CN209777296U - IBC barrel inner lining transfusion rotary sleeve - Google Patents
IBC barrel inner lining transfusion rotary sleeve Download PDFInfo
- Publication number
- CN209777296U CN209777296U CN201920216820.2U CN201920216820U CN209777296U CN 209777296 U CN209777296 U CN 209777296U CN 201920216820 U CN201920216820 U CN 201920216820U CN 209777296 U CN209777296 U CN 209777296U
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- rotary sleeve
- sleeve
- infusion
- transfusion
- welded
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Abstract
The utility model relates to an IBC barrel lining transfusion rotary sleeve, which comprises an external rotary sleeve and an internal rotary sleeve, wherein the internal rotary sleeve is sleeved in the external rotary sleeve; the outer cover wide-mouth cylindric of revolving outward, it has the infusion mouth to open the outer cover bottom, the heat-welded limit and the IBC bucket inside lining welding that the infusion mouth inboard extends, infusion mouth top is just to the waist portion welded baffle of internal rotation cover, the external tooth of internal rotation cover bottom and the internal tooth meshing of the external cover bottom of revolving outward. The utility model thermally welds the rotary sleeve on the outer side of the IBC barrel lining for transfusion, thereby solving the technical problems of liquid pouring and irregular bag body damage caused by cutting of the late-stage valveless transfusion of the bag body; meanwhile, the gas-liquid separation effect of the overflow holes solves the technical problem that the infusion amount of liquid in the bag body has errors.
Description
Technical Field
The utility model relates to an auxiliary device for transfusion, in particular to an IBC barrel lining transfusion rotary sleeve.
Background
The IBC barrel (ton barrel) is a common container used in the process of liquid material transportation, can be stacked and stored, is widely used for transportation and storage of liquid materials, and has the advantages of light weight, high strength, corrosion resistance and the like. The multifunctional container is widely used in the industries of chemical industry, medicine, food, coating, grease and the like, and is a necessary tool for modern storage and transportation of liquid products. The ton bucket is formed by combining an inner container and a metal frame, the inner container is formed by blow molding high molecular weight high density polyethylene, the strength is high, the corrosion resistance and the sanitation are good, and the metal frame is added outside the inner container, so that the ton bucket is safer and more reliable in use.
Disclosure of Invention
The utility model aims to solve the technical problem of providing a IBC barrel lining infusion revolves cover that dismouting is convenient, possess gas-liquid separation and sealing performance is good.
In order to solve the technical problem, the utility model provides an IBC barrel inner lining transfusion rotary sleeve, which comprises an external rotary sleeve and an internal rotary sleeve, wherein the internal rotary sleeve is sleeved in the external rotary sleeve; the outer cover wide-mouth cylindric of revolving outward, it has the infusion mouth to open the outer cover bottom, the heat-welded limit and the IBC bucket inside lining welding that the infusion mouth inboard extends, infusion mouth top is just to the waist portion welded baffle of internal rotation cover, the external tooth of internal rotation cover bottom and the internal tooth meshing of the external cover bottom of revolving outward.
Furthermore, four groups of rotating assemblies are welded at the top of the partition board and are in a fan-shaped groove shape, and the root of each rotating assembly is welded with the inner wall of the inner rotating sleeve.
Furthermore, a horizontal slope table is reserved at the neck of the outward-turning sleeve, a cavity is formed in an overflow slope on the inner side of the horizontal slope table, a plurality of groups of overflow holes are formed in the top of the horizontal slope table, and the overflow holes are communicated with the cavity formed in the overflow slope.
Furthermore, a cavity formed in the overflow slope is in sealing contact with a sealing ring sleeved on the outer side of the inner rotating sleeve, and an extension edge welded to the top of the inner rotating sleeve is in clearance fit with the inner wall of the outer rotating sleeve.
After the structure is adopted, compared with the prior art, the utility model thermally welds the rotary sleeve on the outer side of the IBC barrel lining for transfusion, thereby solving the technical problems of liquid pouring and irregular bag body damage caused by cutting of the bag body without valve mouth in the later stage of transfusion; meanwhile, the gas-liquid separation effect of the overflow holes solves the technical problem that the infusion amount of liquid in the bag body has errors.
Drawings
The present invention will be described in further detail with reference to the accompanying drawings and specific embodiments.
Fig. 1 is a cross-sectional view of the infusion screw sleeve of the IBC barrel lining.
Fig. 2 is a top view of the IBC barrel liner transfusion screw sleeve outward screw sleeve of the utility model.
Fig. 3 is a top view of the inner rotary sleeve of the infusion rotary sleeve of the IBC barrel lining.
In the figure: 1 is an outward rotating sleeve, 1-1 is a hot welding edge, 1-2 is a transfusion port, 1-3 is a horizontal slope table, 2 is an inward rotating sleeve, 2-1 is a partition plate, 3 is an internal tooth, 4 is an external tooth, 5 is a sealing ring, 6 is a rotating assembly, 7 is an extending edge, 8 is an overflow hole, and 9 is an overflow slope.
