CN217222805U - Clamping and rotating device for washing steel cylinder - Google Patents

Clamping and rotating device for washing steel cylinder Download PDF

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Publication number
CN217222805U
CN217222805U CN202123111949.3U CN202123111949U CN217222805U CN 217222805 U CN217222805 U CN 217222805U CN 202123111949 U CN202123111949 U CN 202123111949U CN 217222805 U CN217222805 U CN 217222805U
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roller
clamping
roller body
driving
driven
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CN202123111949.3U
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Chinese (zh)
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王立伟
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Tianjin Changlong Hongye Gas Equipment Co ltd
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Tianjin Changlong Hongye Gas Equipment Co ltd
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Abstract

The utility model discloses a steel bottle is washed bottle and is used tight rotary device of clamp to improve the frictional force between roll body and the steel bottle body, ensure going on smoothly of production. The device comprises three roller bodies which form three-point positioning and clamping, wherein the axis of each roller body is parallel to the axis of the steel cylinder to be cleaned; a first anti-slip sleeve is arranged on the roller body as the driving roller, and a spiral anti-slip groove is formed in the first anti-slip sleeve. The anti-skid groove is a left spiral groove, a right spiral groove or a combined groove formed by crossing a left spiral and a right spiral. The utility model discloses a be provided with anti-skidding recess on the antiskid cover on the drive roll, can increase the frictional force between roll body and the steel bottle body as the drive roll, prevent to produce the phenomenon of skidding between roll body and the steel bottle, guarantee steel bottle and drive roll simultaneous movement, ensured going on smoothly of production, be favorable to improving production efficiency.

