CN218196174U - Raw materials feed mechanism is used in yoga mat production - Google Patents

Raw materials feed mechanism is used in yoga mat production Download PDF

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Publication number
CN218196174U
CN218196174U CN202222730863.7U CN202222730863U CN218196174U CN 218196174 U CN218196174 U CN 218196174U CN 202222730863 U CN202222730863 U CN 202222730863U CN 218196174 U CN218196174 U CN 218196174U
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raw material
feeding
solid raw
raw materials
yoga mat
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CN202222730863.7U
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Chinese (zh)
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翁琛
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Fuqing Shengde Plastic Products Co ltd
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Fuqing Shengde Plastic Products Co ltd
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Abstract

The utility model relates to a raw material feeding mechanism for yoga mat production, which comprises a mixing drum provided with a stirring component, a feeding drum, a solid raw material conveying component and a raw material conveying component, wherein the bottom of the feeding drum is connected with the top of the mixing drum; the solid raw material conveying assembly comprises a conveying auger, one end of the conveying auger is provided with a solid raw material input port, the other end of the conveying auger is provided with a solid raw material output port, and the solid raw material output port is connected with the top of the feeding cylinder; liquid raw material conveying component includes that the case is placed to the raw materials and auto sucking machine, and the auto sucking machine is placed the case with the raw materials and is connected, and the auto sucking machine output is connected with the lower extreme lateral wall of a feeding section of thick bamboo. By arranging the feeding cylinder, the solid raw material and the liquid raw material are simultaneously conveyed to the feeding cylinder, so that the liquid raw material is contacted with the solid raw material and then enters the mixing cylinder, and the phenomenon that the solid raw material is bonded into blocks is effectively reduced; simultaneously solid raw materials and liquid raw materials can carry out automatic feeding, compare with the mode of traditional artifical material loading, effectively improve material loading efficiency, reduce artifical intensity of labour.

