CN209768951U - Food top blowing device - Google Patents

Food top blowing device Download PDF

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Publication number
CN209768951U
CN209768951U CN201920537670.5U CN201920537670U CN209768951U CN 209768951 U CN209768951 U CN 209768951U CN 201920537670 U CN201920537670 U CN 201920537670U CN 209768951 U CN209768951 U CN 209768951U
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China
Prior art keywords
push rod
hole
hopper
rotating disc
food
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CN201920537670.5U
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Chinese (zh)
Inventor
李进强
司军伟
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Kang He Machinery And Equipment Co Ltd Chengdu
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Kang He Machinery And Equipment Co Ltd Chengdu
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  • Seeds, Soups, And Other Foods (AREA)

Abstract

the utility model relates to the technical field of food processing equipment, and provides a food top discharging device, which comprises an installation seat, a rotating disc rotationally installed on the installation seat, and a hopper arranged above the rotating disc and connected with the installation seat; a push rod which moves up and down is arranged above the rotating disc and positioned at the outer side of the hopper; a cloth through hole for the push rod to pass through is formed in the position, corresponding to the push rod, on the rotating disc; in the rotating process of the rotating disc, the material distribution through hole can circularly move inside and outside the hopper; the cloth opening and closing mechanism is used for closing the bottom of the cloth through hole and providing opening power through the push rod to open the bottom of the cloth through hole. The utility model discloses a food top blowing device improves to mechanical blowing from manual blowing, has not only solved manual operation's sanitary problem, has guaranteed the uniformity of food outward appearance behind the blowing moreover, has improved the appearance quality of food.

