A low-temperature cleaning device for a fruit fresh-cut production line

CN122805009APending Publication Date: 2026-09-25ZHEJIANG AIJIA FOOD CO LTD
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Patent Information

Application Number
CN202610925134.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2026-06-25
Publication Date
2026-09-25

AI Technical Summary

Technical Problem

[0004]然而,现有的水果在采收后,其表面常附着大量枝叶、残梗等杂质,这些枝叶杂质在随水果进入清洗机的浸泡槽与喷淋区域时,会形成空间上的遮挡与缠绕,枝叶会覆盖水果表面,使清洗液与喷淋水流无法充分接触水果表皮,导致污垢、农药残留等难以被有效剥离,影响对水果的清洗效果

Benefits of technology

本发明通过分离驱动机构的设置,将水果放入浸泡槽体的内部进行浸泡,然后打开分离驱动电机,分离驱动电机的输出轴转动带动分离驱动刷转动,分离驱动刷转动将浸泡槽体内部浸泡出的枝叶甩向分离暂存箱,枝叶通过分离透孔进入分离带出箱的内部,分离带出箱实现了对枝叶的分离,同时分离驱动电机的输出轴转动还带动分离驱动丝杠转动,分离驱动丝杠转动带动分离驱动杆上下移动,分离驱动杆上下移动带动分离带出箱上下移动,待分离带出箱向上移动时,分离带出箱向上移动带动分离顶出板向上移动,分离顶出板向上移动在分离限位槽的作用下,将分离带出箱内部的枝叶挤压入分离收集箱的内部,分离收集箱实现了对枝叶的收集,实现了对枝叶的分离,避免了枝叶遮挡水果,确保清洗液和后续喷淋能充分接触水果表皮,提升污垢、农药残留的剥离效率,从根本上改善清洗不彻底的问题,提高了对水果的加工质量。

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Abstract

The application provides a low-temperature cleaning device for a fruit fresh-cut production line, and relates to the field of food processing equipment.The low-temperature cleaning device comprises a soaking tank body, a pre-rinsing conveying belt, a filter box, a high-pressure rinsing box, a separation conveying belt, a separation air-drying box, a circulating water pump, a separation driving mechanism and a buffer and distribution mechanism.The filter box is fixedly connected to the left side of the soaking tank body.The rinsing conveying tank body is arranged at the front end of the pre-rinsing conveying belt.The high-pressure rinsing box is fixedly connected above the rinsing conveying tank body.The separation air-drying box is arranged in front of the separation conveying belt.The circulating water pump is fixedly connected below the soaking tank body.The separation driving mechanism is arranged on the inner side of the soaking tank body.The buffer and distribution mechanism is arranged at the rear end of the rinsing conveying tank body, so that the branches and leaves cannot shield the fruits, the cleaning liquid and the subsequent spraying can fully contact the fruit skin, and the problem that the existing branches and leaves can cover the fruit surface and the cleaning liquid and the spraying flow cannot fully contact the fruit skin is solved.
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Description

Technical Field

[0001] This invention relates to the field of food processing equipment technology, and in particular to a low-temperature cleaning device for a fresh-cut fruit production line. Background Technology

[0002] During fruit washing, an inclined conveyor belt transports various fruits to the equipment. The fruits then enter a large stainless steel soaking tank where low-temperature water slows down ripening and softens dirt. Simultaneously, pipes and nozzles spray low-temperature water to rinse the fruit surface, further removing impurities and pesticide residues. During washing, parameters such as washing time and water flow can be adjusted via the control panel. After washing, the fruits are transferred via a conveyor to subsequent processes such as draining and cutting. The seamless integration of these steps, utilizing the low-temperature environment and the combination of soaking and spray rinsing, ensures effective fruit washing, guaranteeing processing under suitable low-temperature conditions and facilitating subsequent processing.

