CN218172882U - A pneumatic squeezer of wrapping bag for cosmetics production - Google Patents

A pneumatic squeezer of wrapping bag for cosmetics production Download PDF

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Publication number
CN218172882U
CN218172882U CN202221030644.1U CN202221030644U CN218172882U CN 218172882 U CN218172882 U CN 218172882U CN 202221030644 U CN202221030644 U CN 202221030644U CN 218172882 U CN218172882 U CN 218172882U
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drive roll
pneumatic
support
driven roller
squeezer
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CN202221030644.1U
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薛志宏
张志远
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Intercos Technology Sip Co ltd
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Intercos Technology Sip Co ltd
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Abstract

The utility model discloses a pneumatic squeezer of wrapping bag for cosmetics production, including squeezer body and squeeze roll, install the squeeze roll on the squeezer body, the squeeze roll includes drive roll and driven voller, the squeezer body includes drive roll support, driven voller support and support frame, install the drive roll support on the support frame, movable mounting has the driven voller support between drive roll support and the support frame, movable mounting has the drive roll on the drive roll support, movable mounting has the driven voller on the driven voller support, be provided with actuating mechanism in the support frame; the utility model discloses under the effect of air supply admission and exhaust choke valve, pneumatic motor work drives the drive roll axle and rotates, and the drive roll is also along with rotating, and the wrapping bag removes along with the drive roll operation, extrudes the wrapping bag with remaining raw materials in the wrapping bag to can extrude the raw materials in the wrapping bag completely.

