CN111587907A - Block making device based on cold-dispelling and warm-tonifying food and using method - Google Patents

Block making device based on cold-dispelling and warm-tonifying food and using method Download PDF

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Publication number
CN111587907A
CN111587907A CN202010494561.7A CN202010494561A CN111587907A CN 111587907 A CN111587907 A CN 111587907A CN 202010494561 A CN202010494561 A CN 202010494561A CN 111587907 A CN111587907 A CN 111587907A
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plate
walking
gear
sleeved
box
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CN202010494561.7A
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Chinese (zh)
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李代全
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Individual
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    • AHUMAN NECESSITIES
    • A22BUTCHERING; MEAT TREATMENT; PROCESSING POULTRY OR FISH
    • A22CPROCESSING MEAT, POULTRY, OR FISH
    • A22C17/00Other devices for processing meat or bones
    • A22C17/0006Cutting or shaping meat
    • A22C17/002Producing portions of meat with predetermined characteristics, e.g. weight or particular dimensions
    • AHUMAN NECESSITIES
    • A22BUTCHERING; MEAT TREATMENT; PROCESSING POULTRY OR FISH
    • A22CPROCESSING MEAT, POULTRY, OR FISH
    • A22C17/00Other devices for processing meat or bones
    • A22C17/0006Cutting or shaping meat

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  • Engineering & Computer Science (AREA)
  • Wood Science & Technology (AREA)
  • Zoology (AREA)
  • Food Science & Technology (AREA)
  • Food-Manufacturing Devices (AREA)
  • Crushing And Pulverization Processes (AREA)

Abstract

The invention discloses a block making device based on cold-dispelling warm-tonifying foods and a using method thereof, and relates to the field of food processing. This system piece ware based on warm benefit food of dispelling cold, including base and the box of welding at the base top, the welding has two parallel plates around the top of base, and the dead slot has all been opened to the inside of two parallel plates, is connected with the promotion roof through branch elevating gear on two parallel plates to the top that just corresponds two parallel plates in the bottom that promotes the roof all is connected with two sets of axle beds and two axles, and the both ends of every axle cup joint together with a set of axle bed respectively, has inserted in the front of box and has born the weight of the equipment, bears the weight of the equipment and links together with the system piece groove that the box top was seted up, is provided with walking stripping and slicing device in the system piece inslot. This can cut the meat of extruding from extruding the mouth, the speed of cutting is fast, is applicable to in present big gear barbecue to can increase the speed that big gear barbecue store personnel worn the cluster, improve the efficiency of wearing the cluster.

Description

Block making device based on cold-dispelling and warm-tonifying food and using method
The application is a divisional application of a block making device based on cold-dispelling and warm-tonifying foods, wherein the application date is 2018, 06, 28 and the application number is CN 201810684598.9.
Technical Field
The invention relates to the technical field of a block making device for cold-dispelling and warm-tonifying foods, in particular to a block making device based on cold-dispelling and warm-tonifying foods and a using method of the block making device.
Background
The cold-dispelling warm-tonifying food can play a role in nourishing the body of people, such as: invigorating spleen and replenishing qi, warming stomach, caring skin, nourishing liver and blood, warming yang, invigorating spleen, etc. Therefore, the food has obvious curative effect and good nourishing function, and is popular with people.
The mutton shashlik is one of meat which is most popular among foods with the functions of dispelling cold and warming tonics, the mutton shashlik can be eaten by people in summer, the mutton shashlik is simple to make, the mutton is cut into blocks during making, and then the mutton is strung up through bamboo sticks and then is roasted, the mutton shashlik can be eaten, the mutton shashlik reserve in a roasting shop is large, in order to accelerate the cutting speed and save time, a boxed and diced magic patent No. 201710615992.2 appears in the market, meat or vegetables and the like are put into a box body, the box body is covered with an upper cover, and the skewers penetrating through the upper cover are inserted into a roasting skewer penetrating machine and penetrate through raw materials; then make the cutter insert and cut raw and other materials by inserting the incision, take off the upper cover after cutting, take out the barbecue string that the cluster is good, consequently can be applicable to family and gather a meal or small-size barbecue stand and use, although the effect that this patent reaches can be more convenient when the family gathers a party, and the speed of threading a string is fast, but is not applicable to big gear, though there is large-scale meat machine of threading, this meat machine of threading a string is applicable to large-scale processing factory, the cost is too high can not adopt in big gear, lead to present big gear barbecue shop still the condition of manual stripping and slicing, influenced the speed of threading a string, reduced the efficiency of threading a string.
Disclosure of Invention
Based on the technical problems in the background art, the invention provides a block making device based on cold-dispelling warm-tonifying food, which solves the problems that the speed of stringing is influenced and the efficiency of stringing is reduced under the condition that the conventional large-gear barbecue is still manually cut.
