CN214781732U - Sampling device for brewing prepared white spirit - Google Patents

Sampling device for brewing prepared white spirit Download PDF

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Publication number
CN214781732U
CN214781732U CN202121665262.1U CN202121665262U CN214781732U CN 214781732 U CN214781732 U CN 214781732U CN 202121665262 U CN202121665262 U CN 202121665262U CN 214781732 U CN214781732 U CN 214781732U
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reagent bottle
sealing block
injection pipe
pipeline
white spirit
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CN202121665262.1U
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Chinese (zh)
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孙挺
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Grain And Grass Warehouse Co ltd
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Grain And Grass Warehouse Co ltd
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Abstract

The utility model discloses a sampling device for brewing formulated white spirit, which comprises a carrier, wherein an air pump is arranged on the carrier, the input end of the air pump is provided with a main pipeline, the upper part of the carrier is provided with a sealing block, the sealing block is used for sealing the opening of a reagent bottle, the lower end of the carrier is provided with a supporting mechanism, the supporting mechanism corresponds to the sealing block, the supporting mechanism is used for pushing the reagent bottle to abut against the sealing block, a secondary pipeline and an injection pipe are arranged in the sealing block, the secondary pipeline and the injection pipe both penetrate through the sealing block, the head end of the secondary pipeline is communicated with the main pipeline, the tail end of the secondary pipeline is used for extending into the opening of the reagent bottle, the head end of the injection pipe is used for connecting a fermentation tank, the tail end of the injection pipe is used for extending into the reagent bottle, so as to optimize the existing white spirit fermentation tank to carry out real-time sample detection, each fermentation tank is required to carry out independent operation sampling, the sampling efficiency is low.

