Disclosure of Invention
The invention aims to: in order to solve the problem that the existing meat processing hammer is not convenient enough, the meat hammer-kneading processing device is provided.
In order to achieve the purpose, the invention adopts the following technical scheme:
the utility model provides a processingequipment is rubbed to meat hammer, includes the conveying platform, the equal fixedly connected with pallet in both sides of conveying platform, and the vertical section midpoint position department fixedly connected with horizontal pole of pallet, the conveying bench has been seted up and has been led to the groove, one side of pallet is provided with driving motor, two the inboard of pallet is provided with a plurality of hammers and rubs the mechanism, and beats the below transmission of rubbing the mechanism and be connected with the briquetting to the motion of two adjacent briquettings opposite direction all the time, one side of pallet is provided with driving motor, and driving motor and beat and rub the transmission between the mechanism and be connected, conveying bench sliding connection has two boards that slide, driving motor and two slide between the board are connected in the transmission, the below of conveying platform is provided with down hammer block mechanism.
As a further description of the above technical solution:
beat and rub mechanism and include two driving discs, fixedly connected with round pin axle between two driving discs, and the round pin axle is located the skew centre of a circle position department of driving disc, the epaxial rotation of round pin is connected with the connecting axle, and the below of connecting axle rotates and is connected with first slide bar, the sleeve of the vertical setting of fixedly connected with on the horizontal pole, and sliding connection between sleeve and the first slide bar.
As a further description of the above technical solution:
two adjacent beat and rub mechanism axis position department fixedly connected with jackshaft, and a plurality of jackshaft axes all set up with driving motor's axis collineation.
As a further description of the above technical solution:
the automatic transmission device is characterized in that a first bevel gear is sleeved on an output shaft of the driving motor, a rotating rod is arranged on the side edge of the stand platform, a second bevel gear meshed with the first bevel gear is sleeved on the top end of the rotating rod, and a thread groove is formed in the bottom end of the rotating rod.
As a further description of the above technical solution:
the outside of two sliding plates all is provided with the carousel, and the skew axis position department of the lateral wall of two carousels rotates and is connected with the transfer line to the free end of transfer line rotates with the side of sliding plate to be connected, two axis position department fixedly connected with axle between the carousel, and epaxial cover be equipped with the driven toothed disc of thread groove meshing.
As a further description of the above technical solution:
the below of horizontal pole is provided with a plurality of contact pieces, and a plurality of contact pieces all through fixed connection between branch and the horizontal pole, every sets up respectively between two adjacent briquetting in a plurality of contact pieces, and has certain clearance between the lower terminal surface of a plurality of contact pieces and the up end of conveying platform.
As a further description of the above technical solution:
lower hammer block mechanism includes hammer block down, and is same in hammer block mechanism down one of two hammer blocks is located the briquetting under, and another is located two briquetting clearances under position department, hammer block up end all sets up with conveying bench terminal surface parallel and level down, and the central point of hammer block below fixedly connected with second slide bar down, conveying bench's below fixedly connected with sleeve pipe, and the sliding fit between sleeve pipe and the second slide bar, the bottom of second slide bar is seted up flutedly, and the recess normal view is the U-shaped structure.
As a further description of the above technical solution:
two adjacent the equal fixedly connected with support of sleeve pipe perpendicular and recess axis position department, and rotate through the torsional spring pivot between two supports and be connected with the V-arrangement pole, the both ends of V-arrangement pole are all rotated and are connected with two lantern rings, and the lantern ring sets up with the laminating of recess inner wall respectively.
