A fast slicing device and slicing method for ham processing
By designing a fast slice device for ham processing that integrates multiple components, the problems of low efficiency of traditional slice methods and reduced wetness due to ham exposure are solved, and the effect of rapid, uniform slice and wetness maintenance is achieved.
Patent Information
- Application Number
- CN202510148976.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-11
- Publication Date
- 2025-05-13
- Estimated Expiration
- 2045-02-11
AI Technical Summary
Traditional ham slices are inefficient, and the uniformity and quality of slices are difficult to guarantee. The exposure of ham to the air after slicing of automated equipment leads to a reduced humidity and flavor.
A quick slicing device for ham processing is designed, including a working table, a mounting table, a slice member, an oil supply member, a linkage adjustment member, an anti-adhesive structural member and a conveying and collection member. Through the coordinated work of these components, the purpose of rapid slicing and preventing ham exposure is achieved.
Fast and even ham slices are achieved, preventing the sliced ham from being exposed to the air, maintaining moisture and flavor, and improving production efficiency and product quality.
Smart Images

Figure CN119635741B_ABST
Abstract
Description
Technical Field
[0001] The invention belongs to the field of ham sausage slicing, and in particular relates to a rapid slicing device and a slicing method for ham processing. Background Art
[0002] In the field of food processing, slicing ham is a common operation. However, the traditional method of slicing ham often relies on manual operation, which is not only inefficient, but also difficult to ensure the uniformity and quality of the slices. Since ham is harder than other foods, manual slicing is prone to problems such as inconsistent thickness and irregular shape, and it does not have the ability of automated production, and the production efficiency is low. In the process of slicing using automated equipment, the ham is exposed to the air when the cutter cuts the slices, resulting in a decrease in the moisture and flavor of the ham. Therefore, how to ensure that the ham can be sliced quickly and how to prevent the sliced ham from being exposed to the air during the slicing process without causing a decrease in moisture has become a technical problem that needs to be solved urgently.
[0003] The present invention seeks to alleviate or at least mitigate such problems or deficiencies by providing new or otherwise improved ham slices. Summary of the invention
[0004] In response to one or more of the above defects or improvement needs in the prior art, the present invention provides a rapid slicing device and slicing method for ham processing, which have the advantages of being able to quickly slice ham and preventing the sliced ham from being exposed to the air and causing a decrease in moisture.
[0005] To achieve the above object, the present invention provides a rapid slicing device for ham processing, which includes an operating table having a mounting plane thereon;
[0006] A mounting platform, which is detachably arranged on the mounting plane, and on which a feed hopper is detachably mounted;
[0007] A material pushing and positioning member, which is detachably mounted on the mounting platform;
[0008] A slicing member, which is detachably mounted on the mounting table;
[0009] An oil supply component, which is detachably mounted on the mounting platform, and the oil supply component is in communication with the slicing component;
[0010] A linkage adjustment component, which is detachably mounted on the slicing component;
[0011] An anti-adhesion component is detachably mounted on the mounting platform, and the anti-adhesion component can be linked when the slicing component moves;
[0012] A conveying and collecting component, which is detachably mounted on the mounting platform;
[0013] The slicing member comprises a second driving motor which is detachably mounted on the mounting table, a first driving wheel is detachably mounted on the output end of the second driving motor, and a second belt is removably sleeved on the first driving wheel;
[0014] A driving seat, in which an oil injection cylinder is rotatably arranged, a core rod is detachably arranged in the oil injection cylinder, a second driving wheel is detachably mounted on one end of the core rod, and the second driving wheel can be passed around by the second belt, and a cutter is detachably mounted on the other end of the core rod;
[0015] An oil-injected cotton board is detachably mounted on a back blade side of the cutter, and the size of the oil-injected cotton board is adapted to the size of the cutter;
[0016] The linkage adjustment member includes a mounting ring, which is detachably mounted on the oil filling cylinder;
[0017] Two sets of retaining rings are integrally formed and arranged on the mounting ring, an embedded block is slidably arranged in the retaining ring, a linkage rod is detachably installed on the embedded block, and the linkage rod can pass through the retaining ring, and a limit block is detachably installed on one end of the linkage rod passing through the retaining ring;
[0018] A first spring, which is removably sleeved on the linkage rod, and the first spring is located in the retaining ring, and the first spring is located to respectively conflict with the inner wall of the embedded block and the retaining ring;
[0019] A swing arm rotatably arranged on the embedded block;
[0020] A collar, which is slidably arranged on the oil filling cylinder, and the collar is rotationally connected to the swing arm;
[0021] The bearing is detachably mounted in the sleeve ring, and an extension plate is detachably mounted on the outer circumferential surface of the bearing.
[0022] As a further improvement of the present invention, the pusher positioning member includes a pusher base, which is detachably mounted on the mounting table, and a pusher vertical plate is detachably mounted on the pusher base;
[0023] A first drive motor is detachably mounted on the material pushing plate, an output end of the first drive motor can pass through the material pushing plate, and a driving wheel is detachably mounted on the output end of the first drive motor;
[0024] A driven wheel is rotatably arranged on the material pushing vertical plate, a first belt is removably sleeved on the driven wheel, and the first belt can pass around the driving wheel;
[0025] A slide rail, which is detachably mounted on the material pushing vertical plate;
[0026] A horizontal plate, a slider capable of sliding on the slide rail is detachably mounted on the bottom of the horizontal plate, a card plate is also detachably mounted on the bottom of the horizontal plate, and the card plate is detachably connected to the first belt;
[0027] A push plate, which is detachably mounted on one end of the transverse plate, and the push plate can penetrate into the feed hopper;
[0028] A mounting plate is detachably mounted on the mounting platform, a first electric cylinder is detachably mounted on the mounting plate, a slot plate is detachably mounted on the output end of the first electric cylinder, and the slot plate is located above the feed hopper.
[0029] As a further improvement of the present invention, an annular cavity is provided on a side of the oil filling cylinder close to the second driving wheel, an oil guide sleeve is detachably installed in the annular cavity, and the oil guide sleeve is provided with a plurality of groups of oil filling slots along its outer circumferential surface;
[0030] The plug tube has a groove ring at its upper and lower ends, a second step is formed between the groove ring and the plug tube, a first step is provided inside the groove ring, and the first step is located outside the second step, the plug tube can cover the oil guide sleeve therein, a sealing ring is detachably arranged in the first step, and the sealing ring can cover the oil injection cylinder therein;
[0031] A transition tube is provided on one side of the oil injection cylinder close to the cutter, and the cross-sectional circular diameter of the transition tube is larger than the cross-sectional circular diameter of the core rod. A U-shaped tube is detachably installed on the tail end of the oil injection cylinder close to the cutter, and one end of the U-shaped tube can be inserted into the middle section of the oil injection cotton board, and the size of the U-shaped tube is matched with the size of the oil injection cotton board.