Description

Sampling device for brewing prepared white spirit
Technical Field
The utility model relates to a preparation type white spirit brewage, concretely relates to a sampling device for preparation type white spirit brewage.
Background
The white spirit is one of six distilled spirits in the world through special processes of natural microorganism inoculation, solid saccharification and fermentation, solid retort distillation and the like, and the flavor of the white spirit is mainly obtained by saccharifying and fermenting materials and distilling the materials. Conventional fermentors perform fermentation by mixing mainly the fermentation substance in the fermenter at one time, thereby providing an environment in the fermenter which is easy for the growth of microorganisms.
Present configuration type white spirit need carry out a lot of and blend the debugging, for control quality, in the process of blending, generally can blend a plurality of experimental groups to every experimental group after blending need carry out real-time sampling detection in carrying out fermentation process, and its fermentation cylinder generally is traditional fermentation vessel, mainly samples through the mode of opening the fermentation cylinder, and samples and mainly takes out the thick liquid through the cylinder and carry out the selective examination, and its operation cycle is longer. Although some fermenters have sampling ports, it is still necessary for the operator to independently sample each fermenter during the course of performing multiple tests, which results in low sampling efficiency, and therefore it is worth studying how to sample multiple fermenters quickly.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a sampling device for making up type white spirit brew to expect to optimize current white spirit fermentation cylinder and examine the in-process that the appearance detected in real time, need every fermentation cylinder to carry out the independent operation sample, the lower problem of its sampling efficiency.
In order to solve the technical problem, the utility model adopts the following technical scheme:
the utility model provides a sampling device for making up type white spirit brew, which comprises a carrier, be equipped with the air pump on the above-mentioned carrier, above-mentioned air pump input is equipped with the trunk line, above-mentioned carrier upper portion is equipped with the closing block, above-mentioned closing block is used for sealing the opening of reagent bottle, above-mentioned carrier lower extreme is equipped with holds up the mechanism, above-mentioned holding up mechanism is corresponding with the closing block, above-mentioned holding up mechanism is used for promoting the reagent bottle and contradicts the closing block, be equipped with inferior pipeline and filling tube in the above-mentioned closing block, above-mentioned inferior pipeline and filling tube all run through the closing block, above-mentioned inferior pipeline head end intercommunication trunk line, above-mentioned inferior pipeline end is used for stretching into reagent bottle opening part, above-mentioned filling tube head is used for connecting the fermentation cylinder, above-mentioned filling tube end is used for stretching into in the reagent bottle.
Preferably, the carrier includes a bottom plate, a support beam is arranged on one side of the bottom plate, and a top plate is arranged on the support beam; the sealing block is arranged at the lower end of the top plate, the supporting mechanism is arranged at the upper end of the bottom plate, the number of the sealing blocks is more than two, the secondary pipelines and the injection pipes correspond to the number of the sealing blocks, and the secondary pipelines are provided with valves
Further, above-mentioned mechanism of holding up includes the sleeve, and above-mentioned sleeve cavity is equipped with the telescopic link in the above-mentioned sleeve, and above-mentioned telescopic link upper end is equipped with the push pedal, and reset spring is established to the cover on the above-mentioned telescopic link, and above-mentioned reset spring both ends conflict push pedal and sleeve respectively, and above-mentioned push pedal is used for conflicting reagent bottle lower extreme.
A further technical scheme is that, above-mentioned sleeve is more than two, and above-mentioned push pedal upper end is equipped with anti-skidding rubber, is equipped with the guide rail in the above-mentioned sleeve, and above-mentioned telescopic link lower extreme is equipped with the limiting plate, and in the guide rail was arranged in to above-mentioned limiting plate, above-mentioned sleeve top was equipped with the spacing ring, and above-mentioned spacing ring is used for the limiting plate of contradicting.
Preferably, the sealing block comprises a rigid part and a flexible part, the rigid part is provided with a step, the edge of the step is provided with a chamfer, the flexible part is hollow, the flexible part is sleeved on the rigid part, the outer wall of the flexible part is conical, and the flexible part is used for abutting against and sealing the opening of the reagent bottle.
The further technical scheme is that the rigid part is provided with two through holes, the secondary pipeline and the injection pipe penetrate through the through holes, more than one sealing ring is arranged in the through holes, and the sealing rings are used for abutting against the outer walls of the secondary pipeline and the injection pipe.
Still further technical scheme is that an insertion cavity is formed in the sealing ring, and the inner wall of the insertion cavity is inclined towards the central axis of the sealing ring gradually from top to bottom.