The invention provides the following technical scheme: the utility model provides a system piece ware based on warm tonifying food of fending off cold, includes the base and welds the box at base top, the welding has two parallel plates around the top of base, and the dead slot has all been opened to the inside of two parallel plates, is connected with the promotion roof through branch elevating gear on two parallel plates to all be connected with two sets of axle beds and two axles in the top that promotes the bottom of roof and correspond two parallel plates, the both ends of every axle cup joint together with a set of axle bed respectively.
The front surface of the box body is inserted with a bearing device, the bearing device is connected with a block making groove arranged at the top of the box body, and a walking and block cutting device is arranged in the block making groove.
Further, branch elevating gear is including setting up the bracing piece on two parallel boards respectively, and the quantity of bracing piece is two on every parallel board, makes the top cover of two bracing pieces epaxial, and the bottom of two bracing pieces passes the spread groove that the parallel board top was seted up and cup joints on the axostylus axostyle that the dead slot was inside to be set up, and the both ends of axostylus axostyle have all been cup jointed supporting pulley, and two supporting pulley are located the rolling slot that spout inner wall both sides were seted up respectively.
Further, the inner wall both sides face of box has the fixed plate in the penetration weld between front and back two sets of axle beds, servo motor is installed to the bottom of fixed plate, and cup jointed the gear on servo motor's the rotation axis, left and right sides symmetry at the gear is provided with the arm-tie, the tooth slat is all installed to the inboard of two arm-ties, the gear is located between two tooth slats and with tooth meshing together on the tooth slat board, the both ends of arm-tie are passed on the parallel plate and are linked together with the dead slot notch and cup joint on the axostylus axostyle through connecting two cardboards, and two cardboards are located the position between two supporting pulleys and the bracing piece respectively.
The servo motor who adopts is ordinary two-way motor, and servo motor drives gear revolve's bite force in anticlockwise rotation and can make two tooth rack boards move near one side of arm-tie mutually, and two arm-ties of pulling force pulling of arm-tie inwards translate, and the drive power of translation produces the motive force to the axostylus axostyle, makes the supporting pulley on the axostylus axostyle roll, then the distance of two bracing piece bottoms is close to gradually, can make after the upward thrust that promotes the roof and receive the bracing piece promote the roof and move to the rising.
Further, it includes the bearer frame to bear the equipment, be fixed with out the meat board at the top of bearer frame, and go out the top equidistance of meat board and seted up a plurality of and extrude the mouth, the bottom that goes out the meat board is located per two fixed positions that extrude between the mouth and is provided with the blade fixing base, the bottom fixed mounting of blade fixing base has the blade of perpendicular setting, the inside of bearer frame is provided with the loading board, both ends are located the spacing inslot on the bearer frame inner wall around the loading board, and it has cup jointed spacing slide cartridge to rotate through the slide bar in the recess at both ends around the loading board, the top of loading board is provided with a plurality of and can inserts the intraoral lug of extruding, it inserts V type seat to be provided with the blade between per two lugs, and extrude mouth and.
When the pushing top plate moves upwards to be in contact with the bottom surface of the bearing plate, the pushing top plate is pushed to continue to move upwards, when meat on the lug is in contact with the blade, the upward pushing force of the bearing plate can enable the meat on the lug to be extruded with the blade, so that the meat is cut into blocks, and after the meat is cut into blocks, the meat is pushed out from the extrusion port on the meat outlet plate through the continuous pushing of the lug.
Further, the walking and cutting device comprises a driving box, a bracket is welded on the back of the inner wall of the driving box, a double-opening limiting sleeve is fixedly arranged at the front end of the bracket, a moving column is respectively arranged at the upper and lower cylinders in the double-opening limiting sleeve, the two moving columns are fixed together through a transmission plate, a U-shaped ring is fixedly arranged at the left end surface of the moving column above, a transmission rod is sleeved on the surface of the U-shaped ring, a motor is arranged on the front surface of the inner wall of the driving box, a first rotating plate is welded at the output shaft end of the motor, a second rotating plate is fixedly connected with the back surface of one end of the first rotating plate, which is far away from the output shaft end of the motor, through a connecting rod, a transmission rod is sleeved and in transmission connection with the connecting rod, the rotating rod arranged on the back of the second rotating plate is rotatably connected with the inner wall of the driving box through a bearing A, the end face of the rotating rod is sleeved with the inner ring of the bearing A, and the surface of the rotating rod is sleeved with a trapezoidal gear A.
Right-angle connecting frames are welded on the end surfaces of two sides of the moving column positioned below, the bottom ends of the two right-angle connecting frames are fixedly connected together through a moving plate, the inner through grooves on the two end surfaces of the movable plate are sleeved with contraction rods, one ends of the two contraction rods far away from the movable plate are fixedly welded with the inner wall of the driving box, the top of the movable plate is provided with six limiting shafts A at equal intervals, the locating plate is sleeved on the surface of the limiting shaft A, the movable rotary cutter is fixedly arranged on the positive end face of the locating plate, the movable rotary cutter is connected with the inner bottom wall of the driving box through the sleeved limiting shaft B, the front face of the movable plate is provided with the locating plate located between every two movable rotary cutters, the positive end of the locating plate is connected with the horizontal movement cutter, and the movable rotary cutter and the horizontal movement cutter penetrate through the strip-shaped groove in the driving box and extend to the upper portion of the extrusion port.
