Circumferential automatic floating type strip-shaped food processing mechanism
By designing a circumferential automatic floating bar food processing mechanism, and using the intermediate rotating plate to drive the rotating ring body and floating block for synchronous rotation, the automatic curling processing and material removal of bar food is achieved, solving the problem of inefficiency in the existing technology, and achieving an efficient and intelligent production model.
Patent Information
- Application Number
- CN202510337719.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-21
- Publication Date
- 2025-05-06
AI Technical Summary
In the prior art, the curling processing of strip foods performed by manpower or rotary devices is low in efficiency, making it difficult to achieve a convenient, efficient, intelligent and industrialized production model.
A circumferential automatic floating bar food processing mechanism is designed, including a lower positioning disk, an upper positioning disk, an intermediate rotating plate, abutment plate, a top support ring and a floating curling mechanism. The intermediate rotating plate drives the rotating ring body and the floating block to rotate synchronously, achieving automatic curling and material removal.
Automatic curling and material removal of bar food is realized, production efficiency is improved, operation is simplified, and a convenient, efficient, intelligent and industrialized production model is realized.
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Figure CN119924403A_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the field of food industrial processing and intelligent manufacturing equipment, and in particular relates to a circumferentially automatic floating strip food processing mechanism. Background Art
[0002] At present, food processing is becoming increasingly popular, and high-end processing equipment in the food field is also emerging, and the requirements for industrialization and intelligence of food processing are increasing day by day; the existing food processing is diverse, among which lollipops are deeply loved by consumers; lollipops are a kind of food made of sugar materials, and their sweet taste is deeply loved by people. The main ingredients are made by mixing sucrose and syrup, and other condiments are added for processing. Now there are many kinds of lollipops, some are cast and some are pressed, but now there is a kind of lollipop that is a structure formed by curling strip food. The lollipop of this structure has a strip-shaped curled shape, and its appearance is deeply loved by consumers. For this reason, the lollipop of this structure has a great market prospect. The structure of the lollipop formed by curling strip food is now complicated, and it needs to be manually processed by manpower, or through a rotating device structure, but the production efficiency is low. For this reason, it is necessary to develop a structure suitable for curling strip food into lollipops to achieve a convenient, efficient, intelligent and industrialized production model. Summary of the invention
[0003] In view of the above-mentioned deficiencies in the prior art, the present invention solves the problem of providing a circumferentially automatic floating strip food processing mechanism which is convenient, efficient, and capable of industrialized and intelligent processing.
[0004] To solve the above problems, the technical solution adopted by the present invention is as follows: The lifting of the ... The top of the lifting plate is equipped with a plurality of springs, and the springs are respectively pressed against the upper and lower surfaces of the lifting and lowering plates, and the upper and lower surfaces of the lifting and lowering plates are respectively pressed against the upper and lower surfaces of the lifting and lowering plates.
[0005] Furthermore, the floating curling mechanism also includes a positioning column and a floating sleeve; a plurality of positioning columns are evenly installed around the middle rotating plate; the upper part of the positioning column is sleeved with a downward pressure spring; the lower part of the positioning column is sleeved with the floating sleeve; the lower end of the downward pressure spring presses the floating sleeve downward; one side of the floating sleeve is connected to the floating block.
[0006] Furthermore, a pressing protrusion is provided on the rear side of the floating block; the lower side of the pressing protrusion abuts against the upper side of the top support ring, the pressing protrusion decreases in height when passing through the low arc section, and increases in height when passing through the high arc section.
[0007] Furthermore, the floating curling mechanism also includes a built-in rotating drum; the built-in rotating drum is rotatably clamped and installed on the fixed sleeve, and the upper and lower ends of the built-in 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 built-in rotating drum; the lifting and rotating rod slides up and down and is clamped in the built-in rotating drum, and the lifting and rotating rod and the built-in rotating drum rotate synchronously; a closed baffle is provided at the lower end of the built-in rotating drum; the plug-in needle is connected to the closed baffle, and the plug-in needle moves upward, and the food at the lower end of the plug-in needle falls and detaches through the obstruction of the closed baffle.
