Intelligent vacuum cocoon cooking machine

By designing an intelligent vacuum cocoon boiling machine that links the pressing barrel and the lid in the cocoon boiling machine, the problems of complex structure and inaccurate temperature control of existing cocoon boiling machines have been solved, realizing an efficient and stable cocoon boiling process and improving the economic benefits of silk production.

CN223674810UActive Publication Date: 2025-12-16WENZHOU RUILUN SILK MACHINERY FACTORY (GENERAL PARTNERSHIP)
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Patent Information

Application Number
CN202520056117.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-10
Publication Date
2025-12-16
Estimated Expiration
2035-01-10

AI Technical Summary

Technical Problem

Existing cocoon boiling machines have a complex structure and require two independent drive mechanisms, resulting in low efficiency and difficulty in accurately controlling the boiling temperature, which affects the quality of the boiled cocoons.

Method used

Design an intelligent vacuum cocoon boiling machine. The pressing barrel and the lid are linked, and a set of drive mechanisms are used to realize the opening and closing of the lid and the pressing action. It is also equipped with an electric heating rod to ensure the stability and uniformity of the boiling temperature.

Benefits of technology

The equipment structure has been simplified, manufacturing costs and maintenance difficulties have been reduced, the efficiency of cocoon boiling and quality stability have been improved, and production efficiency has been enhanced.

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Abstract

According to the intelligent vacuum cocoon cooking machine, in the aspect of structure, the pressing barrel and the cover body are connected and share one driving mechanism, the complexity of two traditional driving mechanisms is abandoned, and the structure is simplified. Therefore, the purchasing, processing and assembling cost of parts is reduced, the manufacturing cost is reduced, equipment maintenance is much easier, maintenance personnel can quickly find faults, the maintenance time is shortened, the use efficiency is improved, and shutdown is reduced. The air cylinders on the two sides of the cocoon cooking barrel drive the cover body, by means of stable air pressure, it is guaranteed that the opening and closing stroke of the cover body is stable, silkworm cocoons are evenly pressed by the pressing barrel, and the cocoon cooking quality is more reliable. And the air cylinder is good in universality, easy to obtain, standard in installation and debugging and suitable for multiple scenes. The unique locking device is colorful, the locking ring is matched with the driving part and the specially-made locking groove, the locking ring enters the groove, the cover body is automatically locked at the closing moment, the sealing performance of the cocoon cooking barrel is enhanced, and steam and heat leakage and loss are prevented. The rollers are in rolling fit with the outer side wall of the barrel, friction is reduced, and response is accelerated.
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Description

TECHNICAL FIELD

[0001] The utility model relates to silkworm cocoon processing technical field, concretely relates to an intelligent vacuum cocoon boiling machine. BACKGROUND

[0002] In the silk production field, boiling cocoon as a key process in silk making process plays a decisive role in the quality of the final raw silk. The quality of boiling cocoon is closely related to the key indicators such as reeling, unshaking, and directly related to deviation, cleanliness, cleanliness and many other parameters reflecting the quality of raw silk. It can be said that the boiling cocoon process is slightly different, and the overall quality of the subsequent raw silk will be greatly discounted.

[0003] Reviewing the prior art, taking the patent with the patent authorization announcement number CN 104593873 B as an example, the full-automatic cocoon boiling machine disclosed in the patent realizes automatic operation to a certain extent, but still exposes many deficiencies. The cocoon boiling machine is provided with a cocoon boiling barrel, and a cover body that can be opened and closed is arranged at the upper end of the cocoon boiling barrel. When the actual cocoon boiling operation is started, the process is relatively cumbersome. First, the cover body must be closed, then the pressing oil cylinder on the cover body must be started to drive the pressing device in the cocoon boiling barrel to press the cocoon. Obviously, the opening and closing action of the cover body depends on a set of driving mechanism, and the operation of the pressing device needs another independent driving mechanism. The two sets of mechanisms perform their respective functions, not only making the internal structure of the whole cocoon boiling machine complex and bloated, increasing the manufacturing cost and maintenance difficulty of the equipment, but also greatly slowing down the overall efficiency of the cocoon boiling in the running process, which cannot meet the demand of modern silk production for efficient and fast cocoon boiling.