Description

food top blowing device
Technical Field
the utility model relates to a food processing equipment technical field, in particular to food top blowing device.
Background
In order to improve the appearance and taste of traditional foods such as steamed stuffed buns, steamed dumplings, steamed twisted rolls and the like, green beans, shelled shrimps, Chinese dates, peanuts and the like need to be added to the tops of the foods when some special products are manufactured, for example, green beans are placed on the tops of the steamed buns, red Chinese dates are placed on the tops of the steamed twisted rolls and the like, so that the appearance of the foods is improved, and the taste of the foods is improved.
In the traditional process, machine-made steamed stuffed buns, steamed wheats, steamed twisted rolls and the like are common technologies, but the material placing process is manually operated, so that the sanitation problem is caused, and the requirements of automatic production are difficult to meet on the manufacturing cost and the manufacturing efficiency. And because the manual techniques and proficiency are different, the food discharged has uneven appearance and poor quality.
SUMMERY OF THE UTILITY MODEL
The utility model discloses the technical problem that will solve is: the food top emptying device can improve the appearance quality of products.
The utility model provides a technical scheme that its technical problem adopted is: the food top discharging device comprises a mounting seat, a rotating disc and a hopper, wherein the rotating disc is rotatably mounted on the mounting seat; a push rod which moves up and down is arranged above the rotating disc and outside the hopper; a cloth through hole for the push rod to pass through is formed in the position, corresponding to the push rod, on the rotating disc; in the rotating process of the rotating disc, the material distribution through hole can circularly move inside and outside the hopper; the cloth opening and closing mechanism is used for closing the bottom of the cloth through hole and providing opening power through the push rod to open the bottom of the cloth through hole.
Further, the opening and closing mechanism comprises a first rubber arranged on the lower surface of the rotating disc; and a first slit is arranged at the position, corresponding to the cloth through hole, of the first rubber sheet.
Furthermore, the opening and closing mechanism comprises a fixed disc which is arranged below the rotating disc and connected with the mounting seat; a discharge through hole for the push rod to pass through is formed in the position, corresponding to the push rod, of the fixed disc; the lower surface of the fixed disc is provided with a second rubber sheet; and a second slot is arranged on the second rubber sheet at a position corresponding to the discharge through hole.
Further, the mounting seat comprises a mounting sleeve, and the lower end of the mounting sleeve is provided with a first flange which extends outwards in the radial direction; a first rotating shaft is rotatably mounted in the mounting sleeve, and the upper end of the first rotating shaft is connected with the rotating disc.
Furthermore, one side of the hopper is rotatably connected with the mounting seat through a second rotating shaft; the other side of the hopper is detachably connected with the mounting seat through a locking fastener.
Furthermore, the device also comprises a first driving mechanism for driving the rotating disc to rotate.
Furthermore, the device also comprises a second driving mechanism for driving the push rod to move up and down.
Furthermore, a material stirring device is arranged in the hopper.
Furthermore, the material stirring device comprises a stirring rod and a third driving mechanism for driving the stirring rod to horizontally move in the hopper.
Furthermore, the lower end of the push rod is provided with a groove.
The utility model has the advantages that: the utility model discloses a food top blowing device improves to mechanical blowing from manual blowing, has not only solved manual operation's sanitary problem, has guaranteed the uniformity of food outward appearance behind the blowing moreover, has improved the appearance quality of food. After the food top discharging device is arranged on the discharging station of the existing food forming equipment, the automatic production of the discharging process is realized, and the production efficiency of food is greatly improved.
Drawings
Fig. 1 is a front view of a first embodiment of the present invention;
FIG. 2 is a cross-sectional view A-A of FIG. 1;
FIG. 3 is a cross-sectional view B-B of FIG. 1;
Fig. 4 is a front view of a second embodiment of the present invention;
FIG. 5 is a cross-sectional view C-C of FIG. 4;
FIG. 6 is a cross-sectional view taken along line D-D of FIG. 4;
Fig. 7 is a top view of the installation position of the middle hopper and the rotary disk of the present invention.
The reference numbers in the figures are: 20-forming mechanism, 101-hopper, 102-rotary disc, 103-mounting seat, 104-cloth through hole, 105-push rod, 106-first rubber, 107-fixed disc, 108-discharge through hole, 109-second rubber, 110-first driving mechanism, 111-second driving mechanism, 112-deflector rod, 113-third driving mechanism, 114-second rotating shaft, 115-locking piece, 116-groove, 117-first rotating shaft, 1031-first flange, 1032-mounting sleeve.
Detailed Description
The invention will be further described with reference to the following figures and examples:
The utility model discloses a food top discharging device, which comprises an installation seat 103, a rotating disc 102 rotatably installed on the installation seat 103, and a hopper 101 arranged above the rotating disc 102 and connected with the installation seat 103; a push rod 105 which moves up and down is arranged above the rotating disc 102 and outside the hopper 101; a cloth through hole 104 for the push rod 105 to pass through is arranged on the rotary disc 102 at a position corresponding to the push rod 105; in the rotating process of the rotating disc 102, the material distribution through hole 104 can circularly move inside and outside the hopper 101; the cloth opening and closing mechanism is used for closing the bottom of the cloth through hole 104 and providing opening power through the push rod 105 to open the bottom of the cloth through hole 104.
As shown in fig. 1 and 4, the mounting seat 103 is used for supporting, and the rotating disc 102 is rotatably mounted on the mounting seat 103; the hopper 101 is of an upper and lower opening structure surrounded by a circle of side walls, and the hopper 101 is arranged above the rotating disc 102 and connected with the mounting seat 103. A gap is formed between the lower end of the hopper 101 and the upper surface of the rotating disc 102, so that the hopper 101 is not in contact with the rotating disc 102, and the rotating disc 102 is prevented from rubbing against the hopper 101 in the rotating process, the gap can be set according to the size of the granular materials stored in the hopper 101, and after the granular materials are placed in the hopper 101, the materials cannot leak out from the gap.
As shown in fig. 7, the upper space of the rotating disk 102 is divided into a material distribution area a located inside the side wall and a material discharge area B located outside the side wall by a circle of side wall of the hopper 101. A push rod 105 capable of moving up and down is arranged in a discharge area B above the rotating disc 102 and outside the hopper 101, and a cloth through hole 104 for the push rod 105 to pass through is arranged on the rotating disc 102. When the rotating disc 102 rotates, the material distribution through hole 104 can move circularly between the material distribution area a and the material discharge area B.
The opening and closing mechanism has the following functions: firstly, sealing the bottom of the material distribution through hole 104 to prevent the material from falling from the bottom of the material distribution through hole 104; secondly, when the cloth through hole 104 rotates to a position corresponding to the push rod 105 following the rotary disc 102, the push rod 105 moves downward and provides an opening power to open the bottom of the cloth through hole 104, and then the material is pushed into the top of the food by the push rod 105, and the depth to which the material is pushed into the top of the food can be determined by the distance that the push rod 105 moves downward.
