CN110589738B - Filling equipment of flower valve shower gel - Google Patents

Filling equipment of flower valve shower gel Download PDF

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Publication number
CN110589738B
CN110589738B CN201910892763.4A CN201910892763A CN110589738B CN 110589738 B CN110589738 B CN 110589738B CN 201910892763 A CN201910892763 A CN 201910892763A CN 110589738 B CN110589738 B CN 110589738B
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pressurizing
petal
emulsion
bottom end
driving wheel
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CN110589738A (en
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张翠芳
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Nanjing Xuantian Network Technology Co.,Ltd.
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Nanjing Xuantian Network Technology Co ltd
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B67OPENING, CLOSING OR CLEANING BOTTLES, JARS OR SIMILAR CONTAINERS; LIQUID HANDLING
    • B67CCLEANING, FILLING WITH LIQUIDS OR SEMILIQUIDS, OR EMPTYING, OF BOTTLES, JARS, CANS, CASKS, BARRELS, OR SIMILAR CONTAINERS, NOT OTHERWISE PROVIDED FOR; FUNNELS
    • B67C3/00Bottling liquids or semiliquids; Filling jars or cans with liquids or semiliquids using bottling or like apparatus; Filling casks or barrels with liquids or semiliquids
    • B67C3/007Applications of control, warning or safety devices in filling machinery
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B67OPENING, CLOSING OR CLEANING BOTTLES, JARS OR SIMILAR CONTAINERS; LIQUID HANDLING
    • B67CCLEANING, FILLING WITH LIQUIDS OR SEMILIQUIDS, OR EMPTYING, OF BOTTLES, JARS, CANS, CASKS, BARRELS, OR SIMILAR CONTAINERS, NOT OTHERWISE PROVIDED FOR; FUNNELS
    • B67C3/00Bottling liquids or semiliquids; Filling jars or cans with liquids or semiliquids using bottling or like apparatus; Filling casks or barrels with liquids or semiliquids
    • B67C3/02Bottling liquids or semiliquids; Filling jars or cans with liquids or semiliquids using bottling or like apparatus

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  • Devices For Medical Bathing And Washing (AREA)

Abstract

The invention relates to shower gel, in particular to filling equipment of shower gel containing flower valve leaflets. The invention aims to provide filling equipment for a flower and valve leaf shower gel. The invention provides filling equipment for flower and leaflet shower gel, which comprises a main frame body, an internal conveying mechanism, a bottom foot support, a control display screen, a pressurizing and pushing power mechanism, a petal nondestructive adding mechanism, a filling control device, a timer and a bottle body, wherein the bottom end of the main frame body is connected with the internal conveying mechanism, the pressurizing and pushing power mechanism is arranged in the left middle of the top end of the main frame body, the petal nondestructive adding mechanism is arranged in the left middle of the top end of the main frame body, and the top end of the petal nondestructive adding mechanism is connected with the pressurizing and pushing power mechanism.

Description

Filling equipment of flower valve shower gel
Technical Field
The invention relates to shower gel, in particular to filling equipment of shower gel containing flower valve leaflets.
Background
The shower gel is also called shower gel, which refers to a liquid cleaning agent used during bathing, and is a common cleaning product for modern people, the shower gel does not have the rigid feeling like soap when contacting the skin of people, and the shower gel gradually replaces soap to become the first choice of the bathing product for people along with the improvement of the living standard of people.
Chinese patent CN109820784A is prepared to the shower gel that has present people often used contains a large amount of petroleum hydrocarbon chemical surfactant, long-term use is unfavorable for healthy problem, a petal shower gel and preparation method thereof is disclosed, it has overcome the shower gel that present people often used and has contained a large amount of petroleum hydrocarbon chemical surfactant preparation to form through the mode of utilizing petal raw materials to prepare the shower gel, long-term use is unfavorable for healthy problem, nevertheless because the petal can cause the petal breakage because filling machine tool when the filling, thereby can lead to shower gel finished product petal breakage, influence the problem of shower gel quality and shower gel to the sense of touch of human skin.
To sum up, need research and develop a filling equipment that can keep petal integrality at present, overcome among the prior art petal can cause the petal damaged because filling machinery when the filling to can lead to the finished product petal of shower bath to be broken, influence shower bath quality and shower bath to the sense of touch of human skin, influence the aesthetic property of petal shower bath and the shortcoming of using experience.
Disclosure of Invention
(1) Technical problem to be solved
The invention aims to overcome the defects that petals are damaged due to a filling machine when the petals are filled, so that finished shower gel petals are broken, the quality of shower gel and the touch of the shower gel to human skin are influenced, and the attractiveness and use experience of the petal shower gel are influenced.
The invention is achieved by the following specific technical means:
a filling device for flower and leaflet shower gel comprises a main frame body, an internal conveying mechanism, a bottom foot support, a control display screen, a pressurizing and pushing power mechanism, a petal nondestructive adding mechanism, a filling control device, a timer and a bottle body, wherein the bottom end of the main frame body is connected with the internal conveying mechanism, the pressurizing and pushing power mechanism is arranged in the left middle of the top end of the main frame body, the petal nondestructive adding mechanism is arranged in the left middle of the top end of the main frame body, the top end of the petal nondestructive adding mechanism is connected with the pressurizing and pushing power mechanism, the bottom end of the internal conveying mechanism is connected with the bottom foot support, the control display screen is arranged in the left middle of the bottom end of the internal conveying mechanism, the bottle body is arranged at the top end of the internal conveying mechanism, the top end of the bottle body, and the left side and the right side of the bottom end of the filling control device are connected with the petal lossless adding mechanism, and the right side of the bottom end of the pressurizing and pushing power mechanism is provided with a timer.