[0003] The present invention, with publication number CN105768133B, provides a fruit washing machine, belonging to the field of fruit and vegetable cleaning machinery. It includes a chassis, a motor, a water spraying device, and a water inlet module, as well as a conveying device. The conveying device is mounted on the chassis via bearing seats. Water spraying devices are arranged above and below the conveying device, with a top cover corresponding to the top. The top cover is also located above the water spray nozzles of the water spraying devices. The water spray nozzles of the water spraying devices face the conveying device. The water inlet of the water spraying devices is connected to the water inlet module. The conveying device is arranged at an angle, with a discharge port at the higher end and a feed port at the lower end. The conveying device includes a conveying section, which is a hollow structure capable of holding fruit. The motor is located outside the chassis and is connected to the conveying device via a transmission device. This invention can automatically wash fruit, improving the efficiency and cleanliness of fruit washing; the overall structure is simple, easy to operate, and has good practicality.

[0004] However, after harvesting, fruits often have a lot of branches, leaves, stems and other impurities attached to their surface. When these branches and leaves enter the soaking tank and spraying area of ​​the washing machine with the fruit, they will create spatial obstruction and entanglement. The branches and leaves will cover the surface of the fruit, making it impossible for the washing liquid and spray water to fully contact the fruit skin. As a result, dirt, pesticide residues and other impurities are difficult to be effectively removed, affecting the washing effect of the fruit. Summary of the Invention

[0005] In view of this, the present invention provides a low-temperature cleaning device for a fresh-cut fruit production line, which has the following features.

[0006] This invention provides a low-temperature cleaning device for a fresh-cut fruit production line, specifically including an soaking tank, a pre-rinsing conveyor belt, a filter box, a rinsing conveyor trough, a high-pressure rinsing box, a separating conveyor belt, a separating drying box, a circulating water pump, a separating drive mechanism, and a buffer distribution mechanism. The pre-rinsing conveyor belt is positioned in front of the soaking tank, and a high-pressure nozzle structure is fixedly connected above it. The filter box is fixedly connected to the left side of the soaking tank, and a filter screen is installed at the connection between the filter box and the soaking tank. The rinsing conveyor trough is positioned at the front end of the pre-rinsing conveyor belt. Multiple sets of high-pressure rinsing boxes are provided, each fixedly connected above the rinsing conveyor trough. The separating conveyor belt is positioned in front of the rinsing conveyor trough. The separating drying box is positioned in front of the separating conveyor belt. The circulating water pump is fixedly connected below the soaking tank, with its inlet pipe connected to the inside of the filter box and its outlet pipe connected to the high-pressure nozzle of the pre-rinsing conveyor belt. The separating drive mechanism is located inside the soaking tank. The buffer distribution mechanism is located at the rear end of the rinsing conveyor trough.

[0007] Furthermore, the separation drive mechanism includes a high-pressure air pump and a bubbler; the high-pressure air pump is fixedly connected to the lower front end of the soaking tank; the bubbler is fixedly connected to the inner side of the soaking tank, the air outlet pipe of the high-pressure air pump is connected to the bubbler, and the bubbler has a plurality of air outlet holes.

[0008] Furthermore, the separation drive mechanism also includes: a separation storage box and a separation through hole; two sets of separation storage boxes are provided, and the two sets of separation storage boxes are fixedly connected to the left and right sides inside the soaking tank respectively; multiple sets of separation through holes are provided, and the multiple sets of separation through holes are all funnel-shaped opening structures, and the multiple sets of separation through holes are respectively opened on the inner side of the separation storage box.

[0009] Furthermore, the separation drive mechanism also includes: a separation support frame and a separation drive motor; the separation support frame is fixedly connected above the two sets of separation temporary storage boxes; the separation drive motor is fixedly connected to the upper end of the separation support frame.

[0010] Furthermore, the separation drive mechanism also includes: a separation drive brush and a separation collection box; there are two sets of separation drive brushes, one set of separation drive brushes is connected to the output shaft of the separation drive motor via a synchronous belt, and the other set of separation drive brushes is connected to the output shaft of the separation drive motor via a gear; there are two sets of separation collection boxes, and the two sets of separation collection boxes are respectively inserted into the inner side of the separation support frame.

