Circulating heating production equipment for shredded konjac

By designing a circulating heating production equipment for konjac noodles, precise control and uniformity of heating time were achieved, solving the problem of inconsistent quality caused by manual harvesting, improving production efficiency and saving resources.

CN223554227UActive Publication Date: 2025-11-18HUBEI SHUIZHIYUN FOOD CO LTD
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Patent Information

Application Number
CN202423197075.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-24
Publication Date
2025-11-18
Estimated Expiration
2034-12-24

AI Technical Summary

Technical Problem

In existing technologies, it is difficult to precisely control the heating time when manually scooping konjac noodles, resulting in inconsistent cooking levels. Furthermore, it is difficult to scoop out all the cooked konjac noodles at once, affecting product quality and efficiency.

Method used

Design a konjac noodle circulating heating production equipment, which uses a mesh chain conveyor and drive components to achieve continuous heating and water control of konjac noodles, and combines a pushing component to automatically flatten the konjac noodles, ensuring uniform heating and timely removal, and avoiding overheating.

Benefits of technology

It achieves accurate control of the heating time of konjac noodles, ensuring consistent product quality and production efficiency, while saving water and heat energy, reducing waste, and featuring environmental protection and energy saving characteristics.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application relates to a konjac noodle cyclic heating production device, which comprises: a heating box, one end of the heating box is provided with a feed inlet, and the heating box is internally provided with a heating pipe; the first network chain conveyor is horizontally arranged in the heating box; the water collecting box is arranged at one end, far away from the feeding hole, of the heating box; the second network chain conveyor is obliquely arranged in the water collecting box; the driving assembly is arranged on the heating box and connected with the first network chain conveyor and the second network chain conveyor so as to drive the first network chain conveyor and the second network chain conveyor to operate; according to the device, continuous heating curing and water control can be automatically carried out on the konjac shreds, manual fishing of the konjac shreds is not needed, the accuracy of heating time of the konjac shreds and timely fishing can be ensured, and the konjac shreds are prevented from being excessively heated, so that the production quality and the quality consistency of the konjac shreds are ensured, and the production efficiency of the konjac shreds is improved. And meanwhile, the controlled water can be recycled, so that the device is energy-saving, environment-friendly and high in practicability.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of konjac silk production, and particularly relates to a konjac silk circulating heating production device. BACKGROUND

[0002] At present, in the production process of konjac noodles, the traditional processing method includes making konjac into konjac silk, then heating and aging the formed konjac silk, and finally manually winding and knotting. Specifically, the formed konjac silk is usually directly put into a heating pool for water heating, and after being heated to a certain degree, the aged konjac silk is manually fished out for subsequent processing.

[0003] However, this manual fishing method has obvious defects. Since the manual operation is difficult to accurately control the heating time of the konjac silk, the aging degree of different batches of konjac silk is different, it is difficult to ensure the consistency of product quality, and at the same time, the staff often cannot completely fish out all the aged konjac silk at one time, which will prolong the residence time of the konjac silk in the heating pool, causing the quality of the konjac silk to be affected due to excessive heating, and bringing inconvenience to the production process.

[0004] In view of the above problems, a konjac silk circulating heating production device is designed. CONTENT OF THE INVENTION

[0005] The embodiment of the present application provides a konjac silk circulating heating production device to solve the problem that in the related art, the aged konjac silk is fished out by manual operation, which is difficult to accurately control the heating time of the konjac silk, and at the same time, it is difficult to completely fish out all the aged konjac silk at one time, which will affect the quality of the konjac silk product.

[0006] In a first aspect, a konjac silk circulating heating production device is provided, which comprises:

[0007] A heating box is provided with an inlet at one end, and a heating pipe is arranged in the heating box.

[0008] A first mesh chain conveyor is horizontally arranged in the heating box.

[0009] A water collecting box is arranged at the end of the heating box away from the inlet, and the water collecting box is communicated with the heating box.