[0004] Furthermore, in-depth study of the prior art shows that the cocoon boiling barrel is not equipped with a heating device. This means that the heat required in the cocoon boiling process cannot be directly supplied from the inside of the cocoon boiling barrel, and often needs to rely on external heating sources or complex heat conduction methods to indirectly meet the cocoon boiling temperature requirements. This indirect energy supply mode, on the one hand, is difficult to accurately control the temperature in the cocoon boiling barrel, and is prone to cause temperature fluctuations in the cocoon boiling due to uneven heat transfer or heat loss, thereby affecting the stability of the cocoon boiling quality; on the other hand, the additional heating facilities increase the occupied space of the production site and energy consumption, which has a lot of room for improvement from the perspectives of cost control and production convenience.

[0005] In view of the above-mentioned defects of the existing cocoon boiling machine in structure design and function arrangement, it is urgent to develop a new intelligent vacuum cocoon boiling machine to optimize the cocoon boiling process and improve the cocoon boiling efficiency and quality. UTILITY MODEL CONTENTS

[0006] In view of the problems pointed out in the background art, the utility model provides an intelligent vacuum cocoon boiling machine to solve the above technical problems.

[0007] The technical scheme of the utility model is implemented as follows:

[0008] A kind of intelligent vacuum cocoon boiling machine, including cocoon boiling barrel, the upper end of the cocoon boiling barrel is equipped with cover,

[0009] The cover can move up and down;

[0010] The lower end of the cover is connected with compression barrel, the diameter of the compression barrel is equal to the inner diameter of the cocoon boiling barrel, and a plurality of through holes are distributed on the side wall of the compression barrel.

[0011] The compression barrel is provided with a heating device.

[0012] The utility model further sets up, the left and right sides of the cocoon boiling barrel are equipped with drive cylinder respectively, and drive cylinder is used to drive the cover to move up and down.

[0013] The utility model further sets up, and the upper end of the cocoon boiling barrel is equipped with locking device for locking the cover.

[0014] The utility model further sets up, and the locking device includes locking ring, the cover is located the inside of locking ring, the upper end of the cocoon boiling barrel is equipped with drive device for rotating the locking ring, the side wall of the locking ring is equipped with locking groove that passes through its inside and outside, the locking groove is sequentially arranged along the circumferential direction of locking ring, and the width of one end of locking groove to the other end gradually increases, the upper end of the locking ring is equipped with access slot that is communicated with the other end of locking groove, the locking groove is equipped with multiple, and multiple locking grooves are sequentially arranged along the circumferential direction of locking ring, the edge of the cover is equipped with locking column that extends along its radial direction.

[0015] The utility model further sets up, and the drive device is cylinder, and the fixed arm is arranged on the cocoon boiling barrel, the connecting arm is arranged on the locking ring, and the two ends of the cylinder are hinged with the fixed arm and the connecting arm respectively, and the cylinder is equipped with multiple, and multiple cylinders are sequentially arranged along the circumferential direction of locking ring.

[0016] The utility model further sets up, and the side wall of the locking ring is equipped with gyro wheel, the gyro wheel is rollingly matched with the outside wall of the cocoon boiling barrel, and the gyro wheel is equipped with multiple, and multiple gyro wheels are sequentially arranged along the circumferential direction of locking ring.

[0017] The utility model further sets up, and the side wall of the locking ring is equipped with installation slot that passes through its inside and outside two sides, the lower side of the locking ring is equipped with connecting hole, the connecting hole is communicated with the installation slot and is arranged, the gyro wheel is arranged in the installation slot, the connecting hole is connected with rotating shaft, and the rotating shaft is connected with the gyro wheel by being inserted into the installation slot.

[0018] The heating device is an electric heating rod.

[0019] The utility model further sets up, the lower extreme of the cocoon cooking barrel is equipped with the discharge gate, the lower extreme of discharge gate is equipped with the bottom cover that can open and shut.

[0020] The utility model further sets up, the upper extreme of the compaction barrel with the lower extreme of the cover body fixed connection.

[0021] Adopt the above technical scheme, the beneficial effect of the utility model is:

[0022] First, in the structural design, the compaction barrel is connected with the cover body, and the linkage of the two is realized by using a set of driving mechanism, compared with the traditional design of two sets of independent driving mechanism, the overall structure is greatly simplified. This not only reduces the manufacturing cost of the equipment, reduces the cost of purchasing, processing and assembling of parts, but also makes the equipment maintenance more convenient, the maintenance personnel can quickly locate the fault point, shorten the maintenance time, improve the use efficiency of the equipment, and reduce the production downtime.