The motor is started, a stepping motor is adopted, the rotating speed is set to be the forward revolution step by step, an output shaft on the motor can rotate according to the starting of the motor, a connecting rod can pull a transmission rod to move when a second rotating plate connected with the output shaft and a first rotating plate are rotated to an angle of one hundred eighty degrees along with the connecting rod, so that a moving column can reciprocate in a double-opening limiting sleeve to drive two moving columns to move together through the connection of the transmission plate, the moving plate can be driven to move leftwards through a right-angle connecting frame when the moving column reciprocates, then a horizontal moving cutter also simultaneously moves leftwards, the limiting shaft B limits the position of the movable rotary cutter to enable a cutting edge of an arc-shaped face of the movable rotary cutter and the horizontal moving cutter to generate a crossed moving plate to cut meat blocks, and the cutting edge of the horizontal moving cutter can cut the meat blocks according to the reciprocating piston motion of the moving column And (6) cutting.
Furthermore, the inside of the drive box and the walking rod arranged below the support are sleeved with a trapezoidal gear B meshed with the trapezoidal gear A, and bearings B are sleeved at the positions, penetrating through the drive box, of the two ends of the walking rod.
Furthermore, the box is located the both sides of drive case and has all been seted up the walking chamber, is provided with walking tooth dental lamina on the interior diapire in walking chamber, and the both ends that the walking pole is located walking intracavity portion all weld have with walking tooth dental lamina engaged with walking gear, and be provided with spacing slide bar in the walking chamber, has cup jointed the connecting block on the spacing slide bar, and the connecting block cup joints together with the walking pole.
The rotating rod fixedly connected with the first rotating plate rotates according to the rotation of an output shaft of the motor, the trapezoidal gear A rotates and then drives the trapezoidal gear B meshed with the trapezoidal gear B to rotate positively, at the moment, the walking rod is influenced by the rotating force to drive the walking gear to rotate in the walking cavity, and teeth on the walking gear and teeth on the walking tooth plate form an occlusion force, so that the driving box moves forwards.
The invention provides a block making device based on cold-dispelling warm-tonifying food, which has the following beneficial effects:
1. drive based on servo motor, can make branch elevating gear support and promote the roof and rise, move up for meat on the loading board, make meat can cut into through the blade and rectangular form from top to bottom, and the walking gear drive among the rethread walking stripping and slicing device can make the drive box remove, the cooperation of passing through activity rotary cutter and horizontal migration cutter is used again, can cut the meat of extruding from the extrusion outlet, the speed of cutting is fast, be applicable to among the present big gear barbecue, thereby can increase the speed that big gear barbecue shop personnel worn the cluster, the efficiency of wearing the cluster is improved.
2. The gear is driven by the motor, the two tooth strips can be driven to move inwards when the gear rotates clockwise, the gear is arranged between the two tooth strips, the two tooth strips can be driven to move simultaneously, the moving speed and distance of the two tooth strips are the same, and therefore the supporting rod can be made to ascend stably.
3. Adopt the cardboard, can cut apart the arm-tie with the support pulley, make the arm-tie appear the card phenomenon of stopping with the contact of support pulley in work to set up the bracing piece between two cardboards, the position when making the bracing piece go up and down is injectd, prevents that the slope from influencing the situation that normally rises.
4. Set up slide bar and spacing slide cartridge in the groove on the loading board, can play in the same direction as smooth effect when promoting the roof and promote the loading board, avoided the loading board to appear the card when reciprocating and die to with loading board and bearing frame laminating, can increase the smoothness that the loading board rises.
5. The width of lug is the same with the width of extruding the mouth, and the lug can insert and extrude the mouth in, can make the meat piece all enter into the inside of extruding the mouth when the loading board promotes the lug to shift up like this, and adopt V type seat rather than the fit of catering to again with the blade setting between two lugs, can be more thorough with the meat piece cutting, better of separation, set the V type seat into the V type, can reduce the contact friction of meat and blade through the slope of V type in the cutting, if the V type seat is vertical decurrent, the meat piece can produce the extrusion through the extrusion and the inner wall of blade when the blade cuts the meat piece, can lead to remaining meat in the V type seat.
6. The motor adopting one driving source drives the two walking gears and the moving plate to work simultaneously, so that the manufacturing cost of the device is saved, the motor of the same driving source can play a greater effect, and the device has more significance.
7. Set two same hole about having set to two mouthful of spacing sleeves to set up two and remove the post, make U type ring and right angle link can not influence each other when using, increase the efficiency of its during operation, prevent that U type ring and right angle link setting from appearing the contradiction on same removal post, one of them party can influence the situation of another party's work.
