Device for screening out pedicles of soft sweets
By designing the gummy candy sieve removal equipment, and using the cooperation of the filter chamber and the cover, multiple screening of the candy sieve in the gummy casing is achieved, solving the problems of low efficiency and manual picking in the existing technology, and improving production efficiency and product quality.
Patent Information
- Application Number
- CN202421611657.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-09
- Publication Date
- 2025-08-05
- Estimated Expiration
- 2034-07-09
AI Technical Summary
During the production process of existing casing gummies, the sugar stalk removal efficiency is inefficient and can easily affect the product appearance, and relying on manual picking leads to omissions and inefficiency.
A fudge candy sieve removal device is designed, including at least two filter components and an electronic control mechanism. The filter component consists of a cylindrical filter chamber and a shielding member. The multiple screening of the sugar sieve is achieved through the rotation of the filter chamber. The combination of the filter hole and the shielding member is used to ensure that the sugar sieve falls out of the filter hole and the guard is retained in the filter chamber.
It realizes efficient screening of sugar stalks, improves production efficiency, avoids the impact of artificial contact on the product, and ensures screening rate and product quality.
Smart Images

Figure CN223184918U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of health food manufacturing industry, in particular to a device for screening out the stalks of soft candies. Background Art
[0002] Enteric-coated gummy candy refers to a gel gummy candy coated with a layer of collagen casing. The casing relies on the casing to form a bionic fruit peel, and the filled gel gummy candy relies on the colloid to form a gel network structure, which binds sugars and water in the gel network to form a stable bionic gummy candy.
[0003] The existing production process for entero-coated soft candies involves filling and forming them into serial strips, followed by shearing into individual pellets. However, this shearing process produces numerous candy stalks, which can be carried along with the candy coating or adhere to its surface, carrying over to the next packaging step and affecting the finished product. Existing methods for removing these stalks rely on manual sorting, which relies on both hands and eyes. This is inefficient, prone to touching and affecting the appearance of the candy coating, and prone to omissions. Utility Model Content
[0004] The present invention aims to at least partially address one of the problems in the related art. To this end, one of the objectives of the present invention is to provide a device for rapidly removing the stalks of soft candies from enteric-coated candies, achieving a high removal rate without affecting the final product, thereby improving production efficiency.
[0005] A device for screening out the stems of soft candies, comprising:
[0006] The screening mechanism includes at least two filter assemblies, at least two of the filter assemblies are stacked in a horizontal direction, the filter assembly includes a cylindrical filter bin and a shielding member, the two ends of the filter bin are respectively provided with a feed port and a discharge port, the discharge port of one filter bin is connected to the feed port of the next filter bin, the peripheral side wall of the filter bin is provided with a filter hole, the forward rotation direction of the filter bin is defined as the discharge rotation direction, the shielding member is connected to the filter bin and is located at the rear side of the discharge port along the discharge rotation direction;
[0007] The electric control mechanism includes a controller and a driving member. The controller is electrically connected to the driving member, and the driving member is drivingly connected to each of the filter bins to drive the filter bins to rotate forward or reverse.
[0008] Furthermore, the filter assembly further includes a screen connected to the peripheral side wall of the filter bin.
[0009] The setting of the screen can be used to replace the screen, realize the maintenance and cleaning of the screen, and can also replace the screen with different aperture sizes to realize the screening of sugar pedicles of different diameters, thereby improving the adaptability of the filter chamber.
[0010] Furthermore, a buffer groove is provided on the inner wall of the end portion of the filter bin along the radial direction, the discharge port is provided in the buffer groove, and the shielding member is provided along the edge of the buffer groove on one side along the positive rotation direction.
[0011] The setting of the buffer trough can improve the efficiency of discharging, extend the falling path of the soft candies and candy stems, and improve the success rate of falling.
[0012] Furthermore, the longitudinal cross-section of the buffer groove is arc-shaped.
[0013] The arc-shaped groove has a concave shape, which maintains the soft candies and candy stems in the buffer groove, prevents them from falling out of the buffer groove, ensures that they fall through the buffer groove to the discharge port, and improves the success rate of falling.
