CN218307763U - Quantitative adding device for sausage casing production - Google Patents

Quantitative adding device for sausage casing production Download PDF

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Publication number
CN218307763U
CN218307763U CN202222218392.1U CN202222218392U CN218307763U CN 218307763 U CN218307763 U CN 218307763U CN 202222218392 U CN202222218392 U CN 202222218392U CN 218307763 U CN218307763 U CN 218307763U
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China
Prior art keywords
casing
inboard
container
storehouse
bin
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CN202222218392.1U
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Chinese (zh)
Inventor
陈永辉
张彦生
胡国启
代学峰
袁立峰
贾玲霞
陈国锋
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Luohe Lianbang Chemical Co Ltd
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Luohe Lianbang Chemical Co Ltd
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Abstract

The utility model discloses a casing production is with ration adding device, which comprises a housin, the front of casing is equipped with volume storehouse, the upper end symmetry fixed mounting of casing has the material jar, the lower extreme of material jar is equipped with the pipe, the lower extreme of pipe stretches into volume storehouse inboard, the inboard in volume storehouse is equipped with slewing mechanism, slewing mechanism's the outside is equipped with the base. The above structure is adopted in the utility model, the material jar passes through after the pipe case container goes into raw materials or auxiliary material, after raw materials and auxiliary material get into the container that corresponds, owing to set up the side bearer on the base, the container passes through the slider and slides on the slide bar of side bearer, slider and side bearer inboard set up the spring simultaneously, the vibrating motor of cooperation container lower extreme, can conveniently make raw materials or auxiliary material in the container keep the level form, conveniently cooperate the scale to observe the use amount condition, unnecessary part can be discharged through the bin outlet that has the inserted sheet, thereby can improve the efficiency of ration volume of adding ratio.

