Separating type nest melon inserting needle rotating dicing table mechanism

By designing a separate squash inserting and rotating cutting table mechanism, adopting a rotating table frame structure and a squash loading and unloading mechanism, and connecting multiple squash loading and unloading mechanisms through a cantilever frame, and combining pneumatic control to achieve multi-station operation, the problem of large equipment space occupation and low automation efficiency in the existing technology is solved, and efficient squash cutting and product classification and collection are realized.

CN223749768UActive Publication Date: 2026-01-02郭艳玲
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Patent Information

Application Number
CN202520125991.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-20
Publication Date
2026-01-02
Estimated Expiration
2035-01-20

AI Technical Summary

Technical Problem

Existing dicing platforms occupy a large space, have low automation efficiency, and are difficult to achieve precise dicing and product classification and collection of squash.

Method used

Design a separate gourd inserting and rotating cutting table mechanism, which adopts a rotating table frame structure and a gourd loading and unloading mechanism. Multiple gourd loading and unloading mechanisms are connected by a cantilever frame. Combined with pneumatic control, multi-station operation is realized, including efficient integration of loading, cutting and waste unloading stations.

Benefits of technology

It achieves efficient dicing and product classification and collection of squash, improves automation efficiency, simplifies equipment design, reduces the precision requirements for parts manufacturing, enhances ease of operation and environmental friendliness, and achieves energy-saving functions.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model discloses a separated type cucurbita pepo inserting needle rotary dicing table mechanism, relates to the technical field of food processing equipment, and solves the problems that equipment for transferring cucurbita pepo to different stations occupies a large space and is low in automation efficiency. Three different stations of feeding, dicing and waste discharging can be respectively connected, the three different stations of feeding, dicing and waste discharging are efficiently connected and integrated together through multi-station multifunctional rotary progressive matching and reasonable utilization of limited space, the overall function of the pumpkin dicer is achieved through mutual matching, the overall structure is simple and independent, and the operation is convenient. According to the invention, the requirement on the manufacturing precision of parts is low, the assembly manufacturability is good, the main actions of the whole machine adopt pneumatic control production, the response speed is high, the operation is simple and convenient, the action control of the production process is easy to realize, the action is accurate, the positioning precision is high, and the functions of energy conservation and environmental protection are achieved while the whole action requirement can be efficiently completed.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of food processing equipment, especially to a separated type nest melon inserting needle rotary cutting block table mechanism. BACKGROUND

[0002] Nest melon and pumpkin are actually different names of the same plant. They both belong to Cucurbitaceae, Lagenaria siceraria, annual vine herb. The alias of pumpkin includes bottle gourd, melon, rice melon, pumpkin and north melon.

[0003] The existing various cutting block platform mechanisms can realize the cutting function and the too simple cutting and classifying mode, can only realize the one-time cutting of nest melon by using the radial integrated blade, and cannot realize the fine cutting of nest melon and the classified collection of products and waste. The economic value of nest melon is not high, the transaction price profit margin of domestic sales is limited, so the corresponding production processing equipment is difficult to update. However, in the way of pre-prepared dishes, nest melon is exported as a high value-added product, which greatly improves the economic value and profit margin of nest melon, so that more abundant funds can be invested in nest melon related cutting equipment. In order to meet the latest market demand, the fine cutting of nest melon, the classification of different grades of products and the collection of the classified products are taken as the design target of the latest cutting block platform.

[0004] As the cutting block platform mechanism is increasingly fine, the equipment for realizing different processes is increasing, and the space occupied by the equipment for moving nest melon to different stations is also increasing, and it is difficult to improve the automation efficiency. UTILITY MODEL CONTENT

[0005] In view of the above problems that the equipment for moving nest melon to different stations occupies large space and has low automation efficiency, the utility model aims to provide a separated type nest melon inserting needle rotary cutting block table mechanism.