8. Through with the fixed setting of horizontal migration cutter, with activity rotary cutter activity setting again, the horizontal migration cutter can horizontal migration cut the meat piece, then the activity rotary cutter removes going on again like scissors appearance shearing to the horizontal migration cutter removal horizontal cutting according to the removal of movable plate, can carry out more thorough cutting like this, prevents the situation that links together in addition from appearing.
9. The meshing of the trapezoidal gear A and the trapezoidal gear B is adopted, the driving of the motor can be transmitted to the walking gear through the walking rod, so that the walking gear can move through the driving box together with the walking gear, the walking gear is fixedly arranged, and the walking gear generates biting force with the walking gear in rotation, so that the walking can be carried out.
10. Set up spacing slide bar at the inner wall in walking chamber, rethread connecting block rather than the cooperation, can restrict the shift position of walking gear in the walking of drive box, the more steady of walking prevents that the biting force that walking gear and walking tooth dental lamina produced from making walking gear and walking tooth dental lamina separation, causes the situation of unable normal walking.
11. The effect of the inboard edging of the activity rotary cutter with both ends is that the cooperation cuts rather than adjacent horizontal migration cutter, and set the activity rotary cutter of inboard circular form, and the diameter of the cutting edge part of this circular form is greater than the width of activity rotary cutter blade, the horizontal migration cutter that can cooperate its both sides simultaneously like this carries out cutting work, the effect of stripping and slicing is better like this, set the length of activity rotary cutter to be greater than the length of horizontal migration cutter, can increase the scope that the activity rotary cutter cut when the activity is cut.
Drawings
FIG. 1 is a schematic view of the present invention;
FIG. 2 is a cross-sectional view of the present invention;
FIG. 3 is a schematic structural view of the supporting rod lifting device of the present invention;
FIG. 4 is a sectional view of the top view of the supporting rod lifting device of the present invention;
FIG. 5 is a schematic view of a structure of a carrier frame according to the present invention;
FIG. 6 is a cross-sectional view of a top view of the frame of the present invention;
FIG. 7 is a schematic view of the internal structure of the driving box according to the present invention;
FIG. 8 is a front view of the dual port stop collar structure of the present invention;
FIG. 9 is a side view of the dual port stop collar structure of the present invention;
FIG. 10 is an enlarged view of the structure of FIG. 2 at A in accordance with the present invention;
FIG. 11 is an enlarged view of the structure of FIG. 4 at B in accordance with the present invention;
FIG. 12 is an enlarged view of a portion of FIG. 7 according to the present invention.
In the figure: 1 base, 2 box bodies, 3 parallel plates, 4 empty slots, 5 support rod lifting devices, 6 pushing top plates, 7 shaft seats, 8 shafts, 9 bearing equipment, 901 bearing frames, 902 meat outlet plates, 903 extrusion ports, 904 blade fixing seats, 905 blades, 906 bearing plates, 907 slide rods, 908 limiting slide cylinders, 909 lugs, 910V-shaped seats, 10 walking and cutting devices, 101 driving boxes, 102 supports, 103 double-port limiting sleeves, 104 moving columns, 105 driving plates, 106U-shaped rings, 107 driving rods, 108 motors, 109 first rotating plates, 110 connecting rods, 111 second rotating plates, 112 rotating rods, 113 bearing A, 114 trapezoidal gear A, 115 right-angle connecting frames, 116 moving plates, 117 contraction rods, 118 limiting shafts A, 119 position adjusting plates, 120 movable rotary cutters, 121 limiting shafts B, 122 position fixing plates, 123 horizontal moving cutters, 124 walking rods, 125 trapezoidal gear B, 126 bearing B, 11 supporting rods, 12 connecting slots, 13 shaft rods, 14 supporting pulleys, 15 sliding grooves, 16 rolling grooves, 17 fixing plates, 18 servo motors, 19 gears, 20 pulling plates, 21 toothed laths, 22 clamping plates, 23 traveling cavities, 24 traveling toothed laths, 25 traveling gears, 26 limiting sliding rods, 27 connecting blocks, 28 operation boxes, 29 control switches and 30 control circuit boards.
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.
As shown in fig. 1-12, the block making device based on cold-dispelling and warm-supplementing food comprises a base 1 and a box body 2 welded on the top of the base 1, wherein two parallel plates 3 are welded on the front and back of the top of the base 1, empty slots 4 are formed in the two parallel plates 3, the two parallel plates 3 are connected with a push top plate 6 through a support rod lifting device 5, two groups of shaft seats 7 and two shafts 8 are connected to the bottom of the push top plate 6 and above the two parallel plates 3, and two ends of each shaft 8 are respectively sleeved with one group of shaft seats 7;
the front surface of the box body 2 is inserted with a bearing device 9, the bearing device 9 is connected with a block making groove arranged at the top of the box body 2, and a walking and block cutting device 10 is arranged in the block making groove.
