CN220296242U - Clamping jig for assembling large polar plates - Google Patents

Clamping jig for assembling large polar plates Download PDF

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Publication number
CN220296242U
CN220296242U CN202321276595.4U CN202321276595U CN220296242U CN 220296242 U CN220296242 U CN 220296242U CN 202321276595 U CN202321276595 U CN 202321276595U CN 220296242 U CN220296242 U CN 220296242U
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China
Prior art keywords
plate
positioning
main body
assembly
limiting
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Active
Application number
CN202321276595.4U
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Chinese (zh)
Inventor
潘小灵
韦德配
宋继兰
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Guizhou Yinquan Nonferrous Alloy Co ltd
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Guizhou Yinquan Nonferrous Alloy Co ltd
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Abstract

The utility model discloses a clamping jig for assembling a large-sized polar plate, which is used for mounting a polar plate beam and a polar plate main body and comprises the following components: a base; the limiting support plate is vertically arranged on the base and used for limiting and supporting one surface of the polar plate main body; the beam positioning assembly is arranged at the bottom of the limiting support plate and used for positioning the polar plate beam so that the polar plate Liang Bei is positioned at the bottom of the limiting support plate; the plate positioning assembly is used for limiting the polar plate main body, so that the polar plate main body is flatly paved on the limiting support plate and the bottom of the polar plate main body is in butt joint with the polar plate beam. According to the utility model, the positioning assembly is arranged to be kept fixed in welding, so that efficient assembly welding of the polar plates is realized.

