A device for collecting waste materials in the production of gel candies

By designing a gel candy production waste collection device including a servo motor, cleaning assembly and agitating assembly, the problem of waste liquid adhering to the inner wall of the tank during the collection process is solved, effective cleaning and uniform mixing of waste liquid is achieved, and recycling efficiency and equipment hygiene is improved.

CN119911564BActive Publication Date: 2025-06-03SHANGHAI FUDE MACHINERY MANUFACTURING CO LTD
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Patent Information

Application Number
CN202510396620.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-04-01
Publication Date
2025-06-03
Estimated Expiration
2045-04-01

AI Technical Summary

Technical Problem

During the production process of gel candy, the waste liquid is prone to adhere to the inner wall of the tank during the collection process, forming difficult residues that are difficult to remove, resulting in uneven heating or insufficient temperature, and the inability to sufficiently melt the viscous waste, affecting the hygiene of the equipment and subsequent treatment.

Method used

A gel candy production waste collection device is designed, including recycling tanks, servo motors, cleaning components, mixing components and display trigger components. The screw is driven by the servo motor to rotate, and the inner wall of the recycling tank is completely cleaned with scraper and scraper, and the uniform mixing of waste liquid is achieved through the agitating assembly.

Benefits of technology

The adhesions on the inner wall of the recycling tank are effectively cleaned, the waste residue is avoided, the recycling efficiency and quality of waste liquid is improved, and the overall sanitation level of the equipment and the convenience of subsequent processing is ensured.

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Abstract

The present invention relates to the technical field of waste collection, and particularly relates to a waste collection device for gel candy production, which includes a recovery tank and a feeding pipe. A heating wire is arranged inside the recovery tank. The feeding pipe is arranged on the top surface of the recovery tank, and a discharge pipe is arranged on the bottom surface of the recovery tank. It further includes: a servo motor fixedly installed at the edge position of the top surface of the recovery tank; a cleaning assembly arranged inside the recovery tank for cleaning the adhesions on the inner wall of the recovery tank; and a rotating sleeve rotatably installed on the inner top surface of the recovery tank. Compared with the prior art, in this application, the servo motor drives the screw to rotate, and the inner wall of the recovery tank is comprehensively cleaned by using the scraping plate and the scraping strip. Whether it is the bottom or the upper part, it can be effectively cleaned. The design of the scraping plate and the scraping strip ensures that the waste attached to the inner wall of the recovery tank can be completely scraped off, avoiding waste residue and improving the recovery efficiency and quality of the waste liquid.
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Description

Technical Field

[0001] The present invention relates to the technical field of waste collection, and in particular to a waste collection device for gel candy production. Background Art

[0002] Gel candy, usually also known as gummy candy, is a widely popular type of candy. Gel candy uses granulated sugar and starch syrup as the main raw materials, and adds agar, modified starch, gelatin, pectin, etc. as coagulants. Sometimes, to increase the taste and nutritional value, microcrystals or gas bodies of sugar, jam or pieces of fruit are also added.

[0003] After retrieval, the Chinese patent with the publication number CN206437426U discloses a waste collection device for gel candy production, which is used for collecting waste liquid of gel candy. It discloses that there is a closed heat preservation cavity at the bottom of the waste liquid collection tank, there is a heat preservation water inlet on one side of the heat preservation cavity, and a heat preservation water outlet on the other side. There is a waste liquid discharge pipe at the bottom on one side of the waste liquid collection tank, and a flushing water discharge pipe is connected to the waste liquid discharge pipe. The drainage conversion of the waste liquid discharge pipe and the flushing water discharge pipe is controlled by a conversion pneumatic valve connected to the waste liquid discharge pipe. The structure is simple, practical and effective, avoiding water pollution, reducing the labor intensity of employees, and improving the work efficiency of employees. However, when this solution is actually used, there are still the following deficiencies:

[0004] During the production process of gel candy, the waste liquid collection tank is responsible for receiving and storing the waste generated during the production process. However, in actual operation, when the tank is discharging materials, only heating means are relied on to melt the gel candy waste liquid adhering to it. During the collection of the gel candy waste liquid, due to its own viscous characteristics, it is very easy to adhere to the inner wall of the tank, forming a layer of residue that is difficult to remove. When heating and melting these waste liquids, if the heating is uneven or the temperature is not high enough, it may cause the viscous waste to not melt sufficiently, and then stubborn stains will be left on the inner wall of the tank. This not only affects the cleanliness of the inner wall of the waste liquid collection tank, reducing the overall hygiene level of the equipment, but also may cause trouble to the subsequent waste liquid treatment and reuse.

[0005] Therefore, the present application provides a waste collection device for gel candy production to meet the requirement of quickly cleaning the gel candy waste collection tank. Summary of the Invention

[0006] In view of this, the purpose of the present invention is to provide a waste collection device for gel candy production to solve the problem that the inner wall of the gel candy waste tank is easy to adhere and difficult to clean.