Description

A pneumatic squeezer of wrapping bag for cosmetics production
Technical Field
The utility model relates to a pneumatic squeezer technical field, concretely relates to pneumatic squeezer of wrapping bag for cosmetics production.
Background
In the cosmetic industry, including liquid cosmetics, there are process steps of raw material addition during the production process. When the raw material is added, the raw material in different states such as solid, semi-solid, liquid and the like is required to be added into the raw material adding machine. So that the raw materials in different states are mixed in the same container, and finally the process steps of raw material addition and material mixing are completed.
In the actual raw material addition process, the raw material state and the properties thereof are factors. It is difficult to completely take out the raw materials in the packaging bag in the process of adding the raw materials. Namely, the residual quantity of the raw materials in the packaging bag is large after the raw materials are added, thereby causing the waste of the raw materials.
The solution in the current production: in order to increase the number of raw material addition workers without lowering the production efficiency. That is, a specially-assigned person is added to perform detailed and serious extrusion on the raw material packaging bag, so as to reduce the residual quantity of the raw materials in the packaging bag, and thus the raw materials in the packaging bag can be added into the product as completely as possible. However, the above methods exist: repeated operations such as squeezing and pressing are performed on a large number of packaging bags manually, which causes various defects such as labor consumption, large workload of operators, low production efficiency, high raw material residue, poor control and the like. In view of the above drawbacks, it is actually necessary to design a pneumatic squeezer for cosmetic product production packages.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a pneumatic squeezer of wrapping bag for cosmetics production to solve the problem that proposes among the above-mentioned background art.
In order to achieve the above purpose, the utility model provides a following technical scheme: the utility model provides a wrapping bag pneumatic extrusion ware for cosmetics production, includes squeezer body and squeeze roll, install the squeeze roll on the squeezer body, the squeeze roll includes drive roll and driven voller, the squeezer body includes drive roll support, driven voller support and support frame, install the drive roll support on the support frame, movable mounting has the driven voller support between drive roll support and the support frame, movable mounting has the drive roll on the drive roll support, movable mounting has the driven voller on the driven voller support, be provided with actuating mechanism in the support frame.
Preferably, the drive roll support includes drive roll left side board and drive roll right side board, the one end fixed connection of drive roll left side board and connecting rod, the connecting rod is the U-shaped structure, the other end of connecting rod with drive roll right side board fixed connection, the drive roll left side board with all install the drive roll bearing seat on the drive roll right side board, the drive roll left side board with the lead screw seat is installed to the bottom of drive roll right side board.
Preferably, the drive roll is installed on the drive roll shaft, the two ends of the drive roll shaft are installed on the drive roll bearing block, one end of the drive roll shaft is fixedly connected with the output end of the pneumatic motor, and the pneumatic motor is installed on the right side plate of the drive roll.
Preferably, the driven roller support comprises a driven roller left side plate and a driven roller right side plate, driven roller bearing seats are mounted on the driven roller left side plate and the driven roller right side plate respectively, two through holes are formed in the driven roller left side plate and the driven roller right side plate respectively, and through holes are formed in the middle of the driven roller left side plate and the middle of the driven roller right side plate respectively.
Preferably, the driven roller is mounted on a driven roller shaft, and both ends of the driven roller shaft are mounted on driven roller bearing seats.
Preferably, the support frame includes the supporting seat, the supporting seat is the cuboid that has the cavity in that six backup pads enclose, two spinal branch daggers are all installed to the top both ends of supporting seat, the top of support column is passed the through-hole and is fixed respectively in the bottom of driven voller left side board and driven voller right side board, the bearing frame is all installed at the top both ends of supporting seat.
Preferably, actuating mechanism includes the worm, the worm is parallel arrangement with ground, and the worm wears to establish on two support risers of being connected perpendicularly with the inside of supporting seat, the one end of worm and servo motor's output fixed connection, the below meshing of worm is provided with the worm wheel, the worm wheel is installed at the middle part of pivot, and the lateral wall of supporting seat is worn to locate by the pivot, and bevel gear is all installed at the both ends of pivot.
Preferably, the bevel gears are engaged with end face gears, the end face gears are perpendicular to the bevel gears, the rotation directions of the bevel gears on two sides of the rotating shaft are consistent, the rotation directions of the bevel gears engaged with the bevel gears on two sides are also consistent, the circle centers of the end face gears are fixedly connected with the bottoms of the lead screws, the lead screws are perpendicular to the end face gears, the lead screws are mounted at the tops of the supporting seats through bearing seats, the tops of the lead screws penetrate through holes to be mounted on the lead screw seats, lead screw nuts are sleeved on the lead screws, and the lead screw nuts are fixedly mounted in the through holes.