[0006] In order to realize the above purpose, the technical scheme adopted by the utility model is:

[0007] A kind of separate type nest melon needle rotating cutting block table mechanism, comprising: rotating table rack structure 1 and upper and lower material inserting melon mechanism 2, the rotating table rack structure 1 includes: driving device, rotating table base 1-3, rotating center column 1-4 and cantilever frame 1-5, rotating table base 1-3 includes: fixed disc and rotating disc, the rotating disc is rotatably installed in fixed disc;Center column 1-4 lower end and rotating disc are connected, the driving device is used to drive rotating disc to rotate in fixed disc, to realize the rotation of center column 1-4 around its axis;Multiple cantilever frames 1-5 are arranged at equal intervals around the axis of center column 1-4, one end of each cantilever frame 1-5 and the upper end of center column 1-4 are connected, the other end of each cantilever frame 1-5 is equipped with an upper and lower material inserting melon mechanism 2;Multiple upper and lower material inserting melon mechanisms 2 are used to take and place material, the rotating table rack structure 1 is used to drive multiple upper and lower material inserting melon mechanisms 2 to move to specified station according to process.

[0008] The above-mentioned separate type nest melon needle rotating cutting block table mechanism, wherein the upper and lower material inserting melon mechanism 2 includes: upper and lower material air cylinder 2-1, cantilever connecting piece 2-6, push rod connecting part 2-4 and needle 2-5, cantilever connecting piece 2-6 is installed at the other end of any cantilever frame 1-5, the cylinder body of upper and lower material air cylinder 2-1 is installed on cantilever connecting piece 2-6, push rod connecting part 2-4 is installed on the end of cylinder rod of upper and lower material air cylinder 2-1, multiple needles 2-5 are all installed on push rod connecting part 2-4.

[0009] The above-mentioned separate type nest melon needle rotating cutting block table mechanism, wherein the upper and lower material air cylinder 2-1 is vertically arranged, and the cylinder rod of the upper and lower material air cylinder 2-1 is vertically pushed out downward.

[0010] The above-mentioned separate type nest melon needle rotating cutting block table mechanism, wherein the push rod connecting part 2-4 includes: rotating part and fixed part, the rotating part is rotatably installed on the end of cylinder rod of the upper and lower material air cylinder 2-1, the fixed part is installed on the bottom of the rotating part, and the upper ends of the multiple needles 2-5 are connected with the bottom surface of the fixed part.

[0011] The above-mentioned separate type nest melon needle rotating cutting block table mechanism, wherein the upper and lower material inserting melon mechanism 2 further includes: finger clamping air cylinder 2-2 and clamping finger 2-3, the finger clamping air cylinder 2-2 is installed on the cantilever connecting piece 2-6, two clamping fingers 2-3 are symmetrically arranged on both sides of the upper and lower material air cylinder 2-1, and the two clamping fingers 2-3 are installed on the driving end of the finger clamping air cylinder 2-2, the finger clamping air cylinder 2-2 is used to drive the two clamping fingers 2-3 to open and close, when the push rod connecting part 2-4 is in the upper limit position, the finger clamping air cylinder 2-2 is used to drive the two clamping fingers 2-3 to clamp the rotating part.

[0012] The separated hollowed pumpkin needle rotary cutting block table mechanism, wherein the rotary table rack structure 1 further comprises a conveying belt component 1-1 for conveying materials to the feeding station.

[0013] The separated hollowed pumpkin needle rotary cutting block table mechanism, wherein the rotary table rack structure 1 further comprises a desktop rack 1-2, and the fixed disc is installed on the upper surface of the desktop rack 1-2.

[0014] The separated hollowed pumpkin needle rotary cutting block table mechanism, wherein the auxiliary discharging mechanism 3 is arranged at the waste material collecting station, and the auxiliary discharging mechanism 3 comprises discharging fingers 3-1, a waste material discharging cylinder 3-2 and a discharging cylinder rack 3-3, the waste material discharging cylinder 3-2 is installed on the discharging cylinder rack 3-3, and the two discharging fingers 3-1 are symmetrically installed at the end of the cylinder rod of the waste material discharging cylinder 3-2; when the push rod connecting component 2-4 is located at the waste material collecting station and is in the lower limit position, the waste material discharging cylinder 3-2 drives the two discharging fingers 3-1 to move to be respectively located at the two sides of the plurality of needles 2-5 and between the rotating part and the materials.

