CN215065490U - Sampling device is used in shampoo processing - Google Patents

Sampling device is used in shampoo processing Download PDF

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Publication number
CN215065490U
CN215065490U CN202120630429.4U CN202120630429U CN215065490U CN 215065490 U CN215065490 U CN 215065490U CN 202120630429 U CN202120630429 U CN 202120630429U CN 215065490 U CN215065490 U CN 215065490U
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China
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pipe
processing
shampoo
side wall
sampling device
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谷志立
黄雪倩
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Shanghai Dibao Technology Co ltd
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Shanghai Dibao Technology Co ltd
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Abstract

The utility model discloses a sampling device is used in shampoo processing, including processingequipment, discharging device, carry material device and agitating unit, processingequipment is including processing cauldron, sealed lid, sampling device, motor, pipe and inlet pipe, sealed lid passes through the bolt fastening in processing cauldron's top, sampling device is located the top of sealed lid. The utility model discloses an install at the top of sealed lid and carry material device and sampling device, can extract the shampoo in the processing cauldron after carrying the sampling tube among the material device and the sampling device and the aspiration pump intercommunication, the shampoo stores in entering into the sampling tube along carrying the material pipe, in order to acquire the sample of shampoo, the device just can accomplish the acquirement to the shampoo under the condition that need not open sealed lid, and then both made things convenient for the sample to the shampoo and also can prevent that the shampoo from receiving the pollution of outside air, thereby can guarantee the accuracy of shampoo sample monitoring.