Preferably, the pressurizing and pushing power mechanism comprises a shower gel emulsion feeding cabin, a feeding port, a pressurizing and feeding trapezoidal plate, a pushing connecting plate, a horizontal fixed plate, a motor, a first driving wheel, a second driving wheel, a third driving wheel, a fourth driving wheel, a fifth driving wheel, a sixth driving wheel, a first screw rod, a seventh driving wheel, an eighth driving wheel and a second screw rod, wherein the feeding port is arranged at the middle lower part of the right end of the shower gel emulsion feeding cabin, the pressurizing and feeding trapezoidal plate is arranged at the middle part in the shower gel emulsion feeding cabin, the motor is arranged at the middle part of the left end of the shower gel emulsion feeding cabin, the right side of the top end of the pressurizing and feeding trapezoidal plate is connected with the pushing connecting plate, the top end of the pushing connecting plate is connected with the horizontal fixed plate, the middle part of the top end of the motor is rotatably connected with the, the right end of the second driving wheel is in transmission connection with a third driving wheel through a belt, the top end of the outer surface of the third driving wheel is in transmission connection with a fourth driving wheel through a belt, the middle part of the top end of the third driving wheel is in transmission connection with a first lead screw, the bottom end of the outer surface of the first lead screw is connected with a shower gel emulsion feeding cabin, the middle part of the outer surface of the fourth driving wheel is in transmission connection with a fifth driving wheel through a belt, the bottom end of the outer surface of the fourth driving wheel is in transmission connection with a sixth driving wheel through a belt, the top end of the first lead screw is in transmission connection with a seventh driving wheel, the right end of the seventh driving wheel is in transmission connection with an eighth driving wheel through a belt, the middle part of the bottom end of the eighth driving wheel is in transmission connection with a second lead screw, the bottom end of the outer surface of, shower bath emulsion pay-off under-deck middle part is connected with the harmless mechanism that adds of petal, shower bath emulsion pay-off under-deck left end middle part and right-hand member bottom are connected with main framework, shower bath emulsion pay-off under-deck bottom is connected with filling controlling means, left side and interior right side are connected with the harmless mechanism that adds of petal in the trapezoidal board of pressurization pay-off, fifth drive wheel bottom middle part is connected with the harmless mechanism that adds of petal, sixth drive wheel bottom middle part is connected with the harmless mechanism that adds of petal, shower bath emulsion pay-off under-deck bottom is connected with the harmless mechanism that adds of petal.
Preferably, the petal nondestructive adding mechanism comprises a first feeding pipe, a first petal inlet, a second feeding pipe, a second petal inlet, a first packing auger, a second packing auger, a first emulsion pressurizing conical pipe, a second emulsion pressurizing conical pipe, a first infrared detector and a second infrared detector, wherein the left side of the top end of the first feeding pipe is provided with the first petal inlet, the right side of the first feeding pipe is provided with the second feeding pipe, the first packing auger is arranged in the first feeding pipe, the right side of the top end of the second feeding pipe is provided with the second petal inlet, the second packing auger is arranged in the second feeding pipe, the bottom end of the first packing auger is connected with the first emulsion pressurizing conical pipe, the bottom end of the second packing auger is connected with the second emulsion pressurizing conical pipe, the middle lower part of the left end of the first emulsion pressurizing conical pipe is provided with the first infrared detector, the middle lower part of the right end of the second emulsion pressurizing conical pipe is provided with the second infrared detector, the infrared detector comprises a first feeding pipe, a second feeding pipe, a first auger, a second auger, a first emulsion pressurization conical pipe, a bottle body, a first infrared detector and a second infrared detector, wherein the middle upper part of the outer side of the first feeding pipe is connected with a pressurization pushing power mechanism, the middle upper part of the outer side of the second feeding pipe is connected with the pressurization pushing power mechanism, the top end of the first auger is connected with the pressurization pushing power mechanism, the top end of the second auger is connected with the pressurization pushing power mechanism, the bottom end of the first emulsion pressurization conical pipe is connected with the bottle body, the bottom end of the second emulsion pressurization conical pipe is connected with the bottle body, the upper right side of the first infrared detector is.
Preferably, the filling control device comprises a first bevel gear, a second bevel gear, a star gear, a transmission gear, a linkage wheel, a special-shaped rotating wheel, a linkage frame, a linkage rod, a forked bracket, a main rotating rod, a first sliding rod and a second sliding rod, wherein the front side of the bottom end of the first bevel gear is meshed with the second bevel gear, the middle part of the front end of the second bevel gear is rotatably connected with the star gear, the bottom end of the star gear is meshed with the transmission gear, the right end of the transmission gear is in transmission connection with the linkage wheel through a belt, the middle lower part of the front end of the linkage wheel is connected with the special-shaped rotating wheel, the top end and the bottom end of the outer surface of the special-shaped rotating wheel are in transmission connection with the linkage frame, the middle part of the bottom end of the linkage frame is connected with the linkage rod, the middle part of the, the left end of the main rotating rod is connected with the first sliding rod in a rotating mode, the right end of the main rotating rod is connected with the second sliding rod in a rotating mode, the middle of the top end of the first bevel gear is connected with a pressurizing pushing power mechanism, the middle of the rear end of the second bevel gear is connected with the pressurizing pushing power mechanism, the middle of the rear end of the transmission gear is connected with the pressurizing pushing power mechanism, the middle of the rear end of the linkage wheel is connected with the pressurizing pushing power mechanism, the left end and the right end of the forked support are connected with the pressurizing pushing power mechanism, the left end of the first sliding rod is connected with a petal nondestructive adding mechanism, and the right end of the second sliding rod is connected with.
Preferably, the left side and the right side of the bottom end in the shower gel emulsion feeding cabin are arranged to be in a right-angled triangle shape with a thirty-degree horizontal angle, and the shape of the right side is matched with that of the bottom end of the pressurizing feeding trapezoidal plate.
Preferably, the rotating shaft rod connected with the middle part of the top end of the first bevel gear has elasticity.
Preferably, the bottom ends of the first emulsion pressurizing conical pipe and the second emulsion pressurizing conical pipe are both provided with rectangular slots.
Preferably, the belt connection geometric relationship among the fourth transmission wheel, the fifth transmission wheel and the sixth transmission wheel is in an isosceles triangle shape in the vertical direction.
