CN218073285U - Cut meat module and meat cutting machine - Google Patents

Cut meat module and meat cutting machine Download PDF

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Publication number
CN218073285U
CN218073285U CN202221537651.0U CN202221537651U CN218073285U CN 218073285 U CN218073285 U CN 218073285U CN 202221537651 U CN202221537651 U CN 202221537651U CN 218073285 U CN218073285 U CN 218073285U
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Prior art keywords
rotating shaft
boss
groups
bearing
cutter
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CN202221537651.0U
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Chinese (zh)
Inventor
谭伟华
陈猛
郝浩
戴九松
郑军妹
张旭东
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Ningbo Fotile Kitchen Ware Co Ltd
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Ningbo Fotile Kitchen Ware Co Ltd
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Abstract

The utility model discloses a meat cutting module, which comprises a knife rest (21); the cutter set comprises two groups of cutter sets (22), wherein each group of cutter set (22) comprises a rotating shaft (221) and at least two blades (222) which are arranged at intervals along the axial direction of the rotating shaft (221); and a drive mechanism (24); the method is characterized in that: two ends of the rotating shaft (221) are respectively installed on the tool rest (21) through a first bearing (224) and a second bearing (225), and a fixed cover (214) limited in front of the outer ring of the first bearing (224) is installed on the tool rest (21); the outer peripheral walls of the front part and the rear part of the rotating shaft (221) are respectively provided with a first boss (2211) and a second boss (2212), and the outer periphery of the rear end of the rotating shaft (221) is in threaded connection with a nut (226). The utility model also discloses a meat cutting machine of using this meat cutting module. Compared with the prior art, the utility model discloses a cut meat module loading and unloading convenience and easy to clean.