[0014] Furthermore, the filter assembly also includes a plurality of guide blocks, which are connected to the inner circumferential wall of the filter bin, and are spaced apart along the inner circumferential wall of the filter bin. The guide block is provided with an inclined surface on the side close to the feed side, and the inclined surface is inclined from the discharge port to the feed port toward the side relative to the feed side.
[0015] The setting of the guide block can collide with the material, thereby stirring the material, improving the fluidity of the material inside the filter chamber, thereby improving the filtering effect. Or it can push the material towards the discharge port, thereby improving the efficiency of material discharge.
[0016] Furthermore, the feed port is arranged corresponding to the center line;
[0017] And / or, the number of the driving members is at least two, and one driving member drives and connects to one filter bin.
[0018] The feed port is set corresponding to the center line. On the one hand, it is convenient for the material to fall downward after entering from the feed port, which is convenient for the filtration of the sugar stalk. On the other hand, it avoids the influence of the feed port on other components.
[0019] The provision of at least two driving members can achieve a state in which the rotation speeds of multiple filter chambers gradually increase, or a state in which a single filter chamber has an independent rotation state, and there is no incremental state between the filter chambers.
[0020] Furthermore, the soft candy stem screening equipment also includes a machine platform and a feed hopper, the screening mechanism is arranged on the machine platform, the feed hopper is connected to the filter bin of the first filter component, and the outlet of the feed hopper is connected to the feed port.
[0021] The setting of the machine not only supports and bears the screening mechanism and the electronic control mechanism, but also serves as a connection between multiple filtering components. The setting of the feed hopper facilitates the operator's loading and unloading of materials, thus improving convenience.
[0022] Furthermore, the machine is further provided with a material receiving bin, which is connected to the filter bin of the last filter assembly, the inlet of the material receiving bin is connected to the discharge port, and a material discharge channel is provided on the other side of the material receiving bin opposite to the inlet;
[0023] And / or, the screening mechanism further comprises the cover, one end of which is rotatably connected to the machine platform, and the cover is rotated to open or close the top of the filter bin.
[0024] The setting of the collecting bin makes it easier for operators to collect products and improves convenience. The setting of the cover ensures the closedness of the screening process and prevents material splashing or dust spreading.
[0025] Furthermore, the machine includes a machine body and multiple waste recovery bins. A connection port is opened on the side of the machine body. One of the recovery bins is detachably connected to one of the connection ports, and one of the recovery bins is correspondingly arranged below one of the filter bins.
[0026] The setting of the waste recovery bin facilitates the collection and processing of sugar stalks.
[0027] Furthermore, the machine also includes a material level sensor, which is arranged in the recovery bin and electrically connected to the electric control mechanism.
[0028] The material level sensor is responsible for real-time monitoring of the material situation in the waste recovery bin and reminding the operator whether the waste recovery bin is full.