Compared with the prior art, the invention has the following beneficial effects:
for the filling equipment who solves the petal leaf shower gel of prior art invention petal can cause the petal damaged because filling machinery when the filling, thereby can lead to shower gel finished product petal breakage, influence shower gel quality and shower gel to the sense of touch of human skin, influence the aesthetic property of petal shower gel and the problem of using experience, pressurization propelling movement power unit has been designed, the harmless mechanism and the filling controlling means of adding of petal, add the shower gel emulsion through pressurization propelling movement power unit pressurization during the use, the harmless mechanism cooperation that adds of petal simultaneously adds the petal mixes the filling, at last through the beginning and the end of filling controlling means control single filling, petal and shower gel tubulation interpolation have been realized, the bottle is gone into in the mixing of filling mouth, the effect that finished product shower gel petal of filling does not have the book and decreases.
Drawings
FIG. 1 is a schematic structural view of the present invention;
FIG. 2 is a schematic view of a pressing and pushing power mechanism according to the present invention;
FIG. 3 is a schematic structural view of a petal nondestructive adding mechanism of the invention;
fig. 4 is a schematic structural diagram of the filling control device of the present invention.
The labels in the figures are: 1-a main frame body, 2-an internal conveying mechanism, 3-a foot support, 4-a control display screen, 5-a pressurizing and pushing power mechanism, 6-a petal nondestructive adding mechanism, 7-a filling control device, 8-a timer, 9-a bottle body, 501-a shower gel emulsion feeding cabin, 502-a feeding port, 503-a pressurizing and feeding trapezoidal plate, 504-a pushing connecting plate, 505-a horizontal fixing plate, 506-a motor, 507-a first driving wheel, 508-a second driving wheel, 509-a third driving wheel, 5010-a fourth driving wheel, 5011-a fifth driving wheel, 5012-a sixth driving wheel, 5013-a first screw rod, 5014-a seventh driving wheel, 5015-an eighth driving wheel, 5016-a second screw rod, 601-a first feeding pipe, 602-a first petal inlet, 603-a second feeding pipe, 604-a second petal inlet, 605-a first auger, 606-a second auger, 607-a first emulsion pressurizing conical pipe, 608-a second emulsion pressurizing conical pipe, 609-a first infrared detector, 6010-a second infrared detector, 701-a first bevel gear, 702-a second bevel gear, 703-a star gear, 704-a transmission gear, 705-a linkage wheel, 706-a special-shaped rotating wheel, 707-a linkage frame, 708-a linkage rod, 709-a bifurcated bracket, 7010-a main rotating rod, 7011-a first sliding rod and 7012-a second sliding rod.
Detailed Description
The invention is further described below with reference to the figures and examples.
Examples
A filling device of flower and valve leaf shower gel is shown in figures 1-4 and comprises a main frame body 1, an internal conveying mechanism 2, a foot support 3, a control display screen 4, a pressurizing and pushing power mechanism 5, a petal lossless adding mechanism 6, a filling control device 7, a timer 8 and a bottle body 9, wherein the bottom end of the main frame body 1 is connected with the internal conveying mechanism 2, the pressurizing and pushing power mechanism 5 is arranged in the left middle of the top end of the main frame body 1, the petal lossless adding mechanism 6 is arranged in the left middle of the top end of the main frame body 1, the top end of the petal lossless adding mechanism 6 is connected with the pressurizing and pushing power mechanism 5, the bottom end of the internal conveying mechanism 2 is connected with the foot support 3, the control display screen 4 is arranged in the left middle of the bottom end of the internal conveying mechanism 2, the bottle body 9 is arranged at the top end of the internal conveying, the middle of the bottom end of the pressurizing and pushing power mechanism 5 is provided with a filling control device 7, the left side and the right side of the bottom end of the filling control device 7 are connected with the petal nondestructive adding mechanism 6, and the right side of the bottom end of the pressurizing and pushing power mechanism 5 is provided with a timer 8.
The pressurizing and pushing power mechanism 5 comprises a shower gel emulsion feeding cabin 501, a feeding port 502, a pressurizing and feeding trapezoidal plate 503, a pushing connecting plate 504, a horizontal fixing plate 505, a motor 506, a first driving wheel 507, a second driving wheel 508, a third driving wheel 509, a fourth driving wheel 5010, a fifth driving wheel 5011, a sixth driving wheel 5012, a first lead screw 5013, a seventh driving wheel 5014, an eighth driving wheel 5015 and a second lead screw 5016, wherein the feeding port 502 is arranged at the middle lower part of the right end of the shower gel emulsion feeding cabin 501, the pressurizing and feeding trapezoidal plate 503 is arranged at the middle part in the shower gel emulsion feeding cabin 501, the motor 506 is arranged at the middle part of the left end of the shower gel emulsion feeding cabin 501, the right side of the top end of the pressurizing and feeding trapezoidal plate 503 is connected with the pushing connecting plate 504, the top end of the pushing connecting plate 504 is connected with the horizontal fixing plate 505, the middle, the right end of the first driving wheel 507 is in transmission connection with a second driving wheel 508 through a belt, the right end of the second driving wheel 508 is in transmission connection with a third driving wheel 509 through a belt, the top end of the outer surface of the third driving wheel 509 is in transmission connection with a fourth driving wheel 5010 through a belt, the middle part of the top end of the third driving wheel 509 is in transmission connection with a first lead screw 5013, the bottom end of the outer surface of the first lead screw 5013 is connected with a bath lotion emulsion feeding cabin 501, the middle part of the outer surface of the fourth driving wheel 5010 is in transmission connection with a fifth driving wheel 5011 through a belt, the bottom end of the outer surface of the fourth driving wheel 5010 is in transmission connection with a sixth driving wheel 5012 through a belt, the top end of the first lead screw 5013 is in transmission connection with a seventh driving wheel 5014, the right end of the seventh driving wheel 5014 is in transmission connection with an eighth 5015 through a belt, and the middle part, and second lead screw 5016 surface bottom and shower cream emulsion send material cabin 501 to be connected, shower cream emulsion send material cabin 501 bottom right side is connected with timer 8, the middle part is connected with the harmless mechanism 6 that adds of petal in shower cream emulsion send material cabin 501, shower cream emulsion send material cabin 501 left end middle part and right-hand member bottom to be connected with main frame 1, shower cream emulsion send material cabin 501 bottom to be connected with filling controlling means 7, left side and interior right side are connected with the harmless mechanism 6 that adds of petal in pressurization pay-off trapezoidal plate 503, fifth drive wheel 5011 bottom middle part is connected with the harmless mechanism 6 that adds of petal, sixth drive wheel 5012 bottom middle part is connected with the harmless mechanism 6 that adds of petal, shower cream emulsion send material cabin 501 bottom to add mechanism 6 with the harmless mechanism 6 that adds of petal to be connected.