[0032] As a further improvement of the present invention, the oil supply component includes an oil tank, which is detachably mounted on the mounting platform, and an oil pump is detachably mounted on the oil tank, and the oil pump and the oil tank are connected to each other;
[0033] A connecting pipe, which is detachably mounted on the oil pump, and the connecting pipe and the oil pump are in communication with each other;
[0034] An adjustment plate, which can pass through the connecting pipe, has a first through hole and a second through hole on the adjustment plate, and the size of the second through hole is larger than the size of the first through hole;
[0035] A plug, which can be inserted into the connecting pipe, and the plug and the connecting pipe are connected to each other;
[0036] An oil filling pipe, which is detachably mounted on the plug, and the oil filling pipe and the plug are in communication with each other, and the oil filling pipe and the slicing member are in communication with each other;
[0037] An oil inlet pipe, which is detachably mounted on the oil tank, and the oil inlet pipe and the oil tank are in communication with each other;
[0038] An oil outlet pipe is detachably mounted on the oil tank, and the oil outlet pipe and the oil tank are communicated with each other.
[0039] As a further improvement of the present invention, the anti-adhesion component includes a first frame, which is detachably mounted on the mounting table, a guide shaft is rotatably arranged in the first frame, a third driving wheel is detachably arranged on one end of the guide shaft, and a third belt is removably arranged on the third driving wheel;
[0040] a fourth driving wheel, which is detachably arranged on the slicing member and can be bypassed by the third belt;
[0041] A first bevel gear, which is detachably mounted on a rear end of the guide shaft;
[0042] A second frame is detachably mounted on the mounting table, a side shaft is rotatably arranged in the second frame, a second bevel gear is detachably mounted on one tail end of the side shaft, and the second bevel gear and the side shaft are meshed with each other, and a cam is detachably arranged on the other tail end of the side shaft.
[0043] As a further improvement of the present invention, the anti-sticking component also includes a top plate, which is detachably mounted on the mounting platform, a plug plate is slidably provided on the top plate, and the plug plate can pass through the top plate, a rubber plate is detachably mounted on one tail end of the plug plate, a pressing wheel is rotatably provided on the other tail end of the plug plate, and the pressing wheel and the cam are in contact with each other, a tail plate is also detachably mounted on the other tail end of the plug plate, a stabilizing rod is detachably mounted on the tail plate, and the stabilizing rod can pass through the top plate, a second spring is removably provided on the stabilizing rod, and the second spring is located between the tail plate and the top plate, and a stabilizing block is also detachably mounted on the end of the stabilizing rod that passes through the top plate.
[0044] As a further improvement of the present invention, the conveying and collecting member comprises a belt conveyor, which is detachably mounted on the mounting platform;
[0045] A guide plate rotatably arranged on a rear end of the belt conveyor;
[0046] A collection box, which is detachably mounted on the mounting plane;
[0047] Two groups of built-in slides are rotatably arranged on the inner side wall of the collection box, a material discharge channel is formed between the two groups of built-in slides, and multiple groups of guide strips are detachably arranged on each group of built-in slides, and a material guide groove is formed between every two groups of guide strips;
[0048] An airbag, which is removably adhered to the inner wall of the collection box, and the airbag is located on one side of the built-in slide plate, and the airbag can be shielded by the built-in slide plate;
[0049] An air tube, which is detachably mounted on the air bag and can pass through the collection box;
[0050] A side plate is detachably mounted on the collection box, a lower base is detachably mounted on the side plate, and a second electric cylinder is rotatably arranged in the lower base;
[0051] an upper base, which is detachably mounted on the guide plate and rotatably connected to an output end of the second electric cylinder;
[0052] The air pipe is connected to the second electric cylinder, and in an initial position, the air pressure in the second electric cylinder is the same as the air pressure in the airbag.
[0053] As a further improvement of the present invention, the anti-sticking component also includes a top plate, which is detachably mounted on the mounting platform, a plug plate is slidably provided on the top plate, and the plug plate can pass through the top plate, a rubber plate is detachably mounted on one tail end of the plug plate, a pressing wheel is rotatably provided on the other tail end of the plug plate, and the pressing wheel and the cam are in contact with each other, a tail plate is also detachably mounted on the other tail end of the plug plate, a stabilizing rod is detachably mounted on the tail plate, and the stabilizing rod can pass through the top plate, a second spring is removably provided on the stabilizing rod, and the second spring is located between the tail plate and the top plate, and a stabilizing block is also detachably mounted on the end of the stabilizing rod that passes through the top plate.
[0054] As a further improvement of the present invention, the conveying and collecting member comprises a belt conveyor, which is detachably mounted on the mounting platform;
[0055] A guide plate rotatably arranged on a rear end of the belt conveyor;
[0056] A collection box, which is detachably mounted on the mounting plane;
[0057] Two groups of built-in slides are rotatably arranged on the inner side wall of the collection box, a material discharge channel is formed between the two groups of built-in slides, and multiple groups of guide strips are detachably arranged on each group of built-in slides, and a material guide groove is formed between every two groups of guide strips;
[0058] An airbag, which is removably adhered to the inner wall of the collection box, and the airbag is located on one side of the built-in slide plate, and the airbag can be shielded by the built-in slide plate;
[0059] An air tube, which is detachably mounted on the air bag and can pass through the collection box;
[0060] A side plate is detachably mounted on the collection box, a lower base is detachably mounted on the side plate, and a second electric cylinder is rotatably arranged in the lower base;
[0061] an upper base, which is detachably mounted on the guide plate and rotatably connected to an output end of the second electric cylinder;
[0062] The air pipe is connected to the second electric cylinder, and in an initial position, the air pressure in the second electric cylinder is the same as the air pressure in the airbag.
[0063] Another technical problem to be solved by the present invention is a slicing method of a rapid slicing device for ham processing.
[0064] S1. Discharging the ham to be sliced: pushing the ham to be sliced into the feed hopper and allowing the ham to be sliced to pass through the mounting table;
[0065] S2, for the pusher and positioning member of the ham to be sliced: opening the pusher and positioning member;
[0066] S3, slicing the ham to be sliced: by opening the slicing component;
[0067] S4, oil supply operation for the slicing component: open the oil supply component;
[0068] S5, linkage adjustment operation of the oil supply component: the linkage adjustment component can generate linkage when the slicing component moves;
[0069] S6. Performing an oscillation operation on the mounting table: after the slicing component is turned on, the anti-adhesion component can be driven to move synchronously. After the rotation speed of the slicing component is increased, the overall oscillation effect of the anti-adhesion component can be further enhanced;
[0070] S7, conveying and collecting operation of the sliced ham: opening the conveying and collecting component.