Description

Raw materials feed mechanism is used in yoga mat production
The technical field is as follows:
the utility model relates to a raw materials feed mechanism is used in yoga mat production.
Background art:
yoga mat, lay the mat below when practicing yoga, yoga mat divides traditional yoga mat and normal position yoga mat, and yoga mat surface particle is even, and the bubble is full, feels soft, and nontoxic, tasteless, antiskid, resilience ability reinforce, have very strong anti ability of tearing, be yoga practitioner's ideal selection. In addition, yoga mat still can effectively separate ground cold gas, and the grip is strong, has outstanding resilience, planarization, antiskid nature and human skin affinity. But also can be used for other body-building exercises, and is suitable for children to play as a blanket and a camping cushion in the open.
In the production process of the yoga mat, solid raw materials and liquid raw materials need to be mixed. However, most of the conventional yoga mat raw material mixing devices manually add the solid raw material into the mixing cylinder, pour the liquid raw material into the mixing cylinder, and then mix and stir in the mixing cylinder. In the feeding process, before the liquid raw materials are added into the mixing cylinder, some solid raw materials which are powder and flaky are easy to be bonded into blocks in the mixing cylinder, so that the solid raw materials bonded into blocks are not in sufficient contact with the liquid raw materials, the stirring is insufficient, and the mixing quality is influenced; meanwhile, the manual feeding mode is inconvenient to operate, and the feeding efficiency is low.
The utility model has the following contents:
the utility model discloses make the improvement to the problem that above-mentioned prior art exists, promptly the utility model aims to solve the technical problem that a raw materials feed mechanism is used in yoga mat production is provided, reasonable in design promotes feed efficiency, improves mixed quality.
In order to realize the purpose, the utility model discloses a technical scheme is: a raw material feeding mechanism for yoga mat production comprises a mixing drum, a feeding drum, a solid raw material conveying assembly and a raw material conveying assembly, wherein a stirring assembly is arranged in the mixing drum; the solid raw material conveying assembly comprises a conveying auger which is horizontally arranged, a solid raw material inlet is formed in the top of one end of the conveying auger, a solid raw material outlet is formed in the bottom of the other end of the conveying auger, and the solid raw material outlet is connected with the top of the feeding barrel through a discharging pipe; liquid raw material conveying component includes that the case is placed to the raw materials and auto sucking machine, the input of auto sucking machine is connected through the inside that case was placed to input tube and raw materials, and the output of auto sucking machine is connected through the lower extreme lateral wall of output tube with a feeding section of thick bamboo.
Further, the stirring subassembly includes by the rotatory vertical rotating shaft of agitator motor drive, the periphery lateral wall of vertical rotating shaft is fixed with the puddler, the puddler includes a plurality of first L shape puddlers along vertical interval distribution and a plurality of second L shape puddlers along vertical interval distribution, and a plurality of first L shape puddlers and a plurality of second L shape puddlers are located vertical rotating shaft's both sides respectively, the equal vertical setting of first L shape puddler and second L shape puddler and orientation are opposite.
Furthermore, the distance between the vertical edge of the first L-shaped stirring rod and the vertical rotating shaft is larger than the distance between the vertical edge of the second L-shaped stirring rod and the vertical rotating shaft.
Furthermore, the interior of the discharge pipe is rotatably connected with a dust guard through a horizontal rotating shaft, and the dust guard is of a cylindrical structure; the horizontal rotating shaft is driven to rotate by a rotating motor arranged on the outer wall of the discharging pipe.
Furthermore, a pair of squeeze rollers which are distributed left and right are arranged at the upper end in the feeding barrel and under the discharging pipe, and the squeeze rollers are driven to rotate by a squeeze motor.
Furthermore, the output pipe stretches into the interior of the feeding cylinder and is connected with a feeding spray head.
Further, the bottom of the mixing cylinder is connected with a discharge pipe.
Compared with the prior art, the utility model discloses following effect has: the utility model has reasonable design, and the solid raw material and the liquid raw material are simultaneously conveyed to the feeding cylinder by arranging the feeding cylinder, so that the liquid raw material firstly contacts with the solid raw material and then enters the mixing cylinder, thereby effectively reducing the phenomenon that the solid raw material is bonded into blocks; simultaneously solid raw materials and liquid raw materials can carry out automatic feeding, compare with the mode of traditional artifical material loading, effectively improve material loading efficiency, reduce artifical intensity of labour.
Description of the drawings:
fig. 1 is a schematic front view of the embodiment of the present invention;
FIG. 2 is a schematic top sectional view of a mixing drum according to an embodiment of the present invention;
FIG. 3 is a schematic top sectional view of a tapping pipe according to an embodiment of the invention.
The specific implementation mode is as follows:
the present invention will be described in further detail with reference to the accompanying drawings and specific embodiments.
In the description of the present invention, it is to be understood that the terms "longitudinal", "lateral", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", and the like indicate orientations or positional relationships based on those shown in the drawings, and are merely for convenience of description of the present invention, and do not indicate or imply that the device or element so referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore, should not be construed as limiting the present invention.