Description

Sampling device is used in shampoo processing
Technical Field
The utility model relates to a shampoo sampling equipment technical field specifically is a sampling device is used in shampoo processing.
Background
Shampoo, also known as shampoo and shampoo, is a hair washing product which is most widely applied and is one of the most commonly used hair cosmetics. It can be used for cleaning human body secreted oil, sweat scale, cells detached from scalp, foreign dust, microorganism, and residue and unpleasant odor of styling product, etc. attached to scalp and hair, and keeping scalp and hair clean and beautiful. A hair care product with dandruff removing, hair treatment and hair dyeing effects. Shampoo contains a plurality of components, and the combined action of the components can play a role in cleaning scalp and hair. In general, the most effective component of a shampoo is a surfactant, which plays a role in cleansing hair and scalp, and when the shampoo is mixed with water, foam is generated, but the amount of foam does not reflect the strength of cleansing power. As a common chemical product in daily life of people, the shampoo needs to be subjected to more steps in the production process and needs to be sampled in the production process, so that the shampoo in the processing process is conveniently analyzed, and the quality of the shampoo is identified.
The current shampoo processing sampling device has a serious problem that the shampoo is sampled when in use, the sampling process is more complicated and the shampoo is easily contacted with the air, so that the accuracy of the sampling detection of the shampoo is influenced, and when the shampoo is canned, quantitative canning can not be uniformly carried out on each bottle, so that the generated quality can be influenced.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a sampling device is used in shampoo processing has solved and has taken a sample the shampoo in the use among the background art, and the sampling process is comparatively loaded down with trivial details and still make shampoo and air contact easily, and then can cause the influence to shampoo sample detection's accuracy to when the shampoo when canning, can not be even carry out quantitative canning to every bottle, thereby can influence the problem that the generation quality that produces provided.
In order to achieve the above object, the utility model provides a following technical scheme: a sampling device for processing shampoo comprises a processing device, a discharging device, a material lifting device and a stirring device, wherein the processing device comprises a processing kettle, a sealing cover, a sampling device, a motor, a conduit and a feeding pipe, the sealing cover is fixed at the top of the processing kettle through a bolt, the sampling device is positioned at the top of the sealing cover, the sampling device comprises an air pump, an air pipe and a sampling pipe, the air pump is fixed at the top of the sealing cover through a bolt, the air pipe is inserted into the left side wall of the air pump, the sampling pipe is inserted into the left side wall of the air pipe, the motor is fixed at the bottom of the processing kettle through a bolt, the conduit is inserted into the front side wall of the processing kettle, a first electromagnetic valve is sleeved on the conduit, the feeding pipe is welded on the left side wall of the processing kettle, and a cover plate is sleeved at the left end of the feeding pipe, the discharging device is positioned on the right side wall of the processing kettle and comprises a discharging pipe, a second electromagnetic valve and a hydraulic cylinder, one end, far away from the processing kettle, of the guide pipe is connected with the discharging pipe in an inserting mode, the left side wall of the discharging pipe is fixed on the right side wall of the processing kettle through a bolt, the hydraulic cylinder is positioned in an inner cavity of the discharging pipe, the left side wall of the hydraulic cylinder is fixed on the right side wall of the processing kettle through a bolt, a disc is fixed on the right side wall of the hydraulic cylinder through a bolt and is in sliding contact with the inner side wall of the discharging pipe, the second electromagnetic valve is sleeved on the outer portion of the right end of the discharging pipe, the lifting device is positioned on the top of the sealing cover and comprises a sleeve and a lifting pipe, the sleeve is welded on the top of the sealing cover, the lifting pipe is positioned in the inner cavity of the sleeve, and the inner portion of the lifting pipe is of a hollow structure, the top of carrying the material pipe is pegged graft and is had the connector, carry the material pipe to run through the sleeve pipe and extend to the inner chamber of processing cauldron, the sampling tube with the connector is pegged graft, agitating unit is located the inner chamber bottom of processing cauldron, agitating unit includes stand and stirring rod, the stand pass through the bearing with the inner chamber bottom of processing cauldron rotates and is connected, the stirring rod weld in the lateral wall of stand, transmission shaft in the motor with through the gear with the draw-in groove meshing of stand bottom is connected.
