A fruit slicing device for canning

By designing a fruit slicing device with a storage cylinder, clamping assembly, and thickness adjustment assembly, the problem that existing fruit slicing devices cannot achieve batch slicing and slice thickness adjustment is solved. This enables batch slicing of multiple fruits and flexible slicing of different types of fruits, improving the applicability and slicing efficiency of the device.

CN120886321BActive Publication Date: 2026-01-06FUJIAN QUANZHOU XIDUODUO FOOD
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Patent Information

Application Number
CN202511403523.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-09-29
Publication Date
2026-01-06
Estimated Expiration
2045-09-29

AI Technical Summary

Technical Problem

Existing fruit slicing devices cannot achieve batch slicing or flexible adjustment of slice thickness, resulting in poor applicability, especially when processing different types of fruit, requiring frequent adjustments to slice thickness.

Method used

A fruit slicing device was designed, comprising a storage cylinder, a clamping assembly, a thickness adjustment assembly, a pressing assembly, and a cutting assembly. The device achieves batch fruit positioning through multiple storage cylinders and clamping assemblies, adjusts the slice thickness using an electric cylinder and a ruler, and achieves flexible slicing by combining a rotary motor and a cutting blade.

Benefits of technology

It enables batch slicing of multiple fruits and simultaneous slicing of different types of fruits, and the slicing thickness can be flexibly and precisely adjusted, improving the applicability and slicing efficiency of the device.

✦ Generated by Eureka AI based on patent content.

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Abstract

This invention discloses a fruit slicing device for canning, belonging to the field of food processing technology. The device includes a working box with several discharge ports circumferentially distributed on the side wall and several partitions circumferentially distributed on the inner wall. Each partition is located between adjacent discharge ports, and a guide mesh is inclined between adjacent partitions. A supporting circular plate is provided at the top of the working box, with several storage cylinders corresponding to the guide mesh distributed circumferentially on the supporting circular plate. Clamping components for positioning the fruit body are provided on the storage cylinders. A thickness adjustment component that cooperates with the supporting circular plate is provided at the bottom of the storage cylinders. A pressing component corresponding to the storage cylinders is provided on the supporting circular plate. A cutting component is provided at the bottom of the working box. This device has the advantages of centered positioning, stable pressing, flexible and precise adjustment of the corresponding cutting thickness, efficient batch cutting, centralized collection of residue, reliable structure, and ease of use.
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Description

Technical Field

[0001] This invention relates to the field of food processing technology, specifically to a fruit slicing device for canning. Background Technology

[0002] Canned fruit is a sterile canned food made from fresh fruit through pre-treatment (washing, sorting, peeling, pitting, etc.), canning, sealing, and heat sterilization. Its core processes are sealing and sterilization, achieving commercial sterility through high-temperature and high-pressure sterilization, thereby extending the shelf life to 1-3 years, while maximizing the retention of the fruit's nutritional components (such as potassium, calcium, magnesium, and dietary fiber).

[0003] In the production and processing of canned fruit, slicing devices are generally used to slice the washed fruit. However, existing slicing devices can only slice one piece of fruit at a time, making it impossible to slice fruit in batches. Furthermore, the thickness of slices from the same batch is generally fixed.

[0004] Furthermore, in actual production and processing, the slicing mechanism often needs to slice different types of fruits. When slicing different types of fruits, the slicing thickness of the slicing mechanism needs to be adjusted. When switching from one type of fruit to another, the slicing thickness often needs to be adjusted. Then, when switching back from one type of fruit to the original type, the slicing thickness needs to be readjusted again. This cannot meet the needs of synchronous slicing of different types of fruits and reduces the applicability of the device.

[0005] Therefore, there is a need to provide a fruit slicing device for canning, which aims to solve the above problems. Summary of the Invention

[0006] In view of the shortcomings of the existing technology, the purpose of this invention is to provide a fruit slicing device for canning, so as to solve the problems in the background art.