Detailed Description
As shown in figure 1, the IBC barrel liner transfusion spiral sleeve comprises an external spiral sleeve and an internal spiral sleeve, wherein the internal spiral sleeve is sleeved in the external spiral sleeve; the infusion apparatus is characterized in that the outer rotating sleeve 1 is wide-mouthed cylindrical, an infusion port 1-2 is formed in the bottom of the outer rotating sleeve 1, a hot welding edge 1-1 extending on the inner side of the infusion port 1-2 is welded with an IBC barrel lining, a partition plate 2-1 welded to the waist of the inner rotating sleeve 2 is arranged at the top of the infusion port 1-2, and outer teeth 4 at the bottom of the inner rotating sleeve 2 are meshed with inner teeth 3 at the bottom of the outer rotating sleeve 1. Wherein, the utility model discloses a cylindric cover 1 welding of spiraling of wide-mouth is done the infusion interface on IBC bucket inside lining. In order to seal the external rotating sleeve 1 for transfusion, an internal rotating sleeve 2 is screwed in the external rotating sleeve 1.
As shown in fig. 3, four groups of rotating assemblies 6 are welded on the top of the partition board 2-1, the rotating assemblies 6 are in a shape of a sector groove, and the root of each rotating assembly 6 is welded with the inner wall of the inner rotating sleeve 2. Wherein, the separator 2-1 has good sealing and loading functions. In order to conveniently take out or screw the inner rotating sleeve 2, four groups of rotating assemblies 6 are welded on the top of the partition plate 2-1, and the rotating assemblies 6 in the shape of a sector groove can be conveniently held by an operator.
As shown in fig. 1 and 2, a horizontal ramp 1-3 is reserved at the neck of the outward rotating sleeve 1, a hollow hole is formed in an overflow slope 9 on the inner side of the horizontal ramp 1-3, a plurality of groups of overflow holes 8 are formed in the top of the horizontal ramp 1-3, and the overflow holes 8 are communicated with the hollow hole formed in the overflow slope 9. Wherein, in order to separate the bubbles brought by the liquid during the infusion, a hollow hole is arranged on the overflow slope 9 and is communicated with the overflow hole 8. When a small amount of liquid overflows from the overflow hole 8 after gas-liquid separation, the bag can be warned that no air bubbles exist in the bag.
As shown in fig. 1 and 2, a hollow hole formed on the overflow slope 9 is in sealing contact with the sealing ring 5 sleeved outside the inner rotating sleeve 2, and an extension edge 7 welded on the top of the inner rotating sleeve 2 is in clearance fit with the inner wall of the outer rotating sleeve 1. Wherein, sealing washer 5 can play the effect of secondary seal. The extension edge 7 can prevent a large amount of foreign matters from staying in the gap between the inner rotary sleeve 2 and the outer rotary sleeve 1.
Although specific embodiments of the present invention have been described above, it will be appreciated by those skilled in the art that these are merely examples and that many changes and modifications may be made to the embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims.
Claims (4)
1. An IBC barrel liner transfusion rotary sleeve comprises an external rotary sleeve and an internal rotary sleeve, wherein the internal rotary sleeve is sleeved in the external rotary sleeve; the method is characterized in that: the infusion apparatus is characterized in that the outer rotating sleeve (1) is wide-mouth cylindrical, an infusion port (1-2) is formed in the bottom of the outer rotating sleeve (1), a hot welding edge (1-1) extending on the inner side of the infusion port (1-2) is welded with an IBC barrel lining, a partition plate (2-1) welded to the waist of the inner rotating sleeve (2) is arranged at the top of the infusion port (1-2), and outer teeth (4) at the bottom of the inner rotating sleeve (2) are meshed with inner teeth (3) at the bottom of the outer rotating sleeve (1).
2. The IBC barrel liner infusion turn-on set of claim 1, wherein: four groups of rotating assemblies (6) are welded at the top of the partition plate (2-1), the rotating assemblies (6) are in a fan-shaped groove shape, and the roots of the rotating assemblies (6) are welded with the inner wall of the inner rotating sleeve (2).
3. The IBC barrel liner infusion turn-on set of claim 1, wherein: the horizontal slope platform (1-3) is reserved at the neck of the outward rotating sleeve (1), a hole is formed in an overflow slope (9) on the inner side of the horizontal slope platform (1-3), a plurality of groups of overflow holes (8) are formed in the top of the horizontal slope platform (1-3), and the overflow holes (8) are communicated with the overflow slope (9) through the hole.
4. The IBC barrel liner infusion turn-on set of claim 3, wherein: the overflow device is characterized in that a cavity formed in the overflow slope (9) is in sealing contact with a sealing ring (5) sleeved on the outer side of the inner rotary sleeve (2), and an extending edge (7) welded to the top of the inner rotary sleeve (2) is in clearance fit with the inner wall of the outer rotary sleeve (1).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201920216820.2U CN209777296U (en) | 2019-02-20 | 2019-02-20 | IBC barrel inner lining transfusion rotary sleeve |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201920216820.2U CN209777296U (en) | 2019-02-20 | 2019-02-20 | IBC barrel inner lining transfusion rotary sleeve |
Publications (1)
Publication Number | Publication Date |
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CN209777296U true CN209777296U (en) | 2019-12-13 |
Family
ID=68795118
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN201920216820.2U Active CN209777296U (en) | 2019-02-20 | 2019-02-20 | IBC barrel inner lining transfusion rotary sleeve |
Country Status (1)
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CN (1) | CN209777296U (en) |
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2019
- 2019-02-20 CN CN201920216820.2U patent/CN209777296U/en active Active
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