The petal nondestructive adding mechanism 6 comprises a first feeding pipe 601, a first petal inlet 602, a second feeding pipe 603, a second petal inlet 604, a first packing auger 605, a second packing auger 606, a first emulsion pressurizing conical pipe 607, a second emulsion pressurizing conical pipe 608, a first infrared detector 609 and a second infrared detector 6010, wherein the left side of the top end of the first feeding pipe 601 is provided with the first petal inlet 602, the right side of the first feeding pipe 601 is provided with the second feeding pipe 603, the first packing auger 605 is arranged in the first feeding pipe 601, the right side of the top end of the second feeding pipe 603 is provided with the second petal inlet 604, the second packing auger 606 is arranged in the second feeding pipe 603, the bottom end of the first packing auger 605 is connected with the first emulsion pressurizing conical pipe 607, the bottom end of the second packing auger 606 is connected with the second emulsion pressurizing conical pipe 608, the middle lower part of the left end of the first emulsion pressurizing conical pipe 607 is provided with the first infrared detector 609, a second infrared detector 6010 is disposed at the middle-lower portion of the right end of the second emulsion pressurizing conical tube 608, the middle upper part of the outer side of the first feeding pipe 601 is connected with a pressurizing and pushing power mechanism 5, the middle upper part of the outer side of the second feeding pipe 603 is connected with the pressurizing and pushing power mechanism 5, the top end of the first packing auger 605 is connected with a pressurizing and pushing power mechanism 5, the top end of the second packing auger 606 is connected with the pressurizing and pushing power mechanism 5, the top end of the first milk pressurized taper pipe 607 is connected with a pressurized propelling power mechanism 5, the top end of the second milk pressurized taper pipe 608 is connected with the pressurized propelling power mechanism 5, the bottom end of the first emulsion pressurizing conical pipe 607 is connected with the bottle body 9, the bottom end of the second emulsion pressurizing conical pipe 608 is connected with the bottle body 9, the upper right side of the first infrared detector 609 is connected with a pressurizing and pushing power mechanism 5, and the upper left side of the second infrared detector 6010 is connected with the pressurizing and pushing power mechanism 5.
The filling control device 7 comprises a first bevel gear 701, a second bevel gear 702, a star gear 703, a transmission gear 704, a linkage wheel 705, a special-shaped rotating wheel 706, a linkage frame 707, a linkage rod 708, a bifurcated bracket 709, a main rotating rod 7010, a first sliding rod 7011 and a second sliding rod 7012, wherein the front side of the bottom end of the first bevel gear 701 is meshed with the second bevel gear 702, the middle part of the front end of the second bevel gear 702 is rotatably connected with the star gear 703, the bottom end of the star gear 703 is meshed with the transmission gear 704, the right end of the transmission gear 704 is in transmission connection with the linkage wheel 705 through a belt, the middle lower part of the front end of the linkage wheel 705 is connected with the special-shaped rotating wheel 706, the top end and the bottom end of the outer surface of the special-shaped rotating wheel 706 are in transmission connection with the linkage frame 707, the middle part of the bottom end of the linkage frame 707 is connected with, the bottom end of the linkage rod 708 is connected with a main rotating rod 7010, the left end of the main rotating rod 7010 is rotatably connected with a first sliding rod 7011, the right end of the main rotating rod 7010 is rotatably connected with a second sliding rod 7012, the middle of the top end of a first bevel gear 701 is connected with a pressurizing and pushing power mechanism 5, the middle of the rear end of a second bevel gear 702 is connected with the pressurizing and pushing power mechanism 5, the middle of the rear end of a transmission gear 704 is connected with the pressurizing and pushing power mechanism 5, the middle of the rear end of a linkage wheel 705 is connected with the pressurizing and pushing power mechanism 5, the left end and the right end of a forked support 709 are connected with the pressurizing and pushing power mechanism 5, the left end of the first sliding rod 7011 is connected with a lossless petal adding mechanism 6, and the right end of the second sliding rod 70.
The left side and the right side of the bottom end of the shower gel emulsion feeding cabin 501 are arranged to be right-angled triangle shapes with thirty-degree horizontal angles, and the shapes of the right-angled triangle shapes are matched with the shapes of the bottom ends of the pressurizing and feeding trapezoidal plates 503.
The rotating shaft rod connected with the middle part of the top end of the first bevel gear 701 has elasticity.
The bottom ends of the first emulsion pressurizing conical pipe 607 and the second emulsion pressurizing conical pipe 608 are both provided with rectangular slots.
The belt connection geometric relationship among the fourth transmission wheel 5010, the fifth transmission wheel 5011 and the sixth transmission wheel 5012 is in an isosceles triangle shape in the vertical direction.