[0015] The separated hollowed pumpkin needle rotary cutting block table mechanism, wherein the discharging cylinder rack 3-3 comprises a horizontal plate and a vertical plate, one end of the horizontal plate is connected with the upper end of the vertical plate, the waste material discharging cylinder 3-2 is installed at the other end of the horizontal plate, and the waste material discharging cylinder 3-2 is horizontally arranged.

[0016] The separated hollowed pumpkin needle rotary cutting block table mechanism, wherein the auxiliary discharging mechanism 3 further comprises a waste material collecting basket 3-4 arranged below the waste material discharging cylinder 3-2, and the waste material collecting basket 3-4 is used for collecting materials.

[0017] The separated hollowed pumpkin needle rotary cutting block table mechanism, wherein the auxiliary discharging mechanism 3 further comprises a waste material collecting basket 3-4 arranged below the waste material discharging cylinder 3-2, and the waste material collecting basket 3-4 is used for collecting materials.

[0018] (1) The utility model discloses an open design, and the whole structure is simple and independent, the manufacturing precision of parts is low, assembly technology is good, three cantilever racks are extended from the central rotation center column, can be connected to the feeding, cutting, discharging three different stations respectively, through the cooperation of multi-station multifunctional rotary progressive type, the limited space is utilized rationally, and the feeding, cutting, discharging three different stations are efficiently connected and integrated together, and the whole function of the pumpkin cutting machine is realized through mutual cooperation.

[0019] (2) In the utility model, the main action of the whole machine adopts pneumatic control production, the response speed is fast, operation is simple, the action control of production process can be realized easily, the action is accurate, the positioning precision is high, the whole action demand can be efficiently completed, and the functions of energy saving and environmental protection are achieved. BRIEF DESCRIPTION OF DRAWINGS

[0020] Figure 1 Figure 2 is an overall structure shaft side view of the separated nest melon needle rotary cutting block table mechanism of the utility model.

[0021] Figure 2 Figure 3 is a three-station wheel rotation schematic view of the separated nest melon needle rotary cutting block table mechanism of the utility model.

[0022] Figure 3 Figure 4 is a feeding station schematic view of the separated nest melon needle rotary cutting block table mechanism of the utility model.

[0023] Figure 4 Figure 5 is a waste collection position function schematic view of the separated nest melon needle rotary cutting block table mechanism of the utility model.

[0024] In the drawings: 1, rotary table rack structure; 2, feeding and discharging melon inserting mechanism; 3, auxiliary discharging mechanism; 1-1, conveying belt part; 1-2, desktop rack; 1-3, rotary table base; 1-4, rotary center column; 1-5, cantilever frame; 2-1, feeding and discharging large cylinder; 2-2, finger clamping cylinder; 2-3, clamping finger; 2-4, push rod connecting part; 2-5, needle; 2-6, cantilever connecting piece; 3-1, discharging finger; 3-2, waste cylinder; 3-3, discharging cylinder rack; 3-4, waste collection basket. DETAILED DESCRIPTION

[0025] The utility model will be further described in connection with the drawings and specific embodiments, but not as the limitation of the utility model.

[0026] Please refer to Figures 1 to 4 It shows a separated nest melon needle rotary cutting block table mechanism, which comprises a rotary table rack structure 1 and a feeding and discharging melon inserting mechanism 2, the rotary table rack structure 1 comprises a driving device, a rotary table base 1-3, a rotary center column 1-4 and a cantilever frame 1-5, the rotary table base 1-3 comprises a fixed disc and a rotating disc, the rotating disc is rotatably installed in the fixed disc; the lower end of the center column 1-4 is connected with the rotating disc, the driving device is used to drive the rotating disc to rotate in the fixed disc, thereby realizing the rotation of the center column 1-4 around its axis; a plurality of cantilever frames 1-5 are arranged at equal intervals around the axis of the center column 1-4, one end of each cantilever frame 1-5 is connected with the upper end of the center column 1-4, and the other end of each cantilever frame 1-5 is provided with one feeding and discharging melon inserting mechanism 2; the plurality of feeding and discharging melon inserting mechanisms 2 are used to take and place materials, and the rotary table rack structure 1 is used to drive the plurality of feeding and discharging melon inserting mechanisms 2 to move to the specified station according to the process.

