Ink preparation container with sampling structure
By introducing the design of a liftable straw and elastic ball into the ink stirring equipment, the problem that the existing equipment cannot absorb the middle and lower layers of ink is solved, and an efficient and simple sampling process is achieved.
Patent Information
- Application Number
- CN202423008035.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-06
- Publication Date
- 2025-10-24
- Estimated Expiration
- 2034-12-06
AI Technical Summary
The existing ink stirring equipment lacks a sampling function, which results in it only being able to absorb the top layer of ink, but not the middle and lower layers of ink. This makes it easy to miss detections, and the operation is complicated and inefficient.
An ink preparation container with a sampling structure is designed, which includes a liftable straw and an elastic ball. The lifting and lowering of the straw in the mixing box and the absorption of ink are controlled by a lifting cylinder and a finger cylinder. Atmospheric pressure is used to achieve efficient extraction of ink at different levels, avoiding frequent opening of the cover.
It realizes the effective detection of high, medium and low ink layers, avoids missed detection, simplifies the operation process and improves sampling efficiency.
Smart Images

Figure CN223464722U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to ink preparation technical field, concretely relates to a ink preparation container with sampling structure. BACKGROUND
[0002] Ink is a kind of liquid containing pigment or dye, mainly used for writing or painting. In the production process of ink, water-soluble material is easy to produce, mix and mix microbubbles in the grinding process, which will cause big problems when printing and coating on the surface of object, and does not meet the quality standard. Therefore, the ink needs to be stirred to remove the internal impurity bubbles.
[0003] The existing ink stirring equipment usually does not have sampling function, after stirring for a certain time, the cover plate needs to be opened, and the operator holds the straw to suck the ink in the stirring box for detection. On the one hand, only the top layer of ink can be sucked, and the middle and lower layers of ink cannot be sucked, which is easy to miss detection. On the other hand, the cover plate needs to be opened frequently, the operation is complex, and the sampling efficiency is low. UTILITY MODEL CONTENTS
[0004] The utility model provides a kind of ink preparation container with sampling structure, solve the defect that the existing ink stirring equipment needs operator to open cover plate for sampling, only the top layer of ink can be sucked, and the middle and lower layers of ink cannot be sucked, which is easy to miss detection.
[0005] To achieve the above purpose, the utility model adopts the technical scheme that a kind of ink preparation container with sampling structure, it includes:
[0006] Preparation box;
[0007] Stirring shaft, the stirring shaft is rotatably installed in the preparation box;
[0008] Stirring structure, the stirring structure is fixed on stirring shaft;
[0009] Sampling structure, the sampling structure includes liftably arranged in the top of the preparation box lifting plate, fixed on the lifting plate and extended into the preparation box straw, fixed on the top of the straw elastic ball, the suction slot that is passed through the straw and the extrusion slot that is opened in the elastic ball and is communicated with suction slot.
[0010] Optimally, the stirring shaft includes first stirring shaft and second stirring shaft rotatably installed in the preparation box.
[0011] Optimally, the stirring structure includes first stirring disc fixed on the first stirring shaft along the axial direction, first stirring blade annularly arranged on the circumferential surface of the first stirring disc, second stirring disc fixed on the second stirring shaft along the axial direction and second stirring blade annularly arranged on the circumferential surface of the second stirring disc.
[0012] Optimally, it further comprises a partition fixed in the preparation box, a cover plate fixed on the top of the preparation box, a fixed tube fixed on the top of the partition and penetrating the cover plate, and a through slot penetrating the fixed tube, and the suction tube is arranged in the through slot.
[0013] Optimally, it further comprises a vertical plate, an extension plate extending towards one side of the preparation box and fixed on the top of the vertical plate, a guide sleeve embedded in the extension plate, a guide column fixed on the top of the lifting plate and penetrating the guide sleeve, an anti-falling plate fixed on the top of the guide column, and a lifting cylinder fixed on the top of the extension plate and connected with the lifting plate.
[0014] Optimally, it further comprises a support plate fixed on the top of the lifting plate, and a finger cylinder fixed on one side of the support plate, which is used to squeeze the elastic ball to suck the ink in the preparation box.
[0015] Optimally, the rotation directions of the first stirring shaft and the second stirring shaft are opposite.
[0016] Optimally, the first stirring discs and the second stirring discs are staggered along the axial direction.
[0017] Optimally, the first stirring blades on the adjacent two first stirring discs are staggered, and the second stirring blades on the adjacent two second stirring discs are staggered.
[0018] Optimally, the diameter of the suction tube is equal to the diameter of the through slot.