[0011] Furthermore, the separation drive mechanism also includes: a separation belt ejection box, a separation drive rod, and a separation drive screw; two sets of separation belt ejection boxes are provided, and the two sets of separation belt ejection boxes are slidably connected to the inner side of the separation temporary storage box, and a rectangular groove structure is opened on the lower inner side of the lower end of the two sets of separation belt ejection boxes; the separation drive rod is fixedly connected to the upper part of the separation belt ejection box; the separation drive screw is a reciprocating screw structure, and the separation drive screw is coaxially fixedly connected to the lower end of the output shaft of the separation drive motor, and the separation drive screw is threadedly connected to the separation drive rod.

[0012] Furthermore, the separation drive mechanism also includes: separation limiting grooves and separation ejection plates; there are four sets of separation limiting grooves, the lower part of the four sets of separation limiting grooves is a straight groove structure, and the upper part of the four sets of separation limiting grooves is an inclined groove structure, and the four sets of separation limiting grooves are respectively opened on the left and right sides of the separation temporary storage box; there are two sets of separation ejection plates, and the two sets of separation ejection plates are slidably connected to the inner side of the separation belt ejection box, and the left and right ends of the two sets of separation ejection plates are respectively fixedly connected to protrusion structures, and the protrusion structures of the two sets of separation ejection plates are respectively set on the inner side of the separation limiting grooves.

[0013] Furthermore, the buffer distribution mechanism includes a buffer baffle plate; the buffer baffle plate is fixedly connected to the rear end of the rinsing conveying tank, and the buffer baffle plate is a rectangular rubber plate structure.

[0014] Furthermore, the buffer distribution mechanism also includes: a distribution drive motor, a distribution drive disk, and a distribution drive swing arm; the distribution drive motor is fixedly connected to the rear right side of the rinsing conveying tank; the distribution drive disk is coaxially fixedly connected to the left end of the output shaft of the distribution drive motor, and a protrusion structure is fixedly connected to the centrifugal end of the left end of the distribution drive disk; the distribution drive swing arm is rotatably connected to the rear right side of the rinsing conveying tank, and the distribution drive swing arm has a rectangular groove structure, with the protrusion of the distribution drive disk located inside the rectangular groove of the distribution drive swing arm.

[0015] Furthermore, the buffer distribution mechanism also includes a distribution drive plate and a distribution contact plate; the distribution drive plate is rotatably connected to the inner rear side of the flushing conveying tank, the distribution drive plate is coaxially fixedly connected to the distribution drive swing rod, and the distribution drive plate has a plurality of drainage hole structures; the distribution contact plate is fixedly connected to the upper end of the distribution drive plate through a piston damper, and the distribution contact plate has a plurality of drainage hole structures.

[0016] Beneficial effects This invention utilizes a separation drive mechanism. Fruit is placed inside a soaking tank for immersion. Then, a separation drive motor is activated, its output shaft rotating to drive a separation brush. This brush throws the soaked branches and leaves from the tank into a temporary separation storage box. The branches and leaves then pass through a separation through-hole into a separation ejection box, effectively separating them. Simultaneously, the motor's output shaft also drives a separation drive screw, which in turn moves a separation drive rod up and down, causing the ejection box to move up and down as well. When the ejection box moves upward, it causes a separation top plate to move upward as well. This upward movement, aided by a separation limiting groove, forces the remaining branches and leaves into a separation collection box. This collection box effectively collects and separates the branches and leaves, preventing them from obstructing the fruit and ensuring that the cleaning solution and subsequent spraying can fully contact the fruit's surface. This improves the efficiency of removing dirt and pesticide residues, fundamentally addressing the problem of incomplete cleaning and enhancing the processing quality of the fruit.