[0010] A second mesh chain conveyor is arranged in the water collecting box in an inclined manner, and the lower end of the second mesh chain conveyor corresponds to the end of the first mesh chain conveyor away from the inlet.

[0011] A driving assembly is arranged on the heating box and connected with the first mesh chain conveyor and the second mesh chain conveyor to drive the first mesh chain conveyor and the second mesh chain conveyor to operate.

[0012] In some embodiments, the first mesh chain conveyor comprises a first conveying mesh belt, two groups of first transmission members and a plurality of first supporting members, the first conveying mesh belt is located in the heating box, the plurality of first supporting members are arranged in the first conveying mesh belt, the first supporting member comprises a first rotating shaft and a plurality of first supporting wheels, the first supporting wheels are located in the first conveying mesh belt, the first rotating shaft penetrates through the plurality of first supporting wheels and is rotationally connected with the heating box, the two groups of first transmission members are symmetrically arranged on the two sides of the first conveying mesh belt, the first transmission member comprises a first chain and two groups of first sprockets, the first chain is sleeved on the two groups of first sprockets, the first chain is connected with the first conveying mesh belt, the first sprocket is sleeved on the first rotating shaft, and the two groups of first sprockets are respectively located at the two ends of the first conveying mesh belt.

[0013] The second mesh chain conveyor comprises a second conveying mesh belt, two groups of second transmission members and a plurality of second supporting members, the second conveying mesh belt is obliquely arranged in the water collecting box, the plurality of second supporting members are arranged in the second conveying mesh belt, the second supporting member comprises a second rotating shaft and a plurality of second supporting wheels, the second supporting wheels are located in the second conveying mesh belt, the second rotating shaft penetrates through the plurality of second supporting wheels and is rotationally connected with the water collecting box, the two groups of second transmission members are symmetrically arranged on the two sides of the second conveying mesh belt, the second transmission member comprises a second chain and two groups of second sprockets, the second chain is sleeved on the two groups of second sprockets, the second chain is connected with the second conveying mesh belt, the second sprocket is sleeved on the second rotating shaft, and the two groups of second sprockets are respectively located at the two ends of the second conveying mesh belt.

[0014] The driving assembly comprises a motor, a first transmission belt, a first transmission wheel, a second transmission wheel and a third transmission wheel, the motor is arranged on one side of the heating box, the first transmission wheel is arranged on the output end of the motor, the second transmission wheel is sleeved on the first rotating shaft, the third transmission wheel is sleeved on the second rotating shaft, and the first transmission belt is sleeved on the first transmission wheel, the second transmission wheel and the third transmission wheel.

[0015] In some embodiments, the pushing assembly comprises a matching block, a connecting plate, a transmission assembly, two groups of guide rods and a plurality of vertical rods, the two groups of guide rods are arranged on the heating box, the matching block is sleeved on the two groups of guide rods and is in sliding connection with the two groups of guide rods, the connecting plate is arranged at the lower end of the matching block, the plurality of vertical rods are arranged at the lower end of the connecting plate, the vertical rods are located above the first conveying mesh belt, and the transmission assembly is arranged on the heating box and connected with the matching block to drive the matching block to make reciprocating motion.

[0016] In some embodiments, the transmission assembly comprises a reciprocating wire rod, a fourth transmission wheel, a fifth transmission wheel and a second transmission belt, the reciprocating wire rod is rotationally arranged in the heating box, the reciprocating wire rod penetrates through the matching block and matches with the matching block, the fourth transmission wheel is sleeved on the first rotating shaft, the fifth transmission wheel is sleeved on the reciprocating wire rod, and the second transmission belt is sleeved on the fourth transmission wheel and the fifth transmission wheel.

[0017] In some embodiments, the plurality of vertical rods are distributed in a tapered manner on the connecting plate.

[0018] In some embodiments, the heating pipes are distributed in an S-shaped manner in the heating box.