[0071] In general, compared with the prior art, the above technical solution conceived by the present invention has the following beneficial effects:
[0072] 1. The rapid slicing device and slicing method for ham processing of the present invention, through the arranged slicing components, the staff turns on the second driving motor to drive the first driving wheel to rotate, the first driving wheel drives the second belt to drive the second driving wheel and the oil injection cylinder to rotate, when the oil injection cylinder rotates, it can drive the core rod to rotate, so as to drive the cutter and the oil injection cotton plate to rotate, when the cutter cuts into the ham to be sliced, the slicing operation of the ham to be sliced can be completed, when the oil injection cotton plate contacts the ham to be sliced, the oiling operation of the ham to be sliced can be completed;
[0073] 2. The rapid slicing device and slicing method for ham processing of the present invention, through the arranged oil supply component, after the staff turns on the oil pump, the oil can be transported from the oil tank into the connecting pipe through the oil pump, and then transmitted through the plug head and the oil filling pipe in sequence, and the oil is connected to the plug pipe through the oil filling pipe, and the oil is injected into the oil filling cylinder to complete the oil filling operation;
[0074] 3. The rapid slicing device and slicing method for ham processing of the present invention, through the arranged linkage adjustment components, after the staff increases the speed of the second drive motor, the speed of the mounting ring can be increased, and after the speed of the mounting ring is increased, the embedded block rotates, so that the embedded block is affected by the centrifugal force to move outward, and the first spring can be compressed during the outward movement, and at the same time, the two groups of swing arms pull the sleeve ring to move downward, and in the process of pulling the sleeve ring to move downward, the extension plate will be driven to move downward, because the extension plate is connected to the adjustment plate, the first through hole in the adjustment plate can be converted to the second through hole, so as to increase the overall oil supply of the oil supply component, through Increasing the overall speed of the second drive motor can increase the slicing efficiency of the slicing component for the ham to be sliced on the one hand, and can also increase the overall oil injection amount of the oil supply component on the other hand. It should be noted that after the speed of the cutter and the oil injection cotton plate is increased, it is equivalent to reducing the time acting on the ham to be sliced, and the amount of oil per unit time is reduced. By increasing the overall oil injection amount of the oil supply component, the amount of oil injection per unit time can be increased, so the amount of oil injection on both sides of the ham to be sliced can be greatly increased, and the situation of insufficient oiling or inadequate oiling on both sides of the ham to be sliced will not occur due to the increase in the speed of the cutter and the oil injection cotton plate.
[0075] 4. The rapid slicing device and slicing method for ham processing of the present invention, through the arranged anti-adhesion component, the staff can synchronously drive the fourth driving wheel to rotate after opening the slicing component, and the rotation of the fourth driving wheel drives the third driving wheel and the guide shaft to rotate, and the rotation of the guide shaft can drive the first bevel gear to rotate, and when the first bevel gear rotates, it can also drive the second bevel gear to rotate, and the rotation of the second bevel gear can drive the cam to rotate, and when the cam rotates, the convex section of the cam touches the pressing wheel, which can make the plug plate and the rubber plate move backward and touch the mounting platform. At this time, the stabilizing rod moves backward and can compress the second spring. After the cam's convex section travels, the second spring loses compression and can push the pressing wheel back to the initial position. This is a complete cycle. After that, a cycle of operation is continuously performed to achieve the overall oscillation operation of the mounting table to prevent the ham from sticking to the mounting table after slicing, which makes it difficult to transport. By further increasing the rotation speed of the slicing component, the action time of a complete cycle can be reduced, so the number of reciprocating movements of the rubber plate in a unit time can be increased to improve the continuous oscillation operation of the mounting table.
[0076] 5. The rapid slicing device and slicing method for ham processing of the present invention, through the arranged conveying and collecting components, after the ham after slicing falls on the belt conveyor, it can be transported by the belt conveyor and fall into the collection box through the guide plate. The built-in slide plate can guide the falling ham that has been sliced. At the same time, the guide strip can increase the friction resistance of the ham that has been sliced, so as to prevent the ham that has been sliced from falling directly into the collection box and causing damage. The ham that falls on the built-in slide plate may accumulate. After the ham is accumulated, the built-in slide plate can be turned inward. When the built-in slide plate is turned inward, on the one hand, the airbag can be triggered to perform buffering operation on the built-in slide plate to reduce the impact force of the sliced ham when it falls. On the other hand, the gas in the airbag can be injected into the second electric cylinder to make the output end of the second electric cylinder output. When the output end of the second electric cylinder outputs, the guide plate can be turned up to a certain extent. When the guide plate is turned up slightly, the falling speed of the sliced ham can be slowed down, which can effectively alleviate the accumulation of the two sets of built-in slide plates. BRIEF DESCRIPTION OF THE DRAWINGS
[0077] Figure 1 It is a schematic diagram of the overall structure of the rapid slicing device for ham processing of the present invention;
[0078] Figure 2 This is a schematic structural diagram of the rapid slicing device for ham processing according to the present invention from another perspective;
[0079] Figure 3 It is a schematic diagram of the overall structure of the mounting platform of the present invention;
[0080] Figure 4 It is a schematic diagram of the overall structure of the pusher positioning component of the present invention;
[0081] Figure 5 It is a schematic diagram of the overall structure of the conveying and collecting component of the present invention;
[0082] Figure 6 It is an exploded view of the conveying and collecting component of the present invention;
[0083] Figure 7 It is a structural schematic diagram of the present invention when the slicing component, the oil supply component, the linkage adjustment component and the anti-adhesion component are combined with each other;
[0084] Figure 8 It is a schematic diagram of the overall structure of the anti-adhesion component of the present invention;
[0085] Fig. 9 It is a schematic diagram of the overall structure of the oil supply component of the present invention;
[0086] Fig.10This is a schematic diagram of the overall structure of the oil supply component of the present invention viewed from another angle;
[0087] Fig.11 It is a schematic diagram of the overall structure of the slice component of the present invention;
[0088] Fig.12 For the present invention Fig.11 A magnified image of point A;
[0089] Fig.13 It is a partial exploded view of the oil filling cylinder of the present invention;
[0090] Fig.14 It is a schematic diagram of the overall structure of the linkage adjustment component of the present invention.
[0091] In all the drawings, the same reference numerals represent the same technical features, specifically: 1. operating table; 2. mounting table; 21. feed hopper; 3. pusher positioning member; 31. pusher base; 32. pusher vertical plate; 33. first drive motor; 34. driving wheel; 35. driven wheel; 36. first belt; 37. slide rail; 38. cross plate; 381. slider; 382. clamping plate; 383. pusher plate; 39. mounting plate; 391. first electric cylinder; 392. slot plate; 4. slicing member ; 41, second drive motor; 42, first drive wheel; 43, second belt; 44, drive seat; 45, oil injection cylinder; 451, oil guide sleeve; 452, plug tube; 453, first step; 454, second step; 455, sealing ring; 456, transition cylinder; 457, U-shaped tube; 46, core rod; 47, second drive wheel; 48, cutter; 49, oil injection cotton plate; 5, oil supply component; 51, oil tank; 52, oil pump; 53, connecting pipe; 54, adjustment plate; 55, plug; 5 6. Oil filling pipe; 57. Oil inlet pipe; 58. Oil outlet pipe; 6. Linkage adjustment member; 61. Mounting ring; 62. Stop ring; 63. Inlaid block; 64. Linkage rod; 65. Limit block; 66. First spring; 67. Swing arm; 68. Sleeve ring; 69. Bearing; 691. Extension plate; 7. Anti-adhesion member; 71. First frame; 72. Guide shaft; 73. Third drive wheel; 74. Third belt; 75. Fourth drive wheel; 76. First bevel gear; 77. Second frame; 78. Side shaft; 79. Second bevel gear; 791. Cam; 792. Top plate; 793. Insert plate; 794. Rubber plate; 795. Pressing wheel; 796. Tail plate; 797. Stabilizing rod; 798. Second spring; 799. Stabilizing block; 8. Conveying and collecting component; 81. Belt conveyor; 82. Guide plate; 83. Collecting box; 84. Built-in slide plate; 85. Guide strip; 86. Air bag; 87. Air pipe; 88. Side plate; 881. Lower base; 882. Second electric cylinder; 883. Upper base. DETAILED DESCRIPTION
[0092] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.