[0027] Further, in a preferred embodiment, the loading and unloading mechanism 2 comprises a loading and unloading cylinder 2-1, a cantilever connecting member 2-6, a push rod connecting member 2-4 and a plurality of insertion needles 2-5, the cantilever connecting member 2-6 is installed at the other end of any cantilever frame 1-5, the cylinder body of the loading and unloading cylinder 2-1 is installed on the cantilever connecting member 2-6, the push rod connecting member 2-4 is installed at the end of the cylinder rod of the loading and unloading cylinder 2-1, and the plurality of insertion needles 2-5 are all installed on the push rod connecting member 2-4.

[0028] Further, in a preferred embodiment, the loading and unloading cylinder 2-1 is vertically arranged, and the cylinder rod of the loading and unloading cylinder 2-1 is vertically pushed downward; the plurality of insertion needles 2-5 are all vertically arranged downward.

[0029] Further, in a preferred embodiment, the push rod connecting member 2-4 comprises a rotating part and a fixed part, the rotating part is rotatably installed at the end of the cylinder rod of the loading and unloading cylinder 2-1, the fixed part is installed at the bottom of the rotating part, and the upper ends of the plurality of insertion needles 2-5 are all connected with the bottom surface of the fixed part.

[0030] Further, in a preferred embodiment, the loading and unloading mechanism 2 further comprises a finger clamping cylinder 2-2 and a clamping finger 2-3, the finger clamping cylinder 2-2 is installed on the cantilever connecting member 2-6, the two clamping fingers 2-3 are symmetrically arranged on both sides of the loading and unloading cylinder 2-1, the two clamping fingers 2-3 are both installed on the driving end of the finger clamping cylinder 2-2, the finger clamping cylinder 2-2 is used to drive the two clamping fingers 2-3 to open and close, and when the push rod connecting member 2-4 is at the upper limit position, the finger clamping cylinder 2-2 is used to drive the two clamping fingers 2-3 to clamp the rotating part.

[0031] Further, in a preferred embodiment, the rotating table frame structure 1 further comprises a conveying belt member 1-1, and the conveying belt member 1-1 is used to convey materials to the loading station.

[0032] Further, in a preferred embodiment, the rotating table frame structure 1 further comprises a tabletop frame 1-2, and the fixed disc is installed on the upper surface of the tabletop frame 1-2.

[0033] Further, in a preferred embodiment, it further comprises an auxiliary unloading mechanism 3, the auxiliary unloading mechanism 3 is arranged at the waste collecting station, and the auxiliary unloading mechanism 3 comprises a unloading finger 3-1, a waste unloading cylinder 3-2 and a unloading cylinder frame 3-3, the waste unloading cylinder 3-2 is installed on the unloading cylinder frame 3-3, the two unloading fingers 3-1 are symmetrically installed at the end of the cylinder rod of the waste unloading cylinder 3-2, and when the push rod connecting member 2-4 is located at the waste collecting station and is at the lower limit position, the waste unloading cylinder 3-2 drives the two unloading fingers 3-1 to move to be respectively located on both sides of the plurality of insertion needles 2-5 and between the rotating part and the materials.

[0034] Further, in a preferred embodiment, the blanking cylinder frame 3-3 comprises a horizontal plate and a vertical plate, one end of the horizontal plate is connected to the upper end of the vertical plate, the lower waste cylinder 3-2 is installed at the other end of the horizontal plate, and the lower waste cylinder 3-2 is horizontally arranged.

[0035] Further, in a preferred embodiment, the auxiliary blanking mechanism 3 further comprises a waste collecting basket 3-4, the waste collecting basket 3-4 is arranged below the lower waste cylinder 3-2, and the waste collecting basket 3-4 is used for collecting materials.

[0036] The above is only a preferred embodiment of the present application, and does not limit the implementation and protection scope of the present application.

