CN212262978U - Interfacial agent agitating unit - Google Patents

Interfacial agent agitating unit Download PDF

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Publication number
CN212262978U
CN212262978U CN201921361487.0U CN201921361487U CN212262978U CN 212262978 U CN212262978 U CN 212262978U CN 201921361487 U CN201921361487 U CN 201921361487U CN 212262978 U CN212262978 U CN 212262978U
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China
Prior art keywords
hole
matched
raw material
material bin
fixed
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Expired - Fee Related
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CN201921361487.0U
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Chinese (zh)
Inventor
李强
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Hefei Pinguan Environmental Protection Technology Co ltd
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Hefei Pinguan Environmental Protection Technology Co ltd
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Priority to CN201921361487.0U priority Critical patent/CN212262978U/en
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Abstract

The utility model discloses an interfacial agent agitating unit relates to interfacial agent technical field. The utility model comprises a frame cover, a stirrer and a stirring frame; the frame cover comprises a disc, a raw material bin A, a raw material bin B, a raw material bin C, a motor and a fan-shaped plate; the disc comprises a circular hole, a feeding hole A, a feeding hole B and a feeding hole C; the stirrer comprises a transmission rod, a cross, a driven rod and a stirring blade; the stirring frame comprises a frame body, a discharge valve, a strut and a connecting rod; the raw material bin A is matched with the feeding hole A; the raw material bin B is matched with the feeding hole B; the raw material bin C is matched with the feeding hole C; the circular hole is matched with the motor; the motor is matched with the stirrer; the stirring frame is internally provided with raw materials such as an interfacial agent and the like. The utility model controls the proportion of the interfacial agent, the cement and the sand through the inner diameters of the feeding pipe A, the feeding pipe B and the feeding pipe C, and is suitable for products with higher stirring precision requirements; through setting up agitating unit, the product quality after the further stirring that has improved.

