Low-temperature dehydration equipment for momordica grosvenori
The low-temperature dehydration equipment for monk fruit, which integrates drilling and dehydration mechanisms, solves the problems of low efficiency and inconsistent quality in traditional monk fruit processing, achieving efficient automation and low-damage processing results.
Patent Information
- Application Number
- CN202520235275.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-14
- Publication Date
- 2025-12-12
- Estimated Expiration
- 2035-02-14
AI Technical Summary
Traditional monk fruit processing involves separate operations for punching and dehydration, which increases the workload of manual handling, resulting in low efficiency, inconsistent product quality, and easy damage to the fruit, making it difficult to meet the needs of large-scale production.
Design a low-temperature dehydration device for monk fruit, integrating punching and dehydration mechanisms. Through integrated operation of feeding, conveying, punching and dehydration, a microwave generator and vacuum pump are used to dehydrate at low temperature, ensuring the accuracy of punching and the efficiency of dehydration.
This technology enables highly efficient automation in the processing of monk fruit, improves product quality consistency, reduces equipment costs, minimizes fruit damage, and enhances processing quality.
Smart Images

Figure CN223653196U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a momordica grosvenori processing equipment, in particular to a momordica grosvenori low-temperature dehydration equipment. BACKGROUND
[0002] Momordica grosvenori as a kind of natural sweetener with heat-clearing and lung-moistening, relieving cough and reducing phlegm effect has been widely applied in food processing field.With the increasing attention of people to healthy diet, natural, non-additive food raw material is more and more welcomed by market, and the quality and shelf life of momordica grosvenori product become key factors.In the traditional dehydration process of momordica grosvenori processing, it is often needed to carry out punching operation to momordica grosvenori first, and then dehydration, and the two steps are usually carried out separately, which not only increases the workload of artificial handling, but also may cause damage to momordica grosvenori in transfer process.Moreover, artificial punching has many drawbacks, such as low punching efficiency, and it is difficult to guarantee the uniformity of punching quality, and due to factors such as fatigue of operator, operation proficiency, there may be great difference in size, depth and position of hole, which will affect the effect of subsequent dehydration and product quality, and it is difficult to meet the demand of large-scale production. SUMMARY
[0003] The application aims at the above problems, and provides a cell storage transfer box, which can realize integrated operation of punching and dehydration, does not need artificial punching, improves production efficiency, guarantees the consistency of product quality, reduces equipment cost and damage of momordica grosvenori in processing process, and thus improves the processing quality of momordica grosvenori.
[0004] To achieve the above purpose, the technical scheme adopted by the utility model is:
[0005] The application discloses a low-temperature dehydration equipment for momordica grosvenori, which comprises a punching mechanism and a dehydration mechanism, wherein the punching mechanism comprises a feeding device, a transfer device, a discharging device and a punching device; the feeding device is connected with a feeding table and supporting legs fixedly connected to the lower end surface of the feeding table; the feeding table is in a rectangular groove shape and is arranged on one side of the transfer device in an inclined mode; the transfer device comprises a base, a rotating table and a motor; the motor is vertically arranged above the base; the bottom of the rotating table is fixedly connected with the output end of the motor; the rotating table is in a cylindrical structure and is provided with a plurality of placing grooves at the circumferential edge in a spaced mode; when the placing grooves are opposite to the feeding table, the placing grooves are in close contact with the outlet end of the feeding table and are in communication; the punching device is vertically arranged above the transfer device and is used for punching the momordica grosvenori placed on the placing grooves; the dehydration mechanism comprises a treatment box arranged on one side of the transfer device; the top of the treatment box is provided with an inlet; the inlet is fixedly connected with the discharging device outside the inlet and is in communication; when the placing grooves are opposite to the inlet, the placing grooves are in close contact with the inlet end of the discharging device and are in communication with the discharging device and the feeding table in sequence; the inlet is hingedly connected with an inlet cover plate; the cover plate can be tightly closed on the inlet; the side of the treatment box is provided with an outlet; the outlet is hingedly connected with an outlet cover plate; the outlet cover plate can be tightly closed on the outlet.