As shown in fig. 1-3, the raw material feeding mechanism for yoga mat production of the present invention comprises a mixing cylinder 1 with a stirring component arranged inside, a feeding cylinder 2 arranged above the mixing cylinder 1, a solid raw material conveying component and a raw material conveying component, wherein the bottom of the feeding cylinder 2 is connected with the top of the mixing cylinder 1 through a feeding pipe 3; the solid raw material conveying assembly comprises a conveying auger 8 which is horizontally arranged, a solid raw material inlet 9 is formed in the top of one end of the conveying auger 8, a solid raw material outlet is formed in the bottom of the other end of the conveying auger 8, and the solid raw material outlet is connected with the top of the feeding barrel 2 through a discharging pipe 10; liquid raw material conveying component includes that the case 14 and auto sucking machine 15 are placed to the raw materials, the input of auto sucking machine 15 is connected with the inside that case 14 was placed to the raw materials through input tube 16, and the output of auto sucking machine 15 is connected with the lower extreme lateral wall of feed cylinder 2 through output tube 17. When the automatic feeding device works, solid raw materials are poured from a solid raw material inlet, the conveying auger conveys the solid raw materials towards a solid raw material outlet, and the solid raw materials enter a feeding cylinder through a discharging pipe to realize automatic feeding and stop feeding of the solid raw materials; the auto sucking machine places the liquid raw materials pump to the feeding section of thick bamboo inside of incasement with the raw materials, and liquid raw materials contacts with solid raw materials. By arranging the feeding cylinder, the solid raw material and the liquid raw material are simultaneously conveyed to the feeding cylinder, so that the liquid raw material is firstly contacted with the solid raw material and then enters the mixing cylinder, the phenomenon that the solid raw material is bonded into blocks is effectively reduced, the raw material is fully stirred in the mixing cylinder, and the mixing quality is improved; simultaneously solid raw materials and liquid raw materials can carry out automatic feeding, compare with the mode of traditional artifical material loading, effectively improve material loading efficiency, reduce artifical intensity of labour.
In another embodiment, the stirring subassembly includes by rotatory vertical rotating shaft 5 of 4 drive of agitator motor, and agitator motor installs at the mixing drum top, the periphery lateral wall of vertical rotating shaft 5 is fixed with the puddler, the puddler includes a plurality of first L shape puddlers 6 and a plurality of second L shape puddlers 7 along vertical interval distribution, and a plurality of first L shape puddlers 6 and a plurality of second L shape puddlers 7 are located the both sides of vertical rotating shaft 5 respectively, the equal vertical setting of first L shape puddler 6 and second L shape puddler 7 just the opposite orientation, promptly: the first L-shaped stirring rod faces downwards, and the second L-shaped stirring rod faces upwards. During operation, stirring motor 4 drive vertical rotating shaft 5 is rotatory, and vertical rotating shaft 5 drives first L shape puddler 6 and the rotation of second L shape puddler 7, realizes stirring the raw materials.
In another embodiment, the distance between the vertical edge of the first L-shaped stirring rod 6 and the vertical rotating shaft is greater than the distance between the vertical edge of the second L-shaped stirring rod 7 and the vertical rotating shaft, that is: the rotation orbit of first L shape puddler is located the rotation orbit outside of second L shape puddler, and first L shape puddler cooperatees with second L shape puddler, can all stir the material in inside and the outside, improves the stirring quality.
In another embodiment, the interior of the discharge pipe 10 is rotatably connected with a dust guard 11 through a horizontal rotating shaft, and the dust guard is in a cylindrical structure; the horizontal rotary shaft 24 is rotated by a rotary motor 12 mounted on the outer wall of the tapping pipe 10. When solid raw materials are fed, the rotating motor drives the dust guard to rotate for 90 degrees through the horizontal rotating shaft, so that the dust guard is in a vertical state, and the solid raw materials fall into the feeding cylinder from the discharging pipe; after the feeding of solid raw materials, rotate the motor drive dust guard and rotate to the horizontality, the discharging pipe is sheltered from to the dust guard, reduces in the dust gets into a feeding section of thick bamboo, and then influences the quality of raw materials.
In another embodiment, a pair of squeezing rollers 13 is disposed right below the tapping pipe at the upper end of the interior of the feeding barrel 2, and the squeezing rollers are driven to rotate by a squeezing motor (not shown). Through set up a pair of squeeze roll under the discharging pipe, a pair of squeeze roll can extrude solid raw materials and pulverize, avoids solid raw materials caking.
In another embodiment, the output pipe extends into the feeding cylinder and is connected with a feeding spray head.
In another embodiment, a discharge pipe 22 is connected to the bottom of the mixing cylinder 1 for discharging the mixed raw materials.
In another embodiment, the inner wall of the lower end of the mixing cylinder 1 is provided with an ultrasonic assembly, the ultrasonic assembly comprises a plurality of amplitude-varying rods 18 which are uniformly distributed circumferentially around the axis of the mixing cylinder 1, the plurality of amplitude-varying rods 18 are vertically arranged on the top surface of an annular supporting seat 19 which is arranged on the lower side of the annular supporting seat, the plurality of amplitude-varying rods 18 are connected with an ultrasonic transducer 20 which is arranged outside the mixing cylinder 1, the upper end of each amplitude-varying rod 18 is fixed with a vibrating block 21, and the peripheral side surface of each vibrating block 21 is in contact with the inner wall of the mixing cylinder 1. During operation, ultrasonic transducer drive amplitude transformer vibration, and the amplitude transformer will vibrate the transmission and give the vibrating mass, and the rethread vibrating mass applys the vibration to the inner wall of mixing drum, and this can make the adhesion at the material of raw materials not hard up and drop, reduces the raw materials adhesion at the mixing drum inside wall.
The utility model discloses if disclose or related to mutual fixed connection's spare part or structure, then, except that other the note, fixed connection can understand: a detachable fixed connection (for example using a bolt or screw connection) can also be understood as: non-detachable fixed connections (e.g. riveting, welding), but of course, fixed connections to each other may also be replaced by one-piece structures (e.g. manufactured integrally using a casting process) (unless it is obviously impossible to use an integral forming process).
In addition, the terms used in any aspect of the present disclosure as described above to indicate positional relationships or shapes include similar, analogous, or approximate states or shapes unless otherwise stated.
The utility model provides an arbitrary part both can be formed by a plurality of solitary component parts equipment, also can be for the solitary part that the integrated into one piece technology made out.
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 it; although the present invention has been described in detail with reference to preferred embodiments, it should be understood by those skilled in the art that: the invention can be modified or equivalent substituted for some technical features; without departing from the spirit of the present invention, it should be understood that the scope of the claims is intended to cover all such modifications and variations.