Description

Interfacial agent agitating unit
Technical Field
The utility model belongs to the technical field of the interfacial agent, especially, relate to an interfacial agent agitating unit.
Background
The interfacial agent is obtained by treating the surface of an object, which may be physically adsorbed or coated, and often also physico-chemical, with the aim of improving or completely modifying the physico-technical and surface-chemical properties of the surface of the material; the surface of an object is treated to improve the surface properties of the material by a product aiming at changing the physical and chemical properties of the interface of the object, which can also be called an interface modifier.
The traditional interfacial agent stirring device is only provided with one feeding hole, if multiple raw materials are stirred, the raw materials need to be added from the same feeding hole net device, the amount of the raw materials cannot be accurately controlled due to different physical properties of the multiple raw materials, and for the interfacial agent with higher stirring proportion requirement, the traditional interfacial agent stirring device cannot meet the product with high stirring precision; traditional agitating unit stirring leaf simple structure, the function is single, and the product quality after the stirring remains to be improved.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide an interfacial agent agitating unit, through setting up raw materials storehouse A, raw materials storehouse B, raw materials storehouse C, place interfacial agent, cement and sand respectively, make the raw materials get into the device from the corresponding feed inlet inside, through controlling the internal diameter of inlet pipe A, inlet pipe B and inlet pipe C, make the ratio of the internal diameter of inlet pipe A, inlet pipe B and inlet pipe C be for being proportion setting, in the same time, the volume ratio of inlet port A, inlet port B and inlet port C feeding equals the ratio of the internal diameter square of inlet pipe A, inlet pipe B and inlet pipe C, can satisfy the higher product of stirring accuracy requirement; the stirring device is arranged, and the stirring blades are matched with the motor, so that the raw materials in the stirring frame can be preliminarily stirred; through the cooperation of sieve groove and smooth shovel, the raw materials of bottom is carried to the sieve inslot through the effect of smooth shovel in the time of the stirring, and the raw materials through the sieve groove is by further stirring, has improved the product quality after the stirring.
In order to solve the technical problem, the utility model discloses a realize through following technical scheme:
the utility model relates to an interfacial agent stirring device, which comprises a frame cover, a stirrer and a stirring frame;
the frame cover comprises a disc, a raw material bin A, a raw material bin B, a raw material bin C, a motor and a fan-shaped plate; a plurality of fixing seats are fixed on the upper surface of the disc; the fixed seat is used for fixing the motor; the upper surface of the disc is provided with a circular hole, a feeding hole A, a feeding hole B and a feeding hole C; a raw material bin A, a raw material bin B and a raw material bin C are respectively fixed on the inner surfaces of the feed hole A, the feed hole B and the feed hole C; the lower surface of the motor is rotatably matched with a rotating rod; the motor is connected with an indoor working power supply; the peripheral side surface of the rotating rod is in running fit with the inner surface of the circular hole;
the stirrer comprises a transmission rod, a cross, a driven rod and stirring blades; the upper surface of the transmission rod is provided with a blind hole; the blind hole is matched with the rotating rod; a cross is fixed on the lower surface of the transmission rod; the upper surface of the cross is provided with a round hole A, a round hole B, a round hole C and a round hole D; the ratio of the distances from the circle centers of the circular holes A, B, C and D to the center of the cross is 1: 3:5: 7; a cylinder is fixed on the upper end face of the driven rod; the peripheral side surface of the cylinder is fixedly matched with the inner surfaces of the round hole A, the round hole B, the round hole C and the round hole D respectively; the lower surface of the driven rod is provided with a clamping groove; the upper surface of the stirring blade is matched with the top surface of the clamping groove; the upper end of the stirring blade is matched with the clamping groove; sieve grooves are uniformly arrayed on the front surface of the stirring blade; a sliding shovel is fixed on the bottom surface of the stirring blade;