[0006] Further, the discharging device comprises a horizontal discharging table and a second electric push rod; the second electric push rod is fixedly arranged on the top of the discharging table and the movable end of the second electric push rod is close to the feeding table; the movable end of the second electric push rod is fixedly connected with a push plate; the push plate is vertically arranged and the bottom end of the push plate is away from the discharging table by a distance gap, so that the push plate can reciprocate in the horizontal direction above the discharging table.
[0007] Further, the dehydration mechanism further comprises a microwave generator and a vacuum pump; the treatment box is provided with a hollow cavity; the microwave generator is fixedly arranged in the cavity of the treatment box and is used for emitting heating microwaves into the cavity; the vacuum pump is fixedly arranged on the top of the treatment box; the air inlet end of the vacuum pump is communicated with the cavity of the treatment box through a pipeline.
[0008] Further, the punching device comprises a first electric push rod and a drill bit; the first electric push rod is vertically arranged above the outlet end of the feeding table through a support and the movable end of the first electric push rod is close to the feeding table; the movable end surface of the first electric push rod is fixedly connected with the drill bit.
[0009] Further, the groove bottom of the placing groove is provided with an inner groove; a through hole is formed at the center of the inner groove; the drill bit is coaxially arranged with the through hole.
[0010] Further, the through hole is arranged in the inner groove.
[0011] Further, the drill bit has a diameter of 1-4 mm.
[0012] Further, the microwave generator emits microwaves with a temperature of 38-42 DEG C.
[0013] Further, the chamber side wall of the processing box is paved with a metal reflection layer for reflecting the heating microwaves emitted by the microwave generator.
[0014] Thanks to the above technical scheme, the utility model has the following beneficial effects:
[0015] 1. The utility model discloses a continuous feeding and punching of momordica grosvenori is realized through feeding device, transfer device and punching device, when one of the placing grooves is aligned with the outlet end of the feeding table, presetting the residence time, the rotating table stops rotating at this time, and momordica grosvenori material is put into the feeding table from the feeding table, and momordica grosvenori rolls into the placing groove on the feeding table under the action of gravity, then, the telescopic rotating motor is started to drive the drill bit to make up-down telescopic movement and rotation, the drill bit moves upward after penetrating momordica grosvenori, and the inner groove is arranged, so that momordica grosvenori is positioned when entering the placing groove and is clamped by the inner groove, thereby ensuring the accuracy of punching. When the residence time ends, the motor is continuously started, and the rotating table rotates, and the edge of the rotating table blocks the falling of the rest momordica grosvenori, and when the adjacent next placing groove is aligned with the outlet end of the feeding table, the above-mentioned punching step is repeated. Meanwhile, when the placing groove with the momordica grosvenori with the punched hole is aligned with the discharging table, the electric push rod makes reciprocating motion and drives the push plate to push the momordica grosvenori in the placing groove into the processing box, so that the automatic punching of momordica grosvenori is realized, and the punching process is continuously carried out, thereby improving the overall processing efficiency.
[0016] 2. The utility model discloses a low-temperature dehydration of momordica grosvenori is realized through processing box, microwave generator, vacuum pump and metal reflection layer, the vacuum environment of processing box chamber is created by the vacuum pump, the water vapor boiling point of momordica grosvenori is effectively reduced to about 40 DEG C, enough to pass through the heating microwave of microwave generator emission, and the microwave is reflected in the box by the metal reflection layer, so that the heating is uniform. Under the vacuum environment, the moisture in momordica grosvenori can evaporate quickly and be discharged by the vacuum pump, thereby improving the dehydration efficiency and shortening the processing time. Compared with the traditional high-temperature dehydration method, the dehydration equipment is more energy-saving, and the quality of momordica grosvenori is maintained. DRAWINGS
[0017] Figure 1 It is the overall structure schematic diagram of the utility model.
[0018] Figure 2 It is the overall structure schematic diagram of the utility model. Figure 1 It is the transverse section view of the utility model.
[0019] Figure 3 It is the A place enlarged view of the utility model. Figure 1 It is the A place enlarged view of the utility model.