In summary, due to the adoption of the technical scheme, the invention has the beneficial effects that:
according to the invention, by arranging the plurality of groups of beating and kneading mechanisms, the rotating disc drives one end of the connecting shaft to rotate circumferentially, so that the first sliding rod is driven to slide in the sleeve, the first sliding rod vertically slides downwards at the moment through the limitation of the sleeve, the pressing block is driven to move downwards, meat products are beaten and kneaded, beating and kneading operations are carried out through circulation of the plurality of pressing blocks, the beating and kneading effects are ensured, the device can be directly erected on a production line, and the device is high in practicability;
the driving motor simultaneously drives the first bevel gear to rotate, the first bevel gear is meshed with the second bevel gear, the gear disc is driven under the action of the rotating rod at the position of the axis of the second bevel gear, the two rotating discs coaxially arranged with the gear disc rotate, the transmission rod rotates on the outer wall of the transmission rod, and the two sliding plates are horizontally limited in the horizontal direction with the conveying table under the action of the transmission rod, so that the two sliding plates synchronously transversely move left and right on the conveying table, the meat product placed on the sliding plates is moved, the meat blocks are beaten and kneaded at different positions by matching with the downward pressing of the pressing block above, and the beating and kneading effect is further improved;
the pressing block presses down redundant force to act on the lower hammer block below, the lower hammer block falls down to push the V-shaped rod below, one end of the V-shaped rod slides in the groove, the other end of the V-shaped rod slides in the groove of the other second slide rod, upward pushing force is exerted on the second slide rods, the lower hammer block moves upwards under the transmission of the second slide rods at the moment, through interaction between the lower hammer block and the contact block above, the rest part is beaten and kneaded up and down synchronously, after the pressing block is moved away, the positions of the two second slide rods are restored under the action of the torsion spring rotating shaft at the top point position of the V-shaped rod, preparation is made for hammering of the next wheel, flanging of meat products is not needed, both sides can be beaten and kneaded simultaneously, and the effect of the kneading hammer is improved.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
Embodiment one, please refer to fig. 1-7, a meat hammering and kneading processing device, which comprises a conveying table 1, a table 3 is fixedly connected to both sides of the conveying table 1, a U-shaped structure is formed between the table 3 and the conveying table 1 in a side view, and the position of the table 3 is the same as the position of a through groove formed on the conveying table 1, so as to ensure that the position of a pressing plate 10 is corresponding to the position of a lower hammer block 15, a cross rod 6 is fixedly connected to the midpoint of a vertical section of the table 3, a through groove is formed on the conveying table 1, a driving motor 4 is arranged on one side of the table 3, the driving motor 4 is fixedly connected with the table 3 through a fixing plate and a bolt, so as to keep the position thereof stable, a certain distance is formed between an output shaft of the driving motor 4 and the outer wall of the table 3, a first bevel gear 16 is located on the outer side of the table 3, the outer wall of the driving motor 4 is not in contact with a second bevel gear 17, the inner sides of the two stand platforms 3 are provided with a plurality of hammering mechanisms 5, a certain distance is formed between the hammer head mechanisms 5, the lower parts of the hammering mechanisms 5 are in transmission connection with pressing blocks 10, the bottoms of the pressing blocks 10 are provided with prismatic table-shaped bulges to ensure better hammering effect, the pressing blocks 10 are not in contact with each other and have a certain distance, the directions of the two adjacent pressing blocks 10 are always opposite, namely when one of the pressing blocks moves downwards, two adjacent pressing blocks move upwards, when one of the pressing blocks moves upwards, two adjacent pressing blocks move upwards, one side of the stand platform 3 is provided with a driving motor 4, the driving motor 4 is in transmission connection with the hammering mechanisms 5, each hammering mechanism 5 comprises two driving disks 501, a pin shaft 503 is fixedly connected between the two driving disks 501, the pin shaft 503 is located at the position, deviated from the center of the circle, the pin shaft 503 is rotatably connected with a connecting shaft 504, a first slide bar 11 is rotatably connected below the connecting shaft 504, a vertically arranged sleeve 7 is fixedly connected on the cross bar 6, the sleeve 7 is arranged corresponding to the position of the first slide bar 11, the length of the sleeve 7 is smaller than that of the first slide bar 11, the sleeve 7 is slidably connected with the first slide bar 11, the axial positions of two adjacent beating and kneading mechanisms 5 are fixedly connected with intermediate shafts 502, the axial lines of the intermediate shafts 502 are arranged in a collinear way with the axial line of the driving motor 4, the axial lines of the intermediate shafts 502 are arranged in parallel with the conveying table 1, the driving motor 4 rotates, the output shafts of the driving motors transmit the groups of beating and kneading mechanisms 5 through the intermediate shafts 502, when a transmission disc 501 in the beating and kneading mechanisms 5 rotates, a pin shaft 503 with the inner side rotates, so that the connecting shaft 504 connected on the pin shaft 503 rotates in a transmission manner, the connecting shaft 504 further transmits the first slide bar 11 to slide in the sleeve 7 and is limited by the sleeve 7, the first sliding rod 11 can only vertically slide downwards at this time, so that the transmission pressing blocks 10 move downwards, the meat product is beaten and kneaded, and the beating and kneading operation is circularly carried out through the plurality of pressing blocks 10, so that the beating and kneading effect is improved.