As an optimized embodiment of the utility model, the inner chamber of processing cauldron is circular cavity, the processing cauldron bottom is the inclined plane structure, the pipe with the inclined plane low point intercommunication.
As an optimized embodiment of the utility model, the chassis has been cup jointed to the bottom of processing cauldron, the bottom welding on chassis has three support column, and is three the support column presents triangular distribution.
As an optimal implementation mode of the utility model, the bottom of motor is passed through the bolt fastening and is had U type seat, the both ends of U type seat respectively with the bolt fastening is passed through to the bottom of processing cauldron.
As an optimized embodiment of the utility model, sheathed tube inner chamber joint has the rubber buffer, open the inside of rubber buffer has the through-hole, the material lifting pipe runs through the through-hole with rubber buffer sliding connection.
As a preferred embodiment of the present invention, the outer side wall of the sleeve is provided with a U-shaped slot, and the U-shaped slot is along the top of the sleeve extends downwards to the rubber plug.
As an optimal implementation manner of the utility model, two stirring boards have been welded respectively to the last lateral wall and the lower lateral wall of stirring rod, the stirring board along the axis symmetric distribution of stirring rod.
As an optimized embodiment of the utility model, the bottom of carrying the material pipe is pegged graft and is had the feed head, the feed head with carry the inner chamber intercommunication of material pipe, the feed head passes through the sleeve pipe extends to the processing cauldron inner chamber.
As a preferred embodiment of the present invention, the inlet pipe is obliquely located on the left side wall of the processing kettle, the heater is embedded on the inner side wall of the inlet pipe, and the heater is annularly distributed on the inner side wall of the inlet pipe.
As a preferred embodiment of the utility model, the stub bar has been cup jointed to the right side wall of discharging pipe, the stub bar presents the toper structure, the stub bar with the inner chamber intercommunication of discharging pipe.
Compared with the prior art, the beneficial effects of the utility model are as follows:
1. install through the top at sealed lid and carry material device and sampling device, can extract the shampoo in the processing cauldron after carrying the sampling tube and the aspiration pump intercommunication among the material device and the sampling device, shampoo enters into the sampling tube along carrying the material pipe and stores, in order to obtain the sample of shampoo, the device just can accomplish the acquirement to the shampoo under the condition that need not open sealed lid, and then both made things convenient for the sample to the shampoo and also can prevent that the shampoo from receiving the pollution of outside air, thereby can guarantee shampoo sampling detection's accuracy.
2. Install discharging device through the lateral wall at the processing cauldron, discharging pipe, pneumatic cylinder and second solenoid valve among the discharging device use can quantitative extract to the shampoo with pipe and first solenoid valve are mutually supported to store its shampoo in the inner chamber of discharging pipe, and then when carrying out the canning to the shampoo, can control the quantity of canning at every turn the same, thereby improve the production quality of product.
Drawings
Other features, objects and advantages of the invention will become more apparent upon reading of the detailed description of non-limiting embodiments with reference to the following drawings:
fig. 1 is a schematic structural view of a sampling device for processing shampoo according to the present invention;
fig. 2 is a cross-sectional view of the inside of a processing kettle of the sampling device for processing shampoo of the utility model;
fig. 3 is a structural diagram of a material lifting device of the sampling device for processing shampoo of the utility model;
fig. 4 is a structural diagram of a discharging device of the sampling device for processing shampoo of the utility model;
fig. 5 is an internal view of the feeding pipe of the sampling device for processing shampoo of the present invention.