Description

Cut meat module and meat cutting machine
Technical Field
The utility model relates to a kitchen equipment technical field specifically indicates a cut meat module and meat cutting machine.
Background
The existing meat cutting machine adopts the cutting edge region principle of similar scissors to realize the cutting processing of meat, two cutter bars are arranged in a frame of the meat cutting machine, the two cutter bars rotate relatively, blades of the two cutter bars are mutually staggered to form a cutting edge region, a plurality of blades arranged on the same cutter bar in parallel can realize the batch cutting processing of meat products, and the cutting efficiency is very high. Specifically, refer to the chinese utility model patent "a meat slicer" with patent application No. CN201921681481.1 (publication No. CN 210610851U).
However, in the existing meat cutting machine, fastening nuts are generally installed at the head positions of the respective cutter sets, and four fastening nuts are needed, on one hand, the positions of the four nuts need to be continuously and finely adjusted during installation, an operator is in danger of being injured when being close to the blades, and if the requirements such as disassembly and maintenance are needed, the four nuts need to be loosened, so that the meat cutting machine is complex; on the other hand, the fastening nut is positioned inside the tool rest, so that the meat hanging winding is easy to generate, and the adverse effect of difficult cleaning is avoided.
SUMMERY OF THE UTILITY MODEL
The utility model aims to solve the first technical problem to provide a convenient cut meat module of loading and unloading to prior art's current situation.
The utility model aims to solve the second technical problem that a cut meat module of easy to clean is provided.
The utility model aims to solve the third technical problem that a meat cutting machine that has above-mentioned meat cutting module is provided to the application.
The utility model provides a technical scheme that above-mentioned first and second technical problem adopted is: a meat cutting module, which comprises
A tool holder;
the cutter comprises two groups of cutter sets, wherein each group of cutter set comprises a rotating shaft and at least two blades which are arranged at intervals along the axis of the rotating shaft, the rotating shafts of the two groups of cutter sets are arranged side by side, the end part of each rotating shaft is arranged on the cutter frame in a manner of rotating around the axis of the rotating shaft, a gap is formed between every two adjacent blades of the same cutter set, the blades of the two groups of cutter sets are arranged in a staggered manner, and the corresponding blades in the two groups of cutter sets are mutually clung; and
the driving mechanism is used for driving the rotating shafts of the two groups of cutter sets to rotate around opposite directions so as to enable the corresponding blades in the two groups of cutter sets to rotate relatively and mutually cooperate to cut meat blocks;
the method is characterized in that: the front end and the rear end of the rotating shaft are respectively arranged on the front side wall and the rear side wall of the tool rest through a first bearing and a second bearing, and a fixing cover limited in front of an outer ring of the first bearing is arranged on the front side wall of the tool rest;
the outer peripheral wall of the front and rear part of the rotating shaft is respectively provided with a first boss and a second boss, the first boss is limited behind the first bearing inner ring, and the second boss is limited in front of the second bearing inner ring;
and a nut is connected to the periphery of the rear end of the rotating shaft in a threaded manner and is limited behind the inner ring of the second bearing.
In order to facilitate the assembly, disassembly and replacement of the blade, the first boss is fixed relative to the rotating shaft, and the second boss is arranged on the rotating shaft in a manner of being capable of moving relative to the rotating shaft along the axial direction;
the cutter group also comprises limiting blocks which are in one-to-one correspondence with the gaps, the limiting blocks are limited between the two adjacent blades, and all the blades and the limiting blocks are arranged on the rotating shaft in a mode of moving relative to the rotating shaft along the axial direction and are clamped between the first lug boss and the second lug boss.
In order to facilitate the processing of the first boss, the outer peripheral wall of the front part of the rotating shaft is convexly provided with the first boss.
In order to facilitate the stable installation of the second boss, the second boss is annular and is sleeved on the rotating shaft.
In order to facilitate the stable installation of the limiting block, the limiting block is annular and is sleeved on the rotating shaft.
In order to drive the rotating shafts of the two groups of knife sets to rotate around opposite directions, the driving mechanism comprises
Two gears which are meshed with each other are in one-to-one correspondence with the rotating shafts, and each gear is coaxially arranged at the end part of the corresponding rotating shaft; and
and the driving piece is in transmission connection with one of the gears and is used for driving the gear to rotate around the axis of the driving piece.