[0007] To achieve the above objectives, the present invention provides the following technical solution:

[0008] A fruit slicing device for canning includes a working box. The side walls of the working box have a plurality of discharge ports circumferentially distributed. The inner wall of the working box has a plurality of partitions circumferentially distributed, with each partition located between adjacent discharge ports. A guide mesh plate is inclined between adjacent partitions, with the lower end of the guide mesh plate corresponding to the lower end of each discharge port. A supporting circular plate is provided on the top of the working box, and the supporting circular plate has a plurality of storage cylinders circumferentially distributed, corresponding to the guide mesh plates. The device also includes:

[0009] A clamping assembly for positioning the fruit body and disposed on the storage cylinder;

[0010] A thickness adjustment component is located at the bottom of the storage cylinder and cooperates with the support circular plate;

[0011] A pressing component is disposed on a support circular plate and corresponds to a storage cylinder. The pressing component is used to press the fruit body downward.

[0012] The cutting component is used to cut the fruit body and is located at the bottom of the working box;

[0013] The controller is located on the outer wall of the work box and is electrically connected to the electrical equipment inside the device.

[0014] As a further embodiment of the present invention, the clamping assembly includes a lifting arc plate slidably disposed on the outside of the storage cylinder and clamping plates symmetrically and movably disposed inside the storage cylinder. A crossbar penetrating the storage cylinder is connected to the side of the clamping plates that is far apart from each other. A first spring sleeved on the outside of the crossbar is connected between the clamping plates and the inner wall of the storage cylinder. Guide rods are symmetrically installed on the side of the clamping plates that is far apart from each other. The outer ends of the two guide rods penetrate the storage cylinder and are connected by a connecting rod. A hinge rod is movably connected between the connecting rod and the lifting arc plate.

[0015] As a further embodiment of the present invention, the thickness adjustment component includes a lifting slide plate slidably disposed on the outer wall of the storage cylinder. The lifting slide plate is located on the side of the storage cylinder away from the center of the supporting circular plate. A support plate located below the storage cylinder is installed at the bottom of the lifting slide plate. The support plate is used to support the bottom of the fruit body. A horizontal plate is horizontally installed on the outer wall of the lifting slide plate. An electric cylinder is connected between the supporting circular plate and the horizontal plate. The top of the lifting slide plate passes through the supporting circular plate and is connected to a pointer movably disposed on the outside of the storage cylinder. A vertical scale is provided on the outer wall of the storage cylinder.

[0016] As a further embodiment of the present invention, the support plate is configured as a semi-circular plate, and the center of the support plate is collinear with the central axis of the storage cylinder.

[0017] As a further embodiment of the present invention, the slitting assembly includes a rotary motor disposed at the bottom of the working box, the rotary motor being connected to a turntable rotatably disposed inside the working box, the turntable having a plurality of slitting blades circumferentially mounted thereon, the top surface of the slitting blades being in movable contact with the bottom surface of the storage cylinder.

[0018] As a further embodiment of the present invention, the bottom of the slitting blade is provided with a plurality of protrusions.

[0019] As a further embodiment of the present invention, the protrusion is configured as hemispherical or elongated.

[0020] As a further embodiment of the present invention, the pressing assembly includes a column disposed at the center of the supporting circular plate. A plurality of fixed rods are fixedly distributed circumferentially on the top of the column, and each fixed rod corresponds to a storage cylinder. A movable plate is rotatably connected to the fixed rod. A guide cylinder located directly above the storage cylinder is connected to the outer end of the movable plate. A lifting rod is slidably disposed inside the guide cylinder. A limit ring is connected to the top of the lifting rod. A pressing plate that movably fits against the top of the fruit body is connected to the bottom of the lifting rod. A second spring sleeved on the outside of the lifting rod is connected between the guide cylinder and the pressing plate. A sliding groove is opened on the movable plate. A sliding seat is slidably disposed in the sliding groove. A handle is provided at both ends of the sliding seat. A traction rope passing through the movable plate is connected between the handle and the pressing plate.

[0021] As a further embodiment of the present invention, the bottom of the working box is provided with a flow guiding arc plate located below the material guiding mesh plate, and the bottom of the working box is provided with a plurality of flow guiding ring grooves, the flow guiding ring grooves being located between the bottom of the outer edge of the working box and the bottom of the flow guiding arc plate, and the bottom of the working box is provided with a water collecting ring groove plate located directly below the flow guiding ring grooves.