[0019] The embodiment of the present application provides a konjak silk circulating heating production equipment. The first mesh chain conveyor and the second mesh chain conveyor are matched to automatically continuously heat and mature the konjak silk and control water, and the konjak silk is uniformly laid on the first conveying mesh belt through the vertical rods in continuous reciprocating motion, so that the konjak silk is fully and uniformly contacted with hot water, so that the konjak silk does not need to be manually salvaged, the accuracy of the heating time of the konjak silk and the timely salvaging can be ensured, the konjak silk is prevented from being excessively heated, the production quality and consistency of the konjak silk are ensured, the controlled water can be recycled, water source and heat energy are prevented from being wasted due to direct discharge of the konjak silk, energy saving and environmental protection are achieved, and the practicality is high. BRIEF DESCRIPTION OF DRAWINGS

[0020] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the drawings needed in the embodiment description will be briefly introduced. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can be obtained by those skilled in the art without creative labor.

[0021] Fig. 1 The three-dimensional structure schematic diagram provided by the embodiment of the present application is provided.

[0022] Fig. 2 The three-dimensional cross-sectional structure schematic diagram provided by the embodiment of the present application is provided.

[0023] Fig. 3 The three-dimensional structure schematic diagram of the pushing assembly provided by the embodiment of the present application is provided.

[0024] In the figure: 1, heating box; 11, feed inlet; 12, heating pipe; 2, first mesh chain conveyor; 21, first conveying mesh belt; 22, first transmission member; 221, first chain; 222, first sprocket; 23, first support member; 231, first rotating shaft; 232, first support wheel; 3, water collecting box; 4, second mesh chain conveyor; 41, second conveying mesh belt; 42, second transmission member; 421, second chain; 422, second sprocket; 43, second support member; 431, second rotating shaft; 432, second support wheel; 5, driving assembly; 51, motor; 52, first transmission belt; 53, first transmission wheel; 54, second transmission wheel; 55, third transmission wheel; 6, material pushing assembly; 61, matching block; 62, connecting plate; 63, transmission assembly; 631, reciprocating screw rod; 632, fourth transmission wheel; 633, fifth transmission wheel; 634, second transmission belt; 64, guide rod; 65, vertical rod. DETAILED DESCRIPTION

[0025] To make the objectives, technical solutions, and advantages of the embodiments of the present application clearer, the following will be combined with the accompanying drawings for the embodiments of the present application to make a clear and complete description of the technical solutions in the embodiments of the present application. Obviously, the described embodiments are a part of the embodiments of the present application, rather than all the embodiments of the present application. Based on the embodiments in the present application, all other embodiments obtained by a person of ordinary skill in the art without creative work fall within the protection scope of the present application.

[0026] The embodiment of the present application provides a konjak silk cyclic heating production device, which can solve the problem in the related art that the artificial salvaging of the cooked konjak silk is difficult to accurately control the heating time of the konjak silk, and is difficult to completely salvage all the cooked konjak silk at one time, thereby affecting the quality of the konjak silk product.

[0027] Please refer to Figs. 1-3 A konjak silk cyclic heating production device, which comprises a heating box 1, a first mesh chain conveyor 2, a water collecting box 3, a second mesh chain conveyor 4, and a driving assembly 5, one end of the heating box 1 is provided with a feed inlet 11, the heating box 1 is provided with a heating pipe 12 inside, the first mesh chain conveyor 2 is horizontally arranged in the heating box 1, the water collecting box 3 is arranged at the end of the heating box 1 away from the feed inlet 11, the water collecting box 3 is communicated with the heating box 1, the second mesh chain conveyor 4 is arranged in the water collecting box 3 in an inclined manner, the lower end of the second mesh chain conveyor 4 corresponds to the end of the first mesh chain conveyor 2 away from the feed inlet 11, and the driving assembly 5 is arranged on the heating box 1 and connected with the first mesh chain conveyor 2 and the second mesh chain conveyor 4, so as to drive the first mesh chain conveyor 2 and the second mesh chain conveyor 4 to operate.