In order to facilitate the installation of the gear, the gear is annular, is sleeved on the rotating shaft and is clamped between the nut and the inner ring of the second bearing.
In order to avoid the contact of a user with the blades and facilitate feeding, the top of the tool rest is covered with a feeding cover, the top of the feeding cover is provided with a feeding port, and the feeding port is over against the intersection position of the blades in the two groups of cutter sets.
In order to facilitate the feeding of the meat blocks and the discharging of the meat slices, an accommodating cavity is formed inside the knife rest, a feeding port and a discharging port are respectively formed in the top and the bottom of the knife rest, the two groups of knife sets are accommodated in the accommodating cavity, the feeding port is over against the feeding port, and the discharging port is over against the intersecting position of the blades in the two groups of knife sets.
The utility model provides a technical scheme that above-mentioned third technical problem adopted does: a meat cutting machine, its characterized in that: the meat cutting module is applied.
Compared with the prior art, the utility model has the advantages of: the front end and the rear end of the rotating shaft are respectively arranged on the front side wall and the rear side wall of the tool rest through a first bearing and a second bearing, a first boss and a second boss are respectively arranged on the peripheral walls of the front part and the rear part of the rotating shaft, a fixing cover is arranged on the front side wall of the tool rest, a nut is connected at the rear end of the rotating shaft, the fixing cover is limited in front of the outer ring of the first bearing, the first boss is limited behind the inner ring of the first bearing, the second boss is limited in front of the inner ring of the second bearing, and the nut is limited behind the inner ring of the second bearing.
Drawings
Fig. 1 is a schematic perspective view of a meat cutting module in embodiment 1 of the meat cutting machine of the present invention;
FIG. 2 is an exploded perspective view of FIG. 1;
FIG. 3 is a longitudinal cross-sectional view of FIG. 1;
FIG. 4 is a transverse cross-sectional view of FIG. 1;
fig. 5 is a transverse sectional view of a meat cutting module in embodiment 2 of the meat cutting machine of the present invention.
Detailed Description
The present invention will be described in further detail with reference to the following embodiments.
Example 1:
as shown in fig. 1 to 4, which is a first preferred embodiment of the meat cutter of the present invention. The meat cutting machine comprises a housing (not shown in the figures) and a meat cutting module 2 arranged inside the housing.
Wherein the housing generally functions as a shield for the meat cutting module 2.
The meat cutting module 2 is arranged in the base 11, and the meat cutting module 2 comprises a knife rest 21, a knife group 22, comb teeth 23 and a driving mechanism 24.
The inside of the tool holder 21 is formed with an accommodating cavity 211, the top of the tool holder 21 is provided with an opening as a feeding port 212, the middle position of the bottom of the tool holder 21 is provided with a long strip-shaped discharging port 213 extending along the front-back direction, the top of the tool holder 21 is covered with a feeding cover 215, the top of the feeding cover 215 is provided with a feeding port 2151, and the feeding port 212 is opposite to the feeding port 2151.
The number of the knife sets 22 is two, and the knife sets 22 are respectively accommodated at the left and right sides of the accommodating cavity 211, and each knife set 22 includes a rotating shaft 221, a blade 222 and a limiting block 223.
The rotating shafts 221 of the two groups of cutter sets 22 are arranged side by side and extend along the front-back direction, and the front end and the back end of each rotating shaft 221 are respectively installed on the front side wall and the back side wall of the cutter frame 21 through a first bearing 224 and a second bearing 225; in this embodiment, the front sidewall of the tool holder 21 is mounted with the fixing cover 214 corresponding to the first bearing 224 one by one, the fixing cover 214 is limited in front of the outer ring of the corresponding first bearing 224, and the front sidewall of the outer ring of the first bearing 224 abuts against the back surface of the fixing cover 214; a first boss 2211 is arranged on the outer circumferential wall of the front part of the rotating shaft 221 in an outward protruding mode, the first boss 2211 is limited behind the inner ring of the first bearing 224, and the front side wall of the first boss 2211 abuts against the rear side wall of the inner ring of the first bearing 224; a second boss 2212 is mounted on the outer peripheral wall of the rear portion of the rotating shaft 221, the second boss 2212 is annular, can be movably sleeved on the outer periphery of the rotating shaft 221 in a front-back manner, and is limited in front of the inner ring of the second bearing 225, and the front side wall of the inner ring of the second bearing 225 abuts against the rear side wall of the second boss 2212; a nut 226 is screwed to the outer circumference of the rear end of the rotating shaft 221, and the nut 226 is limited behind the inner ring of the second bearing 225.