[0008] Furthermore, longitudinal slots are respectively provided on both sides of the interior of the built-in rotating cylinder; and both sides of the lower part of the lifting and rotating rod are slidably engaged with the longitudinal slots by means of locking protrusions.
[0009] Furthermore, the height of the high-arc section is greater than the height of the low-arc section.
[0010] Furthermore, a limit plate is provided at the upper end of the positioning column, the upper end of the downward pressure spring abuts against the limit plate, and the limit plate is fixed to the middle rotating plate through a connecting rod.
[0011] Furthermore, the abutment structure between the outer sides of the middle rotating plate and the plurality of rotating ring bodies is a gear meshing connection structure.
[0012] Furthermore, the abutting plate is in an arc-shaped structure.
[0013] Furthermore, a bottom frame is provided below the lower positioning plate, and the lower positioning plate is fixedly mounted on the bottom frame; a driving sleeve is rotatably inserted in the middle of the lower positioning plate, the interior of the driving sleeve is hollow, and the upper end of the driving sleeve is fixed in the middle of the middle rotating plate, and a positioning sleeve is inserted in the interior of the driving sleeve and the middle of the middle rotating plate, and the upper and lower ends of the positioning sleeve are respectively fixedly connected between the upper positioning plate and the bottom frame; a sprocket driving plate is provided around the lower end of the driving sleeve.
[0014] The beneficial effects of the present invention are as follows: The invention drives a plurality of rotating ring bodies to synchronously revolve around the upper positioning plate through the intermediate rotating plate. While the plurality of rotating ring bodies synchronously revolve around the upper positioning plate, the rotating ring bodies abut against the upper positioning plate to rotate. The rotating ring bodies rotate and drive the lifting rotating rod and the plugging needle to rotate, so that the plugging needle plugs the strip food and abuts against the inner side of the abutting plate to curl and form, thereby realizing automatic curling processing; the intermediate rotating plate of the invention drives a plurality of floating blocks to rotate around the top supporting ring, and the floating blocks move downward when abutting against the low arc surface section and drive the plugging needle to press down and plug the strip food. At this time, the strip food is plugged in by the downward elastic force of the downward pressure spring. After the strip food abuts against the inner side of the abutting plate to curl and form, when the floating block moves and abuts against the high arc surface section, it will move upward, and the floating block drives the lifting rotating rod and the plugging needle to move upward, so that the plugging needle will be separated from the food to realize stripping, and the food at the lower end of the plugging needle will automatically fall and detach through the obstruction of the closed baffle plate, thus realizing convenient stripping and separation, and fast and efficient processing. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 It is a structural schematic diagram of the present invention.
[0016] Figure 2 This is a schematic diagram of the structure of the present invention without the top support ring.
[0017] Figure 3 It is a structural schematic diagram of the floating curling mechanism of the present invention.
[0018] Figure 4 It is a schematic diagram of the longitudinal cross-sectional structure of the floating curling mechanism of the present invention.
[0019] Figure 5 It is a structural schematic diagram of the lower positioning plate, the upper positioning plate, the middle rotating plate and the top frame of the present invention.
[0020] Figure 6 It is an enlarged longitudinal cross-sectional view of the abutment protrusion on the rear side of the floating block of the present invention abutting against the upper side of the top support ring. DETAILED DESCRIPTION
[0021] The present invention will be further described in detail below in conjunction with the accompanying drawings.