[0093] The terms used herein are only for describing specific embodiments and are not intended to limit the present invention. The terms "comprise", "include", etc. used herein indicate the existence of the features, steps, operations and / or components, but do not exclude the existence or addition of one or more other features, steps, operations or components.
[0094] All terms (including technical and scientific terms) used herein have the meanings commonly understood by those skilled in the art, unless otherwise defined. It should be noted that the terms used herein should be interpreted as having a meaning consistent with the context of this specification, and should not be interpreted in an idealized or overly rigid manner.
[0095] In the embodiment, Figure 1-14A quick slicing device for ham processing is provided, which comprises an operating table 1 having a mounting plane thereon; a mounting table 2, which is detachably arranged on the mounting plane, and on which a feed hopper 21 is detachably mounted; a pushing and positioning member 3, which is detachably mounted on the mounting table 2; a slicing member 4, which is detachably mounted on the mounting table 2; an oil supply member 5, which is detachably mounted on the mounting table 2, and the oil supply member 5 and the slicing member 4 are interconnected; a linkage adjustment member 6, which is detachably mounted on the slicing member 4; an anti-sticking member 7, which is detachably mounted on the mounting table 2, and the anti-sticking member 7 can The slicing member 4 can be linked when the slicing member 4 moves; the conveying and collecting member 8 is detachably mounted on the mounting table 2; the slicing member 4 includes a second driving motor 41, which is detachably mounted on the mounting table 2, and a first driving wheel 42 is detachably mounted on the output end of the second driving motor 41, and a second belt 43 is removably sleeved on the first driving wheel 42; a driving seat 44, in which an oil injection cylinder 45 is rotatably arranged, a core rod 46 is detachably arranged in the oil injection cylinder 45, and a second driving wheel 47 is detachably mounted on one end of the core rod 46, and the second driving wheel 47 can be moved by the first driving motor 41. Two belts 43 are passed around, and a cutter 48 is detachably installed on the other end of the core rod 46; an oil-filled cotton plate 49 is detachably installed on a back knife side of the cutter 48, and the size of the oil-filled cotton plate 49 is mutually adapted to the size of the cutter 48; the linkage adjustment member 6 includes a mounting ring 61, which is detachably installed on the oil injection cylinder 45; two sets of retaining rings 62 are integrally formed and arranged on the mounting ring 61, and an embedded block 63 is slidably arranged in the retaining ring 62, and a linkage rod 64 is detachably installed on the embedded block 63, and the linkage rod 64 can pass through the retaining ring 62, and the linkage rod 64 can pass through the retaining ring 62. A limit block 65 is detachably mounted on one end of 64 that passes through the retaining ring 62; a first spring 66 is removably mounted on the linkage rod 64, and the first spring 66 is located in the retaining ring 62, and the first spring 66 is located in contact with the inner wall of the embedded block 63 and the retaining ring 62 respectively; a swing arm 67 is rotatably arranged on the embedded block 63; a collar 68 is slidably arranged on the oil filling cylinder 45, and the collar 68 is rotatably connected to the swing arm 67; a bearing 69 is detachably mounted in the collar 68, and an extension plate 691 is detachably mounted on the outer circumference of the bearing 69.
[0096] The present invention is based on an overall idea that, through the arranged slicing member 4, the staff turns on the second driving motor 41, which can drive the first driving wheel 42 to rotate, and the first driving wheel 42 drives the second belt 43 to drive the second driving wheel 47 and the oiling cylinder 45 to rotate, and when the oiling cylinder 45 rotates, it can drive the core rod 46 to rotate, so as to drive the cutter 48 and the oiling cotton plate 49 to rotate, and when the cutter 48 cuts into the ham to be sliced, the slicing operation of the ham to be sliced can be completed, and when the oiling cotton plate 49 contacts the ham to be sliced, the lubrication of the ham to be sliced can be completed. Oil operation; through the arranged oil supply component 5, after the staff starts the oil pump 52, the oil can be transported from the oil tank 51 into the connecting pipe 53 through the oil pump 52, and then transmitted through the plug head 55 and the oil filling pipe 56 in turn, and connected with the plug pipe 452 through the oil filling pipe 56, and the oil is injected into the oil filling cylinder 45 to complete the oil filling operation; through the arranged linkage adjustment component 6, after the staff increases the speed of the second drive motor 41, the speed of the mounting ring 61 can be increased, and after the speed of the mounting ring 61 is increased, the embedded block 63 rotates, so the embedded block 63 is moved outwards under the influence of centrifugal force, and the first spring 66 can be compressed in the process of moving outwards, and at the same time, the two sets of swing arms 67 pull the collar 68 to move downwards, and in the process of pulling the collar 68 to move downwards, the extension plate 691 is driven to move downwards. Since the extension plate 691 is connected to the adjustment plate 54, the first through hole in the adjustment plate 54 can be converted to the second through hole to increase the overall oil supply of the oil supply component 5. By increasing the overall speed of the second drive motor 41, on the one hand, the slicing efficiency of the slicing component 4 for slicing ham can be increased, and on the other hand, On the one hand, the overall oil injection amount of the oil supply component 5 can be increased. It should be noted that after the rotation speed of the cutter 48 and the oil injection cotton plate 49 is increased, the time acting on the ham to be sliced is reduced, and the amount of oil lubrication per unit time is reduced. By increasing the overall oil injection amount of the oil supply component 5, the amount of oil injection per unit time can be increased, so the amount of oil lubrication on both sides of the ham to be sliced can be greatly increased, and the situation of insufficient oil lubrication or inadequate oil lubrication on both sides of the ham to be sliced will not occur due to the increase in the rotation speed of the cutter 48 and the oil injection cotton plate 49.Through the arranged anti-adhesion component 7, the staff can synchronously drive the fourth driving wheel 75 to rotate after opening the slicing component 4. The rotation of the fourth driving wheel 75 drives the third driving wheel 73 and the guide shaft 72 to rotate. After the guide shaft 72 rotates, it can drive the first bevel gear 76 to rotate. When the first bevel gear 76 rotates, it can also drive the second bevel gear 79 to rotate. After the second bevel gear 79 rotates, it can drive the cam 791 to rotate. When the cam 791 rotates, the convex section of the cam 791 touches the pressing wheel 795, which can make the plug plate 793 and the rubber plate 794 move backward and touch the installation wheel. The mounting table 2 is mounted on the mounting table 2. At this time, the stabilizing rod 797 moves backward and can compress the second spring 798. After the convex section of the cam 791 has completed its stroke, the second spring 798 loses its compression and can push the pressing wheel 795 back to its initial position. This is a complete cycle. Thereafter, a cycle of operation is continuously performed to achieve an overall oscillation operation of the mounting table 2 to prevent the ham from sticking to the mounting table 2 after slicing and causing difficulty in transportation. By further increasing the rotation speed of the slicing component 4, the action time of a complete cycle can be reduced. Therefore, the number of reciprocating movements of the rubber plate 794 can be increased per unit time to improve the mounting The ham that has been sliced can be guided to fall by the built-in slide plate 84, and the friction resistance of the ham that has been sliced can be increased by the guide strip 85 to prevent the ham that has been sliced from falling directly into the collection box 83 and causing damage. The ham that falls on the built-in slide plate 84 may be piled up. The built-in slide plate 84 can be turned inward. When the built-in slide plate 84 is turned inward, on the one hand, the airbag 86 can be triggered to perform a buffering operation on the built-in slide plate 84 to reduce the impact force of the sliced ham when it falls. On the other hand, the gas in the airbag 86 can be pumped into the second electric cylinder 882 to make the output end of the second electric cylinder 882 output. When the output end of the second electric cylinder 882 outputs, the guide plate 82 can be turned up to a certain extent. When the guide plate 82 is turned up slightly, the speed of the sliced ham falling can be slowed down, which can effectively alleviate the accumulation of the two sets of built-in slide plates 84. ;