Preferably, one side of the pneumatic motor is provided with two main power holes, one main power hole enters the other main power hole and the other main power hole exits the other main power hole, the pneumatic motor is provided with an air source air inlet and outlet throttle valve, and the air source air inlet and outlet throttle valve is provided with a butt joint power hole which is connected with the main power hole on the pneumatic motor in a sealing mode.
Preferably, the two ends of the air source air inlet and outlet throttle valve are provided with air source air inlet and outlet interfaces, the air source air inlet and outlet throttle valve is provided with a control module, a pneumatic sensor is arranged at the main power hole and connected with the air source air inlet and outlet throttle valve through the control module, and the pneumatic sensor is connected with the control module.
Compared with the prior art, the utility model relates to a wrapping bag pneumatic squeezer for cosmetics production, it rotates to drive the worm through servo motor, drive the worm wheel and rotate, the worm wheel drives the bevel gear rotation of coaxial coupling with it, bevel gear drives the face gear rotation of meshing perpendicularly with it, face gear drives the lead screw rotation of being connected with it, the lead screw drives the lead screw nut and moves, thereby drive driven voller left side board and driven voller right side board and move, thereby realized with the driven voller left side board, the removal of the driven voller that driven voller right side board is connected, make initiative rod and driving roller extrude the wrapping bag, thereby extrude the raw materials in the wrapping bag; the utility model discloses under the effect of air supply air inlet and outlet choke valve, pneumatic motor work drives the drive roll axle and rotates, and the drive roll also along with rotating, and the wrapping bag moves along with the drive roll operation, extrudes the residual raw materials in the wrapping bag out of the wrapping bag to can extrude the raw materials in the wrapping bag completely, reduce raw materials extrusion operating personnel's intensity of labour, improve work efficiency; the utility model discloses a control module realizes that pneumatic motor speed is steady stable, prevent no load operation or high-speed rotation according to operating mode load condition automatic control air throttle valve volume of admitting air to improve positioning accuracy and improve life, reduce the spoilage.
Drawings
The accompanying drawings are included to provide a further understanding of the invention, and are incorporated in and constitute a part of this specification, illustrate embodiments of the invention, and together with the description, do not constitute a limitation of the invention, in which:
FIG. 1 is a perspective view of a pneumatic squeezer for cosmetic product packaging bags of the present invention;
FIG. 2 is a schematic structural view of the pneumatic squeezer for cosmetic packaging of the present invention;
FIG. 3 is a schematic structural view of a driving mechanism in a pneumatic squeezer for cosmetic packaging bags according to the present invention;
FIG. 4 is a schematic view of a pneumatic motor in a pneumatic squeezer for cosmetic packaging bags according to the present invention;
fig. 5 is a top view of the pneumatic motor of the pneumatic squeezer for cosmetic product packaging bag of the present invention.
In the drawings:
1. an extruder body; 2. a squeeze roll; 3. a drive roll; 4. a driven roller; 5. a drive roll support; 6. A driven roller bracket; 7. a rack frame; 8. a drive mechanism; 9. a drive roll left side plate; 10. a drive roll right side plate; 11. a connecting rod; 12. a drive roll bearing seat; 13. a drive roll shaft; 14. a pneumatic motor; 15. A driven roller left side plate; 16. a driven roller right side plate; 17. a driven roller shaft; 18. a driven roller bearing seat; 19. A supporting seat; 20. a support pillar; 21. a bearing seat; 22. a worm; 23. a support vertical plate; 24. a servo motor; 25. a worm gear; 26. a rotating shaft; 27. a bevel gear; 28. a face gear; 29. a screw rod; 30. a screw rod seat; 31. a mounting seat; 32. an air source air inlet and outlet interface; 33. an air source air inlet and outlet throttle valve; 34. a pneumatic sensor; 35. a control module; 36. butting the power holes; 37. and a seal member.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the 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.
Referring to fig. 1-5, the present invention provides a technical solution: the utility model provides a pneumatic squeezer of wrapping bag for cosmetics production, includes squeezer body 1 and squeeze roll 2, install squeeze roll 2 on the squeezer body 1, squeeze roll 2 includes drive roll 3 and driven voller 4, squeezer body 1 includes drive roll support 5, driven voller support 6 and support frame 7, install drive roll support 5 on the support frame 7, movable mounting has driven voller support 6 between drive roll support 5 and the support frame 7, movable mounting has drive roll 3 on the drive roll support 5, movable mounting has driven voller 4 on the driven voller support 6, be provided with actuating mechanism 8 in the support frame 7.
In this embodiment the drive roll support 5 includes drive roll left side board 9 and drive roll right side board 10, the one end fixed connection of drive roll left side board 9 and connecting rod 11, connecting rod 11 are the U-shaped structure, the other end of connecting rod 11 with drive roll right side board 10 fixed connection, drive roll left side board 9 with all install drive roll bearing 12 on the drive roll right side board 10, drive roll left side board 9 with lead screw seat 30 is installed to the bottom of drive roll right side board 10.
In this embodiment, the drive roll 3 is installed on the drive roll shaft 13, two ends of the drive roll shaft 13 are installed on the drive roll bearing 12, one end of the drive roll shaft 13 is fixedly connected with an output end of the pneumatic motor 14, and the pneumatic motor 14 is installed on the drive roll right side plate 10.
The driven roller support 6 in this embodiment includes a driven roller left side plate 15 and a driven roller right side plate 16, driven roller bearing seats 18 are mounted on the driven roller left side plate 15 and the driven roller right side plate 16, two through holes are formed in the driven roller left side plate 15 and the driven roller right side plate 16, and through holes are formed in the middle of the driven roller left side plate 15 and the driven roller right side plate 16.