In the figure: 100. a processing device; 110. a processing kettle; 120. a sealing cover; 130. a sampling device; 131. an air pump; 132. an air tube; 133. a sampling tube; 140. a chassis; 141. a support pillar; 150. a motor; 151. a U-shaped seat; 160. a conduit; 161. a first solenoid valve; 170. a feed pipe; 171. a cover plate; 172. a heater; 200. a discharging device; 210. a discharge pipe; 211. discharging a stub bar; 220. a second solenoid valve; 230. a hydraulic cylinder; 231. a disc; 300. a material lifting device; 310. a sleeve; 311. a rubber plug; 320. a material lifting pipe; 321. a connector; 322. a feed head; 400. a stirring device; 410. a column; 420. a stirring rod; 421. and (4) stirring the plate.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments.
In the description of the present invention, it is to be understood that the terms "upper", "lower", "front", "rear", "left", "right", "top", "bottom", "inner", "outer", and the like indicate orientations or positional relationships based on the orientations or positional relationships shown in the drawings, and are only for convenience of description and simplicity of description, and do not indicate or imply that the device or element being 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.
Referring to fig. 1-5, the present invention provides a technical solution: a sampling device for processing shampoo comprises a processing device 100, a discharging device 200, a material lifting device 300 and a stirring device 400, wherein the processing device 100 comprises a processing kettle 110, a sealing cover 120, a sampling device 130, a motor 150, a conduit 160 and a feeding pipe 170, the sealing cover 120 is fixed on the top of the processing kettle 110 through bolts, the sampling device 130 is positioned on the top of the sealing cover 120, the sampling device 130 comprises an air suction pump 131, an air pipe 132 and a sampling pipe 133, the air suction pump 131 is fixed on the top of the sealing cover 120 through bolts, the air pipe 132 is inserted into the left side wall of the air suction pump 131, the sampling pipe 133 is inserted into the left side wall of the air pipe 132, the motor 150 is fixed on the bottom of the processing kettle 110 through bolts, the conduit 160 is inserted into the front side wall of the processing kettle 110, a first electromagnetic valve 161 is sleeved on the conduit 160, the feeding pipe 170 is welded on the left side wall of the processing kettle 110, a cover plate 171 is sleeved at the left end of the feeding pipe 170, the discharging device 200 is positioned on the right side wall of the processing kettle 110, the discharging device 200 comprises a discharging pipe 210, a second electromagnetic valve 220 and a hydraulic cylinder 230, one end of the guide pipe 160 far away from the processing kettle 110 is inserted into the discharging pipe 210, the left side wall of the discharging pipe 210 is fixed on the right side wall of the processing kettle 110 through a bolt, the hydraulic cylinder 230 is located in the inner cavity of the discharging pipe 210, the left side wall of the hydraulic cylinder 230 is fixed on the right side wall of the processing kettle 110 through a bolt, the right side wall of the hydraulic cylinder 230 is fixed with a disc 231 through a bolt, the disc 231 is in sliding contact with the inner side wall of the discharging pipe 210, the second electromagnetic valve 220 is sleeved outside the right end of the discharging pipe 210, the lifting device 300 is located at the top of the sealing cover 120, the lifting device 300 comprises a sleeve 310 and a lifting pipe 320, the sleeve 310 is welded at the top of the sealing cover 120, the lifting pipe 320 is located in the inner cavity of the sleeve 310, the interior of the lifting pipe 320 is of a hollow structure, the top of the lifting pipe 320 is inserted into a connecting head 321, the lifting pipe 320 penetrates through the sleeve 310 and extends to the inner cavity of the processing kettle 110, the sampling tube 133 is inserted into the connector 321, the stirring device 400 is located at the bottom of the inner cavity of the processing kettle 110, the stirring device 400 includes a vertical column 410 and a stirring rod 420, the vertical column 410 is rotatably connected with the bottom of the inner cavity of the processing kettle 110 through a bearing, the stirring rod 420 is welded on the outer side wall of the vertical column 410, a transmission shaft in the motor 150 is meshed with a clamping groove at the bottom of the vertical column 410 through a gear, the air suction pump 131, the air tube 132, the sampling tube 133, the material extracting tube 320 and the connector 321 are mutually matched to generate suction force to suck shampoo in the inner cavity of the processing kettle 110 into the sampling tube 133 along the material inlet head 322, the material extracting tube 320 and the connector 321 for sampling the shampoo in the inner cavity of the processing kettle 110, the U-shaped seat 150, the vertical column 410 and the stirring rod 420 are mutually matched to be used for stirring and processing the shampoo in the inner cavity of the processing kettle 110, the guide tube 160, the first electromagnetic valve 161, the material outlet tube 210, the second electromagnetic valve 220, the second electromagnetic valve 410, and the stirring rod 420 are mutually matched to be used for stirring processing kettle 110, The hydraulic cylinders 230 are used in cooperation with each other, and the chamber for storing the shampoo in the dispensing tube 210 is fixed, so that the shampoo in the inner cavity of the processing kettle 110 can be quantitatively taken out.
