Efficient sterilization device for quick-frozen fruit processing
By combining ozone and ultraviolet light in the processing of quick-frozen fruits, the problem of single sterilization method and incomplete sterilization in existing technologies has been solved, achieving all-round sterilization of pathogens at room temperature and improving product quality and safety.
Patent Information
- Application Number
- CN202422674806.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-04
- Publication Date
- 2026-01-02
- Estimated Expiration
- 2034-11-04
AI Technical Summary
Existing technologies for quick-frozen fruit processing employ a single sterilization method, which cannot effectively kill various pathogens at room temperature and cannot sterilize all parts of the fruit in a comprehensive manner, potentially leaving harmful substances that affect product quality.
The disinfection method combines ozone and ultraviolet light. Ozone is used for initial disinfection during fruit transportation through the transfer and injection sections, while ultraviolet light in the disinfection section provides comprehensive disinfection. The sealed environment prevents injury to operators.
It achieves effective disinfection of microorganisms and pathogens on fruits at room temperature, improves product quality, prevents disinfection from being ineffective, and ensures product safety and quality.
Smart Images

Figure CN223745668U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to food processing technical field, concretely is a kind of high -efficient quick-frozen fruit processing is used sterilization device. BACKGROUND
[0002] Pollution of fruit planting environment, unclean contact in picking and handling process, improper storage condition etc. can all lead to fruit carrying multiple bacteria; sterilization treatment is carried out in quick-frozen fruit processing, mainly to ensure food safety, kill harmful microorganisms on the surface of fruit, reduce the risk of foodborne diseases, and at the same time prolong the shelf life and keep the color, taste and nutritional ingredients of the product.
[0003] The utility model with publication number CN219578273U discloses a safe sterilization device for fruit processing, which comprises a box body, a conveying mechanism is arranged inside the box body, movable baffles are connected to both sides of the conveying mechanism, and the fixed side of the baffle is connected with the box body; the device is provided with a rotating drum and a prying rod, which facilitates the workers to put the fruits into the sterilization box for sterilization treatment; after sterilization is completed, the fruits are discharged to the top of the conveying mechanism through the discharge pipe, and then the fruits are conveyed by the conveying mechanism; at the same time, the pre-dehumidification device is started, and the fruits are pre-dehumidified through the drying port; at the same time, the second rotating machine is started, the supporting plate is rotated, the rotating drum is driven to rotate, the fruits at the bottom are further turned over, more comprehensive pre-dehumidification treatment is realized, and the overall safety of the fruits is improved.
[0004] However, the sterilization method of the prior art is single, and various bacteria cannot be effectively killed at room temperature; harmful substances may also be left in the sterilization process of the prior art; and the prior art cannot sterilize the fruits in all directions. UTILITY MODEL CONTENTS
[0005] In view of the above technical problems, the utility model provides technical scheme as follows: A high -efficient quick -frozen fruit processing is with sterilization device, including support part, still including the transfer part of setting in support part, the transfer part top is provided with injection part, injection part is connected on the ozone generating part, the transfer part includes transfer shell, transfer shell is provided with transfer column on rotation, transfer column is provided with recess on, transfer column one end is fixedly set up with transfer groove wheel, transfer groove wheel and transfer rotating wheel sliding fit, transfer rotating wheel is fixedly set up on the output shaft of transfer motor, transfer rotating wheel is fixedly set up with transfer disc on, transfer disc is eccentric and is provided with transfer connecting rod, transfer connecting rod other end rotation is established in transfer bearing plate, transfer bearing plate is set up on transfer shell sliding, transfer shell is fixedly set up with transfer fixed plate, transfer bearing plate is fixedly set up with injection part, the injection part includes fixedly set up on transfer bearing plate injection cylinder, injection cylinder is set up with injection fixed plug sliding in, injection fixed plug is fixedly set up on transfer fixed plate, injection cylinder is connected on the ozone generating part through injection guide pipe, the ozone generating part includes with injection guide pipe connection's ozone generating gas guide pipe, ozone generating gas guide pipe is fixedly set up on ozone generator.