[0029] The above technical solution provided by the embodiment of the present application has the following advantages over the prior art: the present application is provided with a screening mechanism, including at least two filter assemblies, at least two filter assemblies are stacked in a horizontal direction, the filter assemblies include a cylindrical filter chamber and a shielding member, the filter chamber is provided with a feed inlet and a discharge outlet at each end, the discharge outlet of one filter chamber is connected to the feed inlet of the next filter chamber, and the filter chamber is provided with a filter hole on the peripheral side wall. Therefore, when the filter chamber rotates, the soft candies and sugar stalks inside will touch and rub the inner wall of the filter chamber, and fall to the bottom of the filter chamber due to gravity. When the sugar stalks pass through the filter holes, they will fall out of the filter holes, achieving a screening effect of the sugar stalks. At least two filter assemblies are provided, and the discharge outlet and feed inlet of two adjacent filter chambers are connected. After the soft candies and sugar stalks pass through one filter assembly, they are screened to the next filter assembly and then screened twice or multiple times. Such an arrangement can achieve multiple screening of the sugar stalks, improve the screening rate, and the entire screening process does not require human contact, avoiding the impact on the enteric candy product. An electric control mechanism is also provided, which can control the driving member through the controller to change the rotation opening and closing and rotation direction of the filter bin. A shielding member is provided on one side of the discharge port in the filter bin, and the shielding member is provided at the rear side of the discharge port along the discharge rotation direction; when the driving member drives the filter bin to rotate in the forward direction, the soft candy will not be blocked by the shielding member and will directly fall to the discharge port. When the driving member drives the filter bin to rotate in the reverse direction, the soft candy will be blocked by the shielding member when it reaches the edge of the discharge port and will not fall to the discharge port and will continue to rotate with the filter bin. By changing the rotation direction of the filter bin, the filter bin can be changed between the reverse rotation screening mode or the forward rotation discharge mode. BRIEF DESCRIPTION OF THE DRAWINGS
[0030] The accompanying drawings are incorporated in and constitute a part of this specification, illustrate embodiments consistent with the present invention, and together with the description, serve to explain the principles of the present invention.
[0031] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, for ordinary technicians in this field, other drawings can be obtained based on these drawings without any creative work.
[0032] Figure 1 This is a structural schematic diagram of an embodiment of a soft candy stem screening device according to the present application;
[0033] Figure 2 This is a front view of a device for screening soft candy stems in this application;
[0034] Figure 3 This is a schematic diagram of the structure of a filtering component in a soft candy stem screening device according to the present application;
[0035] Figure 4 This is a schematic diagram of the external structure of a filtering component in a soft candy stem screening device according to the present application;
[0036] Figure 5 This is a schematic structural diagram of a plurality of filtering components in a soft candy stem screening device according to the present application;
[0037] Figure 6 This is a schematic diagram of the forward-driven rotation of a filtering component in a soft candy stem screening device of the present application;
[0038] Figure 7 This is a schematic diagram of the reverse driving rotation of the filtering component in the soft candy stem screening device of the present application;
[0039] Figure 8 This is a structural schematic diagram of a recovery bin in a soft candy stem screening device for this application.
[0040] Figure numerals: 1. A device for screening out soft candy stems; 10. Screening mechanism; 11. Filter assembly; 111. Filter bin; 1111. Feed port; 1113. Discharge port; 1115. Buffer tank; 113. Shielding member; 115. Screen; 117. Guide block; 30. Electric control mechanism; 50. Machine platform; 51. Machine body; 52. Material collecting bin; 521. Material discharge channel; 53. Waste recovery bin; 55. Material level sensor; 60. Feed hopper; 70. Cover. DETAILED DESCRIPTION
[0041] The preferred embodiments of the present invention will be described in more detail below with reference to the accompanying drawings. Although preferred embodiments of the present invention are shown in the accompanying drawings, it should be understood that the present invention can be implemented in various forms and should not be limited by the embodiments described herein. Rather, these embodiments are provided to make the present invention more thorough and complete and to fully convey the scope of the present invention to those skilled in the art. Example
[0042] like Figure 1 - Figure 8 As shown, the present application provides a soft candy stem screening device 1, comprising:
[0043] The screening mechanism 10 includes at least two filter assemblies 11, which are stacked in a horizontal direction. The filter assembly 11 includes a cylindrical filter bin 111 and a shielding member 113. The two ends of the filter bin 111 are respectively provided with a feed port 1111 and a discharge port 1113. The discharge port 1113 of one filter bin 111 is connected to the feed port 1111 of the next filter bin 111. The peripheral side wall of the filter bin 111 is provided with filter holes. The forward rotation direction of the filter bin 111 is defined as the discharge rotation direction. The side of the discharge port 1113 located in the discharge rotation direction is the feed side. The shielding member 113 is connected to the filter bin 111 and is located on the side of the discharge port 1113 opposite to the feed side.
[0044] The electric control mechanism 30 includes a controller and a driving member. The controller is electrically connected to the driving member, and the driving member is drivingly connected to each filter chamber 111 to drive the filter chamber 111 to rotate forward or reverse.