Compared with the prior art, the beneficial effects of the utility model are one of following at least:
the utility model discloses a carrier is as the bearing unit, promote reagent bottle through holding up the mechanism, make reagent bottle upper end opening conflict closed block, thereby the reagent bottle is sealed by the closed block, utilize and hold up the mechanism and exert pressure, thereby guarantee that reagent bottle and closed block are contradicted each other, produce suction through the air pump, make inferior pipeline produce the negative pressure, and pass the closed block and act on the reagent bottle, form the negative pressure in making the reagent bottle, the thick liquid pump in rethread injection tube with the fermentation cylinder is sent to the reagent bottle, thereby accomplish the sample of reagent bottle. The sampling of a plurality of fermentation tanks can be accomplished through the infusion tube expert fermentation cylinder, improves sample efficiency.
The utility model discloses a valve control is the gas flow of pipeline once to make the negative pressure state of reagent bottle controllable, thereby make the injection pipe stop the sample through the valve. The relative position of the lifting mechanism and the closing block is maintained by the bottom plate and the top plate. The supporting mechanism moves in the sleeve through the telescopic rod, so that the height of the push plate is adjusted, the supporting mechanism can adapt to different reagent bottle sampling, the thrust is kept through the reset spring, and the push plate can apply the thrust to the reagent bottles.
The utility model discloses a guide rail restraint telescopic link removal route in the sleeve is contradicted each other through limiting plate and spacing ring to avoid the telescopic link to deviate from the sleeve in the accident.
The utility model discloses a seal the piece, keep supporting strength through the rigidity piece, establish on the rigidity piece through the flexible piece cover to flexible piece contact reagent bottle can fill the clearance between seal piece and the reagent bottle, thereby guarantees the inside gas tightness of reagent bottle, makes flexible piece outer wall diameter can increase gradually through the step, avoids seal a local pressure too big through the chamfer, leads to the local pressurized breakage of reagent bottle.
The utility model discloses a through-hole installation and fixed time pipeline and the filling tube of rigidity piece utilize the sealing ring to guarantee the gas tightness of through-hole to be convenient for the inside negative pressure that forms of reagent bottle. The installation and the dismantlement of secondary pipeline and filling tube are convenient for in the chamber that inserts of sealing ring, and insert the slope of intracavity wall and set up, can effectively seal the clearance of through-hole and secondary pipeline outer wall, filling tube outer wall.
Drawings
Fig. 1 is a schematic structural diagram of the present invention.
Fig. 2 is a schematic view of the structure of the lifting mechanism of the present invention.
Fig. 3 is a schematic view of the structure of the sealing block of the present invention.
Description of reference numerals:
1-carrier, 2-air pump, 3-main pipe, 4-sealing block, 5-lifting mechanism, 6-sleeve, 7-telescopic rod, 8-rigid part, 9-sealing ring, 10-flexible part, 101-bottom plate, 102-supporting beam, 103-top plate, 301-secondary pipe, 302-injection pipe, 303-valve, 601-guide rail, 602-spacing ring, 701-push plate, 702-reset spring, 703-anti-slip rubber, 704-limiting plate, 801-step, 802-chamfer, 803-through hole, 901-insertion cavity and A-reagent bottle.
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention more clearly understood, the present invention is further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the invention and are not intended to limit the invention.
Referring to fig. 1 to 3, an embodiment of the utility model is, a sampling device for making up type white spirit brew, including carrier 1, wherein carrier 1 can be the alloy material to guarantee sufficient mechanical strength, be equipped with air pump 2 on above-mentioned carrier 1, wherein air pump 2 is current small-size air pump, drives through external battery or municipal power, and 2 inputs of above-mentioned air pump are equipped with trunk line 3, and its air pump end is used for connecting external atmosphere, takes out the gas in trunk line 3 through 2 work of air pump and separates, and makes trunk line 3 form the negative pressure.
The upper part of the carrier 1 is provided with a sealing block 4, wherein the external outline of the sealing block 4 is gradually increased from bottom to top, the section of the sealing block 4 is circular, so that the sealing block 4 is convenient to correspond to the opening of the reagent bottle A, the sealing block 4 is used for sealing the opening of the reagent bottle A, the sealing block 4 is pressed against the inner wall of the opening of the reagent bottle A, so that the inner cavity of the reagent bottle A is sealed,
the lower end of the carrier 1 is provided with a supporting mechanism 5, the supporting mechanism 5 corresponds to the sealing block 4, the supporting mechanism 5 is used for pushing the reagent bottle A to abut against the sealing block 4, the supporting mechanism 5 supports the reagent bottle A, and the supporting mechanism 5 corresponds to the sealing block 4, so that the reagent bottle A is guaranteed to be supported by the supporting mechanism 5 in the process and can correspond to the sealing block 4.