[0006] Further, the transfer part one end is provided with the disinfecting and killing part, disinfecting and killing part fixedly set up in support part, the disinfecting and killing part includes fixedly set up in support part disinfecting and killing fixed reflection board no.
[0007] Further, the upper disinfecting and killing ultraviolet lamp and the bottom disinfecting and killing ultraviolet lamp are provided with disinfecting and killing transmission belt, and the disinfecting and killing transmission belt is connected on the disinfecting and killing cylinder one and the disinfecting and killing cylinder two, and the disinfecting and killing cylinder one is fixedly set on the output shaft of disinfecting and killing motor.
[0008] Further, the disinfecting and killing fixed reflection board no. and disinfecting and killing fixed reflection board two are made of ultraviolet reflection material.
[0009] Further, the support part includes support shell, and the support shell bottom is provided with support bottom shell, and the support bottom shell is provided with support storage box, and the support shell top is detachably provided with support sealing plate.
[0010] Further, the ozone generating gas guide pipe is connected on the support bottom shell through the ozone generating connecting pipe.
[0011] Further, the injection cylinder is provided with an air inlet cavity and an air outlet passage, and the injection fixed plug is slidably arranged in the air inlet cavity.
[0012] The utility model discloses compared with prior art has beneficial effect is: 1, the utility model discloses through setting transfer part and injection part, can in the fruit transfer process, use ozone to the disease bacteria on the fruit carries out the preliminary disinfection and killing, 2, through setting disinfecting and killing part, can use ultraviolet ray to the fruit carries out all -round disinfection and killing, prevents appearing disinfection and killing dead angle, and then influence product quality, 3, through disinfection and killing mode that combines ozone and ultraviolet ray, can under normal temperature environment to the microorganism and disease bacteria on the fruit carries out effective disinfection and killing, guarantees disinfection and killing quality, promotes product quality, 4, through setting sealed disinfection and killing environment, prevents the operator and is injured. BRIEF DESCRIPTION OF DRAWINGS
[0013] Figure 1 It is the partial structure section view of the utility model.
[0014] Figure 2 It is the whole structure front view angle schematic drawing of the utility model.
[0015] Figure 3 It is the whole structure side view angle schematic drawing of the utility model.
[0016] Figure 4 It is the partial structure schematic drawing of the transfer part of the utility model Figure 1 .
[0017] Figure 5 It is the partial structure schematic drawing of the transfer part of the utility model Figure 2 .
[0018] Figure 6 It is the partial structure schematic drawing of the transfer part of the utility model Figure 3 .
[0019] Figure 7 It is the partial structure schematic drawing of the transfer part of the utility model Figure 4 .
[0020] Figure 8 It is the partial structure section view of the injection part of the utility model.
[0021] Figure 9 It is the partial structure schematic drawing of the disinfecting and killing part of the utility model Figure 1 .
[0022] Figure 10 It is the partial structure schematic drawing of the disinfecting and killing part of the utility model Figure 2 .
[0023] Figure 11 It is the partial structure section view of the support part of the utility model.
[0024] Fig. 1: 1-transport part; 2-injection part; 3-ozone generation part; 4-sterilization part; 5-support part; 101-transport motor; 102-transport rotating wheel; 103-transport disc; 104-transport connecting rod; 105-transport bearing plate; 106-transport fixed plate; 107-transport shell; 108-transport groove wheel; 109-transport column; 201-injection fixed plug; 202-injection cylinder; 203-injection guide pipe; 301-ozone generator; 302-ozone generation air guide pipe; 303-ozone generation connecting pipe; 401-sterilization fixed reflection plate one; 402-upper sterilization ultraviolet lamp; 403-sterilization fixed plate; 404-sterilization transmission belt; 405-sterilization roller one; 406-sterilization motor; 407-sterilization roller two; 408-bottom sterilization ultraviolet lamp; 409-sterilization fixed reflection plate two; 501-support shell; 502-support bottom shell; 503-support storage box; 504-support sealing plate. DETAILED DESCRIPTION
[0025] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the utility model.