the stirring frame comprises a frame body, a discharge valve, a strut and a connecting rod; the frame body is of a cylindrical structure; a discharge hole and a counter sink are formed in the bottom surface of the interior of the frame body; the inner surface of the counter bore is matched with one end of the connecting rod; the upper surface of the discharge valve is provided with a connecting hole; the connecting hole is rotationally matched with the peripheral side surface of the connecting rod; the discharge valve is in sliding fit with the frame body through a connecting rod.
Further, the raw material bin A, the raw material bin B and the raw material bin C are all hollow structures; the lower surfaces of the raw material bin A, the raw material bin B and the raw material bin C are respectively fixed with a funnel A, a funnel B and a funnel C; the lower end surfaces of the funnel A, the funnel B and the funnel C are respectively fixed with a feeding pipe A, a feeding pipe B and a feeding pipe C; the peripheral side surface of the feeding pipe A is matched with the inner surface of the feeding hole A; the peripheral side surface of the feeding pipe B is matched with the inner surface of the feeding hole B; the peripheral side surface of the feeding pipe C is matched with the inner surface of the feeding hole C; the lower end surfaces of the feeding pipe A, the feeding pipe B and the feeding pipe C are coincided with the lower surface of the disc; an interfacial agent, cement and sand are respectively placed in the raw material bin A, the raw material bin B and the raw material bin C; and in the using process of the interfacial agent, the proportion of the interfacial agent, the cement and the sand is 1:2: 4.
Furthermore, the upper surface of the disc is provided with an observation hole; the observation hole is of a fan-shaped structure; the inner wall of the observation hole is oppositely provided with an arc strip A and an arc strip B; the fan-shaped plate comprises an observation plate, an arc-shaped plate A and an arc-shaped plate B; the two opposite side surfaces of the observation plate are respectively fixed with an arc plate A and an arc plate B; the arc-shaped plate B is matched with the arc-shaped strip A; the arc-shaped plate A is matched with the arc-shaped strip B; the observation plate is made of transparent materials.
Furthermore, a limiting block is fixed on the peripheral side surface of the rotating rod; a limiting hole is fixed on the peripheral side surface of the blind hole; the inner surface of the limiting hole is matched with the limiting block.
Further, the inner diameters of the feed pipes A, B and C are set in proportion.
Furthermore, a spring limiting hole is formed in the lower surface of the discharge valve; the spring limiting hole is communicated with the connecting hole; a circular baffle is fixed on the upper surface of the discharge valve; the circumferential side surface of the circular baffle is provided with an annular channel; the inner side surface of the annular channel is matched with the inner surface of the discharge hole; a handle is fixed on one side surface of the discharge valve; an anti-slip gasket is fixed on the peripheral side surface of the handle; the peripheral side surface of the connecting rod is matched with a spring; and the upper end of the spring is matched with the upper surface of the spring limiting hole.
The utility model discloses following beneficial effect has:
the utility model is provided with the stirring device, the stirring blade is matched with the motor, and the raw materials in the stirring frame can be preliminarily stirred; through the matching of the sieve tank and the sliding shovel, the raw materials at the bottom layer are lifted into the sieve tank under the action of the sliding shovel while stirring, and the raw materials passing through the sieve tank are further stirred, so that the quality of the stirred product is improved; through controlling the internal diameters of the feeding pipe A, the feeding pipe B and the feeding pipe C, the internal diameters of the feeding pipe A, the feeding pipe B and the feeding pipe C are proportionally set, and the feeding volume ratio of the feeding holes A, the feeding holes B and the feeding holes C is equal to the square internal diameter ratio of the feeding pipe A, the feeding pipe B and the feeding pipe C in the same time, so that a product with high stirring precision requirement can be met.
Of course, it is not necessary for any particular product to achieve all of the above-described advantages at the same time.
Drawings
In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings used in the description of the embodiments will be briefly introduced below, and it is obvious that the drawings in the following description are only some embodiments of the present invention, and it is obvious for those skilled in the art that other drawings can be obtained according to these drawings without creative efforts.
Fig. 1 is a schematic structural view of an interfacial agent stirring device according to the present invention;
FIG. 2 is a schematic structural view of a disk;
FIG. 3 is a schematic view of the structure of the raw material bin A;
FIG. 4 is a schematic structural view of a raw material bin B;
FIG. 5 is a schematic view of the structure of the raw material bin C;
