Processing equipment and method for konjac products

By designing automated feeding and cutting devices, the problem of time-consuming and labor-intensive manual operation in konjac products is solved, and efficient and stable konjac products are achieved.

CN116619452BActive Publication Date: 2025-08-22HEFEI UNIV OF TECH
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Patent Information

Application Number
CN202310358945.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-04-06
Publication Date
2025-08-22
Estimated Expiration
2043-04-06

AI Technical Summary

Technical Problem

During the processing of konjac products, the cutting and subsequent operations of fine powder paste rely on manual labor, which is time-consuming and labor-intensive and difficult to ensure quality.

Method used

A konjac product processing equipment is designed, including an automated feeding device and cutting device, and the automatic feeding, cutting and transmission of fine powder paste is achieved using a linear actuator and an electric telescopic rod.

Benefits of technology

It realizes automatic processing of konjac products, improves efficiency, reduces the time and labor intensity of manual operation, and ensures the quality of the products.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to the technical field of konjac processing, and to a processing device and method for konjac products, comprising a scouring device, a material receiving device corresponding to the scouring device below the scouring device; the material receiving device comprises a base plate, a support platform is provided above the base plate, a plurality of stacked loading frames are provided above the support platform, the plurality of loading frames are clamped in a baffle frame, the baffle frame is equipped with a baffle, the baffle frame is connected to a first electric telescopic rod, the bottom end of the electric telescopic rod is mounted on the support platform; a movable platform is connected below the base plate; the movable platform can move the material receiving device to a cutting device, the right end of the cutting piece is connected to a third linear actuator, the third linear actuator is connected to a second electric telescopic rod; a pressing block is provided above the cutting piece, the pressing block is connected to a third electric telescopic rod, the third electric telescopic rod is connected to a fourth linear actuator; an electromagnetic block is provided at the bottom end of the pressing block, and each loading frame is provided with an iron block. The present invention enables better scouring and cutting of konjac products.
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Description

Technical Field

[0001] The present invention relates to the technical field of konjac processing, and specifically, to a processing device and method for konjac products. Background Art

[0002] The tuber of konjac contains a hydrogel polysaccharide, which is a high molecular weight, non-ionic glucomannan. It is mainly composed of mannose and glucose. The typical color of konjac refined powder is milky white to light brown, and it can be dispersed in hot water and cold water. Konjac products are characterized by low calorific value, low protein, low vitamin, and high fiber. They can regulate the nutritional balance in the human body, reduce the lipid level in the blood, and remove harmful metals in the human body, and thus have the reputation of being the "scavenger" of the human body. Common konjac products include konjac tofu, konjac vermicelli, konjac cake, bionic konjac food, etc.

[0003] Currently, during the processing of konjac products, after the konjac refined powder is refined, the paste is often put into a container manually, and then cut manually. After cutting, it is added to other equipment manually for subsequent steps. Such operations are laborious, time-consuming, and difficult to ensure the quality of konjac products. Summary of the Invention

[0004] The content of the present invention is to provide a processing device and method for konjac products, which can automatically receive materials and automatically cut.

[0005] According to a processing device for konjac products of the present invention, it includes a group of refining devices, and each refining device is provided with a discharge port at the bottom, and a receiving device corresponds to all the discharge ports below;

[0006] The receiving device includes a bottom plate, a support platform is arranged above the bottom plate, and a plurality of stacked loading frames are arranged above the support platform. The plurality of loading frames are stuck in a U-shaped retaining frame, a baffle is fitted at the notch of the retaining frame, the bottom end of the baffle is connected to the support platform, and the retaining frame is connected with a first electric telescopic rod that can be telescoped up and down. The bottom end of the electric telescopic rod is installed on the support platform; a moving platform is connected below the bottom plate. The moving platform includes a first linear actuator that can move the bottom plate back and forth, and two second linear actuators that can move the first linear actuator left and right are fitted below the first linear actuator;