It should be noted that, in the actual operation process, when the lifting mechanism 5 is used, the reagent bottle a needs to be slowly placed, and meanwhile, the user needs to hold the reagent bottle a, and in the process that the reagent bottle a gradually rises, the position of the reagent bottle a is corrected, so that the opening of the reagent bottle a is ensured to stably correspond to the sealing block 4.
The sealing block 4 is provided with a secondary pipeline 301 and an injection pipe 302, wherein the secondary pipeline 301 and the injection pipe 302 are fixed in the sealing block 4, and both the secondary pipeline 301 and the injection pipe 302 penetrate through the sealing block 4. Wherein, secondary pipeline 301 and injection pipe 302 all stretch out from the lower extreme of closing block 4, and it is worth noting that, secondary pipeline 301 stretches out to the lower extreme of closing block 4 can, avoids secondary pipeline 301 to contact the thick liquid in the reagent bottle A. Wherein, the injection tube 302 does not contact the bottom of the reagent bottle A in principle, when the reagent bottle A is fixed on the sealing block 4, the lower end of the sealing block 4 has a clearance with the reagent bottle A, the clearance is larger than the length of the injection tube 302 exceeding the sealing block 4,
the head end of the secondary pipeline 301 is communicated with the main pipeline 3, the tail end of the secondary pipeline 301 is used for extending into the opening of the reagent bottle, the head end of the injection pipe 302 is used for connecting the fermentation tank, and the tail end of the injection pipe 302 is used for extending into the reagent bottle A. Through inferior pipeline 301 intercommunication trunk line 3 to inferior pipeline 301 can be taken out from the gas in the reagent bottle A, makes the interior negative pressure that forms of reagent bottle A, its negative pressure effect and trunk line 3, so that the trunk line 3 takes out the thick liquid sample in the fermentation cylinder and send to in the reagent bottle A. The device can be in advance with the filler pipe 302 access fermentation cylinder, according to the measuring needs, the thick liquid in the real-time extraction fermentation cylinder.
Based on the above embodiment, referring to fig. 1, another embodiment of the present invention is that the carrier 1 includes a bottom plate 101, a supporting beam 102 is disposed on one side of the bottom plate 101, and a top plate 103 is disposed on the supporting beam 102; the bottom plate 101 is used as a supporting unit, the supporting beam 102 is used for keeping a gap between the top plate 103 and the bottom plate 101, so that the sealing block 4 and the lifting mechanism 5 are installed and maintained, and after the lifting mechanism 5 and the sealing block 4 are installed, the relative position of the lifting mechanism 5 and the sealing block 4 can be maintained.
Specifically, the bottom plate 101, the top plate 103 and the support beam 102 are integrally formed, the bottom of the supporting mechanism 5 can be welded on the bottom plate 101, and the sealing block 4 can also be fixed on the top plate 103 by welding. Wherein the top plate 103 is left with a gap to facilitate the passage of the secondary pipe 301 and the injection pipe 302.
The sealing block 4 is installed at the lower end of the top plate 103, the lifting mechanism 5 is installed at the upper end of the bottom plate 101, the number of the sealing blocks 4 is more than two, the number of the secondary pipelines 301 and the number of the injection pipes 302 correspond to the number of the sealing blocks 4, and the secondary pipelines 301 are provided with valves 303.
Wherein the block 4 is more than two, then hold up 5 quantity of mechanism and block 4 and correspond, wherein, valve 303 can be for current valve, through the circulation state of valve 303 control secondary pipeline 301, seals a plurality of reagent bottle A on different block 4, when a certain reagent bottle A fills up or needs to take off, can close secondary pipeline 301 on the block 4 that this reagent bottle A corresponds through valve 303 to make this reagent bottle A maintain the ordinary pressure and stop the sample.
Based on the above embodiment, referring to fig. 2, another embodiment of the present invention is that the supporting mechanism 5 includes a sleeve 6, wherein the sleeve 6 is made of alloy material, and the bottom of the sleeve 6 is fixed on the bottom plate 101 of the carrier 1. The sleeve 6 is hollow, the telescopic rod 7 is arranged in the sleeve 6, the push plate 701 is arranged at the upper end of the telescopic rod 7, the telescopic rod 7 moves up and down in the sleeve 6, the return spring 702 is sleeved on the telescopic rod 7, two ends of the return spring 702 respectively abut against the push plate 701 and the sleeve 6, and the push plate 701 is used for abutting against the lower end of the reagent bottle A. The pushing force is continuously applied to the push plate 701 through the return spring 702, the telescopic rod 7 drives the push plate 701 to move horizontally upwards, then the reagent bottle A on the push plate 701 moves to the position corresponding to the sealing block 4 and is abutted by the sealing block 4, and at the moment, the pushing force is continuously applied to the reagent bottle A by the push plate 701, so that the reagent bottle A and the sealing block 4 are abutted with each other; helping the reagent bottle a to maintain a stable sealed state.