[0026] As shown in Figures 1 to 3 Fig. 1, a high-efficiency sterilization device for quick-frozen fruit processing includes a support part 5, further includes a transport part 1 and a sterilization part 4 arranged in the support part 5, the transport part 1 is provided with an injection part 2 at the top, and the injection part 2 is connected to an ozone generation part 3.
[0027] As shown in Figures 1 to 7 Fig. 1, the transport part 1 includes a transport motor 101, a transport rotating wheel 102, a transport disc 103, a transport connecting rod 104, a transport bearing plate 105, a transport fixed plate 106, a transport shell 107, a transport groove wheel 108, and a transport column 109; the transport column 109 is rotatably arranged on the transport shell 107, the transport column 109 is provided with a groove, one end of the transport column 109 is fixedly provided with the transport groove wheel 108, the transport groove wheel 108 is in sliding cooperation with the transport rotating wheel 102, the transport rotating wheel 102 is fixedly arranged on the output shaft of the transport motor 101, the transport rotating wheel 102 is fixedly provided with the transport disc 103, the transport disc 103 is eccentrically rotatably provided with the transport connecting rod 104, the other end of the transport connecting rod 104 is rotatably arranged on the transport bearing plate 105, the transport bearing plate 105 is slidably arranged on the transport shell 107, and the transport shell 107 is fixedly provided with the transport fixed plate 106; the transport bearing plate 105 is fixedly provided with the injection part 2.
[0028] As Figures 1 to 8 shown, the injection part 2 includes an injection fixed plug 201, an injection cylinder 202, and an injection guide pipe 203; the injection cylinder 202 is fixedly arranged on the transfer bearing plate 105, the injection fixed plug 201 is slidably arranged in the injection cylinder 202, the injection fixed plug 201 is fixedly arranged on the transfer fixed plate 106, and the injection cylinder 202 is connected to the ozone generation part 3 through the injection guide pipe 203; the inside of the injection cylinder 202 is provided with an air inlet cavity and an air outlet passage, and the injection fixed plug 201 is slidably arranged in the air inlet cavity.
[0029] As Figures 1 to 6 shown, the ozone generation part 3 includes an ozone generator 301, an ozone generation air guide pipe 302, and an ozone generation connecting pipe 303; the ozone generation air guide pipe 302 is connected to the injection guide pipe 203, and the ozone generation air guide pipe 302 is fixedly arranged on the air outlet end of the ozone generator 301; the ozone generation air guide pipe 302 is connected to the support bottom housing 502 through the ozone generation connecting pipe 303.
[0030] As Figure 1 , Figure 9 , Figure 10 shown, one end of the transfer part 1 is provided with a disinfection part 4, the disinfection part 4 is fixedly arranged in the support part 5, and the disinfection part 4 includes a disinfection fixed reflection plate one 401, an upper disinfection ultraviolet lamp 402, a disinfection fixed plate 403, a disinfection transmission belt 404, a disinfection roller one 405, a disinfection motor 406, a disinfection roller two 407, a bottom disinfection ultraviolet lamp 408, and a disinfection fixed reflection plate two 409; the disinfection fixed reflection plate one 401 is fixedly arranged in the support housing 501, a plurality of upper disinfection ultraviolet lamps 402 are arranged on the disinfection fixed reflection plate one 401, the disinfection fixed reflection plate one 401 is connected to the disinfection fixed reflection plate two 409 through the disinfection fixed plate 403, and a plurality of bottom disinfection ultraviolet lamps 408 are arranged on the disinfection fixed reflection plate two 409; the disinfection transmission belt 404 is arranged between the upper disinfection ultraviolet lamp 402 and the bottom disinfection ultraviolet lamp 408, and the disinfection transmission belt 404 is provided with through holes for the ultraviolet rays to pass through; the disinfection transmission belt 404 is connected to the disinfection roller one 405 and the disinfection roller two 407, and the disinfection roller one 405 is fixedly arranged on the output shaft of the disinfection motor 406; the disinfection fixed reflection plate one 401 and the disinfection fixed reflection plate two 409 are both made of ultraviolet reflection material, and the ultraviolet reflection material is preferably aluminum.
