Lifting type strip-shaped food winding forming mechanism

By using a lifting-type strip food winding and forming mechanism, and utilizing the design of a central rotating plate and floating blocks, the automatic rolling and forming of lollipops is achieved, solving the problem of low efficiency of manual operation in existing technologies and realizing highly efficient automated production.

CN223900159UActive Publication Date: 2026-02-13江苏海特尔机械有限公司
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Patent Information

Application Number
CN202520501851.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-21
Publication Date
2026-02-13
Estimated Expiration
2035-03-21

AI Technical Summary

Technical Problem

The existing lollipop rolling and shaping process requires manual operation, resulting in low production efficiency and making it difficult to achieve convenient, efficient, and intelligent industrial production.

Method used

A lifting strip food winding forming mechanism was designed, including a lower positioning plate, an upper positioning plate, a middle rotating plate, a backing plate, a top support ring, and a floating curling mechanism. The middle rotating plate drives the rotating ring and the insertion pin to achieve automatic curling and forming, and the height difference between the floating block and the arc section is used to achieve automatic material removal of the insertion pin.

Benefits of technology

It has enabled the automatic rolling process of lollipops, improved production efficiency, and achieved convenient and efficient automated production.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a lifting type strip-shaped food winding forming mechanism which comprises a lower positioning disc, an upper positioning disc, a middle rotating plate, an abutting plate, a top supporting ring and a floating curling mechanism. The middle rotating plate can drive the multiple floating blocks to rotate around the top supporting ring, the floating blocks move downwards when passing through the low-arc-surface section in an abutting mode and drive the inserting needles to press downwards to be connected with the strip-shaped food in an inserted mode, and at the moment, the strip-shaped food is connected in an inserted mode through pressing elastic force operation of the pressing springs. After the strip-shaped food abuts against the inner side of the abutting plate to be curled and formed, the floating block moves upwards when moving to pass through the high-arc-surface section in an abutting mode, the floating block drives the lifting rotating rod and the inserting-connecting needle to move upwards, and therefore the inserting-connecting needle can be separated from the food to achieve stripping. Food at the lower end of the inserting needle can automatically fall off and be separated through blocking of the sealing baffle, so that stripping and separation are facilitated, and processing is rapid and efficient.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to the field of food industrial processing and intelligent manufacturing equipment, especially relates to a lifting type strip-shaped food winding forming mechanism. BACKGROUND

[0002] At present, the processing of food is increasingly rising, and the high-end processing equipment in the field of food is also rising, and the industrialization and intelligentization of food processing are increasing day by day. The existing food processing is various, among which lollipops are deeply loved by consumers. Lollipop is a kind of food made of sugar materials, and its sweet taste is loved by people. The main material is made of mixed cane sugar and syrup, and other seasonings are added for processing. At present, lollipops are various, some are poured and shaped, and some are pressed and shaped. However, the lollipop with the structure of the strip-shaped food is curled at present, which has the structure of the strip-shaped food. The lollipop with the structure has the strip-shaped curling form, and the appearance is loved by consumers. Therefore, the lollipop with the structure has great market prospect. At present, the structure of the lollipop curled by the strip-shaped food is relatively complicated, and manual processing is needed through manpower, or a rotating device structure is needed, but the production efficiency is low. Therefore, a structure suitable for the strip-shaped food to curl into a lollipop needs to be developed to realize convenient, efficient, intelligent and industrialized production mode. SUMMARY

[0003] In view of the above-mentioned deficiencies of the prior art, the utility model solves the problem of providing a lifting type strip-shaped food winding forming mechanism which is convenient and efficient for operation and is industrialized and intelligent.

[0004] To solve the above problems, the technical scheme adopted by the utility model is as follows:

[0005] The utility model provides a lifting type strip food winding forming mechanism, including lower positioning disc, upper positioning disc, intermediate rotating plate, abutting plate, top support ring, floating curling mechanism, the upper side of lower positioning disc installs upper positioning disc, the upper end one side of lower positioning disc installs abutting plate, the upper end all around of upper positioning disc installs a top support ring, the upper end surface of top support ring includes low cambered surface section and high cambered surface section, rotates and installs an intermediate rotating plate between lower positioning disc and upper positioning disc, the all around of intermediate rotating plate evenly installs a plurality of floating curling mechanism, floating curling mechanism includes fixed sleeve, rotating ring body, lift rotary lever, plug-in needle, down spring, floating block, the all around of intermediate rotating plate evenly inserts fixed sleeve, inserts a lift rotary lever on fixed sleeve, installs a plurality of plug-in needles on the downside of lift rotary lever, and plug-in needle lower end extends to the outside of fixed sleeve's lower end and is located above the side of lower positioning disc, installs floating block on the upper end of lift rotary lever, installs a plurality of down springs on the all around of intermediate rotating plate, and down spring corresponds to press down a floating block respectively, the back side of floating block is in contact with the upper end surface of top support ring's upside, rotating ring body is installed to the upper all around of lift rotary lever, and the all around side of upper positioning disc evenly contacts a plurality of rotating ring bodies, the intermediate rotating plate drives a plurality of rotating ring bodies to revolve around upper positioning disc synchronously, a plurality of rotating ring bodies revolve around upper positioning disc synchronously, and rotating ring body will press down upper positioning disc and rotate, rotating ring body rotates and drives lift rotary lever and plug-in needle to rotate, and plug-in needle inserts strip food and presses down the inside of abutting plate and forms curling, the intermediate rotating plate drives a plurality of floating blocks and rotates around top support ring, and floating block is in contact with low cambered surface section and moves downward and inserts strip food, and floating block is in contact with high cambered surface section and moves upward and drives lift rotary lever and plug-in needle to move upward, so that plug-in needle is separated from food.

[0006] Further, the floating curling mechanism further comprises a positioning column and a floating sleeve; the intermediate rotating plate is uniformly provided with a plurality of positioning columns around; the upper portion of the positioning column is sleeved with a down spring; the lower portion of the positioning column is sleeved with a floating sleeve; the lower end of the down spring is downwardly pressed against the floating sleeve; one side of the floating sleeve is connected with the floating block.

[0007] Further, the back side of the floating block is provided with a pressing protrusion; the lower side of the pressing protrusion is in contact with the upper side of the top support ring; the height of the pressing protrusion decreases when passing through the low cambered surface section; the height of the pressing protrusion increases when passing through the high cambered surface section.

[0008] Further, the floating curling mechanism further comprises an inner rotating drum, the inner rotating drum is rotatably connected to the fixed sleeve, the upper and lower ends of the inner rotating drum extend to the outside of the upper and lower ends of the fixed sleeve respectively, the rotating ring body is installed around the upper end of the inner rotating drum, the lifting rotating rod is slidably connected in the inner rotating drum, and the lifting rotating rod and the inner rotating drum rotate synchronously, the lower end of the inner rotating drum is provided with a closed baffle, and the insertion needle is connected to the closed baffle, and the food at the lower end of the insertion needle falls off by being blocked by the closed baffle.

[0009] Further, the inner rotating drum is provided with longitudinal clamping grooves on both sides of the inner rotating drum.

[0010] Further, the height of the high-camber section is greater than that of the low-camber section.

[0011] Further, the upper end of the positioning column is provided with a limiting plate, the upper end of the pressing spring is abutted against the limiting plate, and the limiting plate is fixed to the middle rotating plate through the connecting rod.

[0012] Further, the middle rotating plate is provided with gear engagement connection structures around the outer side of the middle rotating plate and the plurality of rotating ring bodies.

[0013] Further, the abutting plate is in an arc-shaped structure.

[0014] Further, the lower positioning disc is provided with a bottom frame below the lower positioning disc, the lower positioning disc is fixedly installed on the bottom frame, a driving sleeve is rotatably connected in the middle of the lower positioning disc, the driving sleeve is hollow, the upper end of the driving sleeve is rotatably connected to the middle of the middle rotating plate, a positioning sleeve is rotatably connected between the inside of the driving sleeve and the middle of the middle rotating plate, the upper and lower ends of the positioning sleeve are fixedly connected between the upper positioning disc and the bottom frame respectively, and the driving sleeve is provided with a chain wheel driving disc around the lower end of the driving sleeve.

[0015] The utility model discloses the following beneficial effects:

[0016] This invention utilizes a central rotating plate to drive multiple rotating rings to revolve synchronously around an upper positioning disk. Simultaneously, these rings rotate against the disk, causing them to abut against it. This rotation of the rings also drives a lifting rotating rod and a connecting pin to rotate. The connecting pin then inserts the strip-shaped food into the inner side of the abutment plate, curling it into shape, thus achieving automatic curling processing. The central rotating plate also drives multiple floating blocks to rotate around a top support ring. When the floating blocks abut against the low-arc section, they move downwards, causing the connecting pin to press down and insert the strip-shaped food. The downward pressure of the spring then engages the insertion. After the food is curled against the inner side of the abutment plate, the floating blocks move upwards when they abut against the high-arc section. This upward movement of the floating blocks drives the lifting rotating rod and the connecting pin, causing the connecting pin to separate from the food, thus releasing it. The food at the lower end of the connecting pin automatically falls off due to the obstruction of a closed baffle, achieving convenient and efficient food removal. Attached Figure Description

[0017] Fig. 1 This is a schematic diagram of the structure of this utility model.