[0007] For the above purposes, the present invention provides a device for collecting waste materials in the production of gel candies, including a recovery tank and a feed pipe. A heating wire is arranged inside the recovery tank. The feed pipe is arranged on the top surface of the recovery tank. A discharge pipe is arranged on the bottom surface of the recovery tank. The device further includes:

[0008] A servo motor, fixedly installed at the edge position on the top surface of the recovery tank;

[0009] A cleaning component, arranged inside the recovery tank for cleaning the adhesives on the inner wall of the recovery tank;

[0010] A rotating sleeve, rotatably installed on the inner top surface of the recovery tank. One-way bearings are sleeved on the top end of the rotating sleeve and the output end of the servo motor respectively. A driven wheel and a synchronous belt are used for driving connection between the two one-way bearings;

[0011] A buoyancy filter frame, slidably sleeved on the outer wall of the rotating sleeve through a chute and a slider;

[0012] A stirring component, arranged on the rotating sleeve for mixing the waste materials cleaned in the recovery tank;

[0013] A linkage structure, arranged between the buoyancy filter frame and the inner wall of the recovery tank for driving the buoyancy filter frame;

[0014] A fixing frame, fixedly installed on the outer wall of the recovery tank;

[0015] A display trigger component, arranged on the fixing frame for triggering the servo motor and displaying the liquid level in the recovery tank.

[0016] Preferably, the cleaning component includes:

[0017] A driving screw rod, fixedly installed at the output end of the servo motor;

[0018] A buoyancy ring, slidably sleeved on the outer wall of the driving screw rod. The inner wall of the buoyancy ring is movably connected with the outer wall of the buoyancy filter frame;

[0019] A lifting ring, threadedly sleeved on the outer wall of the driving screw rod;

[0020] Two scraping strips, symmetrically and fixedly sleeved on the outer wall of the lifting ring;

[0021] A bevel gear ring, rotatably installed on the bottom inner wall of the recovery tank;

[0022] A plurality of scraping plates, fixedly installed on the bottom surface of the bevel gear ring in an annular array distribution;

[0023] A driven bevel gear, fixedly installed at the bottom end of the driving screw rod, and the driven bevel gear meshes with the bevel gear ring.

[0024] Preferably, the outer wall of the scraper bar fits with the inner wall of the recovery tank, and the scraper is arranged at an angle.

[0025] Preferably, the stirring assembly comprises:

[0026] Three groups of openings are distributed in a linear array on the rotating sleeve, and the number of openings in each group is two and they are symmetrically arranged;

[0027] A plurality of rotating shafts are rotatably mounted on the bottom inner walls of the plurality of openings respectively;

[0028] A plurality of rotating plates are respectively fixedly mounted on the plurality of rotating shafts;

[0029] A plurality of stirring plates are respectively fixedly mounted on one end of a plurality of rotating plates;

[0030] A plurality of torsion springs 1 are respectively mounted on the plurality of rotating shafts;

[0031] The transmission mechanism is arranged in the rotating sleeve.

[0032] Preferably, the transmission mechanism comprises:

[0033] A plurality of connecting plates are respectively fixedly mounted on one end of a plurality of the rotating plates away from the stirring plate;

[0034] A transmission rod is slidably mounted on the inner wall of the rotating sleeve through a bracket;

[0035] A spring, fixedly mounted between the bottom surface of the transmission rod and the inner bottom wall of the rotating sleeve;

[0036] Three lifting rings are distributed in a linear array and fixedly sleeved on the transmission rod, and the lifting rings are adapted to the connecting plate;

[0037] Two guide openings are symmetrically arranged on the top of the rotating sleeve;

[0038] A lifting plate is fixedly mounted on the top end of the transmission rod, and two ends of the lifting plate pass through the two guide openings respectively.

[0039] Preferably, the stirring plate is adapted to the opening, and the connecting plate is arranged in an L shape.

[0040] Preferably, the linkage structure includes:

[0041] A corrugated guide groove is provided on the outer wall of the buoyancy filter frame;

[0042] A clearance port is provided on the top surface of the buoyancy filter frame, and the clearance port is communicated with the corrugated guide groove;

[0043] The guide rod is fixedly installed on the inner wall of the recovery tank;

[0044] The through port is opened on the top surface of the buoyancy ring, and the through port corresponds to the guide rod;

[0045] The cover plate is fixedly installed at the position above the guide rod on the inner wall of the recovery tank, and the cover plate is adapted to the through port.

[0046] Preferably, the display trigger assembly includes:

[0047] The winding reel is rotatably installed on the top surface of the fixed frame;

[0048] The pull rope is arranged inside the winding reel, and one end of the pull rope far from the winding reel passes through the top surface of the recovery tank and is fixedly connected to the top surface of the buoyancy ring;

[0049] The fixed plate is fixedly installed on the top surface of the fixed frame;

[0050] The second torsion spring is arranged at the end of the winding reel, and both ends of the second torsion spring are fixedly connected to the fixed plate and the winding reel respectively;

[0051] The linkage screw rod is threadedly sleeved on the inner wall of the winding reel;

[0052] The guide groove is opened on the side surface of the fixed plate;

[0053] The connecting block is slidably installed on the inner wall of the guide groove, and the end of the connecting block is fixedly connected to the end of the linkage screw rod;

[0054] The trigger mechanism is arranged on the side of the winding reel far from the fixed plate.

[0055] Preferably, the trigger mechanism includes:

[0056] The energized coil is arranged at the end of the winding reel far from the fixed plate;

[0057] The trigger switch is fixedly installed at the end of the fixed frame, and the trigger switch is electrically connected to the servo motor through a wire;

[0058] The magnetic plate is slidably installed on the top surface of the fixed frame between the energized coil and the trigger switch.