Referring to fig. 2-4, the supporting rod lifting device 5 includes two supporting rods 11 respectively disposed on the two parallel plates 3, and the number of the supporting rods 11 on each parallel plate 3 is two, so that the top ends of the two supporting rods 11 are sleeved on the shaft 8, the bottom ends of the two supporting rods 11 penetrate through a connecting groove 12 formed at the top of the parallel plate 3 and are sleeved on a shaft rod 13 disposed inside the hollow groove 4, and both ends of the shaft rod 13 are sleeved with supporting pulleys 14, and the two supporting pulleys 14 are respectively disposed in rolling grooves 16 formed at both sides of the inner wall of the sliding groove 15.
The inner wall both sides face of box 2 has fixed plate 17 between front and back two sets of axle bed 7 through welding, servo motor 18 is installed to the bottom of fixed plate 17, and cup jointed gear 19 on servo motor 18's the rotation axis, the bilateral symmetry of gear 19 is provided with arm-tie 20, tooth rack board 21 is all installed to the inboard of two arm-tie 20, gear 19 is located between two tooth rack boards 21 and is in the same place with the tooth meshing on the tooth rack board 21, the both ends of arm-tie 20 pass on parallel plate 3 with the notch that dead slot 4 links together and cup joint on axostylus axostyle 13 through connecting two cardboard 22, and two cardboard 22 are located respectively on the position between two supporting pulleys 14 and the bracing piece 11.
Referring to fig. 1-5, the carrying apparatus 9 includes a carrying frame 901, a meat outlet plate 902 is fixed on the top of the carrying frame 901, a plurality of extrusion ports 903 are equidistantly formed on the top of the meat outlet plate 902, a blade fixing seat 904 is fixedly disposed at the bottom of the meat outlet plate 902 and between each two extrusion ports 903, a vertically disposed blade 905 is fixedly mounted at the bottom of the blade fixing seat 904, a carrying plate 906 is disposed inside the carrying frame 901, the front end and the rear end of the carrying plate 906 are disposed in a limiting groove on the inner wall of the carrying frame 901, a limiting sliding cylinder 908 is rotatably sleeved in the grooves at the front end and the rear end of the carrying plate 906 through a sliding rod 907, a plurality of bumps 909 capable of being inserted into the extrusion ports 903 are formed on the top of the carrying plate 906, a blade insertion V-shaped seat 910 is disposed between each two bumps 909, and both the extrusion ports 903 and the.
Referring to fig. 7-12, the walking dicing apparatus 10 includes a driving box 101, a bracket 102 welded to the back of the inner wall of the driving box 101, a double-opening limiting sleeve 103 fixed to the front end of the bracket 102, two moving columns 104 respectively disposed at the upper and lower cylinders in the double-opening limiting sleeve 103, two moving columns 104 fixed together by a driving plate 105, a U-shaped ring 106 fixed to the left end face of the upper moving column 104, a driving rod 107 sleeved on the surface of the U-shaped ring 106, a motor 108 installed on the front of the inner wall of the driving box 101, a first rotating plate 109 welded to the output shaft end of the motor 108, a second rotating plate 111 fixedly connected to the back of the first rotating plate 109 far from the output shaft end of the motor 108 by a connecting rod 110, the driving rod 107 sleeved and connected to the connecting rod 110 in a driving manner, a rotating rod 112 disposed on the back of the second rotating plate 111 rotatably connected to the inner wall of the driving, the end surface of the rotating rod 112 is sleeved with the inner ring of the bearing A113, and the surface of the rotating rod 112 is sleeved with the trapezoidal gear A114.
The end faces of two sides of the moving column 104 positioned below are welded with right-angle connecting frames 115, the bottom ends of the two right-angle connecting frames 115 are fixedly connected together through a moving plate 116, shrinkage rods 117 are sleeved in inner through grooves of two end faces of the moving plate 116, one end of each shrinkage rod 117 far away from the moving plate 116 is fixedly welded with the inner wall of the driving box 101, the top of the moving plate 116 is provided with six limiting shafts A118 at equal intervals, the surface of each limiting shaft A118 is sleeved with a positioning plate 119, the positive end face of each positioning plate 119 is fixedly provided with a movable rotary cutter 120, the movable rotary cutters 120 are connected with the inner bottom wall of the driving box 101 through sleeved limiting shafts B121, the front face of the moving plate 116 is provided with a positioning plate 122 positioned between every two movable rotary cutters 120, the positive end of each positioning plate 122 is connected with a horizontal moving cutter 123, the movable rotary cutters 120 and the horizontal moving cutters 123 penetrate through strip-shaped grooves on the driving box 101 and extend to the upper part of, the inside of drive box 101 and the walking pole 124 that is located the below setting of support 102 have cup jointed on the trapezoidal gear B125 with trapezoidal gear A114 meshing, the position that the both ends of walking pole 124 run through drive box 101 has cup jointed bearing B126, walking chamber 23 has all been seted up in the both sides that box 2 is located drive box 101, be provided with walking tooth board 24 on the interior diapire of walking chamber 23, and walking pole 124 is located the inside both ends of walking chamber 23 and has all welded the walking gear 25 with walking tooth board 24 engaged with, and be provided with spacing slide bar 26 in walking chamber 23, connecting block 27 has been cup jointed on the spacing slide bar 26, connecting block 27 cup joints together with walking pole 124.