FIG. 6 is a schematic structural view of the motor;
FIG. 7 is a schematic structural view of a sector plate;
FIG. 8 is a schematic view of the structure of the stirrer;
FIG. 9 is a schematic structural view of a stirring frame;
FIG. 10 is a top view of the agitator frame;
FIG. 11 is a cross-sectional view taken along line A-A of FIG. 10;
FIG. 12 is a partial view of FIG. 11;
in the drawings, the components represented by the respective reference numerals are listed below:
1-frame cover, 2-stirrer, 3-stirring frame, 101-disk, 102-raw material bin A, 103-raw material bin B, 104-raw material bin C, 105-motor, 106-sector plate, 107-circular hole, 108-feed hole A, 109-feed hole B, 110-feed hole C, 111-funnel A, 112-funnel B, 113-funnel C, 114-feed pipe A, 115-feed pipe B, 116-feed pipe C, 117-rotating rod, 118-limiting block, 119-observation hole, 120-observation plate, 121-arc bar A, 122-arc bar B, 123-arc bar A, 124-arc bar B, 201-driving rod, 202-cross, 203-driven rod, 204-stirring blade, 205-blind hole, 206-round hole A, 207-round hole B, 208-round hole C, 209-round hole D, 210-limiting hole, 211-clamping groove, 212-sieve groove, 213-sliding shovel, 301-frame body, 302-discharge valve, 303-support, 304-connecting rod, 305-discharge hole, 306-counter sink, 307-circular baffle, 308-handle, 309-anti-sliding washer, 310-connecting hole, 311-spring limiting hole, 312-spring and 313-annular channel.
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. Based on the embodiments of the present invention, all other embodiments obtained by a person of ordinary skill in the art without creative efforts belong to the protection scope of the present invention.
Referring to fig. 1-12, the present invention relates to an interfacial agent stirring apparatus, which comprises a frame cover 1, a stirrer 2 and a stirring frame 3;
the frame cover 1 comprises a disc 101, a raw material bin A102, a raw material bin B103, a raw material bin C104, a motor 105 and a sector plate 106;
a plurality of fixed seats 1011 are fixed on the upper surface of the disc 101; the fixed seat 1011 is used for fixing the motor 105; the upper surface of the disc 101 is provided with a circular hole 107, a feeding hole A108, a feeding hole B109 and a feeding hole C110; the inner surfaces of the feed hole A108, the feed hole B109 and the feed hole C110 are respectively fixed with a raw material bin A102, a raw material bin B103 and a raw material bin C104; a rotating rod 117 is rotatably matched on the lower surface of the motor 105; the motor 105 is connected with an indoor working power supply; the peripheral side surface of the rotating rod 117 is in running fit with the inner surface of the circular hole 107;
the stirrer 2 comprises a transmission rod 201, a cross 202, a driven rod 203 and a stirring blade 204; the upper surface of the transmission rod 201 is provided with a blind hole 205; blind hole 205 mates with swivel bar 117; a cross 202 is fixed on the lower surface of the transmission rod 201; the upper surface of the cross 202 is provided with a round hole A206, a round hole B207, a round hole C208 and a round hole D209; the ratio of the distances from the centers of the circular holes a206, B207, C208, and D209 to the center of the cross 202 is 1: 3:5: 7; a cylinder 214 is fixed on the upper end surface of the driven rod 203; the peripheral side surface of the cylinder 214 is fixedly matched with the inner surfaces of the round hole A206, the round hole B207, the round hole C208 and the round hole D209 respectively; the lower surface of the driven rod 203 is provided with a clamping groove 211; the upper surface of the stirring blade 204 is matched with the top surface of the clamping groove 211; the upper end of the stirring blade 204 is matched with the clamping groove 211; sieve grooves 212 are uniformly arrayed on the front surface of the stirring blade 204; a sliding shovel 213 is fixed on the bottom surface of the stirring blade 204;
the stirring frame 3 comprises a frame body 301, a discharge valve 302, a support column 303 and a connecting rod 304; the frame body 301 is a cylindrical structure; a discharge hole 305 and a counter sink 306 are formed in the bottom surface inside the frame body 301; the inner surface of the counter bore 306 is matched with one end of the connecting rod 304; the upper surface of the discharge valve 302 is provided with a connecting hole 310; the connecting hole 310 is rotationally matched with the peripheral side surface of the connecting rod 304; the discharge valve 302 is slidably fitted to the frame 301 through a connecting rod.