[0022] As a further aspect of the present invention, the supporting circular plate has several marks distributed circumferentially, and each mark corresponds to a storage cylinder.

[0023] In summary, the embodiments of the present invention have the following beneficial effects compared with the prior art:

[0024] 1. In this invention, the combination of several storage cylinders and clamping components facilitates the placement and centered positioning of multiple fruit bodies of the same type, which facilitates the batch cutting of fruit bodies and avoids the low efficiency of single cutting. At the same time, it can also place and center different types of fruit bodies, allowing for the simultaneous cutting of different types of fruit bodies.

[0025] 2. In this invention, to meet the slicing thickness requirements of different fruits, the operator controls the extension and retraction of the electric cylinder through a controller. The electric cylinder drives the lifting slide to perform corresponding lifting movements by connecting to the horizontal plate and through the sliding cooperation between the lifting slide and the storage cylinder. The lifting slide adjusts the distance between the top of the support plate and the bottom of the storage cylinder by driving the support plate to move synchronously, thereby adjusting the slicing thickness of the corresponding fruit and enabling batch slicing of fruits. By observing the scale on the ruler corresponding to the pointer, the actual distance between the top of the support plate and the bottom of the storage cylinder can be known in real time, that is, the slicing thickness of the fruit, thus achieving flexible and precise adjustment of the slicing thickness.

[0026] 3. In this invention, during the fruit body cutting process, since the support plate is set as a semi-circular plate, after the bottom of the fruit body is cut, the end away from the support plate will move downward under its own gravity, causing the center of gravity of the cut fruit body to change, making it easier for the cut fruit body to fall onto the corresponding guide mesh plate, facilitating the downward movement of the upper fruit body and the continuous cutting of the fruit body.

[0027] 4. In this invention, after a new fruit body is placed, the worker turns the handle downwards to make the lifting rod vertical and the movable plate horizontal, closing the top space of the storage cylinder. Then, the handle is released, so that the lower pressure plate fits against the top of the new fruit body. Through the continuous downward extension of the second spring, the lower pressure plate can maintain a continuous downward trend, which can realize the continuous downward pressure of the fruit body, facilitating the continuous cutting of the fruit body.

[0028] To more clearly illustrate the structural features and effects of the present invention, the present invention will be described in detail below with reference to the accompanying drawings and specific embodiments. Attached Figure Description

[0029] Figure 1 This is a schematic diagram of the overall structure of the fruit slicing device for canning in an embodiment of the invention.

[0030] Figure 2 This is a front cross-sectional view of the fruit slicing device for canning in an embodiment of the invention.

[0031] Figure 3 This is a schematic diagram of the thickness adjustment component and the slitting component in the embodiment of the invention.

[0032] Figure 4 This is a schematic diagram of the first structure of the pressing component in an embodiment of the invention.

[0033] Figure 5 for Figure 4 A magnified view of a portion of point A in the middle.

[0034] Figure 6 for Figure 4 A magnified view of a section at point B in the middle.

[0035] Figure 7 This is a schematic diagram of the second structure of the pressing component in an embodiment of the invention.

[0036] Attached reference numerals: 1. Working box; 101. Discharge port; 102. Baffle plate; 103. Material guide plate; 104. Flow guide arc plate; 105. Flow guide ring groove; 106. Water collection ring groove plate; 107. Bottom column;

[0037] 2. Supporting circular plate; 201. Marking;

[0038] 3. Storage cylinder;

[0039] 4. Clamping assembly; 401. Clamping plate; 402. Crossbar; 403. First spring; 404. Guide rod; 405. Connecting rod; 406. Hinge rod; 407. Lifting arc plate;

[0040] 5. Thickness adjustment assembly; 501. Lifting slide plate; 502. Support plate; 5021. Through groove; 503. Horizontal plate; 504. Electric cylinder; 505. Pointer; 506. Scale;

[0041] 6. Pressing assembly; 601. Column; 602. Fixing rod; 603. Movable plate; 604. Guide cylinder; 605. Lifting rod; 606. Pressing plate; 607. Second spring; 608. Slide groove; 609. Sliding seat; 610. Handle; 611. Traction rope; 612. Limiting ring;

[0042] 7. Slitting assembly; 701. Rotary motor; 702. Turntable; 703. Slitting blade;

[0043] 8. Controller;

[0044] 9. The fruit itself. Detailed Implementation

[0045] To make the objectives, technical solutions, and advantages of this invention clearer, the invention will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative and not intended to limit the invention.

