Beating meat ball processing equipment

Through the design of the pounding meatball processing equipment, pounding and pulping are continuously carried out in the same equipment, which solves the problem of low efficiency caused by the pounding and pulping process in the existing meatball machine, and achieves the efficient production of meatballs and the effect of soft meat.

CN120240493APending Publication Date: 2025-07-04BINZHOU BINMIAO TRADING CO LTD
View PDF 5 Cites 0 Cited by

Patent Information

Application Number
CN202510675349.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-23
Publication Date
2025-07-04

AI Technical Summary

Technical Problem

The existing meatball machine is pounding and making pills in steps, resulting in low efficiency in pill making.

Method used

A thumping meatball processing equipment is designed, and the thumping unit and the thumping unit are connected to the thumping unit and the thumping unit are connected to the thumping unit and the thumping unit in the same equipment. The drive motor is controlled by the STM32 microcontroller to achieve the coordinated work of thumping and thumping.

Benefits of technology

The efficiency of meatball processing is improved, the meat fiber becomes soft and the meat filling is more chewy, realizing mass production of meatballs.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN120240493A_ABST
    Figure CN120240493A_ABST
Patent Text Reader

Abstract

The invention is applicable to the field of meatballs, and particularly relates to meatball beating processing equipment which is characterized in that a frame is arranged in a box body, a driving unit is arranged at the lower end of the frame, the driving unit is connected with a meatball beating unit and a ball rolling unit through a transmission unit, and the upper end of the beating unit is communicated with a stuffing inlet; a discharging port is fixed to the lower end of the beating unit and communicates with the pill rolling unit, the driving unit is further linearly connected with a control unit, the control unit is used for controlling the driving unit to work or stop, and the control unit is specifically an STM32 single-chip microcomputer. The beating unit is arranged in the stirrer, the driving unit drives the meat ball beating unit to beat meat stuffing through the transmission unit, so that meat fibers become soft, the meat stuffing is chewy, meanwhile, the ball twisting unit is arranged, and batch production of meat balls is achieved through the ball twisting unit.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present invention belongs to the field of meatballs, and particularly relates to a processing device for pounding meatballs. Background Art

[0002] In the process of preparing meatballs, the meat filling is the core. The meat filling processing device is a device for food processing, which extrudes the meat filling into a formed shape (such as spherical, oval, etc.) by mechanical force, and is commonly used for making food such as meatballs, fish balls, and vegetarian balls. Its core principle is to push the meat filling to the outlet of the mold through the feeding system, and then form individual meatballs by cutting or natural fracture.

[0003] In the existing meat filling processing device, pounding and continuous meatball making are carried out step by step. The two pounding rods are staggered up and down by a stepping motor through a crank and a gear set. At the same time, the turntable for holding the meat filling rotates, so as to achieve the pounding effect. The pounded meat filling is put into the meatball making machine for meatball making. In the actual use process, the two steps of pounding and meatball making are separated, resulting in low meatball making efficiency, and the existing device cannot effectively connect the two steps.

[0004] In summary, there is an urgent need for a processing device for pounding meatballs to solve the problem that the meat filling pounding and meatball making in the existing meatball machine are carried out step by step, resulting in low meatball making efficiency. Summary of the Invention

[0005] An embodiment of the present invention provides a processing device for pounding meatballs, aiming to solve the problem that the meat filling pounding and meatball making in the existing meatball machine are carried out step by step, resulting in low meatball making efficiency.

[0006] The embodiment of the present invention is implemented as follows:

[0007] A processing device for pounding meatballs includes:

[0008] A box body, inside which there is a frame. A driving unit is provided at the lower end of the frame. The driving unit is connected with a meatball pounding unit and a meatball rolling unit through a transmission unit. The upper end of the pounding unit is communicated with a filling inlet, and an outlet is fixed at the lower end of the pounding unit. The outlet is communicated with the meatball rolling unit. The driving unit is also linearly connected with a control unit, and the control unit is used to control the driving unit to work or stop. The control unit is specifically an STM32 single-chip microcomputer.