The raw material bin A102, the raw material bin B103 and the raw material bin C104 are all hollow structures; the lower surfaces of the raw material bin A102, the raw material bin B103 and the raw material bin C104 are respectively fixed with a funnel A111, a funnel B112 and a funnel C113; a feed pipe A114, a feed pipe B115 and a feed pipe C116 are respectively fixed on the lower end surfaces of the funnel A111, the funnel B112 and the funnel C113; the peripheral side surface of the feed pipe A114 is matched with the inner surface of the feed hole A108; the peripheral side surface of the feed pipe B115 is matched with the inner surface of the feed hole B109; the peripheral side surface of the feed pipe C116 is matched with the inner surface of the feed hole C110; the lower end surfaces of the feed pipe A114, the feed pipe B115 and the feed pipe C116 are superposed with the lower surface of the disc 101; an interfacial agent, cement and sand are respectively placed in the raw material bin A102, the raw material bin B103 and the raw material bin C104; in the using process of the interfacial agent, the proportion of the interfacial agent, the cement and the sand is 1:2: 4.
Wherein, the upper surface of the disc 101 is provided with an observation hole 119; the observation hole 119 is of a fan-shaped structure; the inner wall of the observation hole 119 is oppositely provided with an arc-shaped strip A121 and an arc-shaped strip B122; the sector plate 106 includes a viewing plate 120, an arcuate plate A123, and an arcuate plate B124; an arc-shaped plate A123 and an arc-shaped plate B124 are respectively fixed on two opposite side surfaces of the observation plate 120; the arc plate B124 is matched with the arc strip A121; the arc plate A123 is matched with the arc strip B122; the observation plate 120 is made of a transparent material.
Wherein, a limiting block 118 is fixed on the peripheral side surface of the rotating rod 117; a limiting hole 210 is fixed on the peripheral side surface of the blind hole 205; the inner surface of the stop hole 210 engages the stop 118.
Wherein the ratio of the inner diameters of feed line A114, feed line B115 and feed line C116 is 1:2: 4.
Wherein, the lower surface of the discharge valve 302 is provided with a spring limit hole 311; the spring limiting hole 311 is communicated with the connecting hole 310; a circular baffle 307 is fixed on the upper surface of the discharge valve 302; the circumferential side surface of the circular baffle 307 is provided with an annular channel 313; the inner side surface of the annular channel 313 is matched with the inner surface of the discharge hole 305; a handle 308 is fixed on one side surface of the discharge valve 302; an anti-slip gasket 309 is fixed on the peripheral side surface of the handle 308; the peripheral side surface of the connecting rod 304 is matched with a spring 312; the upper end of the spring 312 is engaged with the upper surface of the spring stopper hole 311.
One specific application of this embodiment is: firstly, an interfacial agent, cement and sand are respectively placed in a raw material bin A, a raw material bin B and a raw material bin C, raw materials enter the device from corresponding feed inlets, the inner diameters of the feed pipe A, the feed pipe B and the feed pipe C are controlled, so that the inner diameters of the feed pipe A, the feed pipe B and the feed pipe C are proportionally arranged, the volume ratio of the feed hole A, the feed hole B and the feed hole C is equal to the square ratio of the inner diameters of the feed pipe A, the feed pipe B and the feed pipe C in the same time, and products with higher stirring precision requirements can be met; the stirring device is arranged, and the stirring blades are matched with the motor, so that the raw materials in the stirring frame can be preliminarily stirred; through the matching of the sieve tank and the sliding shovel, the raw materials at the bottom layer are lifted into the sieve tank under the action of the sliding shovel while stirring, and the raw materials passing through the sieve tank are further stirred, so that the quality of the stirred product is improved; and after the stirring is finished, taking out the stirred product from the discharge hole.
In the description herein, references to the description of "one embodiment," "an example," "a specific example," etc., mean that a particular feature, structure, material, or characteristic described in connection with the embodiment or example is included in at least one embodiment or example of the invention. In this specification, the schematic representations of the terms used above do not necessarily refer to the same embodiment or example. Furthermore, the particular features, structures, materials, or characteristics described may be combined in any suitable manner in any one or more embodiments or examples.
The preferred embodiments of the present invention disclosed above are intended only to help illustrate the present invention. The preferred embodiments are not intended to be exhaustive or to limit the invention to the precise embodiments disclosed. Obviously, many modifications and variations are possible in light of the above teaching. The embodiments were chosen and described in order to best explain the principles of the invention and its practical applications, to thereby enable others skilled in the art to best understand the invention for and utilize the invention. The present invention is limited only by the claims and their full scope and equivalents.