The number of the push rods 105 may be one, at this time, one cloth through hole 104 may be arranged on the rotating disc 102, or a plurality of cloth through holes 104 may be arranged, and the plurality of cloth through holes 104 are circumferentially arranged around the rotation center of the rotating disc 102, so as to ensure that the push rods 105 can pass through any one cloth through hole 104.
In order to improve the production efficiency, at least two food products can be discharged at a time, and the number of the push rods 105 can be at least two. As shown in fig. 2 and 5, the number of the push rods 105 is three, at this time, a cloth through hole 104 is provided at a position on the rotating disc 102 corresponding to each push rod 105, the three cloth through holes 104 form a group, one group of cloth through holes 104 or multiple groups of cloth through holes 104 may be provided on the rotating disc 102, and the multiple groups of cloth through holes 104 are circumferentially provided with the rotation center of the rotating disc 102 as the center.
In fig. 7, a set of cloth through holes 104 are shown, a1 holes, a2 holes and a3 holes respectively; in the figure, holes a1, a2 and a3 are located in the distributing area A for distributing, granular materials fall into the three distributing through holes 104, then the rotating disc 102 rotates clockwise, the side wall of the hopper 101 acts as a scraper, after the holes a1, a2 and a3 rotate to the positions a1 ', a 2' and a3 'of the emptying area B in sequence, under the action of the side wall of the hopper 101, only the granular materials located in the holes a1, a2 and a3 are moved to the positions a 1', a2 'and a 3' in the figure, and then the three materials are pushed into the tops of three food products simultaneously by the downward movement of the three push rods 105.
Take the working process of one of the cloth through holes 104 as an example, the utility model discloses a food top blowing device's theory of operation does: firstly, materials to be placed at the top of food are placed in the hopper 101, the rotating disc 102 is driven to rotate, the material distribution through holes 104 in the rotating disc 102 move into the hopper 101 for material distribution, the materials enter the material distribution through holes 104, the opening and closing mechanism is in a normally closed state at the moment, the bottoms of the material distribution through holes 104 are sealed, and the materials are prevented from falling from the bottoms of the material distribution through holes 104; the rotating disc 102 continues to rotate, and when the material distribution through hole 104 for storing the material moves to the outside of the hopper 101 and the position corresponding to the push rod 105, the rotating disc 102 stops rotating, and the preparation work before discharging is completed. Then, after the forming mechanism 20 containing the food is moved to a position below the rotating disc 102 and corresponding to the push rod 105, the push rod 105 moves downwards, the lower end of the push rod 105 penetrates through the cloth through hole 104 to enable the opening and closing mechanism to be in an open state, and the material in the cloth through hole 104 is pushed downwards to the top of the food. Then, the push rod 105 moves upward, and when the lower end of the push rod 105 moves above the rotary disk 102, the opening and closing mechanism is reset and closed. The above actions are circularly carried out, so that the materials can be continuously placed on the top of the food.
The utility model discloses a food top blowing device improves to mechanical blowing from manual blowing, has not only solved manual operation's sanitary problem, has guaranteed the uniformity of food outward appearance behind the blowing moreover, has improved the appearance quality of product. After the food top discharging device is arranged on the discharging station of the existing food forming equipment, the automatic production of the discharging process is realized, and the production efficiency of food is greatly improved.
Fig. 1 to 3 show a first embodiment of an opening and closing mechanism including a first rubber sheet 106 provided on a lower surface of a rotary disk 102; a first slit is arranged on the first rubber sheet 106 at a position corresponding to the cloth through hole 104.
The first rubber sheet 106 can be adhered to the lower surface of the rotating disc 102 through glue or fixed to the lower surface of the rotating disc 102 through screws, and the first rubber sheet 106 seals the bottoms of all the cloth through holes 104; a first slit is arranged on the first rubber sheet 106 corresponding to each cloth through hole 104, the first rubber sheet 106 has elasticity, and under the condition that no push rod 105 provides opening power, the first slit is in a normally closed state, so that the material stored in the cloth through holes 104 is prevented from falling; after the cloth through hole 104 storing the material moves to a position corresponding to the push rod 105, the push rod 105 moves downward, and the lower end of the push rod passes through the cloth through hole 104 and the first slit of the first rubber sheet 106 in sequence to push the material downward into the top of the food. After the discharging is completed, the push rod 105 moves upwards, and when the lower end of the push rod 105 moves to the upper side of the first rubber sheet 106, the first slit of the first rubber sheet 106 automatically resets and is in a closed state. The first slit can be a straight slit, a rice-seed slit, a cross slit and the like; preferably, the first slit is a cross slit and is arranged at the center of the projection of each cloth through hole 104 on the horizontal plane, and the cross slit is not only simple to manufacture, but also large in opening area and small in resistance.
Fig. 4 to 6 show a second embodiment of the opening and closing mechanism including a fixed disk 107 disposed below the rotary disk 102 and connected to the mounting seat 103; a discharge through hole 108 for the push rod 105 to pass through is arranged on the fixed disc 107 at a position corresponding to the push rod 105; the lower surface of the fixed disc 107 is provided with a second rubber sheet 109; and a second slot is arranged on the second rubber sheet 109 corresponding to the discharge through hole 108.
The fixed disk 107 is disposed below the rotating disk 102, and is used for sealing the bottom of the cloth through hole 104 on the rotating disk 102 to prevent the material stored in the cloth through hole 104 from falling. The fixed disk 107 is fixedly connected with the mounting seat 103, and a gap is formed between the upper surface of the fixed disk 107 and the lower surface of the rotating disk 102, so that the rotating disk 102 is prevented from rubbing against the fixed disk 107 in the rotating process, and the gap can be set according to the size of the granular materials stored in the cloth through hole 104, so that the materials cannot leak out from the gap.
a discharge through hole 108 is formed in the fixed disc 107 at a position corresponding to the push rod 105, a second rubber sheet 109 is arranged on the lower surface of the fixed disc 107, the second rubber sheet 109 can be adhered to the lower surface of the fixed disc 107 through glue or fixed on the lower surface of the fixed disc 107 through a screw, and the second rubber sheet 109 seals the bottoms of all the discharge through holes 108; a second slit is arranged on the second rubber sheet 109 corresponding to each discharging through hole 108, the second rubber sheet 109 has elasticity, and the second slit is in a normally closed state under the condition that the push rod 105 does not provide opening power; when the material distribution through hole 104 storing the material moves to a position corresponding to the push rod 105, the material in the material distribution through hole 104 falls into the material discharge through hole 108, and the material cannot fall off through the second rubber 109; the push rod 105 moves downwards, the lower end of the push rod penetrates through the cloth through hole 104, the discharge through hole 108 and a second slit of the second rubber sheet 109 in sequence, and the materials are pushed downwards into the top of the food; after the discharging is completed, the push rod 105 moves upwards, and when the lower end of the push rod 105 moves to the upper side of the second rubber sheet 109, the second slit of the second rubber sheet 109 automatically resets and is in a closed state. The second slit can be a straight slit, a rice-seed slit, a cross slit and the like; preferably, the second slit is a cross slit which is arranged at the center of the projection of each discharge through hole 108 on the horizontal plane, and the cross slit is not only simple to manufacture, but also large in opening area and small in resistance.