[0037] The present application further has the following implementation modes based on the above:

[0038] In a further embodiment of the present application, as shown in Figure 1 The design structure of the present application mainly comprises a rotating table frame structure 1, a feeding and unloading melon inserting mechanism 2, and an auxiliary blanking mechanism 3. The rotating table frame structure 1 comprises a rotating table base 1-3, a rotating center column 1-4, and a cantilever frame 1-5. A plurality of cantilever frames 1-5 are connected to the rotating table base 1-3 through the rotating center column 1-4, the cantilever frame 1-5 extends outward, the rotating center column 1-4 is a triangular prism as a whole, the lower end is connected to the rotating table base 1-3 in a flange connection manner, and the upper end has three rectangular notches connected to the three cantilever frames 1-5, respectively. The cantilever frame 1-5 and the rotating center column 1-4 are positioned by a surface and fixed by a bolt connection, the rotating table base 1-3 is driven by a stepping motor to rotate the rotating center column 1-4 thereon, thereby rotating the cantilever frame 1-5, achieving the effect of switching stations, and the remaining components having a connection relationship can be connected by a bolt and a pin.

[0039] In a further embodiment of the present application, the rotating mechanism is a common element in mechanical design, which realizes a specific function through rotating motion. In the separated melon inserting needle rotating cutting table mechanism, three cantilever frames 1-5 are extended from the central rotating center column 1-4, which can be connected to three different stations of feeding, cutting, and waste removal, respectively. The separated design is centered on the rotating mechanism, and three stations corresponding to feeding, cutting, and waste removal are differentiated.

[0040] In a further embodiment of the present application, as shown in Figure 2As shown in the three-position rotary mode of the utility model, three positions correspond to a feeding position, a cutting position and a waste collecting position respectively. First, the well-prepared pumpkin from the previous step is sent to the lower side of the feeding and discharging cylinder 2-1 by a conveying belt. The feeding and discharging cylinder 2-1 works, the push rod connecting part 2-4 moves from the upper limit position of the feeding and discharging cylinder to the lower limit position of the feeding and discharging cylinder, the multiple insertion needles 2-5 are inserted into the pumpkin, then the control cylinder is retracted to complete the feeding, the pumpkin moves with the multiple insertion needles 2-5 from the lower limit position of the feeding and discharging cylinder to the upper limit position of the feeding and discharging cylinder. Then the rotary table rotates 120° to enter the next position for cutting. After the cutting is completed, the rotary table rotates 120° to enter the waste collecting position. After the waste is removed, the rotary table rotates 120° to return to the feeding position. The working procedures of the three positions and the cylinder action rotary work are carried out at the same time, which greatly improves the working efficiency of the whole machine.

[0041] In a further embodiment of the utility model, when the multiple insertion needles 2-5 carry the pumpkin to the cutting position, the cutting operation can be carried out in cooperation with multiple different types of cutting equipment, or the cutting operation can be carried out manually. The present application is suitable for multiple cutting equipment on the market.

[0042] In a further embodiment of the utility model, the pumpkin is relatively light in weight. When the multiple insertion needles 2-5 are inserted into the pumpkin, the broken position of the pumpkin will tightly cover the insertion needles 2-5, which will not naturally fall under the action of friction. In the utility model, a sanding surface or other structure that increases friction can be provided on the outer surface of the insertion needles 2-5. A hook-shaped structure or a tooth-shaped structure that is inclined upward can also be provided to be suitable for pumpkins with relatively large weight.

[0043] In a further embodiment of the utility model, as shown in Figure 3 The feeding and discharging pumpkin mechanism includes a feeding and discharging cylinder 2-1, a finger clamping cylinder 2-2, clamping fingers 2-3, a push rod connecting part 2-4 and insertion needles 2-5. The feeding and discharging cylinder 2-1 is connected with the cantilever frame 1-5 through a cantilever connecting piece 2-6. The whole connection mode adopts screw connection. The push rod connecting part 2-4 is installed on the push rod of the feeding and discharging cylinder 2-1, and the insertion needles 2-5 are installed on the push rod connecting part 2-4. The finger clamping cylinder 2-2 is also installed on the cantilever connecting piece 2-6. The finger clamping cylinder 2-2 is tightened to prevent the pumpkin below the cantilever frame 1-5 from rotating during the rotation process, thereby ensuring the accuracy of positioning. Figure 3 The two positions shown in the middle are the upper limit position and the lower limit position of the feeding and discharging cylinder 2-1. The feeding is realized by the retraction action of the feeding and discharging cylinder 2-1. When the feeding and discharging cylinder 2-1 is at the upper limit position, the finger cylinder 2-2 is clamped to prevent the pumpkin from rotating with the rotary table base 1-3. When the feeding and discharging cylinder 2-1 needs to act, the finger cylinder 2-2 is opened to allow the feeding and discharging cylinder 2-1 to move freely.