[0023] Second, the gas cylinder arranged on both sides of the cocoon cooking barrel drives the cover body to move, the gas cylinder is pushed by stable air pressure, ensures that the cover body has consistent opening and closing stroke each time, makes the compaction effect of the compaction barrel on the cocoon uniform, and guarantees the stability of the cocoon cooking quality. At the same time, the gas cylinder has strong universality, is easy to obtain, and the installation and debugging process is standardized, which reduces the technical threshold and maintenance difficulty, and is suitable for various production scenes.

[0024] Third, the unique locking device design highlights. The locking ring is matched with the driving device and the carefully designed locking groove, entering groove and other structures, can automatically realize tight locking when the cover body is closed, effectively enhances the sealing performance of the cocoon cooking barrel, prevents steam leakage and heat loss, and creates a stable cooking environment for cocoon. Moreover, the rollers on the side wall of the locking ring are rolled with the outer wall of the cocoon cooking barrel, which reduces the friction resistance, improves the response speed of the locking operation, provides stable support for the locking ring, guarantees the smooth and accurate rotation of the locking ring, prolongs the service life of the equipment, and comprehensively helps silk production enterprises to improve economic efficiency and product competitiveness. DRAWINGS

[0025] In order to more clearly illustrate the technical scheme in the embodiments of the utility model or the prior art, the drawings needed to be used in the embodiment or the prior art description will be briefly introduced below. Obviously, the drawings in the following description are only some embodiments of the utility model, and those skilled in the art can also obtain other drawings according to these drawings without creating creative labor.

[0026] Fig. 1 It is the structural schematic diagram of the utility model.

[0027] Fig. 2 It is a structure schematic view of the locking ring.

[0028] Fig. 3 It is a structure schematic view of the driving device driving the locking ring.

[0029] The number explanation in the drawing: cocoon cooking barrel 1, cover body 2, pressing barrel 3, heating device 4, driving cylinder 5, locking ring 61, driving device 62, locking groove 63, entering groove 64, locking column 65, fixed arm 66, connecting arm 67, roller 68, mounting groove 69, connecting hole 70, rotating shaft 71, discharge port 72, bottom cover 73. DETAILED DESCRIPTION

[0030] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.

[0031] The following references are made Figs. 1-3 The present application is described as follows:

[0032] Embodiment: an intelligent vacuum cocoon cooking machine, comprising a cocoon cooking barrel 1, the upper end of the cocoon cooking barrel 1 is provided with an openable and closable cover body 2, the lower end of the cocoon cooking barrel 1 is provided with a discharge port 72, the lower end of the discharge port 72 is provided with an openable and closable bottom cover 73. In the actual cocoon cooking process, the initial stage is to put the cocoon into the cocoon cooking barrel 1, and start the cooking program. After the cooking link is completed, the bottom cover 73 at the discharge port 72 is opened, and the cocoon can be smoothly discharged.

[0033] The cover body 2 can move up and down; the lower end of the cover body 2 is connected with a pressing barrel 3, the pressing barrel 3 is a barrel structure with an open upper end, the upper end of the pressing barrel 3 is fixedly connected with the lower end of the cover body 2, the diameter of the pressing barrel 3 is equal to the inner diameter of the cocoon cooking barrel 1, and a plurality of through holes are distributed on the side wall of the pressing barrel 3; the pressing barrel 3 is provided with a heating device 4.

[0034] The cover 2 not only bears the function of opening and closing the cocoon cooking barrel 1, but also the pressing barrel 3 connected to the lower end of the cover 2 is a delicate design. The pressing barrel 3 presents an open barrel structure at the upper end, and the upper end is stably connected with the lower end of the cover 2, ensuring the reliability of the linkage between the two. More importantly, the diameter of the pressing barrel 3 is precisely equal to the inner diameter of the cocoon cooking barrel 1, so that when the cover 2 moves downward to close, the pressing barrel 3 connected therewith will gradually enter the inside of the cocoon cooking barrel 1, and the cocoon is pressed by the structure of the pressing barrel 3, effectively avoiding the problem that the cocoon is unevenly heated and the cooking effect is uneven due to loose distribution during the cooking process, and ensuring that each cocoon can be in a relatively stable and suitable cooking environment.