[0018] Fig. 2 This is a schematic diagram of the structure of this utility model without the top support ring.

[0019] Fig. 3 This is a schematic diagram of the floating curling mechanism of this utility model.

[0020] Fig. 4 This is a longitudinal sectional view of the floating curling mechanism of this utility model.

[0021] Fig. 5 This is a structural diagram of the lower positioning plate, upper positioning plate, middle rotating plate, and top frame of this utility model.

[0022] Fig. 6 This is an enlarged longitudinal sectional view showing the contact between the rear pressing protrusion of the floating block and the upper side of the top support ring. Detailed Implementation

[0023] The present invention will now be described in further detail with reference to the accompanying drawings.

[0024] like Figs. 1 to 6As shown, a lifting-type strip food winding forming mechanism includes a lower positioning plate 1, an upper positioning plate 2, a middle rotating plate 3, a backing plate 4, a top support ring 5, and a floating winding mechanism 6; the upper positioning plate 2 is installed above the lower positioning plate 1; the backing plate 4 is installed on one side of the upper end of the lower positioning plate 1; a top support ring 5 is installed around the upper end of the upper positioning plate 2; the upper surface of the top support ring 5 includes a low arc section 51 and a high arc section 52; a middle rotating plate 3 is rotatably installed between the lower positioning plate 1 and the upper positioning plate 2; Multiple floating curling mechanisms 6 are evenly installed around the perimeter of the intermediate rotating plate 3. Each floating curling mechanism 6 includes a fixed sleeve 61, a rotating ring 62, a lifting rotating rod 63, insertion pins 64, a downward pressure spring 65, and a floating block 66. Multiple fixed sleeves 61 are evenly inserted and fixed around the perimeter of the intermediate rotating plate 3. A lifting rotating rod 63 is inserted through each fixed sleeve 61. Multiple insertion pins 64 are installed on the lower side of the lifting rotating rod 63. The lower ends of the insertion pins 64 extend to the lower end of the fixed sleeve 61 and are located above the side of the lower positioning plate 1. The upper end of the lifting rotating rod 63... A floating block 66 is installed, and multiple downward pressure springs 65 are evenly installed around the central rotating plate 3. Each downward pressure spring 65 presses down on a floating block 66. The rear side of the floating block 66 abuts against the upper surface of the top support ring 5. A rotating ring 62 is installed around the upper part of the lifting rotating rod 63, and multiple rotating rings 62 are evenly abutted against the sides of the upper positioning plate 2. The central rotating plate 3 drives the multiple rotating rings 62 to revolve synchronously around the upper positioning plate 2. While the multiple rotating rings 62 revolve synchronously around the upper positioning plate 2, the rotating rings 62 abut against the support ring 5. The upper positioning plate 2 rotates, causing the rotating ring 62 to rotate and drive the lifting rotating rod 63 and the insertion pin 64 to rotate. The insertion pin 64 inserts into the strip-shaped food and abuts against the inner side of the abutment plate 4 to curl and form it. The middle rotating plate 3 drives multiple floating blocks 66 to rotate around the top support ring 5. When the floating block 66 abuts against the low arc surface section 51, it moves downward and inserts the strip-shaped food. When the floating block 66 abuts against the high arc surface section 52, it moves upward and drives the lifting rotating rod 63 and the insertion pin 64 to move upward, so that the insertion pin 64 separates from the food. The strip-shaped food is sequentially fed into the designated area of ​​the lower positioning plate 1 by an external conveying device. This area is located directly below the insertion pin 64 so that the insertion pin 64 can insert the strip-shaped food downward.

[0025] like Figs. 1 to 6 As shown, in order to facilitate the floating block 66 to be subjected to the downward pressure of the compression spring 65, the floating curling mechanism 6 further includes a positioning post 67 and a floating sleeve 68; a plurality of positioning posts 67 are evenly installed around the central rotating plate 3; a compression spring 65 is sleeved on the upper part of the positioning post 67; the floating sleeve 68 is sleeved on the lower part of the positioning post 67; the lower end of the compression spring 65 presses downward against the floating sleeve 68; the floating block 66 is connected to one side of the floating sleeve 68.

[0026] As Figs. 1 to 6 shown in the figure, in order to float block 66 can automatically lead to the floating up and down rotating rod 63 and plug needle 64, further, the rear side of the floating block 66 is provided with a pressing block 661; the lower side of the pressing block 661 abuts against the upper side of the top support ring 5, the pressing block 661 descends in height when passing through the low camber section 51, and the pressing block 661 rises in height when passing through the high camber section 52.