[0017] This invention utilizes a buffer distribution mechanism. When the distribution drive motor is activated, its output shaft rotates, causing the distribution drive disk to rotate. This rotation of the distribution drive disk causes the distribution drive lever to swing, which in turn causes the distribution drive plate to swing. The swinging of the distribution drive plate then causes the distribution contact plate to swing. This swinging of the distribution contact plate buffers the fruit while simultaneously contacting it, effectively patting the fruit and separating any stuck pieces. This avoids dead zones during subsequent fruit rinsing and improves the overall cleaning and processing efficiency. Attached Figure Description

[0018] To more clearly illustrate the technical solutions of the embodiments of the present invention, the accompanying drawings of the embodiments will be briefly described below.

[0019] The accompanying drawings described below are only related to some embodiments of the invention and are not intended to limit the invention.

[0020] In the attached diagram: Figure 1 This is a schematic diagram of the overall structure of an embodiment of the present invention.

[0021] Figure 2 This is a schematic diagram of the distributed drive motor structure according to an embodiment of the present invention.

[0022] Figure 3 This is a schematic diagram of the buffer shield structure according to an embodiment of the present invention.

[0023] Figure 4 This is a schematic diagram of the distributed contact plate structure according to an embodiment of the present invention.

[0024] Figure 5This is a schematic diagram of the distributed drive board structure according to an embodiment of the present invention.

[0025] Figure 6 This is a schematic diagram of the distributed drive pendulum structure according to an embodiment of the present invention.

[0026] Figure 7 This is a schematic diagram of the separation temporary storage box structure according to an embodiment of the present invention.

[0027] Figure 8 This is a schematic diagram of the separation belt outlet structure according to an embodiment of the present invention.

[0028] Figure 9 This is a schematic diagram of the separation limiting groove structure according to an embodiment of the present invention.

[0029] List of reference numerals 1. Immersion tank; 101. High-pressure air pump; 102. Bubble maker; 103. Separation storage box; 104. Separation through hole; 105. Separation support frame; 106. Separation drive motor; 107. Separation drive brush; 108. Separation collection box; 109. Separation belt outlet box; 2. Pre-rinsing conveyor belt; 201. Buffer baffle; 202. Distribution drive motor; 203. Distribution drive disc; 204. Distribution drive swing arm; 205. Distribution drive plate; 206. Distribution contact plate; 3. Filter box; 4. Rinsing conveyor tank; 5. High-pressure rinsing box; 6. Separation conveyor belt; 7. Separation drying box; 8. Circulating water pump; 110. Separation drive rod; 111. Separation drive screw; 112. Separation limit groove; 113. Separation top outlet plate. Detailed Implementation

[0030] Example 1: Please refer to Figures 1 to 9 As shown: This invention provides a low-temperature cleaning device for a fresh-cut fruit production line, comprising an soaking tank 1, a pre-rinsing conveyor belt 2, a filter box 3, a rinsing conveyor 4, a high-pressure rinsing box 5, a separating conveyor belt 6, a separating drying box 7, a circulating water pump 8, and a separating drive mechanism; the pre-rinsing conveyor belt 2 is positioned in front of the soaking tank 1, and a high-pressure nozzle structure is fixedly connected above the pre-rinsing conveyor belt 2; the filter box 3 is fixedly connected to the left side of the soaking tank 1, and a filter screen is provided at the connection between the filter box 3 and the soaking tank 1; the rinsing conveyor 4... 4 is set at the front end of the pre-rinsing conveyor belt 2; multiple sets of high-pressure rinsing boxes 5 are provided, and the multiple sets of high-pressure rinsing boxes 5 are fixedly connected above the rinsing conveyor tank 4; the separation conveyor belt 6 is set in front of the rinsing conveyor tank 4; the separation drying box 7 is set in front of the separation conveyor belt 6; the circulating water pump 8 is fixedly connected below the soaking tank 1, the inlet pipe of the circulating water pump 8 is connected to the inside of the filter box 3, and the outlet pipe of the circulating water pump 8 is connected to the high-pressure nozzle of the pre-rinsing conveyor belt 2; the separation drive mechanism is set inside the soaking tank 1.