[0035] The side wall of the pressing barrel 3 is provided with a plurality of through holes, which is not designed at random. On the one hand, when the pressing barrel 3 is pressed into the cocoon cooking barrel 1, the water in the cocoon cooking barrel 1 can flow smoothly into the inside of the pressing barrel 3 through these through holes, realizing the intercommunication of the water in the cocoon cooking barrel 1 and the pressing barrel 3; on the other hand, it lays the foundation for the subsequent heating link. The inside of the pressing barrel 3 is equipped with a heating device 4. When the water flows into the pressing barrel 3, if the production process has the needs of precise temperature control, local rapid heating and the like, the heating device 4 can be used to heat the flowing water directly, and then the water temperature environment of the local area or even the whole of the cocoon cooking barrel 1 can be flexibly adjusted, meeting the diversified cocoon cooking process requirements. At the same time, considering different production scenes and cost control factors, the use of the heating device 4 is optional. When the external hot water supply is convenient and can meet the process temperature requirements, the internal heating device 4 can also be selected to be closed, and the external hot water can be directly introduced into the cocoon cooking barrel 1, so that the whole cocoon cooking system can adapt to more diversified production conditions, and the universality and practicality of the equipment are improved.

[0036] The linkage design of the pressing barrel 3 and the cover 2 is very innovative and practical. The pressing barrel 3 moves with the cover 2, and cleverly uses a set of driving mechanism to realize two key functions, i.e. the opening and closing action of the cover 2 and the pressing action of the pressing barrel 3. Compared with the traditional design, such as the full-automatic cocoon cooking machine mentioned before with the patent authorization announcement No. CN104593873B, which needs to configure independent driving mechanisms for the opening and closing of the cover and the pressing device respectively, the present scheme greatly simplifies the overall structure.

[0037] From the equipment manufacturing point of view, reducing a set of driving mechanism means that the raw material cost, the processing cost of parts and the assembly cost can be significantly reduced. In the production link, the simplification of the number of parts shortens the production cycle, improves the production efficiency, and at the same time reduces the risk of waste rate caused by complex structure. In the equipment maintenance aspect, the advantage brought by the simple structure is more prominent. The maintenance personnel do not need to face the complex double driving system to troubleshoot the fault. Once a problem occurs, the single driving mechanism and its associated parts can be quickly located, greatly saving the maintenance time and labor cost.

[0038] In actual production operation process, such integrated design greatly improves work efficiency. The cover opening and closing and cocoon pressing operation previously carried out in steps can now be completed synchronously, reducing process switching waiting time. For example, on a large-scale cocoon boiling production line, the time saved for each batch of cocoon boiling is considerable, which not only increases the daily cocoon boiling batches and improves the yield, but also ensures that the cocoon enters the boiling link in time in the best state, guarantees the stability of cocoon boiling quality, and brings higher economic benefits to silk production enterprises.

[0039] The cocoon boiling barrel 1 is provided with a driving cylinder 5 on the left and right sides, respectively, which is used to drive the cover 2 to move up and down. The driving cylinder 5 is a gas cylinder. The driving cylinders 5 are symmetrically arranged on the left and right sides of the cocoon boiling barrel 1, which has a clear functional consideration. The driving cylinder 5 undertakes the key task of driving the cover 2 to move up and down, so as to realize the opening and closing operation of the cover 2, and then drive the pressing barrel 3 connected thereto to work cooperatively.

[0040] The upper end of the cocoon boiling barrel 1 is provided with a locking device for locking the cover 2.

[0041] The locking device includes a locking ring 61, the cover 2 is located on the inner side of the locking ring 61, the upper end of the cocoon boiling barrel 1 is provided with a driving device 62 for driving the locking ring 61 to rotate, the side wall of the locking ring 61 is provided with a locking groove 63 penetrating the inside and outside thereof, the locking groove 63 is arranged along the circumference of the locking ring 61, the width of the locking groove 63 gradually increases from one end to the other end, the upper end of the locking ring 61 is provided with an entering groove 64 communicating with the other end of the locking groove 63, which provides a guide path for the subsequent locking step of the cover 2. The locking groove 63 is provided with a plurality of locking grooves 63, which are arranged in the circumferential direction of the locking ring 61. The uniform interval arrangement ensures that the cover 2 is uniformly stressed during locking, avoiding the problem of uneven local stress affecting the sealing effect or structural stability. The edge of the cover 2 is provided with a locking column 65 extending in the radial direction thereof.