Embodiment two, please refer to fig. 1-7, a meat hammering and kneading processing device, which comprises a conveying table 1, a table 3 is fixedly connected to both sides of the conveying table 1, a U-shaped structure is formed between the table 3 and the conveying table 1 in a side view, and the position of the table 3 is the same as the position of a through groove formed on the conveying table 1, so as to ensure that the position of a pressing plate 10 is corresponding to the position of a lower hammer block 15, a cross rod 6 is fixedly connected to the midpoint of a vertical section of the table 3, a through groove is formed on the conveying table 1, a driving motor 4 is arranged on one side of the table 3, the driving motor 4 is fixedly connected with the table 3 through a fixing plate and a bolt, so as to keep the position thereof stable, a certain distance is formed between an output shaft of the driving motor 4 and the outer wall of the table 3, a first bevel gear 16 is located on the outer side of the table 3, the outer wall of the driving motor 4 is not in contact with a second bevel gear 17, the inner sides of the two stand platforms 3 are provided with a plurality of hammering mechanisms 5, a certain distance is formed between the hammer head mechanisms 5, a pressing block 10 is connected below the hammering mechanisms 5 in a transmission manner, the pressing blocks 10 are not contacted with each other and have a certain distance, the directions of the movement of the two adjacent pressing blocks 10 are opposite all the time, namely when one of the two pressing blocks moves downwards, the two adjacent pressing blocks move upwards, when the other pressing block moves upwards, the two adjacent pressing blocks move upwards, one side of the stand platform 3 is provided with a driving motor 4, the driving motor 4 is in transmission connection with the hammering mechanisms 5, the conveying platform 1 is in sliding connection with two sliding plates 2, the vertical direction between the two sliding plates 2 and the conveying platform 1 is limited, the horizontal direction can slide freely, the two sliding plates 2 are provided with grooves, the friction force in the horizontal direction between the two sliding plates 2 and the meat product is increased, and the driving motor 4 is in transmission connection with the two sliding plates 2, a first bevel gear 16 is sleeved on an output shaft of the driving motor 4, a rotating rod 12 is arranged on the side edge of the stand 3, the rotating rod 12 is rotatably connected with the stand 3 through a sleeving part and is fixed in axial position, so that the rotating rod 12 can rotate when being driven by a gear disc 18, a second bevel gear 17 meshed with the first bevel gear 16 is sleeved on the top end of the rotating rod 12, a thread groove 1201 is formed in the bottom end of the rotating rod 12, rotary discs 13 are arranged on the outer sides of the two sliding plates 2, a transmission rod 14 is rotatably connected to the positions, deviating from the axial line, of the outer side walls of the two rotary discs 13, the free end of the transmission rod 14 is rotatably connected with the side edge of the sliding plate 2, a shaft is fixedly connected to the position of the axial line between the two rotary discs 13, a gear disc 18 meshed with the thread groove 1201 for transmission is sleeved on the shaft, when the driving motor 4 rotates, the first bevel gear 16 sleeved on the output shaft rotates, meshing transmission second bevel gear 17, dwang 12 effect through second bevel gear 17 axis position department, carry out the transmission to toothed disc 18, thereby two carousel 13 rotations of the coaxial setting of toothed disc 18 intercommunication, when two carousel 13 rotate, transmission transfer line 14 rotates on its outer wall, because horizontal direction is spacing between slide plate 2 and the conveying platform 1, thereby under the effect of transfer line 14, sideslip about two slide plate 2 are synchronous on conveying platform 1, thereby even the meat products of placing on it move, the cooperation top briquetting 10 pushes down, beat and rub different positions of meat piece, further promote to beat and rub the effect.