In the utility model, after the cover plate 171 is opened, the raw material is poured into the inner cavity of the processing kettle 110 through the cover plate 171 for processing, after the material is added, the cover plate 171 is covered, the control switch of the motor 150 is opened, the motor 150 drives the upright column 410 to rotate through the transmission shaft, the upright column 410 drives the stirring rod 420 to rotate, and further the material in the inner cavity of the processing kettle 110 is stirred and processed, after the processing is finished, the material is kept stand, at the moment, the material lifting pipe 320 is pressed downwards, the bottom end of the material lifting pipe 320 enters the inner cavity of the processing kettle 110, the feed head 322 is inserted into the interior of the shampoo, at the moment, the sampling pipe 133 is inserted into the connector 321, at the moment, the air suction pump 131 is opened, when the air pump 131 works, the suction force enables the shampoo in the inner cavity of the processing kettle 110 to pass through the feed head 322, the material lifting pipe 320 and the connector 321, after the amount of the shampoo in the sampling pipe 133 reaches the amount required for detection, stopping the operation of the air pump 131, pulling the sampling tube 133 off the connector 321, pulling the sampling tube 133 off the left end of the air tube 132 to obtain a sample of the shampoo, installing a new sampling tube 133, moving the material lifting tube 320 upwards, restarting the motor 150, driving the stirring device 400 by the motor 150 to work, stirring and mixing the shampoo, and operating according to the steps to obtain a next shampoo sample to obtain samples of the shampoo at different positions in the inner cavity of the processing kettle 110; when the shampoo in the inner cavity of the processing kettle 110 needs to be canned, the first electromagnetic valve 161 is opened, so that the shampoo in the processing kettle 110 flows into the guide pipe 160, at the moment, the hydraulic cylinder 230 works to move the disc 231 leftwards, suction force is generated in the inner cavity of the discharge pipe 210, the shampoo is sucked into the inner cavity of the discharge pipe 210, the volume in the inner cavity of the discharge pipe 210 is unchanged, so that the amount obtained each time is the same, after the inner cavity of the discharge pipe 210 is filled, the first electromagnetic valve 161 is disconnected at the moment, the second electromagnetic valve 220 is opened, at the moment, the hydraulic cylinder 230 moves the shampoo rightwards through the disc 231, so that the shampoo is led out of the outside through the discharge head 211 for canning, and after the canning is finished, the second electromagnetic valve 220 closes the first electromagnetic valve 161 and opens, so that the operation is performed repeatedly until the shampoo in the processing kettle 110 is led out completely.
In an alternative embodiment, the interior of the processing vessel 110 is a circular chamber, the bottom of the processing vessel 110 is a sloped structure, and the conduit 160 is in communication with a low point of the sloped surface.
It should be noted that, the stirring device 400 stirs and processes the shampoo, and stands still in the inner cavity of the processing kettle 110 after the processing is completed, and the bottom of the inner cavity of the processing kettle 110 is inclined, so that the shampoo processed in the inner cavity of the processing kettle 110 can flow into the conduit 160 along the inclined slope, so as to prevent the shampoo from remaining in the inner cavity of the processing kettle 110 and being difficult to clean.
In an alternative embodiment, a bottom plate 140 is sleeved on the bottom of the processing kettle 110, three support columns 141 are welded on the bottom of the bottom plate 140, and the three support columns 141 are distributed in a triangular manner.
It should be noted that the chassis 140 installed at the bottom of the processing kettle 110 can effectively ensure that the processing kettle 110 can keep stable when processing shampoo in the processing kettle 110, and also facilitates the installation of the motor 150, thereby avoiding the motor 150 from being installed in the inner cavity of the processing kettle 110 to occupy the volume and reduce the processing amount of the shampoo.
In an alternative embodiment, the bottom of the motor 150 is fixed with a U-shaped seat 151 through bolts, and two ends of the U-shaped seat 151 are respectively fixed with the bottom of the processing kettle 110 through bolts.