[0009] Furthermore, the driving unit is used to drive the pounding unit to pound meatballs and drive the meatball rolling unit to roll meatballs. The driving unit can specifically be a first driving motor and a second driving motor. The first driving motor and the second driving motor are fixed at the lower end of the frame through bolts. The first driving motor is connected with a first driving wheel through a belt, and the first driving wheel is connected with the pounding unit. The second driving motor is connected with a second driving wheel through a belt, and the second driving wheel is connected with a transmission unit through a first output shaft.

[0010] Furthermore, the transmission unit is specifically composed of a first transmission group and a second transmission group. The first transmission group and the second transmission group are connected by a transmission chain. One end of the first transmission group is fixed on the first transmission shaft. A first connecting gear is fixed on the first transmission shaft through a pin key. The other end of the first transmission shaft is connected to the second driving wheel.

[0011] Furthermore, the first transmission group is composed of a first helical gear group and a driving gear. The first helical gear group is specifically composed of two 45° gears. The first helical gear is fixedly connected to the first transmission shaft. The second helical gear is fixedly connected to the frame through a rotating shaft. A driving gear is coaxially fixed to the second helical gear.

[0012] Furthermore, the second transmission group is composed of a second connecting gear, a second transmission shaft, and a second helical gear group. The second connecting gear is fixed to one end of the second driving wheel through a tooth key. A third helical gear is fixed to the other end of the second driving wheel. The third helical gear is fixedly connected to the fourth helical gear. The fourth helical gear is fixed to the frame through a rotating shaft. A meatball rolling unit is connected to the lower end of the fourth helical gear through a coupling shaft.

[0013] Furthermore, the pounding unit is composed of a housing, a feed inlet, a transmission shaft, an auger, a conical block, an adjusting sleeve, a spring, and a discharge outlet. A feed inlet is provided at the upper end of one side of the housing. A discharge outlet is provided at the side far from the end of the housing. One end of the transmission shaft is connected to the first driving wheel. An adjusting sleeve is fixed to the other end of the transmission shaft. The auger and the conical block are sequentially fixed on the transmission shaft. The spring is arranged between the conical block and the auger. The conical block can reciprocate along the transmission shaft under the action of the spring and the adjusting sleeve.

[0014] Furthermore, the meatball rolling unit is composed of a feed box, a stirring paddle, a transmission gear, a crank, and a push-pull block. The stirring paddle is arranged in the feed box. The upper end of the stirring paddle is fixedly connected to the fourth helical gear through a coupling shaft. The lower end of the feed box is connected to the transmission gear through a sleeve. The sleeve rotates driven by the transmission gear. A meatball rolling plate is fixed to the lower end of the sleeve. A through hole is provided in the middle of the meatball rolling plate, and key grooves are provided at both ends. The push-pull block is fixed in the key groove through a convex block and slides freely along the key groove. The lower end of the push-pull block passes through.

[0015] Furthermore, a crank is provided at the lower end of the transmission gear. The crank is connected to the push-pull block through a connecting rod. Driven by the crank, the push-pull block slides freely along the key groove.

[0016] The beneficial effects achieved by the present invention are as follows:

[0017] By arranging a pounding unit in the stirrer and driving the meatball pounding unit to pound the meat stuffing through the driving unit and the transmission unit, the meat fiber becomes soft, so that the meat stuffing becomes more chewy. At the same time, a meatball rolling unit is provided, and the batch production of meatballs is realized through the meatball rolling unit. Description of the Drawings

[0018] Figure 1 It is a schematic structural diagram of the meatball pounding processing equipment provided by the present invention;

[0019] Figure 2 It is a schematic structural diagram of each unit of the meatball machine box body of the present invention;

[0020] Figure 3 It is a schematic structural diagram of the transmission unit of the meatball machine box body of the present invention;

[0021] Figure 4 It is a schematic structural diagram of the meatball rolling unit of the meatball machine box body of the present invention;

[0022] Figure 5 It is a schematic structural diagram of the pounding unit of the present invention.

