Be used for sliced high-efficient processing platform of tilapia
Technical Field
The utility model belongs to the technical field of fish processing, and particularly relates to a high-efficiency processing platform for tilapia slicing.
Background
The tilapia has delicious taste, tender meat, little bone spur, no intramuscular thorns, and good taste, no matter braised or steamed. There are also many tilapia processes, which require slicing fish processing when processing fish, due to customer needs when selling fish.
For example, the Chinese patent with the bulletin number of CN218736940U specifically discloses a fish section slicing device which is characterized by comprising a frame, a transmission rod, a blade frame module, a fish section lifting groove and a feeding module, wherein the blade frame module is driven by a main motor to conduct reciprocating cutting in the horizontal direction, the sliced fish slices do not need to be manually pushed out, the working efficiency is higher, and the labor intensity is lower.
The applicant finds that, in practical application, the blade frame module and the fish section lifting groove have complex structures (smaller gaps), so that thorough cleaning and disinfection treatment is difficult to realize, bacteria are easy to grow at the blade frame module and the fish section lifting groove after long-term use, bacteria are easy to adhere to fish slices during subsequent slicing, and food safety is easy to be guaranteed.
In view of this, a high-efficiency processing platform for tilapia slicing is provided.
Disclosure of utility model
The utility model aims to solve the problems and provide an efficient processing platform for tilapia slicing.
The high-efficiency processing platform for tilapia slicing comprises a slicing platform, a fillet beveling mechanism, a pushing mechanism and a sterilizing mechanism, wherein the slicing platform is provided with an accommodating space, the fillet beveling mechanism is arranged in the accommodating space and is used for beveling the placed fish, the pushing mechanism is arranged in the accommodating space and is positioned at one side of the fillet beveling mechanism and is used for pushing the beveled fillet out of the fillet beveling mechanism, the sterilizing mechanism comprises an ozone generator, an ozone discharging pipe and an ozone concentration sensor, the ozone generator is arranged at the outer end of the slicing platform, the exhaust end of the ozone generator is connected with the ozone discharging pipe, and the other end of the ozone discharging pipe extends into the accommodating space and is used for sterilizing and sterilizing the fillet beveling mechanism and the pushing mechanism.
In a preferred embodiment, the fillet chamfering mechanism comprises a mounting frame, a cutter frame, a bottom plate, a plurality of chamfer blades and a fillet placing plate which is staggered with the chamfer blades, wherein the chamfer blades are distributed on the cutter frame at equal intervals, and a slot which meets the requirement that the fillet placing plate stretches upwards is formed between every two chamfer blades.
In a preferred embodiment, the fillet beveling mechanism further comprises a motor and guide frames longitudinally arranged in the accommodating space, a crank is sleeved at the output end of the motor, a connecting arm is arranged on the crank, the other end of the connecting arm is hinged with the tool rest, two guide frames are arranged, and sliding blocks capable of longitudinally sliding on the two guide frames are arranged at two ends of the tool rest.
In a preferred embodiment, a plurality of the fillet placing plates are combined to form a U-shaped cavity for placing fillets, the fillet placing plates are distributed on the mounting frame at equal intervals, the bottom plate is arranged obliquely upwards, an air cylinder is arranged in the middle of the upper end of the bottom plate, and the telescopic end of the air cylinder is connected with the bottom of the mounting frame.
In a preferred embodiment, the upper surface of the bottom plate is symmetrically provided with guide rails, and the bottom of the mounting frame is provided with guide sliding blocks capable of sliding on the guide rails.
In a preferred embodiment, the pushing mechanism comprises a pushing frame, a straight rack, a second motor and a gear, wherein the gear is fixedly sleeved at the output end of the second motor, the straight rack is arranged along the length direction of the tool rest, the straight rack is meshed with the gear, and one end of the straight rack is provided with a guide block capable of sliding in a reserved cavity of the inner wall of the slicing platform.
In a preferred embodiment, the pushing frame is mounted at the upper end of the straight rack, a pushing plate longitudinally arranged along the fillet placing plate is arranged at the tail end of the straight rack, and the bottom of the pushing plate and the bottom of the U-shaped cavity are in the same horizontal plane.
In a preferred embodiment, the slicing machine further comprises a discharging plate, wherein the discharging plate is inclined downwards and arranged at the tail end of the knife rest, and a material taking port is arranged at the lowest end of the discharging plate on the slicing platform.
In a preferred embodiment, a maintenance port is formed in the slicing platform right above the fillet beveling mechanism, a sealing cover plate is hinged to the maintenance port and the material taking port through a hinge, sealing rubber strips are circumferentially arranged on the inner wall of the sealing cover plate, and a transparent viewing plate is arranged in the middle of the sealing cover plate on the maintenance port.