[0028] In use, the heating tank 1 is filled with water, and the water in the heating tank 1 is heated by the heating pipe 12. After the konjac noodles are pressed and formed, the konjac noodles are placed on the first mesh conveyor 2 through the feeding port 11, and the first mesh conveyor 2 and the second mesh conveyor 4 are driven to move by the driving assembly 5. The first mesh conveyor 2 drives the konjac noodles to move to the second mesh conveyor 4. When the konjac noodles move on the first mesh conveyor 2, they are soaked in hot water for heating and curing. When the konjac noodles enter the second mesh conveyor 4 from the first mesh conveyor 2, the konjac noodles are in a long strip shape, so the worker only needs to place the head of the konjac noodles on the second mesh conveyor 4, and the konjac noodles will continue to enter the second mesh conveyor 4 from the first mesh conveyor 2. The second mesh conveyor 4 is inclined, which drives the konjac noodles to move away from the hot water, so that the konjac noodles are suspended in the air. In this way, the konjac noodles can be controlled to remove the hot water adhered to the konjac noodles and flow back to the heating tank 1 through the water collecting box 3 for recycling. Finally, the konjac noodles that have completed the water control are discharged from the second mesh conveyor 4.

[0029] The device can automatically heat and cure the konjac noodles continuously and control the water content, so that manual fishing of the konjac noodles is not required. The length and feeding speed of the first mesh conveyor 2 can be controlled to control the heating time of the konjac noodles, so that the accuracy and timeliness of the heating time of the konjac noodles can be ensured, the konjac noodles are not overheated, the production quality and consistency of the konjac noodles are ensured, the controlled water can be recycled, water and heat energy are not wasted, energy saving and environmental protection are achieved, and the device has high practicality.

[0030] Specifically, in the embodiment, the first mesh conveyor 2 includes a first conveying mesh belt 21, two groups of first transmission members 22, and a plurality of first support members 23. The first conveying mesh belt 21 is located in the heating tank 1. The plurality of first support members 23 are arranged in the first conveying mesh belt 21. The first support member 23 includes a first rotating shaft 231 and a plurality of first support wheels 232. The first support wheels 232 are located in the first conveying mesh belt 21. The first rotating shaft 231 penetrates through the plurality of first support wheels 232 and is rotationally connected with the heating tank 1. The two groups of first transmission members 22 are symmetrically arranged on the two sides of the first conveying mesh belt 21. The first transmission member 22 includes a first chain 221 and two groups of first sprockets 222. The first chain 221 is sleeved on the two groups of first sprockets 222. The first chain 221 is connected with the first conveying mesh belt 21. The first sprockets 222 are sleeved on the first rotating shaft 231. The two groups of first sprockets 222 are located at the two ends of the first conveying mesh belt 21, respectively.

[0031] The second net chain conveyor 4 comprises a second conveying net belt 41, two groups of second transmission members 42 and a plurality of second support members 43, the second conveying net belt 41 is arranged in the water collecting box 3 in an inclined manner, the second support members 43 are arranged in the second conveying net belt 41, the second support members 43 comprise second rotating shafts 431 and a plurality of second support wheels 432, the second support wheels 432 are located in the second conveying net belt 41, the second rotating shafts 431 penetrate through the second support wheels 432 and are rotationally connected with the water collecting box 3, the two groups of second transmission members 42 are symmetrically arranged on two sides of the second conveying net belt 41, the second transmission members 42 comprise second chains 421 and two groups of second sprockets 422, the second chains 421 are sleeved on the two groups of second sprockets 422, the second chains 421 are connected with the second conveying net belt 41, the second sprockets 422 are sleeved on the second rotating shafts 431, and the two groups of second sprockets 422 are located at two ends of the second conveying net belt 41 respectively;