[0042] In the actual operation process, when the cover 2 moves downward, gradually approaches and completes the covering action with the cocoon cooking barrel 1, the locking column 65 at the edge of the cover 2 will smoothly slide into the locking groove 63 along the entering groove 64. This initial action is like a precise mortise and tenon structure, which starts the subsequent close combination. Then, the driving device 62 starts, and the driving of the locking ring 61 begins. With the rotation of the locking ring 61, the locking column 65 slowly moves along the locking groove 63. Since the width of the locking groove 63 gradually decreases, a mechanical extrusion effect is formed. The locking ring 61 gradually exerts a stable downward pressure on the locking column 65, so that the cover 2 is uniformly and powerfully pressed on the upper end of the cocoon cooking barrel 1, and finally the tight locking of the cover 2 is realized. This locking process not only ensures the sealing of the cocoon cooking barrel 1 during the cocoon cooking process, effectively preventing steam leakage, heat loss and other problems, and ensuring the stability of the cocoon cooking environment, but also avoids the operation complexity and low reliability of the traditional complex locking method through the ingenious cooperation of the mechanical structure, providing a solid guarantee for the efficient and stable operation of the entire cocoon cooking process.

[0043] In addition, in order to further improve the stability and reliability of the driving, a fixed arm 66 is specially provided on the cocoon cooking barrel 1, and a connecting arm 67 is correspondingly provided on the locking ring 61, and the two ends of the air cylinder are hinged with the fixed arm 66 and the connecting arm 67 respectively. A plurality of air cylinders are arranged at intervals in the circumferential direction of the locking ring 61. This multi-cylinder cooperative driving mode not only disperses the driving load and avoids the situation that a single air cylinder fails or lacks power due to excessive load, but also optimizes the force distribution from the mechanical point of view, so that the locking ring 61 rotates more smoothly and stably, further enhancing the accuracy and reliability of the locking action of the cover 2, and comprehensively ensuring the stable operation of the intelligent vacuum cocoon cooking machine.

[0044] The side wall of the locking ring 61 is provided with a plurality of rollers 68, which roll with the outer side wall of the cocoon cooking barrel 1. The rollers 68 are arranged at intervals in the circumferential direction of the locking ring 61. When the driving device 62 drives the locking ring 61 to rotate, these rollers 68 become the key motion connecting components between the locking ring 61 and the outer side wall of the cocoon cooking barrel 1. The rollers 68 themselves have rolling characteristics, and the rolling friction is much lower than the direct sliding friction. This means that in the process of driving the locking ring 61 to rotate to realize the locking of the cover 2, the friction to be overcome is significantly reduced, so that the power output by the driving device 62 can be more efficiently converted into the rotational kinetic energy of the locking ring 61, thereby improving the response speed of the entire locking operation.

[0045] Because the rollers 68 roll tightly against the outer wall of the cocoon-cooking tub 1, they provide a stable support point for the locking ring 61. During long-term and frequent use, regardless of the speed or frequency at which the drive device 62 rotates the locking ring 61, the rollers 68 ensure that the locking ring 61 always maintains a relatively stable rotational trajectory. This prevents the locking ring 61 from shifting or shaking due to uneven friction or structural loosening, thus ensuring that each locking action of the cover 2 is accurate and error-free, maintaining the sealing of the cocoon-cooking tub 1, and ensuring that the cocoon-cooking process is not disturbed by external factors and proceeds stably.

[0046] On the side wall of the locking ring 61, there is a specially designed mounting groove 69 that runs through both its inner and outer sides. This structure provides a dedicated space for the placement of the roller 68. The design of the mounting groove 69 is not arbitrary. It allows the roller 68 to be combined with the locking ring 61 in a stable, embedded state, which not only ensures the positional accuracy of the roller 68 during movement, but also prevents it from easily deviating from its predetermined track due to external collisions or interference.