Description

Quantitative adding device for sausage casing production
Technical Field
The utility model belongs to the field of sausage casing production, in particular to a quantitative adding device for sausage casing production.
Background
The collagen casing is made up by using collagen fibre of pig and cow leather as raw material, adding auxiliary material, making chemical and mechanical treatment so as to obtain the collagen "dough-like material", extruding, air-charging and forming, drying and heating and forming so as to obtain the invented edible artificial casing.
However, in the prior art, the raw materials and auxiliary materials in a quantitative ratio are often required to be mixed in the production process of the sausage casing, but in the prior art, the quantitative adding device for producing the sausage casing has no vibration function, and is troublesome to shake and homogenize after being manually introduced into a measuring container, and then the observed quantity is relatively large, and the conventional quantitative adding device for producing the sausage casing generally only has the quantitative adding function, and is relatively low in efficiency because the raw materials and the auxiliary materials are mixed by a single machine after the quantitative adding function is completed.
SUMMERY OF THE UTILITY MODEL
To the problem mentioned in the background art, the utility model aims to provide a casing production is with ration adding device to solve the problem mentioned in the above background art.
The above technical object of the present invention can be achieved by the following technical solutions:
the utility model provides a sausage casing production is with ration adding device, includes the casing, the front of casing is equipped with the measuring bin, the upper end symmetry fixed mounting of casing has the material jar, the lower extreme of material jar is equipped with the pipe, the lower extreme of pipe stretches into the measuring bin inboard, the inboard in measuring bin is equipped with slewing mechanism, slewing mechanism's the outside is equipped with the base, the upper end of base is equipped with vibration mechanism, vibration mechanism's upper end is equipped with the container, the positive right side of container is equipped with the scale, the positive left side of container is equipped with the bin outlet, the inboard of casing is equipped with mixes the storehouse, the upper end and the measuring bin that mix the storehouse communicate with each other, the inboard that mixes the storehouse is equipped with rabbling mechanism, the front of casing is equipped with the standing groove, the lower extreme that mixes the storehouse is equipped with the discharging pipe, the lower extreme of discharging pipe is established in the standing groove inboard.
Further, as a preferred technical scheme, the lower end of the measuring bin is provided with a guide hopper, and the lower end of the guide hopper is communicated with the mixing bin.
Further, as preferred technical scheme, vibration mechanism includes the side bearer, side bearer symmetry fixed mounting is in the base upper end, the inboard fixed mounting in offside of side bearer has the slide bar, the equal fixedly connected with slider in the left and right sides of container, the container passes through slider sliding connection outside the slide bar, be equipped with the spring between slider and the side bearer, the middle part of spring is run through to the one end of slide bar, the lower extreme of container is equipped with vibrating motor.
Further, as a preferable technical solution, the container is provided right below the duct.
Further, as a preferred technical scheme, slewing mechanism includes the axostylus axostyle, the axostylus axostyle rotates to be connected at the measuring bin inboard, the one end fixed mounting of axostylus axostyle is inside the base, the inboard of casing is equipped with the installation cavity, the inboard fixed mounting of installation cavity has first motor, the output shaft tip fixed mounting of first motor has first gear, the inside fixed mounting that the one end of axostylus axostyle stretched into the installation cavity has the second gear, first gear and second gear are the meshing connection.
Further, as a preferred technical scheme, a shaft sleeve is embedded in the inner side of the front face of the measuring bin, and one end of the shaft rod is rotatably connected to the front face of the measuring bin through the shaft sleeve.
Further, as preferred technical scheme, rabbling mechanism includes the unit room, the unit room is established at the casing inboard, the inboard fixed mounting of unit room has the second motor, the inboard rotation in mixing the storehouse is connected with the agitator, the right-hand member axial region of agitator stretches into the output shaft tip fixed connection of the inside and second motor of unit room.
Further, as preferred technical scheme, the inside bottom of mixing storehouse is the bevel.
Further, as a preferred technical scheme, a shell door is arranged on the front face of the shell, and the shell door covers the measuring bin opening.
To sum up, the utility model discloses mainly have following beneficial effect:
after raw materials or auxiliary materials are fed into a material tank through a guide pipe box container, the raw materials and the auxiliary materials are fed into corresponding containers, and the side frames are arranged on the base, so that the containers slide on slide rods of the side frames through slide blocks, springs are arranged on the inner sides of the slide blocks and the side frames, and the springs are matched with a vibration motor at the lower end of the container, so that the raw materials or the auxiliary materials in the containers can be kept in a horizontal state conveniently, a scale can be matched conveniently to observe the use amount condition, and redundant parts can be discharged through a discharge port with an insert piece, so that the quantitative adding amount proportioning efficiency can be improved;
secondly, the shaft lever rotates on the measuring bin, one end of the shaft lever is connected with the base, the other end of the shaft lever extends into the mounting cavity to be provided with a second gear, and a first motor in the mounting cavity is linked with the second gear through a first gear at an output end, so that raw and auxiliary materials in the container can be conveniently guided into a guide hopper of the measuring bin without manual material pouring;
the third, utilize the second motor output in the unit room to drive the agitator and rotate in mixing the storehouse after raw materials and mixture enter into mixing the storehouse, can mix the raw and auxiliary materials to automatically obtain the mixture that stirs after ration is added the volume ratio and is accomplished, thereby can facilitate the use.
Drawings
Fig. 1 is a perspective view of the present invention;
fig. 2 is a schematic structural diagram of the present invention;
fig. 3 is a schematic structural view of the vibration mechanism of the present invention;
fig. 4 is a side sectional view of the rotating mechanism of the present invention.
Reference numerals: 1. the device comprises a shell, 2, a measuring bin, 3, a charging bucket, 4, a guide pipe, 5, a base, 6, a container, 7, a vibration mechanism, 701, a side frame, 702, a sliding rod, 703, a spring, 704, a vibration motor, 705, a sliding block, 8, a rotation mechanism, 801, a shaft rod, 802, a first gear, 803, a mounting cavity, 804, a first motor, 805, a second gear, 9, a mixing bin, 10, a guide hopper, 11, a stirring mechanism, 111, a stirrer, 112, a machine room, 113, a second motor, 14, a discharging pipe, 15, a placing groove, 16, a scale, 17, a discharging port, 18, a shaft sleeve, 19 and a shell door.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Example 1
Referring to fig. 1-4, the quantitative adding device for casing production described in this embodiment includes a casing 1, a measuring bin 2 is disposed on the front of the casing 1, a charging bucket 3 is symmetrically and fixedly mounted on the upper end of the casing 1, a conduit 4 is disposed at the lower end of the charging bucket 3, the lower end of the conduit 4 extends into the measuring bin 2, a rotating mechanism 8 is disposed inside the measuring bin 2, a base 5 is disposed outside the rotating mechanism 8, a vibrating mechanism 7 is disposed on the upper end of the base 5, a container 6 is disposed on the upper end of the vibrating mechanism 7, a graduated scale 16 is disposed on the right side of the front of the container 6, a discharge port 17 is disposed on the left side of the front of the container 6, a mixing bin 9 is disposed inside the casing 1, the upper end of the mixing bin 9 is communicated with the measuring bin 2, a stirring mechanism 11 is disposed inside the mixing bin 9, a placement groove 15 is disposed on the front of the casing 1, a discharge pipe 14 is disposed at the lower end of the mixing bin 9, and a lower end of the discharge pipe 14 is disposed inside the placement groove 15; the lower end of the measuring bin 2 is provided with a guide hopper 10, the lower end of the guide hopper 10 is communicated with the mixing bin 9, and quantitative raw materials and auxiliary materials can be conveniently collected in a centralized manner by arranging the guide hopper 10 at the lower end of the measuring bin 2; the vibration mechanism 7 comprises a side frame 701, the side frame 701 is symmetrically and fixedly arranged at the upper end of a base 5, a sliding rod 702 is fixedly arranged on the inner side of the opposite side of the side frame 701, sliding blocks 705 are fixedly connected to the left side and the right side of the container 6, the container 6 is connected to the outer portions of the sliding rods 702 in a sliding mode through the sliding blocks 705, springs 703 are arranged between the sliding blocks 705 and the side frame 701, one end of each sliding rod 702 penetrates through the middle of the corresponding spring 703, a vibration motor 704 is arranged at the lower end of the container 6, after raw materials and auxiliary materials enter the corresponding container 6 through the vibration mechanism 7, the side frame 701 is arranged on the base 5, the container 6 slides on the sliding rods 702 of the side frame 701 through the sliding blocks 705, meanwhile, the springs 703 are arranged on the inner sides of the sliding blocks 705 and the side frame 701, and the vibration motor 704 at the lower end of the container 6 is matched, so that the raw materials or the auxiliary materials in the container 6 can be kept horizontal; the container 6 is arranged right below the conduit 4, and the material can be conveniently added by arranging the container 6 right