A filling device of flower and leaflet shower gel comprises a main frame body 1, an internal conveying mechanism 2, a foot support 3, a control display screen 4, a pressurizing and pushing power mechanism 5, a petal lossless adding mechanism 6, a filling control device 7, a timer 8 and a bottle body 9, wherein the bottom end of the main frame body 1 is connected with the internal conveying mechanism 2, the pressurizing and pushing power mechanism 5 is arranged in the left middle of the top end of the main frame body 1, the petal lossless adding mechanism 6 is arranged in the left middle of the top end of the main frame body 1, the top end of the petal lossless adding mechanism 6 is connected with the pressurizing and pushing power mechanism 5, the bottom end of the internal conveying mechanism 2 is connected with the foot support 3, the control display screen 4 is arranged in the left middle of the bottom end of the internal conveying mechanism 2, the bottle body 9 is arranged at the top end of the internal conveying mechanism 2, the middle of the bottom end of the pressurizing and pushing power mechanism 5 is provided with a filling control device 7, the left side and the right side of the bottom end of the filling control device 7 are connected with the petal nondestructive adding mechanism 6, and the right side of the bottom end of the pressurizing and pushing power mechanism 5 is provided with a timer 8.
During the use, at first fix the filling equipment of flower valve leaf shower gel at the last filling position of shower gel production filling line, then the switch on, open control display screen 4, and use timer 8 to set up suitable single filling time, then put through 4 switch on pressurization propelling movement power unit 5's power unit through control display screen, simultaneously with the shower gel that the production batching finishes add pressurization propelling movement power unit 5 inside, and simultaneously, add the harmless mechanism 6 that adds of sufficient petal inside, reach its effect of mixing the interpolation with the shower gel emulsion, finish the filling to bottle 9 according to the time that timer 8 set for through filling controlling means 7 at last, this device convenient to use, can not break down the petal mix with the shower gel emulsion, the integrality of petal has been guaranteed.
The pressurizing and pushing power mechanism 5 comprises a shower gel emulsion feeding cabin 501, a feeding port 502, a pressurizing and feeding trapezoidal plate 503, a pushing connecting plate 504, a horizontal fixing plate 505, a motor 506, a first driving wheel 507, a second driving wheel 508, a third driving wheel 509, a fourth driving wheel 5010, a fifth driving wheel 5011, a sixth driving wheel 5012, a first lead screw 5013, a seventh driving wheel 5014, an eighth driving wheel 5015 and a second lead screw 5016, wherein the feeding port 502 is arranged at the middle lower part of the right end of the shower gel emulsion feeding cabin 501, the pressurizing and feeding trapezoidal plate 503 is arranged at the middle part in the shower gel emulsion feeding cabin 501, the motor 506 is arranged at the middle part of the left end of the shower gel emulsion feeding cabin 501, the right side of the top end of the pressurizing and feeding trapezoidal plate 503 is connected with the pushing connecting plate 504, the top end of the pushing connecting plate 504 is connected with the horizontal fixing plate 505, the middle, the right end of the first driving wheel 507 is in transmission connection with a second driving wheel 508 through a belt, the right end of the second driving wheel 508 is in transmission connection with a third driving wheel 509 through a belt, the top end of the outer surface of the third driving wheel 509 is in transmission connection with a fourth driving wheel 5010 through a belt, the middle part of the top end of the third driving wheel 509 is in transmission connection with a first lead screw 5013, the bottom end of the outer surface of the first lead screw 5013 is connected with a bath lotion emulsion feeding cabin 501, the middle part of the outer surface of the fourth driving wheel 5010 is in transmission connection with a fifth driving wheel 5011 through a belt, the bottom end of the outer surface of the fourth driving wheel 5010 is in transmission connection with a sixth driving wheel 5012 through a belt, the top end of the first lead screw 5013 is in transmission connection with a seventh driving wheel 5014, the right end of the seventh driving wheel 5014 is in transmission connection with an eighth 5015 through a belt, and the middle part, and second lead screw 5016 surface bottom and shower cream emulsion send material cabin 501 to be connected, shower cream emulsion send material cabin 501 bottom right side is connected with timer 8, the middle part is connected with the harmless mechanism 6 that adds of petal in shower cream emulsion send material cabin 501, shower cream emulsion send material cabin 501 left end middle part and right-hand member bottom to be connected with main frame 1, shower cream emulsion send material cabin 501 bottom to be connected with filling controlling means 7, left side and interior right side are connected with the harmless mechanism 6 that adds of petal in pressurization pay-off trapezoidal plate 503, fifth drive wheel 5011 bottom middle part is connected with the harmless mechanism 6 that adds of petal, sixth drive wheel 5012 bottom middle part is connected with the harmless mechanism 6 that adds of petal, shower cream emulsion send material cabin 501 bottom to add mechanism 6 with the harmless mechanism 6 that adds of petal to be connected.
After the shower cream emulsion is fed from the feeding port 502, the motor 506 rotates to drive the first transmission wheel 507 whose top end is connected with the first transmission wheel 507, the right end of the first transmission wheel 507 drives the second transmission wheel 508 to rotate through the belt, then the right end of the second transmission wheel 508 drives the third transmission wheel 509 to rotate through the belt, then the right end of the third transmission wheel 509 drives the fourth transmission wheel 5010 to rotate through the belt, then the fourth transmission wheel 5010 drives the fifth transmission wheel 5011 to rotate through the belt, the middle part of the top end of the third transmission wheel 509 drives the first lead screw 5013 to rotate, then the top end of the first lead screw 5013 drives the seventh transmission wheel 5014 to rotate, further drives the eighth transmission wheel 5015 to rotate, then the eighth transmission wheel 5015 drives the second lead screw 5016 at the bottom end to rotate, under the action of the first lead screw 5013 and the second lead screw 5016 and the top end opening of the shower cream emulsion feeding cabin 501, the first lead screw 5013 and the second lead, and then drive pressurization pay-off trapezoidal plate 503 to move down through promoting connecting plate 504, and then send the shower bath pressurization of material cabin 501 bottom for the shower bath emulsion, make it get into bottle 9 through the pipeline, fourth drive wheel 5010 drives fifth drive wheel 5011 and sixth drive wheel 5012 through the belt and rotates simultaneously, and then drives the motion that the petal does not harm adding mechanism 6, can pressurize fast when using, makes thick shower bath emulsion get into the filling passageway.