It should be noted that, the U-shaped seat 151 is used to improve the stability of the motor 150 in use, so as to prevent the bolt from loosening and falling due to long-time operation of the motor 150.
In an alternative embodiment, the inner cavity of the sleeve 310 is clamped with a rubber plug 311, a through hole is formed inside the rubber plug 311, and the material lifting tube 320 penetrates through the through hole to be slidably connected with the rubber plug 311.
It should be noted that, the position of the rubber stopper 311 in the inner cavity of the sleeve 310 is fixed, the rubber stopper 311 is in close contact with the outer wall of the material extracting tube 320 by using the high elasticity of rubber, and the material extracting tube 320 and the rubber stopper 311 slide and rub when in use, which can effectively prevent the external air and impurities from entering the inner cavity of the processing kettle 110 when the shampoo is sampled, and further, the quality of the shampoo in the processing kettle 110 is affected.
In an alternative embodiment, the outer side wall of the sleeve 310 is opened with a U-shaped slot, and the U-shaped slot extends downwards along the top of the sleeve 310 to the rubber stopper 311.
It should be noted that the U-shaped slot facilitates the movement of the hand, the hand guides the material lifting pipe 320 to the maximum extent into the inner cavity of the processing kettle 110 when moving the material lifting pipe 320, and the sleeve 310 can also protect the material lifting pipe 320 when the material lifting pipe 320 is idle, so as to prevent the material lifting pipe 320 from being bent due to a mistake.
In an alternative embodiment, two stirring plates 421 are welded to the upper and lower sidewalls of the stirring rod 420, respectively, and the stirring plates 421 are symmetrically distributed along the central axis of the stirring rod 420.
It should be noted that, in order to improve the quality of stirring the shampoo in the inner cavity of the processing kettle 110, the stirring plates 421 are respectively extended from the upper side and the lower side of the stirring rod 420, and the contact area between the stirring plates 421 and the shampoo is increased, so that the shampoo can be effectively stirred to be uniformly mixed, the stirring speed is increased, and the stirring quality is improved.
In an alternative embodiment, a feed head 322 is inserted into the bottom of the material extracting pipe 320, the feed head 322 is communicated with the inner cavity of the material extracting pipe 320, and the feed head 322 extends to the inner cavity of the processing kettle 110 through the sleeve 310.
It should be noted that the feeding head 322 is used to obtain a sample of the shampoo inside and guide the sample of the shampoo into the inner cavity of the lifting tube 320.
In an alternative embodiment, the feeding pipe 170 is obliquely positioned on the left side wall of the processing kettle 110, the inner side wall of the feeding pipe 170 is embedded with the heater 172, and the heater 172 is annularly distributed on the inner side wall of the feeding pipe 170.
It should be noted that, when adding the material, the material enters the inner cavity of the feeding pipe 170 first, and the heater 172 heats the material first, so as to increase the movement speed of the molecules in the material, so that the material can be fused with each other rapidly in the inner cavity of the processing kettle 110.
In an alternative embodiment, the discharge pipe 210 has a discharge head 211 sleeved on the right sidewall, the discharge head 211 has a conical structure, and the discharge head 211 is communicated with the inner cavity of the discharge pipe 210.
It should be noted that the discharge hole at the right end of the discharge head 211 has a small area, so that the material can be effectively guided into the canned goods.
The basic principles and the main features of the invention and the advantages of the invention have been shown and described above, it will be evident to those skilled in the art that the invention is not limited to the details of the foregoing illustrative embodiments, but that the invention may be embodied in other specific forms without departing from the spirit or essential characteristics of the invention. The present embodiments are therefore to be considered in all respects as illustrative and not restrictive, the scope of the invention being indicated by the appended claims rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. Any reference sign in a claim should not be construed as limiting the claim concerned.
Furthermore, it should be understood that although the present description refers to embodiments, not every embodiment may contain only a single embodiment, and such description is for clarity only, and those skilled in the art should integrate the description, and the embodiments may be combined as appropriate to form other embodiments understood by those skilled in the art.