Description

Clamping and rotating device for washing steel cylinder
Technical Field
The utility model relates to a specialty cleaning equipment technical field, more specifically says, relates to a steel bottle is tight rotary device of clamp for wash-bottle.
Background
The liquefied petroleum gas cylinder is generally placed near a kitchen gas stove, a large amount of dust and oil smoke fall on the surface of the liquefied petroleum gas cylinder after long-time use, the surface of the cylinder body of the liquefied petroleum gas cylinder is dirty, and the liquefied petroleum gas cylinder needs to be cleaned and refilled and is provided for customers to use.
In order to improve the cleaning efficiency, the steel cylinder cleaning equipment is produced at the same time, and the steel cylinder cleaning equipment is various. At present, the steel cylinder cleaning process mainly comprises the steps of spraying cleaning liquid onto the surface of a steel cylinder and then brushing the body of the steel cylinder through a special brush. In the brushing process, the whole bottle body is completely cleaned by adopting a brush rotation mode or a steel bottle rotation mode. When adopting steel bottle pivoted mode to wash, because the effect of washing liquid has reduced the frictional force between steel bottle and the centre gripping equipment for the centre gripping equipment often and the steel bottle body between produce the phenomenon of skidding, make the steel bottle can not accomplish with the follow-up of drive roll, influence going on smoothly of steel bottle cleaning process, equipment stability and cleaning performance receive the influence, have reduced productivity ratio.
SUMMERY OF THE UTILITY MODEL
The utility model aims at the technical defect who exists among the prior art, and provide a steel bottle washes bottle with pressing from both sides tight rotary device to improve the frictional force between roll body and the steel bottle body, ensure going on smoothly of production.
For realizing the utility model discloses a technical scheme that the purpose adopted is:
a clamping and rotating device for washing a steel cylinder comprises at least three roller bodies, and at least three-point positioning and clamping are formed; the axis of each roller body is parallel to the axis of the steel cylinder to be cleaned; the roller body serving as the driving roller is provided with a first anti-slip sleeve, and an anti-slip groove is formed in the first anti-slip sleeve.
The anti-skid groove is a left spiral groove, a right spiral groove or a combined groove formed by crossing a left spiral and a right spiral.
The roller body serving as a driving roller is connected with the rotary driving mechanism through a transmission mechanism; any roller body is connected with a displacement driving mechanism; the roller body as a driven roller freely rotates.
The two first anti-slip sleeves serving as the driving rollers are symmetrically arranged at the upper part and the lower part of the roller body serving as the driving roller, and the first anti-slip sleeves are made of rubber materials.
And a second anti-skidding sleeve is arranged on the roller body serving as a driven roller and is made of rubber materials.
The two second anti-skidding sleeves serving as the driven rollers are symmetrically arranged at the upper part and the lower part of the roller body serving as the driven roller.
The number of the roller bodies serving as the driving rollers is two, and the number of the roller bodies serving as the driven rollers is one; or: the number of the roller bodies used as the driving rollers is one, and the number of the roller bodies used as the driven rollers is two.
The roller body as a driven roller is freely rotatably mounted on a driven roller support, and the driven roller support is connected with the displacement driving mechanism.
The displacement driving mechanism is an electric driving mechanism, an air cylinder driving mechanism or an oil cylinder driving mechanism.
The rotary driving mechanism is an electric driving mechanism.
Compared with the prior art, the beneficial effects of the utility model are that:
1. the utility model discloses a be provided with anti-skidding recess on the antiskid cover of drive roll, can increase the frictional force between roll body and the steel bottle body as the drive roll, prevent to produce the phenomenon of skidding between roll body and the steel bottle, guarantee steel bottle and drive roll simultaneous movement have ensured going on smoothly of production, are favorable to improving production efficiency.
2. The utility model discloses a be provided with the antiskid cover on the driven voller, can strengthen the frictional force between driven voller and the steel bottle body, further ensured the effective transmission of steel bottle.
Drawings
FIG. 1 is a schematic structural view of an embodiment of a clamping and rotating device for washing a steel cylinder according to the present invention;
fig. 2 is a schematic diagram showing the positional relationship of three roller bodies.
Detailed Description
The present invention will be described in detail below with reference to the accompanying drawings and specific embodiments.
The utility model discloses steel bottle is tight rotary device of clamp for bottle cleaning includes at least three roll body, forms at least three point location and presss from both sides tightly. The plurality of roller bodies are divided into driving rollers and driven rollers according to use requirements. The axis of each roller body is parallel to the axis of the steel cylinder to be cleaned. The roller body serving as the driving roller is provided with a first anti-slip sleeve, and the first anti-slip sleeve is provided with an anti-slip groove to prevent the steel cylinder from slipping in the rotating process due to the fact that cleaning liquid adheres to the surface of the steel cylinder during cleaning.
When in use, the roller body serving as a driving roller is connected with the rotary driving mechanism through the transmission mechanism; any roller body is connected with a displacement driving mechanism; the roller body as a driven roller freely rotates.
The number of the drive rollers and the driven rollers can be set as required. For the scheme of three roller bodies, the distribution of a driving roller and a driven roller is divided into two schemes: the number of the roller bodies serving as the driving rollers is two, and the number of the roller bodies serving as the driven rollers is one; or: the number of the roller bodies used as the driving rollers is one, and the number of the roller bodies used as the driven rollers is two. Preferably, one driving roller and two driven rollers are adopted.
The displacement driving mechanism is used for translating the roller bodies, so that three roller bodies form three-point positioning clamping or loosening. The shift drive mechanism may drive the roller body as a drive roller or may drive the roller body as a driven roller as needed.
The following description will be made in detail with a clamp rotating device for washing a steel cylinder, which has three positioning clamp roller bodies, one of which is a driving roller and two of which are driven rollers, as a preferred embodiment.
The structure schematic diagram of the clamping and rotating device for washing the steel cylinder is shown in fig. 1-2, and comprises three roller bodies to form three-point positioning and clamping. One roller body is used as a driving roller 1, the other two roller bodies are used as driven rollers 2, and the axis of each roller body is parallel to the axis of the steel cylinder to be cleaned. The roller body serving as the driving roller 1 is provided with a first anti-skidding sleeve 3, and the first anti-skidding sleeve 3 is provided with an anti-skidding groove 3-1 structure.
The antiskid groove 3-1 is any one of a left spiral groove, a right spiral groove or a combined groove formed by crossing a left spiral and a right spiral. In the present embodiment, a combination of grooves formed by intersecting left and right spirals is preferably used, so that slippage in any direction can be prevented.
When in use, the roller body as the driving roller 1 is connected with the rotary driving mechanism 5 through the transmission mechanism 4. Any of the roller bodies is connected with a displacement driving mechanism 6. The roller body as the driven roller 2 is free to rotate. In the present embodiment, the shift drive mechanism 6 drives the driven rollers 2, and the shift drive mechanism may drive a single driven roller or may drive two driven rollers simultaneously. When a single driven roller is driven, two driven rollers are respectively and freely rotatably arranged on the respective driven roller supports, and the displacement driving mechanism drives one driven roller support, so that the corresponding driven roller is driven to translate. The present embodiment preferably drives two driven rollers simultaneously using a shift drive mechanism. When the shift drive mechanism drives two driven rollers simultaneously, as shown in fig. 1, the two driven rollers 2 are freely rotatably mounted on the same driven roller bracket 7, and the driven roller bracket 7 is connected to the shift drive mechanism 6. The displacement driving mechanism 6 can be an electric driving mechanism, an air cylinder driving mechanism or an oil cylinder driving mechanism. In this embodiment, a cylinder driving mechanism is adopted.
In order to enhance the anti-slip effect, two first anti-slip sleeves 3 are arranged on the roller body as the driving roller 1, and are symmetrically arranged on the upper part and the lower part of the roller body as the driving roller 1. A second anti-slip sleeve 8 is arranged on the roller body as the driven roller 2. The two second anti-slip sleeves 8 on the roller body as the driven roller 2 are symmetrically arranged at the upper part and the lower part of the roller body as the driven roller. The first anti-slip sleeve 3 and the second anti-slip sleeve 8 are both made of rubber materials.
In this embodiment, the rotation driving mechanism 5 is an electric driving mechanism.
During the use, place steel bottle 9 on the layer board, start aversion actuating mechanism 6 and drive the driven voller 2 translation that is located on the driven voller support, two driven voller 2 and drive roll 1 carry out three point location to the steel bottle and press from both sides tightly. The rotary driving mechanism 5 is started, the rotary driving mechanism 5 drives the driving roller 1 to rotate through the transmission mechanism 4, and the friction force between the driving roller and the steel cylinder is increased due to the fact that the anti-skidding grooves are formed in the driving roller, so that the driving roller and the driven roller drive the steel cylinder to rotate together, and the steel cylinder is cleaned through the cleaning mechanism.
The utility model discloses a be provided with anti-skidding recess on the first anti-skidding of drive roll, can increase the frictional force between roll body and the steel bottle body as the drive roll, prevent to produce the phenomenon of skidding between roll body and the steel bottle, guarantee steel bottle and drive roll simultaneous movement have ensured going on smoothly of production, are favorable to improving production efficiency. Moreover, the structure is simple and the use is convenient.
The foregoing is only a preferred embodiment of the present invention, and it should be noted that, for those skilled in the art, a plurality of improvements and decorations can be made without departing from the principle of the present invention, and these improvements and decorations should also be regarded as the protection scope of the present invention.