Claims (6)

1. An interfacial agent stirring device comprises a frame cover (1), a stirrer (2) and a stirring frame (3); the method is characterized in that: the frame cover (1) comprises a disc (101), a raw material bin A (102), a raw material bin B (103), a raw material bin C (104), a motor (105) and a sector plate (106);
a plurality of fixed seats (1011) are fixed on the upper surface of the disc (101); the upper surface of the disc (101) is provided with a circular hole (107), a feeding hole A (108), a feeding hole B (109) and a feeding hole C (110); the inner surfaces of the feed hole A (108), the feed hole B (109) and the feed hole C (110) are respectively fixed with a raw material bin A (102), a raw material bin B (103) and a raw material bin C (104); a rotating rod (117) is rotatably matched on the lower surface of the motor (105); the peripheral side surface of the rotating rod (117) is in running fit with the inner surface of the circular hole (107);
the stirrer (2) comprises a transmission rod (201), a cross (202), a driven rod (203) and stirring blades (204); the upper surface of the transmission rod (201) is provided with a blind hole (205); the blind hole (205) is matched with the rotating rod (117); a cross (202) is fixed on the lower surface of the transmission rod (201); the upper surface of the cross (202) is provided with a round hole A (206), a round hole B (207), a round hole C (208) and a round hole D (209); the ratio of the distances from the circle centers of the circular hole A (206), the circular hole B (207), the circular hole C (208) and the circular hole D (209) to the center of the cross (202) is 1: 3:5: 7; a cylinder (214) is fixed on the upper end surface of the driven rod (203); the peripheral side surface of the cylinder (214) is fixedly matched with the inner surfaces of the round hole A (206), the round hole B (207), the round hole C (208) and the round hole D (209) respectively; the lower surface of the driven rod (203) is provided with a clamping groove (211); the upper surface of the stirring blade (204) is matched with the top surface of the clamping groove (211); the upper end of the stirring blade (204) is matched with the clamping groove (211); sieve grooves (212) are uniformly arrayed on the front surface of the stirring blade (204); a sliding shovel (213) is fixed on the bottom surface of the stirring blade (204);
the stirring frame (3) comprises a frame body (301), a discharge valve (302), a support column (303) and a connecting rod (304); the frame body (301) is of a cylindrical structure; a discharge hole (305) and a counter sink (306) are formed in the bottom surface of the interior of the frame body (301); the inner surface of the counter bore (306) is matched with one end of the connecting rod (304); the upper surface of the discharge valve (302) is provided with a connecting hole (310); the connecting hole (310) is in rotating fit with the peripheral side surface of the connecting rod (304); the discharge valve (302) is in sliding fit with the frame body (301) through a connecting rod.
2. The interfacial agent stirring device according to claim 1, wherein the raw material bin A (102), the raw material bin B (103) and the raw material bin C (104) are all hollow structures; the lower surfaces of the raw material bin A (102), the raw material bin B (103) and the raw material bin C (104) are respectively fixed with a funnel A (111), a funnel B (112) and a funnel C (113); a feeding pipe A (114), a feeding pipe B (115) and a feeding pipe C (116) are respectively fixed on the lower end surfaces of the funnel A (111), the funnel B (112) and the funnel C (113); the peripheral side surface of the feed pipe A (114) is matched with the inner surface of the feed hole A (108); the peripheral side surface of the feed pipe B (115) is matched with the inner surface of the feed hole B (109); the peripheral side surface of the feeding pipe C (116) is matched with the inner surface of the feeding hole C (110); the lower end surfaces of the feeding pipe A (114), the feeding pipe B (115) and the feeding pipe C (116) are coincided with the lower surface of the disc (101).
3. An interfacial agent stirring apparatus as claimed in claim 1, wherein said disk (101) has a viewing hole (119) formed on the upper surface thereof; the observation hole (119) is of a fan-shaped structure; the inner wall of the observation hole (119) is oppositely provided with an arc-shaped strip A (121) and an arc-shaped strip B (122); the sector plate (106) comprises a viewing plate (120), an arcuate plate A (123) and an arcuate plate B (124); an arc-shaped plate A (123) and an arc-shaped plate B (124) are respectively fixed on two opposite side surfaces of the observation plate (120); the arc plate B (124) is matched with the arc strip A (121); the arc-shaped plate A (123) is matched with the arc-shaped strip B (122); the observation plate (120) is made of transparent materials.
4. The interface agent stirring device according to claim 1, wherein a limiting block (118) is fixed to the peripheral side of the rotating rod (117); a limiting hole (210) is fixed on the peripheral side surface of the blind hole (205); the inner surface of the limiting hole (210) is matched with the limiting block (118).
5. An interfacial agent stirring apparatus according to claim 2, wherein the inner diameters of feed pipe A (114), feed pipe B (115) and feed pipe C (116) are proportioned.
6. The interface agent stirring device as claimed in claim 1, wherein a spring limiting hole (311) is formed in the lower surface of the discharge valve (302); the spring limiting hole (311) is in through connection with the connecting hole (310); a circular baffle (307) is fixed on the upper surface of the discharge valve (302); the circumferential side surface of the circular baffle (307) is provided with an annular channel (313); the inner side surface of the annular channel (313) is matched with the inner surface of the discharge hole (305); a handle (308) is fixed on one side surface of the discharge valve (302); an anti-slip gasket (309) is fixed on the peripheral side surface of the handle (308); a spring (312) is matched with the peripheral side surface of the connecting rod (304); the upper end of the spring (312) is matched with the upper surface of the spring limiting hole (311).
CN201921361487.0U 2019-08-21 2019-08-21 Interfacial agent agitating unit Expired - Fee Related CN212262978U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921361487.0U CN212262978U (en) 2019-08-21 2019-08-21 Interfacial agent agitating unit

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921361487.0U CN212262978U (en) 2019-08-21 2019-08-21 Interfacial agent agitating unit

Publications (1)

Publication Number Publication Date
CN212262978U true CN212262978U (en) 2021-01-01

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN201921361487.0U Expired - Fee Related CN212262978U (en) 2019-08-21 2019-08-21 Interfacial agent agitating unit

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Granted publication date: 20210101

Termination date: 20210821