[0027] As Figs. 1 to 6 shown in the figure, in order to rotate ring body 62 can lead to the rotation of the lifting rotating rod 63, at the same time, the rotating ring body 62 stably engages with the upper positioning disc 2, further, the floating curling mechanism 6 further comprises an inner rotating cylinder 69; the inner rotating cylinder 69 is rotatably connected and installed on the fixed sleeve 61, and can be assembled through a bearing, the upper and lower ends of the inner rotating cylinder 69 extend to the outside of the upper and lower ends of the fixed sleeve 61 respectively; the rotating ring body 62 is installed around the upper end of the inner rotating cylinder 69; the lifting rotating rod 63 is slidably connected in the inner rotating cylinder 69, and the lifting rotating rod 63 and the inner rotating cylinder 69 rotate synchronously; the lower end of the inner rotating cylinder 69 is provided with a closed baffle 691; the plug needle 64 penetrates the closed baffle 691, and the food at the lower end of the plug needle 64 falls off by being blocked by the closed baffle 691. Further, the inner sides of the inner rotating cylinder 69 are respectively provided with longitudinal clamping grooves 692; the lower sides of the lifting rotating rod 63 are slidably connected to the longitudinal clamping grooves 692 through the clamping protrusions 631.

[0028] As Figs. 1 to 6 shown in the figure, in order to stably float, further, the height of the high camber section 52 is greater than that of the low camber section 51.

[0029] As Figs. 1 to 6 shown in the figure, in order to stably install the pressing spring 65, further, the upper end of the positioning column 67 is provided with a limiting plate 671, the upper end of the pressing spring 65 abuts against the limiting plate 671, and the limiting plate 671 is fixed to the intermediate rotating plate 3 through a connecting rod 672. Further, the outer sides of the intermediate rotating plate 3 and the plurality of rotating ring bodies 62 are connected in a gear engagement structure. Further, the abutting plate 4 is in an arc structure.

[0030] As Figs. 1 to 6As shown, in order to position the lower disc 1, the upper disc 2, the middle rotating plate 3 stable assembly, further, the lower disc 1 below the bottom frame 7 is equipped with, the lower disc 1 is fixedly installed on the bottom frame 7;The lower disc 1 is rotatably connected with the driving sleeve 71, the driving sleeve 71 is hollow, the upper end of the driving sleeve 71 is fixedly connected with the middle of the middle rotating plate 3, the inside of the driving sleeve 71 and the middle of the middle rotating plate 3 are rotatably connected with the positioning sleeve 72, and the upper and lower ends of the positioning sleeve 72 are fixedly connected between the upper disc 2 and the bottom frame 7.The lower end of the driving sleeve 71 is provided with a chain wheel driving disc 711.

[0031] The utility model discloses a middle rotating plate 3 drive multiple rotating ring body 62 around the upper disc 2 synchronous revolution, multiple rotating ring body 62 around the upper disc 2 synchronous revolution, rotating ring body 62 will resist the upper disc 2 and rotate, rotating ring body 62 rotates and drives lifting rotary rod 63 and insert needle 64 rotation, so that insert needle 64 inserts the strip-shaped food and resists the inside of the abutting plate 4 and is curled into shape, realizes automatic curling processing;The middle rotating plate 3 will drive multiple floating blocks 66 to rotate around the top support ring 5, and the floating block 66 moves downward and drives the insert needle 64 to press down the strip-shaped food when passing through the low cam section 51, so that the strip-shaped food is inserted, and when the strip-shaped food is curled into shape against the inside of the abutting plate 4, when the floating block 66 moves and passes through the high cam section 52, it will move upward, and the floating block 66 drives the lifting rotary rod 63 and the insert needle 64 to move upward, so that the insert needle 64 will be separated from the food to realize material separation, and the food at the lower end of the insert needle 64 will automatically fall off and separate by the blocking of the closed baffle, so that convenient material separation is realized, and processing is fast and efficient.

[0032] The above only for the preferred embodiment of the utility model has been described, and does not limit the utility model, and any modification, equivalent replacement, improvement etc. that is made within the spirit and principle of the utility model should be included in the protection scope of the utility model.

