CN214076352U - High-efficient compounding device - Google Patents

High-efficient compounding device Download PDF

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Publication number
CN214076352U
CN214076352U CN202121785183.4U CN202121785183U CN214076352U CN 214076352 U CN214076352 U CN 214076352U CN 202121785183 U CN202121785183 U CN 202121785183U CN 214076352 U CN214076352 U CN 214076352U
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China
Prior art keywords
hollow shaft
box
frame
gear
box body
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CN202121785183.4U
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Chinese (zh)
Inventor
杜晓宏
杨大江
柳泉滋
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Shandong Nabaiwei Food Co ltd
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Shandong Nabaiwei Food Co ltd
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Abstract

The utility model discloses a high-efficient compounding device relates to compounding device technical field, including frame and box, the top of box is equipped with the opening, wherein, be connected with first hollow shaft and second hollow shaft on the double-phase offside of bottom half respectively, first hollow shaft and the coaxial setting of second hollow shaft, and the inner chamber of intercommunication box, first hollow shaft rotates with the second hollow shaft and connects in the frame, all install the valve on first hollow shaft and the second hollow shaft, the outer end of first hollow shaft is connected with auxiliary material liquid feed system or washing liquid feed system, install the first hollow shaft pivoted power component of drive in the frame, the cartridge has the box with a net in the box, the opening part can be dismantled and be connected with the case lid, the inboard of case lid is equipped with elastic mechanism, elastic mechanism elastic support is between case lid and box with a net.

