CN213725831U - PAM medicine soaking machine - Google Patents

PAM medicine soaking machine Download PDF

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Publication number
CN213725831U
CN213725831U CN202022163468.6U CN202022163468U CN213725831U CN 213725831 U CN213725831 U CN 213725831U CN 202022163468 U CN202022163468 U CN 202022163468U CN 213725831 U CN213725831 U CN 213725831U
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stirring
box
tank
pam
pipe
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CN202022163468.6U
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邵荣光
查德常
王刚
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Shanghai Chenju Electromechanical Technology Co ltd
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Shanghai Chenju Electromechanical Technology Co ltd
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Abstract

The utility model discloses a PAM medicine soaking machine, it include one inside be hollow box, set up in just have the feeder hopper of rotatory feed valve, have the inlet tube of flow control valve and be used for stirring the rabbling mechanism of liquid medicine on the box, mixing tank, curing tank and hold up tank have set gradually in the box, be provided with a space bar between two adjacent grooves, each the space bar upper end is provided with the overflow mouth, the feeder hopper export with the delivery port of inlet tube all with the mixing tank intercommunication, the first stirring subassembly of rabbling mechanism liquid medicine in being used for stirring the mixing tank, first stirring subassembly is including setting up first agitator motor on the box, receiving first agitator motor driven first rotary rod follows some stirring frames of first rotary rod outer wall circumference fixed connection. The utility model discloses the technical effect who has is: the accuracy of the actual concentration of the obtained liquid medicine is improved.