[0019] Thanks to the use of the above technical solutions, the present application has the following advantages compared with the prior art:
[0020] When sampling, the ink preparation container with the sampling structure first pours the ink to be degassed into the preparation box, starts the stirring motor, drives the first gear and the first stirring shaft to rotate, and then drives the second gear and the second stirring shaft to rotate, and stirs the ink in the preparation box through the first stirring blades and the second stirring blades; when the ink needs to be sucked for detection, the lifting plate is lowered by the lifting cylinder until the suction tube is inserted into the preparation box, the elastic ball is squeezed by the finger cylinder, the elastic ball is deformed under pressure to discharge part of the original air in the squeezing groove and the suction slot, after the elastic ball is released, the ink in the preparation box is squeezed into the suction slot under the action of atmospheric pressure, the lifting plate is raised to reset, and the suction tube is lifted out of the preparation box, the operator moves the collection disc to the bottom of the suction tube, and squeezes the elastic ball again, so that the ink in the suction slot is squeezed into the collection disc.
[0021] The ink preparation container has a simple structure, can suck ink layers of different heights, avoids the situation of missed detection, and does not need to open the cover plate for operation when sucking, thereby improving the sampling efficiency. BRIEF DESCRIPTION OF DRAWINGS
[0022] Figure 1 is a structure diagram of the utility model;
[0023] Figure 2 is a sectional view of the utility model;
[0024] Figure 3 is a local structure diagram of the utility model;
[0025] Figure 4 is a front view of the utility model Figure 3 ;
[0026] Figure 5 is an enlarged view of A in the utility model Figure 2 ;
[0027] BRIEF DESCRIPTION OF DRAWINGS:
[0028] 1, preparation box; 2, cover plate; 3, stirring motor; 4, partition; 5, first gear; 6, second gear; 7, first stirring shaft; 8, second stirring shaft; 9, discharge boss; 10, discharge inclined surface; 11, discharge pipe; 12, first stirring disc; 13, second stirring disc; 14, first stirring blade; 15, second stirring blade; 16, fixed pipe; 17, through groove; 18, vertical plate; 19, extension plate; 20, lifting air cylinder; 21, lifting plate; 22, guide sleeve; 23, guide column; 24, anti-drop plate; 25, support plate; 26, finger air cylinder; 27, suction pipe; 28, suction groove; 29, elastic ball; 30, extrusion groove. DETAILED DESCRIPTION
[0029] The utility model will be further described below in combination with the embodiment shown in the drawings.
[0030] As Figure 1 , 2 shown, it is structure diagram of the utility model ink preparation container with sampling structure, usually used in the preparation process of ink, to suck high, medium and low three layers of ink for detection, ensure the uniformity of ink preparation stirring.The preparation container includes preparation box 1, cover plate 2, stirring motor 3, partition 4, first gear 5, second gear 6, first stirring shaft 7, second stirring shaft 8, discharge boss 9, discharge inclined surface 10, discharge pipe 11, first stirring disc 12, second stirring disc 13, first stirring blade 14, second stirring blade 15, fixed pipe 16, through groove 17, vertical plate 18, extension plate 19, lifting air cylinder 20, lifting plate 21, guide sleeve 22, guide column 23, anti-drop plate 24, support plate 25, finger air cylinder 26, suction pipe 27, suction groove 28, elastic ball 29 and extrusion groove 30.
[0031] The interior of the preparation box 1 is a hollow structure. The ink raw materials to be prepared and stirred are poured into the preparation box 1. The cover 2 is fixed on the top of the preparation box 1, and the partition 4 is fixed in the preparation box 1, thereby dividing the preparation box 1 into an upper driving chamber and a lower stirring chamber.
[0032] The first stirring shaft 7 and the second stirring shaft 8 are rotatably mounted on the bottom of the partition 4 through bearings and are located in the stirring chamber. The first gear 5 is fixed to the top of the first stirring shaft 7. The second gear 6 is fixed to the top of the second stirring shaft 8 and meshes with the first gear 5. The motor housing of the stirring motor 3 is fixed to the top of the cover plate 2. The motor shaft of the stirring motor 3 passes through the cover plate 2 and is fixed to the first gear 5.
[0033] The stirring motor 3 drives the first gear 5 and the first stirring shaft 7 to rotate, which in turn drives the second gear 6 and the second stirring shaft 8 to rotate, thereby stirring the ink in the preparation tank 1. Because the first gear 5 and the second gear 6 are meshed, the first stirring shaft 7 and the second stirring shaft 8 rotate in opposite directions, ensuring that the ink in the preparation tank 1 is stirred more thoroughly and evenly.