[0031] The separation drive mechanism includes a high-pressure air pump 101 and a bubbler 102. The high-pressure air pump 101 is fixedly connected to the lower front end of the soaking tank 1. The bubbler 102 is fixedly connected to the inner side of the soaking tank 1. The air outlet pipe of the high-pressure air pump 101 is connected to the bubbler 102. The bubbler 102 has several air outlet holes.

[0032] The separation drive mechanism also includes: a separation storage box 103 and a separation through hole 104; two sets of separation storage boxes 103 are provided, and the two sets of separation storage boxes 103 are fixedly connected to the left and right sides of the inside of the soaking tank 1 respectively; multiple sets of separation through holes 104 are provided, and the multiple sets of separation through holes 104 are all funnel-shaped opening structures, and the multiple sets of separation through holes 104 are respectively opened on the inside of the separation storage box 103.

[0033] The separation drive mechanism also includes a separation support frame 105 and a separation drive motor 106; the separation support frame 105 is fixedly connected above the two sets of separation temporary storage boxes 103; the separation drive motor 106 is fixedly connected to the upper end of the separation support frame 105.

[0034] The separation drive mechanism also includes: separation drive brush 107 and separation collection box 108; there are two sets of separation drive brush 107, one set of separation drive brush 107 is connected to the output shaft of separation drive motor 106 via a synchronous belt, and the other set of separation drive brush 107 is connected to the output shaft of separation drive motor 106 via a gear; there are two sets of separation collection boxes 108, and the two sets of separation collection boxes 108 are respectively inserted into the inner side of separation support frame 105.

[0035] The separation drive mechanism further includes: a separation pull-out box 109, a separation drive rod 110, and a separation drive screw 111; two sets of separation pull-out boxes 109 are provided, and the two sets of separation pull-out boxes 109 are slidably connected to the inner side of the separation temporary storage box 103, and a rectangular groove structure is opened on the lower inner side of the two sets of separation pull-out boxes 109; the separation drive rod 110 is fixedly connected to the upper part of the separation pull-out box 109; the separation drive screw 111 is a reciprocating screw structure, and the separation drive screw 111 is coaxially fixedly connected to the lower end of the output shaft of the separation drive motor 106, and the separation drive screw 111 is threadedly connected to the separation drive rod 110.

[0036] The separation drive mechanism also includes: separation limiting grooves 112 and separation ejection plates 113; four sets of separation limiting grooves 112 are provided, the lower part of the four sets of separation limiting grooves 112 are all straight groove structures, and the upper part of the four sets of separation limiting grooves 112 are all inclined groove structures. The four sets of separation limiting grooves 112 are respectively opened on the left and right sides of the separation temporary storage box 103; two sets of separation ejection plates 113 are provided, and the two sets of separation ejection plates 113 are slidably connected to the inner side of the separation belt ejection box 109. The left and right ends of the two sets of separation ejection plates 113 are respectively fixedly connected with protrusion structures, and the protrusion structures of the two sets of separation ejection plates 113 are respectively set on the inner side of the separation limiting grooves 112.

