CN220057068U - Automatic lifting device for squeezing water of adjustable foil - Google Patents

Automatic lifting device for squeezing water of adjustable foil Download PDF

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Publication number
CN220057068U
CN220057068U CN202321404095.4U CN202321404095U CN220057068U CN 220057068 U CN220057068 U CN 220057068U CN 202321404095 U CN202321404095 U CN 202321404095U CN 220057068 U CN220057068 U CN 220057068U
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horizontal
sleeve
plate
lifting device
automatic lifting
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CN202321404095.4U
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Chinese (zh)
Inventor
余登峰
吴家军
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Huizhou Duokeda Technology Co ltd
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Huizhou Duokeda Technology Co ltd
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Abstract

The utility model relates to an adjustable foil water squeezing automatic lifting device, which is characterized in that a supporting column, a first sleeve, a movable mechanism and a lifting mechanism are arranged, the lifting mechanism is matched with the movable mechanism, and the output end of the lifting mechanism is used for lifting upwards to push the lifting column to move upwards so as to drive the movable mechanism to move upwards integrally, so that the automatic lifting of the movable mechanism is realized, a squeeze roller is not required to be lifted or put down manually, the operation is convenient, and the production efficiency is improved; in addition, the position of the movable mechanism on the support column can be adjusted by rotating the first sleeve, so that the pressure applied by the wringing roller to the foil surface of the foil is adjusted, and the foil wringing requirement is met; the device has simple structure and low cost.