[0045] Specifically, at least two filter components 11 are stacked in the horizontal direction, that is, the feed port 1111 and the discharge port 1113 of the filter bin 111 are both opened in the horizontal direction and arranged on a vertical plane, and the filter holes are arranged on a horizontal plane. Preferably, there are multiple filter holes, and the multiple filter holes are arranged at intervals along the circumference of the filter bin 111. The multiple filter holes can be arranged in a straight line along the circumferential side wall of the filter bin 111, or in an array, which is not limited here. In addition, the aperture of the filter hole is smaller than the diameter of the soft candy and larger than the diameter of the candy stalk, that is, the aperture of the filter hole is between the diameter of the soft candy and the diameter of the candy stalk. In this way, it can be ensured that the candy stalk is screened out from the filter hole, and the soft candy is retained in the filter bin 111, thereby achieving the screening effect of the candy stalk. The driving member drives the filter chamber 111, and the driving member can be a single-phase asynchronous motor, a DC motor, a stepping motor, etc. The driving member is connected to the axial position of the filter chamber 111, and can then drive the filter chamber 111 to rotate forward or reverse, that is, to rotate clockwise or counterclockwise.
[0046] The inner wall of the end portion of the filter chamber 111 at the discharge port 1113 is further connected to a shielding member 113. The shielding member 113 is arranged at the rear side of the discharge port 1113 along the discharge rotation direction and is arranged perpendicular to the inner surface of the end portion. Preferably, the shielding member 113 is located at the discharge port 1113, that is, when the filter chamber 111 rotates in the reverse rotation direction, when the soft candies and candy stems reach the discharge port 1113, the shielding member 113 will block the soft candies and candy stems from entering the discharge port 1113, passing from the side or top of the shielding member 113, so that they continue to move in the filter chamber 111 and will not move out of the filter chamber 111 through the discharge port 1113. Moreover, when the filter chamber 111 rotates in the forward rotation direction, when the soft candies and candy stems reach the discharge port 1113, the shielding member 113 will block the soft candies and candy stems from continuing to move, causing them to stop moving and fall into the discharge port 1113, thereby improving the discharge efficiency.
[0047] Furthermore, the shielding member 113 may be a baffle, a block, a bar, etc. When the shielding member 113 is a baffle, the shielding member 113 may be arranged in an arc shape along the edge of the discharge port 1113, or may be arranged in a straight line along the radial direction of the filter chamber 111; when the shielding member 113 is a block, the shielding member 113 may be connected to the edge of the discharge port 1113, and a slope is provided on the side away from the discharge port 1113, and the slope is arranged obliquely upward along the end surface, so that the soft candies and candy stems passing through the block will pass over the block, preventing them from entering the discharge port 1113; when the shielding member 113 is a bar, it may be located at the edge of the discharge port 1113 and connected to multiple bars, forming a fence shape, which can also achieve the effect of preventing the soft candies and candy stems from entering the discharge port 1113. Specifically, the position of the shielding member 113 at the edge of the discharge port 1113 is not fixed, and needs to be combined and set according to the rotation direction of the filter bin 111. If the filter bin 111 rotates clockwise in the screening direction, the shielding member 113 is set in the front side of the rotation direction of the discharge port 1113.
[0048] Furthermore, the discharge port 1113 of one filter bin 111 is connected to the feed port 1111 of the next filter bin 111. In one embodiment, the discharge port 1113 and the feed port 1111 are respectively arranged at the center of the two end faces of the filter bin 111. Since each filter bin 111 is located on the same horizontal line, rotation will not change the height and horizontal position of the discharge port 1113 and the feed port 1111, and thus they can be connected through a hard pipe. In another embodiment, the discharge port 1113 and the feed port 1111 are not arranged at the center of the two end faces of the filter bin 111. The discharge ports 1113 and the feed ports 1111 of two adjacent filter bins 111 can be connected through a hose, or a large-diameter connecting pipe is connected between the two end faces, and the connecting pipe accommodates the discharge port 1113 and the feed port 1111 on both sides. The product falling out of the discharge port 1113 passes through the connecting pipe and then falls into the feed port 1111.