[0044] In a further embodiment of the utility model, as shown in Figure 4 As shown in waste collection station, in addition to the same structure with the above station, also increased auxiliary lower waste cylinder 3-2, blanking finger 3-1, blanking cylinder rack 3-3 and lower waste collection basket 3-4.The function of auxiliary lower waste cylinder 3-2 is, after cutting small piece, rotate to lower waste station, then blanking cylinder 2-1 extends, at this time auxiliary lower waste cylinder 3-2 extends, makes two blanking fingers 3-1 be located between residual melon meat and push rod connecting part 2-6, then blanking cylinder 2-1 retracts, waste is dropped into lower waste collection basket 3-4 by two blanking fingers 3-1, after the above action, auxiliary lower waste cylinder 3-2 retracts to the position as shown in dotted line in the figure.

[0045] In a further embodiment of the utility model, before use, the utility model structure should be assembled completely;When using, the utility model structure that has been assembled should be placed in the middle of three stations of feeding, cutting, blanking, the rotation rate of rotary platform is adjusted to adapt to the overall work rhythm.

[0046] In a further embodiment of the utility model, the purpose of the utility model is to provide a separated type pumpkin needle rotating cutting block table mechanism, which is good in economy, low in precision requirement, good in assembly technology, and maximizes the utilization of working space.

[0047] In a further embodiment of the utility model, the rotary table base 1-3 includes: a rotating disc is installed on a fixed disc through a rotating shaft, and a variety of transmission mechanisms such as a gear transmission mechanism and a worm transmission mechanism can be selected inside, a driving device drives the transmission mechanism to operate, so that the rotating disc drives the pumpkin to rotate, wherein the driving device can be a motor driving device.

[0048] The utility model has the advantages that: adopting open design, the overall structure is simple and independent, the manufacturing precision of parts is low, the assembly technology is good, through the cooperation of multi-station multifunctional rotary progressive type, the limited space is reasonably utilized, the three different stations of feeding, cutting and blanking are efficiently connected and integrated, and the overall function of the pumpkin cutting machine is realized through mutual cooperation;The main action of the whole machine adopts pneumatic control production, the response speed is fast, the operation is simple, the action control of production process can be easily realized, the action is accurate, the positioning accuracy is high, the whole action demand can be efficiently completed, the energy-saving and environment-friendly function is achieved;At the same time, in the utility model, the action requirement can be realized by medium pressure 0.6MPa, the whole machine safety is high, and maintenance and part replacement are simple.

[0049] The above merely describes preferred embodiments of the present application, and is not intended to limit the implementation and protection scope of the present application. For those skilled in the art, it should be understood that any equivalent substitutions and obvious changes made according to the content of the present application and drawings should be included in the protection scope of the present application.

Claims

1. A separate type of Cucumis lofoius L. pin rotating cutting block table mechanism, characterized in that, include: The rotary table frame structure (1) and the loading / unloading gourd insertion mechanism (2) are provided. The rotary table frame structure (1) includes a drive device, a rotary table base (1-3), a rotating central column (1-4), and a cantilever frame (1-5). The rotary table base (1-3) includes a fixed plate and a rotating plate. The rotating plate is rotatably installed in the fixed plate. The lower end of the central column (1-4) is connected to the rotating plate. The drive device is used to drive the rotating plate to rotate in the fixed plate, thereby realizing the rotation of the central column (1-4) around its own axis. Multiple cantilever frames (1-5) are arranged at equal intervals around the axis of the central column (1-4). One end of each cantilever frame (1-5) is connected to the upper end of the central column (1-4). The other end of each cantilever frame (1-5) is equipped with a loading / unloading gourd insertion mechanism (2). The multiple loading / unloading gourd insertion mechanisms (2) are used to pick up and put down materials. The rotary table frame structure (1) is used to drive the multiple loading / unloading gourd insertion mechanisms (2) to move to the designated work position according to the process.