In a preferred embodiment, the ozone concentration sensor is installed inside the slicing platform, and a control panel electrically connected with the disinfection mechanism, the fish fillet beveling mechanism and the pushing mechanism is further arranged at the outer end of the slicing platform.
In summary, due to the adoption of the technical scheme, the beneficial effects of the utility model are as follows:
1. In the utility model, a disinfection mechanism for carrying out ozone disinfection on internal elements is designed on the slicing platform, the slicing platform can be sealed into a sealed space by utilizing a sealing cover plate during disinfection, then ozone is discharged into the interior by utilizing the disinfection mechanism, and ozone gas can be fully contacted with the fish slice chamfering mechanism and the pushing mechanism, so that the disinfection quality of the fish slice chamfering mechanism and the pushing mechanism can be ensured, and compared with the traditional disinfection cleaning operation, the problem of adhering bacteria to fish slices during slicing can be avoided as much as possible after long-time use, and the problem of food safety is not easy to occur;
2. In the utility model, the pushing mechanism is designed at one side of the fish slice chamfering mechanism, and after the sliced fish slices are chamfered, the sliced fish slices can be pushed out by the pushing mechanism, so that the labor is saved and the efficiency is improved during use.
Drawings
FIG. 1 is a schematic perspective view of the whole structure of the present utility model;
FIG. 2 is a schematic cross-sectional plan view of the entire structure of the present utility model;
FIG. 3 is a schematic diagram of a three-dimensional structure of a combination of the pushing mechanism and the fillet beveling mechanism of the present utility model;
FIG. 4 is a schematic side plan view of the combination of the pushing mechanism and the fillet beveling mechanism of the present utility model;
Fig. 5 is a schematic and simplified schematic view of the bottom plan view of the combination of the pushing mechanism and the fillet beveling mechanism of the present utility model.
The figure shows a 1-discharge plate, a 2-slicing platform, a 3-ozone generator, a 4-control panel, a 5-fillet beveling mechanism, a 501-motor, a 502-crank, a 503-connecting arm, a 504-slider, a 505-guide frame, a 506-beveling blade, a 507-knife rest, a 508-fillet placing plate, a 509-mounting frame, a 510-guide rail, a 511-bottom plate, a 512-cylinder, a 6-sealing cover plate, a 7-pushing mechanism, a 701-pushing frame, a 702-second motor, a 703-gear, a 704-guide block, a 705-straight rack, an 8-transparent vision plate, a 9-ozone discharge pipe and a 10-ozone concentration sensor.
Detailed Description
The present utility model will be described in further detail with reference to the drawings and examples, in order to make the objects, technical solutions and advantages of the present utility model more apparent. It should be understood that the specific embodiments described herein are for purposes of illustration only and are not intended to limit the scope of the utility model.
Referring to figures 1-5, the high-efficiency processing platform for tilapia slicing comprises a slicing platform 2, a fillet beveling mechanism 5, a pushing mechanism 7 and a disinfection mechanism, wherein the slicing platform 2 is provided with an accommodating space, the fillet beveling mechanism 5 is arranged in the accommodating space and is used for beveling the placed fish, the pushing mechanism 7 is arranged in the accommodating space and is positioned at one side of the fillet beveling mechanism 5 and is used for pushing the beveled fillet out of the fillet beveling mechanism 5, the disinfection mechanism comprises an ozone generator 3, an ozone discharging pipe 9 and an ozone concentration sensor 10, the ozone generator 3 is arranged at the outer end of the slicing platform 2, the exhaust end of the ozone generator 3 is connected with the ozone discharging pipe 9, the other end of the ozone discharging pipe 9 stretches into the accommodating space and is used for sterilizing and disinfecting the fillet beveling mechanism 5 and the pushing mechanism 7, the disinfection mechanism is designed on the slicing platform 2 and is used for carrying out ozone disinfection on internal elements, the disinfection mechanism is used for discharging ozone into the accommodating space when being used for pushing the inside, the ozone gas can be in contact with the fillet beveling mechanism 5 and the pushing mechanism 7, thus the ozone gas can be fully contacted with the fillet beveling mechanism 5 and the pushing mechanism 7, and the ozone can be prevented from being fully degraded when the conventional disinfection mechanism 7 is not polluted, and the quality is not polluted when the conventional disinfection mechanism is used for disinfecting the sliced fish, and the quality is not polluted when the conventional disinfection mechanism is not easy to be cleaned or polluted, and the quality is not polluted when the ozone is easy to be compared with the conventional disinfection.