Description

High-efficient compounding device
Technical Field
The utility model relates to a compounding device technical field, in particular to high-efficient compounding device.
Background
In the food industry, need mix raw materials and auxiliary material, the raw materials after the mixture reentrants subsequent manufacturing procedure, and present hybrid mode adopts the cylinder compounding, and the operation personnel need pour raw materials and auxiliary material into the cylinder earlier, then restart the cylinder compounding, take out the raw materials after mixing again, and this mode has following problem:
1. the loading and unloading of the roller are complicated, and the working efficiency is low;
2. the drum is not easy to clean.
Disclosure of Invention
To above defect, the utility model aims at providing a high-efficient compounding device aims at solving the technical problem of compounding inefficiency among the prior art.
In order to solve the technical problem, the technical scheme of the utility model is that:
the utility model provides a high-efficient compounding device, which comprises a frame and a box body, the top of box is equipped with the opening, wherein, be connected with first hollow shaft and second hollow shaft on the double-phase offside of bottom half respectively, first hollow shaft and the coaxial setting of second hollow shaft, and the inner chamber of intercommunication box, first hollow shaft rotates with the second hollow shaft to be connected in the frame, all install the valve on first hollow shaft and the second hollow shaft, the outer end of first hollow shaft is connected with auxiliary material liquid feed system or washing liquid feed system, install the first hollow shaft pivoted power component of drive in the frame, the box interpolation has the box with a net, the opening part can be dismantled and be connected with the case lid, the inboard of case lid is equipped with elastic mechanism, elastic mechanism elastic support is between.
The two boxes are horizontally arranged at intervals, and the power assembly drives the two boxes to synchronously and reversely swing.
Wherein, elastic mechanism includes sliding sleeve and fixing base, and sliding connection has the slider in the sliding sleeve, and the tip of sliding sleeve is equipped with the spacing ring that is used for limiting slide block, and sliding connection has the guide post in the spacing ring, the one end and the slider fixed connection of guide post, the other end and the fixing base fixed connection of guide post, cup jointed the spring of elastic support between spacing ring and fixing base on the guide post.
Wherein, the bottom of box is the toper.
The power assembly comprises a hydraulic cylinder, a rack block, a first gear and a second gear, the rack block is vertically connected to the rack in a sliding mode, a driving shaft of the hydraulic cylinder is fixedly connected to the bottom end of the rack block, the first gear and the second gear are coaxially and fixedly connected to the two first hollow shafts respectively, and the first gear and the second gear are respectively connected to two opposite sides of the rack block in a meshed mode.
Wherein, the top of rack piece is fixedly connected with the slide bar, is equipped with the slide opening in the frame, and the slide bar sliding connection is in the slide opening.
Wherein, install bin and apron in the frame, power component is located the install bin, is equipped with first joint on the apron, and first joint and first hollow shaft rotary seal are connected.
Wherein, still include the transportation dolly that is used for box with a net to follow the dismouting in the box.
After the technical scheme is adopted, the beneficial effects of the utility model are that:
1. when the box body is driven to swing by the power assembly, the auxiliary materials in the box body flow at the two ends of the box body along with the swinging of the box body, the auxiliary materials can be continuously mixed with the raw materials in the flowing process, and meanwhile, the net cage slides in the box body in a reciprocating manner, so that the raw materials can be continuously turned over, and the mixing efficiency is further improved;
2. the discharge of the redundant moisture of the raw materials and the discharge of the redundant auxiliary materials after the raw materials are mixed can be realized through two valves at the bottom of the box body;
3. the efficient cleaning of the box body can be realized through the two valves at the bottom of the box body.
Drawings
FIG. 1 is a schematic view of a three-dimensional structure of the high-efficiency mixing device of the present invention when disassembled;
FIG. 2 is a schematic view of a three-dimensional structure of the high-efficiency mixing device of the present invention during operation;
FIG. 3 is a schematic view of the connection of the cage and the cage of FIG. 1;
FIG. 4 is a schematic view in section of the resilient mechanism of FIG. 1;
in the figure, a frame 1, an installation box 10, a cover plate 11, a first joint 12, a second joint 13, a slide hole 14, a power assembly 2, a hydraulic cylinder 20, a rack block 21, a first gear 22, a second gear 23, a slide rod 24, a box body 3, a box cover 30, a first hollow shaft 31, a first valve 310, a second hollow shaft 32, a second valve 320, a net cage 4, an elastic mechanism 5, a slide sleeve 50, a limit ring 51, a fixed seat 52, a slide block 53, a guide column 54, a spring 55 and a transfer trolley 6 are arranged.
Detailed Description
The present invention will be further explained with reference to the accompanying drawings.
The position that involves in this specification all uses the utility model relates to a position when high-efficient compounding device normal work is the standard, does not restrict its storage and position when transporting, only represents relative position relation, does not represent absolute position relation.
As shown in fig. 1, 2, 3 and 4, the efficient mixing device includes a frame 1 and a box 3, the top of the box 3 is provided with an opening, the box 3 is detachably connected with a box cover 30, in this embodiment, the box 3 and the box cover 30 are connected by 4 butterfly bolts, the box cover 30 is used for being fastened on the opening in a sealing manner, the bottom of the box 3 is conical, two opposite sides of the bottom of the box 3 are respectively connected with a first hollow shaft 31 and a second hollow shaft 32, the first hollow shaft 31 and the second hollow shaft 32 are coaxially arranged and are communicated with an inner cavity of the box 3, the first hollow shaft 31 and the second hollow shaft 32 are rotatably connected on the frame 1 through a bearing, the first hollow shaft 31 is provided with a first valve 310, the second hollow shaft 32 is provided with a second valve 320, preferably, the first valve 310 and the second valve 320 are both electromagnetic valves, the outer end of the first hollow shaft 31 is connected with an auxiliary material liquid supply system or a cleaning liquid supply system, the frame 1 is provided with a power assembly 2 for driving the first hollow shaft 31 to rotate, a net cage 4 is inserted in the box body 3, and the net cage 4 is slidably inserted in the box body 3. The inner side of the box cover 30 is provided with an elastic mechanism 5, the elastic mechanism 5 is elastically supported between the box cover 30 and the net cage 4, and the elastic mechanism 5 is used for damping vibration when the net cage 4 slides in the box body 3.
