A forming structure for lotus cake processing

By combining the material storage component, the fine-tuning push component, and the elastic positioning component, the problem of manually disassembling the positioning frame in the traditional lotus root cake forming structure is solved. This improves the flexibility and stability of the lotus root cake forming structure and enables precise positioning and convenient installation without the need for manual calibration.

CN224482981UActive Publication Date: 2026-07-14HUBEI HONGFEI FOOD TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
HUBEI HONGFEI FOOD TECH CO LTD
Filing Date
2025-08-21
Publication Date
2026-07-14

AI Technical Summary

Technical Problem

Traditional lotus root cake forming structures require manual disassembly of the entire positioning frame, making it difficult to accurately position and install according to the location of the forming components, resulting in poor flexibility.

Method used

The design employs a combination of a support and storage component, a fine-tuning and pushing component, a forming and clamping component, and an elastic positioning component to achieve adaptive positioning and elastic support. Through the cooperation of the adaptive positioning component and the forming and clamping component, the automatic positioning and clamping is achieved, reducing the need for manual calibration. The elastic positioning component absorbs instantaneous impact force and distributes the thrust evenly.

Benefits of technology

It improves the flexibility and stability of the molding structure, achieves precise positioning and convenient installation without manual calibration, and allows for the replacement of different shapes or sizes of lotus root cake molding molds, ensuring the stability and convenience of lotus root cakes during the molding process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a kind of forming structure for lotus cake processing, comprising: support storage component, fine adjustment pushing assembly, forming clamping assembly, the fine adjustment pushing assembly is connected in support storage component inside, the fine adjustment pushing assembly bottom is equipped with elastic positioning assembly, the elastic positioning assembly inner wall is equipped with self-adapting positioning assembly.The utility model provides a kind of forming structure for lotus cake processing, by the cooperation of the self-adapting positioning assembly and forming clamping assembly of being set, can be automatically positioned clamping according to the position of forming clamping assembly, without artificial calibration can complete structure positioning, so that late user according to the shape size of different lotus cake, it is flexibly installed replacement.Meanwhile, by the elastic positioning assembly of being set, can be through deformation absorption instantaneous impact force, and, the forming clamping assembly in inside can be positioned to structure limit, guarantee the stability and convenience of structure reforming.
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Description

Technical Field

[0001] This utility model relates to the field of lotus root cake forming technology, and in particular to a forming structure for processing lotus root cakes. Background Technology

[0002] As a traditional specialty food, lotus root cakes have undergone a transformation in their processing and production from small-scale, family-run workshops to industrialized and automated processes. In modern lotus root cake processing, the shaping stage is the core process that determines the consistency of the product's appearance and taste, directly affecting the efficiency of subsequent processes such as frying and packaging.

[0003] In traditional lotus root cake forming structures, the positioning and forming components are mostly fixedly connected. When changing forming molds of different shapes or sizes, the entire positioning frame needs to be manually disassembled, which is cumbersome and makes it difficult to accurately position and install the forming components according to their positions, resulting in poor flexibility.

[0004] Therefore, it is necessary to provide a molding structure for processing lotus root cakes to solve the above-mentioned technical problems. Utility Model Content

[0005] This utility model provides a forming structure for processing lotus root cakes, which solves the problem that existing structures require manual disassembly of the entire positioning frame and are difficult to accurately position and install according to the position of the forming parts.

[0006] To solve the above-mentioned technical problems, the present invention provides a forming structure for processing lotus root cakes, comprising: a supporting and storing component, a fine-tuning and pushing component, and a forming and clamping component. The fine-tuning and pushing component is connected inside the supporting and storing component. An elastic positioning component is installed at the bottom of the fine-tuning and pushing component. The elastic positioning component is used for elastic support of the forming and clamping component. An adaptive positioning component is installed on the inner wall of the elastic positioning component. The adaptive positioning component is used for structural positioning of the forming and clamping component.

[0007] Preferably, the supporting storage assembly includes a supporting base, an observation structure is provided on the side of the supporting base for observing the internal structure of the supporting base, a fixed handle is installed at the top of both ends of the supporting base, and a limiting groove structure is formed on the inner wall of both ends of the supporting base for fine-tuning the structural limit of the pushing assembly.

[0008] Preferably, the fine-tuning push assembly includes an adjustment structure, a push support structure is installed at the bottom of the adjustment structure, the push support structure is used for pushing the material of the forming clamping assembly, a limit structure is installed on the inner wall of the push support structure, the limit structure is used for limiting the rotation of the adjustment structure, and limit block structures are installed at both ends of the push support structure, the limit block structures are used for limiting the structure of the push support structure.