The number of the blades 222 is at least two, and the blades are arranged along the axial direction of the rotating shaft 221 at intervals, the plane where each blade 222 is located is perpendicular to the axis of the rotating shaft 221, and can be movably sleeved on the periphery of the rotating shaft 221 back and forth, a gap 2220 is formed between two adjacent blades 222 of the same cutter set 22, the blades 222 of the two cutter sets 22 are arranged in a staggered manner, the corresponding blades 222 in the two cutter sets 22 are tightly attached to each other, and the feeding port 2151 and the discharging port 213 are both opposite to the intersecting position of the blades 222 in the two cutter sets 22.
The limiting blocks 223 are annular, can be movably sleeved on the periphery of the rotating shaft 221 in a front-back manner, and correspond to the gaps 2220 one by one, and each limiting block 223 is located in the corresponding gap 2220 and abuts against the opposite surface of the adjacent blade 222 so as to limit the width of the gap 2220 between the two adjacent blades 222. All the blades 222 and the stoppers 223 of the same blade group 22 are sandwiched between the rear side wall of the first boss 2211 and the front side wall of the second boss 2212.
The number of the comb teeth 23 is two, the comb teeth 23 correspond to the knife sets 22 one by one, each group of comb teeth 23 comprises racks 231 corresponding to the gaps 2220 one by one, each rack 231 is located in the corresponding gap 2220 and is close to the opposite surface of the adjacent blade 222, due to the stopping function of the racks 231, the cut meat slices can be separated from the blades 222 in time and discharged, and the meat scraps can be blocked by the racks 231 to avoid being rolled onto the rotating shaft 221.
The driving mechanism 24 is mounted on the rear side of the tool post 21 and includes a gear 241 and a driving member (not shown). The number of the gears 241 is two, the two gears 241 are in one-to-one correspondence with the rotating shafts 221, each gear 241 is coaxially installed at the rear end of the corresponding rotating shaft 221, and the two gears 241 are meshed with each other; the driving member is in transmission connection with one of the gears 241, and is used for driving the gear 241 to rotate around the axis thereof. The driving member is started, and the two rotating shafts 221 are driven by the two gears 241 to rotate in opposite directions (the rotating shaft 221 on the right side rotates counterclockwise, and the rotating shaft 221 on the left side rotates clockwise), so that the corresponding blades 222 in the two sets of knife sets 22 rotate relatively and cooperate with each other to cut the meat. In this embodiment, the gear 241 is annular, is sleeved on the outer circumference of the rotating shaft 221, and is clamped between the front sidewall of the nut 226 and the rear sidewall of the inner ring of the second bearing 225, so as to realize relative fixation with the corresponding rotating shaft 221.
The working principle of the embodiment is as follows:
(1) During installation, the blade 222 and the limiting block 223 are sleeved on the rotating shaft 221, then the second boss 2212 is sleeved on the rotating shaft 221 so that all the blades and the limiting block 223 are positioned between the first boss 2211 and the second boss 2212, then the two ends of the rotating shaft 221 are installed on the knife rest 21 through the first bearing 224 and the second bearing 225, then the fixing cover 214 is installed on the front side of the knife rest 21, then the gear 241 is sleeved in from the rear end of the rotating shaft 211, finally the nut 226 is screwed on the rear end of the rotating shaft 211, in the screwing process, the nut 226 can transmit fastening pressure to the fixing cover 214 through the gear 241, the second bearing 225, the second boss 2212, the blade 222, the limiting block 223 and the first bearing 224 in sequence, so that the fastening of the two groups of knife groups 22 can be realized only by 2 nuts 226, and the nut 226 is positioned on the outer side of the knife rest 21, the shape of the whole meat cutting module 2 is free of dead corners and easy to clean, and if each component needs to be disassembled and cleaned completely, or a fault or a single component is damaged, and the like can be disassembled conveniently by unscrewing the nut 226;
(2) When meat is cut, the meat blocks can be fed into the feeding port 2151, the meat blocks fall under the action of gravity, the relatively rotating blades 222 are matched with each other and cut into meat slices, the meat slices in the gap 2220 are gradually separated from the blades 222 under the stopping action of the comb teeth 23 and are output through the discharging port 213, and the cut meat slices can be obtained.
Example 2:
fig. 5 shows a second preferred embodiment of the meat slicer of the present invention. The difference from example 1 is that:
in this embodiment, the nut 226 directly abuts against the rear side wall of the inner ring of the second bearing 225, and this way can also achieve simple assembly and disassembly of the knife tackle 22, but the gear 241 needs to be installed by using an additional fastener, and the installation is troublesome.