[0046] The specific implementation of the present invention will be described in detail below with reference to specific embodiments.

[0047] In one embodiment of the present invention, see Figures 1-2A fruit slicing device for canning includes a working box 1. The side wall of the working box 1 has a plurality of discharge ports 101 distributed circumferentially. The inner wall of the working box 1 has a plurality of partitions 102 distributed circumferentially. Each partition 102 is located between two adjacent discharge ports 101. A guide mesh 103 is inclinedly arranged between two adjacent partitions 102, with the lower end of the guide mesh 103 corresponding to the lower end of the discharge port 101. A supporting circular plate 2 is provided on the top of the working box 1. The supporting circular plate 2 has a plurality of guide meshes distributed circumferentially. The material storage cylinder 3 corresponds to the material mesh plate 103. The material storage cylinder 3 is equipped with a clamping component 4 for positioning the fruit body 9. The bottom of the material storage cylinder 3 is equipped with a thickness adjustment component 5 that cooperates with the support circular plate 2. The support circular plate 2 is equipped with a pressing component 6 corresponding to the material storage cylinder 3. The pressing component 6 is used to press the fruit body 9 downward. The bottom of the working box 1 is equipped with a cutting component 7 for cutting the fruit body 9. The outer wall of the working box 1 is equipped with a controller 8, which is electrically connected to the electrical equipment inside the device.

[0048] In this embodiment, the cooperation of several storage cylinders 3 and clamping components 4 facilitates the placement and positioning of multiple fruit bodies 9 of the same type, enabling batch cutting of fruit bodies 9 and avoiding the low efficiency of single cutting. At the same time, different types of fruit bodies 9 can also be placed and positioned, enabling simultaneous cutting of different types of fruit bodies 9. The cooperation of thickness adjustment component 5, pressing component 6 and cutting component 7 facilitates the stable downward movement of fruit bodies 9. Furthermore, according to the different cutting requirements of the same type of fruit bodies 9 or different types of fruit bodies 9, the cutting thickness of the corresponding fruit body 9 can be flexibly and accurately adjusted, enabling batch cutting of fruit bodies 9 and improving the applicability of the device.

[0049] The bottom of the working box 1 is provided with a flow guiding arc plate 104 located below the material guiding mesh plate 103. The bottom of the working box 1 is provided with a plurality of flow guiding ring grooves 105. The flow guiding ring grooves 105 are located between the bottom of the outer edge of the working box 1 and the bottom of the flow guiding arc plate 104. The bottom of the working box 1 is provided with a water collecting ring groove plate 106 located directly below the flow guiding ring grooves 105.

[0050] The combination of the guide plate 103, the flow-guiding arc plate 104, the flow-guiding ring groove 105 and the water-collecting ring groove plate 106 facilitates the centralized collection and treatment of the residue or impurities that fall off the cut fruit body 9, preventing the residue or impurities from accumulating on the cut fruit body and affecting the subsequent processing of the cut fruit body.

[0051] The bottom of the working box 1 is symmetrically provided with several base columns 107, which can stably support the device. The controller 8 can control the start and stop of the electrical equipment in the device. The support circular plate 2 has several marks 201 distributed circumferentially. The marks 201 correspond one-to-one with the storage cylinder 3. The correspondence between the marks 201 and the storage cylinder 3 makes it easy for the staff to adjust the thickness adjustment component 5 at the corresponding position according to different slicing requirements, so as to achieve flexible and precise adjustment of the slicing thickness. There can be five storage cylinders 3, which can meet the slicing requirements of batch fruit bodies 9 and the slicing requirements of different types of fruit bodies 9, thereby improving slicing efficiency.