[0009] Preferably, the elastic positioning component includes a positioning plate, with elastic buffers installed on the inner walls at both ends of the positioning plate for elastic buffering of the positioning plate, and elastic support members installed on the inner walls at both ends of the positioning plate. A friction positioning structure is installed on the side end of the elastic support member for structural positioning of the adaptive positioning component.

[0010] Preferably, the adaptive positioning component includes a groove structure, a connecting block, and a sliding block. The groove structure has fixed grooves at both ends, and the sliding block slides on the inner walls at both ends of the groove structure. A rotating frame is installed on the side of the connecting block and the sliding block, and a connecting structure is rotatably connected to the side of the rotating frame. The connecting structure is used for the rotatable connection between the connecting block and the sliding block.

[0011] Preferably, the forming clamping assembly includes a forming frame, with clamping blocks sliding on the inner walls at both ends of the forming frame, and a fixing block structure installed on the side end of the clamping block, the fixing block structure being used for structural positioning of the forming frame.

[0012] Compared with related technologies, the forming structure for processing lotus root cakes provided by this utility model has the following characteristics:

[0013] Beneficial effects:

[0014] This utility model provides a forming structure for processing lotus root cakes. To enhance the structure's flexibility during use, the adaptive positioning component and the forming clamping component work together to automatically and adaptively position and clamp the structure according to the position of the forming clamping component. This eliminates the need for manual calibration, allowing users to flexibly install and replace the structure according to different lotus root cake shapes and sizes, thus improving the overall practicality of the structure. Simultaneously, during the pushing and conveying of the lotus root cakes, the elastic positioning component absorbs instantaneous impact forces through deformation, ensuring the thrust is evenly distributed on the surface of the lotus root cakes. This prevents the internal structure from becoming loose during forming. Furthermore, as the structure is continuously pushed, the internal forming clamping component provides structural constraint and positioning, ensuring the stability and convenience of structural changes. Attached Figure Description

[0015] Figure 1 A schematic diagram of a preferred embodiment of a molding structure for processing lotus root cakes provided by this utility model;

[0016] Figure 2 for Figure 1 The diagram shows the structure of the elastic positioning component.

[0017] Figure 3 for Figure 1 The diagram shows the structure of the groove-limiting structure.

[0018] Figure 4 for Figure 1 The diagram shows the structural schematic of the adjustment structure.

[0019] Figure 5 for Figure 1 The diagram shows the structure of the molded frame.

[0020] The diagram is labeled as follows: 1. Material storage support assembly; 11. Support base; 12. Observation structure; 13. Fixed handle; 14. Groove limiting structure; 2. Fine-tuning push assembly; 21. Adjustment structure; 22. Push support structure; 23. Limiting structure; 24. Limiting block structure; 3. Elastic positioning assembly; 31. Positioning plate; 32. Elastic buffer; 33. Elastic support; 34. Friction positioning structure; 4. Adaptive positioning assembly; 41. Groove structure; 42. Fixed groove structure; 43. Connecting block; 44. Sliding block; 45. Rotating frame; 46. Connecting structure; 5. Forming clamping assembly; 51. Forming frame; 52. Clamping block; 53. Fixed block structure. Detailed Implementation

[0021] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0022] Please refer to the following: Figure 1 , Figure 2 , Figure 3 , Figure 4 and Figure 5 ,in, Figure 1 A schematic diagram of a preferred embodiment of a molding structure for processing lotus root cakes provided by this utility model; Figure 2 for Figure 1 The diagram shows the structure of the elastic positioning component. Figure 3 for Figure 1 The diagram shows the structure of the groove-limiting structure. Figure 4 for Figure 1 The diagram shows the structural schematic of the adjustment structure. Figure 5 for Figure 1 The diagram shows the structural schematic of the forming frame. A forming structure for processing lotus root cakes includes: a support and storage component 1, a fine-tuning and pushing component 2, and a forming and clamping component 5. The fine-tuning and pushing component 2 is connected inside the support and storage component 1. An elastic positioning component 3 is installed at the bottom of the fine-tuning and pushing component 2. The elastic positioning component 3 is used for elastic support of the forming and clamping component 5. An adaptive positioning component 4 is installed on the inner wall of the elastic positioning component 3. The adaptive positioning component 4 is used for structural positioning of the forming and clamping component 5.

