Rosin soaking system for livestock and poultry depilation

文档序号:1440567 发布日期:2020-02-18 浏览:42次 中文

阅读说明:本技术 一种用于畜禽脱毛的浸松香系统 (Rosin soaking system for livestock and poultry depilation ) 是由 陆国林 于 2019-12-09 设计创作,主要内容包括:本发明属于食品加工领域,具体涉及一种用于畜禽脱毛的浸松香系统,包括浸松香机,浸松香机包括松香池、转动连接于松香池的浸泡料斗、用于驱动浸泡料斗翻转的驱动机构。本发明设计合理、结构紧凑,能够自动对猪肉进行输送、浸泡,效率非常高,能够满足生产需求。(The invention belongs to the field of food processing, and particularly relates to a rosin soaking system for livestock and poultry unhairing. The automatic pork soaking machine is reasonable in design, compact in structure, capable of automatically conveying and soaking pork, high in efficiency and capable of meeting production requirements.)

1. The utility model provides a soak rosin system for beasts and birds moult, its characterized in that includes soaks rosin machine (1), soaks rosin machine (1) and includes rosin pond (17), rotates and connect in soaking hopper (12) of rosin pond (17), is used for driving the actuating mechanism who soaks hopper (12) upset.

2. The rosin dipping system for livestock and poultry unhairing according to claim 1, further comprising a receiving pool (4) and a receiving conveyor (2), wherein the receiving conveyor (2), the rosin dipping machine (1) and the receiving pool (4) are sequentially arranged, the receiving conveyor (2) is used for conveying pork to the rosin pool (17), and the receiving pool (4) receives the pork falling from the rosin dipping machine (1) through the soaking hopper (12).

3. The rosin dipping system for livestock and poultry unhairing according to claim 2, characterized by further comprising a feeding conveyor (3) located at the front end of the receiving conveyor (2), the feeding conveyor (3) being used for conveying pork to the receiving conveyor (2).

4. The rosin soaking system for livestock and poultry unhairing according to any one of claims 1 to 3, wherein the driving mechanism comprises a hopper overturning driving motor (112) and a rotating shaft (121) arranged on the soaking hopper (12), and the hopper overturning driving motor (112) is in transmission connection with the rotating shaft (121).

5. The rosin dipping system for livestock and poultry unhairing according to claim 4, wherein the driving mechanism further comprises a rotating wheel (16) in transmission connection with the hopper overturning driving motor (112), a connecting rod (15) with one end in rotation connection with the rotating wheel (16), and a rotating disc in transmission connection with the rotating shaft (121), and the other end of the connecting rod is in rotation connection with the rotating disc.

6. The rosin soaking system for livestock and poultry unhairing according to claim 5, wherein the rotating disc is a first gear (13), and a second gear (111) meshed with the first gear (13) is sleeved on the rotating shaft (121); a stroke sensor (14) is arranged on the rosin pool (17), and two stroke contacts (131) corresponding to the position of the sensor (14) are arranged on the first gear (13).

7. A rosin dipping system for livestock and poultry depilation according to any of claims 1 to 3, characterized in that a temperature sensor (18) and a heating device (10) are arranged on the rosin pool (17).

8. The rosin dipping system for livestock and poultry unhairing according to any one of claims 1 to 3, characterized in that the upper end of the rosin pool (17) is provided with an upper cover (11), the rear end of the upper cover (11) is provided with a front door curtain (110), and the upper cover (11) and the front door curtain (110) are vertically communicated.

9. A rosin dipping system for livestock and poultry unhairing according to any one of claims 2 to 3, characterized in that the receiving conveyor (2) is a lifting conveyor, the receiving conveyor (2) comprises a receiving conveyor support (26), a receiving conveyor conveying body arranged on the receiving conveyor support (26), a receiving hopper (22) arranged at the front end of the receiving conveyor support (26), and a chute (25) arranged at the rear end of the receiving conveyor support (26), and the chute (25) corresponds to the position of the soaking hopper (12).