[0031] As Figure 11 shown, the support part 5 includes a support housing 501, a support bottom housing 502, a support storage box 503, and a support sealing plate 504; the support bottom housing 502 is arranged at the bottom of the support housing 501, the support storage box 503 is arranged in the support bottom housing 502, and the support sealing plate 504 is detachably arranged on the top of the support housing 501 by magnetic attraction.
[0032] As Figures 1 to 11 The utility model discloses a high -efficient quick -frozen fruit processing is with sterilization device, and its working principle is: the support sealing plate 504 is taken off, and the fruit of processing is put into the transfer shell 107, then the support sealing plate 504 resets, and the sealing property inside the support shell 501 is ensured, the transfer motor 101 is opened, and the transfer motor 101 rotates and drives the transfer rotating wheel 102, transfer disc 103 rotates, and the transfer rotating wheel 102 rotates and makes the transfer groove wheel 108 intermittent rotation, and the transfer groove wheel 108 intermittent rotation drives the transfer column 109 intermittent rotation, when the transfer column 109 intermittent rotation, the fruit on the transfer shell 107 is transferred to the killing department 4 through the groove on the transfer column 109, in this process, when the transfer column 109 rotates to the appropriate position, the transfer disc 103 rotates and passes through the transfer connecting rod 104 and pulls the transfer bearing plate 105 and slides, and the transfer bearing plate 105 slides and drives the injection cylinder 202 to slide, when the injection cylinder 202 is at the bottom point, the distance between the injection cylinder 202 and the fruit in the groove of the transfer column 109 is shortened, and the injection fixed plug 201 is at the highest point in the injection cylinder 202 as Figure 8 The ozone generator 301 generates ozone, which enters the injection duct 203 and the injection cylinder 202 through the ozone generation gas guide pipe 302, and is finally discharged from the gas outlet of the bottom of the injection cylinder 202 to the fruit in the groove of the transfer column 109, and the fruit at this position is oxidized and disinfected.
[0033] When the transfer column 109 rotates to another predetermined position, the transfer disc 103 drives the transfer connecting rod 104 to move the transfer bearing plate 105 and the injection cylinder 202 towards the transfer fixed plate 106, and the injection fixed plug 201 is at the lowest point in the injection cylinder 202, and the injection fixed plug 201 closes the gas outlet formed by the injection duct 203 and the injection cylinder 202, so that ozone cannot be sprayed from this position, and the transfer column 109 can rotate to transfer the fruit to the killing transmission belt 404.
[0034] The upper sterilization ultraviolet lamp 402 and the bottom sterilization ultraviolet lamp 408 are turned on, the upper sterilization ultraviolet lamp 402 and the bottom sterilization ultraviolet lamp 408 generate ultraviolet rays, and the fruits on the sterilization conveying belt 404 are subjected to secondary sterilization and disinfection. After sterilization and disinfection are completed, the sterilization motor 406 is turned on, the sterilization motor 406 drives the sterilization cylinder 405 to rotate and in turn drives the sterilization conveying belt 404 to rotate, the fruits on the sterilization conveying belt 404 are transported to one end of the support shell 501 which has a discharge passage, at this time the fruits fall into the support storage box 503 on the support bottom shell 502 through the discharge passage, because the density of ozone is greater than that of air, the ozone in the support bottom shell 502 gathers at a lower position of the support bottom shell 502, and the fruits at the position are continuously sterilized and disinfected.
[0035] During the whole sterilization process, the inside of the support shell 501 and the support bottom shell 502 is filled with ozone, because the density of ozone is greater than that of air, the ozone concentration in the support bottom shell 502 is larger, and the fruits in the support storage box 503 can be continuously sterilized and disinfected. After sterilization and disinfection are completed, the support storage box 503 is pulled out, the fruits are taken out, and the whole working process is completed.