Description

Automatic lifting device for squeezing water of adjustable foil
Technical Field
The utility model relates to the technical field of foil processing, in particular to an adjustable automatic lifting device for squeezing water of a foil.
Background
In the production process of the electrolytic copper foil, the working procedures such as acid washing and water washing are needed, the liquid squeezing or water squeezing operation is needed after each working procedure, and before the copper foil is needed to be squeezed, the copper foil is needed to pass through the gap between the cathode roller and the squeezing roller, and at the moment, the squeezing roller is needed to be lifted away from the cathode roller for a certain distance so as to pass the copper foil; however, in the prior art, when lifting or putting down the wringing roller, manual operation is usually utilized, and as the wringing roller is arranged on the two supporting mechanisms, the two sides of the wringing roller need to be operated, the operation is very inconvenient, and the production efficiency is reduced. Accordingly, it is desirable to provide a device that automatically lifts the wringer roller.
Disclosure of Invention
Based on this, it is necessary to provide an adjustable automatic lifting device for squeezing water from a foil in order to solve the problems in the prior art.
The utility model relates to an adjustable foil water squeezing automatic lifting device which comprises a support column and a horizontal position adjusting base positioned at the lower end of the support column, wherein the upper part of the support column is rotatably connected with a first sleeve; the middle part of the support column is sleeved with a movable mechanism, the movable mechanism comprises a second sleeve, a first horizontal support plate, a third sleeve and a spring, the second sleeve, the first horizontal support plate, the third sleeve and the spring are sequentially sleeved on the support column in a sliding mode from top to bottom, one side of the third sleeve is fixed with the first horizontal support plate through a first installation frame, the lower side of the first installation frame is provided with a wringing roller installation part, and a jacking column is arranged in the first horizontal support plate; the lower part of the support column is sleeved with a second horizontal support plate, and the upper side of the second horizontal support plate is provided with a jacking mechanism corresponding to the jacking column; the lower end of the first sleeve is limited in the second sleeve; the lower end of the spring is abutted with the second horizontal supporting plate.
In one embodiment, the first horizontal support plate is penetrated with a guide post, and the guide post is slidably arranged in the second horizontal support plate.
In one embodiment, the horizontal position adjusting base comprises a second mounting frame and a horizontal position adjusting mechanism, wherein the second mounting frame comprises an upper mounting plate, a supporting frame and a lower mounting plate which are sequentially connected, the horizontal position adjusting mechanism is arranged on the upper side of the upper mounting plate, and a first strip-shaped hole is formed in the lower mounting plate.
In one embodiment, the horizontal position adjusting mechanism comprises a vertical supporting plate and a horizontal plate which are arranged on the upper side of the upper mounting plate at intervals, a horizontal push-pull rod is rotatably arranged in the vertical supporting plate, one end of the horizontal push-pull rod is movably connected with one end of the horizontal plate, a plurality of second strip-shaped holes are formed in the horizontal plate, the long axis direction of each second strip-shaped hole is parallel to the axial direction of the horizontal push-pull rod, the long axis direction of each second strip-shaped hole is perpendicular to the long axis direction of each first strip-shaped hole, and a first knob is arranged at the other end of the horizontal push-pull rod.
In one embodiment, a second knob is provided outside the first sleeve.
In one embodiment, the lifting mechanism is a cylinder.
According to the automatic lifting device for the adjustable foil extrusion, disclosed by the utility model, the supporting column, the first sleeve, the movable mechanism and the lifting mechanism are arranged, the lifting mechanism is matched with the movable mechanism, and the output end of the lifting mechanism is used for lifting upwards to push the lifting column to move upwards so as to drive the movable mechanism to move upwards integrally, so that the automatic lifting of the movable mechanism is realized, the squeeze roller is not required to be lifted or put down manually, the operation is convenient, and the production efficiency is improved; in addition, the position of the movable mechanism on the support column can be adjusted by rotating the first sleeve, so that the pressure applied by the wringing roller to the foil surface of the foil is adjusted, and the foil wringing requirement is met. The device has simple structure and low cost.
Drawings
FIG. 1 is a schematic perspective view of an automatic lifting device for squeezing water of an adjustable foil;
FIG. 2 is a front view of the adjustable foil wringing automatic lifting device of the present utility model;
FIG. 3 is a right side view of the adjustable foil wringing automatic lifting device of the present utility model;
FIG. 4 is a schematic view of the cross-sectional structure A-A in FIG. 3;
wherein, the support column 1, the upper mounting plate 211, the support frame 212, the lower mounting plate 213, the first bar hole 2131; a vertical support plate 221, a horizontal plate 222, a second bar-shaped hole 2221, a horizontal push-pull rod 223, and a first knob 224; the first sleeve 3, the second sleeve 41, the first horizontal support plate 42, the third sleeve 43, the spring 44, the first mounting bracket 45, the wringing roller mounting portion 46, the lifting column 47; a second horizontal support plate 5, a jacking mechanism 6, a guide post 7 and a second knob 8.