In use, the box 3 in the initial state is in a flat state, the first valve 310 is closed, and the second valve 320 is opened.
Firstly, filling raw materials into a net cage 4, wherein the filling amount is 80% -90% of the capacity of the net cage 4, then inserting the net cage 4 into a box body 3, buckling a box cover 30 on an opening, and locking the box cover through a butterfly bolt;
secondly, controlling the power assembly 2 to drive the box body 3 to swing for 10-15 times, wherein the swing angle is 45-90 degrees, then rotating the box body 3 to a vertical state, enabling the opening to face upwards, and finally standing for 5-10 min, so that redundant water in the raw materials is discharged through the second hollow shaft 32;
in the third step, the second valve 320 is closed, the first valve 310 is opened, the auxiliary material liquid supply system delivers the auxiliary material into the tank 3 through the first hollow shaft 31, and then the first valve 310 is closed.
And fourthly, controlling the power assembly 2 to drive the box body 3 to swing for 15-20 min at the swing speed of 10-20 r/min, then rotating the box body 3 to be in a vertical state, enabling the opening to face upwards, standing for 5-8 min, and then opening the second valve 320 to enable redundant auxiliary materials to be led out of the box body 3 through the second hollow shaft 32.
And fifthly, controlling the power assembly 2 to drive the box body 3 to rotate to a flat position, rotating the butterfly bolt, detaching the box cover 30, taking out the net cage 4, and transferring to the next procedure to complete the mixing of the raw materials and the auxiliary materials.
Fifthly, mounting the tank cover 30 on the tank body 3, closing the second valve 320, opening the first valve 310, conveying the cleaning liquid into the tank body 3 through the first hollow shaft 31 by the cleaning liquid supply system, and then closing the first valve 310;
and sixthly, controlling the power assembly 2 to drive the box body 3 to swing for 5-10 min, then rotating the box body 3 to a vertical state, enabling the opening to face upwards, standing for 3-5 min, then opening the second valve 320, and guiding the cleaning liquid out of the box body 3 through the second hollow shaft 32, thereby completing cleaning of the box body 3.
In the use, the auxiliary material that is located box 3 flows at the both ends of box 3 along with the swing of box 3, and the auxiliary material can be mixed with the raw materials continuously in the flow process, and box with a net 4 is reciprocal to be slided in box 3 simultaneously for the raw materials can be continuously stirred, thereby further improves mixing efficiency.
Preferably, two boxes 3 are arranged, the two boxes 3 are horizontally arranged at intervals, and the power assembly 2 drives the two boxes 3 to synchronously and reversely swing. The two boxes 3 are controlled by one power assembly 2 to swing in the areas on the two sides, so that the two boxes 3 can synchronously work, and the production efficiency is effectively improved.
Preferably, the elastic mechanism 5 includes a sliding sleeve 50, a limiting ring 51, a fixed seat 52, a sliding block 53, a guide post 54 and a spring 55, the fixed seat 52, the sliding block 53 and the guide post 54 are coaxially and integrally formed, the guide post 54 is connected between the fixed seat 52 and the sliding block 53, the sliding block 53 is slidably connected in the sliding sleeve 50, the limiting ring 51 is slidably sleeved on the guide post 54, the limiting ring 51 is fixed on the sliding sleeve 50 through a bolt, and the spring 55 is sleeved on the guide post 54 and elastically supported between the limiting ring 51 and the fixed seat 52. The box cover 30 is internally provided with a mounting hole, the fixed seat 52 is inserted in the mounting hole and fixed by a bolt, one end of the sliding sleeve 50, which is not connected with the limit ring 51, is pressed on the net cage 4, and the sliding sleeve 50 and the sliding block 53 slide relatively to drive the spring 55 to compress, so that the elastic mechanism 5 can elastically support the net cage 4, and the abrasion caused by the rigid contact between the box body 3 and the net cage can be reduced.
Preferably, the power assembly 2 includes a hydraulic cylinder 20, a rack block 21, a first gear 22 and a second gear 23, the rack block 21 is vertically slidably connected to the frame 1, the hydraulic cylinder 20 is located under the rack block 21, a driving shaft of the hydraulic cylinder 20 is fixedly connected to a bottom end of the rack block 21, the first gear 22 and the second gear 23 are respectively coaxially and fixedly connected to the first hollow shafts 31 corresponding to the two cases 3, the first gear 22 and the second gear 23 are respectively engaged and connected to two opposite sides of the rack block 21, the rack block 21 is driven by the hydraulic cylinder 20 to lift and lower so as to drive the first gear 22 and the second gear 23 to synchronously and reversely rotate, and thus the two cases 3 are driven by one power assembly 2 to synchronously and reversely swing.
Furthermore, a sliding rod 24 is fixedly connected to the top end of the rack block 21, a sliding hole 14 is formed in the frame 1, and the sliding rod 24 is slidably connected in the sliding hole 14. When the rack block 21 moves vertically, the sliding rod 24 slides synchronously in the sliding hole 14, thereby improving the stability of the action of the rack block 21.
Preferably, the rack 1 is provided with an installation box 10 and a cover plate 11, the power assembly 2 is located in the installation box 10, the cover plate 11 is provided with a first joint 12, the first joint 12 is connected with the first hollow shaft 31 through a rotary sealing ring, the rack 1 is further provided with a second joint 13, and the second joint 13 is connected with the second hollow shaft 32 through a rotary sealing ring.
The transfer trolley 6 is used for carrying the net cage 4, the trundles of the transfer trolley 6 have a self-locking function, and the table surface of the transfer trolley 6 is flush with the bottom surface of the box 3 in a flat state, so that an operator can push the net cage 4 into the box 3 from the transfer trolley 6 or pull the net cage 4 out of the box 3 to the operation trolley, and the operation efficiency is improved.
The present invention is not limited to the above specific embodiments, and those skilled in the art can make various changes without creative labor from the above conception, and all the changes fall within the protection scope of the present invention.