[0007] The mobile platform can move the material receiving device to a cutting device. The cutting device includes a horizontal cutting blade and a grid-shaped cutting block, and the cutting block is located above the cutting blade. The right end of the cutting blade is connected to a third linear actuator that can move the cutting blade back and forth. A second electric telescopic rod that can be extended and retracted vertically is connected above the third linear actuator, and the top end of the second electric telescopic rod is connected to the top frame. A pressure block is provided above the cutting block, and a third electric telescopic rod that can be extended and retracted vertically is connected above the pressure block. A fourth linear actuator that can move the third electric telescopic rod back and forth is connected to the top end of the third electric telescopic rod, and the fourth linear actuator is mounted on the top frame.

[0008] An electromagnetic block is provided at the bottom of the pressing block, and an iron block is provided on the top of each charging frame, and the electromagnetic block and the iron block cooperate;

[0009] Conveyor belts are provided correspondingly below the rear end of the third linear actuator and the middle section of the fourth linear actuator, and a storage box is provided correspondingly below the rear end of the fourth linear actuator.

[0010] Preferably, the first electric telescopic rod is located behind the support platform, and the baffle is located in front of the support platform.

[0011] Preferably, the length and width of the charging frame are respectively equal to the length and width of the supporting platform.

[0012] Preferably, the sum of the heights of the multiple charging frames is less than the height of the support platform; the height of the blocking frame is equal to the sum of the heights of the multiple charging frames.

[0013] Preferably, the cutting piece is connected to a limit plate, and the limit plate is connected to the third linear actuator.

[0014] Preferably, the group of refining devices is located in a mounting frame with an opening at the top. The mounting frame is provided with a mounting cavity for accommodating the refining device. A plurality of fixing rods are provided in the mounting cavity, and the fixing rods are connected to the refining device. A notch for the material receiving device to enter and exit is provided on the right side of the mounting frame.

[0015] Preferably, the conveyor belt is located behind the two second linear actuators.

[0016] Preferably, the first linear actuator includes a body, an installation cavity is provided in the body, a screw is provided in the installation cavity, a screw nut is provided on the screw, and the screw nut is connected to a connecting block; a limiting hole is provided on one side of the installation cavity, and the connecting block is connected to the base plate after passing through the limiting hole; a servo motor is provided at one end of the body.

[0017] The present embodiment provides a kind of processing method of konjac product, it adopts the processing equipment of above-mentioned a kind of konjac product, and comprises the following steps:

[0018] 1. Add drinking water, konjac flour, starch, vegetable oil, edible salt, white sugar, spices, and food additives into a scouring device and stir evenly to obtain a puffed paste;

[0019] 2. Add sodium hydroxide solution to the expanded paste, stir evenly, control the temperature and time, and gelatinize;

[0020] 3. The gelatinized paste is discharged from the discharge port and falls into the receiving device. During this process, the receiving device is controlled by the first linear actuator and the second linear actuator to make the space in the loading frame pass under the discharge port in sequence, so that the paste in the loading frame is uniform.

[0021] 4. After the loading frame is full, the material receiving device moves to the cutting device;

[0022] 5. After the paste is initially shaped, it is cut. During cutting, the cutting blade is located behind the material receiving device through the third linear actuator, and the cutting blade is extended to a suitable height by the second electric telescopic rod. The pressing block is made to reach directly above the material receiving device by the fourth linear actuator and the third electric telescopic rod; then, the cutting block below the pressing block is pressed into the paste by the third electric telescopic rod, and the electromagnetic block is turned on to make the electromagnetic block attract the iron block on the loading frame; then, the first electric telescopic rod is shortened to lower the height of the blocking frame and enable the blocking frame to block the next loading frame; then, the cutting blade is moved by the third linear actuator to pass through the bottom surface of the loading frame, so that the paste in the loading frame is cut off; finally, the cutting blade and the cutting block move together to the top of the conveyor belt and descend a certain distance. The cutting blade leaves the bottom of the loading frame and the paste falls onto the conveyor belt. The cutting block continues to move to the top of the storage box and descends a certain distance. The electromagnetic block is released and the loading frame falls into the storage box.