[0097] Next, a more specific structure and construction is given to the pusher positioning member 3 as a whole for further explanation. The pusher positioning member 3 includes a pusher base 31, which is detachably mounted on the mounting platform 2, and a pusher vertical plate 32 is detachably mounted on the pusher base 31; a first drive motor 33, which is detachably mounted on the pusher vertical plate 32, and the output end of the first drive motor 33 can pass through the pusher vertical plate 32, and a driving wheel 34 is detachably mounted on the output end of the first drive motor 33; a driven wheel 35, which is rotatably arranged on the pusher vertical plate 32, and a first belt 36 is removably sleeved on the driven wheel 35, and the first belt 36 can bypass the driving wheel 34; A slide rail 37 is detachably mounted on the pusher vertical plate 32; a horizontal plate 38 is detachably mounted on the bottom thereof with a slider 381 capable of sliding on the slide rail 37, a clamping plate 382 is detachably mounted on the bottom of the horizontal plate 38, and the clamping plate 382 is detachably connected to the first belt 36; a pusher plate 383 is detachably mounted on one end of the horizontal plate 38, and the pusher plate 383 can be inserted into the feed hopper 21; a mounting plate 39 is detachably mounted on the mounting platform 2, a first electric cylinder 391 is detachably mounted on the mounting plate 39, a slot plate 392 is detachably mounted on the output end of the first electric cylinder 391, and the slot plate 392 is located above the feed hopper 21;
[0098] Next, the overall working principle of the pushing and positioning component 3 is further explained. The staff places the pushing plate 383 in the feed hopper 21 and makes the pushing plate 383 contact the ham to be sliced. The first driving motor 33 is turned on to rotate the first belt 36. After the first belt 36 rotates, the cross plate 38 can move forward along the direction of the slide rail 37. After the cross plate 38 moves forward, the pushing plate 383 can push the ham to be sliced forward and pass through the mounting table 2. The first electric cylinder 391 is turned on to press the groove plate 392 onto the ham to be sliced to complete the positioning operation of the ham to be sliced, so as to prevent the ham to be sliced from shifting sideways during slicing.
[0099] Next, a more specific structure and construction is given to the slicing component 4 as a whole for further explanation. The slicing component 4 includes a second driving motor 41, which is detachably mounted on the mounting table 2, a first driving wheel 42 is detachably mounted on the output end of the second driving motor 41, and a second belt 43 is removably sleeved on the first driving wheel 42; a driving seat 44, in which an oiling cylinder 45 is rotatably arranged, a core rod 46 is detachably arranged in the oiling cylinder 45, a second driving wheel 47 is detachably mounted on one end of the core rod 46, and the second driving wheel 47 can be bypassed by the second belt 43, and a cutting knife 48 is detachably mounted on the other end of the core rod 46; an oiling cotton board 49 is detachably mounted on a back knife side of the cutting knife 48, and the size of the oiling cotton board 49 is adapted to the size of the cutting knife 48;
[0100] Next, the overall working principle of the slicing component 4 is further explained. The staff turns on the second drive motor 41, which can drive the first drive wheel 42 to rotate. The first drive wheel 42 drives the second belt 43 to drive the second drive wheel 47 and the oiling cylinder 45 to rotate. When the oiling cylinder 45 rotates, it can drive the core rod 46 to rotate, so as to drive the cutter 48 and the oiling cotton plate 49 to rotate. When the cutter 48 cuts into the ham to be sliced, the slicing operation of the ham to be sliced can be completed. When the oiling cotton plate 49 contacts the ham to be sliced, the oiling operation of the ham to be sliced can be completed.
[0101] In some embodiments, more specifically, an annular cavity is provided on one side of the oil filling cylinder 45 close to the second driving wheel 47, and an oil guide sleeve 451 is detachably installed in the annular cavity, and a plurality of groups of oil filling slots are provided on the outer circumferential surface of the oil guide sleeve 451; a plug tube 452 has a groove ring at its upper and lower ends, and a second step 454 is formed between the groove ring and the plug tube 452, and a first step 453 is provided in the groove ring, and the first step 453 is located on the outside of the second step 454, and the plug tube 452 can cover the oil guide sleeve 451 therein, and at the first step 454, the plug tube 452 can cover the oil guide sleeve 451 therein. A sealing ring 455 is detachably arranged in a step 453, and the sealing ring 455 can cover the oil injection cylinder 45 therein; a transition cylinder 456 is provided on the side of the oil injection cylinder 45 close to the cutter 48, and the cross-sectional circular diameter of the transition cylinder 456 is larger than the cross-sectional circular diameter of the core rod 46; a U-shaped tube 457 is detachably installed on the tail end of the oil injection cylinder 45 close to the cutter 48, and one end of the U-shaped tube 457 can be inserted into the middle section of the oil injection cotton plate 49, and the size of the U-shaped tube 457 is adapted to the size of the oil injection cotton plate 49;
[0102] Next, the overall structure of the oil injection cylinder 45 is further explained. Since the plug tube 452 is interconnected with the oil supply component 5, the plug tube 452 remains constant, and how to quickly assemble the plug tube 452 to the oil injection cylinder 45 becomes a problem to be solved. Through the annular cavity opened in the oil injection cylinder 45 and the arranged oil guide sleeve 451 and the oil injection slots on the oil guide sleeve 451, when the oil guide sleeve 451 rotates with the oil injection cylinder 45, oil can still be injected into the oil guide sleeve 451 through the plug tube 452 and transferred through the oil injection cylinder 45, and the position of the plug tube 452 can be kept constant without being affected when the oil injection cylinder 45 rotates, and the sealing ring 455 in the first step 453 is used. On the one hand, the sealing performance of the plug tube 452 can be further enhanced to prevent oil leakage. On the other hand, the sealing ring 455 in the first step 453 can further enhance the stability and ease of disassembly of the socket connection between the plug tube 452 and the oil filling cylinder 45. On the other hand, the tight fit between the sealing ring 455 and the first step 453 can prevent oil leakage and prevent the situation in which the oil level in the oil filling cotton plate 49 is too low due to insufficient oil supply, resulting in the inability to lubricate the ham to be sliced. By continuously supplying oil to the oil filling cotton plate 49, each time the oil filling cotton plate 49 passes through the ham to be sliced, a continuous amount of oil can be maintained on both sides of the ham to be sliced.