Claims (8)

1. An efficient mixing device comprises a frame and a box body, wherein the top of the box body is provided with an opening, it is characterized in that a first hollow shaft and a second hollow shaft are respectively connected on two opposite sides of the bottom of the box body, the first hollow shaft and the second hollow shaft are coaxially arranged, and is communicated with the inner cavity of the box body, the first hollow shaft and the second hollow shaft are rotationally connected on the frame, valves are respectively arranged on the first hollow shaft and the second hollow shaft, the outer end of the first hollow shaft is connected with an auxiliary material liquid supply system or a cleaning liquid supply system, a power assembly for driving the first hollow shaft to rotate is arranged on the frame, a net cage is inserted in the box body, the box cover is detachably connected to the opening, an elastic mechanism is arranged on the inner side of the box cover, and the elastic mechanism is elastically supported between the box cover and the net cage.
2. A high-efficiency mixing device as claimed in claim 1, wherein there are two of said boxes, two of said boxes are horizontally spaced, and said power assembly drives said two boxes to synchronously swing in opposite directions.
3. A high-efficiency mixing device as claimed in claim 1, wherein the elastic mechanism comprises a sliding sleeve and a fixed seat, a sliding block is slidably connected in the sliding sleeve, a limit ring for limiting the sliding block is arranged at an end of the sliding sleeve, a guide post is slidably connected in the limit ring, one end of the guide post is fixedly connected with the sliding block, the other end of the guide post is fixedly connected with the fixed seat, and a spring elastically supported between the limit ring and the fixed seat is sleeved on the guide post.
4. A high efficiency material mixing apparatus as defined in claim 1, wherein the bottom of said case is tapered.
5. A high-efficiency mixing device as claimed in claim 2, wherein the power assembly includes a hydraulic cylinder, a rack block, a first gear and a second gear, the rack block is vertically slidably connected to the frame, a driving shaft of the hydraulic cylinder is fixedly connected to a bottom end of the rack block, the first gear and the second gear are respectively and coaxially fixedly connected to the two hollow shafts, and the first gear and the second gear are respectively engaged with two opposite sides of the rack block.
6. A high-efficiency mixing device as claimed in claim 5, wherein a slide bar is fixedly connected to the top end of the rack block, a slide hole is formed in the frame, and the slide bar is slidably connected in the slide hole.
7. A high efficiency material mixing device as defined in claim 1, wherein said frame is provided with a mounting box and a cover plate, said power assembly is located in said mounting box, said cover plate is provided with a first joint, and said first joint is connected with said first hollow shaft in a rotary sealing manner.
8. A high efficiency material mixing apparatus as defined in claim 1, further comprising a transfer trolley for removing said net cage from said tank.
CN202121785183.4U 2021-08-03 2021-08-03 High-efficient compounding device Active CN214076352U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202121785183.4U CN214076352U (en) 2021-08-03 2021-08-03 High-efficient compounding device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202121785183.4U CN214076352U (en) 2021-08-03 2021-08-03 High-efficient compounding device

Publications (1)

Publication Number Publication Date
CN214076352U true CN214076352U (en) 2021-08-31

Family

ID=77440725

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202121785183.4U Active CN214076352U (en) 2021-08-03 2021-08-03 High-efficient compounding device

Country Status (1)

Country Link
CN (1) CN214076352U (en)

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