The petal nondestructive adding mechanism 6 comprises a first feeding pipe 601, a first petal inlet 602, a second feeding pipe 603, a second petal inlet 604, a first packing auger 605, a second packing auger 606, a first emulsion pressurizing conical pipe 607, a second emulsion pressurizing conical pipe 608, a first infrared detector 609 and a second infrared detector 6010, wherein the left side of the top end of the first feeding pipe 601 is provided with the first petal inlet 602, the right side of the first feeding pipe 601 is provided with the second feeding pipe 603, the first packing auger 605 is arranged in the first feeding pipe 601, the right side of the top end of the second feeding pipe 603 is provided with the second petal inlet 604, the second packing auger 606 is arranged in the second feeding pipe 603, the bottom end of the first packing auger 605 is connected with the first emulsion pressurizing conical pipe 607, the bottom end of the second packing auger 606 is connected with the second emulsion pressurizing conical pipe 608, the middle lower part of the left end of the first emulsion pressurizing conical pipe 607 is provided with the first infrared detector 609, a second infrared detector 6010 is disposed at the middle-lower portion of the right end of the second emulsion pressurizing conical tube 608, the middle upper part of the outer side of the first feeding pipe 601 is connected with a pressurizing and pushing power mechanism 5, the middle upper part of the outer side of the second feeding pipe 603 is connected with the pressurizing and pushing power mechanism 5, the top end of the first packing auger 605 is connected with a pressurizing and pushing power mechanism 5, the top end of the second packing auger 606 is connected with the pressurizing and pushing power mechanism 5, the top end of the first milk pressurized taper pipe 607 is connected with a pressurized propelling power mechanism 5, the top end of the second milk pressurized taper pipe 608 is connected with the pressurized propelling power mechanism 5, the bottom end of the first emulsion pressurizing conical pipe 607 is connected with the bottle body 9, the bottom end of the second emulsion pressurizing conical pipe 608 is connected with the bottle body 9, the upper right side of the first infrared detector 609 is connected with a pressurizing and pushing power mechanism 5, and the upper left side of the second infrared detector 6010 is connected with the pressurizing and pushing power mechanism 5.
When shower gel emulsion is added, complete petals are added through a first petal inlet 602 and a second petal inlet 604, the petals enter a first feeding pipe 601 and a second feeding pipe 603, a first auger 605 and a second auger 606 inside the petals respectively rotate, the petals are conveyed to the bottom end of the feeding pipes and mixed with the shower gel emulsion, then the petals are mixed with the shower gel emulsion inside a first emulsion pressurizing conical pipe 607 and a second emulsion pressurizing conical pipe 608, the petals enter a bottle body 9 below in the mixing process, the filling is completed, a timer 8 is set to finish the time, the single filling is finished, meanwhile, the conditions of overflow of the bottle body 9, the quality of the bottle body 9, labels and the like can be respectively checked through a first infrared detector 609 and a second infrared detector 6010, the mixing and the filling of the petals and the shower gel emulsion are efficiently completed, and the integrity of the petals can not be influenced.
The filling control device 7 comprises a first bevel gear 701, a second bevel gear 702, a star gear 703, a transmission gear 704, a linkage wheel 705, a special-shaped rotating wheel 706, a linkage frame 707, a linkage rod 708, a bifurcated bracket 709, a main rotating rod 7010, a first sliding rod 7011 and a second sliding rod 7012, wherein the front side of the bottom end of the first bevel gear 701 is meshed with the second bevel gear 702, the middle part of the front end of the second bevel gear 702 is rotatably connected with the star gear 703, the bottom end of the star gear 703 is meshed with the transmission gear 704, the right end of the transmission gear 704 is in transmission connection with the linkage wheel 705 through a belt, the middle lower part of the front end of the linkage wheel 705 is connected with the special-shaped rotating wheel 706, the top end and the bottom end of the outer surface of the special-shaped rotating wheel 706 are in transmission connection with the linkage frame 707, the middle part of the bottom end of the linkage frame 707 is connected with, the bottom end of the linkage rod 708 is connected with a main rotating rod 7010, the left end of the main rotating rod 7010 is rotatably connected with a first sliding rod 7011, the right end of the main rotating rod 7010 is rotatably connected with a second sliding rod 7012, the middle of the top end of a first bevel gear 701 is connected with a pressurizing and pushing power mechanism 5, the middle of the rear end of a second bevel gear 702 is connected with the pressurizing and pushing power mechanism 5, the middle of the rear end of a transmission gear 704 is connected with the pressurizing and pushing power mechanism 5, the middle of the rear end of a linkage wheel 705 is connected with the pressurizing and pushing power mechanism 5, the left end and the right end of a forked support 709 are connected with the pressurizing and pushing power mechanism 5, the left end of the first sliding rod 7011 is connected with a lossless petal adding mechanism 6, and the right end of the second sliding rod 70.
When the timer 8 starts single-time timing and single-time filling starts, the second transmission wheel 508 in the pressurizing and pushing power mechanism 5 drives the first bevel gear 701 to rotate through the telescopic rotating shaft rod, then the first bevel gear 701 drives the second bevel gear 702 engaged with the front side of the front end of the first bevel gear 701 to rotate, then the star gear 703 rotates synchronously with the second bevel gear 702, then the star gear 703 drives the transmission gear 704 at the bottom end of the star gear to rotate, then the transmission gear 704 drives the linkage wheel 705 at the right end of the transmission gear to rotate through a belt, the special-shaped rotating wheel 706 rotates synchronously with the linkage wheel 705, then the irregular motion of the special-shaped rotating wheel 706 drives the linkage frame 707 to move, simultaneously the linkage rod 708 is driven to vertically move up and down in the sleeve inside the forked support 709, then the main rotating rod 7010 drives the first sliding rod 7011 and the second sliding rod 7012 to fold at the rotating shaft, and further drives the first sliding rod 7011 and the second sliding rod 7012 to draw out from the bottom ends of the first When the filling is finished, the first sliding rod 7011 and the second sliding rod 7012 return to the original positions, the single filling is finished, and the timer 8 is matched to realize accurate control of the filling, so that the effect of automatically controlling the filling volume and time is achieved.