[0022] like Figures 1 to 6As shown, a circumferential automatic floating strip food processing mechanism comprises a lower positioning plate 1, an upper positioning plate 2, an intermediate rotating plate 3, abutting plate 4, a top supporting ring 5, and a floating curling mechanism 6; the upper positioning plate 2 is installed above the lower positioning plate 1; the abutting plate 4 is installed on one side of the upper end of the lower positioning plate 1; a top supporting ring 5 is installed around the upper end of the upper positioning plate 2; the upper end surface of the top supporting ring 5 includes a low arc surface section 51 and a high arc surface section 52; an intermediate rotating plate 3 is rotatably installed between the lower positioning plate 1 and the upper positioning plate 2; A plurality of floating curling mechanisms 6 are evenly installed around the middle rotating plate 3; the floating curling mechanism 6 includes a fixed sleeve 61, a rotating ring body 62, a lifting and rotating rod 63, a plugging needle 64, a downward pressure spring 65, and a floating block 66; a plurality of fixed sleeves 61 are evenly inserted and fixed around the middle rotating plate 3, a lifting and rotating rod 63 is inserted on the fixed sleeve 61, and a plurality of plugging needles 64 are installed on the lower side of the lifting and rotating rod 63, and the lower end of the plugging needle 64 extends to the outside of the lower end of the fixed sleeve 61 and is located above the side of the lower positioning plate 1, and the upper part of the lifting and rotating rod 63 is fixed to the fixed sleeve 61. A floating block 66 is installed at the end, and multiple downward pressure springs 65 are evenly installed around the middle rotating plate 3. The downward pressure springs 65 respectively press down a floating block 66, and the rear side of the floating block 66 abuts against the upper side of the upper end surface of the top support ring 5. The rotating ring body 62 is installed around the upper part of the lifting and rotating rod 63, and the sides around the upper positioning plate 2 evenly abut against multiple rotating ring bodies 62; the middle rotating plate 3 drives multiple rotating ring bodies 62 to synchronously revolve around the upper positioning plate 2. When multiple rotating ring bodies 62 revolve synchronously around the upper positioning plate 2, the rotating ring bodies 62 will abut against Then the upper positioning plate 2 rotates, the rotating ring body 62 rotates and drives the lifting and rotating rod 63 and the plugging needle 64 to rotate, and the plugging needle 64 plugs the bar food against the inner side of the abutting plate 4 to curl and form; the middle rotating plate 3 drives multiple floating blocks 66 to rotate around the top support ring 5, and the floating blocks 66 move downward and plug the bar food when they abut against the low arc surface section 51, and move upward when they abut against the high arc surface section 52 and drive the lifting and rotating rod 63 and the plugging needle 64 to move upward, so that the plugging needle 64 is separated from the food. The bar food will be sent to the designated area of the lower positioning plate 1 in sequence through the external conveying device, and this area is just below the plugging needle 64 to facilitate the plugging needle 64 to insert the bar food downward.
[0023] like Figures 1 to 6 As shown, in order to facilitate the floating block 66 to be subjected to the downward pressure of the downward pressure spring 65, further, the floating curling mechanism 6 also includes a positioning column 67 and a floating sleeve 68; a plurality of positioning columns 67 are evenly installed around the middle rotating plate 3; the upper part of the positioning column 67 is sleeved with a downward pressure spring 65; the lower part of the positioning column 67 is sleeved with the floating sleeve 68; the lower end of the downward pressure spring 65 presses the floating sleeve 68 downward; one side of the floating sleeve 68 is connected to the floating block 66.
[0024] like Figures 1 to 6 As shown, in order for the floating block 66 to automatically drive the lifting and rotating rod 63 and the plug-in pin 64 to float up and down, further, a pressing protrusion 661 is provided on the rear side of the floating block 66; the lower side of the pressing protrusion 661 abuts against the upper side of the top support ring 5, and the pressing protrusion 661 decreases in height when passing through the low arc section 51, and the pressing protrusion 661 increases in height when passing through the high arc section 52.