[0023] 6. Repeat step 5 to cut all the pastes in the receiving device and send them to the conveyor belt.

[0024] Preferably, the paste on the conveyor belt is subsequently rinsed, frozen, seasoned and packaged.

[0025] This equipment makes the scouring and cutting of konjac products very convenient, saves time and labor, and improves the quality of konjac products through the automatic and flexible movement of the material receiving device and the automatic cutting and flexible movement of the cutting device. BRIEF DESCRIPTION OF THE DRAWINGS

[0026] Figure 1 It is a top structural schematic diagram of a processing equipment of a konjac product in the embodiment;

[0027] Figure 2 Schematic diagram of the structure of the scouring device and the material receiving device in the embodiment;

[0028] Figure 3 It is a right side structural schematic diagram of the material receiving device in the embodiment;

[0029] Figure 4Schematic top view of the material receiving device and the mobile platform in the embodiment;

[0030] Figure 5 Schematic top view of the loading frame in the embodiment;

[0031] Figure 6 Schematic structure diagram of the cutting device in the embodiment;

[0032] Figure 7 Schematic structure diagram of the first linear actuator in the embodiment. Detailed implementation manners

[0033] To further understand the content of the present invention, the present invention will be described in detail in combination with the accompanying drawings and embodiments. It should be understood that the embodiments are only for explaining the present invention rather than limiting it.

[0034] Embodiment

[0035] As Figure 1 shown, this embodiment provides a processing device for konjac products, which includes a group of refining devices 110. Each refining device 110 is provided with a discharge port 111 at the bottom, and a material receiving device 120 corresponds to all the discharge ports 111;

[0036] The material receiving device 120 includes a bottom plate 121. Above the bottom plate 121, there is a support platform 122. Above the support platform 122, there are multiple stacked loading frames 123. The multiple loading frames 123 are stuck in a U-shaped retaining frame 124. A baffle 125 is fitted at the notch of the retaining frame 124. The bottom end of the baffle 125 is connected to the support platform 122. The retaining frame 124 is connected with a first electric telescopic rod 126 that can be telescoped up and down. The bottom end of the electric telescopic rod 126 is installed on the support platform 122; A mobile platform 130 is connected below the bottom plate 121. The mobile platform 130 includes a first linear actuator 131 that can move the bottom plate 121 back and forth. Two second linear actuators 132 that can move the first linear actuator 131 left and right are fitted below the first linear actuator 131;

[0037] The mobile platform 130 can move the material receiving device 120 to a cutting device 140. The cutting device 140 includes a horizontal cutting blade 141( Figure 6The cutting block 142 is arranged above the cutting disc 141; the right end of the cutting disc 141 is connected to a third linear actuator 143 that enables the cutting disc 141 to move forward and backward; the third linear actuator 143 is connected to a second electric telescopic rod 144 that can be extended and retracted vertically above the third linear actuator 143; the top of the second electric telescopic rod 144 is connected to the top frame; a pressure block 145 is provided above the cutting block 142; the pressure block 145 is connected to a third electric telescopic rod 146 that can be extended and retracted vertically above the pressure block 145; the top of the third electric telescopic rod 146 is connected to a fourth linear actuator 147 that enables the third electric telescopic rod 146 to move forward and backward; the fourth linear actuator 147 is mounted on the top frame;

[0038] An electromagnetic block 148 is provided at the bottom end of the pressing block 145, and an iron block 127 is provided on the top surface of each charging frame 123, and the electromagnetic block 148 cooperates with the iron block 127;

[0039] A conveyor belt 150 is correspondingly provided below the rear end of the third linear actuator 143 and the middle section of the fourth linear actuator 147 , and a storage box 160 is correspondingly provided below the rear end of the fourth linear actuator 147 .