[0037] The specific usage and function of this embodiment are as follows: When washing fruit, the fruit is placed inside the soaking tank 1 for soaking. Then, the separation drive motor 106 is turned on. The output shaft of the separation drive motor 106 rotates, driving the separation drive brush 107 to rotate. The rotation of the separation drive brush 107 throws the branches and leaves soaked inside the soaking tank 1 towards the separation temporary storage box 103. The branches and leaves enter the separation carry-out box 109 through the separation through hole 104. The separation carry-out box 109 separates the branches and leaves. At the same time, the rotation of the output shaft of the separation drive motor 106 also drives the separation drive screw 111 to rotate. The rotation of the separation drive screw 111 drives the separation drive rod 110 to move up and down. The up and down movement of the separation drive rod 110 drives the separation carry-out box 109 to move up and down. When the separation carry-out box 109 moves upward, the upward movement of the separation carry-out box 109 drives the separation top plate 113 to move upward. The upward movement of the separation top plate 113 is in the action of the separation limiting groove 112. The branches and leaves inside the separation box 109 are squeezed into the separation collection box 108. The separation collection box 108 collects and separates the branches and leaves, preventing them from obstructing the fruit, improving the cleaning effect and processing quality. When soaking the fruit, the high-pressure air pump 101 is turned on, and the high-pressure air pump 101 sends high-pressure gas into the bubbling element 102. The high-pressure gas is discharged through the exhaust hole of the bubbling element 102, achieving the bubbling effect of the soaking water and accelerating the separation of dirt on the fruit surface. The separated fruit is conveyed forward by the pre-rinsing conveyor belt 2. The circulating water pump 8 is turned on, and the circulating water pump 8 sprays the low-temperature water in the filter box 3 onto the fruit through the high-pressure nozzle, achieving the initial cleaning of the fruit. The initially cleaned fruit is further cleaned by the rinsing conveyor trough 4 and the high-pressure rinsing box 5. Finally, the fruit and rinsing water are separated by the separation conveyor belt 6 and dried by the separation drying box 7.

[0038] Example 2: like Figures 1 to 8 As shown: The present invention provides a low-temperature cleaning device for a fresh-cut fruit production line. Based on the first embodiment, it further includes a buffer distribution mechanism, which is located at the rear end of the rinsing and conveying tank 4.

[0039] The buffer distribution mechanism includes a buffer shield 201; the buffer shield 201 is fixedly connected to the rear end of the flushing conveying tank 4, and the buffer shield 201 is a rectangular rubber plate structure.

[0040] The buffer distribution mechanism also includes: a distribution drive motor 202, a distribution drive disk 203, and a distribution drive swing arm 204; the distribution drive motor 202 is fixedly connected to the rear right side of the rinsing conveying tank 4; the distribution drive disk 203 is coaxially fixedly connected to the left end of the output shaft of the distribution drive motor 202, and a protrusion structure is fixedly connected to the centrifugal part of the left end of the distribution drive disk 203; the distribution drive swing arm 204 is rotatably connected to the rear right side of the rinsing conveying tank 4, and the distribution drive swing arm 204 has a rectangular groove structure, and the protrusion of the distribution drive disk 203 is set inside the rectangular groove of the distribution drive swing arm 204.

[0041] The buffer distribution mechanism also includes a distribution drive plate 205 and a distribution contact plate 206. The distribution drive plate 205 is rotatably connected to the inner rear side of the flushing conveying tank 4. The distribution drive plate 205 is coaxially fixedly connected to the distribution drive swing rod 204. The distribution drive plate 205 has several drainage hole structures. The distribution contact plate 206 is fixedly connected to the upper end of the distribution drive plate 205 through a piston damper. The distribution contact plate 206 has several drainage hole structures.

[0042] The specific usage and function of this embodiment: When the preliminarily cleaned fruit enters the rinsing and conveying tank 4, the distribution drive motor 202 is turned on. The output shaft of the distribution drive motor 202 rotates, driving the distribution drive disk 203 to rotate. The rotation of the distribution drive disk 203 drives the distribution drive swing arm 204 to swing. The swing of the distribution drive swing arm 204 drives the distribution drive plate 205 to swing. The swing of the distribution drive plate 205 drives the distribution contact plate 206 to swing. The swing of the distribution contact plate 206 buffers the fruit. At the same time, the distribution contact plate 206 contacts the fruit, patting the fruit and separating the fruits that are stuck together. This avoids dead corners during subsequent fruit rinsing and improves the fruit cleaning and processing effect.

[0043] The following points should be noted in this article: 1. The accompanying drawings of this embodiment only involve the structures involved in this embodiment; other structures can refer to the general design.

[0044] 2. Where there is no conflict, this embodiment and the features in the embodiment can be combined with each other to obtain new embodiments.