[0034] The first stirring discs 12 are fixed on the first stirring shaft 7 at intervals along the axial direction, and the second stirring discs 13 are fixed on the second stirring shaft 8 at intervals along the axial direction. Figure 2 、 4 As shown, the first stirring disk 12 and the second stirring disk 13 are staggered along the axial direction, and the ink layer between two adjacent first stirring disks 12 is stirred by the second stirring disk 13, which can ensure that the ink in the preparation box 1 is stirred more fully and evenly.
[0035] The first stirring blade 14 is fixed on the circumference of the first stirring disk 12, and the second stirring blade 15 is fixed on the circumference of the second stirring disk 13. The first stirring shaft 7 drives the first stirring blade 14 to rotate, and the second stirring shaft 8 drives the second stirring blade 15 to rotate to stir the ink in the preparation box 1.
[0036] like Figure 3 As shown, the first stirring blades 14 on two adjacent first stirring plates 12 are staggered, and the second stirring blades 15 on two adjacent second stirring plates 13 are staggered, so as to ensure more complete and uniform stirring.
[0037] A discharge boss 9 is fixed to the bottom of the preparation box 1, and a slanted discharge surface 10 is provided on top of the boss 9 to facilitate ink discharge. A discharge pipe 11 is provided on one side of the bottom of the preparation box 1, near the lowest point of the discharge boss 9. The stirred ink is discharged from the discharge pipe 11 along the discharge surface 10.
[0038] like Figure 5As shown, the fixed tube 16 is fixed on the top of the partition plate 4 and penetrates the cover plate 2, the through slot 17 vertically penetrates the fixed tube 16, the through slot 17 has two functions, one is used as a feeding port, the ink raw material is added from the through slot 17, and directly falls into the stirring chamber below the partition plate 4 through the through slot 17, and does not splash into the driving chamber above the partition plate 4, avoiding affecting the meshing of the first gear 5 and the second gear 6; the second is to guide the descending suction pipe 27 when the suction pipe 27 is lowered to suck the ink in the stirring chamber.
[0039] The vertical plate 18 is fixed on one side of the preparation box 1, and the extension plate 19 is fixed on the top of the vertical plate 18 and extends towards one side of the preparation box 1. The cylinder body of the lifting cylinder 20 is fixed on the top of the extension plate 19, and the piston rod of the lifting cylinder 20 penetrates the extension plate 19 and is connected with the lifting plate 21, the lifting plate 21 is driven to descend by the lifting cylinder 20, and then the suction pipe 27 on the lifting plate 21 is lowered into the stirring chamber to suck the ink in the stirring chamber.
[0040] The guide sleeve 22 is embedded in the extension plate 19, and the guide column 23 is fixed on the top of the lifting plate 21 and penetrates the guide sleeve 22. When the lifting cylinder 20 drives the lifting plate 21 to move up and down, the guide column 23 will move up and down along the guide sleeve 22 synchronously, guiding the lifting plate 21, avoiding the suction pipe 27 from tilting and being unable to be inserted into the through slot 17.
[0041] The anti-dropping plate 24 is fixed on the top of the guide column 23, and the diameter of the anti-dropping plate 24 is greater than the diameter of the guide column 23, limiting the descent of the guide column 23, avoiding the guide column 23 from being pulled out of the guide sleeve 22 due to excessive descent.
[0042] The suction pipe 27 is fixed on the lifting plate 21 and penetrates the through slot 17, and the diameter of the suction pipe 27 is equal to the diameter of the through slot 17. The suction slot 28 penetrates the suction pipe 27 and is used to suck the ink in the preparation box 1. The elastic ball 29 is fixed on the top of the suction pipe 27, and the elastic ball 29 is provided with the extrusion slot 30 connected with the through slot 17. When actually sucking the ink, the lifting plate 21 drives the suction pipe 27 to descend and extend into the preparation box 1, extruding the elastic ball 29, and the elastic ball 29 is deformed under pressure to discharge part of the air in the extrusion slot 30 and the suction slot 28. After the elastic ball 29 is released, the ink in the preparation box 1 is extruded into the suction slot 28 under the action of atmospheric pressure.
[0043] The lifting plate 21 is lifted and reset, driving the suction pipe 27 to ascend and be pulled out of the preparation box 1, the operator moves the collection disc to the bottom of the suction pipe 27, and extrudes the elastic ball 29 again, so that the ink in the suction slot 28 is extruded into the collection disc for detection.
[0044] Support plate 25 is fixed on the top of lifting plate 21, and finger air cylinder 26 is fixed on support plate 25 and close to elastic ball 29, and the elastic ball 29 is squeezed or released by the action of finger air cylinder 26, so as to suck and transfer the ink in preparation tank 1.
[0045] By setting lifting plate 21, the ink in the high, middle and low three layers in preparation tank 1 can be sucked for detection, the uniformity of ink preparation and stirring is ensured, and the situation of missing detection is avoided.