Further, the fillet beveling mechanism 5 includes mounting bracket 509, knife rest 507, the bottom plate 511, a plurality of chamfer blades 506 and with the crisscross fillet placing plate 508 that sets up of a plurality of chamfer blades 506, a plurality of chamfer blades 506 equidistant interval distribution is on the knife rest 507, be formed with the trench that satisfies fillet placing plate 508 and upwards stretch out between two liang chamfer blades 506, fillet beveling mechanism 5 still includes motor 501 and locates the leading truck 505 in the accommodation space along vertically, the motor 501 output cover inherent crank 502, be provided with linking arm 503 on the crank 502, linking arm 503's the other end is articulated with knife rest 507, leading truck 505 is two, knife rest 507 both ends are equipped with the slider 504 that can vertically slide on two leading truck 505, a plurality of fillet placing plate 508 combination are formed with the U-shaped chamber of placing the fillet, a plurality of fillet placing plate 508 equidistant interval distribution is on mounting bracket 509, the bottom plate 511 is inclined and is set up at this moment, the upper end middle part of bottom plate 511 is equipped with cylinder 512, the flexible end of cylinder 512 links to each other with the bottom of mounting bracket bottom, in the in-process with the piece is put into U-shaped chamber with the motor 501, motor and crank 502 are sleeved with the inherent crank 502, be provided with linking arm 503, the other end, the slider is able to realize the effect of leading blade 502 is rotated to the upward, simultaneously, the effect of leading blade is rotated upwards and is inclined to the blade is rotated, and is driven to slide plate 512 is simultaneously, and is inclined to be stretched out, and is able to realize the automatic in the upward slide blade is inclined blade.
Wherein a clearance for the fillet to leak out is provided between the fillet placement plate 508 and the chamfer blade 506.
Further, the upper surface of the bottom plate 511 is symmetrically provided with a guide rail 510, a guide slider (not shown in the figure) capable of sliding on the guide rail 510 is provided at the bottom of the mounting rack 509, and the movement of the mounting rack 509 can be guided in an auxiliary manner by the cooperation of the guide rail 510 and the guide slider, so that the movement stability of the mounting rack 509 is ensured.
Further, pushing equipment 7 includes pushing equipment 701, straight rack 705, second motor 702 and gear 703, gear 703 cover is fixed at the output of second motor 702, straight rack 705 sets up along knife rest 507 length direction, and straight rack 705 meshes with gear 703 mutually, straight rack 705 one end is equipped with the guide block 704 that can slide in the cavity position is reserved to section platform 2 inner wall, pushing equipment 701 installs in straight rack 705 upper end, the tail end of straight rack 705 is equipped with the flitch of vertically setting along fish fillet placing plate 508, the flitch bottom is in same horizontal plane with U-shaped cavity bottom, design pushing equipment in fish fillet chamfer mechanism one side, after the chamfer, second motor 702 drives gear 703 rotation, can drive straight rack 705 and remove, in the in-process of removal, release the fish fillet that cuts through the flitch, more laborsaving and high-efficient when using.
Further, still include discharge plate 1, discharge plate 1 downward sloping and locate the knife rest 507 tail end, discharge plate 1 extreme low is equipped with the material taking mouth on slicing platform 2, can collect the fillet after the section through discharge plate 1, and accessible material taking mouth carries out the collection operation to the fillet, and discharge plate 1's inclination is 45 ~ 60.
Further, the maintenance mouth has been seted up on slicing platform 2 directly over the fillet chamfer mechanism 5, there is sealed apron 7 through the hinge on maintenance mouth and the material taking mouth, sealed apron 7 inner wall circumference is equipped with joint strip, sealed apron 7 middle part that is located on the maintenance mouth is equipped with transparent vision board 8, when carrying out disinfection operation or not using, usable sealed apron 7 seals slicing platform 2 into sealed space, ozone leakage when avoiding disinfecting also can avoid foreign matter or bacterium to enter into in the equipment in the external space when not using, can look over the operating condition of equipment at the section in-process through the transparent apron 8 that has.
Wherein handles are arranged on the sealing cover plate 7.
Further, the ozone concentration sensor 10 is installed inside the slicing platform 2, the outer end of the slicing platform 2 is further provided with the control panel 4 electrically connected with the disinfection mechanism, the fish fillet beveling mechanism 5 and the pushing mechanism 7, and the ozone concentration inside the accommodating space can be monitored through the ozone concentration sensor 10, so that the ozone concentration is prevented from being too high or too low.
Wherein, a fan (not shown in the figure) can be additionally arranged below the accommodating space so as to realize rapid diffusion of ozone.
The foregoing description of the preferred embodiments of the utility model is not intended to be limiting, but rather is intended to cover all modifications, equivalents, and alternatives falling within the spirit and principles of the utility model.