Claims

1. A lift-type strip food coiling forming mechanism, characterized by, The utility model provides a kind of floating curling mechanism for strip food, including lower positioning disc, upper positioning disc, intermediate rotating plate, abutting plate, top support ring;Upper positioning disc is installed above lower positioning disc;Abutting plate is installed on the upper end of one side of lower positioning disc;One top support ring is installed on the upper end of four around upper positioning disc;The upper end surface of top support ring includes low camber section and high camber section;Intermediate rotating plate is rotatably installed between lower positioning disc and upper positioning disc;Multiple floating curling mechanisms are evenly installed on the four around intermediate rotating plate;Floating curling mechanism includes fixed sleeve, rotating ring body, lifting rotary rod, plug-in needle, down spring, floating block;Multiple fixed sleeves are fixedly connected on the four around intermediate rotating plate, one lifting rotary rod is connected on the fixed sleeve, multiple plug-in needles are installed on the lower side of lifting rotary rod, plug-in needle lower end extends to the lower end outside of fixed sleeve and is located on the side of lower positioning disc, floating block is installed on the upper end of lifting rotary rod, multiple down springs are evenly installed on the four around intermediate rotating plate, down spring corresponds to press down one floating block respectively, the rear side of floating block is abutted on the upper end surface of top support ring, rotating ring body is installed on the upper four around lifting rotary rod, upper positioning disc is abutted on the four around side of multiple rotating ring bodies;Intermediate rotating plate drives multiple rotating ring bodies to revolve around upper positioning disc synchronously, while multiple rotating ring bodies revolve around upper positioning disc synchronously, rotating ring body is abutted on upper positioning disc and rotates, rotating ring body rotates and drives lifting rotary rod and plug-in needle to rotate, plug-in needle is inserted into strip food and is abutted on the inner side of abutting plate to be curled into shape;Intermediate rotating plate drives multiple floating blocks to rotate around top support ring, floating block is abutted on low camber section and moves downward and inserts strip food, floating block is abutted on high camber section and moves upward and drives lifting rotary rod and plug-in needle to move upward, so that plug-in needle is separated from food;The rear side of floating block is provided with a pressing protrusion;The lower side of pressing protrusion is abutted on the upper side of top support ring, the height of pressing protrusion decreases when passing through low camber section, the height of pressing protrusion increases when passing through high camber section;The four around outer side of intermediate rotating plate and multiple rotating ring bodies are gear meshing connection structure.

2. The lift-and-soop bar-forming mechanism according to claim 1, wherein The floating curling mechanism further includes positioning column and floating sleeve;Multiple positioning columns are evenly installed on the four around intermediate rotating plate;The upper part of positioning column is sleeved with a down spring;The lower part of positioning column is sleeved with a floating sleeve;The lower end of down spring is downwardly pressed against floating sleeve;One side of floating sleeve is connected with floating block.

3. The lift-and-soop bar-forming mechanism according to claim 1, wherein The floating curling mechanism further includes built-in rotating cylinder;The built-in rotating cylinder is rotatably connected with the fixed sleeve, and the upper and lower ends of the built-in rotating cylinder extend outside the upper and lower ends of the fixed sleeve respectively;The rotating ring body is installed on the upper four around the built-in rotating cylinder;The lifting rotary rod is slidably connected in the built-in rotating cylinder, and the lifting rotary rod and the built-in rotating cylinder rotate synchronously;The lower end of the built-in rotating cylinder is provided with a closed baffle;The plug-in needle is connected with the closed baffle, and the food at the lower end of the plug-in needle falls off by the blocking of the closed baffle when the plug-in needle moves upward.

4. The lift-and-soop bar-forming mechanism according to claim 3, wherein The inner part of the built-in rotating drum is provided with longitudinal clamping slots on both sides respectively; the lower part of the lifting rotating rod is slidably clamped on the longitudinal clamping slots through clamping protrusions.

5. The lift-and-soop bar-forming mechanism of claim 1 wherein, The height of the high-camber section is greater than the height of the low-camber section.

6. The lift-and-soop bar-forming mechanism according to claim 2, wherein The upper end of the positioning column is provided with a limiting plate, the upper end of the pressing spring abuts against the limiting plate, and the limiting plate is fixed to the middle rotating plate through a connecting rod.

7. The lift-and-soop bar-forming mechanism of claim 1 wherein, The abutting plate is in an arc structure.

8. The lift-and-soop bar food coiling mechanism of claim 1, wherein, The lower positioning disc is provided with a bottom frame below, and is fixedly installed on the bottom frame; a driving sleeve is rotatably penetrated in the middle of the lower positioning disc, the driving sleeve is hollow inside, the upper end of the driving sleeve is fixedly penetrated in the middle of the middle rotating plate, a positioning sleeve is penetrated in the middle of the driving sleeve and the middle rotating plate, the upper and lower ends of the positioning sleeve are fixedly connected between the upper positioning disc and the bottom frame respectively, and the lower end of the driving sleeve is provided with a chain wheel driving disc around.