[0052] In one embodiment of the present invention, see Figures 1-6 The clamping assembly 4 includes a lifting arc plate 407 slidably disposed on the outside of the storage cylinder 3 and a clamping plate 401 symmetrically and movably disposed inside the storage cylinder 3. A crossbar 402 penetrating the storage cylinder 3 is connected to the side of the clamping plate 401 that is far apart from each other. A first spring 403 sleeved on the outside of the crossbar 402 is connected between the clamping plate 401 and the inner wall of the storage cylinder 3. Guide rods 404 are symmetrically installed on the side of the clamping plate 401 that is far apart from each other. The outer ends of the two guide rods 404 penetrate the storage cylinder 3 and are connected by a connecting rod 405. A hinge rod 406 is movably connected between the connecting rod 405 and the lifting arc plate 407.

[0053] In this embodiment, the clamping plate 401 is a V-shaped plate. The two clamping plates 401 clamp the fruit body 9 by bringing them closer together. At this time, the first spring 403 is in a primary compression state. Meanwhile, since the length of the hinge rod 406 is fixed, during the lifting and lowering process of the lifting arc plate 407, the lifting arc plate 407 pushes the connecting rod 405 away from or closer to the storage cylinder 3 by being movably connected to the hinge rod 406, so that the distances of the two connecting rods 405 moving away and closer are the same. The connecting rod 405 drives the clamping plate 401 to move synchronously by being connected to the guide rod 404, which can realize the centering of the fruit body 9 and facilitate the stable cutting of the fruit body 9.

[0054] When a new fruit body 9 needs to be placed, the lifting arc plate 407 is pushed upward. The lifting arc plate 407 is movably connected to the hinge rod 406 and the guide rod 404 is slidably engaged with the storage cylinder 3, which drives the connecting rod 405 away from the storage cylinder 3. The connecting rod 405 is connected to the guide rod 404, which drives the clamping plate 401 to move synchronously. This allows the two clamping plates 401 to move away from each other, increasing the placement space between the two clamping plates 401, which can meet the placement requirements of fruit bodies 9 of different sizes. The first spring 403 is under force and continues to contract. At this time, the first spring 403 is in a secondary compression state.

[0055] Once the new fruit body 9 is placed, the lifting arc plate 407 is released, the first spring 403 extends and pushes the two clamping components 4 working boxes 10 closer to each other, which can achieve the centering clamping treatment of the new fruit body 9.

[0056] In one embodiment of the present invention, see Figures 1-3 The thickness adjustment component 5 includes a lifting slide plate 501 slidably disposed on the outer wall of the storage cylinder 3. The lifting slide plate 501 is located on the side of the storage cylinder 3 away from the center of the supporting circular plate 2. A support plate 502 located below the storage cylinder 3 is installed at the bottom of the lifting slide plate 501. The support plate 502 is used to support the bottom of the fruit body 9. A horizontal plate 503 is horizontally installed on the outer wall of the lifting slide plate 501. An electric cylinder 504 is connected between the supporting circular plate 2 and the horizontal plate 503. The top of the lifting slide plate 501 passes through the supporting circular plate 2 and is connected to a pointer 505 movably disposed on the outside of the storage cylinder 3. A vertical scale 506 is provided on the outer wall of the storage cylinder 3.

[0057] In this embodiment, the support plate 502 is a semi-circular plate, and the center of the support plate 502 is collinear with the central axis of the storage cylinder 3. To meet the slicing thickness requirements of different fruit bodies 9, the operator controls the extension and retraction of the electric cylinder 504 via the controller 8. The electric cylinder 504, connected to the horizontal plate 503 and with the sliding cooperation between the lifting slide plate 501 and the storage cylinder 3, drives the lifting slide plate 501 to perform corresponding lifting movements. The lifting slide plate 501 adjusts the distance between the top of the support plate 502 and the bottom of the storage cylinder 3 by synchronously moving the support plate 502, thereby adjusting the slicing thickness of the corresponding fruit body 9. By observing the scale on the ruler 506 corresponding to the pointer 505, the actual distance between the top of the support plate 502 and the bottom of the storage cylinder 3, i.e., the slicing thickness of the fruit body 9, can be obtained in real time, thus achieving flexible and precise adjustment of the slicing thickness.