[0049] Specifically, the working process of the soft candy and sugar stem screening device is as follows: the soft candies and sugar stems enter the filter bin 111 through the feed port 1111 of the first filter bin 111, and the driving member drives the filter bin 111 to rotate in the opposite direction first. The soft candies and sugar stems inside will touch and rub the inner wall of the filter bin 111, and fall to the bottom of the filter bin 111 due to gravity. When the sugar stems pass through the filter holes, they will fall out of the filter holes, achieving the screening effect of the sugar stems, and will not pass through the discharge port 1113 due to the obstruction of the blocking member 113; then the device rotates forward, and the soft candies and sugar stems inside will pass through the discharge port 1113 without being blocked by the blocking member 113 and enter the next filter bin 111. The above operation is repeated in the next filter bin 111, and then a second filtration is performed. By analogy, when multiple filter bins 111 are provided, multiple filtering and screening can be performed. When passing through the last filtering chamber 111, it rotates forward and the soft candies inside are discharged from the discharge port 1113. The operator can collect the products at the discharge port 1113, thus achieving the filtering effect of the candy stems.
[0050] The above-mentioned technical solution provided by the embodiment of the present application has the following advantages compared with the prior art: the present application is provided with a screening mechanism 10, including at least two filter components 11, and the at least two filter components 11 are stacked in a horizontal direction. The filter component 11 includes a cylindrical filter bin 111 and a shielding member 113. The two ends of the filter bin 111 are respectively provided with a feed port 1111 and a discharge port 1113. The discharge port 1113 of one filter bin 111 is connected to the feed port 1111 of the next filter bin 111. The surrounding side wall of the filter bin 111 is provided with filter holes. Therefore, when the filter bin 111 rotates, the soft candies and sugar stems inside will touch and rub the inner wall of the filter bin 111, and fall to the bottom of the filter bin 111 due to gravity. When the sugar stems pass through the filter holes, they will fall out of the filter holes, thereby achieving the screening effect of the sugar stems. At least two filter components 11 are provided, and the discharge ports 1113 and feed ports 1111 of two adjacent filter bins 111 are connected. After the soft candies and sugar stems pass through a filter component 11, they are screened to a certain extent and fall into the next filter component 11, and then screened twice or multiple times. Such a setting can achieve multiple screening of sugar stems, thereby improving the screening rate, and there is no manual contact during the entire screening process, thereby avoiding the impact on the enteric-coated sugar products. An electric control mechanism 30 is also provided. The electric control mechanism 30 can control the driving member through the controller, thereby changing the rotation opening and closing and rotation direction of the filter bin 111. A shielding member 113 is provided on one side of the discharge port 1113 in the filter bin 111, and the shielding member 113 is provided on the feeding side of the discharge port 1113 during reverse rotation; when the driving member drives the filter bin 111 to rotate in the forward direction, the soft candy will not be blocked by the shielding member 113 and will directly fall to the discharge port 1113. When the driving member drives the filter bin 111 to rotate in the reverse direction, the soft candy will be blocked by the shielding member 113 when it reaches the edge of the discharge port 1113 and will not fall to the discharge port 1113 and continue to rotate with the filter bin 111. By changing the rotation direction of the filter bin 111, the filter bin 111 can be changed between a reverse rotation screening mode or a forward rotation discharge mode.