[0032] The driving assembly 5 comprises a motor 51, a first transmission belt 52, a first transmission sprocket 53, a second transmission sprocket 54 and a third transmission sprocket 55, the motor 51 is arranged on one side of the heating box 1, the first transmission sprocket 53 is arranged on an output end of the motor 51, the second transmission sprocket 54 is sleeved on the first rotating shaft 231, the third transmission sprocket 55 is sleeved on the second rotating shaft 431, and the first transmission belt 52 is sleeved on the first transmission sprocket 53, the second transmission sprocket 54 and the third transmission sprocket 55;

[0033] In this way, when in use, the motor 51 can drive the first transmission sprocket 53 to rotate, the first transmission sprocket 53 drives the second transmission sprocket 54 and the third transmission sprocket 55 to rotate through the first transmission belt 52, the second transmission sprocket 54 drives the first rotating shaft 231 to rotate, and the first rotating shaft 231 drives the first sprocket 222 to rotate, so that the first sprocket 222 drives the first conveying net belt 21 to move through the cooperation transmission of the first sprocket 222 and the first chain 221, so that the konjak silk is conveyed, and the plurality of first support wheels 232 can support the first conveying net belt 21 to ensure the stable operation of the first conveying net belt 21;

[0034] Meanwhile, the third transmission wheel 55 will drive the second rotating shaft 431 to rotate, so as to drive the second chain wheel 422 to rotate through the second rotating shaft 431, so that the second conveying mesh belt 41 can be driven to move through the cooperation of the second chain wheel 422 and the second chain 421, so as to convey and control water of the konjak silk, and meanwhile, the second supporting wheels 432 can support the second conveying mesh belt 41, so as to ensure the stable operation of the second conveying mesh belt 41, so that the first mesh chain conveyor 2 and the second mesh chain conveyor 4 can be driven to operate at the same time through one motor 51, so that the driving source can be reduced, the equipment cost can be reduced, and meanwhile, the stability of the device can be ensured, and the practicability is high.

[0035] Further, in the embodiment, the pushing assembly 6 is further included, the pushing assembly 6 includes a matching block 61, a connecting plate 62, a transmission assembly 63, two groups of guide rods 64 and a plurality of vertical rods 65, the two groups of guide rods 64 are arranged on the heating box 1, the matching block 61 is sleeved on the two groups of guide rods 64 and is in sliding connection with the two groups of guide rods 64, the connecting plate 62 is arranged at the lower end of the matching block 61, the plurality of vertical rods 65 are arranged at the lower end of the connecting plate 62, the vertical rods 65 are located above the first conveying mesh belt 21, and the transmission assembly 63 is arranged on the heating box 1 and is connected with the matching block 61, so as to drive the matching block 61 to reciprocate.

[0036] In this way, when the konjak silk needs to be heated and matured, the matching block 61 can be driven to reciprocate through the transmission assembly 63, the matching block 61 drives the plurality of vertical rods 65 to move left and right through the connecting plate 62, and meanwhile, the stability of the vertical rods 65 in operation can be ensured through the limiting effect of the sliding connection of the guide rods 64 and the matching block 61, so that the konjak silk on the first conveying mesh belt 21 can be continuously pushed in the process of the vertical rods 65 moving left and right, so as to avoid the konjak silk from being stacked together when falling on the first conveying mesh belt 21 and affecting the maturation efficiency of the konjak silk, so that the konjak silk can be evenly laid on the first conveying mesh belt 21 through the vertical rods 65, so that the konjak silk can be in full and uniform contact with hot water, so as to ensure the heating uniformity and production efficiency of the konjak silk, and the practicability is high.

[0037] Further, the transmission assembly 63 includes a reciprocating wire rod 631, a fourth transmission wheel 632, a fifth transmission wheel 633 and a second transmission belt 634, the reciprocating wire rod 631 is rotationally arranged in the heating box 1, the reciprocating wire rod 631 penetrates through the matching block 61 and cooperates with the matching block 61, the fourth transmission wheel 632 is sleeved on the first rotating shaft 231, the fifth transmission wheel 633 is sleeved on the reciprocating wire rod 631, and the second transmission belt 634 is sleeved on the fourth transmission wheel 632 and the fifth transmission wheel 633.