[0058] Specifically: When it is necessary to increase the slice thickness of the fruit body 9, the staff uses the controller 8 to control the electric cylinder 504 to extend downward. The electric cylinder 504 drives the lifting plate 501 to move down synchronously by connecting with the horizontal plate 503 and the lifting plate 501 sliding with the storage cylinder 3. The lifting plate 501 drives the pointer 505 and the lifting plate 501 to move down synchronously by connecting with the pointer 505. The lifting plate 501 increases the distance between the top of the support plate 502 and the bottom of the storage cylinder 3 by driving the support plate 502 to move synchronously. By observing the pointer 505 after it moves down and corresponding to the scale 506 at different positions, the actual distance between the top of the support plate 502 and the bottom of the storage cylinder 3 after adjustment can be observed intuitively.

[0059] When it is necessary to reduce the thickness of the fruit slices 9, the operator controls the electric cylinder 504 to retract upwards via the controller 8. The electric cylinder 504 drives the lifting plate 501 to move upwards synchronously by connecting to the horizontal plate 503 and by sliding the lifting plate 501 with the storage cylinder 3. The lifting plate 501 drives the pointer 505 and the lifting plate 501 to move upwards synchronously by connecting to the pointer 505. The lifting plate 501 reduces the distance between the top of the support plate 502 and the bottom of the storage cylinder 3 by driving the support plate 502 to move synchronously. By observing the pointer 505 moving upwards and corresponding to the scale 506 at different positions, the actual distance between the top of the support plate 502 and the bottom of the storage cylinder 3 after adjustment can be observed intuitively.

[0060] The support plate 502 has several through slots 5021, which facilitate the cleaning of impurities that fall onto the support plate 502.

[0061] In one embodiment of the present invention, see Figures 1-3 The slitting assembly 7 includes a rotary motor 701 disposed at the bottom of the working box 1. The rotary motor 701 is connected to a turntable 702 rotatably disposed inside the working box 1. The turntable 702 is circumferentially mounted with a plurality of slitting blades 703. The top surface of the slitting blades 703 is in contact with the bottom surface of the storage cylinder 3.

[0062] In this embodiment, the rotary motor 701 drives the turntable 702 to rotate. The turntable 702 drives several cutting blades 703 to rotate synchronously to cut the bottom of the fruit body 9. Since the top surface of the cutting blade 703 is in contact with the bottom surface of the storage cylinder 3, the thickness of the cut fruit body 9 is the distance between the top of the support plate 502 and the bottom of the storage cylinder 3, which is the set cutting thickness.

[0063] Meanwhile, during the cutting process of the fruit body 9, since the support plate 502 is set as a semi-circular plate, after the bottom of the fruit body 9 is cut, the end away from the support plate 502 will move downward under its own gravity, causing the center of gravity of the cut fruit body 9 to change, making it easier for the cut fruit body 9 to fall onto the corresponding guide mesh plate 103, facilitating the downward movement of the upper fruit body 9 and the continuous cutting of the fruit body 9.

[0064] In addition, the bottom of the slitting blade 703 may be provided with several protrusions (not shown in the figure). The protrusions may be hemispherical or elongated. During the slitting process of the fruit body 9, the protrusions can drive the slid-off fruit body 9 to move relative to each other, so that the slid-off fruit body 9 can fall off quickly.