Description

PAM medicine soaking machine
Technical Field
The application relates to the technical field of sewage treatment equipment, in particular to a PAM medicine soaking machine.
Background
Polyacrylamide (PAM) is a water-soluble high molecular compound, and polyacrylamide and derivatives thereof can be used as effective flocculating agents, thickening agents, paper thickening agents, liquid drag reducers and the like and are widely applied to industrial departments such as water treatment and the like.
PAM medicine machine of steeping that uses generally at present carries out preliminary mixing through stirring vane and water in dissolving the district including dissolving district, curing district and reservoir with the PAM powder, and the liquid medicine overflow carries out further mixture to the curing in the district, and the medicine of steeping is accomplished to the storage intra-area in the liquid medicine that mixes again overflow, and the concentration of the liquid medicine of steeping is controlled through the delivery capacity of PAM powder and water in the unit interval.
The above prior art solutions have the following drawbacks: when PAM powder is preliminarily mixed through the stirring blades in the dissolution zone, the powder is easily attached to the stirring blades, so that the concentration of the actually obtained liquid medicine is lower.
SUMMERY OF THE UTILITY MODEL
In order to improve the accuracy of the actual gained liquid medicine concentration of equipment, this application provides a PAM bubble medicine machine.
The application provides a PAM bubble medicine machine adopts following technical scheme:
the utility model provides a PAM bubble medicine machine, including an inside hollow box, set up in on the box and have the feeder hopper of rotatory feed valve, have flow control valve the inlet tube, be used for stirring the rabbling mechanism of liquid medicine and set up in the drain pipe of box one side, the rabbling mechanism includes first stirring subassembly, first stirring subassembly is including setting up first agitator motor on the box, receiving first agitator motor driven first rotary rod follows a plurality of fixedly connected with of first rotary rod outer wall circumference is the stirring frame of fretwork, each the length direction of stirring frame with the length direction of first rotation axis is unanimous.
Through adopting above-mentioned technical scheme, the stirring frame can play the mixed action to the material in the box, and at the stirring in-process, the stirring frame that is the fretwork can reduce and adhere to the powder that lies in on stirring the subassembly to improve the accuracy of the actual gained liquid medicine concentration of equipment.
Optionally, the water outlet of the water inlet pipe is aligned with the stirring frame.
Through adopting above-mentioned technical scheme, when the inlet tube goes out water, the delivery port of inlet tube aims at the stirring frame, can wash the stirring frame, further reduces the powder and adheres to on the stirring frame.
Optionally, the stirring frame and the outlet of the feed hopper do not coincide in projection on a horizontal plane.
Through adopting above-mentioned technical scheme, the powder that the feeder hopper was thrown into can not directly fall on the agitator frame top to further reduce the possibility that the powder is attached to on the agitator frame.
Optionally, first stirring subassembly include fixed connection in motor dead lever, fixed connection in box upper end motor dead lever, the last motor that just is used for supporting first agitator motor of motor dead lever support horizontal pole, fixed connection in the motor supports guide gear, the coaxial fixed connection of horizontal pole lower extreme in the running gear, the fixed cover of first rotary rod upper end are located turn to the spheroid on the first rotary rod, offer on the box and be used for the joint turn to spheroidal spheroid recess, running gear with the transmission of guide gear tooth wheel, the relative horizontal plane slope of first rotary rod sets up.
Through adopting above-mentioned technical scheme, can increase the stirring scope of stirring frame to make the stirring frame can stir the material in the mixing tank better, in addition, the relative horizontal plane slope of rotary rod and rotating frame sets up, can be when stirring, and the powder on edge drops more easily on attaching to the frame, thereby makes the powder on the frame attach to still less.
Optionally, mixing tank, ageing tank and hold up tank have set gradually in the box, the mixing tank with be provided with a space bar between the ageing tank, the ageing tank with also be provided with one between the hold up tank the space bar, each the overflow mouth has been seted up to the space bar upper end, the drain pipe with the hold up tank intercommunication, the feeder hopper export with the delivery port of inlet tube all with the mixing tank intercommunication, first stirring subassembly is used for the stirring liquid medicine in the mixing tank, rabbling mechanism is including being used for the stirring the second stirring subassembly of liquid medicine in the ageing tank is with being used for the stirring the third stirring subassembly of liquid medicine in the hold up tank, second stirring subassembly pivoted linear velocity is greater than third stirring subassembly pivoted linear velocity.