[0040] The mobile platform 130 can move flexibly, so that it can be positioned below the material receiving device 120 for convenient material receiving. Since the material discharged from the discharge port 111 is paste, the mobile platform 130 can slowly move the material receiving device 120, and the space in the loading frame 123 passes sequentially below the discharge port 111, making the paste in the loading frame 123 uniform; in the material receiving device 120, the cooperation of the U-shaped retaining frame 124 and the baffle 125 can block a plurality of stacked loading frames 123 to prevent the loading frames 123 from slipping. The retaining frame 124 can move up and down under the drive of the first electric telescopic rod 126. In this way, the uppermost loading frame 123 can be released, facilitating the insertion of the cutting blade 141 of the cutting device 140 for horizontal cutting; in the cutting device 140, the cutting block 142 can be pressed against the paste in the lower loading frame 123 under the drive of the third electric telescopic rod 146. In this way, the paste can be cut into a grid pattern. After grid cutting and horizontal cutting, the cutting of the paste in one loading frame 123 is completed. Then, under the drive of the third linear actuator 143 and the fourth linear actuator 147, the entire loading frame 123 is transferred to the conveyor belt 150. Due to the cooperation of the electromagnet 148 and the iron block 127, the pressing block 145 can suck the loading frame 123. When the cutting blade 141 is removed, the cut paste falls onto the conveyor belt 150 and is conveyed away (adjust the appropriate height through the second electric telescopic rod 144 and the third electric telescopic rod 146 to prevent damage when the paste falls); the fourth linear actuator 147 continues to drive the loading frame 123 to move above the storage box 160 (similarly, adjust the appropriate height to prevent damage when the loading frame 123 falls). When the electromagnet 148 is powered off, the loading frame 123 can fall into the storage box 160. Then, through the cooperation of the third linear actuator 143, the second electric telescopic rod 144, the third electric telescopic rod 146, the fourth linear actuator 147 and the electromagnet 148, the cutting of the paste in the next loading frame 123 is carried out. One material receiving device 120 corresponds to multiple refining devices 110, which makes the material receiving more efficient.

[0041] Through the automatic and flexible movement of the material receiving device 120 and the automatic cutting and flexible movement of the cutting device 140 of this equipment, the refining and cutting of konjac products are very convenient, time-saving and labor-saving, and the quality of konjac products is better.

[0042] The first electric telescopic rod 126 is located behind the support platform 122, and the baffle 125 is located in front of the support platform 122.

[0043] Since the cutting blade 141 moves back and forth, the baffle 125 needs to be in front of the support platform 122, and the first electric telescopic rod 126 is arranged behind the support platform 122, which can facilitate the up and down telescoping of the U-shaped retaining frame 124.

[0044] The length and width of the loading frame 123 are respectively equal to the length and width of the supporting platform 122 .

[0045] The sum of the heights of the plurality of loading frames 123 is less than the height of the support platform 122 ; the height of the blocking frame 124 is equal to the sum of the heights of the plurality of loading frames 123 .

[0046] The sizes of the loading frame 123 and the blocking frame 124 correspond to those of the support platform 122 , which facilitates the movement of the blocking frame 124 and also ensures that the position of the loading frame 123 is very stable when blocked.

[0047] The cutting piece 141 is connected to the limiting plate 149 , and the limiting plate 149 is connected to the third linear actuator 143 .

[0048] The limiting plate 149 has a limiting function to prevent the cutting blade 141 from hitting the baffle 125 when a fault occurs.

[0049] The group of refining devices 110 are located in a mounting frame 200, the top of which is open. The mounting frame 200 is provided with a mounting cavity 201 for accommodating the refining device 110. A plurality of fixing rods 202 are provided in the mounting cavity 201, and the fixing rods 202 are connected to the refining device 110; a notch 203 for the material receiving device 120 to enter and exit is provided on the right side of the mounting frame 200.