[0023] The supporting material storage assembly 1 includes a supporting base 11. The supporting base 11 has an observation structure 12 on its side. The observation structure 12 is used to observe the internal structure of the supporting base 11. Fixed handles 13 are installed at the top of both ends of the supporting base 11. Limiting groove structures 14 are opened on the inner walls of both ends of the supporting base 11. The limiting groove structures 14 are used to fine-tune the structural positioning of the pushing assembly 2.

[0024] During use, the supporting storage component 1 can provide stable installation conditions for the internal structure to prevent structural loosening and deviation during use, and the limiting groove structure 14 opened at both ends can provide accurate guidance for the internal structure.

[0025] The supporting storage component 1 includes, but is not limited to, a frame-type supporting structure and a detachable storage structure; in this embodiment, the supporting storage component 1 is preferably a detachable storage structure.

[0026] The fine-tuning push component 2 includes an adjustment structure 21, a push support structure 22 installed at the bottom of the adjustment structure 21, the push support structure 22 being used for pushing the material of the forming clamping component 5, a limiting structure 23 being installed on the inner wall of the push support structure 22, the limiting structure 23 being used for limiting the rotation of the adjustment structure 21, and a limiting block structure 24 being installed at both ends of the push support structure 22, the limiting block structure 24 being used for structural limiting of the push support structure 22.

[0027] When pushing the internal structure, the middle adjustment structure 21 can be rotated first. With the threaded connection on the inner wall, the pushing support structure 22 will slide stably and accurately to the position of the structure. The limiting structure 23 on the inner wall can limit the adjustment structure 21 and reduce the deviation of the structure.

[0028] Among them, the fine-tuning push component 2 includes, but is not limited to, a screw fine-tuning structure and a pneumatic push rod fine-tuning structure; in this embodiment, the fine-tuning push component 2 is preferably a screw fine-tuning structure.

[0029] The elastic positioning component 3 includes a positioning plate 31. Elastic buffers 32 are installed on the inner walls of both ends of the positioning plate 31. The elastic buffers 32 are used for elastic buffering of the positioning plate 31. Elastic supports 33 are installed on the inner walls of both ends of the positioning plate 31. Friction positioning structures 34 are installed on the side ends of the elastic supports 33. The friction positioning structures 34 are used for structural positioning of the adaptive positioning component 4.

[0030] When the internal structure is finely adjusted and pushed, the positioning plate 31 on the inner wall will be subjected to elastic deformation of the elastic buffer 32 to reduce the loosening of the structure caused by rigid contact. In addition, the friction positioning structure 34 at both ends of the inner wall will perform friction positioning of the adaptive positioning component 4 to reduce the loosening of the structure and facilitate the installation and disassembly of the structure in the later stage.

[0031] Among them, the elastic positioning component 3 includes, but is not limited to, spring-type positioning components and silicone-type positioning components; in this embodiment, the elastic positioning component 3 is preferably a spring-type positioning component.

[0032] The adaptive positioning component 4 includes a groove structure 41, a connecting block 43, and a sliding block 44. The groove structure 41 has fixed groove structures 42 at both ends. The sliding block 44 slides on the inner walls at both ends of the groove structure 41. A rotating frame 45 is installed on the side of the connecting block 43 and the sliding block 44. A connecting structure 46 is rotatably connected to the side of the rotating frame 45. The connecting structure 46 is used for the rotatable connection between the connecting block 43 and the sliding block 44.

[0033] When the bottom forming clamping component 5 is structurally positioned, the middle connecting block 43 shrinks under the upward push of the forming clamping component 5. Then, the connecting structure 46 with rotational function at both ends will make the sliding block 44 slide along the inner wall of the groove structure 41. When it is continuously pushed upward, the sliding blocks 44 at both ends will position the internal structure of the forming clamping component 5 into the fixed groove structure 42 to perform the convenient positioning operation of the structure.

[0034] The adaptive positioning component 4 includes, but is not limited to, a magnetic guide positioning component and a mechanical slider positioning component; in this embodiment, the adaptive positioning component 4 is preferably a mechanical slider positioning component.

[0035] The forming clamping assembly 5 includes a forming frame 51, with clamping blocks 52 sliding on the inner walls at both ends of the forming frame 51, and a fixing block structure 53 installed on the side end of the clamping block 52, the fixing block structure 53 being used for structural positioning of the forming frame 51.

[0036] To improve the ease of use of the entire structure, the clamping block 52 can be positioned inside the elastic positioning component 3 first, and under the structural constraints of the adaptive positioning component 4, the fixing block structure 53 can be accurately clamped inside the adaptive positioning component 4, so as to facilitate the use of the structure and make it easier to install and disassemble later.