[0020] In the attached diagram, the components are: feeding device 1, feeding platform 11, support leg 12, transfer device 2, base 21, rotating table 22, placement groove 221, inner groove 222, through hole 223, motor 23, discharging device 3, discharging platform 31, electric push rod 32, push plate 33, drilling device 4, telescopic rotary motor 41, drill bit 42, bracket 43, processing box 5, inlet 51, inlet cover plate 52, outlet 53, outlet cover plate 54, microwave generator 6, vacuum pump 7, and metal reflective layer 8. Detailed Implementation
[0021] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of the present utility model.
[0022] See Figures 1-3 This embodiment of a low-temperature dehydration device for monk fruit includes a punching mechanism and a dehydration mechanism, wherein:
[0023] The punching mechanism comprises a feeding device 1, a transfer device 2, a discharging device 3 and a punching device 4, and the feeding device 1, the transfer device 2 and the discharging device 3 are sequentially arranged from left to right along the transverse center line. The feeding device 1 specifically comprises a feeding table 11 and a supporting leg 12 fixedly welded at the lower end surface of the feeding table 11, and the feeding table 11 is a rectangular groove-shaped structure and is obliquely arranged at the left side of the transfer device 2, so that the monk fruit material to be punched can automatically roll down. The transfer device 2 specifically comprises a base 21, a rotating table 22 and a motor 23, the motor 23 is vertically installed above the base 21, the bottom of the rotating table 22 is fixedly connected with the output end of the motor 23, the rotating table 22 is rotated by the motor 23, and the rotating table 22 is specifically a cylindrical structure and is provided with a plurality of placing grooves 221 at the circumferential edge in a spaced manner, the size of the placing groove 221 can only accommodate one monk fruit, a notch is arranged at one side of the placing groove 221, when the placing groove 221 is opposite to the outlet end of the feeding table 11, the placing groove 221 is in close fit and communication with the outlet end of the feeding table 11, and the monk fruit rolls down into the placing groove 221; preferably, an inner groove 222 is further arranged at the groove bottom of the placing groove 221, so as to limit the displacement of the monk fruit, facilitate the punching operation of the monk fruit and prevent the monk fruit from falling off the rotating table 22. The punching device 4 specifically comprises a telescopic rotating motor 41 and a drill bit 42, the telescopic rotating motor 41 is vertically installed above the outlet end of the feeding table 11 through a support 43, and the movable end of the telescopic rotating motor 41 is close to the feeding table 11, the movable end surface of the telescopic rotating motor 41 is fixedly welded with the drill bit 42, the drill bit 42 is driven by the telescopic rotating motor 41 to vertically extend and rotate, so that the drill bit 42 punches the monk fruit on the placing groove 221 below, and the diameter of the drill bit 42 is specifically 1mm-4mm. Preferably, a through hole 223 is arranged at the center of the inner groove 222, and the drill bit 42 is coaxially arranged with the through hole 223, so as to facilitate the through punching operation on the monk fruit. The discharging device 3 comprises a horizontally installed discharging table 31 and an electric push rod 32, the electric push rod 32 is fixedly installed at the top of the discharging table 31, and the movable end of the electric push rod 32 is close to the feeding table 11, the movable end of the electric push rod 32 is fixedly connected with a push plate 33, the push plate 33 is vertically arranged, and the bottom end of the push plate 33 is spaced apart from the discharging table 31, so that the push plate 33 can reciprocate above the discharging table 31 in the horizontal direction, and the monk fruit with a hole punched in the corresponding placing groove 221 is pushed into the next processing box 5.