[0050] The mounting frame 200 can stabilize the position of the scouring device 110. The structure of the scouring device 110 is prior art, for example, patents with publication numbers CN208597662U and CN217528217U disclose the structure of a konjac product scouring machine.

[0051] The conveyor belt 150 is located behind the two second linear actuators 132. Like this, the conveyor belt 150 will not hinder the movement of the material receiving device 120.

[0052] The first linear actuator 131 includes a body 310, which has an installation cavity 311 in the body 310, a screw rod 312 in the installation cavity 311, a screw rod nut 313 sleeved on the screw rod 312, and the screw rod nut 313 is connected to a connecting block 314; a limiting hole 315 is provided on one side of the installation cavity 311, and the connecting block 314 is connected to the base plate 121 after passing through the limiting hole 315; a servo motor 316 is provided at one end of the body 310.

[0053] The structure of the linear actuator is the existing technology. In this case, the internal structures of the second linear actuator 132, the third linear actuator 143, and the fourth linear actuator 147 are the same as the internal structure of the first linear actuator 131, except for the different connecting objects.

[0054] The present embodiment provides a kind of processing method of konjac product, it adopts the processing equipment of above-mentioned a kind of konjac product, and comprises the following steps:

[0055] 1. Add drinking water, konjac flour, starch, vegetable oil, edible salt, white sugar, spices, and food additives (monosodium glutamate, 5,-disodium glutamate, sodium dehydroacetate, and boron dioxide) into the scouring device 110 and stir evenly to obtain a puffed paste;

[0056] 2. Add sodium hydroxide solution (concentration 20g / L, 100L) to the expanded paste and stir evenly (alkali flow rate 0.7-1.0L / min, control pH value at 11.8-12.0, cabin water pH value 11.0-11.6, temperature control 80℃-85℃). Control the temperature and time to gelatinize (water temperature controlled at 27-31℃, time 70-90min);

[0057] 3. The gelatinized paste is discharged from the discharge port 111 and falls into the receiving device 120. During this process, the receiving device 120 is controlled by the first linear actuator 131 and the second linear actuator 132 to make the space in the loading frame 123 pass under the discharge port 111 in sequence, so that the paste in the loading frame 123 is uniform.

[0058] 4. After the loading frame 123 is full, the receiving device 120 moves to the cutting device 140;

[0059] 5. After the paste is initially shaped, it is cut. During cutting, the cutting blade 141 is positioned behind the material receiving device 120 by the third linear actuator 143. The cutting blade 141 is extended and retracted by the second electric telescopic rod 144 to a suitable height. The pressing block 145 is positioned directly above the material receiving device 120 by the fourth linear actuator 147 and the third electric telescopic rod 146. Then, the third electric telescopic rod 146 is lowered to press the cutting block 142 below the pressing block 145 into the paste (the cutting block 142 can be replaced with different templates to cut into different shapes). The electromagnetic block 148 is turned on to attract the iron block 127 on the loading frame 123. The first electric telescopic rod 126 shortens, lowering the height of the blocking frame 124 so that it can block the next loading frame 123. Next, the third linear actuator 143 moves the cutting blade 141, passing through the bottom surface of the loading frame 123, thereby cutting the paste in the loading frame 123. Finally, the cutting blade 141 and the cutting block 142 move together to the top of the conveyor belt 150 and descend a certain distance. The cutting blade 141 clears the bottom of the loading frame 123, and the paste falls onto the conveyor belt 150. The cutting block 142 continues to move to the top of the storage box 160 and descends a certain distance. The electromagnetic block 148 is released, and the loading frame 123 falls into the storage box 160.

[0060] 6. Repeat step 5 to cut all the pastes in the receiving device 120 and send them to the conveyor belt 150.