2. The separate type of fleshy oval-shaped melon insertion needle rotary cutting block table mechanism according to claim 1, characterized in that, The loading and unloading melon insertion mechanism (2) includes: a loading and unloading cylinder (2-1), a cantilever connector (2-6), a push rod connector (2-4), and pins (2-5). The cantilever connector (2-6) is installed at the other end of any cantilever (1-5). The cylinder body of the loading and unloading cylinder (2-1) is installed on the cantilever connector (2-6). The push rod connector (2-4) is installed at the end of the cylinder rod of the loading and unloading cylinder (2-1). Multiple pins (2-5) are installed on the push rod connector (2-4).

3. The separate type of fleshy oval-shaped melon needle rotating cutting block table mechanism according to claim 2, characterized in that, The loading and unloading cylinder (2-1) is set vertically, and the cylinder rod of the loading and unloading cylinder (2-1) is pushed vertically downward; multiple pins (2-5) are all set vertically downward.

4. The separate type of fleshy oval-shaped melon insertion needle rotary cutting block table mechanism according to claim 3, characterized in that, The push rod connecting component (2-4) includes a rotating part and a fixed part. The rotating part is rotatably installed at the end of the cylinder rod of the loading and unloading cylinder (2-1). The fixed part is installed at the bottom of the rotating part. The upper ends of multiple pins (2-5) are connected to the bottom surface of the fixed part.

5. The separate type of fleshy oval-shaped melon insertion needle rotary cutting block table mechanism according to claim 4, characterized in that, The loading and unloading melon insertion mechanism (2) further includes: a finger clamping cylinder (2-2) and clamping fingers (2-3). The finger clamping cylinder (2-2) is mounted on the cantilever connector (2-6). The two clamping fingers (2-3) are symmetrically arranged on both sides of the loading and unloading cylinder (2-1). The two clamping fingers (2-3) are both mounted on the driving end of the finger clamping cylinder (2-2). The finger clamping cylinder (2-2) is used to drive the two clamping fingers (2-3) to open and close. When the push rod connecting component (2-4) is in the upper limit position, the finger clamping cylinder (2-2) is used to drive the two clamping fingers (2-3) to clamp the rotating part.

6. The separate type of fleshy oval-shaped melon insertion needle rotary cutting block table mechanism according to claim 3, characterized in that, The rotary table frame structure (1) further includes a conveyor belt component (1-1), which is used to transport materials to the loading station.

7. The separable, pocket gourd insertion needle rotation cutting block table mechanism according to claim 1, characterized by, The rotary table frame structure (1) further includes a desktop frame (1-2), and the fixed plate is installed on the upper surface of the desktop frame (1-2).

8. The separated type of fleshy vegetable needle rotating cutting block table mechanism according to claim 3, characterized in that, Also includes: The auxiliary discharging mechanism (3) is arranged at the waste collecting station, and comprises a discharging finger (3-1), a waste discharging cylinder (3-2) and a discharging cylinder frame (3-3). The waste discharging cylinder (3-2) is installed on the discharging cylinder frame (3-3), and two discharging fingers (3-1) are symmetrically installed at the end of the cylinder rod of the waste discharging cylinder (3-2). When the push rod connecting component (2-4) is located at the waste collecting station and is limited at the lower level, the waste discharging cylinder (3-2) drives the two discharging fingers (3-1) to move to the two sides of the plurality of pins (2-5) respectively and between the rotating part and the material.

9. The separate type of fleshy oval-shaped melon needle rotating and dicing table mechanism according to claim 8, characterized in that, The discharging cylinder frame (3-3) comprises a horizontal plate and a vertical plate, one end of the horizontal plate is connected to the upper end of the vertical plate, the waste discharging cylinder (3-2) is installed at the other end of the horizontal plate, and the waste discharging cylinder (3-2) is arranged horizontally.

10. The separate type of fleshy oval-shaped melon insertion needle rotary cutting block table mechanism according to claim 9, characterized in that, The auxiliary discharging mechanism (3) further comprises a waste collecting basket (3-4) arranged below the waste discharging cylinder (3-2), and the waste collecting basket (3-4) is used for collecting the material.