[0103] Next, the oil supply component 5 is given a more specific structure and construction as a whole for further explanation. The oil supply component 5 includes an oil tank 51, which is detachably mounted on the mounting platform 2. An oil pump 52 is detachably mounted on the oil tank 51, and the oil pump 52 and the oil tank 51 are connected to each other; a connecting pipe 53, which is detachably mounted on the oil pump 52, and the connecting pipe 53 and the oil pump 52 are connected to each other; an adjusting plate 54, which can pass through the connecting pipe 53, and has a first through hole and a second through hole on the adjusting plate 54, and the second through hole is The size is larger than the size of the first through hole; the plug 55 can be inserted into the connecting pipe 53, and the plug 55 and the connecting pipe 53 are connected to each other; the oil filling pipe 56 is detachably mounted on the plug 55, and the oil filling pipe 56 and the plug 55 are connected to each other, and the oil filling pipe 56 and the slice member 4 are connected to each other; the oil inlet pipe 57 is detachably mounted on the oil tank 51, and the oil inlet pipe 57 and the oil tank 51 are connected to each other; the oil outlet pipe 58 is detachably mounted on the oil tank 51, and the oil outlet pipe 58 and the oil tank 51 are connected to each other;
[0104] Next, the overall operating principle of the oil supply component 5 is further explained. After the staff turns on the oil pump 52, the oil can be transported from the oil tank 51 into the connecting pipe 53 through the oil pump 52, and then transmitted through the plug 55 and the oil filling pipe 56 in turn, and connected to the plug pipe 452 through the oil filling pipe 56, and the oil is injected into the oil filling cylinder 45 to complete the oil filling operation.
[0105] Next, the linkage adjustment member 6 is given a more specific structure and construction as a whole for further explanation. The linkage adjustment member 6 includes a mounting ring 61, which is detachably mounted on the oil filling cylinder 45; two sets of baffle rings 62, which are integrally formed and arranged on the mounting ring 61, and an embedded block 63 is slidably arranged in the baffle ring 62, and a linkage rod 64 is detachably mounted on the embedded block 63, and the linkage rod 64 can pass through the baffle ring 62, and a detachable mounting is also provided on the end of the linkage rod 64 passing through the baffle ring 62. There is a limit block 65; a first spring 66, which is removably sleeved on the linkage rod 64, and the first spring 66 is located in the retaining ring 62, and the first spring 66 is located to conflict with the inner wall of the inner block 63 and the retaining ring 62 respectively; a swing arm 67, which is rotatably arranged on the inner block 63; a collar 68, which is slidably arranged on the oil filling cylinder 45, and the collar 68 and the swing arm 67 are rotatably connected; a bearing 69, which is detachably installed in the collar 68, and an extension plate 691 is detachably installed on the outer circumferential surface of the bearing 69;
[0106] Next, the overall use principle of the linkage adjustment member 6 is further explained. After the staff increases the speed of the second drive motor 41, the speed of the mounting ring 61 can be increased. After the speed of the mounting ring 61 is increased, the embedded block 63 rotates, so the embedded block 63 is affected by the centrifugal force to move outward, and the first spring 66 can be compressed during the outward movement, and the two sets of swing arms 67 pull the collar 68 to move downward. In the process of pulling the collar 68 to move downward, the extension plate 691 is driven to move downward. Since the extension plate 691 is connected to the adjustment plate 54, the first through hole in the adjustment plate 54 can be converted to the second through hole, so as to improve the overall supply of the oil supply member 5. Oil amount. By increasing the overall speed of the second drive motor 41, on the one hand, the slicing efficiency of the slicing component 4 for the ham to be sliced can be increased, and on the other hand, the overall oil injection amount of the oil supply component 5 can be increased. It should be noted that after the speed of the cutter 48 and the oiling cotton plate 49 is increased, it is equivalent to reducing the time acting on the ham to be sliced, and the amount of oil per unit time is reduced. By increasing the overall oil injection amount of the oil supply component 5, the amount of oil injection per unit time can be increased, so the amount of oil injection on both sides of the ham to be sliced can be greatly increased, and the situation of insufficient oiling or inadequate oiling on both sides of the ham to be sliced due to increasing the speed of the cutter 48 and the oiling cotton plate 49 will not occur.
[0107] Next, the anti-adhesion member 7 is given a more specific structure and construction as a whole for further explanation. The anti-adhesion member 7 includes a first frame 71, which is detachably mounted on the mounting table 2, a guide shaft 72 is rotatably arranged in the first frame 71, a third driving wheel 73 is detachably arranged on one end of the guide shaft 72, and a third belt 74 is removably arranged on the third driving wheel 73; a fourth driving wheel 75 is detachably arranged on the slicing member 4, and the fourth driving wheel 75 can be bypassed by the third belt 74; a first bevel gear 76 is detachably mounted on one tail end of the guide shaft 72; a second frame 77 is detachably mounted on the mounting table 2, a side shaft 78 is rotatably arranged in the second frame 77, a second bevel gear 79 is detachably mounted on one tail end of the side shaft 78, and the second bevel gear 79 is meshed with the side shaft 78, and a cam 791 is detachably arranged on the other tail end of the side shaft 78;
[0108] Next, the overall working principle of the anti-sticking component 7 is further explained. After opening the slicing component 4, the staff can synchronously drive the fourth driving wheel 75 to rotate. The rotation of the fourth driving wheel 75 drives the third driving wheel 73 and the guide shaft 72 to rotate. After the guide shaft 72 rotates, it can drive the first bevel gear 76 to rotate.
[0109] Next, the anti-adhesion member 7 is given a more specific structure and construction as a whole for further explanation. The anti-adhesion member 7 also includes a top plate 792, which is detachably mounted on the mounting platform 2. A plug plate 793 is slidably arranged on the top plate 792, and the plug plate 793 can pass through the top plate 792. A rubber plate 794 is detachably mounted on one end of the plug plate 793, and a pressing wheel 795 is rotatably arranged on the other end of the plug plate 793. 95 and the cam 791 are in conflict with each other, and a tail plate 796 is detachably mounted on the other tail end of the plug plate 793, and a stabilizing rod 797 is detachably mounted on the tail plate 796, and the stabilizing rod 797 can pass through the top plate 792, and a second spring 798 is removably arranged on the stabilizing rod 797, and the second spring 798 is located between the tail plate 796 and the top plate 792, and a stabilizing block 799 is detachably mounted on the end of the stabilizing rod 797 passing through the top plate 792;
[0110] Next, the overall working principle of the anti-adhesion component 7 is further explained. When the first bevel gear 76 rotates, it can also drive the second bevel gear 79 to rotate. When the second bevel gear 79 rotates, it can drive the cam 791 to rotate. When the cam 791 rotates, the convex section of the cam 791 touches the pressing wheel 795, which can make the plug plate 793 and the rubber plate 794 move backward and touch the mounting platform 2. At this time, the stabilizing rod 797 moves backward and can compress the second spring 798. After the convex section of the cam 791 has completed its stroke, due to The second spring 798 loses compression, so it can push the pressing wheel 795 back to the initial position. This is a complete cycle. After that, a continuous cycle of operation is carried out to achieve the overall oscillation operation of the mounting table 2 to prevent the ham from sticking to the mounting table 2 after slicing and causing difficulty in transportation. By further increasing the rotation speed of the slicing component 4, the action time of a complete cycle can be reduced. Therefore, the number of reciprocating motions of the rubber plate 794 can be increased per unit time to improve the continuous oscillation operation of the mounting table 2.