[0061] The paste on the conveyor belt 150 is subsequently rinsed (to remove excess alkali), frozen, seasoned, and packaged.

[0062] This method can better transfer the paste to the cutting device 140, and after the paste is initially shaped, it can perform automatic grid cutting and horizontal cutting to cut the entire paste into small pieces. After the cutting is completed, the small pieces of paste can be transported away through the conveyor belt, and the loading frame 123 is rotated to the storage box 160. It is very convenient, stable to operate, and efficient.

[0063] The above is a schematic description of the present invention and its embodiments, which is not restrictive. The drawings show only one embodiment of the present invention, and the actual structure is not limited thereto. Therefore, if a person skilled in the art is inspired by this and, without departing from the purpose of the present invention, designs a structure and embodiment similar to this technical solution without inventiveness, they shall fall within the scope of protection of the present invention.

Claims

1. A processing equipment for konjac products, characterized in that: It includes a set of refining devices (110). Each refining device (110) has a discharge port (111) at its bottom, and there is a material receiving device (120) corresponding to all the discharge ports (111) below. The material receiving device (120) includes a bottom plate (121). Above the bottom plate (121), there is a support platform (122). Above the support platform (122), there are multiple stacked loading frames (123). The multiple loading frames (123) are stuck within a U-shaped retaining frame (124). At the notch of the retaining frame (124), there is a baffle (125) fitted. The bottom end of the baffle (I25) is connected to the support platform (122). The retaining frame (124) is connected to a first electric telescopic rod (126) that can expand and contract vertically. The bottom end of the electric telescopic rod (126) is installed on the support platform (122). Below the bottom plate (121), there is a moving platform (130). The moving platform (130) includes a first linear actuator (131) that can move the bottom plate (121) back and forth. Below the first linear actuator (131), there are two second linear actuators (132) that can move the first linear actuator (131) left and right. The moving platform (130) can move the material receiving device (120) to a cutting device (140). The cutting device (140) includes a horizontal cutting blade (141) and a grid-shaped cutting block (142). The cutting block (142) is located above the cutting blade (141). The right end of the cutting blade (141) is connected to a third linear actuator (143) that can move the cutting blade (141) back and forth. Above the third linear actuator (143), there is a second electric telescopic rod (144) that can expand and contract vertically. The top end of the second electric telescopic rod (144) is connected to the top frame. Above the cutting block (142), there is a pressing block (145). Above the pressing block (145), there is a third electric telescopic rod (146) that can expand and contract vertically. The top end of the third electric telescopic rod (146) is connected to a fourth linear actuator (147) that can move the third electric telescopic rod (146) back and forth. The fourth linear actuator (147) is installed on the top frame. The bottom end of the pressing block (145) has an electromagnetic block (148). On the top surface of each loading frame (123), there is an iron block (127). The electromagnetic block (148) and the iron block (127) cooperate. Below the rear end of the third linear actuator (143) and the middle section of the fourth linear actuator (147), there is a conveyor belt (150) corresponding to them. Below the rear end of the fourth linear actuator (147), there is a storage box (160) corresponding to it.

2. the processing equipment of a kind of konjac product according to claim 1, is characterized in that: The first electric telescopic rod (126) is located behind the support platform (122), and the baffle (125) is located in front of the support platform (122).

3. the processing equipment of a kind of konjac product according to claim 2, is characterized in that: The length and width of the loading frame (123) are respectively equal to the length and width of the support platform (122).

4. the processing equipment of a kind of konjac product according to claim 3, is characterized in that: The sum of the heights of the multiple loading frames (123) is less than the height of the support platform (122); the height of the retaining frame (124) is equal to the sum of the heights of the multiple loading frames (123).

5. the processing equipment of a kind of konjac product according to claim 4, is characterized in that: The cutting blade (141) is connected with a limiting plate (149), and the limiting plate (149) is connected to the third linear actuator (143).