Claims (7)

1. The utility model provides a raw materials feed mechanism is used in yoga mat production, is provided with the mixing drum of stirring subassembly including inside, its characterized in that: the device also comprises a feeding cylinder, a solid raw material conveying assembly and a liquid raw material conveying assembly which are arranged above the mixing cylinder, wherein the bottom of the feeding cylinder is connected with the top of the mixing cylinder through a feeding pipe; the solid raw material conveying assembly comprises a conveying auger which is horizontally arranged, a solid raw material inlet is formed in the top of one end of the conveying auger, a solid raw material outlet is formed in the bottom of the other end of the conveying auger, and the solid raw material outlet is connected with the top of the feeding barrel through a discharging pipe; liquid raw material conveying component includes that the case is placed to the raw materials and auto sucking machine, the input of auto sucking machine is connected with the inside that the case was placed to the raw materials through the input tube, and the output of auto sucking machine is connected with the lower extreme lateral wall of a feeding section of thick bamboo through the output tube.
2. The raw material feeding mechanism for yoga mat production of claim 1, characterized in that: the stirring assembly comprises a vertical rotating shaft driven to rotate by a stirring motor, stirring rods are fixed to the peripheral side wall of the vertical rotating shaft, the stirring rods comprise a plurality of first L-shaped stirring rods distributed along the vertical interval and a plurality of second L-shaped stirring rods distributed along the vertical interval, the plurality of first L-shaped stirring rods and the plurality of second L-shaped stirring rods are located on two sides of the vertical rotating shaft respectively, and the first L-shaped stirring rods and the second L-shaped stirring rods are arranged vertically and face towards the opposite directions.
3. The raw material feeding mechanism for yoga mat production of claim 2, characterized in that: the distance between the vertical edge of the first L-shaped stirring rod and the vertical rotating shaft is larger than the distance between the vertical edge of the second L-shaped stirring rod and the vertical rotating shaft.
4. The raw material feeding mechanism for yoga mat production of claim 1, characterized in that: the interior of the discharge pipe is rotatably connected with a dust guard through a horizontal rotating shaft, and the dust guard is of a cylindrical structure; the horizontal rotating shaft is driven to rotate by a rotating motor arranged on the outer wall of the discharging pipe.
5. The raw material feeding mechanism for yoga mat production of claim 1, characterized in that: and a pair of squeeze rollers distributed left and right are arranged at the upper end in the feeding barrel and under the discharge pipe, and the squeeze rollers are driven to rotate by a squeeze motor.
6. The raw material feeding mechanism for yoga mat production of claim 1, characterized in that: the output tube stretches into the interior of the feeding cylinder and is connected with a feeding spray head.
7. The raw material feeding mechanism for yoga mat production of claim 1, characterized in that: the bottom of the mixing cylinder is connected with a discharge pipe.
CN202222730863.7U 2022-10-17 2022-10-17 Raw materials feed mechanism is used in yoga mat production Active CN218196174U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202222730863.7U CN218196174U (en) 2022-10-17 2022-10-17 Raw materials feed mechanism is used in yoga mat production

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202222730863.7U CN218196174U (en) 2022-10-17 2022-10-17 Raw materials feed mechanism is used in yoga mat production

Publications (1)

Publication Number Publication Date
CN218196174U true CN218196174U (en) 2023-01-03

Family

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202222730863.7U Active CN218196174U (en) 2022-10-17 2022-10-17 Raw materials feed mechanism is used in yoga mat production

Country Status (1)

Country Link
CN (1) CN218196174U (en)

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