[0023] Reference numerals in the drawings:

[0024] 100, meatball pounding processing equipment; 101, frame; 110, drive unit; 111, first drive motor; 112, second drive motor; 113, first drive wheel; 114, second drive wheel; 120, transmission unit; 130, pounding unit; 140, meatball rolling unit; 210, first transmission group; 211, first connecting gear; 212, first helical gear group; 213, drive gear; 220, second transmission group; 221, second connecting gear; 222, second helical gear group; 311, outer shell; 312, transmission shaft; 313, auger; 314, spring; 315, conical block; 316, adjusting sleeve; 411, feed hopper; 412, sleeve; 413, transmission gear; 414, meatball rolling plate; 415, push-pull block; 416, transmission gear; 417, crank; 418, connecting rod. Detailed implementation manners

[0025] In order to make the objectives, technical solutions and advantages of the present invention clearer and more understandable, the present invention will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present invention and are not used to limit the present invention.

[0026] By providing a pounding unit in the stirrer, the drive unit drives the meatball pounding unit to pound the meat filling through the transmission unit, making the meat fibers become soft, and thus making the meat filling more chewy. At the same time, a meatball rolling unit is provided to realize the batch production of meatballs through the meatball rolling unit.

[0027] Referring to Figures 1-5 , in the embodiment of the present invention, the present embodiment provides a meatball pounding processing equipment 100, including:

[0028] The box body is provided with a frame 101 inside. A driving unit 110 is provided at the lower end of the frame 101. The driving unit 110 is connected to a meatball pounding unit 130 and a meatball rolling unit 140 through a transmission unit 120. The upper end of the pounding unit 130 is communicated with a storage barrel through a stuffing inlet. A discharge port is fixed at the lower end of the pounding unit 130, and the discharge port is communicated with the meatball rolling unit 140. The driving unit 110 is also linearly connected to a control unit, and the control unit is used to control the driving unit 110 to work or stop. The control unit is specifically an STM32 single-chip microcomputer.

[0029] The working process of this embodiment is as follows: Let the minced meat be placed in the storage barrel at the upper end of the box body. Under the action of gravity, the minced meat enters the pounding unit 130 through the storage barrel. After being pounded by the pounding unit 130, the minced meat enters the meatball rolling unit 140 through the discharge port. The minced meat generates meatballs after being kneaded and cut by the meatball rolling unit 140.

[0030] The driving unit 110 is used to drive the pounding unit 130 to pound meatballs and drive the meatball rolling unit 140 to roll meatballs. The driving unit 110 can specifically be a first driving motor 111 and a second driving motor 112. The first driving motor 111 and the second driving motor 112 are fixed at the lower end of the frame 101 through bolts. The first driving motor 111 is connected to a first driving wheel 113 through a belt, and the first driving wheel 113 is connected to the pounding unit 130. The second driving motor 112 is connected to a second driving wheel 114 through a belt, and the second driving wheel 114 is connected to the transmission unit 120 through a first output shaft.

[0031] When it is necessary for the pounding unit 130 to pound meatballs, the STM32 single-chip microcomputer controls the first driving motor 111 to work. The first driving motor 111 drives the first driving wheel 113 to rotate under the action of the belt, and the first driving wheel 113 drives the pounding unit 130 to pound the minced meat. When the meatball rolling unit 140 works, the STM32 single-chip microcomputer controls the second driving motor 112 to work. The second driving motor 112 drives the second driving wheel 114 to work under the action of the belt pulley, and the second driving wheel 114 drives the transmission unit 120 to work through the output shaft.