Embodiment three, please refer to fig. 1-7, a meat hammering and kneading processing device, which comprises a conveying table 1, a table 3 is fixedly connected to both sides of the conveying table 1, a U-shaped structure is formed between the table 3 and the conveying table 1 in a side view, and the position of the table 3 is the same as the position of a through groove formed on the conveying table 1, so as to ensure that the position of a pressing plate 10 is corresponding to the position of a lower hammer block 15, a cross rod 6 is fixedly connected to the midpoint of a vertical section of the table 3, a through groove is formed on the conveying table 1, a driving motor 4 is arranged on one side of the table 3, the driving motor 4 is fixedly connected with the table 3 through a fixing plate and a bolt, so as to keep the position thereof stable, a certain distance is formed between an output shaft of the driving motor 4 and the outer wall of the table 3, a first bevel gear 16 is located on the outer side of the table 3, the outer wall of the driving motor 4 is not in contact with a second bevel gear 17, the inner sides of the two stands 3 are provided with a plurality of hammering mechanisms 5, a certain distance is formed between the hammer mechanisms 5, pressing blocks 10 are connected below the hammering mechanisms 5 in a transmission manner, the pressing blocks 10 are not contacted with each other and have a certain distance, the directions of the movement of the two adjacent pressing blocks 10 are opposite all the time, namely when one of the pressing blocks moves downwards, the two nearby pressing blocks move upwards, when the other pressing block moves upwards, the two nearby pressing blocks move upwards, one side of the stand 3 is provided with a driving motor 4, the driving motor 4 is in transmission connection with the hammering mechanisms 5, a lower hammer block mechanism 19 is arranged below the conveying table 1, a plurality of contact blocks 9 are arranged below the cross rod 6, a plurality of prismatic tables are uniformly distributed at the bottoms of the contact blocks 9, the hammering effect is improved, the contact blocks 9 are fixedly connected with the cross rod 6 through supporting rods 8, and each contact block 9 is respectively arranged between the two adjacent pressing blocks 10, and a certain gap is arranged between the lower end surface of the contact blocks 9 and the upper end surface of the conveying table 1, the gap is larger than the distance between the maximum pressing height of the pressing blocks 10 and the conveying table 1, the lower hammer block mechanism 19 comprises a lower hammer block 15, one of the two lower hammer blocks 15 in the same lower hammer block mechanism 19 is positioned under the pressing block 10, the other is positioned under the gap between the two pressing blocks 10, the width of the lower hammer block 15 is half of the width of the pressing block 10 and is also half of the width of the gap between the two pressing blocks 10, when one pressing block 10 is pressed down, the two lower hammer blocks 15 on both sides move upwards to perform the extrusion action from bottom to top, the upper end surface of the lower hammer block 15 is arranged in parallel and level with the upper end surface of the conveying table 1, a second sliding rod 1902 is fixedly connected below the central position of the lower hammer block 15, a sleeve 1901 is fixedly connected below the conveying table 1, and the sleeve 1901 is in sliding fit with the second sliding rod 1902, the bottom end of the second sliding rod 1902 is provided with a groove 1903, the front view of the groove 1903 is in a U-shaped structure, two adjacent sleeves 1901 are respectively and fixedly connected with a bracket 1904 at the position vertical to the axis of the groove 1903, and a V-shaped rod 1905 is rotatably connected between the two brackets 1904 through a torsion spring rotating shaft, when the torsion spring rotating shaft is not stressed, the V-shaped rod 1905 is in a horizontal state, namely the upper end surfaces of two upper lower hammer blocks 15 are flush with the conveying table 1, two ends of the V-shaped rod 1905 are respectively and rotatably connected with two lantern rings 1906, and the lantern rings 1906 are respectively attached to the inner wall of the groove 1903, the position of the lantern ring 1906 in the groove 1903 is changed, so as to realize the pushing effect on the second sliding rod 1902, the pressing block 10 moves downwards under the transmission of the first sliding rod 11, when the meat product is hammered, the redundant force acts on the lower hammer block 15 below, at this time, the lower hammer block 15 falls down, pushes the V-shaped rod 1905 below, and one end of the V-shaped rod 1905 slides in the groove 1903, the angle deflection is carried out, when the V-shaped rod 1905 rotates around the torsion spring rotating shaft, the other end of the V-shaped rod 1905 rises upwards, the other end of the V-shaped rod slips in the groove 1903 of the other second slide bar 1902, the second slide bar 1902 has upward extrusion force, at the moment, the lower hammer block 15 moves upwards under the transmission of the second slide bar 1902, the rest part is beaten and kneaded synchronously up and down through the interaction between the lower hammer block 15 and the contact block 9 above the lower hammer block, after the pressing block 10 is removed, the positions of the two second slide bars 1902 are restored under the action of the torsion spring rotating shaft at the vertex position of the V-shaped rod 1905, the next round of hammering is prepared, so that flanging of meat products is not needed, hammering and kneading at the two sides can be completed simultaneously, and the kneading effect is improved.