below the conduit 4; the bottom of the inner side of the mixing bin 9 is in an inclined plane shape, and the bottom of the inner side of the mixing bin 9 is arranged in the inclined plane shape, so that material can be conveniently guided; the front surface of the shell 1 is provided with a shell door 19, the shell door 19 covers the opening of the measuring bin 2, the measuring bin 2 can be conveniently covered by arranging the shell door 19 on the front surface of the shell 1, the shell door 19 can be closed when mixing is carried out, and additive is placed and diffused out; a control module is arranged outside the shell 1, so that technicians can conveniently control the device, and control valves are arranged on the guide pipe 4 and the discharge pipe 14, so that the discharge is controlled through the control module; still magnetic force is connected with the inserted sheet on the bin outlet 17, can conveniently carry out the blowing to unnecessary material.
Example 2
Referring to fig. 2 and 4, on the basis of embodiment 1, in order to achieve the purpose of conveniently pouring and mixing materials, in this embodiment, an innovative design is performed on a rotating mechanism 8, specifically, the rotating mechanism 8 includes a shaft 801, the shaft 801 is rotatably connected to the inner side of the measuring bin 2, one end of the shaft 801 is fixedly installed inside the base 5, the inner side of the housing 1 is provided with an installation cavity 803, the inner side of the installation cavity 803 is fixedly installed with a first motor 804, the end of an output shaft of the first motor 804 is fixedly installed with a first gear 802, one end of the shaft 801 extends into the interior of the installation cavity 803 and is fixedly installed with a second gear 805, the first gear 802 and the second gear 805 are in meshing connection, by providing the rotating mechanism 8, the shaft 801 rotates on the measuring bin 2, one end of the shaft 801 is connected to the base 5, while the other end of the shaft 801 extends into the installation cavity 803 and is installed with a second gear 805, the first motor 804 in the installation cavity 803 is linked with the second gear 805 through the first gear 802 at the output end, so as to conveniently guide hopper 10 for guiding raw and auxiliary materials in the container 6 into the measuring bin 2; the shaft sleeve 18 is inlaid in the inner side of the front face of the measuring bin 2, one end of the shaft rod 801 is rotatably connected to the front face of the measuring bin 2 through the shaft sleeve 18, and the shaft rod 801 can rotate on the measuring bin 2 by arranging the shaft sleeve 18 on the front face of the measuring bin 2.
Example 3
Referring to fig. 2, this embodiment is on the basis of embodiment 1, in order to reach the purpose of conveniently mixing raw materials and auxiliary materials, this embodiment has carried out innovative design to rabbling mechanism 11, specifically, rabbling mechanism 11 includes computer room 112, computer room 112 is established at the casing 1 inboard, the inboard fixed mounting of computer room 112 has second motor 113, the inboard rotation of mixing storehouse 9 is connected with agitator 111, the right-hand member axial region of agitator 111 stretches into computer room 112 inside and the output shaft end fixed connection of second motor 113, through setting up rabbling mechanism 11, utilize the second motor 113 output in computer room 112 to drive agitator 111 and rotate in mixing storehouse 9 after raw materials and mixture enter into mixing storehouse 9, can conveniently mix raw and auxiliary materials.
The use principle and the advantages are as follows: when the material mixing box is used, after raw materials or auxiliary materials are put into the material tank 3 through the guide pipe 4 and the container 6, after the raw materials and the auxiliary materials enter the corresponding container 6, the side frame 701 is arranged on the base 5, the container 6 slides on the sliding rod 702 of the side frame 701 through the sliding block 705, meanwhile, the sliding block 705 and the inner side of the side frame 701 are provided with the spring 703, the vibration motor 704 at the lower end of the container 6 is matched, so that the raw materials or the auxiliary materials in the container 6 can be kept horizontal, the use amount situation can be observed conveniently by matching with the scale 16, the redundant parts can be discharged through the discharge port 17 with the inserting piece, then, the shell door 19 is closed, one end of the shaft rod 801 is connected with the base 5, the other end of the shaft rod 801 extends into the installation cavity 803 to be provided with the second gear 805, the first motor 804 in the installation cavity 803 is linked with the second gear 805 through the first gear 802 of the discharge pipe, so that the raw and auxiliary materials in the container 6 can be conveniently guided into the guide hopper 10 of the measuring cavity 2 and then enter the mixing cabin 9, the second motor 113 in the machine room 112 drives the stirrer 111 to rotate in the mixing cabin 9, so that the raw and the auxiliary materials can be conveniently mixed, the auxiliary materials can be mixed, finally, the collecting box 15 can be directly placed in the collecting box can be directly placed into the collecting box 14.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.