[0059] Preferably, an aggregate ring box corresponding to the buoyancy ring is arranged on the outer wall of the upper part of the recovery tank, and a material guiding port corresponding to the aggregate ring box is opened on the outer wall of the recovery tank.

[0060] The beneficial effects of the present invention:

[0061] 1. The waste collection device for gel candy production, by setting a servo motor and a cleaning component, drives the screw to rotate through the servo motor, and uses the scraper and scraping strip to comprehensively clean the inner wall of the recovery tank. Whether it is the bottom or the top, it can be effectively cleaned. The design of the scraper and scraping strip ensures that the waste attached to the inner wall of the recovery tank can be completely scraped off, avoiding waste residue and improving the recovery efficiency and quality of the waste liquid.

[0062] 2. The waste collection device for gel candy production, by setting a stirring component and a linkage structure, when the servo motor rotates in reverse, drives the buoyancy filter frame to rotate through the rotating sleeve, and uses centrifugal force to throw out and collect large impurities. At the same time, with the reciprocating swing and rotation of the stirring plate, the uniform mixing of the waste liquid is realized. This stirring and mixing method not only improves the uniformity of the waste liquid, but also helps to fully mix the cleaned waste with the remaining waste liquid in the recovery tank, facilitating subsequent discharge and treatment.

[0063] 3. The waste collection device for gel candy production, by setting a fixing frame and a display trigger component, uses the principle that the buoyancy filter frame rises with the liquid level of the waste liquid, and the display trigger component displays the liquid level situation in the recovery tank in real time. When the liquid level reaches the highest, the switch is triggered through the magnetic repulsion effect, automatically turning on the servo motor and the heating wire, realizing automatic control and intelligent management. And the staff can directly understand the liquid level height inside the recovery tank by observing the movement of the connecting block and the pointer, improving the convenience and safety of operation. BRIEF DESCRIPTION OF THE DRAWINGS

[0064] In order to more clearly illustrate the technical solutions in the present invention or the prior art, the following will briefly introduce the drawings required for use in the description of the embodiments or the prior art. Obviously, the drawings in the following description are only those of the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.

[0065] Figure 1 It is a three-dimensional structure schematic diagram of the present invention;

[0066] Figure 2 It is a schematic diagram of a partially cut-away structure of the recovery tank of the present invention;

[0067] Figure 3 It is a schematic diagram of the internal structure of the recovery tank of the present invention;

[0068] Figure 4 It is a schematic diagram of a partially cut-away structure II of the recovery tank of the present invention;

[0069] Figure 5 It is Figure 2 The enlarged structure schematic diagram at A in

[0070] Figure 6 It is a schematic diagram of the partial cross-section structure of the rotating sleeve of the present invention;

[0071] Figure 7 for Figure 6 The enlarged structural diagram at B in the middle;

[0072] Figure 8 for Figure 3 The enlarged structural diagram at C in the middle;

[0073] Figure 9 It is a schematic diagram of the structure of the fixing frame of the present invention.

[0074] The markings in the figure are:

[0075] 1. Recovery tank; 2. Feed pipe; 3. Discharge pipe; 4. Servo motor; 51. Drive screw; 52. Buoyancy ring; 53. Lifting ring; 54. Scraper bar; 55. Bevel gear ring; 56. Scraper; 57. Driven bevel gear; 6. Buoyancy filter frame; 7. Rotating sleeve; 81. Opening; 82. Rotating shaft; 83. Rotating plate; 84. Stirring plate; 85. Torsion spring 1; 86. Connecting plate; 87. Transmission rod; 88. Spring; 89. Lifting ring; 810 , guide port; 811, lifting plate; 91, corrugated guide groove; 92, give way; 93, guide rod; 94, through port; 95, cover plate; 10, fixed frame; 111, take-up reel; 112, pull rope; 113, fixed plate; 114, torsion spring 2; 115, linkage screw; 116, guide groove; 117, connecting block; 118, energized coil; 119, trigger switch; 1110, magnetic plate; 12, collection ring box; 13, guide port. DETAILED DESCRIPTION

[0076] In order to make the objectives, technical solutions and advantages of the present invention more clearly understood, the present invention is further described in detail below in conjunction with specific embodiments.

[0077] It should be noted that, unless otherwise defined, the technical terms or scientific terms used in the present invention should be understood by people with ordinary skills in the field to which the present invention belongs. The "first", "second" and similar words used in the present invention do not indicate any order, quantity or importance, but are only used to distinguish different components. "Include" or "comprise" and similar words mean that the elements or objects appearing before the word include the elements or objects listed after the word and their equivalents, without excluding other elements or objects. "Connect" or "connected" and similar words are not limited to physical or mechanical connections, but may include electrical connections, whether direct or indirect. "Up", "down", "left", "right" and the like are only used to indicate relative positional relationships. When the absolute position of the described object changes, the relative positional relationship may also change accordingly.