Detailed Description
In order that the above objects, features and advantages of the utility model will be readily understood, a more particular description of the utility model will be rendered by reference to the appended drawings. In the following description, numerous specific details are set forth in order to provide a thorough understanding of the present utility model. The present utility model may be embodied in many other forms than described herein and similarly modified by those skilled in the art without departing from the spirit of the utility model, whereby the utility model is not limited to the specific embodiments disclosed below.
It will be understood that when an element is referred to as being "connected" to another element, it can be directly connected to the other element or intervening elements may also be present. In contrast, when an element is referred to as being "directly connected" to another element, there are no intervening elements present.
Unless defined otherwise, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this utility model belongs. The terminology used herein in the description of the utility model is for the purpose of describing particular embodiments only and is not intended to be limiting of the utility model. The term "and/or" as used herein includes any and all combinations of one or more of the associated listed items.
As shown in fig. 1-4, the utility model relates to an adjustable foil water squeezing automatic lifting device, which comprises a support column 1 and a horizontal position adjusting base positioned at the lower end of the support column 1, wherein the upper part of the support column 1 is rotatably connected with a first sleeve 3; the middle part of the support column 1 is sleeved with a movable mechanism, the movable mechanism comprises a second sleeve 41, a first horizontal support plate 42, a third sleeve 43 and a spring 44, the second sleeve 41, the first horizontal support plate 42, the third sleeve 43 and the spring 44 are sequentially sleeved on the support column 1 in a sliding mode from top to bottom, one side of the third sleeve 43 is fixed with the first horizontal support plate 42 through a first mounting frame 45, a wringing roller mounting part 46 is arranged on the lower side of the first mounting frame 45, and a jacking column 47 is arranged in the first horizontal support plate 42; the lower part of the support column 1 is sleeved with a second horizontal support plate 5, and the upper side of the second horizontal support plate 5 is provided with a jacking mechanism 6 corresponding to the jacking column 47; the lower end of the first sleeve 3 is limited in the second sleeve 41; the lower end of the spring 44 abuts against the second horizontal support plate 5.
It can be understood that the upper part of the support column 1 is provided with external threads, and the first sleeve 3 is internally provided with internal threads; the outer diameter of the lower end of the first sleeve 3 is smaller than the inner diameter of the second sleeve 41 and larger than the inner diameter of the opening of the upper end of the second sleeve 41, so that the lower end of the first sleeve 3 is limited in the second sleeve 41; the third sleeve 43 has a rectangular parallelepiped shape and a cylindrical shape inside, which facilitates fixing it to the first mounting frame 45, but is not limited thereto; the spring 44 cooperates with the second horizontal support plate 5 for achieving an elastic support of the movable mechanism; specifically, the jacking mechanism 6 is a cylinder, but is not limited thereto, and is connected to an external air source. In addition, the horizontal position adjusting base is used for fixing the lifting device on one side of a frame (not shown in the figure) of the foil production device and facilitating the adjustment of the position of the lifting device on the frame, and supporting the support column 1 and all components located on the support column. In addition, a wringer roller mounting portion 46 for mounting a wringer roller (not shown in the drawings); it should be noted that the automatic lifting devices for squeezing the foil are matched in pairs, the two lifting devices are respectively fixed on two sides of a frame of the foil production device, and the squeezing roller is arranged between the two lifting devices so as to realize automatic and stable lifting of the squeezing roller.
According to the utility model, through the cooperation of the jacking mechanism 6 and the movable mechanism, the output end of the jacking mechanism 6 is jacked upwards, so that the jacking column 47 can be pushed to move upwards, and the movable mechanism is driven to move upwards integrally, so that the movable mechanism is jacked. In addition, since the lower end of the first sleeve 3 is limited in the second sleeve 41, the position of the lower end of the first sleeve 3 in the second sleeve 41 can be changed by rotating the first sleeve 3 to change the position of the first sleeve 3 on the support column 1, so that the position of the movable mechanism on the support column 1 can be adjusted, and on one hand, the upper limit of the movable mechanism lifted by the lifting mechanism 6 can be adjusted; on the other hand, the pressure applied by the wringing roller to the foil surface of the foil during wringing can be adjusted, so that the requirement of foil wringing is met.
When the automatic lifting device for the adjustable foil extrusion is used, two automatic lifting devices for the adjustable foil extrusion are fixed on two sides of a frame of a foil production device through a horizontal position adjusting base, and before extrusion, the lifting columns 47 are pushed to move upwards through the output end of the lifting mechanism 6 to drive the movable mechanism to move upwards integrally, so that the lifting of the movable mechanism is realized; when water is needed to be squeezed, the output end of the jacking mechanism 6 is in a retracted state, the movable mechanism drives the squeezing roller to apply pressure to the foil surface under the action of self gravity, the position of the first sleeve 3 on the support column 1 is regulated, the pressure applied by the squeezing roller to the foil surface is regulated, and when the pressure is regulated properly, the foil can be squeezed; after the water squeezing is finished, the movable mechanism moves upwards through the jacking mechanism 6 again, and the movable mechanism leaves the surface of the foil.