[0045] The above are merely specific embodiments of the present invention, but the scope of protection of the present invention is not limited thereto. Any variations or substitutions that can be easily conceived by those skilled in the art within the technical scope disclosed in the present invention should be included within the scope of protection of the present invention. Therefore, the scope of protection of the present invention should be determined by the scope of the claims.

Claims

1. A low-temperature cleaning device for a fresh-cut fruit production line, characterized in that: The system includes an immersion tank (1), a pre-rinsing conveyor belt (2), a filter box (3), a rinsing conveyor tank (4), a high-pressure rinsing tank (5), a separation conveyor belt (6), a separation drying box (7), a circulating water pump (8), a separation drive mechanism, and a buffer distribution mechanism; the pre-rinsing conveyor belt (2) is located in front of the immersion tank (1), and a high-pressure nozzle structure is fixedly connected above the pre-rinsing conveyor belt (2); the filter box (3) is fixedly connected to the left side of the immersion tank (1), and a filter screen is provided at the connection between the filter box (3) and the immersion tank (1); the rinsing conveyor tank (4) is located at the front end of the pre-rinsing conveyor belt (2); the high-pressure rinsing tank (5) is located at the front end of the pre-rinsing conveyor belt (2); the high-pressure rinsing tank (5) is located at the front end of the pre-rinsing conveyor belt (2); the high-pressure rinsing tank (6) is located at the front end of the pre-rinsing conveyor belt (7); the high-pressure rinsing tank (8) is located at the front end of the pre-rinsing conveyor belt (2); the high-pressure rinsing tank (5) is located at the front end of the pre-rinsing conveyor belt (6); the high-pressure rinsing tank (7) is located at the front end of the pre-rinsing conveyor belt (8); the high-pressure rinsing tank (8) is located at the front end of the pre-rinsing conveyor belt (2 ... Multiple sets of high-pressure rinsing boxes (5) are provided, and the multiple sets of high-pressure rinsing boxes (5) are fixedly connected above the rinsing conveyor tank (4); the separation conveyor belt (6) is located in front of the rinsing conveyor tank (4); the separation drying box (7) is located in front of the separation conveyor belt (6); the circulating water pump (8) is fixedly connected below the soaking tank (1), the inlet pipe of the circulating water pump (8) is connected to the inside of the filter box (3), and the outlet pipe of the circulating water pump (8) is connected to the high-pressure nozzle of the pre-rinsing conveyor belt (2); the separation drive mechanism is located inside the soaking tank (1); the buffer distribution mechanism is located at the rear end of the rinsing conveyor tank (4).

2. The low-temperature cleaning device for a fresh-cut fruit production line as described in claim 1, characterized in that: The separation drive mechanism includes a high-pressure air pump (101) and a bubbler (102); the high-pressure air pump (101) is fixedly connected to the lower front end of the soaking tank (1); the bubbler (102) is fixedly connected to the inner side of the soaking tank (1), the air outlet pipe of the high-pressure air pump (101) is connected to the bubbler (102), and the bubbler (102) has a plurality of air outlet holes.

3. The low-temperature cleaning device for a fresh-cut fruit production line as described in claim 2, characterized in that: The separation drive mechanism also includes: a separation storage box (103) and a separation through hole (104); the separation storage box (103) is provided in two sets, and the two sets of separation storage boxes (103) are respectively fixedly connected to the left and right sides inside the soaking tank (1); the separation through hole (104) is provided in multiple sets, and the multiple sets of separation through holes (104) are all funnel-shaped opening structures, and the multiple sets of separation through holes (104) are respectively opened on the inner side of the separation storage box (103).

4. The low-temperature cleaning device for a fresh-cut fruit production line as described in claim 3, characterized in that: The separation drive mechanism further includes a separation support frame (105) and a separation drive motor (106); the separation support frame (105) is fixedly connected above the two sets of separation temporary storage boxes (103); the separation drive motor (106) is fixedly connected to the upper end of the separation support frame (105).