Claims (10)

1. The utility model provides a sampling device is used in shampoo processing, includes processingequipment (100), discharging device (200), carries material device (300) and agitating unit (400), its characterized in that: the processing device (100) comprises a processing kettle (110), a sealing cover (120), a sampling device (130), a motor (150), a guide pipe (160) and a feeding pipe (170), wherein the sealing cover (120) is fixed at the top of the processing kettle (110) through bolts, the sampling device (130) is positioned at the top of the sealing cover (120), the sampling device (130) comprises an air suction pump (131), an air pipe (132) and a sampling pipe (133), the air suction pump (131) is fixed at the top of the sealing cover (120) through bolts, the air pipe (132) is inserted into the left side wall of the air suction pump (131), the sampling pipe (133) is inserted into the left side wall of the air pipe (132), the motor (150) is fixed at the bottom of the processing kettle (110) through bolts, the guide pipe (160) is inserted into the front side wall of the processing kettle (110), and a first electromagnetic valve (161) is sleeved on the guide pipe (160), the feed pipe (170) is welded to the left side wall of the processing kettle (110), the left end of the feed pipe (170) is sleeved with the cover plate (171), the discharging device (200) is located on the right side wall of the processing kettle (110), the discharging device (200) comprises a discharging pipe (210), a second electromagnetic valve (220) and a hydraulic cylinder (230), one end of the processing kettle (110) far away from the guide pipe (160) is plugged with the discharging pipe (210), the left side wall of the discharging pipe (210) is fixed on the right side wall of the processing kettle (110) through bolts, the hydraulic cylinder (230) is located in an inner cavity of the discharging pipe (210), the left side wall of the hydraulic cylinder (230) is fixed on the right side wall of the processing kettle (110) through bolts, a disc (231) is fixed on the right side wall of the hydraulic cylinder (230) through bolts, and the disc (231) is in sliding contact with the inner side wall of the discharging pipe (210), the second electromagnetic valve (220) is sleeved outside the right end of the discharge pipe (210), the lifting device (300) is located at the top of the sealing cover (120), the lifting device (300) comprises a sleeve (310) and a lifting pipe (320), the sleeve (310) is welded at the top of the sealing cover (120), the lifting pipe (320) is located in an inner cavity of the sleeve (310), the lifting pipe (320) is of a hollow structure, a connector (321) is inserted into the top of the lifting pipe (320), the lifting pipe (320) penetrates through the sleeve (310) and extends to an inner cavity of the processing kettle (110), the sampling pipe (133) is inserted into the connector (321), the stirring device (400) is located at the bottom of the inner cavity of the processing kettle (110), the stirring device (400) comprises a stand column (410) and a stirring rod (420), stand (410) through the bearing with the inner chamber bottom of processing cauldron (110) is rotated and is connected, stirring rod (420) weld in the lateral wall of stand (410), the transmission shaft in motor (150) pass through the gear with the draw-in groove meshing of stand (410) bottom is connected.
2. The sampling device for shampoo processing as set forth in claim 1, wherein: the inner cavity of the processing kettle (110) is a circular cavity, the bottom of the processing kettle (110) is of an inclined plane structure, and the conduit (160) is communicated with the lower point of the inclined plane.
3. The sampling device for shampoo processing as set forth in claim 1, wherein: the bottom of the processing kettle (110) is sleeved with a chassis (140), three support columns (141) are welded at the bottom of the chassis (140), and the three support columns (141) are distributed in a triangular mode.
4. The sampling device for shampoo processing as set forth in claim 1, wherein: the bottom of the motor (150) is fixed with a U-shaped seat (151) through bolts, and two ends of the U-shaped seat (151) are respectively fixed with the bottom of the processing kettle (110) through bolts.
5. The sampling device for shampoo processing as set forth in claim 1, wherein: the inner chamber joint of sleeve pipe (310) has rubber buffer (311), open the inside of rubber buffer (311) has the through-hole, carry material pipe (320) to run through the through-hole with rubber buffer (311) sliding connection.
6. The sampling device for shampoo processing as set forth in claim 1, wherein: the lateral wall of sleeve pipe (310) is opened there is U type draw-in groove, U type draw-in groove along the top of sleeve pipe (310) extends downwards to rubber buffer (311) department.
7. The sampling device for shampoo processing as set forth in claim 1, wherein: two stirring boards (421) have been welded respectively to the last lateral wall of stirring rod (420) and lower lateral wall, stirring board (421) along the axis symmetric distribution of stirring rod (420).
8. The sampling device for shampoo processing as set forth in claim 1, wherein: the bottom of the material extracting pipe (320) is inserted with a feeding head (322), the feeding head (322) is communicated with the inner cavity of the material extracting pipe (320), and the feeding head (322) extends to the inner cavity of the processing kettle (110) through the sleeve (310).
9. The sampling device for shampoo processing as set forth in claim 1, wherein: the feeding pipe (170) is obliquely positioned on the left side wall of the processing kettle (110), the inner side wall of the feeding pipe (170) is embedded with a heater (172), and the heater (172) is annularly distributed on the inner side wall of the feeding pipe (170).
10. The sampling device for shampoo processing as set forth in claim 1, wherein: the right side wall of discharging pipe (210) has cup jointed stub bar (211), stub bar (211) presents the toper structure, stub bar (211) with the inner chamber intercommunication of discharging pipe (210).
CN202120630429.4U 2021-03-29 2021-03-29 Sampling device is used in shampoo processing Active CN215065490U (en)

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Application Number Priority Date Filing Date Title
CN202120630429.4U CN215065490U (en) 2021-03-29 2021-03-29 Sampling device is used in shampoo processing

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202120630429.4U CN215065490U (en) 2021-03-29 2021-03-29 Sampling device is used in shampoo processing

Publications (1)

Publication Number Publication Date
CN215065490U true CN215065490U (en) 2021-12-07

Family

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Application Number Title Priority Date Filing Date
CN202120630429.4U Active CN215065490U (en) 2021-03-29 2021-03-29 Sampling device is used in shampoo processing

Country Status (1)

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