Further, the first horizontal support plate 42 is provided with a guide post 7 in a penetrating manner, and the guide post 7 is slidably disposed in the second horizontal support plate 5.
Specifically, as shown, the guide post 7 is disposed between the second sleeve 41 and the lifting post 47, but is not limited thereto. The guiding column 7 can prevent the movable mechanism from rotating during the rotation of the first sleeve 3 relative to the supporting column 1, and can play a guiding role during the lifting process of the movable mechanism, so that the device is more stable.
Further, the horizontal position adjusting base comprises a second mounting frame and a horizontal position adjusting mechanism, the second mounting frame comprises an upper mounting plate 211, a supporting frame 212 and a lower mounting plate 213 which are sequentially connected, the horizontal position adjusting mechanism is arranged on the upper side of the upper mounting plate 211, and a first strip-shaped hole 2131 is formed in the lower mounting plate 213.
Specifically, the number of the first bar holes 2131 is 4, but is not limited thereto. It will be appreciated that the lifting device is fixedly or movably mounted to the frame via a first bar hole 2131 of the lower mounting plate 213, a screw (not shown), a screw hole (not shown) in the frame, and the position of the lifting device in the first horizontal direction can be adjusted by unscrewing the screw in the first bar hole 2131, and the lower mounting plate 213 can be fixed to the frame by screwing the screw.
Further, the horizontal position adjusting mechanism comprises a vertical supporting plate 221 and a horizontal plate 222, which are arranged on the upper side of the upper mounting plate 211 at intervals, a horizontal push-pull rod 223 is rotatably arranged in the vertical supporting plate 221, one end of the horizontal push-pull rod 223 is movably connected with one end of the horizontal plate 222, a plurality of second bar-shaped holes 2221 are arranged in the horizontal plate 222, the long axis direction of the second bar-shaped holes 2221 is parallel to the axial direction of the horizontal push-pull rod 223, the long axis direction of the second bar-shaped holes 2221 is perpendicular to the long axis direction of the first bar-shaped holes 2131, and a first knob 224 is arranged at the other end of the horizontal push-pull rod 223.
Specifically, as shown in fig. 1, one end of the horizontal plate 222 is provided with a notch, and one end of the horizontal push-pull rod 223 is clamped in the notch, which can be other connection modes; specifically, the number of the second bar holes 2221 is 4, but is not limited thereto; it can be appreciated that the support column 1 is fixed on the horizontal plate 222, and the horizontal plate 222 is fixedly or movably arranged on the frame through the second bar-shaped hole 2221, a screw member (not shown in the figure) and a screw hole (not shown in the figure) on the upper mounting plate 211; by the arrangement of the first knob 224, the horizontal push-pull rod 223 is convenient to rotate, and the operation is more convenient.
By setting the horizontal position adjusting mechanism, by unscrewing the screw member in the second bar-shaped hole 2221, the position of the horizontal push-pull rod 223 relative to the vertical support plate 221 can be changed by rotating the horizontal push-pull rod 223, and the horizontal plate 222 connected with the horizontal push-pull rod is driven to move, so that the position of the horizontal push-pull rod relative to the upper mounting plate 211 is adjusted, and the position of the lifting device in the second horizontal direction is adjusted.
Further, a second knob 8 is arranged outside the first sleeve 3.
The first sleeve 3 is convenient to rotate through the arrangement of the second knob 8, so that the operation is more convenient.
According to the automatic lifting device for the adjustable foil extrusion water, through the cooperation of the jacking mechanism 6 and the movable mechanism, the output end of the jacking mechanism 6 is lifted upwards, so that the jacking column 47 can be pushed to move upwards, and the movable mechanism is driven to move upwards integrally, so that the automatic lifting of the movable mechanism is realized, the squeeze roller is not required to be lifted or put down manually, the operation is convenient, and the production efficiency is improved; in addition, the position of the movable mechanism on the support column 1 can be adjusted by rotating the first sleeve 3, so that the pressure applied by the wringing roller to the foil surface of the foil is adjusted, and the foil wringing requirement is met. The device has simple structure and low cost.
The technical features of the above-described embodiments may be arbitrarily combined, and all possible combinations of the technical features in the above-described embodiments are not described for brevity of description, however, as long as there is no contradiction between the combinations of the technical features, they should be considered as the scope of the description.
The above examples illustrate only a few embodiments of the utility model, which are described in detail and are not to be construed as limiting the scope of the utility model. It should be noted that it will be apparent to those skilled in the art that several variations and modifications can be made without departing from the spirit of the utility model, which are all within the scope of the utility model. Accordingly, the scope of protection of the present utility model is to be determined by the appended claims.