Claims
1. A high-efficiency sterilization device for quick-frozen fruit processing, comprising a support part (5), characterized in that: Also include the transfer part (1) set in the support part (5), the transfer part (1) top is provided with injection part (2), injection part (2) is connected on the ozone generator (3); The transfer part (1) includes a transfer housing (107), a transfer column (109) is rotatably arranged on the transfer housing (107), the transfer column (109) is provided with a groove, one end of the transfer column (109) is fixedly provided with a transfer groove wheel (108), the transfer groove wheel (108) is in sliding fit with a transfer rotating wheel (102), the transfer rotating wheel (102) is fixedly arranged on the output shaft of a transfer motor (101), the transfer rotating wheel (102) is fixedly provided with a transfer disc (103), the transfer disc (103) is eccentrically provided with a transfer connecting rod (104), the other end of the transfer connecting rod (104) is rotatably arranged on a transfer bearing plate (105), the transfer bearing plate (105) is slidably arranged on the transfer housing (107), the transfer housing (107) is fixedly provided with a transfer fixed plate (106); the transfer bearing plate (105) is fixedly provided with the injection part (2); The injection part (2) includes an injection cylinder (202) fixedly arranged on the transfer bearing plate (105), an injection fixed plug (201) is slidably arranged in the injection cylinder (202), the injection fixed plug (201) is fixedly arranged on the transfer fixed plate (106), and the injection cylinder (202) is connected to the ozone generator (3) through an injection guide pipe (203); The ozone generator (3) includes an ozone generator gas guide pipe (302) connected to the injection guide pipe (203), and the ozone generator gas guide pipe (302) is fixedly arranged on the ozone generator (301).
2. The high efficiency sterilization device for quick-frozen fruit processing according to claim 1, characterized in that: One end of the transfer part (1) is provided with a disinfection part (4), and the disinfection part (4) is fixedly arranged in the support part (5); the disinfection part (4) includes a disinfection fixed reflection plate one (401) fixedly arranged in the support part (5), a plurality of upper disinfection ultraviolet lamps (402) are arranged on the disinfection fixed reflection plate one (401), the disinfection fixed reflection plate one (401) is connected to a disinfection fixed reflection plate two (409) through a disinfection fixed plate (403), and a plurality of bottom disinfection ultraviolet lamps (408) are arranged on the disinfection fixed reflection plate two (409).
3. The high efficiency sterilization device for quick-frozen fruit processing according to claim 2, characterized in that: A disinfection transmission belt (404) is arranged between the upper disinfection ultraviolet lamp (402) and the bottom disinfection ultraviolet lamp (408), and the disinfection transmission belt (404) is connected to a disinfection roller one (405) and a disinfection roller two (407), and the disinfection roller one (405) is fixedly arranged on the output shaft of a disinfection motor (406).
4. The high efficiency sterilization device for quick-frozen fruit processing according to claim 3, characterized in that: The disinfection fixed reflection plate one (401) and the disinfection fixed reflection plate two (409) are made of ultraviolet reflection material.
5. A high efficiency sterilization device for quick-frozen fruit processing according to claim 4, characterized in that: The support part (5) includes a support housing (501), and a support bottom housing (502) is arranged at the bottom of the support housing (501); a support storage box (503) is arranged in the support bottom housing (502); and a support sealing plate (504) is detachably arranged at the top of the support housing (501).
6. A high efficiency sterilization device for quick-frozen fruit processing according to claim 5, characterized in that: The ozone generation air duct (302) is connected to the support bottom shell (502) through an ozone generation connecting pipe (303).
7. A high efficiency sterilization device for quick-frozen fruit processing according to claim 6, characterized in that: The injection cylinder (202) is internally provided with an air inlet cavity and an air outlet passage, and the injection fixed plug (201) is slidingly arranged in the air inlet cavity.
Citation Information
Patent Citations
Safe sterilization device for fruit processing
CN219578273U