The left side and the right side of the bottom end of the shower gel emulsion feeding cabin 501 are arranged to be right-angled triangle shapes with thirty degrees of horizontal angles, and the shapes of the left side and the right side are matched with the shapes of the bottoms of the pressurizing and feeding trapezoidal plates 503, so that viscous shower gel can not be detained inside the shower gel emulsion feeding cabin 501, and the shower gel feeding cabin is easier to fill and flow due to the action of gravity.
The rotating shaft rod connected with the middle part of the top end of the first bevel gear 701 has elasticity, so that the second driving wheel 508 can keep a rotating connection state with the first bevel gear 701 when the pressurizing and pushing power mechanism 5 vertically moves up and down.
The bottom ends of the first emulsion pressurizing conical tube 607 and the second emulsion pressurizing conical tube 608 are both provided with rectangular grooves so that a first sliding rod 7011 and a second sliding rod 7012 can be inserted to control the start and stop of filling.
The belt connection geometric relationship among the fourth transmission wheel 5010, the fifth transmission wheel 5011 and the sixth transmission wheel 5012 is in an isosceles triangle shape in the vertical direction, so that the vertical up-and-down pushing movement of the pressurizing pushing power mechanism 5 can not be obstructed while the transmission function of the transmission wheels is kept.
Although the present disclosure has been described in detail with reference to the exemplary embodiments, the present disclosure is not limited thereto, and it will be apparent to those skilled in the art that various modifications and changes can be made thereto without departing from the scope of the present disclosure.

Claims (4)

1. The filling equipment for the flower and valve leaf shower gel comprises a main frame body (1), an internal conveying mechanism (2) and a bottom foot support (3), and is characterized by further comprising a control display screen (4), a pressurizing and pushing power mechanism (5), a petal lossless adding mechanism (6), a filling control device (7), a timer (8) and a bottle body (9), wherein the bottom end of the main frame body (1) is connected with the internal conveying mechanism (2), the pressurizing and pushing power mechanism (5) is arranged in the left middle of the top end of the main frame body (1), the petal lossless adding mechanism (6) is arranged in the left middle of the top end of the main frame body (1), the top end of the petal lossless adding mechanism (6) is connected with the pressurizing and pushing power mechanism (5), the bottom end of the internal conveying mechanism (2) is connected with the bottom foot support (3), the left middle of the bottom end of the internal conveying mechanism (2) is provided, a bottle body (9) is arranged at the top end of the internal conveying mechanism (2), the top end of the bottle body (9) is connected with the petal nondestructive adding mechanism (6), a filling control device (7) is arranged in the middle of the bottom end of the pressurizing and pushing power mechanism (5), the left side and the right side of the bottom end of the filling control device (7) are connected with the petal nondestructive adding mechanism (6), and a timer (8) is arranged on the right side of the bottom end of the pressurizing and pushing power mechanism (5);
the pressurizing and pushing power mechanism (5) comprises a shower gel emulsion feeding cabin (501), a feeding hole (502), a pressurizing and feeding trapezoidal plate (503), a pushing connecting plate (504), a horizontal fixing plate (505), a motor (506), a first driving wheel (507), a second driving wheel (508), a third driving wheel (509), a fourth driving wheel (5010), a fifth driving wheel (5011), a sixth driving wheel (5012), a first screw rod (5013), a seventh driving wheel (5014), an eighth driving wheel (5015) and a second screw rod (5016), wherein the feeding hole (502) is formed in the middle lower part of the right end of the shower gel emulsion feeding cabin (501), the pressurizing and feeding trapezoidal plate (503) is arranged in the middle part of the shower gel emulsion feeding cabin (501), the motor (506) is arranged in the middle part of the left end of the shower gel emulsion feeding cabin (501), and the right side of the top end of the pressurizing and feeding trapezoidal plate (503) is connected with the pushing, the top end of the propulsion connecting plate (504) is connected with a horizontal fixing plate (505), the middle part of the top end of the motor (506) is rotatably connected with a first driving wheel (507), the right end of the first driving wheel (507) is in transmission connection with a second driving wheel (508) through a belt, the right end of the second driving wheel (508) is in transmission connection with a third driving wheel (509) through a belt, the top end of the outer surface of the third driving wheel (509) is in transmission connection with a fourth driving wheel (5010) through a belt, the middle part of the top end of the third driving wheel (509) is in transmission connection with a first lead screw (5013), the bottom end of the outer surface of the first lead screw (5013) is connected with a shower cream emulsion feeding cabin (501), the middle part of the outer surface of the fourth driving wheel (5010) is in transmission connection with a fifth driving wheel (5011) through a belt, and the bottom end of the outer surface of the fourth driving wheel (5010) is, the top end of the first screw rod (5013) is rotatably connected with a seventh transmission wheel (5014), the right end of the seventh transmission wheel (5014) is in transmission connection with an eighth transmission wheel (5015) through a belt, the middle of the bottom end of the eighth transmission wheel (5015) is rotatably connected with a second screw rod (5016), the bottom end of the outer surface of the second screw rod (5016) is connected with a shower gel emulsion feeding cabin (501), the right side of the bottom end of the shower gel emulsion feeding cabin (501) is connected with a timer (8), the middle of the inner part of the shower gel emulsion feeding cabin (501) is connected with a petal lossless adding mechanism (6), the middle of the left end and the bottom of the right end of the shower gel emulsion feeding cabin (501) are connected with a main frame body (1), the bottom end of the shower gel emulsion feeding cabin (501) is connected with a filling control device (7), the left side and the right side of the inner part of the pressurizing feeding trapezoidal plate (503) are connected with the petal lossless adding, the middle part of the bottom end of the fifth transmission wheel (5011) is connected with the petal nondestructive adding mechanism (6), the middle part of the bottom end of the sixth transmission wheel (5012) is connected with the petal nondestructive adding mechanism (6), and the bottom end of the shower gel emulsion feeding cabin (501) is connected with the petal nondestructive adding mechanism (6);