The mount 103 functions as a support, which may be a column structure, a frame structure, or the like. Fig. 3 and 6 show a preferred embodiment of the mount 103, said mount 103 comprising a mounting sleeve 1032, the lower end of the mounting sleeve 1032 having a first flange 1031 protruding radially outwards; a first rotating shaft 117 is rotatably mounted in the mounting sleeve 1032, and an upper end of the first rotating shaft 117 is connected to the rotating disk 102. The first flange 1031 may be mounted on the food forming apparatus by a bolt structure, a snap structure, or the like; the first rotating shaft 117 is rotatably mounted in the mounting sleeve 1032 through two bearing structures, and an upper end of the first rotating shaft 117 extends upward to the outside of the mounting sleeve 1032 and is fixedly connected with the rotating disk 102. As shown in fig. 6, the fixed disk 107 is fixed on the top of the mounting sleeve 1032, and the fixed disk 107 has a hole for the first rotation shaft 117 to pass through.
The rotating disc 102 can be rotated by a manual driving mode, but the mode cannot meet the requirement of automatic production; preferably, the food top emptying device further comprises a first driving mechanism 110 for driving the rotating disc 102 to rotate. The first driving mechanism 110 may include a motor, and the motor is in transmission connection with the rotating disc 102 through a transmission mechanism, and the transmission mechanism may be a belt transmission mechanism, a chain transmission mechanism, a gear transmission mechanism, or the like. Preferably, as shown in fig. 1 to 6, the first driving mechanism 110 includes a servo motor and a speed reducer in transmission connection with the servo motor, and an output shaft of the speed reducer is in transmission connection with the first rotating shaft 117. Further, an output shaft of the speed reducer is provided coaxially with the first rotating shaft 117 and is connected to a lower end of the first rotating shaft 117. The servo motor may also be connected to a programmable controller for programming to effect automatic control of the rotation of the rotatable disk 102.
The push rod 105 can move up and down in a manual driving mode, but the mode cannot meet the requirement of automatic production; preferably, the food top discharging device further comprises a second driving mechanism 111 for driving the push rod 105 to move up and down. The second driving mechanism 111 comprises an air cylinder arranged on the mounting seat 103, a piston rod of the air cylinder is fixedly connected with the push rod 105, the push rod 105 is driven by the air cylinder to move up and down, and the depth of the material pushed into the top of the food can be controlled by only controlling the stroke of the piston rod of the air cylinder. Preferably, the cylinder is arranged above the rotating disc 102, and as shown in fig. 1, the cylinder body of the cylinder can be fixedly connected with the mounting sleeve 1032 through an L-shaped bracket; as shown in fig. 4, the cylinder body of the air cylinder can also be fixedly connected with the fixed plate 107 through an L-shaped bracket. The cylinder may also be connected to a programmable controller programmed to effect automatic control of the up and down movement of the push rod 105. Further, the second driving device 111 may be a hydraulic cylinder, an electric push rod, or the like.
The size of the material distribution through holes 104 can be set according to the size of the granular materials, so that one material distribution through hole 104 can contain one material; however, when the green beans, shrimp meat, dates, peanuts, and other granular materials are distributed in the distribution through hole 104 of the rotating disc 102, there is a possibility that a plurality of materials are stuck at the upper opening of the same distribution through hole 104, and there is no material in the distribution through hole 104. In order to avoid the above situation, a material poking device is further arranged in the hopper 101. The materials in the hopper 101 are stirred through the stirring device, the condition that a plurality of materials are clamped at the upper opening of the same material distribution through hole 104 is avoided, and the materials in each material distribution through hole 104 are guaranteed.
The material-ejecting device comprises an ejecting rod 112 and a third driving mechanism 113 for driving the ejecting rod 112 to horizontally move in the hopper 101. The third driving mechanism 113 may be an air cylinder, a hydraulic cylinder, or the like. As shown in fig. 3 and 6, the shift lever 112 is vertically disposed, a cylinder body of an air cylinder or a hydraulic cylinder is mounted on the hopper 101, and a piston rod of the air cylinder or the hydraulic cylinder is fixedly connected to an upper end of the shift lever 112 and drives the shift lever 112 to horizontally move in the hopper 101, so as to shift the material. The third driving mechanism 113 can also be connected with a programmable controller, and the horizontal movement of the shift lever 112 can be automatically controlled through programming. The material shifting device can also comprise a shifting rod and a plurality of bulges arranged on the outer side surface of the rotating disc 102, one end of the shifting rod is arranged in the hopper 101, and the middle of the shifting rod is hinged on the wall of the hopper; the other end of the rotating disc is matched with the protrusion, and the rotating disc 102 drives the poking rod to poke materials in the hopper 101 through the protrusion in the rotating process.
In order to facilitate cleaning of the rotating disc 102 and the cloth through hole 104, preferably, one side of the hopper 101 is rotatably connected with the mounting base 103 through a second rotating shaft 114; the other side of the hopper 101 is detachably connected with the mounting seat 103 through a locking piece 115. When the rotating disc 102 and the cloth through hole 104 need to be cleaned, the lock catch member 115 is opened, and the hopper 101 can be removed from above the rotating disc 102 with the second rotating shaft 114 as a rotating center. The second rotating shaft 114 can be a transverse rotating shaft, and the hopper 101 rotates in a vertical plane by taking the transverse rotating shaft as a center; the rotating shaft 114 can also be a vertical rotating shaft, and the hopper 101 rotates in a horizontal plane by taking the vertical rotating shaft as a center. The lock catch piece 115 is used for locking the hopper 101 above the rotating disc 102, so that the stability of the hopper 101 in the use process is ensured; the lock catch element 115 may comprise a lock tongue arranged on the mounting seat 103 and a lock catch arranged on the hopper 101, wherein the lock tongue is matched with the lock catch; the locking piece 115 can also be a connecting plate arranged on the mounting seat 103, a positioning bolt is arranged on the connecting plate, and a threaded hole matched with the positioning bolt is arranged on the hopper 101.
In the process of pushing the material downwards into the top of the food by the push rod 105, the push rod 105 needs to overcome the resistance of the opening and closing mechanism, and in order to avoid the change of the motion track of the material in the process, the lower end of the push rod 105 is preferably provided with a groove 116. The material is limited through the groove 116, so that the material is prevented from moving left and right, the material can only move downwards under the action of the push rod 105, and the material is accurately pushed downwards to the top of the food.