[0051] Furthermore, a buffer groove 1115 is radially provided on the inner wall of the end of the filter chamber 111. The discharge port 1113 is located within the buffer groove 1115, and a shield 113 is disposed at the rear side of the discharge rotation direction. The buffer groove 1115 provides a passage for products to enter the discharge port 1113. A shield 113 is disposed at the edge of the buffer groove 1115. When the filter chamber 111 rotates in the forward direction and the soft candies and candy stems reach the discharge port 1113, the shield 113 prevents the soft candies and candy stems from continuing to move into the buffer groove 1115. The soft candies and candy stems then move along the buffer groove 1115 and fall to the discharge port 1113. The provision of the buffer groove 1115 can improve discharge efficiency. The shield 113 can be located at the rear side of the buffer groove 1115 in the discharge rotation direction, or at the rear side and the front side of the portion near the center of the filter chamber 111. Preferably, discharge port 1113 is located on one side of buffer tank 1115 near the center of filter chamber 111. The soft candies and candy stems first pass through buffer tank 1115 and then through discharge port 1113, extending the path for the soft candies and candy stems to fall, thereby increasing their success rate. The buffer tank 1115 can extend in a straight line, an arc, or an "S" shape.
[0052] Furthermore, the longitudinal cross-section of the buffer groove 1115 is arc-shaped. The buffer groove 1115 is configured to be arc-shaped, preferably semicircular. When the soft candies and candy stems fall into the buffer groove 1115, the arc-shaped groove has a concave shape, which keeps the soft candies and candy stems within the buffer groove 1115, preventing them from falling out of the buffer groove 1115 and ensuring that they fall through the buffer groove 1115 to the discharge port 1113, thereby improving the success rate of the drop. Example
[0053] like Figures 1-8 As shown, this embodiment provides a soft candy stem screening device 1, and the filter assembly 11 also includes a screen 115, which is connected to the peripheral side wall of the filter bin 111. The setting of the screen, on the one hand, can replace the screen to achieve maintenance and cleaning of the screen, and can also replace screens with different pore sizes to achieve screening of candy stems of different diameters, thereby improving the adaptability of the filter bin 111; on the other hand, different filter bins 111 can be provided with screens of different diameters to perform classified screening of candy stems of stepped diameters. Specifically, the material of the screen can be nylon, polypropylene, polyurethane and the like to avoid the influence of too hard materials on the appearance of the soft candy. It can be understood that the screen can be connected to the inner wall of the filter bin 111, or to the outer wall of the filter bin 111, that is, it is located on the inner or outer side of the filter hole for separation.
[0054] Furthermore, the filter assembly 11 includes a plurality of guide blocks 117 connected to the inner circumferential wall of the filter chamber 111. The guide blocks 117 are spaced apart along the inner circumferential wall of the filter chamber 111. The guide blocks 117 have an inclined surface on the side closest to the feed side, and the inclined surface is inclined toward the feed port 1111, facing the feed side. The guide blocks 117, positioned within the filter chamber 111, serve to agitate the material. As the filter chamber 111 rotates continuously, the guide blocks 117 collide with the material, thereby agitating it and improving its fluidity within the filter chamber 111, thereby enhancing the filtration effect. The guide blocks 117 have an inclined surface on one side and a flat surface on the other. When the filter chamber 111 rotates in the reverse direction, the inclined surface of the guide blocks 117 contacts the material, colliding and agitating it. When the filter chamber 111 rotates in the forward direction, the flat surface of the guide blocks 117 contacts the material, pushing it toward the discharge port 1113 and improving the efficiency of material discharge. Furthermore, the guide block 117 is also connected to the middle position of the side wall of the filter bin 111, that is, there is a certain distance from the end face of one side of the filter bin 111 where the discharge port 1113 is provided. When the filter bin 111 rotates forward, the influence of the guide block 117 on the blocking movement of the material is reduced, and the material is kept moving toward the discharge port 1113.
[0055] Furthermore, the feed port 1111 is arranged corresponding to the center line;
[0056] And / or, the number of the driving members is at least two, and one driving member drives and connects to one filter chamber 111 .
[0057] The feed port 1111 is set corresponding to the center line. On the one hand, it is convenient for the material to fall downward after entering from the feed port 1111, which is convenient for the filtering of the sugar stalk. On the other hand, it avoids the impact of the feeding from the feed port 1111 on other components.