[0032] The transmission unit 120 is specifically composed of a first transmission group 210 and a second transmission group 220. The first transmission group 210 and the second transmission group 220 are connected through a transmission chain. One end of the first transmission group 210 is fixed on a first transmission shaft 312. A first connecting gear 211 is fixed on the first transmission shaft 312 through a pin key. The other end of the first transmission shaft 312 is connected to the second driving wheel 114.

[0033] The transmission principle realized by the transmission unit 120 is that the second drive motor 112 drives the second drive wheel 114 to work, the second drive wheel 114 drives the first transmission shaft 312 to rotate, the first transmission shaft 312 drives the first transmission group 210 to rotate, and at the same time the first transmission shaft 312 drives the first connecting gear 211 to rotate, and the first connecting gear 211 drives the second transmission group 220 to rotate through a transmission chain.

[0034] The first transmission group 210 is composed of a first helical gear set and a drive gear 213. The first helical gear set 212 is specifically composed of two 45° gears. The first helical gear is fixedly connected to the first transmission shaft 312, and the second helical gear is fixedly connected to the frame 101 through a rotating shaft, and a drive gear 213 is coaxially fixed with the second helical gear.

[0035] The principle of driving the transmission gear 416413 of the pill rolling unit 140 by the first transmission group 210 is that the first helical gear converts the power of the first transmission shaft 312 into the rotation of the second helical gear in a direction perpendicular to the first transmission shaft 312. The second helical gear drives the drive gear 213 to rotate through a rotating shaft, and the drive gear 213 drives the transmission gear 416413 to rotate under the action of a tooth key.

[0036] The second transmission group 220 is composed of a second connecting gear 221, a second drive shaft and a second helical gear set 222. The second connecting gear 221 is fixedly connected to one end of the second drive wheel 114 through a tooth key. A third helical gear is fixed to the other end of the second drive wheel 114. The third helical gear is fixedly connected to the fourth helical gear, and the fourth helical gear is fixed to the frame 101 through a rotating shaft. The lower end of the fourth helical gear is connected to the pill rolling unit 140 through a coupling shaft.

[0037] The principle of driving the stirring paddle to rotate by the second transmission group 220 is that the first transmission shaft 312 drives the first connecting gear 211 to rotate. The first connecting gear 211 drives the second connecting gear 221 to rotate under the action of a chain. The second connecting gear 221 drives the second drive shaft to rotate. The second drive shaft drives the first helical gear set 212 to rotate. Specifically, the second drive rotating shaft drives the third helical gear to rotate, the third helical gear drives the fourth helical gear to rotate, and the fourth helical gear drives the stirring paddle to rotate, and the stirring paddle stirs the meat filling.

[0038] The hammering unit 130 is composed of a housing 311, a feed inlet, a transmission shaft 312, a screw conveyor 313, a tapered block 315, an adjusting sleeve 316, a spring 314, and a discharge outlet. A feed inlet is provided at the upper end of one side of the housing 311, and a discharge outlet is provided at one side far from the end of the housing 311. One end of the transmission shaft 312 is connected to the first driving wheel 113, and an adjusting sleeve 316 is fixed to the other end of the transmission shaft 312. The screw conveyor 313 and the tapered block 315 are sequentially fixed on the transmission shaft 312. The spring 314 is arranged between the tapered block 315 and the screw conveyor 313. The tapered block 315 can reciprocate along the transmission shaft 312 under the action of the spring 314 and the adjusting sleeve 316.