[0065] In one embodiment of the present invention, see Figures 1-7The pressing component 6 includes a column 601 located at the center of the supporting circular plate 2. Several fixed rods 602 are circumferentially and fixedly distributed on the top of the column 601. Each fixed rod 602 corresponds to a storage cylinder 3. A movable plate 603 is rotatably connected to each fixed rod 602. The outer end of the movable plate 603 is connected to a guide cylinder 604 located directly above the storage cylinder 3. A lifting rod 605 is slidably disposed within the guide cylinder 604. A limit ring 612 is connected to the top of the lifting rod 605. The bottom of the lifting rod 605 is connected to a lower pressure plate 606 that is movably fitted to the top of the fruit body 9. A second spring 607 sleeved on the outside of the lifting rod 605 is connected between the guide cylinder 604 and the lower pressure plate 606. A sliding groove 608 is provided on the movable plate 603. A sliding seat 609 is slidably provided in the sliding groove 608. A handle 610 is provided at both ends of the sliding seat 609. A traction rope 611 passing through the movable plate 603 is connected between the handle 610 and the lower pressure plate 606.

[0066] In this embodiment, in the initial state, the bottom surface of the lower pressure plate 606 is flush with the bottom surface of the storage cylinder 3, the limiting ring 612 is in contact with the top of the guide cylinder 604, the second spring 607 is in the initial compression state, the sliding seat 609 is located at the end of the slide groove 608 away from the guide cylinder 604, and the movable plate 603 is in the horizontal state and the lifting rod 605 is in the vertical state.

[0067] When a new fruit body 9 needs to be placed, the worker holds the handle 610 and moves the sliding seat 609 to the end of the slide 608 near the guide cylinder 604 through the connection between the handle 610 and the sliding seat 609 and the sliding engagement between the sliding seat 609 and the slide 608. The sliding seat 609 drives the lower pressure plate 606 to move upward through the connection between the sliding seat 611 and the sliding engagement between the lifting rod 605 and the guide cylinder 604. The second spring 607 is stressed and continues to contract. At this time, the second spring 607 is in the second-stage contraction state. Then, the handle 610 is turned upward. The handle 610 drives the movable plate 603 to rotate upward through the connection between the handle 610 and the sliding seat 609, the sliding engagement between the sliding seat 609 and the slide 608, and the rotational engagement between the movable plate 603 and the fixed rod 602. The movable plate 603 drives the lower pressure plate 606 to rotate upward synchronously through the connection between the movable plate 603 and the guide cylinder 604 and the sliding engagement between the guide cylinder 604 and the lifting rod 605. This opens the top space of the storage cylinder 3, making it easier to place the new fruit body 9.

[0068] After the new fruit body 9 is placed, the operator turns the handle 610 downwards. The handle 610, through its connection with the sliding seat 609, the sliding engagement between the sliding seat 609 and the slide groove 608, and the rotational engagement between the movable plate 603 and the fixed rod 602, drives the movable plate 603 to rotate downwards. The movable plate 603, through its connection with the guide cylinder 604, and the sliding engagement between the guide cylinder 604 and the lifting rod 605, drives the lower pressure plate 606 to rotate downwards synchronously, so that the lifting rod 605 is in a vertical state and the movable plate 603 is in a horizontal state, which can close the top space of the storage cylinder 3. Then, the handle 610 is released, and the second spring 607 extends downwards and, through the sliding engagement between the lifting rod 605 and the guide cylinder 604, drives the lower pressure plate 606 to move downwards, so that the lower pressure plate 606 is in contact with the top of the new fruit body 9. Through the continuous downward extension of the second spring 607, the downward trend of the lower pressure plate 606 can be maintained, so as to achieve continuous downward pressure on the fruit body 9, which facilitates the continuous cutting of the fruit body 9.

[0069] The outer diameter of the limiting ring 612 is larger than the outer diameter of the lifting rod 605, which can effectively limit the descent distance of the lifting rod 605. The number of the fixing rods 602 is the same as the number of the storage cylinders 3.

[0070] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of the present invention should be included within the protection scope of the present invention.