[0058] There are at least two driving members, which drive and connect their respective filter chambers 111 in a precise manner to form an efficient and stable filtration system. Therefore, each driving member is connected to a filter chamber 111 separately, and can independently control the rotation speed and rotation direction of the filter chamber 111. Therefore, it is possible to achieve a state in which the rotation speeds of multiple filter chambers 111 gradually increase, or a single filter chamber 111 has an independent rotation state, and there is no incremental state between the filter chambers 111. At the same time, each driving member is equipped with an intelligent control system that can monitor its working status and performance parameters in real time and automatically adjust them as needed. This intelligent design makes the entire filtration system more efficient and reliable, and can provide users with a better user experience. Example
[0059] like Figures 1-8As shown, this embodiment provides a soft candy stem screening device 1, which also includes a machine platform 50 and a feed hopper 60. The screening mechanism 10 is arranged on the machine platform 50, and the feed hopper 60 is connected to the filter bin 111 of the first filter component 11, and the outlet of the feed hopper 60 is connected to the feed port 1111.
[0060] The machine platform 50 supports and bears the screening mechanism 10 and the electronic control mechanism 30. It also connects the multiple filter assemblies 11 and maintains the position of the multiple filter chambers 111. The feed hopper 60 is connected to the filter chamber 111 of the first filter assembly 11. The outlet of the feed hopper 60 is connected to the feed port 1111. The feed hopper 60 facilitates loading and unloading of materials by the operator, improving convenience.
[0061] Furthermore, the machine 50 is equipped with a material collection bin 52, which is connected to the filter bin 111 of the last filter assembly 11. The inlet of the material collection bin 52 is connected to the discharge port 1113. A material discharge channel 521 is provided on the other side of the material collection bin 52 opposite the inlet. The provision of the material collection bin 52 facilitates product collection by the operator, improving convenience. The provision of the material discharge channel 521 facilitates the integration of the material collection bin 52 with other processing mechanisms, improving the adaptability and scalability of the screening equipment.
[0062] And / or, the screening mechanism 10 also includes a cover 70, one end of which is rotatably connected to the machine 50, and the cover 70 is rotated to open or cover the top of the filter bin 111. The provision of the cover 70 makes the operation of the screening mechanism 10 more convenient. When it is necessary to clean the filter bin 111 or replace the screen 115, the user can easily rotate the cover 70 to open it, thereby conveniently accessing the inside of the filter bin 111. When the screening operation is in progress, the cover 70 can be covered on the top of the filter bin 111 to ensure the closedness of the screening process and prevent material splashing or dust diffusion. Furthermore, a handle can be provided on the side of the cover 70 to facilitate the operator's grabbing and movement.
[0063] The design of the cover 70 not only considers practicality but also safety. Its durable construction is capable of withstanding the impacts and shocks encountered during daily use. Furthermore, the rotating connection between the cover 70 and the machine platform 50 utilizes high-quality bearings and seals, ensuring smooth rotation and a tight seal, effectively preventing material leakage or the entry of foreign matter into the filter chamber 111.
[0064] In addition, the cover 70 is also equipped with a safety lock device to ensure that the cover 70 can be firmly maintained in the closed state during the screening process. Only when the cover 70 needs to be opened, the user needs to unlock the device, thereby improving the safety of the screening operation.
[0065] Furthermore, the machine 50 includes a body 51 and multiple waste recovery bins 53 . A connection port is opened on the side of the body 51 . A waste recovery bin 53 can be detachably connected to a connection port. A waste recovery bin 53 is correspondingly arranged below a filter bin 111 .
[0066] A waste recovery bin 53 is positioned below each filter bin 111. Each bin 53 collects the sugar stalks filtered by each filter bin 111, facilitating their collection and disposal. The removable connection between the bin 53 and the connector makes replacement or cleaning of the bin 53 simple and quick. Simply unfastening the fastener at the connector allows for easy removal from the housing 51 for subsequent cleaning or replacement.