[0024] The dehydration mechanism comprises a treatment box 5, a microwave generator 6 and a vacuum pump 7, the treatment box 5 is arranged at the right side of the transfer device 2, the treatment box 5 is internally provided with a hollow chamber, preferably, the chamber of the treatment box 5 can be divided into left and right treatment zones and a mounting zone through a partition plate, the top of the treatment box 5 is provided with a feeding opening 51 corresponding to the treatment zone, the feeding opening 51 is fixedly connected and communicated with the discharging table 31 outside, such as direct welding or the discharging table 31 can also be communicated with the feeding opening 51 through the lower support. When the placing groove 221 is opposite to the feeding opening 51, the placing groove 221 is abutted with the gap between the inlet end of the discharging device 3, and is sequentially communicated with the discharging device 3 and the feeding table 11, the feeding opening 51 is hingedly connected with a feeding opening cover plate 52, the cover plate 52 can be sealed and covered on the feeding opening 51, the side of the treatment box 5 is provided with a discharging opening 53, the discharging opening 53 is hingedly connected with a discharging opening cover plate 54, the discharging opening cover plate 54 can be sealed and covered on the discharging opening 53. The microwave generator 6 is fixedly installed in the right mounting zone of the treatment box 5, which is used for emitting heating microwaves to the left treatment zone, and the chamber side wall of the left treatment zone is paved with a metal reflection layer 8, which is used for reflecting microwaves; the microwave temperature emitted by the microwave generator 6 is 38-42 DEG C, preferably 40 DEG C. The vacuum pump 7 is fixedly installed on the top of the treatment box 5, the air inlet end of the vacuum pump 7 is communicated with the chamber of the treatment box 5 through a pipeline, and the air inlet end extends into the treatment box 5 and the connection part can be sealed.
[0025] The working principle of the utility model is: when a certain amount of momordica grosvenori enters the chamber of the treatment box 5 from the feeding opening 51, the feeding opening cover plate 52 is closed, the vacuum pump 7 is started, a vacuum state is formed in the treatment box 5, the water vapor boiling point is reduced to about 40 DEG C, the microwave generator 6 is opened, the microwave temperature of the microwave generator 6 is also set to 40 DEG C in advance, and the momordica grosvenori in the treatment box 5 is heated to 40 DEG C to gradually evaporate the moisture, the water vapor is discharged from the air outlet end of the vacuum pump 7, and after the water vapor is discharged, the microwave generator 6 and the vacuum pump 7 are closed, and the discharging opening cover plate 54 is opened to take out the low-temperature dehydrated momordica grosvenori material from the discharging opening.
[0026] In the description of the utility model, unless otherwise clear and definite, the terms "connection", "connection", "fixing" should be understood broadly, for example, can be fixed connection, also can be detachable connection, or integrally connected, can be mechanical connection, also can be electrical connection, can be directly connected, also can indirectly be connected through the intermediate medium, can be the communication of two elements or the interaction of two elements. For ordinary skilled in the art, the specific meaning of the above-mentioned terms in the utility model can be understood according to the specific circumstances.
[0027] In the description of the utility model, it is necessary to explain, the term "center", "upper", "lower", "left", "right", "vertical", "horizontal", "internal", "external" and so on indicate the orientation or positional relationship is based on the orientation or positional relationship shown in the drawing, only for the convenience of describing the utility model and simplifying the description, and is not indicating or implying that the device or element indicated must have a particular orientation, a particular orientation structure and operation, therefore cannot be understood as a limitation on the utility model. In addition, the terms "first", "second", "third" are only for the purpose of description, and cannot be understood as indicating or implying relative importance.
[0028] Obviously, the above embodiments of the utility model are only examples for clearly illustrating the utility model, and are not a limitation on the embodiments of the utility model. For ordinary skilled persons in the art, various obvious changes, re-adjustments and substitutions can be made without departing from the protection scope of the utility model. Here, all the embodiments need not and cannot be exhausted. Any modification, equivalent substitution and improvement within the spirit and principle of the utility model should be included in the protection scope of the utility model claim.