[0038] Thus when the first conveying net belt 21 is running, the first rotating shaft 231 drives the fourth transmission wheel 632 to rotate, then the fourth transmission wheel 632 drives the fifth transmission wheel 633 to rotate through the second transmission belt 634, so that the reciprocating screw rod 631 drives the cooperating block 61 to move along the reciprocating screw rod 631 through the cooperating transmission belt, so that the cooperating block 61 drives the vertical rod 65 to move through the connecting plate 62 to spread the konjak silk, so that the device can automatically convey, spread, heat and drain the konjak silk, without setting up another driving source, which is convenient to use.

[0039] Preferably, the plurality of vertical rods 65 are distributed in a conical shape on the connecting plate 62.

[0040] Thus when the plurality of vertical rods 65 spread the konjak silk, the outermost vertical rod 65 first drives the uppermost konjak silk to move, then with the movement of the vertical rod 65, the depth of the vertical rod 65 gradually decreases, so that the height of the konjak silk gradually decreases, so that the konjak silk is gradually spread by the plurality of vertical rods 65 with gradually changing height, avoiding the konjak silk being excessively stretched by the vertical rod 65 directly spreading the konjak silk at the bottom, so as to ensure the quality of the konjak silk, which is practical.

[0041] Preferably, the heating pipe 12 is distributed in an S shape in the heating box 1.

[0042] Thus the contact area of the heating pipe 12 and the heated water in the heating box 1 is increased, so that the konjak silk can be heated more uniformly and sufficiently, which is convenient to use.

[0043] In the description of the present application, it should be noted that the terms "upper", "lower" and the like indicate the orientation or positional relationship shown in the drawings, which is only for the convenience of describing the present application and simplifying the description, and does not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, therefore it cannot be understood as a limitation of the present application. Unless otherwise specified and limited, the terms "mounting", "connecting", "connecting" should be understood broadly, for example, it can be fixed connection, or detachable connection, or integral connection; it can be mechanical connection, or electrical connection; it can be direct connection, or indirect connection through intermediate medium, or internal communication of two elements. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.

[0044] It should be noted that, in the present application, the relational terms such as "first" and "second", and the like, are used solely to distinguish one entity or action from another, without necessarily requiring or implying any actual relationship or order between such entities or actions. Moreover, the terms "comprises", "comprising", or any other variations thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but can also include other elements not expressly listed or inherent to such process, method, article, or apparatus. An element proceeded by "comprises... a" does not, without more constraints, exclude the existence of additional identical elements in the process, method, article, or apparatus that comprises the element.

[0045] The foregoing is merely illustrative of the principles of the application and various modifications can be made by those skilled in the art without departing from the spirit and scope of the application. The above embodiments are illustrative, and not restrictive, of the scope of the application.

Claims

1. A circulating heating production equipment for konjac noodles, characterized in that, It includes: A heating box (1) is provided with a feed inlet (11) at one end and a heating tube (12) is provided inside the heating box (1); The first mesh conveyor (2) is horizontally set inside the heating box (1); A water collection box (3) is located at one end of the heating box (1) away from the feed inlet (11), and the water collection box (3) is connected to the heating box (1); The second mesh chain conveyor (4) is inclinedly installed in the water collection box (3), and the lower end of the second mesh chain conveyor (4) corresponds to the end of the first mesh chain conveyor (2) away from the feed inlet (11); A drive assembly (5) is mounted on the heating box (1) and connected to the first mesh chain conveyor (2) and the second mesh chain conveyor (4) to drive the first mesh chain conveyor (2) and the second mesh chain conveyor (4) to operate.