Further, the number of the sleeves 6 is more than two, wherein two sleeves 6 correspond to one push plate 701, and the sleeves 6 are distributed on two sides of the push plate 701, so that the telescopic rods 7 in the sleeves 6 can stably drive the push plate 701 to move. The upper end of the push plate 701 is provided with the anti-slip rubber 703, and the friction force between the reagent bottle A and the push plate 701 is increased through the anti-slip rubber 703, so that the reagent bottle A is prevented from sliding on the push plate 701 at will.
The sleeve 6 is provided with a guide rail 601, the guide rail 601 restricts the moving stroke of the telescopic rod 7, the lower end of the telescopic rod 7 is provided with a limit plate 704, the limit plate 704 is arranged in the guide rail 601, the top of the sleeve 6 is provided with a limit ring 602, and the limit ring 602 is used for abutting against the limit plate 704.
The limiting plate 704 and the telescopic rod 7 are integrally arranged, the limiting ring 602 is hollow, so that the telescopic rod 7 can extend out of the sleeve 6, and the size of the limiting plate 704 is larger than that of the telescopic rod 7; the external contour of the telescopic rod 7 is matched with the internal contour of the limiting ring 602, and the internal contour of the guide rail 601 is matched with the external contour of the limiting plate 704, so that the telescopic rod 7 is restrained in the guide rail 601 by the limiting plate 704, and the telescopic rod 7 is prevented from accidentally sliding out of the sleeve 6.
Based on the above embodiment, referring to fig. 3, another embodiment of the present invention is that the sealing block 4 includes a rigid member 8 and a flexible member 10, the rigid member 8 is made of alloy, the flexible member 10 is made of rubber, the rigid member 8 is provided with a step 801, and the step 801 facilitates increasing a contact area between the flexible member 10 and the rigid member 8, so that the flexible member 10 can be fixed on the rigid member 8.
Above-mentioned step 801 border is equipped with chamfer 802, because the flexible piece 10 has tension, avoids step 801 to produce local pressure too big through chamfer 802, effectively avoids the too big extrusion risk that causes reagent bottle A of local pressure.
The flexible member 10 is hollow, the flexible member 10 is sleeved on the rigid member 8, the outer wall of the flexible member 10 is conical, and the flexible member 10 is used for abutting against and sealing the opening of the reagent bottle. The tapered flexible part 10 gradually increases the diameter of the outer contour, so that the closing block 4 can close the openings of reagent bottles a of different diameters.
Further, the rigid member 8 is provided with two through holes 803, wherein the size of the through hole 803 is slightly larger than that of the secondary pipeline 301 and the injection pipe 302, the secondary pipeline 301 and the injection pipe 302 penetrate through the through hole 803, the through hole 803 is provided with more than one sealing ring 9, the sealing ring 9 is made of rubber, the outer wall of the sealing ring 9 is attached to the through hole 803, and the sealing ring 9 is used for abutting against the outer walls of the secondary pipeline 301 and the injection pipe 302; when the secondary pipe 301 and the injection pipe 302 are inserted into the through hole 803, the secondary pipe 301 and the injection pipe 302 press the sealing ring 9, so that the sealing ring 9 fills the gap between the secondary pipe 301 and the injection pipe 302 and the inner wall of the through hole 803, thereby ensuring the air tightness of the through hole 803.
Furthermore, an insertion cavity 901 is formed inside the sealing ring 9, wherein the sealing ring 9 is fixed in the through hole 803, and then the pipe 301 and the injection pipe 302 are inserted into the insertion cavity 901 of the sealing ring 9, and the inner wall of the insertion cavity 901 is gradually inclined from top to bottom toward the central axis of the sealing ring 9. Due to the toughness of the sealing ring 9, the sealing ring is inserted from the side with the larger diameter of the insertion cavity 901 and penetrates out from the side with the smaller diameter of the insertion cavity 901, so that the sealing ring 9 is tightly attached to the inner walls of the secondary pipeline 301 and the injection pipe 302, and the installation convenience and stability of the secondary pipeline 301 and the injection pipe 302 are improved.
Reference throughout this specification to "one embodiment," "another embodiment," "an embodiment," "a preferred embodiment," or the like, means that a particular feature, structure, or characteristic described in connection with the embodiment is included in at least one embodiment described generally in this application. The appearances of the same phrase in various places in the specification are not necessarily all referring to the same embodiment. Further, when a particular feature, structure, or characteristic is described in connection with any embodiment, it is submitted that it is within the scope of the invention to effect such feature, structure, or characteristic in connection with other embodiments.
Although the invention has been described herein with reference to a number of illustrative embodiments thereof, it should be understood that numerous other modifications and embodiments can be devised by those skilled in the art that will fall within the spirit and scope of the principles of this invention. More specifically, various variations and modifications are possible in the component parts and/or arrangements of the subject combination arrangement within the scope of the disclosure, the drawings and the appended claims. In addition to variations and modifications in the component parts and/or arrangements, other uses will also be apparent to those skilled in the art.