Through adopting above-mentioned technical scheme, second rotating blade mixes the liquid medicine in ageing groove and the hold up tank respectively with third rotating blade, and second rotating blade is different with third rotating blade pivoted linear velocity for the liquid medicine can stir more evenly.
Optionally, the feeder hopper top is provided with filtering component, filtering component include with the feeder hopper upper end is connected and the rose box of lower extreme and external intercommunication, be provided with the filter screen that is used for filtering the PAM powder in the rose box, feeder hopper lateral wall fixed mounting has storehouse wall type vibrator, storehouse wall type electromagnetic shaker is located rotatory feed valve top.
Through adopting above-mentioned technical scheme, the screen cloth has sieved PAM powder for PAM powder can be more easily melted into the aquatic, and the bulkhead formula vibrator makes PAM powder that sieves on the filter screen fall more easily.
Optionally, the filter box is fixedly connected with a plurality of first connecting blocks along the circumferential direction of the outer wall of the filter box, a second connecting block is arranged below each first connecting block, each second connecting block is arranged along the circumferential direction of the outer wall of the feed hopper and fixedly connected with the feed hopper, and each first connecting block is detachably connected with the corresponding second connecting block below the first connecting block.
Through adopting above-mentioned technical scheme, the rose box can be dismantled with the feeder hopper and be connected, the filterable cleanness in the rose box of being convenient for and change.
Optionally, the lower end of the filter box is fixedly connected with a clamping lug, and a clamping groove used for clamping the clamping lug is formed in the upper end of the feed hopper.
Through adopting above-mentioned technical scheme, not only can be so that the rose box is inseparabler with being connected of feeder hopper, can also reduce the PAM powder that adheres to in rose box and feeder hopper junction.
Optionally, the outer wall of the box body is provided with a drainage mechanism, the drainage mechanism comprises a first drainage pipe communicated with the mixing tank, a second drainage pipe communicated with the ripening tank and a third drainage pipe communicated with the storage tank, the first drainage pipe, the second drainage pipe and the third drainage pipe are all located on one side of the lower portion of the box body and are all provided with electromagnetic valves, the first drainage pipe is far away from one end of the box body and is fixedly connected with a drainage header pipe communicated with the first drainage pipe, the drainage header pipe is respectively far away from one end of the box body and is fixedly connected with the second drainage pipe and the third drainage pipe, and the drainage header pipe is respectively communicated with the second drainage pipe and the third drainage pipe.
Through adopting above-mentioned technical scheme, after the device finishes using, the unnecessary liquid medicine in three inslot can be discharged through first fluid-discharge tube, second fluid-discharge tube and third fluid-discharge tube, and the liquid medicine in first fluid-discharge tube, second fluid-discharge tube and the third flowing back all flows into and the flowing back house steward, discharges the liquid medicine through the flowing back house steward.
Optionally, the bottom of the box body is provided with a rubber non-slip mat.
Through adopting above-mentioned technical scheme, the setting of rubber slipmat can improve the holistic stability of device.
Drawings
Fig. 1 is a schematic overall structure diagram of an embodiment of the present application.
Fig. 2 is a schematic view of a partial explosion of the filter assembly of this embodiment.
Fig. 3 is a sectional view taken along line a-a of fig. 1.
Fig. 4 is a partially enlarged view of a in fig. 3.
Fig. 5 is a partially enlarged view of B in fig. 4.
Fig. 6 is a rear view of the overall structure of the embodiment of the present application.
Description of reference numerals: 1. a feeding mechanism; 11. a filter assembly; 111. a filter screen; 122. a filter box; 1221. clamping the convex block; 1222. a first connection block; 1223. placing a groove; 12. a feed hopper; 121. clamping the groove; 122. a second connecting block; 13. rotating the feed valve; 14. a bin wall vibrator; 2. a water inlet pipe; 21. a flow control valve; 3. a box body; 31. a mixing tank; 32. a ripening tank; 33. a storage tank; 34. a partition plate; 341. a first partition plate; 342. a second partition plate; 35. an overflow port; 36. a rubber non-slip mat; 37. a spherical groove; 4. a stirring mechanism; 41. a first stirring assembly; 411. a first stirring motor; 412. a first rotating rod; 413. a stirring frame; 414. a steering ball; 415. a motor support rail; 416. a motor fixing rod; 417. driving the block; 418. a guide gear; 419. a rotating gear; 42. a second stirring assembly; 421. a second stirring motor; 422. a second rotating rod; 423. a second rotating blade; 43. a third stirring assembly; 431. a third stirring motor; 432. a third rotating rod; 433. a third rotor blade; 5. a liquid outlet pipe; 6. a drainage mechanism; 61. a first drain pipe; 62. a second drain pipe; 63. a third drain pipe; 64. an electromagnetic valve; 65. a liquid discharge header pipe.
Detailed Description