the petal nondestructive adding mechanism (6) comprises a first feeding pipe (601), a first petal inlet (602), a second feeding pipe (603), a second petal inlet (604), a first packing auger (605), a second packing auger (606), a first emulsion pressurizing conical pipe (607), a second emulsion pressurizing conical pipe (608), a first infrared detector (609) and a second infrared detector (6010), wherein the left side of the top end of the first feeding pipe (601) is provided with the first petal inlet (602), the right side of the first feeding pipe (601) is provided with the second feeding pipe (603), the first packing auger (605) is arranged in the first feeding pipe (601), the right side of the top end of the second feeding pipe (603) is provided with the second petal inlet (604), the second packing auger (606) is arranged in the second feeding pipe (603), and the bottom end of the first packing auger (605) is connected with the first emulsion pressurizing conical pipe (607), the bottom end of the second packing auger (606) is connected with a second emulsion pressurized conical tube (608), the middle lower part of the left end of the first emulsion pressurized conical tube (607) is provided with a first infrared detector (609), the middle lower part of the right end of the second emulsion pressurized conical tube (608) is provided with a second infrared detector (6010), the middle upper part of the outer side of the first feeding tube (601) is connected with a pressurized pushing power mechanism (5), the middle upper part of the outer side of the second feeding tube (603) is connected with the pressurized pushing power mechanism (5), the top end of the first packing auger (605) is connected with the pressurized pushing power mechanism (5), the top end of the second packing auger (606) is connected with the pressurized pushing power mechanism (5), the top end of the first emulsion pressurized conical tube (607) is connected with the pressurized pushing power mechanism (5), the top end of the second emulsion pressurized conical tube (608) is connected with the pressurized pushing power mechanism (5), the bottom end of the first emulsion pressurizing conical tube (607) is connected with the bottle body (9), the bottom end of the second emulsion pressurizing conical tube (608) is connected with the bottle body (9), the upper right side of the first infrared detector (609) is connected with the pressurizing and pushing power mechanism (5), and the upper left side of the second infrared detector (6010) is connected with the pressurizing and pushing power mechanism (5);
the filling control device (7) comprises a first bevel gear (701), a second bevel gear (702), a star gear (703), a transmission gear (704), a linkage wheel (705), a special-shaped rotating wheel (706), a linkage frame (707), a linkage rod (708), a bifurcated bracket (709), a main rotating rod (7010), a first sliding rod (7011) and a second sliding rod (7012), wherein the front side of the bottom end of the first bevel gear (701) is meshed with the second bevel gear (702), the middle part of the front end of the second bevel gear (702) is rotatably connected with the star gear (703), the bottom end of the star gear (703) is meshed with the transmission gear (704), the right end of the transmission gear (704) is in transmission connection with the linkage wheel (705) through a belt, the middle lower part of the front end of the linkage wheel (705) is connected with the special-shaped rotating wheel (706), and the top end and the bottom end of the outer surface of the special-shaped rotating wheel (706) are in transmission, the middle part of the bottom end of the linkage frame (707) is connected with a linkage rod (708), the middle part of the outer surface of the linkage rod (708) is in sliding connection with a forked support (709), the bottom end of the linkage rod (708) is connected with a main rotating rod (7010), the left end of the main rotating rod (7010) is in rotating connection with a first sliding rod (7011), the right end of the main rotating rod (7010) is in rotating connection with a second sliding rod (7012), the middle part of the top end of a first bevel gear (701) is connected with a pressurizing and pushing power mechanism (5), the middle part of the rear end of a second bevel gear (702) is connected with the pressurizing and pushing power mechanism (5), the middle part of the rear end of a transmission gear (704) is connected with the pressurizing and pushing power mechanism (5), the middle part of the rear end of the linkage wheel (705) is connected with the pressurizing and pushing power mechanism (5), the left and right ends of the forked support (709) are, the left end of the first sliding rod (7011) is connected with the petal nondestructive adding mechanism (6), and the right end of the second sliding rod (7012) is connected with the petal nondestructive adding mechanism (6);
the left side and the right side of the inner bottom end of the shower gel emulsion feeding cabin (501) are arranged to be in a right-angled triangle shape with a thirty-degree horizontal angle, and the shape of the right side is matched with the shape of the bottom end of the pressurizing and feeding trapezoidal plate (503).
2. The filling equipment of the floral leaf shower gel as claimed in claim 1, wherein the rotating shaft connected to the middle of the top end of the first bevel gear (701) has elasticity.
3. The filling equipment of the flower valve leaf shower gel is characterized in that the bottom ends of the first emulsion pressurizing conical pipe (607) and the second emulsion pressurizing conical pipe (608) are provided with rectangular grooves.
4. The filling equipment of the flower and valve leaf shower gel is characterized in that the belt connection geometric relationship among the fourth transmission wheel (5010), the fifth transmission wheel (5011) and the sixth transmission wheel (5012) is in an isosceles triangle shape in the vertical direction.
CN201910892763.4A 2019-09-20 2019-09-20 Filling equipment of flower valve shower gel Active CN110589738B (en)

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CN109911828A (en) * 2019-04-16 2019-06-21 江西蒙山乳业有限公司 One kind is filling to send bottle system
CN209023170U (en) * 2018-09-30 2019-06-25 高州市泗水九叔食品厂 A kind of packing machine screw rod meter
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* Cited by examiner, † Cited by third party
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WO2009103426A1 (en) * 2008-02-19 2009-08-27 Khs Ag Method for filling containers with a filling material consisting of at least two components, filling point and filling machine for carrying out said method
CN103381892A (en) * 2013-07-05 2013-11-06 杭州萧山华东化工设备有限公司 Full-automatic weighing and packaging system and control method thereof
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