6. the processing equipment of a kind of konjac product according to claim 5 is characterized in that: The group of scouring devices (110) is located in a mounting frame (200). The top of the mounting frame (200) is open. The mounting frame (200) is provided with a mounting cavity (201) for accommodating the scouring devices (110). A plurality of fixing rods (202) are provided in the mounting cavity (201). The fixing rods (202) are connected to the scouring devices (110). A notch (203) for the material receiving device (120) to enter and exit is provided on the right side of the mounting frame (200).

7. the processing equipment of a kind of konjac product according to claim 6 is characterized in that: The conveyor belt (150) is located behind the two second linear actuators (132).

8. the processing equipment of a kind of konjac product according to claim 7 is characterized in that: The first linear actuator (131) comprises a body (310), a mounting cavity (311) is provided in the body (310), a screw rod (312) is provided in the mounting cavity (311), a screw rod nut (313) is sleeved on the screw rod (312), and the screw rod nut (313) is connected to a connecting block (314); a limiting hole (315) is provided on one side of the mounting cavity (311), and the connecting block (314) is connected to the bottom plate (121) after passing through the limiting hole (315); and a servo motor (316) is provided at one end of the body (310).

9. A processing method for a konjac product, characterized in that: It adopts the processing equipment of any described a kind of konjac product among the claim 1-8, and comprises the following steps:

1. Adding drinking water, konjac flour, starch, vegetable oil, edible salt, white sugar, spices, and food additives into a refining device (110) and stirring evenly to obtain a puffed paste; 2. Add sodium hydroxide solution to the expanded paste, stir evenly, control the temperature and time, and gelatinize; 3. The gelatinized paste is discharged from the discharge port (111) and falls into the receiving device (120); during this process, the receiving device (120) is controlled by the first linear actuator (131) and the second linear actuator (132) so that the space in the loading frame (123) passes through the bottom of the discharge port (111) in sequence, so that the paste in the loading frame (123) is uniform; 4. After the loading frame (123) is full, the material receiving device (120) moves to the cutting device (140); 5. After the paste is initially shaped, it is cut. During cutting, the cutting blade (141) is positioned behind the material receiving device (120) by the third linear actuator (143), and the cutting blade (141) is extended and retracted by the second electric telescopic rod (144) to a suitable height. The pressing block (145) is positioned directly above the material receiving device (120) by the fourth linear actuator (147) and the third electric telescopic rod (146). Then, the cutting block (142) below the pressing block (145) is pressed into the paste by descending the third electric telescopic rod (146), and the electromagnetic block (148) is turned on to attract the iron block (127) on the loading frame (123). Then, the first electric telescopic rod (126) is shortened to The blocking frame (124) is lowered in height so that the blocking frame (124) can block the next loading frame (123); then, the cutting blade (141) is moved by the third linear actuator (143) to pass through the bottom surface of the loading frame (123), so that the paste in the loading frame (123) is cut off; finally, the cutting blade (141) and the cutting block (142) move together to the top of the conveyor belt (150) and descend a certain distance, the cutting blade (141) leaves the bottom of the loading frame (123), and the paste falls onto the conveyor belt (150), the cutting block (142) continues to move, moves to the top of the storage box (160), and descends a certain distance, releasing the electromagnetic block (148), and the loading frame (123) falls into the storage box (160); 6. Repeat step 5 to cut all the pastes in the receiving device (120) and send them to the conveyor belt (150).

10. The processing method of a konjac product according to claim 9, wherein: The paste on the conveyor belt (150) is subsequently rinsed, frozen, seasoned, and packaged.

Citation Information

Patent Citations

  • Konjaku scouring machine

    CN208597662U

  • Konjak product refining machine

    CN217528217U

  • Special production device for processing konjac vegetarian tripes

    CN111136704A

  • Quick processing device for seaweed and konjak bursting

    CN209594723U