[0025] like Figures 1 to 6 As shown, in order to rotate the rotating ring body 62, the lifting and rotating rod 63 can be driven to rotate, and at the same time, the rotating ring body 62 is stably engaged with the upper positioning plate 2. Further, the floating curling mechanism 6 also includes a built-in rotating drum 69; the built-in rotating drum 69 is rotatably clamped and installed on the fixed sleeve 61, and can be assembled through bearings. The upper and lower ends of the built-in rotating drum 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 built-in rotating drum 69; the lifting and rotating rod 63 slides up and down and is clamped in the built-in rotating drum 69, and the lifting and rotating rod 63 and the built-in rotating drum 69 rotate synchronously; the lower end of the built-in rotating drum 69 is provided with a closed baffle 691; the plug-in needle 64 is connected to the closed baffle 691, and the plug-in needle 64 moves upward, and the food at the lower end of the plug-in needle 64 falls and detaches through the obstruction of the closed baffle 691. Furthermore, longitudinal slots 692 are respectively provided on both sides of the interior of the built-in rotating cylinder 69 ; and both sides of the lower part of the lifting and rotating rod 63 are slidably engaged with the longitudinal slots 692 through the protrusions 631 .
[0026] like Figures 1 to 6 As shown, in order to achieve stable floating, further, the height of the high cambered surface section 52 is greater than the height of the low cambered surface section 51 .
[0027] like Figures 1 to 6 As shown, in order to stably install the downward pressure spring 65, further, a limit plate 671 is provided at the upper end of the positioning column 67, and the upper end of the downward pressure spring 65 abuts on the limit plate 671, and the limit plate 671 is fixed to the middle rotating plate 3 through a connecting rod 672. Further, the abutment structure of the outer side of the middle rotating plate 3 and the plurality of rotating ring bodies 62 is a gear meshing connection structure. Further, the abutment plate 4 is an arc-shaped structure.
[0028] like Figures 1 to 6As shown, in order to stably assemble the lower positioning plate 1, the upper positioning plate 2, and the middle rotating plate 3, further, a bottom frame 7 is provided below the lower positioning plate 1, and the lower positioning plate 1 is fixedly mounted on the bottom frame 7; a driving sleeve 71 is rotatably connected in the middle of the lower positioning plate 1, the driving sleeve 71 is hollow inside, and the upper end of the driving sleeve 71 is connected and fixed in the middle of the middle rotating plate 3, and a positioning sleeve 72 is connected inside the driving sleeve 71 and in the middle of the middle rotating plate 3, and the upper and lower ends of the positioning sleeve 72 are respectively fixedly connected between the upper positioning plate 2 and the bottom frame 7. A sprocket driving disc 711 is provided around the lower end of the driving sleeve 71.
[0029] The present invention drives a plurality of rotating ring bodies 62 to synchronously revolve around the upper positioning plate 2 through the middle rotating plate 3. While the plurality of rotating ring bodies 62 synchronously revolve around the upper positioning plate 2, the rotating ring bodies 62 will abut against the upper positioning plate 2 to rotate. The rotating ring bodies 62 rotate and drive the lifting rotating rod 63 and the plugging needle 64 to rotate. In this way, the plugging needle 64 plugs the bar-shaped food against the inner side of the abutting plate 4 to curl and form, thereby realizing automatic curling processing; the middle rotating plate 3 will drive a plurality of floating blocks 66 to rotate around the top support ring 5, and the floating blocks 66 abut against the low arc section 51. When the food strip is pressed against the inner side of the abutment plate 4, it will move upward, and the floating block 66 will drive the lifting and rotating rod 63 and the plugging needle 64 to move upward, so that the plugging needle 64 will be separated from the food to realize stripping, and the food at the lower end of the plugging needle 64 will automatically fall and detach due to the obstruction of the closed baffle, so as to realize convenient stripping and separation, and quick and efficient processing.
[0030] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principle of the present invention should be included in the protection scope of the present invention.