The driven roller 4 in this embodiment is mounted on a driven roller shaft 17, and both ends of the driven roller shaft 17 are mounted on driven roller bearing housings 18.
The supporting frame 7 in this embodiment includes a supporting seat 19, the supporting seat 19 is a cuboid which is surrounded by six supporting plates and has a cavity therein, two supporting columns 20 are installed at two ends of the top of the supporting seat 19, the tops of the supporting columns 20 penetrate through holes and are fixed at the bottoms of the driven roller left side plate 15 and the driven roller right side plate 16 respectively, and bearing seats 21 are installed at two ends of the top of the supporting seat 19.
The driving mechanism 8 in this embodiment includes a worm 22, the worm 22 is parallel to the ground, and the worm 22 is inserted into two supporting vertical plates 23 vertically connected with the inside of the supporting seat 19, so as to fix the position of the worm 22; one end of the worm 22 is fixedly connected with the output end of the servo motor 24, a worm wheel 25 is meshed below the worm 22, the worm wheel 25 is installed at the middle part of the rotating shaft 26, and the rotating shaft 26 penetrates through the side wall of the supporting seat 19 so as to support the rotating shaft 26. Bevel gears 27 are mounted at two ends of a rotating shaft 26, end face gears 28 are meshed on the bevel gears 27, the end face gears 28 are perpendicular to the bevel gears 27, the rotating directions of the bevel gears 27 located at two sides of the rotating shaft 26 are consistent, the rotating directions of the end face gears 28 meshed with the bevel gears 27 at two sides are also consistent, the circle centers of the end face gears 28 are fixedly connected with the bottoms of screw rods 29, the screw rods 29 are perpendicular to the end face gears 28, the screw rods 29 are mounted at the tops of the supporting seats 19 through bearing seats 21, the tops of the screw rods 29 penetrate through holes and are mounted on screw rod seats 30, screw rod nuts are sleeved on the screw rods 29, and the screw rod nuts are fixedly mounted in the through holes.
In this embodiment, one side of the pneumatic motor 14 is provided with one inlet and one outlet two main power holes, the pneumatic motor 14 is provided with an air source air inlet and outlet throttle valve 33, the air source air inlet and outlet throttle valve 33 is provided with a butt joint power hole 36 connected with the main power hole on the pneumatic motor 14 in a sealing manner, two ends of the air source air inlet and outlet throttle valve 33 are provided with air source air inlet and outlet interfaces 32, the air source air inlet and outlet throttle valve 33 is provided with a control module 35, the main power hole is provided with a pneumatic sensor 34, the pneumatic sensor 34 is connected with the air source air inlet and outlet throttle valve 33 through the control module 35, the control module 35 is fixed on the air source air inlet and outlet throttle valve 33 and connected with the air source air inlet and outlet throttle valve, the air source opening size of the air source air inlet and outlet throttle valve 33 is automatically adjusted and controlled according to the feedback of the pneumatic sensor 34, the pneumatic sensor 34 is connected with the control module 35, the control module 35 automatically controls the air inlet and outlet amount of the air throttle valve according to the working condition load condition, so as to realize stable speed and prevent no-load operation or high-speed rotation, thereby improving the positioning accuracy and the service life and reducing the damage rate.
In this embodiment, the pneumatic motor 14 is provided with a mounting seat 31 of the air source air inlet and outlet throttle valve 33, a valve body of the air source air inlet and outlet throttle valve 33 is connected with the mounting seat 31 through a bolt, and the mounting seat 31 is composed of a clamp matched with the pneumatic motor 14 and a fixing seat mounted on the clamp.
In this embodiment, a sealing member 37 is disposed between the main power hole and the butt power hole, and the sealing member 37 is an oil-resistant rubber pad.
The implementation principle of the embodiment is as follows: one end of a packaging bag to be extruded is placed between a driving roller 3 and a transmission roller 4, a servo motor 24 is started to enable a worm 22 to rotate, a worm wheel 25 is driven to rotate, the worm wheel 25 drives a bevel gear 27 coaxially connected with the worm wheel 25 to rotate, the bevel gear 27 drives an end face gear 28 vertically meshed with the bevel gear 27 to rotate, the bevel gears 27 located on two sides of a rotating shaft 26 are in the same rotating direction, the end face gears 28 meshed with the bevel gears 27 on two sides are in the same rotating direction, the end face gears 28 on two sides drive a screw 29 connected with the end face gear to rotate, the screw 29 drives a screw nut to move, so that a driven roller left side plate 15 and a driven roller right side plate 16 are driven to move, through holes are formed in the driven roller left side plate 15 and the driven roller right side plate 16, the tops of supporting columns 20 penetrate through the through holes and are fixed at the bottoms of the driving roller left side plate 9 and the driving roller right side plate 10, the supporting columns 20 limit the driven roller left side plate 15 and the driven roller right side plate 16 to move only in the vertical direction, so that the driving roller 3 and the driven roller 4 connected with the driving roller left side plate 15 and the driven roller 16 can extrude the packaging bag, raw material into the packaging bag completely, and the packaging bag along with the driving roller 3, and the packaging bag, so that the packaging bag can rotate, and the packaging bag can be extruded raw material can be extruded by the packaging bag, and the packaging bag can be extruded completely extruded by the packaging bag, and the packaging bag.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various 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 (10)