The present application is described in further detail below with reference to figures 1-6.
The embodiment of the application discloses PAM medicine machine that steeps. Referring to fig. 1, PAM medicine making machine, including one inside be hollow cuboid box 3, set up in 3 upper ends of box and with inlet tube 2 of 3 intercommunications of box, set up in the feeding mechanism 1 of inlet tube 2 one side and set up in inlet tube 2 and keep away from the rabbling mechanism 4 of feeding mechanism 1 one side, the rabbling mechanism 4 includes first stirring subassembly 41, second stirring subassembly 42 and third stirring subassembly 43.
Referring to fig. 2, throw material mechanism 1 and include feeder hopper 12 and the filter component 11 that is located the feeder hopper 12 top, filter component 11 includes the cylinder rose box 112 of an upper and lower extreme and external intercommunication and sets up the filter screen 111 that is the cake form in rose box 112, a recess 1123 of placing has been seted up to rose box 112 upper end inner wall circumference, the circumference diameter of rose box 112 upper end inner wall is unanimous with the circumference diameter of filter screen 111, when filter screen 111 upper end supports to lean on placing recess 1123, user's accessible bolt is with filter screen 111 and rose box 112 fixed connection.
Four first connecting blocks 1122 are welded along the circumferential direction of the outer wall of the filter box 112, the distance between two adjacent first connecting blocks 1122 is equal, a second connecting block 122 is arranged below each first connecting block 1122, four second connecting blocks 122 are arranged along the circumferential direction of the outer wall of the feed hopper 12 at equal intervals and are welded with the outer wall of the feed hopper 12, an annular clamping lug 1121 is welded at the lower end of the filter box 112 along the circumferential direction of the lower end of the filter box, a clamping groove 121 used for clamping the clamping lug 1121 is formed in the upper end of the feed hopper 12 along the circumferential direction of the upper end of the feed hopper 12, the height of the clamping lug 1121 is identical to the groove depth of the clamping groove 121, when the clamping lug 1121 is clamped in the clamping groove 121, each first connecting block 1122 abuts against the second connecting block 122 corresponding to the lower end of the feed hopper, and each first connecting block 1122.
The lower extreme of feeder hopper 12 is provided with a rotatory feed valve 13 for the quality of the PAM material that the control unit interval passes through, feeder hopper 12 one side fixed mounting has a bulkhead vibrator 14, and bulkhead vibrator 14 fixed mounting makes the PAM powder on filter screen 111 fall down more easily in feeder hopper 12 one side.
Referring to fig. 3, a mixing tank 31, a curing tank 32 and a storage tank 33 are sequentially arranged in a box body 3, the mixing tank 31, the curing tank 32 and the storage tank 33 are isolated by arranging a partition plate 34, a first partition plate 341 is arranged between the mixing tank 31 and the curing tank 32, a second partition plate 342 is arranged between the curing tank 32 and the storage tank 33, a feed hopper 12 is communicated with the mixing tank 31, overflow ports 35 are respectively arranged at the upper ends of the first partition plate 341 and the second partition plate 342, so that liquid medicine in the mixing tank 31 can enter the curing tank 32 for curing through the overflow port 35 at the upper end of the first partition plate 341, and liquid medicine in the curing tank 32 enters the storage tank 33 through the overflow port 35 at the upper end of the second partition plate 342.
Referring to fig. 3 and 4, the first stirring assembly 41 includes a first stirring motor 411 fixedly installed on the box body 3, a first rotating rod 412 disposed inside the mixing tank 31, and four hollow right trapezoid stirring frames 413 welded along the circumferential direction of the first rotating rod 412, the length direction of the straight edge of the stirring frame 413 is consistent with the axial direction of the first rotating shaft, the length of the upper bottom edge of the stirring frame 413 is greater than the length of the lower bottom edge, two motor fixing rods 416 are welded on the box body 3, a motor supporting cross bar 415 is welded between the two motor fixing rods 416, the first stirring motor 411 is fixedly installed on the motor supporting cross bar 415, a guide gear 418 is fixedly connected to the lower end of the motor supporting cross bar 415, the output shaft of the first stirring motor 411 penetrates through the motor supporting cross bar 415 and the guide gear 418, the output shaft of the first stirring motor 411 and the guide gear 418 rotate relatively, a driving block 417 is fixedly connected to the lower end of the output shaft of the first stirring motor 411, the driving block 417 is arranged obliquely downwards relative to the output shaft of the first stirring motor 411, one end, far away from the first stirring motor 411, of the output shaft of the driving block 417 is fixedly connected with a first rotating rod 412, the axis of the first rotating rod 412 is perpendicular to the plane where the driving block 417 is located, the upper end of the first rotating rod 412 is coaxially and fixedly connected with a rotating gear 419 capable of being meshed with the guide gear 418, the rotating gear 419 circumferentially rotates along the guide gear 418, a steering sphere 414 is welded on the first rotating rod 412, a sphere groove 37 capable of being clamped and turned to the sphere 414 is formed in the upper end face of the box body 3, and the first stirring motor 411 drives the first rotating rod 412 to rotate around the axis of the first rotating rod 412.