Claims (10)

1. The food top discharging device is characterized by comprising an installation seat (103), a rotating disc (102) rotatably installed on the installation seat (103), and a hopper (101) arranged above the rotating disc (102) and connected with the installation seat (103); a push rod (105) moving up and down is arranged above the rotating disc (102) and outside the hopper (101); a cloth through hole (104) for the push rod (105) to pass through is formed in the position, corresponding to the push rod (105), of the rotating disc (102); in the rotating process of the rotating disc (102), the material distribution through hole (104) can circularly move inside and outside the hopper (101); the cloth opening and closing mechanism is used for closing the bottom of the cloth through hole (104) and providing opening power through the push rod (105) to open the bottom of the cloth through hole (104).
2. The food top discharge device according to claim 1, wherein the opening and closing mechanism comprises a first rubber (106) arranged on the lower surface of the rotary disk (102); and a first slit is arranged on the first rubber sheet (106) at a position corresponding to the cloth through hole (104).
3. The food top emptying device according to claim 1, wherein the opening and closing mechanism comprises a fixed disc (107) which is arranged below the rotating disc (102) and connected with the mounting seat (103); a discharge through hole (108) for the push rod (105) to pass through is formed in the position, corresponding to the push rod (105), of the fixed disc (107); the lower surface of the fixed disc (107) is provided with a second rubber sheet (109); and a second slit is arranged on the second rubber sheet (109) at a position corresponding to the discharge through hole (108).
4. the food top discharge apparatus according to claim 1, wherein said mounting seat (103) comprises a mounting sleeve (1032), a lower end of said mounting sleeve (1032) having a first flange (1031) protruding radially outward; the mounting sleeve (1032) is rotatably provided with a first rotating shaft (117), and the upper end of the first rotating shaft (117) is connected with the rotating disc (102).
5. the food top emptying device according to claim 1, wherein one side of the hopper (101) is rotatably connected with the mounting seat (103) through a second rotating shaft (114); the other side of the hopper (101) is detachably connected with the mounting seat (103) through a locking piece (115).
6. The food top discharge apparatus according to claim 1, further comprising a first driving mechanism (110) for driving the rotary disk (102) to rotate.
7. The food top discharge apparatus according to claim 1, further comprising a second driving mechanism (111) for driving the push rod (105) to move up and down.
8. the food top emptying device according to claim 1, wherein a material stirring device is further arranged in the hopper (101).
9. Food product top discharge apparatus according to claim 8, characterized in that said discharge apparatus comprises a deflector rod (112) and a third driving mechanism (113) driving the deflector rod (112) horizontally inside the hopper (101).
10. Food product top emptying device according to claim 1, wherein the lower end of the push rod (105) is provided with a groove (116).
CN201920537670.5U 2018-07-13 2019-04-19 Food top blowing device Active CN209768951U (en)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN201810770899 2018-07-13
CN2018107708993 2018-07-13