[0078] As shown Figures 1 to 9 in the figure, a gel candy production waste collection device includes a recovery tank 1 and a feed pipe 2. A heating wire is arranged inside the recovery tank 1. The feed pipe 2 is arranged on the top surface of the recovery tank 1. A discharge pipe 3 is arranged on the bottom surface of the recovery tank 1. The device further includes: a servo motor 4 fixedly installed at the edge position of the top surface of the recovery tank 1; a cleaning component arranged inside the recovery tank 1 for cleaning the adhesives on the inner wall of the recovery tank 1; a rotating sleeve 7 rotatably installed on the inner top surface of the recovery tank 1, and one-way bearings are sleeved on the top end of the rotating sleeve 7 and the output end of the servo motor 4, and the two one-way bearings are connected by a driven wheel and a synchronous belt; a buoyancy filter frame 6 slidably sleeved on the outer wall of the rotating sleeve 7 through a chute and a slider; a stirring component arranged on the rotating sleeve 7 for mixing the waste cleaned in the recovery tank 1; a linkage structure arranged between the buoyancy filter frame 6 and the inner wall of the recovery tank 1 for driving the buoyancy filter frame 6; a fixing frame 10 fixedly installed on the outer wall of the recovery tank 1; a display trigger component arranged on the fixing frame 10 for triggering the servo motor 4 and displaying the liquid level in the recovery tank 1;

[0079] During use, the waste liquid produced during gel candy production can be added to the recovery tank 1 through the feed pipe 2, and after it is full, it can be discharged through the discharge pipe 3 for centralized treatment. When the waste liquid is collected in the recovery tank 1, as the liquid level of the waste liquid rises, the buoyancy filter frame 6 can be driven to slide upward along the rotating sleeve 7 under the action of buoyancy. During the upward sliding process of the buoyancy filter frame 6, the liquid level in the recovery tank 1 can be displayed through the display trigger component. And when the liquid level in the recovery tank 1 reaches the maximum, the servo motor 4 and the heating wire inside the recovery tank 1 can be turned on. The heating wire can heat the waste liquid in the recovery tank 1. When the servo motor 4 is turned on, the inner wall attachments of the recovery tank 1 can be cleaned through the cleaning component. When the servo motor 4 rotates in reverse, the waste liquid in the recovery tank 1 can be stirred and mixed through the cooperation of the linkage structure and the stirring component, so that the cleaned waste can be mixed with the remaining waste liquid in the recovery tank 1 for centralized discharge.

[0080] As Figure 2 shown Figure 3 in Figure 5As shown, the cleaning assembly includes: a driving screw 51, fixedly mounted at the output end of the servo motor 4; a buoyancy ring 52, slidably mounted on the outer wall of the driving screw 51, and the inner wall of the buoyancy ring 52 is movably connected to the outer wall of the buoyancy filter frame 6, the upper outer wall of the recovery tank 1 is provided with a collection ring box 12 corresponding to the buoyancy ring 52, and the outer wall of the recovery tank 1 is provided with a material guide port 13 corresponding to the collection ring box 12; a lifting ring 53, threadedly mounted on the outer wall of the driving screw 51; two scraping strips 54, symmetrically fixedly mounted on the outer wall of the lifting ring 53, and the outer wall of the scraping strips 54 is in contact with the inner wall of the recovery tank 1; a bevel gear ring 55, rotatably mounted on the bottom inner wall of the recovery tank 1; a plurality of scrapers 56, distributed in an annular array and fixedly mounted on the bottom surface of the bevel gear ring 55, and the scrapers 56 are inclined; a driven bevel gear 57, fixedly mounted on the bottom end of the driving screw 51, and the driven bevel gear 57 is meshed with the bevel gear ring 55;

[0081] When the servo motor 4 is turned on, the servo motor 4 can first rotate forward. When the servo motor 4 rotates forward, since the rotating sleeve 7 and the one-way bearing mounted on the output end of the servo motor 4 are in this direction and are free, the servo motor 4 can only drive the driving screw 51 to rotate but cannot drive the rotating sleeve 7 to rotate. When the driving screw 51 rotates, the scraper 56 can be driven to rotate through the driven bevel gear 57 and the bevel gear ring 55, so that the scraper 56 scrapes and cleans the inner wall of the bottom of the recovery tank 1. At the same time, since the lifting ring 53 is screwed to the outer wall of the driving screw 51, the scraper bar 54 is in contact with the inner wall of the recovery tank 1, and then the driving screw 51 can drive the lifting ring 53 and the scraper bar 54 to slide when rotating, so that the attachments on the upper inner wall of the recovery tank 1 are scraped and cleaned through the scraper bar 54, and then the servo motor 4 is reversed, and the rotating sleeve 7 can be synchronously driven to rotate at this time.