Claims
1. A low-temperature dehydrating device for Siraitia grosvenorii, characterized in that: The application relates to a fruit dehydrating and perforating device, which comprises a perforating mechanism and a dehydrating mechanism, wherein the perforating mechanism comprises a feeding device (1), a transfer device (2), a discharging device (3) and a perforating device (4); the feeding device (1) is connected with a feeding table (11) and supporting legs (12) fixedly connected to the lower end face of the feeding table (11); the feeding table (11) is in the shape of a rectangular groove and is arranged on one side of the transfer device (2) in an inclined mode; the transfer device (2) comprises a base (21), a rotating table (22) and a motor (23); the motor (23) is vertically arranged above the base (21); the bottom of the rotating table (22) is fixedly connected to the output end of the motor (23); the rotating table (22) is in the shape of a cylinder and is provided with a plurality of placing grooves (221) at intervals on the circumferential edge; when the placing grooves (221) are opposite to the feeding table (11), the placing grooves (221) are in close contact with the outlet end of the feeding table (11) and are connected in communication; the perforating device (4) is vertically arranged above the transfer device (2) and is used for perforating momordica grosvenori placed in the placing grooves (221); the dehydrating mechanism comprises a processing box (5) arranged on one side of the transfer device (2); the top of the processing box (5) is provided with an inlet (51); the inlet (51) is fixedly connected to the discharging device (3) and is connected in communication; when the placing grooves (221) are opposite to the inlet (51), the placing grooves (221) are in close contact with the inlet end of the discharging device (3) and are connected in communication with the discharging device (3) and the feeding table (11) in sequence; the inlet (51) is hingedly connected with an inlet cover plate (52); the cover plate (52) can be tightly closed on the inlet (51); the side of the processing box (5) is provided with an outlet (53); the outlet (53) is hingedly connected with an outlet cover plate (54); the outlet cover plate (54) can be tightly closed on the outlet (53).
2. The low-temperature dehydrating equipment for Siraitia grosvenorii according to claim 1, characterized in that: The discharging device (3) comprises a horizontally arranged discharging table (31) and an electric push rod (32); the electric push rod (32) is fixedly arranged on the top of the discharging table (31) and the movable end of the electric push rod (32) is close to the feeding table (11); the movable end of the electric push rod (32) is fixedly connected with a push plate (33); the push plate (33) is vertically arranged and the bottom end of the push plate (33) is away from the discharging table (31) by a distance gap, so that the push plate (33) can reciprocate above the discharging table (31) in the horizontal direction.
3. The low-temperature dehydrating equipment for Siraitia grosvenorii according to claim 2, characterized in that: The dehydrating mechanism further comprises a microwave generator (6) and a vacuum pump (7); the processing box (5) is provided with a hollow cavity; the microwave generator (6) is fixedly arranged in the cavity of the processing box (5) and is used for emitting heating microwaves into the cavity; the vacuum pump (7) is fixedly arranged on the top of the processing box (5); the air inlet end of the vacuum pump (7) is connected with the cavity of the processing box (5) through a pipeline.
4. The low-temperature dehydrating equipment for Siraitia grosvenorii according to claim 1, characterized in that: The perforating device (4) comprises a telescopic rotary motor (41) and a drill bit (42), the telescopic rotary motor (41) is vertically installed above the outlet end of the feeding table (11) through a support (43), and the movable end of the telescopic rotary motor (41) is close to the feeding table (11), and the movable end surface of the telescopic rotary motor (41) is fixedly connected with the drill bit (42).
5. The low-temperature dehydrating equipment for Siraitia grosvenorii according to claim 4, characterized in that: The bottom of the placing groove (221) is provided with an inner groove (222), a through hole (223) is formed at the center of the inner groove (222), and the drill bit (42) is coaxially arranged with the through hole (223).
6. The low-temperature dehydrating equipment for Siraitia grosvenorii according to claim 5, characterized in that: The through hole (223) is arranged in the inner groove (222).
7. The low-temperature dehydrating equipment for Siraitia grosvenorii according to claim 5, characterized in that: The diameter of the drill bit (42) is 1-4 mm.
8. The low-temperature dehydrating equipment for Siraitia grosvenorii according to claim 3, characterized in that: The microwave temperature emitted by the microwave generator (6) is 38-42 ℃.
9. The low-temperature dehydrating equipment for Siraitia grosvenorii according to claim 2, characterized in that: The cavity side wall of the processing box (5) is paved with a metal reflection layer (8) for reflecting the heating microwave emitted by the microwave generator (6).