Claims (7)

1. The utility model provides a sampling device for making type white spirit brew which characterized in that: comprises a carrier (1), an air pump (2) is arranged on the carrier (1), a main pipeline (3) is arranged at the input end of the air pump (2), the upper part of the carrier (1) is provided with a sealing block (4), the sealing block (4) is used for sealing the opening of the reagent bottle, the lower end of the carrier (1) is provided with a supporting mechanism (5), the supporting mechanism (5) corresponds to the sealing block (4), the supporting mechanism (5) is used for pushing the reagent bottle to abut against the sealing block (4), a secondary pipeline (301) and an injection pipe (302) are arranged in the sealing block (4), the secondary pipeline (301) and the injection pipe (302) both penetrate through the sealing block (4), the head end of the secondary pipeline (301) is communicated with the main pipeline (3), the tail end of the secondary pipeline (301) is used for extending into the opening of the reagent bottle, the head end of the injection pipe (302) is used for connecting the fermentation tank, and the tail end of the injection pipe (302) is used for extending into the reagent bottle.
2. A sampling device for brewing a formulated white spirit according to claim 1, characterized in that: the carrier (1) comprises a bottom plate (101), a supporting beam (102) is arranged on one side of the bottom plate (101), and a top plate (103) is arranged on the supporting beam (102); the sealing block (4) is arranged at the lower end of the top plate (103), the supporting mechanism (5) is arranged at the upper end of the bottom plate (101), the sealing block (4) is more than two, the secondary pipeline (301) and the injection pipe (302) correspond to the sealing block (4) in quantity, and the secondary pipeline (301) is provided with a valve (303).
3. A sampling device for brewing a formulated white spirit according to claim 1, characterized in that: hold up mechanism (5) and include sleeve (6), sleeve (6) cavity, be equipped with telescopic link (7) in sleeve (6), telescopic link (7) upper end is equipped with push pedal (701), reset spring (702) are established to the cover on telescopic link (7), reset spring (702) both ends are contradicted push pedal (701) and sleeve (6) respectively, push pedal (701) are used for conflicting reagent bottle lower extreme.
4. A sampling device for brewing of a formulated white spirit according to claim 3, characterized in that: sleeve (6) are more than two, push pedal (701) upper end is equipped with anti-skidding rubber (703), be equipped with guide rail (601) in sleeve (6), telescopic link (7) lower extreme is equipped with limiting plate (704), guide rail (601) are arranged in to limiting plate (704), sleeve (6) top is equipped with spacing ring (602), spacing ring (602) are used for conflicting limiting plate (704).
5. A sampling device for brewing a formulated white spirit according to claim 1, characterized in that: seal piece (4) including rigid part (8) and flexible piece (10), rigid part (8) are equipped with step (801), step (801) border is equipped with chamfer (802), flexible piece (10) cavity, flexible piece (10) cover is established on rigid part (8), flexible piece (10) outer wall is the toper, flexible piece (10) are used for contradicting and sealed reagent bottle's opening.
6. A sampling device for brewing of a formulated white spirit according to claim 5, characterized in that: be equipped with two through-holes (803) on rigid piece (8), inferior pipeline (301) and injection pipe (302) run through-hole (803), be equipped with more than one sealing ring (9) in through-hole (803), sealing ring (9) are used for contradicting inferior pipeline (301) and injection pipe (302) outer wall.
7. A sampling device for brewing of a formulated white spirit according to claim 6, characterized in that: an insertion cavity (901) is formed in the sealing ring (9), and the inner wall of the insertion cavity (901) is inclined towards the central axis of the sealing ring (9) from top to bottom gradually.
CN202121665262.1U 2021-07-21 2021-07-21 Sampling device for brewing prepared white spirit Active CN214781732U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202121665262.1U CN214781732U (en) 2021-07-21 2021-07-21 Sampling device for brewing prepared white spirit

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202121665262.1U CN214781732U (en) 2021-07-21 2021-07-21 Sampling device for brewing prepared white spirit

Publications (1)

Publication Number Publication Date
CN214781732U true CN214781732U (en) 2021-11-19

Family

ID=78716142

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202121665262.1U Active CN214781732U (en) 2021-07-21 2021-07-21 Sampling device for brewing prepared white spirit

Country Status (1)

Country Link
CN (1) CN214781732U (en)

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