The working principle is as follows: the driving motor 4 rotates, an output shaft of the driving motor transmits the multiple groups of beating and kneading mechanisms 5 through the middle shaft 502, when a transmission disc 501 in the beating and kneading mechanisms 5 rotates, the pin shaft 503 with the inner side rotates, so that the transmission shaft rotates to be connected with the connecting shaft 504 on the pin shaft 503 to rotate, the connecting shaft 504 further transmits the first slide bar 11 to slide in the sleeve 7, the first slide bar 11 can only vertically slide downwards at the moment through the limitation of the sleeve 7, the transmission press block 10 moves downwards to beat and knead the meat product, the beating and kneading operation is circularly performed through the press blocks 10 to improve the beating and kneading effect, when the driving motor 4 rotates, the first bevel gear 16 sleeved on the output shaft rotates to be meshed with the transmission second bevel gear 17, the gear disc 18 is transmitted through the action of the rotating rod 12 at the axial position of the second bevel gear 17, so that the gear disc 18 is communicated with the two rotating discs 13 which are coaxially arranged to rotate, when the two rotary tables 13 rotate, the transmission rod 14 rotates on the outer wall thereof, and due to the horizontal spacing between the sliding plates 2 and the conveying table 1, under the action of the transmission rod 14, the two sliding plates 2 synchronously move left and right on the conveying table 1, so that meat products placed on the sliding plates are moved, and in cooperation with the downward pressing of the upper pressing block 10, different positions of meat blocks are beaten and kneaded, and the beating and kneading effect is further improved, the pressing block 10 moves downward under the transmission of the first sliding rod 11, when the meat products are hammered, an excessive force acts on the lower hammering block 15, at the moment, the lower hammering block 15 falls down to push the lower V-shaped rod 1905, one end of the V-shaped rod 1905 slides in the groove 1903 to deflect angularly, when the V-shaped rod 1905 rotates around the torsion spring rotating shaft, the other end rises upward, the other end slides in the groove 1903 of the other second sliding rod 1902, and has an upward pushing force on the second sliding rod 1902, at the moment, the lower hammer block 15 moves upwards under the transmission of the second slide bar 1902, the rest part is beaten and kneaded synchronously up and down through the interaction between the lower hammer block 15 and the contact block 9 above, after the pressing block 10 is moved away, the positions of the two second slide bars 1902 are restored through the action of the torsion spring rotating shaft at the vertex position of the V-shaped rod 1905 to prepare for the hammering of the next round, so that the flanging of the meat product is not needed, the simultaneous beating and kneading of two sides can be completed, and the hammering and kneading effect is improved.
The above description is only for the preferred embodiment of the present invention, but the scope of the present invention is not limited thereto, and any person skilled in the art should be considered to be within the technical scope of the present invention, and the technical solutions and the inventive concepts thereof according to the present invention should be equivalent or changed within the scope of the present invention.