[0082] like Figure 3 , Figure 6 , Figure 7 As shown, the stirring assembly includes: three groups of openings 81, which are distributed in a linear array and opened on the rotating sleeve 7, and the number of each group of openings 81 is two and symmetrically arranged; a plurality of rotating shafts 82, which are respectively rotatably mounted on the bottom inner walls of the plurality of openings 81; a plurality of rotating plates 83, which are respectively fixedly mounted on the plurality of rotating shafts 82; a plurality of stirring plates 84, which are respectively fixedly mounted on one end of the plurality of rotating plates 83, and the stirring plates 84 are adapted to the openings 81; a plurality of torsion springs 85, which are respectively mounted on the plurality of rotating shafts 82; and a transmission mechanism, which is arranged in the rotating sleeve 7;

[0083] like Figure 7As shown, the transmission mechanism includes: a plurality of connecting plates 86, which are respectively fixedly mounted on the ends of the plurality of rotating plates 83 away from the stirring plate 84, and the connecting plates 86 are set to be L-shaped; a transmission rod 87, which is slidably mounted on the inner wall of the rotating sleeve 7 through a bracket; a spring 88, which is fixedly mounted between the bottom surface of the transmission rod 87 and the inner bottom wall of the rotating sleeve 7; three lifting rings 89, which are distributed in a linear array and fixedly sleeved on the transmission rod 87, and the lifting rings 89 are adapted to the connecting plates 86; two guide openings 810, which are symmetrically opened at the top of the rotating sleeve 7; a lifting plate 811, which is fixedly mounted on the top of the transmission rod 87, and the two ends of the lifting plate 811 pass through the two guide openings 810 respectively;

[0084] In the process of the buoyancy filter frame 6 sliding upward along the rotating sleeve 7 by buoyancy, the stirring plate 84 is located inside the opening 81 in the initial state, and will not affect the sliding of the buoyancy filter frame 6 along the rotating sleeve 7. When the buoyancy filter frame 6 reaches the highest liquid level, the lifting plate 811 can be pushed and the lifting plate 811 and the transmission rod 87 can be driven to move upward along the guide port 810. When the transmission rod 87 moves upward, the lifting ring 89 can be driven to move upward. In the process of the lifting ring 89 moving upward, the connecting plate 86 can be pushed to drive the rotating plate 83 and the stirring plate 84 to rotate out of the opening 81 and unfold.

[0085] like Figure 3 , Figure 8 As shown, the linkage structure includes: a corrugated guide groove 91, which is provided on the outer wall of the buoyancy filter frame 6; a clearance port 92, which is provided on the top surface of the buoyancy filter frame 6, and the clearance port 92 is connected to the corrugated guide groove 91; a guide rod 93, which is fixedly installed on the inner wall of the recovery tank 1; a through port 94, which is provided on the top surface of the buoyancy ring 52, and the through port 94 corresponds to the guide rod 93; a cover plate 95, which is fixedly installed on the inner wall of the recovery tank 1 and is located above the guide rod 93, and the cover plate 95 is adapted to the through port 94;

[0086] When the buoyancy ring 52 and the buoyancy filter frame 6 move up to the highest liquid level, the guide rod 93 can enter the corrugated guide groove 91 through the clearance port 92, and the cover plate 95 can be located in the through port 94 to cover the through port 94. When the rotating sleeve 7 rotates, the buoyancy filter frame 6 can be driven to rotate. When the buoyancy filter frame 6 rotates, the large impurities filtered out from the upper part can be thrown out under the action of centrifugal force, and enter the collection ring box 12 through the guide port 13 for collection. At the same time, because the guide rod 93 is in a fixed state, the buoyancy filter frame 6 rotates on the guide rod 9 In cooperation with the corrugated guide groove 91, it can synchronously reciprocate in the vertical direction on the inner wall of the buoyancy ring 52. Since the buoyancy filter frame 6 pushes the lifting plate 811, the buoyancy filter frame 6 can drive the lifting plate 811 and the transmission rod 87 to reciprocate during the reciprocating movement, thereby driving the rotating plate 83 and the stirring plate 84 to reciprocate under the action of the lifting ring 89 and the connecting plate 86, and cooperating with the rotation of the rotating sleeve 7 and the reciprocating swing of the stirring plate 84, the waste liquid in the recovery tank 1 is mixed more evenly.

[0087] like Figure 1 , Figure 9 As shown, the trigger assembly includes: a winding disk 111, which is rotatably mounted on the top surface of the fixing frame 10; a pull rope 112, which is arranged on the inner side of the winding disk 111, and the end of the pull rope 112 away from the winding disk 111 passes through the top surface of the recovery tank 1 and is fixedly connected to the top surface of the buoyancy ring 52; a fixing plate 113, which is fixedly mounted on the top surface of the fixing frame 10; a second torsion spring 114, which is arranged at the end of the winding disk 111, and the two ends of the second torsion spring 114 are respectively fixedly connected to the fixing plate 113 and the winding disk 111; a linkage screw 115, which is threadedly mounted on the inner wall of the winding disk 111; a guide groove 116, which is opened on the side of the fixing plate 113; a connecting block 117, which is slidably mounted on the inner wall of the guide groove 116, and the end of the connecting block 117 is fixedly connected to the end of the linkage screw 115; a trigger mechanism, which is arranged on the side of the winding disk 111 away from the fixing plate 113;

[0088] like Figure 9 As shown, the trigger mechanism includes: an energized coil 118, which is arranged at one end of the winding reel 111 away from the fixed plate 113; a trigger switch 119, which is fixedly installed at the end of the fixed frame 10, and the trigger switch 119 is electrically connected to the servo motor 4 through a wire; a magnetic plate 1110, which is slidably installed on the top surface of the fixed frame 10 and is located between the energized coil 118 and the trigger switch 119;