5. The low-temperature cleaning device for a fresh-cut fruit production line as described in claim 4, characterized in that: The separation drive mechanism further includes: a separation drive brush (107) and a separation collection box (108); the separation drive brush (107) is provided in two sets, one set of separation drive brush (107) is connected to the output shaft of the separation drive motor (106) via a synchronous belt, and the other set of separation drive brush (107) is connected to the output shaft of the separation drive motor (106) via a gear; the separation collection box (108) is provided in two sets, and the two sets of separation collection boxes (108) are respectively inserted into the inner side of the separation support frame (105).

6. The low-temperature cleaning device for a fresh-cut fruit production line as described in claim 5, characterized in that: The separation drive mechanism further includes: a separation pull-out box (109), a separation drive rod (110), and a separation drive screw (111); the separation pull-out box (109) is provided in two sets, and the two sets of separation pull-out boxes (109) are slidably connected to the inner side of the separation temporary storage box (103), and the lower inner side of the two sets of separation pull-out boxes (109) is provided with a rectangular groove structure; the separation drive rod (110) is fixedly connected above the separation pull-out box (109); the separation drive screw (111) is a reciprocating screw structure, and the separation drive screw (111) is coaxially fixedly connected to the lower end of the output shaft of the separation drive motor (106), and the separation drive screw (111) is threadedly connected to the separation drive rod (110).

7. The low-temperature cleaning device for a fresh-cut fruit production line as described in claim 6, characterized in that: The separation drive mechanism further includes: separation limiting grooves (112) and separation ejection plates (113); there are four sets of separation limiting grooves (112), the lower part of the four sets of separation limiting grooves (112) is a straight groove structure, the upper part of the four sets of separation limiting grooves (112) is an inclined groove structure, and the four sets of separation limiting grooves (112) are respectively opened on the left and right sides of the separation temporary storage box (103); there are two sets of separation ejection plates (113), the two sets of separation ejection plates (113) are respectively slidably connected to the inner side of the separation belt ejection box (109), the left and right ends of the two sets of separation ejection plates (113) are respectively fixedly connected with protrusion structures, and the protrusion structures of the two sets of separation ejection plates (113) are respectively set on the inner side of the separation limiting grooves (112).

8. The low-temperature cleaning device for a fresh-cut fruit production line as described in claim 1, characterized in that: The buffer distribution mechanism includes a buffer shield (201); the buffer shield (201) is fixedly connected to the rear end of the flushing conveying tank (4), and the buffer shield (201) is a rectangular rubber plate structure.

9. The low-temperature cleaning device for a fresh-cut fruit production line as described in claim 8, characterized in that: The buffer distribution mechanism further includes: a distribution drive motor (202), a distribution drive disk (203), and a distribution drive swing rod (204); the distribution drive motor (202) is fixedly connected to the rear right side of the rinsing conveying tank (4); the distribution drive disk (203) is coaxially fixedly connected to the left end of the output shaft of the distribution drive motor (202), and a protrusion structure is fixedly connected to the centrifugal part of the left end of the distribution drive disk (203); the distribution drive swing rod (204) is rotatably connected to the rear right side of the rinsing conveying tank (4), and the distribution drive swing rod (204) has a rectangular groove structure, and the protrusion of the distribution drive disk (203) is set inside the rectangular groove of the distribution drive swing rod (204).

10. The low-temperature cleaning device for a fresh-cut fruit production line as described in claim 9, characterized in that: The buffer distribution mechanism further includes a distribution drive plate (205) and a distribution contact plate (206); the distribution drive plate (205) is rotatably connected to the rear inner side of the flushing conveying tank (4), the distribution drive plate (205) is coaxially fixedly connected to the distribution drive swing rod (204), and the distribution drive plate (205) has a plurality of drainage hole structures; the distribution contact plate (206) is fixedly connected to the upper end of the distribution drive plate (205) through a piston damper, and the distribution contact plate (206) has a plurality of drainage hole structures.

Citation Information

Patent Citations

  • A fruit washing machine

    CN105768133B