Claims

1. A fruit slicing apparatus for canning, comprising a work tank, characterized in that, The side wall of the working box is circumferentially provided with a plurality of discharge ports, the inner wall of the working box is circumferentially provided with a plurality of partitions, the partitions are located between adjacent two discharge ports, and inclined guide net plates are arranged between adjacent two partitions, the low end of the guide net plate corresponds to the low end of the discharge port, the top of the working box is provided with a supporting circular plate, the supporting circular plate is circumferentially provided with a plurality of storage barrels corresponding to the guide net plates, and the supporting circular plate further comprises: A clamping assembly is arranged on the storage barrel and used for positioning the fruit body. A thickness adjusting assembly is arranged at the bottom of the storage barrel and cooperates with the supporting circular plate. A pressing assembly is arranged on the supporting circular plate and corresponds to the storage barrel, and is used for pressing the fruit body downward. A slitting assembly is arranged at the bottom of the working box and used for slitting the fruit body. A controller is arranged on the outer side wall of the working box and electrically connected with the electrical equipment in the device. The thickness adjusting assembly comprises a lifting slide plate slidingly arranged on the outer side wall of the storage barrel, the lifting slide plate is located on the side of the storage barrel away from the center of the supporting circular plate, the bottom of the lifting slide plate is provided with a supporting plate located below the storage barrel, the supporting plate is used for supporting the bottom of the fruit body, the outer wall of the lifting slide plate is horizontally provided with a horizontal plate, an electric cylinder is connected between the supporting circular plate and the horizontal plate, the top of the lifting slide plate penetrates through the supporting circular plate and is connected with a pointer movably arranged on the outer side of the storage barrel, and a scale is arranged on the outer side wall of the storage barrel in a vertical state. The slitting assembly comprises a rotating motor arranged at the bottom of the working box, the rotating motor is connected with a rotating disc movably arranged in the working box, a plurality of slitting knives are circumferentially arranged on the rotating disc, and the top surface of the slitting knife is movably connected with the bottom surface of the storage barrel.

2. The fruit slicing apparatus for canning according to claim 1, wherein The clamping assembly comprises a lifting arc plate slidingly arranged on the outer side of the storage barrel and a clamping plate symmetrically and movably arranged in the storage barrel, the side of the clamping plate away from each other is connected with a horizontal rod penetrating through the storage barrel, the first spring is arranged on the outer side of the horizontal rod and connected between the clamping plate and the inner wall of the storage barrel, the side of the clamping plate away from each other is symmetrically provided with a guide rod, the outer ends of the two guide rods penetrate through the storage barrel and are connected through a connecting rod, and the hinge rod is movably connected between the connecting rod and the lifting arc plate.

3. The fruit slicing apparatus for canning according to claim 1, wherein The supporting plate is a semicircular plate, and the center of the supporting plate is collinear with the central axis of the storage barrel.

4. The fruit slicing apparatus for canning according to claim 1, wherein The bottom of the slitting knife is provided with a plurality of protrusions.

5. The fruit slicing apparatus for canning according to claim 4, wherein The protrusions are semispherical or long strip-shaped.

6. The fruit slicing apparatus for canning according to claim 1, wherein The lower pressing assembly comprises a stand column arranged at the center of the support circular plate, the top of the stand column is circumferentially and fixedly provided with a plurality of fixed rods corresponding to the storage barrels one by one, the fixed rods are rotationally connected with movable plates, the outer ends of the movable plates are connected with guide cylinders located directly above the storage barrels, the guide cylinders are slidably provided with lifting rods, the top of the lifting rods is connected with a limiting ring, the bottom of the lifting rods is connected with a lower pressing plate movably attached to the top of the fruit body, the second spring sleeved on the outer side of the lifting rod is connected between the guide cylinder and the lower pressing plate, the movable plate is provided with a sliding groove, the sliding groove is slidably provided with a sliding seat, the both ends of the sliding seat are provided with handles, the handles and the lower pressing plate are connected with a traction rope penetrating through the movable plate.

7. The fruit slicing apparatus for canning according to claim 1, wherein The bottom of the working box is provided with a drainage arc plate located below the guide net plate, a plurality of drainage ring grooves are formed in the bottom of the working box, the drainage ring grooves are located between the outer edge bottom of the working box and the bottom of the drainage arc plate, and the bottom of the working box is provided with a water collecting ring groove plate located directly below the drainage ring grooves.

8. The fruit slicing apparatus for canning according to claim 1, wherein A plurality of marks are circumferentially distributed on the support circular plate, and the marks correspond to the storage barrels one by one.

Citation Information

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