The control box 28 is fixedly installed on the right side face of the box body 2, the servo motor 18 and the motor 108 are controlled through the control circuit board 30 installed inside the control box 28, the motor 108 and the servo motor 18 are both positive and negative rotation type motors, when the block making device is started to work, the control switch 29 installed on the control box 28 is pressed, the control switch 29 is connected with an external power supply, and the control switch 29 is electrically connected with the control circuit board 30.
When in use, mutton to be chunked is firstly put into the box body 901 from the putting-in opening 31 arranged on the right side surface of the bearing frame 901, then the bearing frame 901 is inserted into the box body 2 from the front surface of the box body 2, then an external power supply is connected with the control switch 29, the connection can be realized through a power line, after the control switch 29 is rotated, the control circuit board 30 respectively sends starting instructions to the servo motor 18 and the motor 108, after the starting, the servo motor 18 drives the gear 19 to rotate when rotating anticlockwise, the biting force can enable the two toothed rack plates 21 to move close to one side of the pulling plate 20, and the pulling force of the pulling plates 20 pulls the two pulling plates 20 to translate inwards, the driving force of the translation generates pushing force on the shaft rod 13, so that the supporting pulleys 14 on the shaft rod 13 roll, then the distance between the bottom ends of the two supporting rods 11 gradually approaches, the push top plate 6 can be moved upward after the push top plate 6 receives the upward pushing force of the support rod 11.
When the top plate 6 is pushed to move upwards to contact with the bottom surface of the bearing plate 906, the top pushing force of the bearing plate 906 can cause the meat on the bump 909 to generate a squeezing effect with the blade when the meat on the bump 909 contacts with the blade, so that the meat is cut into blocks, and after the meat is cut into blocks, the meat is pushed out of the extrusion port on the meat outlet plate 902 by the continuous pushing of the bump 909.
The output shaft of the motor 108 rotates according to the start of the motor 108, when the second rotating plate 111 and the first rotating plate 109 connected with the output shaft rotate to an angle of one hundred eighty degrees with the connecting rod 110, the connecting rod 110 pulls the transmission rod 107 to move, so that the moving column 104 performs reciprocating piston motion in the double-opening limiting sleeve 103, and drives the two moving columns 104 to move together through the connection of the transmission plate 105, when the moving column 104 reciprocates, the moving plate 116 can be driven to move leftwards through the right-angle connecting frame 115 during moving leftwards, then the horizontal moving cutter 123 also simultaneously translates leftwards, at this time, the position of the limiting shaft B121 on the movable rotary cutter 120 is limited, so that the blade edge of the arc-shaped face of the movable rotary cutter 120 intersects with the horizontal moving cutter 123 to cut the meat, and the moving plate 116 can cut the meat according to the reciprocating piston motion of the moving column 104, the rotating rod 112 fixedly connected to the first rotating plate 109 rotates according to the rotation of the output shaft of the motor 108, the trapezoidal gear a114 rotates to drive the trapezoidal gear B114 engaged therewith to rotate forward, at this time, the walking rod 124 is influenced by the rotating force to drive the walking gear 25 to rotate inside the walking cavity, and the teeth on the walking gear 25 and the teeth on the walking toothed plate 24 form an engaging force, so that the driving box 101 moves forward and performs walking cutting in cooperation with the horizontally moving cutter 123 and the movable rotary cutter 120.
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.

Claims (6)

1. The utility model provides a system piece ware based on warm tonifying food of fending off cold, includes base (1) and welding box (2) at base (1) top, its characterized in that: the front and back of the top of the base (1) are welded with two parallel plates (3), empty grooves (4) are formed in the two parallel plates (3), the two parallel plates (3) are connected with a pushing top plate (6) through a supporting rod lifting device (5), two groups of shaft seats (7) and two shafts (8) are connected to the bottom of the pushing top plate (6) and above the two parallel plates (3), and two ends of each shaft (8) are respectively sleeved with one group of shaft seats (7); the front surface of the box body (2) is inserted with a bearing device (9), the bearing device (9) is connected with a block making groove arranged at the top of the box body (2), and a walking and block cutting device (10) is arranged in the block making groove;
the support rod lifting device (5) comprises support rods (11) which are respectively arranged on the two parallel plates (3), the number of the support rods (11) on each parallel plate (3) is two, the top ends of the two support rods (11) are sleeved on the shaft (8), the bottom ends of the two support rods (11) penetrate through connecting grooves (12) formed in the tops of the parallel plates (3) and are sleeved on shaft levers (13) arranged in the empty grooves (4), support pulleys (14) are sleeved at two ends of each shaft lever (13), and the two support pulleys (14) are respectively positioned in rolling grooves (16) formed in two sides of the inner wall of each sliding groove (15);
the utility model discloses a gear box, including box (2), fixed plate (17) pass through the welding between front and back two sets of axle bed (7) on the inner wall both sides face of box (2), servo motor (18) are installed to the bottom of fixed plate (17), and cup jointed gear (19) on servo motor's (18) rotation axis, be provided with arm-tie (20) in the left and right sides symmetry of gear (19), tooth slat (21) are all installed to the inboard of two arm-tie (20), gear (19) are located between two tooth slats (21) and with tooth meshing together on tooth slat (21), the both ends of arm-tie (20) are passed on parallel plate (3) and are linked together with dead slot (4) notch and cup joint on axostylus axostyle (13) through connecting two cardboard (22), and two cardboard (22) are located the position between two supporting pulley (14) and bracing piece (11) respectively.