10. The rosin dipping system for livestock and poultry unhairing according to claim 3, wherein the feeding conveyor (3) is a lifting conveyor, and the feeding conveyor (3) comprises a feeding conveyor support (33), a feeding conveyor conveying body arranged on the feeding conveyor support (33), and a material cover (36) arranged at the front end of the feeding conveyor conveying body.

Technical Field

The invention belongs to the field of food processing, and particularly relates to a rosin soaking device for livestock and poultry depilation.

Background

Currently, many pork processing manufacturers depilate pork with rosin, and the rosin is not industrial rosin but food-grade rosin meeting national standard GB 10287-2012. When the rosin is used for depilating pork products such as pig trotters, pig tails and the like, the pork needs to be soaked in the rosin, the traditional mode is completed manually, the efficiency is low, and the production requirement is difficult to meet.

Disclosure of Invention

In order to make up the defects of the prior art, the invention provides the technical scheme of the rosin soaking device for livestock and poultry unhairing.

A dip rosin system for beasts and birds moults, its characterized in that is including dipping rosin machine, dip rosin machine include rosin pond, rotate the drive mechanism who connects in the soaking hopper in rosin pond, be used for driving the upset of soaking hopper.

A soak rosin system for beasts and birds moult, its characterized in that still includes and receives the pond and receives the conveyer, soaks rosin machine and receives the pond and sets gradually, receives the conveyer and is used for carrying pork to the rosin pond, receives the pond and receives from soaking the pork that is poured down by soaking the hopper on the rosin machine.

The rosin dipping system for livestock and poultry unhairing is characterized by further comprising a feeding conveyor positioned at the front end of the receiving conveyor, wherein the feeding conveyor is used for conveying pork to the receiving conveyor.

The rosin soaking system for livestock and poultry unhairing is characterized in that the driving mechanism comprises a hopper overturning driving motor and a rotating shaft arranged on the soaking hopper, and the hopper overturning driving motor is in transmission connection with the rotating shaft.

The rosin soaking system for livestock and poultry unhairing is characterized in that the driving mechanism further comprises a rotating wheel in transmission connection with the hopper overturning driving motor, a connecting rod with one end in rotation connection with the rotating wheel and a rotating disc in transmission connection with the rotating shaft, and the other end of the connecting rod is in rotation connection with the rotating disc.

The rosin soaking system for livestock and poultry depilation is characterized in that the rotary table is a first gear, and a second gear meshed with the first gear is sleeved on the rotary shaft; a stroke sensor is arranged on the rosin pool, and two stroke contacts corresponding to the positions of the sensors are arranged on the first gear.

The rosin soaking system for livestock and poultry depilation is characterized in that a temperature sensor is arranged on a rosin pool.

The rosin soaking system for livestock and poultry depilation is characterized in that an upper housing is arranged at the upper end of a rosin pool, a front door curtain is arranged at the rear end of the upper housing, and the upper housing is communicated with the front door curtain up and down.

The rosin dipping system for livestock and poultry unhairing is characterized in that the receiving conveyor is a lifting conveyor and comprises a receiving conveyor support, a receiving conveyor conveying main body arranged on the receiving conveyor support, a receiving hopper arranged at the front end of the receiving conveyor support and a sliding groove arranged at the rear end of the receiving conveyor support, wherein the sliding groove corresponds to the position of the soaking hopper.

The rosin dipping system for livestock and poultry unhairing is characterized in that the feeding conveyor is a lifting conveyor and comprises a feeding conveyor support, a feeding conveyor conveying main body arranged on the feeding conveyor support and a material cover arranged at the front end of the feeding conveyor conveying main body.

Compared with the prior art, the automatic pork soaking machine has the advantages of reasonable design, compact structure, high efficiency and capability of automatically conveying and soaking pork, and can meet production requirements.

Drawings

FIG. 1 is a schematic structural view of the present invention;

FIG. 2 is a schematic structural view of a rosin soaking machine in the present invention;

FIG. 3 is an exploded view of a rosin soaking machine according to the present invention;

FIG. 4 is a schematic view of the internal structure of the rosin dipping machine according to the present invention;

FIG. 5 is a schematic view of the feed conveyor of the present invention;

fig. 6 is a schematic view of the receiving conveyor of the present invention.