[0067] Furthermore, the machine 50 includes a material level sensor 55, which is located within the waste recovery bin 53 and electrically connected to the electronic control mechanism 30. As a key component of the machine 50, the material level sensor 55 is responsible for real-time monitoring of the material level within the waste recovery bin 53. Once the material level within the waste recovery bin 53 reaches a set threshold, the material level sensor 55 quickly responds and transmits a signal to the electronic control mechanism 30. Upon receiving the signal, the electronic control mechanism 30 immediately notifies the operator, using various means, such as sound, light, and vibration.
[0068] It can be understood that the above embodiments only express the preferred implementation methods of the present invention, and the descriptions thereof are relatively specific and detailed, but they cannot be understood as limiting the patent scope of the present invention. It should be pointed out that for ordinary technicians in this field, without departing from the concept of the present invention, the above technical features can be freely combined, and several deformations and improvements can be made, all of which fall within the scope of protection of the present invention. Therefore, all equivalent changes and modifications made to the scope of the claims of the present invention should fall within the scope of coverage of the claims of the present invention.
Claims
1. A soft candy stalk screening device, characterized in that: include: A screening mechanism, wherein the screening mechanism includes at least two filter assemblies, at least two of the filter assemblies are stacked in a horizontal direction, the filter assembly includes a cylindrical filter bin and a shielding member, the two ends of the filter bin are respectively provided with a feed port and a discharge port, the discharge port of one filter bin is connected to the feed port of the next filter bin, the peripheral side wall of the filter bin is provided with a filter hole, the forward rotation direction of the filter bin is defined as the discharge rotation direction, the shielding member is connected to the filter bin, and is located at the rear side of the discharge port along the discharge rotation direction; The electric control mechanism includes a controller and a driving member. The controller is electrically connected to the driving member, and the driving member is drivingly connected to each of the filter bins to drive the filter bins to rotate forward or reverse.
2. The soft candy stem screening device according to claim 1, characterized in that: The filter assembly further includes a screen connected to the peripheral side wall of the filter bin.
3. The soft candy stem screening device according to claim 2, characterized in that: The inner wall of the end portion of the filter bin is provided with a buffer groove along the radial direction, the discharge port is provided in the buffer groove, and the shielding member is provided along the rear side of the discharge rotation direction.
4. The soft candy stem screening device according to claim 3, characterized in that: The longitudinal section of the buffer groove is arc-shaped.
5. The soft candy stem screening device according to any one of claims 1 to 4, characterized in that: The filter assembly also includes a plurality of guide blocks, which are connected to the inner circumferential wall of the filter bin and are spaced apart along the inner circumferential wall of the filter bin. An inclined surface is provided on the side of the guide block close to the feed side, and the inclined surface is inclined from the discharge port to the feed port toward the side opposite to the feed side.
6. The soft candy stem screening device according to any one of claims 1 to 4, characterized in that: The feed port is set corresponding to the center line; And / or, the number of the driving members is at least two, and one driving member drives and connects to one filter bin.
7. The soft candy stem screening device according to any one of claims 1 to 4, characterized in that: The soft candy stem screening equipment also includes a machine platform and a feed hopper. The screening mechanism is arranged on the machine platform. The feed hopper is connected to the filter bin of the first filter component. The outlet of the feed hopper is connected to the feed port.
8. The soft candy stem screening device according to claim 7, characterized in that: The machine is further provided with a material receiving bin, which is connected to the filter bin of the last filter assembly, the inlet of the material receiving bin is connected to the discharge port, and a material discharge channel is provided on the other side of the material receiving bin opposite to the inlet; And / or, the screening mechanism further comprises a cover, one end of which is rotatably connected to the machine platform, and the cover is rotated to open or close above the filter bin.
9. The soft candy stem screening device according to claim 7, characterized in that: The machine includes a machine body and multiple waste recovery bins. A connection port is opened on the side of the machine body. One of the waste recovery bins is detachably connected to one of the connection ports. One of the waste recovery bins is correspondingly arranged below one of the filter bins.
10. The soft candy stem screening device according to claim 9, characterized in that: The machine further includes a material level sensor, which is disposed in the recovery bin and electrically connected to the electric control mechanism.