Claims (6)

1. An automatic lifting device of crowded water of adjustable foil, its characterized in that: the lifting device comprises a support column and a horizontal position adjusting base positioned at the lower end of the support column, and the upper part of the support column is rotationally connected with a first sleeve; the middle part of the support column is sleeved with a movable mechanism, the movable mechanism comprises a second sleeve, a first horizontal support plate, a third sleeve and a spring, the second sleeve, the first horizontal support plate, the third sleeve and the spring are sequentially sleeved on the support column in a sliding mode from top to bottom, one side of the third sleeve is fixed with the first horizontal support plate through a first installation frame, the lower side of the first installation frame is provided with a wringing roller installation part, and a jacking column is arranged in the first horizontal support plate; the lower part of the support column is sleeved with a second horizontal support plate, and the upper side of the second horizontal support plate is provided with a jacking mechanism corresponding to the jacking column; the lower end of the first sleeve is limited in the second sleeve; the lower end of the spring is abutted with the second horizontal supporting plate.
2. The automatic lifting device for squeezing water from an adjustable foil according to claim 1, wherein a guide post is arranged in the first horizontal support plate in a penetrating manner, and the guide post is arranged in the second horizontal support plate in a sliding manner.
3. The automatic lifting device for squeezing water of adjustable foil according to claim 1, wherein the horizontal position adjusting base comprises a second mounting frame and a horizontal position adjusting mechanism, the second mounting frame comprises an upper mounting plate, a supporting frame and a lower mounting plate which are sequentially connected, the horizontal position adjusting mechanism is arranged on the upper side of the upper mounting plate, and a first strip-shaped hole is formed in the lower mounting plate.
4. The automatic lifting device for the extrusion of the adjustable foil according to claim 3, wherein the horizontal position adjusting mechanism comprises a vertical supporting plate and a horizontal plate which are arranged on the upper side of the upper mounting plate at intervals, the horizontal supporting plate is rotatably provided with a horizontal push-pull rod, one end of the horizontal push-pull rod is movably connected with one end of the horizontal plate, a plurality of second strip-shaped holes are formed in the horizontal plate, the long axis direction of each second strip-shaped hole is parallel to the axial direction of the horizontal push-pull rod, the long axis direction of each second strip-shaped hole is perpendicular to the long axis direction of each first strip-shaped hole, and the other end of each horizontal push-pull rod is provided with a first knob.
5. The automatic lifting device for squeezing water from an adjustable foil according to claim 1, wherein a second knob is arranged outside the first sleeve.
6. The adjustable foil wringing automatic lifting device of claim 1, wherein the lifting mechanism is a cylinder.
CN202321404095.4U 2023-06-05 2023-06-05 Automatic lifting device for squeezing water of adjustable foil Active CN220057068U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202321404095.4U CN220057068U (en) 2023-06-05 2023-06-05 Automatic lifting device for squeezing water of adjustable foil

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202321404095.4U CN220057068U (en) 2023-06-05 2023-06-05 Automatic lifting device for squeezing water of adjustable foil

Publications (1)

Publication Number Publication Date
CN220057068U true CN220057068U (en) 2023-11-21

Family

ID=88767341

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202321404095.4U Active CN220057068U (en) 2023-06-05 2023-06-05 Automatic lifting device for squeezing water of adjustable foil

Country Status (1)

Country Link
CN (1) CN220057068U (en)

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