[0089] In the initial state, the buoyancy ring 52 and the buoyancy filter frame 6 are located at the bottom of the recovery tank 1. As the waste liquid is introduced, under the action of buoyancy, the buoyancy ring 52 and the buoyancy filter frame 6 can rise along with the liquid level in the recovery tank 1. During the process of the buoyancy ring 52 and the buoyancy filter frame 6 sliding upward step by step, the winding disc 111 can rotate under the action of the second torsion spring 114 to gradually wind up the pulling rope 112. And because the linkage screw 115 is screwed to the winding disc 111 and is slidably connected to the fixed plate 113 through the guide groove 116 and the connecting block 117, when the winding disc 111 rotates, it can drive the linkage screw 115 to slide along the guide groove 116 and penetrate into the energized coil 118. As the buoyancy ring 52 and the buoyancy filter frame 6 rise to the highest liquid level, the position where the linkage screw 115 is inserted into the energized coil 118 can be in place. After the metal linkage screw 115 is inserted into the energized coil 118, magnetic force can be generated, and the magnetic poles of the energized coil 118 and the magnetic force plate 1110 are the same. Therefore, under the action of magnetic repulsion, the magnetic force plate 1110 can press the trigger switch 119, so that the servo motor 4 and the heating wire are turned on. At the same time, a pointer can be connected to the connecting block 117, and scale lines can be set on the fixed plate 113. The staff can intuitively understand the liquid level inside the recovery tank 1 through the movement of the connecting block 117 and the pointer. During the process of discharging the waste liquid, as the liquid level drops, when the buoyancy filter frame 6 is separated from the lifting plate 811, under the action of the spring 88, the transmission rod 87 can also be reset, so that the stirring plate 84 rotates back into the opening 81 again. The buoyancy ring 52 and the buoyancy filter frame 6 can move downward and drive the winding disc 111 to reverse. As the buoyancy ring 52 and the buoyancy filter frame 6 are reset, the linkage screw 115 can also be reset, the energized coil 118 loses magnetic force, and the trigger switch 119 can turn off the servo motor 4 and the heating wire, and then the waste liquid can be continuously collected through the recovery tank 1.

[0090] For the technical solution provided by the present invention, during use, the waste liquid produced during the production of gel candies can be added to the recovery tank 1 through the feed pipe 2, and after being filled, it can be discharged through the discharge pipe 3 for centralized treatment. When the waste liquid is collected in the recovery tank 1, when the liquid level of the waste liquid rises, under the action of buoyancy, it can drive the buoyancy filter frame 6 to slide upward along the rotating sleeve 7. During the process of the buoyancy filter frame 6 sliding upward, the liquid level in the recovery tank 1 can be displayed through the display trigger assembly. And when the liquid level in the recovery tank 1 reaches the maximum, the servo motor 4 and the heating wire inside the recovery tank 1 can be turned on. The heating wire can heat the waste liquid in the recovery tank 1, and when the servo motor 4 is turned on, the inner wall attachments of the recovery tank 1 can be cleaned through the cleaning assembly. When the servo motor 4 rotates in reverse, the waste liquid in the recovery tank 1 can be stirred and mixed through the cooperation of the linkage structure and the stirring assembly, so that the cleaned waste can be mixed with the remaining waste liquid in the recovery tank 1 for centralized discharge;

[0091] Specifically, in the initial state, the buoyancy ring 52 and the buoyancy filter frame 6 are located at the bottom of the recovery tank 1. As the waste liquid is introduced, the buoyancy ring 52 and the buoyancy filter frame 6 can rise with the liquid level in the recovery tank 1 under the action of buoyancy. During the process of the buoyancy ring 52 and the buoyancy filter frame 6 gradually sliding upward, the winding disk 111 can be rotated under the action of the torsion spring 114 to gradually reel the pull rope 112. Since the linkage screw 115 is screwed to the winding disk 111 and is slidably connected to the fixed plate 113 through the guide groove 116 and the connecting block 117, the winding disk 111 can drive the linkage screw 115 to slide along the guide groove 116 and penetrate into the energized coil 1 when it rotates. 18, as the buoyancy ring 52 and the buoyancy filter frame 6 rise to the highest liquid level, the linkage screw 115 is inserted into the position of the energized coil 118 and can be in place. After the metal linkage screw 115 is inserted into the energized coil 118, magnetic force can be generated, and the energized coil 118 and the magnetic plate 1110 have the same relative magnetic poles. Therefore, under the action of magnetic repulsion, the magnetic plate 1110 can press the trigger switch 119, so that the servo motor 4 and the heating wire are turned on. At the same time, a pointer can be connected to the connecting block 117, and a scale line can be set on the fixing plate 113. The staff can intuitively understand the liquid level inside the recovery tank 1 through the movement of the connecting block 117 and the pointer;

[0092] In the process of the buoyancy filter frame 6 sliding upward along the rotating sleeve 7 by buoyancy, the stirring plate 84 is located inside the opening 81 in the initial state, and will not affect the sliding of the buoyancy filter frame 6 along the rotating sleeve 7. When the buoyancy filter frame 6 reaches the highest liquid level, the lifting plate 811 can be pushed up and drive the lifting plate 811 and the transmission rod 87 to move upward along the guide opening 810. When the transmission rod 87 moves upward, it can drive the lifting ring 89 to move upward. In the process of the lifting ring 89 moving upward, the connecting plate 86 can be moved to drive the rotating plate 83 and the stirring plate 84 to rotate out of the opening 81 and unfold.