[0111] Next, the overall structure and construction of the conveying and collecting component 8 is given a more specific structure for further explanation. The conveying and collecting component 8 includes a belt conveyor 81, which is detachably mounted on the mounting table 2; a guide plate 82, which is rotatably arranged on one end of the belt conveyor 81; a collection box 83, which is detachably mounted on the mounting plane; two groups of built-in slides 84, which are rotatably arranged on the inner wall of the collection box 83, and a material discharge channel is formed between the two groups of built-in slides 84, and a plurality of groups of guide strips 85 are detachably arranged on each group of built-in slides 84, and a material guide trough is formed between every two groups of guide strips 85; an air bag 86, which is removably adhered to the inner wall of the collection box 83, and the air bag 8 6 is located on one side of the built-in slide plate 84, and the air bag 86 can be blocked by the built-in slide plate 84; the air pipe 87 is detachably mounted on the air bag 86, and the air pipe 87 can pass through the collection box 83; the side plate 88 is detachably mounted on the collection box 83, and a lower base 881 is detachably mounted on the side plate 88, and a second electric cylinder 882 is rotatably arranged in the lower base 881; the upper base 883 is detachably mounted on the guide plate 82, and the upper base 883 is rotatably connected to the output end of the second electric cylinder 882; the air pipe 87 is connected to the second electric cylinder 882, and in the initial position, the air pressure in the second electric cylinder 882 is the same as the air pressure in the air bag 86;
[0112] Next, the overall use principle of the conveying and collecting component 8 is further explained. After the sliced ham falls onto the belt conveyor 81, it can be conveyed by the belt conveyor 81 and fall into the collection box 83 through the guide plate 82. The built-in slide 84 can guide the fallen ham to fall. At the same time, the guide strip 85 can increase the friction resistance of the sliced ham to prevent the sliced ham from falling directly into the collection box 83 and causing damage. The ham falling onto the built-in slide 84 may accumulate. Then, the built-in slide plate 84 can be turned inward. When the built-in slide plate 84 is turned inward, on the one hand, the airbag 86 can be triggered to perform a buffering operation on the built-in slide plate 84 to reduce the impact force of the sliced ham when it falls. On the other hand, the gas in the airbag 86 can be injected into the second electric cylinder 882 to make the output end of the second electric cylinder 882 output. When the output end of the second electric cylinder 882 outputs, the guide plate 82 can be turned up to a certain extent. When the guide plate 82 is turned up slightly, the speed of the sliced ham falling can be slowed down, which can effectively alleviate the accumulation of the two sets of built-in slide plates 84.
[0113] When the staff is arranging the sliced ham, they only need to collect and arrange it along the belt conveyor 81 or replace the collection box 83.
[0114] Another technical problem to be solved by the present invention is a slicing method of a rapid slicing device for ham processing.
[0115] S1, feeding operation of ham to be sliced: pushing the ham to be sliced into the feed hopper 21, and allowing the ham to be sliced to pass through the mounting table 2;
[0116] S2, for the pusher and positioning member of the ham to be sliced: open the pusher and positioning member 3;
[0117] S3, slicing the ham to be sliced: by opening the slicing component 4;
[0118] S4, oil supply operation for the slicing member 4: open the oil supply member 5;
[0119] S5, linkage adjustment operation of the oil supply member 5: the linkage adjustment member 6 can generate linkage when the slicing member 4 moves;
[0120] S6, performing an oscillation operation on the mounting table 2: after the slicing member 4 is turned on, the anti-adhesion member 7 can be driven to move synchronously, and after the rotation speed of the slicing member 4 is increased, the overall oscillation effect of the anti-adhesion member 7 can be further enhanced;
[0121] S7, conveying and collecting operation of the sliced ham: opening the conveying and collecting component 8.
[0122] Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions and variations may be made to the embodiments without departing from the principles and spirit of the present invention, and that the scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A rapid slicing device for ham processing, characterized in that: It comprises an operating table (1) having a mounting surface; A mounting platform (2) which is detachably arranged on the mounting plane, and on which a feed hopper (21) is detachably mounted; A material pushing and positioning member (3) which is detachably mounted on the mounting platform (2); A slicing component (4) which is detachably mounted on the mounting platform (2); An oil supply component (5) which is detachably mounted on the mounting platform (2), the oil supply component (5) being in communication with the slicing component (4); A linkage adjustment component (6) which is detachably mounted on the slicing component (4); an anti-adhesion component (7) which is detachably mounted on the mounting platform (2), and the anti-adhesion component (7) is capable of generating linkage when the slicing component (4) moves; A conveying and collecting component (8) which is detachably mounted on the mounting platform (2); The slicing component (4) comprises a second driving motor (41) which is detachably mounted on the mounting platform (2); a first driving wheel (42) is detachably mounted on the output end of the second driving motor (41); and a second belt (43) is removably sleeved on the first driving wheel (42); A driving seat (44) in which an oil injection cylinder (45) is rotatably arranged, a core rod (46) is detachably arranged in the oil injection cylinder (45), a second driving wheel (47) is detachably mounted on one end of the core rod (46), and the second driving wheel (47) can be passed around by the second belt (43), and a cutting knife (48) is detachably mounted on the other end of the core rod (46); An oil-injected cotton plate (49) is detachably mounted on a back blade side of the cutter (48), and the size of the oil-injected cotton plate (49) is adapted to the size of the cutter (48); The linkage adjustment component (6) comprises a mounting ring (61) which is detachably mounted on the oil filling cylinder (45); Two sets of retaining rings (62) are integrally formed and arranged on the mounting ring (61); an embedded block (63) is slidably arranged in the retaining ring (62); a linkage rod (64) is detachably mounted on the embedded block (63); the linkage rod (64) can pass through the retaining ring (62); and a limit block (65) is detachably mounted on one end of the linkage rod (64) passing through the retaining ring (62); a first spring (66) which is removably sleeved on the linkage rod (64), and the first spring (66) is located in the retaining ring (62), and the first spring (66) is in contact with the inner wall of the embedded block (63) and the retaining ring (62) respectively; A swing arm (67) rotatably disposed on the inner block (63); a collar (68) which is slidably disposed on the oil filling cylinder (45), and the collar (68) is rotationally connected to the swing arm (67); A bearing (69) is detachably mounted in the sleeve ring (68), and an extension plate (691) is detachably mounted on the outer circumferential surface of the bearing (69).
2. The rapid slicing device for ham processing according to claim 1, characterized in that: The pusher positioning component (3) comprises a pusher base (31) which is detachably mounted on the mounting platform (2); a pusher vertical plate (32) is detachably mounted on the pusher base (31); A first drive motor (33) is detachably mounted on the material pushing vertical plate (32); an output end of the first drive motor (33) can pass through the material pushing vertical plate (32); and a driving wheel (34) is detachably mounted on the output end of the first drive motor (33); A driven wheel (35) is rotatably arranged on the material pushing vertical plate (32), a first belt (36) is removably sleeved on the driven wheel (35), and the first belt (36) is capable of passing around the driving wheel (34); A slide rail (37) detachably mounted on the material pushing vertical plate (32); A horizontal plate (38) having a slider (381) detachably mounted on the bottom thereof and capable of sliding on the slide rail (37); a clamping plate (382) is also detachably mounted on the bottom of the horizontal plate (38), and the clamping plate (382) is detachably connected to the first belt (36); A push plate (383) detachably mounted on one end of the transverse plate (38), the push plate (383) being capable of penetrating into the feed hopper (21); A mounting plate (39) is detachably mounted on the mounting platform (2), a first electric cylinder (391) is detachably mounted on the mounting plate (39), a slot plate (392) is detachably mounted on the output end of the first electric cylinder (391), and the slot plate (392) is located above the feed hopper (21).