In the figure: the rosin soaking machine 1, the heating device 10, the upper cover shell 11, the soaking hopper 12, the rotating shaft 121, the first gear 13, the stroke contact 131, the stroke sensor 14, the connecting rod 15, the rotating wheel 16, the rosin pool 17, the temperature sensor 18, the measuring rod 19, the front door curtain 110, the second gear 111, the hopper overturning driving motor 112, the receiving conveyor 2, the receiving conveyor conveying body 21, the receiving hopper 22, the receiving conveyor frame 23, the receiving conveyor baffle 24, the chute 25, the receiving conveyor bracket 26, the feeding conveyor 3, the feeding conveyor baffle 30, the feeding conveyor conveying body 31, the feeding conveyor frame 32, the feeding conveyor bracket 33, the material cover 36 and the receiving pool 4.

Detailed Description

The invention will be further explained with reference to the drawings.

As shown in the figure, the rosin soaking system for livestock and poultry unhairing comprises a feeding conveyor 3, a receiving conveyor 2, a rosin soaking machine 1 and a receiving pool 4 which are sequentially arranged according to a pork feeding direction.

The feeding conveyor 3 is a lifting conveyor, specifically, the feeding conveyor 3 comprises a feeding conveyor support 33, a feeding conveyor conveying main body 31 arranged on the feeding conveyor support 33, and a material cover 36 arranged at the front end of the feeding conveyor conveying main body, wherein the feeding conveyor conveying main body 31 comprises a feeding conveyor frame 32 arranged on a feeding conveyor bracket 33, a feeding conveyor driving motor arranged on the feeding conveyor frame 32, two feeding conveyor transmission shafts, a feeding conveyor chain type plate chain belt connected with the two transmission shafts in a matching way, and a group of feeding conveyor baffle plates 30 arranged on the feeding conveyor chain type plate chain belt, the feeding conveyor baffle plates 30 are used for pushing pork, the material cover 36 is of a net frame structure, used for covering pork, prevent that pork from dropping, feeding conveyor carries main part 31 wholly to be the slope form, can be with pork from the low department to the eminence of carrying. The structure and the working principle of the feeding conveyor conveying main body 31 are well known in the food processing field.

The receiving conveyor 2 is also a lifting conveyor, the receiving conveyor 2 comprises a receiving conveyor support 26, a receiving conveyor conveying main body 21 arranged on the receiving conveyor support 26, a receiving hopper 22 arranged at the front end of the receiving conveyor support 26 and a chute 25 arranged at the rear end of the receiving conveyor support 26, the lower end of the chute 25 is positioned in the rosin soaking machine 1 and corresponds to the position of the soaking hopper 12, and the receiving hopper 22 is positioned at the lower end of the rear end of the receiving conveyor conveying main body 21. The receiving conveyor conveying main body 21 comprises a receiving conveyor frame 23 arranged on a receiving conveyor support 26, a receiving conveyor driving motor arranged on the feeding conveyor frame 23, two receiving conveyor transmission shafts, a receiving conveyor chain type plate chain belt connected with the two transmission shafts in a matched mode, and a group of receiving conveyor baffles 24 arranged on the receiving conveyor chain type plate chain belt, and the receiving conveyor baffles 24 are used for pushing pork. The receiving conveyor conveying body 21 is inclined as a whole, and can convey pork from a low position to a high position. The structure and the working principle of the feeding conveyor main body 21 are well known in the food processing field.