[0093] When the servo motor 4 is turned on by triggering the switch 119, the servo motor 4 can first rotate forward. When the servo motor 4 rotates forward, since the rotating sleeve 7 and the one-way bearing mounted on the output end of the servo motor 4 are in this direction and are free, the servo motor 4 can only drive the driving screw 51 to rotate but cannot drive the rotating sleeve 7 to rotate. When the driving screw 51 rotates, the scraper 56 can be driven to rotate through the driven bevel gear 57 and the bevel gear ring 55, so that the scraper 56 scrapes and cleans the inner wall of the bottom of the recovery tank 1. At the same time, since the lifting ring 53 is screwed to the outer wall of the driving screw 51, the scraper bar 54 fits with the inner wall of the recovery tank 1, and then the driving screw 51 can drive the lifting ring 53 and the scraper bar 54 to slide when rotating, so that the attachments on the upper inner wall of the recovery tank 1 are scraped and cleaned through the scraper bar 54, and then the servo motor 4 is reversed, and the rotating sleeve 7 can be synchronously driven to rotate at this time;

[0094] When the buoyancy ring 52 and the buoyancy filter frame 6 move up to the highest liquid level, at this time, the guide rod 93 can enter the corrugated guide groove 91 through the relief opening 92, and the cover plate 95 can be located in the through opening 94 to cover the through opening 94. When the buoyancy filter frame 6 moves downward, the guide rod 93 can also move out of the corrugated guide groove 91 through the relief opening 92. When the rotating sleeve 7 rotates, it can drive the buoyancy filter frame 6 to rotate. When the buoyancy filter frame 6 rotates, the large impurities filtered out at its upper part can be thrown out under the action of centrifugal force and enter the aggregate ring box 12 through the material guiding port 13 for collection. At the same time, since the guide rod 93 is in a fixed state, when the buoyancy filter frame 6 rotates, it can reciprocate vertically on the inner wall of the buoyancy ring 52 under the cooperation of the guide rod 93 and the corrugated guide groove 91. Since the buoyancy filter frame 6 pushes against the lifting plate 811, the buoyancy filter frame 6 can drive the lifting plate 811 and the transmission rod 87 to reciprocate during the reciprocating movement, so that the rotating plate 83 and the stirring plate 84 can be driven to reciprocate under the action of the lifting ring 89 and the connecting plate 86. Combining with the rotation of the rotating sleeve 7 and the reciprocating swing of the stirring plate 84, the waste liquid in the recovery tank 1 is mixed more evenly;

[0095] After mixing is completed, the waste liquid can be discharged through the discharge pipe 3. During the discharge process of the waste liquid, as the liquid level drops, when the buoyancy filter frame 6 is separated from the lifting plate 811, under the action of the spring 88, the transmission rod 87 can also be reset, so that the stirring plate 84 rotates back into the opening 81 again. The buoyancy ring 52 and the buoyancy filter frame 6 can move downward and drive the winding disc 111 to reverse. As the buoyancy ring 52 and the buoyancy filter frame 6 are reset, the linkage screw 115 can also be reset. The energized coil 118 loses magnetism, and the trigger switch 119 can turn off the servo motor 4 and the heating wire, and then the waste liquid can continue to be collected through the recovery tank 1.

[0096] Those of ordinary skill in the art should understand that the discussion of any embodiment above is only exemplary and is not intended to imply that the scope of the present invention is limited to these examples; under the concept of the present invention, the technical features in the above embodiments or different embodiments can also be combined, the steps can be implemented in any order, and there are many other variations in different aspects of the present invention as described above, which are not provided in detail for the sake of brevity.

[0097] Therefore, any omission, modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present invention shall be included within the protection scope of the present invention.

Claims

1. A jelly candy production waste collection device, comprising a recovery tank (1) and a feed pipe (2), wherein a heating wire is arranged inside the recovery tank (1), the feed pipe (2) is arranged on the top surface of the recovery tank (1), and a discharge pipe (3) is arranged on the bottom surface of the recovery tank (1), characterized in that: Also includes: A servo motor (4) is fixedly mounted at the edge of the top surface of the recovery tank (1); A cleaning component, arranged inside the recovery tank (1), and used for cleaning adhesions on the inner wall of the recovery tank (1); A rotating sleeve (7) is rotatably mounted on the inner top surface of the recovery tank (1), and the top end of the rotating sleeve (7) and the output end of the servo motor (4) are both provided with one-way bearings, and the two one-way bearings are connected to each other through a driven wheel and a synchronous belt transmission; The buoyancy filter frame (6) is slidably mounted on the outer wall of the rotating sleeve (7) via a slide groove and a slider; A stirring assembly, arranged on the rotating sleeve (7), and used for mixing the waste material cleaned out of the recovery tank (1); The stirring assembly comprises: Three groups of openings (81) are distributed in a linear array and are opened on the rotating sleeve (7), and the number of openings (81) in each group is two and they are symmetrically arranged; A plurality of rotating shafts (82) are rotatably mounted on the bottom inner walls of the plurality of openings (81); A plurality of rotating plates (83) are respectively fixedly sleeved on the plurality of rotating shafts (82); A plurality of stirring plates (84) are respectively fixedly mounted on one end of a plurality of the rotating plates (83); A plurality of torsion springs (85) are respectively mounted on the plurality of rotating shafts (82); A transmission mechanism, arranged in the rotating sleeve (7); The transmission mechanism comprises: A plurality of connecting plates (86) are respectively fixedly mounted on ends of a plurality of the rotating plates (83) away from the stirring plate (84); A transmission rod (87) is slidably mounted on the inner wall of the rotating sleeve (7) via a bracket; A spring (88) is fixedly mounted between the bottom surface of the transmission rod (87) and the inner bottom wall of the rotating sleeve (7); Three lifting rings (89) are distributed in a linear array and fixedly sleeved on the transmission rod (87), and the lifting rings (89) are adapted to the connecting plate (86); Two guide openings (810) are symmetrically arranged at the top end of the rotating sleeve (7); A lifting plate (811) is fixedly mounted on the top end of the transmission rod (87), and two ends of the lifting plate (811) pass through the two guide openings (810) respectively; A linkage structure, arranged between the buoyancy filter frame (6) and the inner wall of the recovery tank (1), and used for driving the buoyancy filter frame (6); A fixing frame (10) fixedly mounted on the outer wall of the recovery tank (1); A display trigger component is arranged on the fixing frame (10) and is used to trigger the servo motor (4) and display the liquid level in the recovery tank (1).