[0046] The principle of the ink preparation container with a sampling structure is as follows:
[0047] First, pour the ink to be degassed into preparation tank 1 through through groove 17, start stirring motor 3, drive first gear 5 and first stirring shaft 7 to rotate through stirring motor 3, and then drive second gear 6 and second stirring shaft 8 to rotate, and stir the ink in preparation tank 1 through first stirring blade 14 and second stirring blade 15; when the ink needs to be sucked for detection, lifting plate 21 is lowered to the position where suction pipe 27 is inserted into preparation tank 1 by lifting cylinder 20, elastic ball 29 is squeezed by finger air cylinder 26, and elastic ball 29 is deformed under pressure to discharge part of the original air in squeeze groove 30 and suction groove 28, after the elastic ball 29 is released, the ink in preparation tank 1 is squeezed into suction groove 28 under the action of atmospheric pressure, lifting plate 21 rises and resets, driving suction pipe 27 to rise and be pulled out of preparation tank 1, the operator moves the collection tray to the bottom of suction pipe 27, squeezes elastic ball 29 again, and the ink in suction groove 28 can be squeezed into the collection tray.
[0048] The above embodiments are only for illustrating the technical concept and characteristics of the utility model, and the purpose is to enable those skilled in the art to understand the content of the utility model and implement it, and it cannot limit the protection scope of the utility model. Any equivalent changes or modifications made according to the spirit and essence of the utility model shall be covered within the protection scope of the utility model.
Claims
1. An ink preparation container with a sampling structure, characterized by, It comprises: a preparation box (1); a stirring shaft rotatably mounted in the preparation box (1); a stirring structure fixed on the stirring shaft; a sampling structure comprising a lifting plate (21) arranged on the top of the preparation box (1) in a lifting manner, a suction pipe (27) fixed on the lifting plate (21) and extending into the preparation box (1), an elastic ball (29) fixed on the top of the suction pipe (27), a suction groove (28) penetrating through the suction pipe (27), and a pressing groove (30) opened in the elastic ball (29) and communicating with the suction groove (28).
2. An ink formulation container with a sampling structure according to claim 1, characterized by: The stirring shaft comprises a first stirring shaft (7) and a second stirring shaft (8) rotatably mounted in the preparation box (1).
3. An ink formulation container with a sampling structure according to claim 2, characterized by: The stirring structure comprises a first stirring disc (12) fixed on the first stirring shaft (7) in an axial interval, a first stirring blade (14) annularly arranged on the circumferential surface of the first stirring disc (12), a second stirring disc (13) fixed on the second stirring shaft (8) in an axial interval, and a second stirring blade (15) annularly arranged on the circumferential surface of the second stirring disc (13).
4. The ink formulation container with a sampling structure according to claim 1, characterized by: It further comprises a partition plate (4) fixed in the preparation box (1), a cover plate (2) fixed on the top of the preparation box (1), a fixed pipe (16) fixed on the top of the partition plate (4) and penetrating through the cover plate (2), and a through groove (17) penetrating through the fixed pipe (16), wherein the suction pipe (27) is arranged in the through groove (17).
5. The ink formulation container with a sampling structure according to claim 1, characterized by: It further comprises a vertical plate (18), an extension plate (19) extending towards one side of the preparation box (1) and fixed on the top of the vertical plate (18), a guide sleeve (22) embedded in the extension plate (19), a guide column (23) penetrating through the guide sleeve (22) and fixed on the top of the lifting plate (21), an anti-falling plate (24) fixed on the top of the guide column (23), and a lifting cylinder (20) fixed on the top of the extension plate (19) and connected with the lifting plate (21).
6. The ink formulation container with a sampling structure according to claim 1, characterized by: It further comprises a support plate (25) fixed on the top of the lifting plate (21), and a finger cylinder (26) fixed on one side of the support plate (25), which is used for pressing the elastic ball (29) to suck the ink in the preparation box (1).
7. An ink formulation container with a sampling structure according to claim 2, characterized by: The rotation directions of the first stirring shaft (7) and the second stirring shaft (8) are opposite.
8. An ink formulation container with a sampling structure according to claim 3, characterized by: The first stirring disc (12) and the second stirring disc (13) are distributed in an axial staggered manner.
9. The ink formulation container with a sampling structure according to claim 3, characterized by: The first stirring blades (14) on two adjacent first stirring discs (12) are distributed in a staggered manner, and the second stirring blades (15) on two adjacent second stirring discs (13) are distributed in a staggered manner.
10. The ink formulation container with a sampling structure according to claim 4, characterized by: The diameter of the suction pipe (27) is equal to the diameter of the through groove (17).