Claims (10)

1. A meat cutting module, which comprises
A tool holder (21);
the cutter comprises two groups of cutter groups (22), wherein each group of cutter group (22) comprises a rotating shaft (221) and at least two blades (222) which are arranged at intervals along the axis of the rotating shaft (221), the rotating shafts (221) of the two groups of cutter groups (22) are arranged side by side, the end part of each rotating shaft (221) is arranged on the cutter frame (21) in a manner of rotating around the axis of the rotating shaft, a gap (2220) is formed between two adjacent blades (222) of the same cutter group (22), the blades (222) of the two groups of cutter groups (22) are arranged in a staggered manner, and the corresponding blades (222) in the two groups of cutter groups (22) are tightly attached to each other; and
the driving mechanism (24) is used for driving the rotating shafts (221) of the two groups of cutter sets (22) to rotate around opposite directions so as to enable the corresponding blades (222) in the two groups of cutter sets (22) to rotate relatively and mutually cooperate to cut meat blocks;
the method is characterized in that: the front end and the rear end of the rotating shaft (221) are respectively installed on the front side wall and the rear side wall of the tool rest (21) through a first bearing (224) and a second bearing (225), and a fixing cover (214) limited in front of the outer ring of the first bearing (224) is installed on the front side wall of the tool rest (21);
the outer peripheral walls of the front part and the rear part of the rotating shaft (221) are respectively provided with a first boss (2211) and a second boss (2212), the first boss (2211) is limited behind the inner ring of the first bearing (224), and the second boss (2212) is limited in front of the inner ring of the second bearing (225);
the outer periphery of the rear end of the rotating shaft (221) is in threaded connection with a nut (226), and the nut (226) is limited behind the inner ring of the second bearing (225).
2. Meat cutting module according to claim 1, characterized in that: the first boss (2211) is fixed relative to the rotating shaft (221), and the second boss (2212) is mounted on the rotating shaft (221) in a manner of moving relative to the rotating shaft (221) along the axial direction;
the knife group (22) further comprises limiting blocks (223) which correspond to the gaps (2220) one by one, the limiting blocks (223) are limited between the two adjacent blades (222), and all the blades (222) and the limiting blocks (223) are arranged on the rotating shaft (221) in a manner of moving axially relative to the rotating shaft (221) and clamped between the first boss (2211) and the second boss (2212).
3. Meat cutting module according to claim 2, characterized in that: the outer peripheral wall of the front part of the rotating shaft (221) is provided with the first boss (2211) in an outward protruding mode.
4. Meat cutting module according to claim 2, characterized in that: the second boss (2212) is annular and is sleeved on the rotating shaft (221).
5. Meat cutting module according to claim 2, characterized in that: the limiting block (223) is annular and is sleeved on the rotating shaft (221).
6. A meat cutting module according to any one of claims 1 to 5 wherein: the driving mechanism (24) comprises
Two gears (241) which are meshed with each other are in one-to-one correspondence with the rotating shafts (221), and each gear (241) is coaxially arranged at the end part of the corresponding rotating shaft (221); and
and the driving piece is in transmission connection with one of the gears (241) and is used for driving the gear (241) to rotate around the axis of the driving piece.
7. Meat cutting module according to claim 6, characterized in that: the gear (241) is annular, is sleeved on the rotating shaft (221) and is clamped between the nut (226) and the inner ring of the second bearing (225).
8. A meat cutting module according to any one of claims 1 to 5 wherein: the top of the knife rest (21) is covered with a feeding cover (215), the top of the feeding cover (215) is provided with a feeding port (2151), and the feeding port (2151) is over against the intersection position of the blades (222) in the two groups of knives (22).
9. Meat cutting module according to claim 8, characterized in that: an accommodating cavity (211) is formed in the tool rest (21), a feed inlet (212) and a discharge outlet (213) are formed in the top and the bottom of the tool rest (21) respectively, the two groups of tool sets (22) are accommodated in the accommodating cavity (211), the feed inlet (212) is over against the feed inlet (2151), and the discharge outlet (213) is over against the intersecting position of the blades (222) in the two groups of tool sets (22).
10. A meat cutting machine, its characterized in that: use of a meat cutting module according to any one of claims 1 to 9.
CN202221537651.0U 2022-06-17 2022-06-17 Cut meat module and meat cutting machine Active CN218073285U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202221537651.0U CN218073285U (en) 2022-06-17 2022-06-17 Cut meat module and meat cutting machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202221537651.0U CN218073285U (en) 2022-06-17 2022-06-17 Cut meat module and meat cutting machine

Publications (1)

Publication Number Publication Date
CN218073285U true CN218073285U (en) 2022-12-20

Family

ID=84476994

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202221537651.0U Active CN218073285U (en) 2022-06-17 2022-06-17 Cut meat module and meat cutting machine

Country Status (1)

Country Link
CN (1) CN218073285U (en)

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