2. The konjac noodle circulating heating production equipment as described in claim 1, characterized in that: The first mesh conveyor (2) includes a first conveyor belt (21), two sets of first transmission components (22), and several first support components (23). The first conveyor belt (21) is located inside the heating box (1), and the several first support components (23) are all located inside the first conveyor belt (21). The first support component (23) includes a first rotating shaft (231) and several first support wheels (232). The first support wheels (232) are located inside the first conveyor belt (21), and the first rotating shaft (231) passes through the several first support wheels (232). It is rotatably connected to the heating box (1). Two sets of the first transmission components (22) are symmetrically arranged on both sides of the first conveyor belt (21). The first transmission component (22) includes a first chain (221) and two sets of first sprockets (222). The first chain (221) is sleeved on the two sets of first sprockets (222). The first chain (221) is connected to the first conveyor belt (21). The first sprockets (222) are sleeved on the first rotating shaft (231). The two sets of first sprockets (222) are located at both ends of the first conveyor belt (21). The second mesh conveyor (4) includes a second conveyor belt (41), two sets of second transmission components (42), and several second support components (43). The second conveyor belt (41) is inclinedly arranged inside the water collection box (3). Several second support components (43) are all arranged inside the second conveyor belt (41). Each second support component (43) includes a second rotating shaft (431) and several second support wheels (432). The second support wheels (432) are located inside the second conveyor belt (41), and the second rotating shaft (431) passes through several second support wheels (432). 2) and rotates to connect with the water collection box (3). Two sets of the second transmission components (42) are symmetrically arranged on both sides of the second conveyor belt (41). The second transmission component (42) includes a second chain (421) and two sets of second sprockets (422). The second chain (421) is sleeved on the two sets of second sprockets (422). The second chain (421) is connected to the second conveyor belt (41). The second sprockets (422) are sleeved on the second rotating shaft (431). The two sets of second sprockets (422) are located at both ends of the second conveyor belt (41). The drive assembly (5) includes a motor (51), a first transmission belt (52), a first transmission wheel (53), a second transmission wheel (54), and a third transmission wheel (55). The motor (51) is located on one side of the heating box (1). The first transmission wheel (53) is located at the output end of the motor (51). The second transmission wheel (54) is mounted on the first rotating shaft (231). The third transmission wheel (55) is mounted on the second rotating shaft (431). The first transmission belt (52) is mounted on the first transmission wheel (53), the second transmission wheel (54), and the third transmission wheel (55).

3. The konjac noodle circulating heating production equipment as described in claim 2, characterized in that: It also includes a pushing assembly (6), which includes a mating block (61), a connecting plate (62), a transmission assembly (63), two sets of guide rods (64) and several uprights (65). The two sets of guide rods (64) are both located on the heating box (1). The mating block (61) is sleeved on the two sets of guide rods (64) and slidably connected to them. The connecting plate (62) is located at the lower end of the mating block (61). The several uprights (65) are all located at the lower end of the connecting plate (62). The uprights (65) are located above the first conveyor belt (21). The transmission assembly (63) is located on the heating box (1) and connected to the mating block (61) to drive the mating block (61) to reciprocate.

4. The konjac noodle circulating heating production equipment as described in claim 3, characterized in that: The transmission assembly (63) includes a reciprocating screw (631), a fourth transmission wheel (632), a fifth transmission wheel (633), and a second transmission belt (634). The reciprocating screw (631) is rotatably disposed inside the heating box (1). The reciprocating screw (631) passes through and engages with the mating block (61). The fourth transmission wheel (632) is sleeved on the first rotating shaft (231). The fifth transmission wheel (633) is sleeved on the reciprocating screw (631). The second transmission belt (634) is sleeved on the fourth transmission wheel (632) and the fifth transmission wheel (633).

5. The konjac noodle circulating heating production equipment as described in claim 3, characterized in that: Several of the uprights (65) are distributed in a conical shape on the connecting plate (62).

6. The konjac noodle circulating heating production equipment as described in claim 1, characterized in that: The heating tubes (12) are arranged in an S-shape inside the heating box (1).