[0039] The working principle of the hammering unit 130 is as follows: The first driving wheel 113 drives the transmission shaft 312 to rotate, and the transmission shaft 312 drives the screw conveyor 313, the tapered block 315, and the adjusting sleeve 316 to rotate. The adjusting sleeve 316 and the transmission shaft 312 are connected by a connecting rod. A keyway for the up-and-down movement of the adjusting sleeve 316 is provided on the transmission shaft 312, and the adjusting sleeve 316 is fixed in the keyway through a connecting rod. A spring 314 is fixed on the transmission shaft 312 between the tapered block 315 and the screw conveyor 313. It should be noted that a convex block for squeezing connection with the adjusting sleeve 316 is provided inside the housing 311, and the upper end of the adjusting sleeve 316 can slide along the convex block. The upper end surface of the adjusting sleeve 316 is a wavy surface. When the driving shaft drives the adjusting sleeve 316 to rotate, the upper end surface of the adjusting sleeve 316 squeezes the convex block inside the housing 311, thereby causing the adjusting sleeve 316 to move up and down along the driving shaft. Under the extrusion of the adjusting sleeve 316, the tapered block 315 moves up and down along the rotating shaft along the driving shaft, and the tapered block 315 and the inner wall of the housing 311 achieve the effect of squeezing and hammering. When the meat filling passes through between the tapered block 315 and the inner wall of the housing 311, the meat filling can be hammered by the tapered block 315.

[0040] The pill-making unit 140 is composed of a material box 411, a stirring paddle, transmission gears 416413, a crank 417, and a push-pull block 415. The stirring paddle is arranged inside the material box 411. The upper end of the stirring paddle is fixedly connected to a fourth helical gear through a coupling shaft. The lower end of the material box 411 is connected to the transmission gears 416413 through a sleeve 412. The sleeve 412 rotates driven by the transmission gears 416413. A pill-making plate 414 is fixed to the lower end of the sleeve 412. A through hole is provided in the middle of the pill-making plate 414, and keyways are provided at both ends. The push-pull block 415 is fixed in the keyway through a convex block and slides freely along the keyway. The lower end of the push-pull block 415 passes through...

[0041] A crank 417 is provided at the lower end of the transmission gears 416413. The crank 417 is connected to the push-pull block 415 through a connecting rod 418. Driven by the crank 417, the push-pull block 415 slides freely along the keyway.

[0042] When the meat filling passes through the meatball rolling unit 140, the stirring paddle rotates through the fourth helical teeth, squeezing the meat filling to the lower end of the silo. The driving gear 213 drives the transmission gear 416413 to rotate, and the transmission gear 416413 drives the sleeve 412 to rotate. The rotation of the sleeve 412 drives the meat filling to rotate. At the same time, a crank 417 is provided at the lower end of the transmission gear 416413. The crank 417 is connected to the push-pull block 415 through the connecting rod 418. There are two push-pull blocks 415, and the push-pull blocks 415 are oppositely arranged in the key grooves of the meatball rolling plate 414. Under the rotation of the crank 417, the push-pull block 415 can freely slide along the key grooves of the meatball rolling plate 414. The meat filling is rolled into meatballs while rotating under the cutting of the push-pull block 415.

[0043] In the description of this specification, the description with reference to terms such as "some embodiments", "schematic embodiments", "examples", "specific examples", or "some examples" means that the specific features, structures, materials, or characteristics described in connection with the embodiments or examples are included in at least one embodiment or example of the present invention. In this specification, the schematic representations of the above terms do not necessarily refer to the same embodiments or examples. Moreover, the specific features, structures, materials, or characteristics described can be combined in any one or more embodiments or examples in a suitable manner.

[0044] In addition, the above are only the preferred embodiments of the present invention and are not intended to limit the present invention. Any modifications, equivalent replacements, and improvements made within the spirit and principles of the present invention should be included in the protection scope of the present invention.

Claims

1. A meatball pounding processing device, characterized in that, Comprising: A box body, inside which there is a frame. At the lower end of the frame, there is a driving unit. The driving unit is connected to a meatball pounding unit and a meatball rolling unit through a transmission unit. The upper end of the pounding unit is communicated with a filling inlet, and the lower end of the pounding unit is fixed with a discharge port which is communicated with the meatball rolling unit. The driving unit is also linearly connected to a control unit which is used to control the driving unit to work or stop. The control unit is specifically an STM32 single-chip microcomputer.