Claims
1. A circumferentially automatic floating strip food processing mechanism, characterized in that: The cam is an angular movement of the cam which is arranged on the top of the support frame, and the cam is arranged on the upper side of the support frame to move the cam forward and downward, so that the cam can move relative to the upper edge of the support frame when the cam is in a stable position. A plurality of downward pressure springs are evenly installed around the rotating plate, and the downward pressure springs respectively press down a floating block, and the rear side of the floating block abuts against the upper side of the upper end surface of the top supporting ring. The rotating ring body is installed around the upper part of the lifting and rotating rod, and the sides of the upper positioning plate evenly abut against the plurality of rotating ring bodies; the intermediate rotating plate drives the plurality of rotating ring bodies to revolve synchronously around the upper positioning plate. While the plurality of rotating ring bodies revolve synchronously around the upper positioning plate, the rotating ring body abuts against the upper positioning plate to rotate, and the rotating ring body rotates and drives the lifting and rotating rod and the plugging needle to rotate, and the plugging needle plugs in the strip food and abuts against the inner side of the abutting plate to curl and form; the intermediate rotating plate drives the plurality of floating blocks to rotate around the top supporting ring, and the floating block moves downward and inserts the strip food when it abuts against the low arc section, and moves upward when it abuts against the high arc section and drives the lifting and rotating rod and the plugging needle to move upward, so that the plugging needle is separated from the food.
2. The circumferential automatic floating strip food processing mechanism according to claim 1, characterized in that: The floating curling mechanism also includes a positioning column and a floating sleeve; a plurality of positioning columns are evenly installed around the middle rotating plate; the upper part of the positioning column is sleeved with a downward pressure spring; the lower part of the positioning column is sleeved with the floating sleeve; the lower end of the downward pressure spring presses the floating sleeve downward; one side of the floating sleeve is connected to a floating block.
3. The circumferential automatic floating strip food processing mechanism according to claim 1, characterized in that: A pressing protrusion is provided on the rear side of the floating block; the lower side of the pressing protrusion abuts against the upper side of the top support ring, the pressing protrusion decreases in height when passing through the low arc section, and increases in height when passing through the high arc section.
4. The circumferential automatic floating strip food processing mechanism according to claim 1, characterized in that: The floating curling mechanism also includes a built-in rotating drum; the built-in rotating drum is rotatably clamped and installed on the fixed sleeve, and the upper and lower ends of the built-in 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 built-in rotating drum; the lifting and rotating rod slides up and down and is clamped in the built-in rotating drum, and the lifting and rotating rod and the built-in rotating drum rotate synchronously; a closed baffle is provided at the lower end of the built-in rotating drum; the plug-in needle is connected to the closed baffle, and the plug-in needle moves upward, and the food at the lower end of the plug-in needle falls and detaches through the obstruction of the closed baffle.
5. The circumferential automatic floating strip food processing mechanism according to claim 4, characterized in that: The inner two sides of the built-in rotating drum are respectively provided with longitudinal slots; the lower two sides of the lifting and rotating rod are slidably connected to the longitudinal slots through the clamping protrusions.
6. The circumferential automatic floating strip food processing mechanism according to claim 1, characterized in that: The height of the high arc surface section is greater than the height of the low arc surface section.
7. The circumferential automatic floating strip food processing mechanism according to claim 2, characterized in that: A limit plate is provided at the upper end of the positioning column, the upper end of the downward pressure spring abuts against the limit plate, and the limit plate is fixed to the middle rotating plate through a connecting rod.
8. The circumferential automatic floating strip food processing mechanism according to claim 1, characterized in that: The outer sides of the middle rotating plate and the abutting structures of the plurality of rotating ring bodies are gear meshing connection structures.
9. The circumferential automatic floating strip food processing mechanism according to claim 1, characterized in that: The abutting plate is in an arc-shaped structure.
10. The circumferential automatic floating strip food processing mechanism according to claim 1, characterized in that: A bottom frame is provided below the lower positioning plate, and the lower positioning plate is fixedly installed on the bottom frame; a driving sleeve is rotatably connected in the middle of the lower positioning plate, the interior of the driving sleeve is hollow, and the upper end of the driving sleeve is connected and fixed in the middle of the middle rotating plate, and a positioning sleeve is connected in the interior of the driving sleeve and the middle of the middle rotating plate, and the upper and lower ends of the positioning sleeve are respectively fixedly connected between the upper positioning plate and the bottom frame; a sprocket driving plate is provided around the lower end of the driving sleeve.