[0047] Meanwhile, a connecting hole 70 is cleverly provided on the lower side of the locking ring 61, and the connecting hole 70 communicates with the mounting groove 69. This communication provides a crucial bridge for subsequent assembly. After the roller 68 is precisely placed in the mounting groove 69, it connects to the internal components through the connecting hole 70. Specifically, a rotating shaft 71 is tightly connected inside the connecting hole 70, and the rotating shaft 71 extends into the mounting groove 69, achieving a stable connection with the roller 68. In this way, the roller 68 can roll freely and smoothly within the space defined by the mounting groove 69, with the rotating shaft 71 as its axis.

[0048] From an assembly process perspective, this design greatly simplifies the installation process of the roller 68. Workers only need to place the roller 68 into the mounting slot 69, then insert the rotating shaft 71 through the connecting hole 70 and fix it in place. The operation is convenient and efficient, reducing manual assembly costs and time costs, and is conducive to rapid assembly during mass production.

[0049] From the perspective of equipment reliability, the tight connection between the rotating shaft 71, the roller 68, and the connecting hole 70 ensures the stability of power transmission. When the locking ring 61 rotates under the action of the drive device 62, the rotating shaft 71 can accurately transmit the rotational power to the roller 68, so that the roller 68 always maintains a stable rolling state and maintains a good rolling fit with the outer wall of the cocoon boiling barrel 1. This further ensures the stability and accuracy of the locking ring 61 during rotation, laying a solid foundation for the efficient operation of the entire cocoon boiling machine and highlighting the key role of this installation structure in optimizing the overall performance of the intelligent vacuum cocoon boiling machine.

[0050] Heating device 4 is an electric heating rod.

[0051] The heating device 4 is designed with an electric heating rod, which has many advantages. As a common and mature electric heating element, the electric heating rod has high heat conversion efficiency. When an electric current passes through the electric heating rod, the resistance wire inside it will quickly heat up, and the electric energy will be almost instantly converted into heat energy, which is transmitted to the surrounding medium, that is, the water in the cocoon cooking barrel 1 and the compacting barrel 3 in this cocoon cooking machine.

[0052] From the aspects of adaptability and compatibility of the equipment, the electric heating rod is small in size and simple in structure, and can be conveniently installed in the limited space inside the compacting barrel 3 without causing excessive interference with the mechanical structure of the compacting barrel 3 and the linkage with the cover 2 and the cocoon cooking barrel 1. At the same time, the power supply line of the electric heating rod is relatively regular, and can be reasonably laid along the frame structure of the cocoon cooking machine, reducing the safety hazards and maintenance difficulties caused by line clutter.

[0053] The observation window carefully arranged on the side wall of the cocoon cooking barrel 1 provides a convenient way for the operator to intuitively understand the internal situation of the cocoon cooking barrel. During the cocoon cooking process, the morphological changes of the cocoon, the turbidity of the water body, and whether there are abnormal floating scum can be clearly seen through the observation window. This helps the operator to timely detect potential problems in the cocoon cooking process, such as whether the cocoon is wound and clumped, whether the water level is normal, etc., and then take appropriate adjustment measures to avoid the whole batch of cocoon cooking quality being poor due to failure to timely discover the abnormality, and to ensure the continuity and stability of production. Moreover, the existence of the observation window also facilitates the real-time observation of the actual working condition inside the cocoon cooking barrel by the technicians during the equipment debugging and new process flow trial operation stage, so as to accurately optimize various parameters and improve the overall process level.

[0054] At the same time, the thermometer equipped on the side wall of the cocoon cooking barrel 1 is a key auxiliary component for precise cocoon cooking. It can accurately detect the temperature inside the cocoon cooking barrel in real time, which is complementary to the precise temperature control of the heating device 4. As mentioned earlier, the heating device 4 uses an electric heating rod, which can flexibly adjust the power output according to the preset process temperature requirements, and the real-time temperature data provided by the thermometer is the key basis for this adjustment process. In each stage of cocoon cooking, whether it is necessary to quickly raise the water temperature in the initial heating stage, or to ensure that the temperature fluctuation is controlled within a very small range in the constant temperature cooking stage, the thermometer can feedback the internal real temperature to the temperature control system, so that the electric heating rod can accurately exert force. Moreover, for some experienced operators, the temperature shown by the thermometer is also an important reference for them to judge whether the cocoon cooking process is progressing normally. Combined with the cocoon state presented by the observation window, they can more skillfully control the entire cocoon cooking process, further improving the cocoon cooking quality and production efficiency, and adding bricks and tiles to the outstanding performance of the intelligent vacuum cocoon cooking machine in the silk production field.