2. The cold-dispelling warm-tonifying food-based block making device according to claim 1, characterized in that: the bearing device (9) comprises a bearing frame (901), a meat outlet plate (902) is fixed on the top of the bearing frame (901), a plurality of extrusion ports (903) are arranged on the top of the meat outlet plate (902) at equal intervals, a blade fixing seat (904) is fixedly arranged at the bottom of the meat outlet plate (902) and positioned between every two extrusion ports (903), a vertically arranged blade (905) is fixedly arranged at the bottom of the blade fixing seat (904), a bearing plate (906) is arranged inside the bearing frame (901), the front end and the rear end of the bearing plate (906) are positioned in limiting grooves on the inner wall of the bearing frame (901), a limiting sliding barrel (910) is rotatably sleeved in grooves at the front end and the rear end of the bearing plate (906) through a sliding rod (907), a plurality of lugs (909) capable of being inserted into the extrusion ports (903) are arranged on the top of the bearing plate (906), and a V-shaped seat (910) for inserting the blade is arranged between every two lugs (, and the extrusion opening (903) and the bump (909) are both rectangular.
3. The cold-dispelling warm-tonifying food-based block making device according to claim 1, characterized in that: the walking cutting device (10) comprises a driving box (101), a support (102) is welded on the back of the inner wall of the driving box (101), a double-opening limiting sleeve (103) is fixedly arranged at the front end of the support (102), a movable column (104) is respectively arranged at the upper cylinder position and the lower cylinder position in the double-opening limiting sleeve (103), the two movable columns (104) are fixed together through a transmission plate (105), a U-shaped ring (106) is fixedly arranged on the left end face of the upper movable column (104), a transmission rod (107) is sleeved on the surface of the U-shaped ring (106), a motor (108) is installed on the front of the inner wall of the driving box (101), a first rotating plate (109) is welded at the output shaft end of the motor (108), a second rotating plate (111) is fixedly connected on the back of one end, far away from the output shaft of the motor (108), of the first rotating plate (109), through a connecting rod (110), the transmission, a rotating rod (112) arranged on the back surface of the second rotating plate (111) is rotatably connected with the inner wall of the driving box (101) through a bearing A (113), the end surface of the rotating rod (112) is sleeved with the inner ring of the bearing A (113), and the surface of the rotating rod (112) is sleeved with a trapezoidal gear A (114); the end faces of two sides of a moving column (104) positioned below are welded with right-angle connecting frames (115), the bottom ends of the two right-angle connecting frames (115) are fixedly connected together through a moving plate (116), shrinkage rods (117) are sleeved in inner through grooves of two end faces of the moving plate (116), one ends of the two shrinkage rods (117) far away from the moving plate (116) are fixedly welded with the inner wall of a driving box (101), the top of the moving plate (116) is provided with six limiting shafts A (118) at equal intervals, a positioning plate (119) is sleeved on the surface of each limiting shaft A (118), the positive end face of each positioning plate (119) is fixedly provided with a movable rotary cutter (120), each movable rotary cutter (120) is connected with the inner bottom wall of the driving box (101) through a sleeved limiting shaft B (121), the front face of the moving plate (116) is provided with a positioning plate (122) positioned between every two movable rotary cutters (120), the positive end of the position-fixing plate (122) is connected with a horizontal moving cutter (123), and the movable rotary cutter (120) and the horizontal moving cutter (123) penetrate through a strip-shaped groove in the driving box (101) and extend to the upper side of the extrusion opening (903).
4. The cold-dispelling warm-tonifying food-based block making device according to claim 3, characterized in that: a trapezoidal gear B (125) meshed with the trapezoidal gear A (114) is sleeved on a walking rod (124) which is arranged in the driving box (101) and below the support (102), and bearings B (126) are sleeved at the positions, penetrating through the driving box (101), of two ends of the walking rod (124).