Claims (10)

1. A clamping rotating device for washing a steel cylinder is characterized by comprising at least three roller bodies, wherein at least three-point positioning and clamping are formed; the axis of each roller body is parallel to the axis of the steel cylinder to be cleaned; the roller body serving as the driving roller is provided with a first anti-skidding sleeve, and an anti-skidding groove is formed in the first anti-skidding sleeve.
2. The clamping and rotating device for washing steel cylinder according to claim 1, wherein the anti-slip groove is a left spiral groove, a right spiral groove or a combination groove formed by crossing a left spiral and a right spiral.
3. The clamping rotary device for washing steel cylinders according to claim 1 or 2, wherein the roller body as a driving roller is connected to a rotary driving mechanism through a transmission mechanism; any roller body is connected with a displacement driving mechanism; the roller body as a driven roller freely rotates.
4. The clamping and rotating device for washing steel cylinders according to claim 3, wherein the number of the first anti-slip sleeves on the roller body as the driving roller is two, and the first anti-slip sleeves are symmetrically arranged on the upper part and the lower part of the roller body as the driving roller, and the first anti-slip sleeves are made of rubber materials.
5. The clamping and rotating device for washing steel cylinders according to claim 3, wherein the roller body as the driven roller is provided with a second anti-slip sleeve, and the second anti-slip sleeve is made of rubber.
6. The clamping and rotating device for washing steel cylinders according to claim 5, wherein the number of the second anti-slip covers on the roller body as the driven roller is two, and the second anti-slip covers are symmetrically arranged on the upper part and the lower part of the roller body as the driven roller.
7. The clamping rotary device for steel bottle washing as claimed in claim 3, wherein said roller bodies as driving rollers are two, and said roller body as driven roller is one; or: the number of the roller bodies used as the driving rollers is one, and the number of the roller bodies used as the driven rollers is two.
8. The clamping and rotating device for washing steel cylinders according to claim 3, wherein said roller body as a driven roller is freely rotatably mounted on a driven roller holder, said driven roller holder being connected to said displacement drive mechanism.
9. The clamping rotary device for washing steel cylinder according to claim 8, wherein the displacement driving mechanism is an electric driving mechanism, a cylinder driving mechanism or a cylinder driving mechanism.
10. The cylinder clamp rotation apparatus of claim 3, wherein the rotational drive mechanism is an electric drive mechanism.
CN202123111949.3U 2021-12-10 2021-12-10 Clamping and rotating device for washing steel cylinder Active CN217222805U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202123111949.3U CN217222805U (en) 2021-12-10 2021-12-10 Clamping and rotating device for washing steel cylinder

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202123111949.3U CN217222805U (en) 2021-12-10 2021-12-10 Clamping and rotating device for washing steel cylinder

Publications (1)

Publication Number Publication Date
CN217222805U true CN217222805U (en) 2022-08-19

Family

ID=82826041

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202123111949.3U Active CN217222805U (en) 2021-12-10 2021-12-10 Clamping and rotating device for washing steel cylinder

Country Status (1)

Country Link
CN (1) CN217222805U (en)

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