The rosin soaking machine 1 comprises a rosin pool 17, a soaking hopper 12 rotationally connected to the rosin pool 17, and a driving mechanism for driving the soaking hopper 12 to turn over. The driving mechanism only needs to realize the function of driving the soaking hopper 12 to turn over. Specifically, the driving mechanism comprises a hopper overturning driving motor 112, a rotating shaft 121 arranged on the soaking hopper 12, a rotating wheel 16 in transmission connection with the hopper overturning driving motor 112, a connecting rod 15 with one end in rotation connection with the rotating wheel 16, a second gear 111 sleeved on the rotating shaft 121, and a first gear 13 rotatably arranged on the side wall of the rosin pool 17 in a known manner, wherein the other end of the connecting rod is rotatably connected with the first gear 13, the first gear 13 is meshed with the second gear 111, a stroke sensor 14 is arranged on the rosin pool 17, the stroke sensor 14 is preferably a photoelectric sensor, and two stroke contacts 131 corresponding to the positions of the formed sensors 14 are arranged on the first gear 13. Wherein, the rotating wheel 16 is directly sleeved on the output shaft of the hopper turning driving motor 112, the hopper turning driving motor 112 is a speed reducing motor, the first gear 13 is installed outside the sidewall of the rosin pool 17 through a bearing, a bearing seat, a shaft and other components, the rotating wheel 16, the connecting rod 15 and the first gear 13 form a crank rocker mechanism, the hopper turning driving motor 112 drives the rotating wheel 16 to rotate, the rotating wheel 16 drives the connecting rod 15 to rotate, the connecting rod 15 drives the first gear 13 to do local reciprocating rotation, correspondingly, the second gear 111 and the rotating shaft 121 also do local reciprocating rotation with the first gear 13, and further drive the soaking hopper 12 to turn back and forth by 90 degrees ceaselessly, in the process, two stroke contacts on the first gear 13 respectively correspond to the vertical state and the horizontal state of the soaking hopper 12, when the soaking hopper 12 turns back to the vertical state, one of the stroke contacts triggers the photoelectric sensor, the photoelectric sensor sends a command to the controller, the controller controls the hopper overturning driving motor 112 to stop working, when the soaking hopper 12 is in a horizontal state, the other stroke contact triggers the photoelectric sensor, the photoelectric sensor sends a command to the controller, and the controller controls the hopper overturning driving motor 112 to stop working.

In addition, a housing is arranged outside the driving mechanism, the rotating shaft 121 is rotatably connected to the rear upper end of the rosin pool 17 through a bearing seat, and a bearing seat housing is arranged on the bearing seat. The upper end of the rosin pool 17 is provided with an upper cover shell 11, the rear end of the upper cover shell 11 is provided with a front door curtain 110, the upper cover shell 11 and the front door curtain 110 are communicated up and down, and when the pork is poured out by overturning the soaking hopper 12, the front door curtain 110 can limit the pork so that the pork can smoothly fall into the receiving pool 4. The rosin pool 17 is also provided with a temperature sensor 18, a heating device 10 and a measuring rod 19, and the heating device 10 is preferably an electric heating tube.

The receiving tank 4 is a conventional tank body, a worker carries out rosin removal work on pork in the receiving tank 4, and the pork is transferred to the next procedure after rosin removal.

The working process is as follows: pork products such as pig trotters, pig tails and the like are placed at the front end of a feeding conveyor 3, the pork products are conveyed to a receiving conveyor 2 through the feeding conveyor 3, then the pork products are conveyed into a rosin pool 17 through the receiving conveyor 2 and just fall onto a soaking hopper 12, inclined baffle plates close to the inner wall of the rosin pool 17 are arranged on two sides of the soaking hopper 12, the pork can be guaranteed to fall into the soaking hopper 12 completely, rosin in the rosin pool 17 is heated by a heating device in advance, a driving mechanism drives the soaking hopper 12 to turn over 90 degrees after soaking is completed, the pork in the soaking hopper 12 is poured into a receiving pool 4 completely, workers carry out rosin removing work on the pork in the receiving pool 4, and the pork is transferred to the next process after rosin is removed.

The whole process of the invention is controlled by a controller, and the controller can be a PLC.

Finally, it should be noted that: the above embodiments are only used to illustrate the technical solution of the present invention, and not to limit the same; while the invention has been described in detail and with reference to the foregoing embodiments, it will be understood by those skilled in the art that: the technical solutions described in the foregoing embodiments may still be modified, or some or all of the technical features may be equivalently replaced; and the modifications or the substitutions do not make the essence of the corresponding technical solutions depart from the scope of the technical solutions of the embodiments of the present invention.

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