When the first rotating rod 412 is driven by the first stirring motor 411 to rotate, the projection of the stirring frame 413 and the outlet of the feeding hopper 12 on the horizontal plane is not overlapped all the time, so that the powder attached to the stirring frame 413 is reduced. The inlet tube 2 is located between the feed hopper 12 and the first stirring motor 411, the water outlet of the inlet tube 2 is communicated with the mixing tank 31, the flow control valve 21 for controlling the delivery amount of water in unit time is fixedly installed on the inlet tube 2, and in order to further reduce the powder attached to the stirring frame 413, the water outlet of the inlet tube 2 is aligned to the stirring frame 413, so that the water column can wash the stirring frame 413.
Referring to fig. 3 and 5, the second stirring assembly 42 includes a second stirring motor 421 fixedly mounted on the box body 3, a second rotating rod 422 located in the ripening tank 32, and four second rotating blades 423 welded along the outer wall of the second rotating rod 422 in the circumferential direction, an output shaft of the second stirring motor 421 penetrates through the upper end surface of the box body 3 and is fixedly connected with the upper end of the second rotating rod 422, the second stirring motor 421 drives the second rotating rod 422 to rotate, so as to drive the second rotating blades 423 to further uniformly mix PAM in the solution in the ripening tank 32 and accelerate the ripening of PAM liquid medicine, the third stirring assembly 43 includes a third stirring motor 431 fixedly mounted on the box body 3, a third rotating rod 432 located in the storage tank 33, and four third rotating blades 433 welded along the outer wall of the third rotating rod 432 in the circumferential direction, an output shaft of the third stirring motor 431 penetrates through the upper end surface of the box body 3 and is fixedly connected with the upper end of the third rotating rod 432, third agitator motor 431 drives third rotary rod 432 and rotates, and the pivoted linear velocity of second rotating blade 423 is greater than third rotating blade 433 pivoted linear velocity to make the liquid medicine can stir more evenly, box 3 one side is provided with a drain pipe 5 that has control flap, and drain pipe 5 is close to box 3 one side and hold up tank 33 intercommunication.
Referring to fig. 6, a drainage mechanism 6 is disposed on one side of the box 3, the drainage mechanism 6 includes a first drainage tube 61 communicated with the mixing tank 31, a second drainage tube 62 communicated with the ripening tank 32, and a third drainage tube 63 communicated with the storage tank 33, the first drainage tube 61, the second drainage tube 62, and the third drainage tube 63 are disposed on one side of the lower portion of the box 3 and are respectively provided with an electromagnetic valve 64, one end of the first drainage tube 61 away from the box 3 is fixedly connected with a drainage manifold 65 communicated with the box, a control valve is disposed on the drainage manifold 65, the drainage manifold 65 is respectively welded with one ends of the second drainage tube 62 and the third drainage tube 63 away from the box 3, the drainage manifold 65 is respectively communicated with the second drainage tube 62 and the third drainage tube 63, and after the drug soaking is completed, the electromagnetic valves 64 on the first drainage tube 61, the second drainage tube 62, and the third drainage tube 63 are respectively opened, so that the waste liquids in the mixing tank 31, the ripening tank 32, and the storage tank 33 respectively pass through the first drainage tube 61, The second drain pipe 62 and the third drain pipe 63 converge to the drain manifold 65 and are discharged. In order to improve the stability of the whole device, a rubber anti-skid pad 36 is welded at the bottom of the box body 3.
The implementation principle of PAM medicine machine of steeping in water of the embodiment of this application does: water passes through flow control valve 21 and makes in water gets into mixing tank 31 according to the velocity of flow that sets for, PAM powder drops into mixing tank 31 through rotatory feed valve 13 ration after sieving through filter screen 111 in, first agitator motor 411 drives first rotary rod 412 and rotates, thereby it rotates to drive stirring frame 413, PAM liquid medicine that stirs passes through overflow mouth 35 on first space bar 341 and gets into in the ageing groove 32, the liquid medicine carries out further stirring back through second stirring subassembly 42, in overflow mouth 35 through the second space bar 342 upper end gets into storage tank 33, the liquid medicine carries out low-speed stirring in storage tank 33 through third stirring subassembly 43 and flows out through drain pipe 5.
The above embodiments are preferred embodiments of the present application, and the protection scope of the present application is not limited by the above embodiments, so: all equivalent changes made according to the structure, shape and principle of the present application shall be covered by the protection scope of the present application.