[0037] The forming clamping component 5 includes, but is not limited to, an eccentric wheel clamping structure and a mechanical slider clamping structure; in this embodiment, the forming clamping component 5 preferably has a mechanical slider clamping structure.

[0038] The working principle of the molding structure for processing lotus root cakes provided by this utility model is as follows:

[0039] During use, the forming structure is first installed and fixed according to processing requirements. At this time, the forming clamping component 5 can be pre-positioned on the inner wall of the elastic positioning component 3 at the bottom. Then, the entire forming clamping component 5 is pushed upward. When the structure is pushed upward, the self-adaptive positioning component 4 at the top will limit the structure of the forming clamping component 5, and the elastic positioning component 3 will perform friction positioning of the self-adaptive positioning component 4 to ensure the accuracy of the structure of the forming clamping component 5. After installation, the outer lotus root cake can be placed on the inner wall of the forming clamping component 5, and the forming clamping component 5 can be pushed and shaped by adjusting the fine-tuning push component 2 in the middle to facilitate the user's processing and shaping of lotus root cake for frying or other processes.

[0040] Compared with related technologies, the forming structure for processing lotus root cakes provided by this utility model has the following characteristics:

[0041] Beneficial effects:

[0042] To enhance the flexibility of the structure during use, the adaptive positioning component 4 and the forming clamping component 5 work together to automatically and adaptively position and clamp the structure according to the position of the forming clamping component 5. This eliminates the need for manual calibration, allowing users to easily install and replace the structure according to different lotus root cake shapes and sizes, thus improving the overall practicality of the structure. Simultaneously, during the pushing and conveying of the lotus root cake, the elastic positioning component 3 absorbs instantaneous impact through deformation, distributing the thrust evenly across the surface of the lotus root cake. This prevents the internal structure from becoming loose during forming. Furthermore, as the structure is continuously pushed, the internal forming clamping component 5 provides structural constraint and positioning, ensuring the stability and convenience of structural changes.

[0043] The above description is merely an embodiment of this utility model and does not limit the patent scope of this utility model. Any equivalent structural or procedural transformations made based on the content of this utility model specification and drawings, or direct or indirect applications in other related technical fields, are similarly included within the patent protection scope of this utility model.

Claims

1. A forming structure for processing lotus root cakes, characterized in that, include: The assembly includes a material storage component, a fine-tuning and pushing component, and a forming and clamping component. The fine-tuning and pushing component is connected inside the material storage component. An elastic positioning component is installed at the bottom of the fine-tuning and pushing component. The elastic positioning component is used for elastic support of the forming and clamping component. An adaptive positioning component is installed on the inner wall of the elastic positioning component. The adaptive positioning component is used for structural positioning of the forming and clamping component.

2. The forming structure for processing lotus root cakes according to claim 1, characterized in that, The supporting material storage assembly includes a supporting base, an observation structure on the side of the supporting base for observing the internal structure of the supporting base, fixed handles installed at the top of both ends of the supporting base, and a limiting groove structure opened on the inner wall of both ends of the supporting base for fine-tuning the structural limit of the pushing assembly.

3. The forming structure for processing lotus root cakes according to claim 1, characterized in that, The fine-tuning push component includes an adjustment structure, a push support structure installed at the bottom of the adjustment structure, the push support structure being used for pushing material of the forming clamping component, a limit structure installed on the inner wall of the push support structure, the limit structure being used for limiting the rotation of the adjustment structure, and limit block structures installed at both ends of the push support structure, the limit block structures being used for limiting the structure of the push support structure.

4. The forming structure for processing lotus root cakes according to claim 1, characterized in that, The elastic positioning component includes a positioning plate, with elastic buffers installed on the inner walls at both ends of the positioning plate for elastic buffering of the positioning plate. Elastic support members are installed on the inner walls at both ends of the positioning plate, and friction positioning structures are installed on the side ends of the elastic support members for structural positioning of the adaptive positioning component.

5. The forming structure for processing lotus root cakes according to claim 1, characterized in that, The adaptive positioning component includes a groove structure, a connecting block, and a sliding block. The groove structure has fixed grooves at both ends. The sliding block slides on the inner walls at both ends of the groove structure. Rotating frames are installed on the sides of the connecting block and the sliding block. A connecting structure is rotatably connected to the side of the rotating frame. The connecting structure is used for the rotatable connection between the connecting block and the sliding block.

6. The forming structure for processing lotus root cakes according to claim 1, characterized in that, The forming clamping assembly includes a forming frame, with clamping blocks sliding on the inner walls at both ends of the forming frame, and a fixing block structure installed on the side end of the clamping block, the fixing block structure being used for structural positioning of the forming frame.