5. The cold-dispelling warm-tonifying food-based block making device according to claim 4, characterized in that: the box (2) is located and has all seted up walking chamber (23) in the both sides of drive case (101), is provided with walking tooth dental lamina (24) on the interior diapire in walking chamber (23), and walking pole (124) are located the inside both ends in walking chamber (23) and all weld walking gear (25) with walking tooth dental lamina (24) engaged with, and are provided with spacing slide bar (26) in walking chamber (23), has cup jointed connecting block (27) on spacing slide bar (26), and connecting block (27) cup joint together with walking pole (124).
6. The block making device based on cold-dispelling warm-tonifying food and the using method thereof according to any one of claims 1 to 5, characterized in that: when the mutton cube is used, mutton to be diced is firstly put into the interior of the bearing frame (901) from an inlet (31) formed in the right side surface of the bearing frame (901), then the bearing frame (901) is inserted into the box body (2) from the front surface of the box body (2), then an external power supply is connected with the control switch (29) together, the connection can be connected through a power cord, the control circuit board (30) respectively sends starting instructions to the servo motor (18) and the motor (108) after the control switch (29) is rotated, after the starting, the servo motor (18) drives the gear (19) to rotate when rotating anticlockwise, the biting force enables the two toothed bar plates (21) to move close to one side of the pull plate (20), the two pull plates (20) are pulled to translate by the pulling force of the pull plate (20), the driving force of the translation generates pushing force to the shaft lever (13), and the supporting pulley (14) on the shaft lever (13) rolls, then the distance between the bottom ends of the two support rods (11) is gradually close, and the top pushing plate (6) can be lifted upwards after the top pushing plate (6) is subjected to the upward pushing force of the support rods (11);
when the top plate (6) is pushed to move upwards to be in contact with the bottom surface of the bearing plate (906), the top plate is pushed to move upwards continuously, when meat on the bump (909) is in contact with the blade, the upward pushing force of the bearing plate (906) can enable the meat on the bump (909) to generate an extrusion effect with the blade, so that the meat is divided into blocks, and after the meat is cut into blocks, the meat is pushed out of the extrusion opening on the meat outlet plate (902) through the continuous pushing of the bump (909);
an output shaft on a motor (108) rotates according to the starting of the motor (108), when a second rotating plate (111) and a first rotating plate (109) which are connected with the output shaft drive a connecting rod (110) to rotate to an angle of one hundred eighty degrees, the connecting rod (110) can pull a transmission rod (107) to move, so that a moving column (104) starts to reciprocate in a double-opening limiting sleeve (103), and drives two moving columns (104) to move together through the connection of a transmission plate (105), when the moving column (104) reciprocates the piston, a moving plate (116) can be driven to move leftwards through a right-angle connecting frame (115), and then a horizontal moving cutter (123) also simultaneously translates leftwards, at the moment, a limiting shaft B (121) limits the position of the movable rotary cutter (120), so that a blade of an arc-shaped face of the movable rotary cutter (120) intersects with the horizontal moving cutter (123) to cut meat blocks, the moving plate (116) can enable the cutting edge of the horizontal moving cutter (123) to cut meat blocks according to the reciprocating piston motion of the moving column (104), the rotating rod (112) fixedly connected with the first rotating plate (109) can rotate according to the rotation of an output shaft of the motor (108), the trapezoidal gear A (114) drives the trapezoidal gear B (114) meshed with the trapezoidal gear A to rotate forwards after rotating, at the moment, the walking rod (124) drives the walking gear (25) to rotate in the walking cavity under the influence of the rotating force, and teeth on the walking gear (25) and teeth on the walking tooth plate (24) form a meshing force, so that the driving box (101) moves forwards in a walking mode and is matched with the horizontal moving cutter (123) and the movable rotating cutter (120) to perform walking cutting.
CN202010494561.7A 2018-06-28 2018-06-28 Block making device based on cold-dispelling and warm-tonifying food and using method Withdrawn CN111587907A (en)

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CN111587907A (en) * 2018-06-28 2020-08-28 李代全 Block making device based on cold-dispelling and warm-tonifying food and using method
CN112388707B (en) * 2020-10-28 2022-04-15 福建淳百味餐饮发展有限公司 Dicing device, dicing and auxiliary material adding device and method for processing muddy meat

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CN2141360Y (en) * 1992-04-06 1993-09-01 黄分庆 Adsorption type multipurpose compasses
CN104351306A (en) * 2014-11-27 2015-02-18 倪国权 Fresh meat piece-by-piece cutting platform
CN205415732U (en) * 2016-03-16 2016-08-03 江苏当升材料科技有限公司 Casket -like bowl cutting device for lithium fluoride battery anode material
CN206144356U (en) * 2016-08-30 2017-05-03 荣阳铝业(中国)有限公司 Ventilation door and window's upper and lower promotion structure
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CN108835198A (en) * 2018-06-28 2018-11-20 李代全 A kind of clamp dog device based on cold extermination temperature compensation food

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