Claims (9)

1. A quantitative adding device for sausage casing production is characterized in that: including casing (1), the front of casing (1) is equipped with quanta storehouse (2), the upper end symmetry fixed mounting of casing (1) has material jar (3), the lower extreme of material jar (3) is equipped with pipe (4), the lower extreme of pipe (4) stretches into quanta storehouse (2) inboard, the inboard of quanta storehouse (2) is equipped with slewing mechanism (8), the outside of slewing mechanism (8) is equipped with base (5), the upper end of base (5) is equipped with vibration mechanism (7), the upper end of vibration mechanism (7) is equipped with container (6), the front right side of container (6) is equipped with scale (16), the front left side of container (6) is equipped with bin outlet (17), the inboard of casing (1) is equipped with mixes storehouse (9), the upper end and quanta storehouse (2) of mixing storehouse (9) communicate with each other, the inboard of mixing storehouse (9) is equipped with rabbling mechanism (11), the front of casing (1) is equipped with standing groove (15), the lower extreme of mixing storehouse (9) is equipped with discharging pipe (14), establish at discharging pipe (15) inboard.
2. A quantitative dosing device for casing production according to claim 1 characterised in that: the lower end of the measuring bin (2) is provided with a guide hopper (10), and the lower end of the guide hopper (10) is communicated with the mixing bin (9).
3. A quantitative dosing device for casing production according to claim 1, characterized in that: the vibrating mechanism (7) comprises side frames (701), the side frames (701) are symmetrically and fixedly installed at the upper end of a base (5), sliding rods (702) are fixedly installed on the inner sides of the opposite sides of the side frames (701), sliding blocks (705) are fixedly connected to the left side and the right side of the container (6), the container (6) is connected to the outer portions of the sliding rods (702) in a sliding mode through the sliding blocks (705), springs (703) are arranged between the sliding blocks (705) and the side frames (701), the middle of the springs (703) is penetrated through one ends of the sliding rods (702), and vibrating motors (704) are arranged at the lower ends of the container (6).
4. A quantitative dosing device for casing production according to claim 1 characterised in that: the container (6) is arranged right below the guide pipe (4).
5. A quantitative dosing device for casing production according to claim 1 characterised in that: slewing mechanism (8) include axostylus axostyle (801), axostylus axostyle (801) rotate to be connected in measuring storehouse (2) inboard, the one end fixed mounting of axostylus axostyle (801) is inside base (5), the inboard of casing (1) is equipped with installation cavity (803), the inboard fixed mounting of installation cavity (803) has first motor (804), the output shaft tip fixed mounting of first motor (804) has first gear (802), the inside fixed mounting that the one end of axostylus axostyle (801) stretched into installation cavity (803) has second gear (805), first gear (802) and second gear (805) are the meshing connection.
6. A dosing device for casing production according to claim 5, characterised in that: a shaft sleeve (18) is embedded in the inner side of the front face of the measuring bin (2), and one end of the shaft rod (801) is rotatably connected to the front face of the measuring bin (2) through the shaft sleeve (18).
7. A quantitative dosing device for casing production according to claim 1 characterised in that: rabbling mechanism (11) are including room (112), it is inboard at casing (1) to establish room (112), the inboard fixed mounting of room (112) has second motor (113), the inboard rotation of mixing storehouse (9) is connected with agitator (111), the right-hand member axial region of agitator (111) stretches into the output shaft tip fixed connection of the inside and second motor (113) of room (112).
8. A quantitative dosing device for casing production according to claim 1 characterised in that: the bottom of the inner side of the mixing bin (9) is in an inclined plane shape.
9. A quantitative dosing device for casing production according to claim 1 characterised in that: the front surface of the shell (1) is provided with a shell door (19), and the shell door (19) covers the opening of the measuring bin (2).
CN202222218392.1U 2022-08-23 2022-08-23 Quantitative adding device for sausage casing production Active CN218307763U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202222218392.1U CN218307763U (en) 2022-08-23 2022-08-23 Quantitative adding device for sausage casing production

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202222218392.1U CN218307763U (en) 2022-08-23 2022-08-23 Quantitative adding device for sausage casing production

Publications (1)

Publication Number Publication Date
CN218307763U true CN218307763U (en) 2023-01-17

Family

ID=84883882

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202222218392.1U Active CN218307763U (en) 2022-08-23 2022-08-23 Quantitative adding device for sausage casing production

Country Status (1)

Country Link
CN (1) CN218307763U (en)

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