1. A pneumatic squeezer of wrapping bag for cosmetics production which characterized in that: including squeezer body (1) and squeeze roll (2), install squeeze roll (2) on squeezer body (1), squeeze roll (2) are including drive roll (3) and driven voller (4), squeezer body (1) includes drive roll support (5), driven voller support (6) and support frame (7), install drive roll support (5) on support frame (7), movable mounting has driven voller support (6) between drive roll support (5) and support frame (7), movable mounting has drive roll (3) on drive roll support (5), movable mounting has driven voller (4) on driven voller support (6), be provided with actuating mechanism (8) in support frame (7).
2. The pneumatic squeezer for the packaging bag for the production of cosmetics according to claim 1, wherein: drive roll support (5) include drive roll left side board (9) and drive roll right side board (10), drive roll left side board (9) and the one end fixed connection of connecting rod (11), connecting rod (11) are the U-shaped structure, the other end of connecting rod (11) with drive roll right side board (10) fixed connection, drive roll left side board (9) with all install drive roll bearing (12) on drive roll right side board (10), drive roll left side board (9) with lead screw seat (30) are installed to the bottom of drive roll right side board (10).
3. The pneumatic squeezer for the packaging bag for the production of cosmetics according to claim 1, wherein: the driving roll (3) is installed on a driving roll shaft (13), two ends of the driving roll shaft (13) are installed on a driving roll bearing seat (12), one end of the driving roll shaft (13) is fixedly connected with an output end of a pneumatic motor (14), and the pneumatic motor (14) is installed on a driving roll right side plate (10).
4. The pneumatic squeezer for the packaging bag for the production of cosmetics according to claim 1, wherein: the driven roller support (6) comprises a driven roller left side plate (15) and a driven roller right side plate (16), driven roller bearing seats (18) are mounted on the driven roller left side plate (15) and the driven roller right side plate (16), two through holes are formed in the driven roller left side plate (15) and the driven roller right side plate (16), and through holes are formed in the middle of the driven roller left side plate (15) and the middle of the driven roller right side plate (16).
5. The pneumatic squeezer for the packaging bag for the production of cosmetics according to claim 1, wherein: the driven roller (4) is installed on a driven roller shaft (17), and two ends of the driven roller shaft (17) are installed on a driven roller bearing seat (18).
6. The pneumatic squeezer for the packaging bag for the production of cosmetics according to claim 1, wherein: support frame (7) are including supporting seat (19), there is the cuboid of cavity in supporting seat (19) for the enclosure of six backup pads, two spinal branch daggers (20) are all installed at the top both ends of supporting seat (19), the top of spinal branch dagger (20) is passed the through-hole and is fixed respectively in the bottom of driven voller left side board (15) and driven voller right side board (16), bearing frame (21) are all installed at the top both ends of supporting seat (19).
7. The pneumatic squeezer for the packaging bag for the production of cosmetics according to claim 1, wherein: actuating mechanism (8) are including worm (22), worm (22) are parallel arrangement with ground, and worm (22) wear to establish on two support riser (23) of being connected with the inside of supporting seat (19) is perpendicular, the one end of worm (22) and the output fixed connection of servo motor (24), and the below meshing of worm (22) is provided with worm wheel (25), the middle part at pivot (26) is installed in worm wheel (25), and the lateral wall of supporting seat (19) is worn to locate in pivot (26), and bevel gear (27) are all installed at the both ends of pivot (26).
8. The pneumatic squeezer for the packing bag for cosmetics production as claimed in claim 7, wherein: the bevel gear (27) is engaged with an end face gear (28), the end face gear (28) is perpendicular to the bevel gear (27), the circle center of the end face gear (28) is fixedly connected with the bottom of a screw rod (29), the screw rod (29) is perpendicular to the end face gear (28), the screw rod (29) is installed at the top of the supporting seat (19) through a bearing seat (21), the top of the screw rod (29) penetrates through holes to be installed on a screw rod seat (30), a screw rod nut is sleeved on the screw rod (29), and the screw rod nut is fixedly installed in the through holes.
9. The pneumatic squeezer for the packaging bag for the production of cosmetics according to claim 3, characterized in that: one side of the pneumatic motor (14) is provided with two main power holes with one inlet and one outlet, the pneumatic motor (14) is provided with an air source air inlet and outlet throttle valve (33), and the air source air inlet and outlet throttle valve (33) is provided with a butt joint power hole (36) hermetically connected with the main power hole on the pneumatic motor (14).
10. The pneumatic squeezer for the packing bag for cosmetics production as claimed in claim 9, wherein: air supply advances exhaust throttle valve (33) both ends and is equipped with air supply advances exhaust interface (32), install control module (35) on air supply advances exhaust throttle valve (33), pneumatic sensor (34) are equipped with in main power hole department, and pneumatic sensor (34) link to each other with air supply advances exhaust throttle valve (33) through control module (35), pneumatic sensor (34) are connected with control module (35).
CN202221030644.1U 2022-04-29 2022-04-29 A pneumatic squeezer of wrapping bag for cosmetics production Active CN218172882U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202221030644.1U CN218172882U (en) 2022-04-29 2022-04-29 A pneumatic squeezer of wrapping bag for cosmetics production

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202221030644.1U CN218172882U (en) 2022-04-29 2022-04-29 A pneumatic squeezer of wrapping bag for cosmetics production

Publications (1)

Publication Number Publication Date
CN218172882U true CN218172882U (en) 2022-12-30

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Application Number Title Priority Date Filing Date
CN202221030644.1U Active CN218172882U (en) 2022-04-29 2022-04-29 A pneumatic squeezer of wrapping bag for cosmetics production

Country Status (1)

Country Link
CN (1) CN218172882U (en)

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