[0055] The above merely describes preferred embodiments of the present application and is not intended to limit the present application, and any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application shall be included in the protection scope of the present application.

Claims

1. An intelligent vacuum cocoon cooking machine, comprising a cocoon cooking barrel (1), the upper end of the cocoon cooking barrel (1) is provided with a cover (2), characterized in that: the cover (2) can move up and down; the lower end of the cover (2) is connected with a pressing barrel (3), the diameter of the pressing barrel (3) is equal to the inner diameter of the cocoon cooking barrel (1), and the side wall of the pressing barrel (3) is distributed with a plurality of through holes; the pressing barrel (3) is provided with a heating device (4) inside.

2. The intelligent cocoon boiling machine according to claim 1, characterized in that: the left and right sides of the cocoon cooking barrel (1) are respectively provided with a drive cylinder (5), which is used to drive the cover (2) to move up and down.

3. The intelligent cocoon boiling machine according to claim 1, characterized in that: the upper end of the cocoon cooking barrel (1) is provided with a locking device for locking the cover (2).

4. The intelligent cocoon boiling machine according to claim 3, characterized in that: the locking device comprises a locking ring (61), the cover (2) is located on the inner side of the locking ring (61), the upper end of the cocoon cooking barrel (1) is provided with a driving device (62) for driving the locking ring (61) to rotate, the side wall of the locking ring (61) is provided with a locking groove (63) penetrating the inside and outside thereof, the locking groove (63) is arranged along the circumference of the locking ring (61), the width of the locking groove (63) gradually increases from one end to the other end, the upper end of the locking ring (61) is provided with an entering groove (64) in communication with the other end of the locking groove (63), the locking groove (63) is provided with a plurality of locking grooves (63), and the plurality of locking grooves (63) are arranged at intervals in the circumference of the locking ring (61), the edge of the cover (2) is provided with a locking column (65) extending in the radial direction thereof.

5. The intelligent cocoon boiling machine according to claim 4, characterized in that: the driving device (62) is a gas cylinder, the cocoon cooking barrel (1) is provided with a fixed arm (66), the locking ring (61) is provided with a connecting arm (67), and the two ends of the gas cylinder are respectively hinged with the fixed arm (66) and the connecting arm (67), the gas cylinder is provided with a plurality of gas cylinders, and the plurality of gas cylinders are arranged at intervals in the circumference of the locking ring (61).

6. The intelligent cocoon boiling machine according to claim 5, characterized in that: the side wall of the locking ring (61) is provided with a roller (68), the roller (68) is in rolling cooperation with the outer side wall of the cocoon cooking barrel (1), and the roller (68) is provided with a plurality of rollers (68), and the plurality of rollers (68) are arranged at intervals in the circumference of the locking ring (61).

7. The intelligent cocoon boiling machine according to claim 6, characterized in that: the side wall of the locking ring (61) is provided with a mounting groove (69) penetrating the inside and outside thereof, the lower side of the locking ring (61) is provided with a connecting hole (70), the connecting hole (70) is in communication with the mounting groove (69), the roller (68) is arranged in the mounting groove (69), the connecting hole (70) is connected with a rotating shaft (71), and the rotating shaft (71) extends into the mounting groove (69) and is connected with the roller (68).

8. The intelligent cocoon boiling machine according to claim 1, characterized in that: the heating device (4) is an electric heating rod.

9. The intelligent cocoon boiling machine according to claim 1, characterized in that: the lower end of the cocoon cooking barrel (1) is provided with a discharge port (72), and the lower end of the discharge port (72) is provided with a bottom cover (73) which can be opened and closed.

10. The intelligent cocoon boiling machine according to claim 1, characterized in that: the upper end of the pressing barrel (3) is fixedly connected with the lower end of the cover (2).

Citation Information

Patent Citations

  • Full-automatic cocoon cooking machine

    CN104593873B