3. The rapid slicing device for ham processing according to claim 2, characterized in that: An annular cavity is formed on a side of the oil injection cylinder (45) close to the second driving wheel (47), and an oil guide sleeve (451) is detachably installed in the annular cavity. The oil guide sleeve (451) has a plurality of groups of oil injection slots formed along its outer circumferential surface; A plug tube (452) having a groove ring at its upper and lower ends, a second step (454) being formed between the groove ring and the plug tube (452), a first step (453) being provided inside the groove ring, and the first step (453) being located outside the second step (454), the plug tube (452) being able to cover the oil guide sleeve (451) therein, a sealing ring (455) being detachably arranged inside the first step (453), and the sealing ring (455) being able to cover the oil injection cylinder (45) therein; A transition tube (456) is provided on a side of the oil injection tube (45) close to the cutter (48), and the cross-sectional circular diameter of the transition tube (456) is larger than the cross-sectional circular diameter of the core rod (46). A U-shaped tube (457) is detachably mounted on a tail end of the oil injection tube (45) close to the cutter (48), and one end of the U-shaped tube (457) can be inserted into the middle section of the oil injection cotton plate (49), and the size of the U-shaped tube (457) is compatible with the size of the oil injection cotton plate (49).
4. The rapid slicing device for ham processing according to claim 3, characterized in that: The oil supply component (5) comprises an oil tank (51) which is detachably mounted on the mounting platform (2); an oil pump (52) is detachably mounted on the oil tank (51), and the oil pump (52) and the oil tank (51) are in communication with each other; a connecting pipe (53) which is detachably mounted on the oil pump (52), and the connecting pipe (53) and the oil pump (52) are in communication with each other; an adjustment plate (54) capable of passing through the connecting pipe (53), the adjustment plate (54) having a first through hole and a second through hole, and the size of the second through hole is larger than the size of the first through hole; a plug (55) capable of being inserted into the connecting pipe (53), and the plug (55) and the connecting pipe (53) are in communication with each other; an oil filling pipe (56) which is detachably mounted on the plug (55), the oil filling pipe (56) and the plug (55) being in communication with each other, and the oil filling pipe (56) and the slicing member (4) being in communication with each other; an oil inlet pipe (57) detachably mounted on the oil tank (51), the oil inlet pipe (57) and the oil tank (51) being in communication with each other; An oil outlet pipe (58) is detachably mounted on the oil tank (51), and the oil outlet pipe (58) and the oil tank (51) are in communication with each other.
5. The rapid slicing device for ham processing according to claim 4, characterized in that: The anti-adhesion component (7) comprises a first frame (71) which is detachably mounted on the mounting platform (2); a guide shaft (72) is rotatably arranged in the first frame (71); a third driving wheel (73) is detachably arranged on one end of the guide shaft (72); and a third belt (74) is removably arranged on the third driving wheel (73); a fourth driving wheel (75) which is detachably arranged on the slicing member (4), and the fourth driving wheel (75) can be bypassed by the third belt (74); A first bevel gear (76) detachably mounted on a rear end of the guide shaft (72); A second frame (77) is detachably mounted on the mounting platform (2); a side shaft (78) is rotatably arranged in the second frame (77); a second bevel gear (79) is detachably mounted on one tail end of the side shaft (78); the second bevel gear (79) and the side shaft (78) are meshed with each other; and a cam (791) is detachably arranged on the other tail end of the side shaft (78).
6. The rapid slicing device for ham processing according to claim 5, characterized in that: The anti-adhesion component (7) further comprises a top plate (792), wherein the top plate (792) is detachably mounted on the mounting platform (2), an insert plate (793) is slidably arranged in the top plate (792), and the insert plate (793) can pass through the top plate (792), a rubber plate (794) is detachably mounted on one end of the insert plate (793), and a pressing wheel (795) is rotatably arranged on the other end of the insert plate (793), and the pressing wheel (795) and the cam (791) are in contact with each other, A tail plate (796) is detachably mounted on the other tail end of the plug plate (793), a stabilizing rod (797) is detachably mounted on the tail plate (796), and the stabilizing rod (797) can pass through the top plate (792), a second spring (798) is removably arranged on the stabilizing rod (797), and the second spring (798) is located between the tail plate (796) and the top plate (792), and a stabilizing block (799) is detachably mounted on the end of the stabilizing rod (797) passing through the top plate (792).
7. The rapid slicing device for ham processing according to claim 6, characterized in that: The conveying and collecting component (8) comprises a belt conveyor (81) which is detachably mounted on the mounting platform (2); A guide plate (82) rotatably arranged on a rear end of the belt conveyor (81); A collecting box (83) detachably mounted on the mounting plane; Two groups of built-in slides (84) are rotatably arranged on the inner side wall of the collection box (83), a material discharge channel is formed between the two groups of built-in slides (84), and a plurality of groups of guide strips (85) are detachably arranged on each group of built-in slides (84), and a material guide groove is formed between every two groups of guide strips (85); an air bag (86) which is removably adhered to the inner wall of the collection box (83), and the air bag (86) is located on one side of the built-in slide plate (84), and the air bag (86) can be shielded by the built-in slide plate (84); an air tube (87) which is detachably mounted on the air bag (86), and the air tube (87) is capable of passing through the collection box (83); A side plate (88) is detachably mounted on the collection box (83); a lower base (881) is detachably mounted on the side plate (88); a second electric cylinder (882) is rotatably arranged in the lower base (881); an upper base (883) which is detachably mounted on the guide plate (82), and the upper base (883) is rotatably connected to an output end of the second electric cylinder (882); The air pipe (87) is connected to the second electric cylinder (882), and in an initial position, the air pressure in the second electric cylinder (882) is the same as the air pressure in the airbag (86).
8. The slicing method of the rapid slicing device for ham processing according to claim 7, characterized in that: S1, feeding operation of ham to be sliced: pushing the ham to be sliced into the feed hopper (21) and allowing the ham to be sliced to pass through the mounting table (2); S2, for the pusher and positioning member of the ham to be sliced: open the pusher and positioning member (3); S3, slicing the ham to be sliced: by opening the slicing component (4); S4, supplying oil to the slicing member (4): opening the oil supply member (5); S5, linkage adjustment operation of the oil supply component (5): the linkage adjustment component (6) can generate linkage when the slicing component (4) moves; S6, performing an oscillating operation on the mounting table (2): after the slicing component (4) is turned on, the anti-adhesion component (7) can be driven to move synchronously, and after the rotation speed of the slicing component (4) is increased, the overall oscillation effect of the anti-adhesion component (7) can be further enhanced; S7, conveying and collecting operation of the sliced ham: opening the conveying and collecting component (8).
Citation Information
Patent Citations
Beef slicing device high in safety performance
CN108656195A
Sausage cutting equipment
CN221284487U