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Publication Number Publication Date
CN209768951U true CN209768951U (en) 2019-12-13

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Family Applications (4)

Application Number Title Priority Date Filing Date
CN201910317179.6A Pending CN109875086A (en) 2018-07-13 2019-04-19 Discharging device at the top of food
CN201920537719.7U Active CN209768761U (en) 2018-07-13 2019-04-19 Shaomai forming equipment
CN201920537670.5U Active CN209768951U (en) 2018-07-13 2019-04-19 Food top blowing device
CN201910317158.4A Pending CN109907089A (en) 2018-07-13 2019-04-19 Steamed dumplings molding equipment

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CN201910317179.6A Pending CN109875086A (en) 2018-07-13 2019-04-19 Discharging device at the top of food
CN201920537719.7U Active CN209768761U (en) 2018-07-13 2019-04-19 Shaomai forming equipment

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CN201910317158.4A Pending CN109907089A (en) 2018-07-13 2019-04-19 Steamed dumplings molding equipment

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CN107969451B (en) * 2017-12-21 2022-11-11 成都松川雷博机械设备有限公司 Shaomai forming device
CN107873769B (en) * 2017-12-21 2023-06-30 成都松川雷博机械设备有限公司 Wheat-burning forming equipment
CN109875086A (en) * 2018-07-13 2019-06-14 成都康河机械设备有限公司 Discharging device at the top of food

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109875086A (en) * 2018-07-13 2019-06-14 成都康河机械设备有限公司 Discharging device at the top of food

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