Claims (10)

1. The utility model provides a PAM medicine machine that steeps which characterized in that: be hollow box (3), set up in on box (3) and have feeder hopper (12) of rotatory feed valve (13), have inlet tube (2) of flow control valve (21), be used for stirring the rabbling mechanism (4) of liquid medicine and set up in drain pipe (5) of box (3) one side, rabbling mechanism (4) are including first stirring subassembly (41), first stirring subassembly (41) are including setting up first agitator motor (411) on box (3), receiving first agitator motor (411) driven first rotary rod (412), follow first rotary rod (412) outer wall circumference fixedly connected with a plurality of is stirring frame (413) of fretwork, each the length direction of stirring frame (413) with the length direction of first rotary rod (412) is unanimous.
2. The PAM medicine brewing machine according to claim 1, wherein: the water outlet of the water inlet pipe (2) is aligned to the stirring frame (413).
3. The PAM medicine brewing machine according to claim 2, wherein: the stirring frame (413) is not coincident with the projection of the outlet of the feed hopper (12) on the horizontal plane.
4. The PAM medicine brewing machine according to claim 3, characterized in that: first stirring subassembly (41) including fixed connection in motor dead lever (416) of box (3) upper end, fixed connection in motor dead lever (416) go up and be used for supporting motor support horizontal pole (415) of first agitator motor (411), fixed connection in guide gear (418), coaxial fixed connection in the rotating gear (419) of first rotary pole (412) upper end, fixed cover are located turn to spheroid (414) on first rotary pole (412), set up on box (3) and be used for the joint turn to spheroid recess (37) of spheroid (414), rotating gear (419) with guide gear (418) gear drive, first rotary pole (412) relative horizontal plane slope sets up.
5. The PAM medicine brewing machine according to claim 1, wherein: the utility model discloses a liquid medicine mixing tank, including box (3), ageing tank (32), storage tank (33), mixing tank (31) and ageing tank (32) are provided with a space bar (34) within a definite time, ageing tank (32) with also be provided with one within a definite time between storage tank (33) space bar (34), each overflow mouth (35) have been seted up to space bar (34) upper end, drain pipe (5) with storage tank (33) intercommunication, feeder hopper (12) export with the delivery port of inlet tube (2) all with mixing tank (31) intercommunication, first stirring subassembly (41) are used for stirring liquid medicine in mixing tank (31), rabbling mechanism (4) are including being used for stirring second stirring subassembly (42) of liquid medicine in ageing tank (32) and being used for stirring third stirring subassembly (43) of liquid medicine in storage tank (33), the linear speed of rotation of the second stirring assembly (42) is greater than the linear speed of rotation of the third stirring assembly (43).
6. The PAM medicine brewing machine according to claim 4, characterized in that: feeder hopper (12) top is provided with filtering component (11), filtering component (11) include with feeder hopper (12) upper end is connected and lower extreme and external filter box (112) that communicate, be provided with in filter box (112) and be used for filtering PAM powder filter screen (111), feeder hopper (12) lateral wall fixed mounting has storehouse wall type vibrator (14), storehouse wall type vibrator (14) are located rotatory feeder valve (13) top.
7. The PAM medicine brewing machine according to claim 6, characterized in that: the filter box (112) is fixedly connected with a plurality of first connecting blocks (1122) along the circumferential direction of the outer wall of the filter box, a second connecting block (122) is arranged below each first connecting block (1122), each second connecting block (122) is arranged along the circumferential direction of the outer wall of the feed hopper (12) and is fixedly connected with the feed hopper (12), and each first connecting block (1122) is detachably connected with the corresponding second connecting block (122) located below the first connecting block.
8. The PAM medicine brewing machine according to claim 7, wherein: the filter box is characterized in that a clamping lug (1121) is fixedly connected to the lower end of the filter box (112), and a clamping groove (121) used for clamping the clamping lug (1121) is formed in the upper end of the feed hopper (12).
9. The PAM medicine brewing machine according to claim 5, characterized in that: a drainage mechanism (6) is arranged on the outer wall of the box body (3), the drainage mechanism (6) comprises a first drainage pipe (61) communicated with the mixing tank (31), a second drainage pipe (62) communicated with the ageing tank (32) and a third drainage pipe (63) communicated with the storage tank (33), the first liquid discharge pipe (61), the second liquid discharge pipe (62) and the third liquid discharge pipe (63) are all positioned at one side below the box body (3) and are all provided with electromagnetic valves (64), one end of the first liquid discharge pipe (61) far away from the box body (3) is fixedly connected with a liquid discharge main pipe (65) communicated with the first liquid discharge pipe, the liquid discharge header pipe (65) is respectively fixedly connected with one ends of the second liquid discharge pipe (62) and the third liquid discharge pipe (63) far away from the box body (3), the drain manifold (65) is in communication with the second drain pipe (62) and the third drain pipe (63), respectively.
10. The PAM medicine brewing machine according to claim 1, wherein: the bottom of the box body (3) is provided with a rubber non-slip mat (36).
CN202022163468.6U 2020-09-28 2020-09-28 PAM medicine soaking machine Active CN213725831U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022163468.6U CN213725831U (en) 2020-09-28 2020-09-28 PAM medicine soaking machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202022163468.6U CN213725831U (en) 2020-09-28 2020-09-28 PAM medicine soaking machine

Publications (1)

Publication Number Publication Date
CN213725831U true CN213725831U (en) 2021-07-20

Family

ID=76846614

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202022163468.6U Active CN213725831U (en) 2020-09-28 2020-09-28 PAM medicine soaking machine

Country Status (1)

Country Link
CN (1) CN213725831U (en)

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