydraulic telescopic cylinder, etc. In the present embodiment, the driving device 9 is a hydraulic telescopic cylinder.

[0062] When in use, first install the corresponding shaping mold assembly 2 and pressing mold assembly 4 according to the shape of the petals to be pressed. First, align the positioning rod 10 at the bottom of the shaping module 21 with the positioning groove 11 on the base plate 1 to ensure precise alignment, and insert the positioning rod 10 into the corresponding positioning groove 11. At this time, the shaping module 21 is installed at the exact position on the base plate 1. Then, turn the handle 362 to rotate the double-headed threaded rod 361, driving the driving block 363 to move under the restriction of the guide block 365 and the guide groove 364, and then insert the insertion rod 34 on the splint 33 into the socket 32 ​​on the side wall of the groove 31, so as to achieve a firm connection between the shaping module 21 and the base plate 1.

[0063] Next, align the mounting block 81 on the top of the pressing mold assembly 4 with the mounting slot 82 at the center of the movable plate 7, so that the top of the mounting block 81 passes through the mounting slot 82, and at the same time insert the positioning rod 10 into the corresponding positioning slot 11, and then, by rotating the knob 863, drive the driving screw 862 to rotate, push the pressing plate 84 closer to the mounting block 81, and insert the clamping rod 85 on the pressing plate 84 into the clamping hole 83 on the side wall of the mounting block 81, so as to achieve a firm connection between the pressing mold assembly 4 and the movable plate 7.

[0064] Then the petals to be pressed and shaped are placed on the shaping mold 22. After placement, the driving assembly on the top plate 6 is started, and the driving assembly pushes the movable plate 7 to move up and down along the guide column 5. When the movable plate 7 moves downward, it drives the pressing mold assembly 4 to move closer to the shaping mold assembly 2. Since the pressing mold 42 corresponds to the shaping mold 22 one by one, the petals placed in the shaping mold 22 are pressed.

[0065] For ordinary technicians in this field, according to the teachings of the present invention, without departing from the principles and spirit of the present invention, changes, modifications, substitutions and variations made to the implementation methods are still within the protection scope of the present invention.

Claims

1. A petal shaping device for artificial flower production, comprising a base plate (1), a shaping mold assembly (2) being arranged near the center of the top of the base plate (1), characterized in that: The bottom plate (1) and the shaping die assembly (2) are detachably connected via a first connecting assembly (3); a pressing die assembly (4) is arranged above the shaping die assembly (2); the pressing die assembly (4) and the shaping die assembly (2) are arranged in a vertically corresponding manner; guide columns (5) are symmetrically arranged on both sides of the shaping die assembly (2) at the top of the bottom plate (1); the tops of the guide columns (5) are fixedly connected to the same top plate (6); a moving plate (7) is slidably arranged between the two guide columns (5); the moving plate (7) and the pressing die assembly (4) are detachably connected via a second connecting assembly (8); and driving devices (9) for driving the moving plate (7) to move up and down are symmetrically arranged at positions on both sides between the top plate (6) and the moving plate (7).

2. The petal shaping device for artificial flower production according to claim 1, characterized in that: The shaping die assembly (2) comprises a shaping module (21), and a plurality of shaping dies (22) are evenly and fixedly arranged on the top of the shaping module (21); the pressing die assembly (4) comprises a pressing module (41), and a plurality of pressing dies (42) are evenly and fixedly arranged on the bottom of the pressing module (41), and the pressing dies (42) correspond one to one with the shaping die (22) in upper and lower positions.

3. The petal shaping device for artificial flower production according to claim 2, characterized in that: Positioning rods (10) are fixedly connected at the four corners of the bottom of the shaping module (21) and the top of the pressing module (41), and positioning grooves (11) matching the positioning rods (10) are formed at the top of the bottom plate (1) and the bottom of the movable plate (7).

4. The petal shaping device for artificial flower production according to claim 3, characterized in that: The first connection component (3) comprises two grooves (31) symmetrically arranged on the top of the shaping module (21); a plurality of plug holes (32) are arranged on inner walls of the two grooves (31) that are away from each other; a clamping plate (33) is movably arranged in each of the two grooves (31); a plurality of plug rods (34) are arranged on side walls of the two clamping plates (33) that are away from each other; and the plug rods (34) are adapted to fit the plug holes (32).

5. The petal shaping device for artificial flower production according to claim 4, characterized in that: A movable groove (35) is provided at the top of the bottom plate (1), and a first driving assembly (36) is provided in the movable groove (35) for driving the two clamping plates (33) to move toward or away from each other. The first driving assembly (36) comprises a double-headed threaded rod (361) rotatably arranged in the movable groove (35), and the rotation directions of the two ends of the double-headed threaded rod (361) are opposite. One end of the double-headed threaded rod (361) passes through the bottom plate (1) and extends to the outside thereof and is fixedly connected to a handle (362).

6. The petal shaping device for artificial flower production according to claim 5, characterized in that: Two driving blocks (363) are symmetrically threadedly connected on the double-headed threaded rod (361), and the top ends of the two driving blocks (363) are fixedly connected to the corresponding clamping plates (33) respectively. A guide groove (364) is provided at the bottom of the movable groove (35) along its length, and two guide blocks (365) are symmetrically slidably connected in the guide groove (364), and the top ends of the guide blocks (365) are fixedly connected to the corresponding driving blocks (363).

7. The petal shaping device for artificial flower production according to claim 1, characterized in that: The second connecting assembly (8) comprises a mounting block (81) fixedly mounted on the top of the pressing die assembly (4); a mounting groove (82) is provided at the center of the movable plate (7); a top end of the mounting block (81) passes through the mounting groove (82) and extends to above the mounting groove; and a plurality of clamping holes (83) are symmetrically provided on two opposite side walls of the mounting block (81).

8. The petal shaping device for artificial flower production according to claim 7, characterized in that: The movable plate (7) is symmetrically provided with pressure plates (84) on both sides of the mounting block (81), and the side walls of the two pressure plates (84) close to each other are fixedly connected with clamping rods (85), and the clamping rods (85) are adapted to the clamping holes (83).

9. The petal shaping device for artificial flower production according to claim 8, characterized in that: The top of the movable plate (7) is symmetrically provided with second drive components (86) on both sides of the mounting block (81) for driving the corresponding pressing plates (84) to move closer to or away from the mounting block (81). The second drive component (86) comprises a support plate (861) fixedly mounted on the top of the movable plate (7), a drive screw (862) being threadedly sleeved on the support plate (861), one end of the drive screw (862) being rotatably connected to the corresponding pressing plate (84), and the other end of the drive screw (862) being fixedly connected to a knob (863).

Citation Information

Patent Citations

  • Petal pressing device for manufacturing artificial flowers

    CN218571483U