2. The meatball pounding processing equipment according to claim 1, characterized in that, The driving unit is used to drive the pounding unit to pound meatballs and drive the meatball rolling unit to roll meatballs. The driving unit can specifically be a first driving motor and a second driving motor. The first driving motor and the second driving motor are fixed to the lower end of the frame by bolts. The first driving motor is connected to a first driving wheel through a belt, and the first driving wheel is connected to the pounding unit. The second driving motor is connected to a second driving wheel through a belt, and the second driving wheel is connected to a transmission unit through a first output shaft.

3. The pounding meatball processing equipment according to claim 1, characterized in that, The transmission unit is specifically composed of a first transmission group and a second transmission group. The first transmission group and the second transmission group are connected by a transmission chain. One end of the first transmission group is fixed to a first transmission shaft, and a first connecting gear is fixed to the first transmission shaft by a pin key. The other end of the first transmission shaft is connected to the second driving wheel.

4. The pounding meatball processing equipment according to claim 3, characterized in that, The first transmission group is composed of a first helical gear group and a driving gear. The first helical gear group is specifically composed of two 45° gears. The first helical gear is fixedly connected to the first transmission shaft, and the second helical gear is fixedly connected to the frame through a rotating shaft. A driving gear is coaxially fixed to the second helical gear.

5. The meatball pounding processing equipment according to claim 3, characterized in that, The second transmission group is composed of a second connecting gear, a second driving shaft, and a second helical gear group. The second connecting gear is fixed to one end of the second driving wheel by a tooth key. A third helical gear is fixed to the other end of the second driving wheel. The third helical gear is fixedly connected to a fourth helical gear, and the fourth helical gear is fixed to the frame through a rotating shaft. The lower end of the fourth helical gear is connected to the meatball rolling unit through a coupling shaft.

6. The pounding meatball processing equipment according to claim 1, characterized in that, The pounding unit is composed of a housing, a feeding port, a transmission shaft, an auger, a conical block, an adjusting sleeve, a spring, and a discharge port. A feeding port is provided at the upper end of one side of the housing, and a discharge port is provided at the side far from the end of the housing. One end of the transmission shaft is connected to the first driving wheel, and an adjusting sleeve is fixed to the other end of the transmission shaft. The auger and the conical block are sequentially fixed to the transmission shaft. The spring is arranged between the conical block and the auger. The conical block can reciprocally move along the transmission shaft under the action of the spring and the adjusting sleeve.

7. The pounding meatball processing equipment according to claim 1, characterized in that, The meatball rolling unit is composed of a material box, a stirring paddle, a transmission gear, a crank, and a pushing and pulling block. The stirring paddle is arranged in the material box. The upper end of the stirring paddle is fixedly connected to the fourth helical gear through a coupling shaft. The lower end of the material box is connected to the transmission gear through a sleeve. The sleeve rotates driven by the transmission gear. A meatball rolling plate is fixed to the lower end of the sleeve. A through hole is provided in the middle of the meatball rolling plate, and key grooves are provided at both ends. The pushing and pulling block is fixed in the key groove through a convex block and freely slides along the key groove. The lower end of the pushing and pulling block is through.

8. The meatball pounding processing equipment according to claim 7, characterized in that, A crank is provided at the lower end of the transmission gear. The crank is connected to the pushing and pulling block through a connecting rod. Driven by the crank, the pushing and pulling block freely slides along the key groove.

Citation Information

Patent Citations

  • PERFORATION MACHINE FOR MEAT PERFORATION IN GASTRONOMY ESTATE

    ATA102692A

  • Meat grinder with blending function

    CN103521329A

  • Food processing detection device based on big data cloud platform and use method of device

    CN111802431A

  • Beef ball production equipment for food processing

    CN117397717A

  • Meat ball forming device

    CN214431437U