2. A jelly candy production waste collection device according to claim 1, characterized in that: The cleaning component includes: A driving screw (51) fixedly mounted on the output end of the servo motor (4); A buoyancy ring (52) is slidably mounted on the outer wall of the driving screw (51), and the inner wall of the buoyancy ring (52) is movably connected to the outer wall of the buoyancy filter frame (6); A lifting ring (53) threadedly sleeved on the outer wall of the driving screw (51); Two scraper strips (54) symmetrically fixedly sleeved on the outer wall of the lifting ring (53); A bevel gear ring (55) rotatably mounted on the bottom inner wall of the recovery tank (1); A plurality of scrapers (56) are distributed in an annular array and fixedly mounted on the bottom surface of the bevel gear ring (55); The driven bevel gear (57) is fixedly mounted on the bottom end of the driving screw (51), and the driven bevel gear (57) is meshed with the bevel gear ring (55).

3. A jelly candy production waste collection device according to claim 2, characterized in that: The outer wall of the scraper strip (54) fits into the inner wall of the recovery tank (1), and the scraper plate (56) is arranged at an angle.

4. A jelly candy production waste collection device according to claim 1, characterized in that: The stirring plate (84) is adapted to fit the opening (81), and the connecting plate (86) is configured to be L-shaped.

5. A jelly candy production waste collection device according to claim 2, characterized in that: The linkage structure includes: A corrugated guide groove (91) is provided on the outer wall of the buoyancy filter frame (6); A clearance opening (92) is provided on the top surface of the buoyancy filter frame (6), and the clearance opening (92) is communicated with the corrugated guide groove (91); A guide rod (93) fixedly mounted on the inner wall of the recovery tank (1); A through opening (94) is provided on the top surface of the buoyancy ring (52), and the through opening (94) corresponds to the guide rod (93); A cover plate (95) is fixedly mounted on the inner wall of the recovery tank (1) at a position above the guide rod (93), and the cover plate (95) is adapted to fit the through port (94).

6. A jelly candy production waste collection device according to claim 2, characterized in that: The display trigger component comprises: A winding reel (111) rotatably mounted on the top surface of the fixing frame (10); A pull rope (112) is arranged on the inner side of the winding drum (111), and one end of the pull rope (112) away from the winding drum (111) passes through the top surface of the recovery tank (1) and is fixedly connected to the top surface of the buoyancy ring (52); A fixing plate (113) fixedly mounted on the top surface of the fixing frame (10); A second torsion spring (114) is arranged at an end of the winding drum (111), and two ends of the second torsion spring (114) are respectively fixedly connected to the fixing plate (113) and the winding drum (111); A linkage screw (115) threadably mounted on the inner wall of the winding disk (111); A guide groove (116) is formed on a side surface of the fixing plate (113); A connecting block (117) is slidably mounted on the inner wall of the guide groove (116), and an end of the connecting block (117) is fixedly connected to an end of the linkage screw rod (115); A trigger mechanism is arranged on a side of the winding disk (111) away from the fixing plate (113).

7. A jelly candy production waste collection device according to claim 6, characterized in that: The trigger mechanism comprises: An energized coil (118) is arranged at one end of the winding reel (111) away from the fixing plate (113); A trigger switch (119) is fixedly mounted on an end of the fixing frame (10), and the trigger switch (119) is electrically connected to the servo motor (4) via a wire; The magnetic plate (1110) is slidably mounted on the top surface of the fixing frame (10) and is located between the energized coil (118) and the trigger switch (119).

8. The jelly candy production waste collection device according to claim 2, characterized in that: The upper outer wall of the recovery tank (1) is provided with a material collecting ring box (12) corresponding to the buoyancy ring (52), and the outer wall of the recovery tank (1) is provided with a material guide port (13) corresponding to the material collecting ring box (12).

Citation Information

Patent Citations

  • Gummy candy production waste collection device

    CN206437426U

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    CN117717943A