Description

Clamping jig for assembling large polar plates
Technical Field
The utility model relates to the technical field of polar plate jigs, in particular to a clamping jig for assembling a large polar plate.
Background
The structural dimension of the large-sized polar plate is more than 1.5 meters and even more than 2 meters, the polar plate and the polar plate beam are mutually separated, and before leaving the factory, the polar plate and the polar plate beam are required to be installed in a butt joint mode and then welded through a welding device. In the prior art, the polar plate and the polar plate beam are placed horizontally and then welded through manual butt joint, the manual installation and the welding mode are adopted, the installation accuracy is low, the operation efficiency is low, the welding speed is low, the assembly of the polar plate is affected, and the problem is solved by arranging a clamping jig for assembling the large polar plate.
Disclosure of Invention
Therefore, the utility model aims to provide a clamping jig for assembling large-sized polar plates, which realizes accurate and efficient assembly and welding of the polar plates.
In order to solve the technical problems, according to one aspect of the present utility model, the following technical solutions are provided:
a clamping tool for large-scale polar plate equipment for installation of polar plate roof beam and polar plate main part includes:
a base;
the limiting support plate is vertically arranged on the base and used for limiting and supporting one surface of the polar plate main body;
the beam positioning assembly is arranged at the bottom of the limiting support plate and used for positioning the polar plate beam so that the polar plate Liang Bei is positioned at the bottom of the limiting support plate;
the plate positioning assembly is used for limiting the polar plate main body, so that the polar plate main body is flatly paved on the limiting support plate and the bottom of the polar plate main body is in butt joint with the polar plate beam.
Preferably, the beam positioning assembly comprises a plurality of positioning mechanisms arranged in parallel at the bottom of the limit supporting plate.
Preferably, the positioning mechanism includes: the plate fixing device comprises a limiting support plate, a positioning plate, an L-shaped bending support arm and a pressing plate, wherein the positioning plate is fixed on the limiting support plate and used for positioning and supporting the bottom edge of the plate body, the L-shaped bending support arm is arranged on the positioning plate and perpendicular to the plate surface of the limiting support plate, and the pressing plate is arranged on the L-shaped bending support arm and used for pressing the plate body.
Preferably, the board positioning assembly comprises: x is to locating component, Y is to locating component and Z is to locating component, X is to locating component be used for right the both sides edge of polar plate main part is spacing, Y is to locating component be used for right the upper end edge of polar plate main part is spacing, Z is to locating component be used for right the front of polar plate main part is spacing.
Preferably, the X-direction positioning assembly includes: the first X-direction locating component is arranged at the first side edge of the polar plate main body, and the second X-direction locating component is arranged at the second side edge of the polar plate main body opposite to the first X-direction locating component, and the first X-direction locating component comprises: the positioning device comprises a positioning mounting seat, a motor arranged on one side of the positioning mounting seat, a transmission mechanism arranged in the positioning mounting seat and a first X-direction limiting plate connected with the transmission mechanism; the second X-directional positioning assembly includes: the positioning plate is fixed on the second side edge and used for positioning and limiting the second side edge of the polar plate main body, an L-shaped bending support arm which is arranged on the positioning plate and perpendicular to the plate surface of the limiting support plate, and a pressing plate which is arranged on the L-shaped bending support arm and used for pressing the polar plate main body.
Preferably, the X-direction positioning assembly includes: the first X-direction locating component is arranged at the first side edge of the polar plate main body, and the second X-direction locating component is arranged at the second side edge of the polar plate main body opposite to the first X-direction locating component, and the first X-direction locating component comprises: the device comprises a wedge-shaped sliding block, a hydraulic cylinder, a positioning sliding block and a fixed positioning piece, wherein the wedge-shaped sliding block is connected with a push rod of the hydraulic cylinder, the positioning sliding block is arranged in parallel with the first side edge of the polar plate main body in a sliding manner, the wedge-shaped sliding block is used for driving the positioning sliding block to slide through a wedge-shaped surface of the wedge-shaped sliding block so as to be positioned on the first side edge of the polar plate main body, and the fixed positioning piece is used for limiting the position of the wedge-shaped sliding block; the second X-directional positioning assembly includes: and the positioning plate is fixed on the second side edge and used for positioning and limiting the second side edge of the polar plate main body.
Preferably, the Y-direction positioning assembly is disposed at an upper end edge of the electrode plate main body, and the Y-direction positioning assembly includes: the Y-direction positioning mounting seat, a Y-direction positioning motor arranged on one side of the Y-direction positioning mounting seat, a Y-direction transmission mechanism arranged in the Y-direction positioning mounting seat and a Y-direction limiting plate connected with the Y-direction transmission mechanism.
Preferably, the Z-direction positioning assembly includes: the L-shaped bending support arm is arranged on the limiting support plate and perpendicular to the plate surface of the limiting support plate, and the pressing plate is arranged on the L-shaped bending support arm and used for pressing the electrode plate main body.
Compared with the prior art, the utility model has the advantages that:
when the large-scale polar plate is assembled, the polar plate beam and the polar plate main body can be pre-positioned and fixed, so that the polar plate beam and the polar plate main body are positioned to the preset positions, the polar plate main body is vertically placed by utilizing the limiting support plate and the limiting assembly on the limiting support plate, and the polar plate main body is positioned in multiple directions, so that the installation direction and the stress direction of the polar plate beam and the polar plate main body are consistent, the situation of displacement and the like can not occur in the welding process, the high-precision welding process can be realized, and meanwhile, the clamping is convenient, and the efficiency is higher.
Drawings
In order to more clearly illustrate the technical solutions of the embodiments of the present utility model, the following detailed description of the embodiments of the present utility model will be given with reference to the accompanying drawings, which are to be understood as merely some embodiments of the present utility model, and from which other drawings can be obtained by those skilled in the art without inventive faculty. Wherein:
FIG. 1 is a diagram of a fixture structure of the present utility model;
FIG. 2 is a block diagram of a beam positioning assembly of the present utility model;
FIG. 3 is a block diagram of a first X-ray positioning assembly of the present utility model;
FIG. 4 is another block diagram of the first X-ray positioning assembly of the present utility model.
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, but the present utility model may be practiced in other ways other than those described herein, and persons skilled in the art will readily appreciate that the present utility model is not limited to the specific embodiments disclosed below.
In the following detailed description of the embodiments of the present utility model, the cross-sectional view of the device structure is not partially enlarged to a general scale for the convenience of description, and the schematic is merely an example, which should not limit the scope of the present utility model. In addition, the three-dimensional dimensions of length, width and depth should be included in actual fabrication.
For the purpose of making the objects, technical solutions and advantages of the present utility model more apparent, embodiments of the present utility model will be described in further detail below with reference to the accompanying drawings.
The utility model provides a clamping jig for assembling a large polar plate, which ensures that displacement does not occur in the welding process through a positioning assembly, and realizes high-precision and high-efficiency assembling and welding of the polar plate.
Example 1
Fig. 1 is a schematic overall structure diagram of an embodiment of a clamping fixture for assembling a large-scale polar plate, where the fixture is used for mounting and welding a polar plate beam 130 and a polar plate main body, referring to fig. 1, the main structure of the embodiment includes: a clamping tool for large-scale polar plate equipment for the installation of polar plate roof beam 130 and polar plate main part includes: base 110, spacing support plate 120, beam positioning assembly 140, and plate positioning assembly 150.
The limiting support plate 120 is vertically installed on the base 110, and is used for limiting and supporting one surface of the electrode plate main body; the beam positioning assembly 140 is disposed at the bottom of the limit support plate 120, and is used for positioning the plate beam 130, so that the plate beam 130 is positioned at the bottom of the limit support plate 120; the plate positioning assembly 150 is configured to limit the plate body, so that the plate body is tiled on the limiting support plate 120 and the bottom of the plate body is in butt joint with the plate beam 130.
In this embodiment, the beam positioning assembly 140 includes a plurality of positioning mechanisms 141 disposed in parallel at the bottom of the spacing support plate 120. The beam positioning assembly 140 is arranged at the bottom, so that the polar plate beam 130 is clamped at the bottom of the jig, and thus the assembly can be realized by utilizing the gravity of the polar plate main body, and the force interference in other directions is avoided, so that the assembly is more accurate.
Specifically, as shown in fig. 2, the positioning mechanism 141 includes: the plate body is characterized by comprising a positioning plate 1411, an L-shaped bending support arm 1412 and a pressing plate 1413, wherein the positioning plate 1411 is fixed on the limiting support plate 120 and used for positioning and supporting the bottom edge of the plate body, the L-shaped bending support arm 1412 is arranged on the positioning plate 1411 and perpendicular to the plate surface of the limiting support plate 120, and the pressing plate 1413 is arranged on the L-shaped bending support arm 1412 and used for pressing the plate body. Support and positioning of the plate beam 130 in the gravity direction can be achieved through the positioning plate 1411, the pressing plate 1413 is matched with the L-shaped bending support arms 1412, plate surface support (two-surface support is achieved through the matching of the limiting support plates 120) of the plate beam 130 can be achieved, and the L-shaped bending support arms 1412 can be rotatably arranged on the positioning plate 1411 or the limiting support plates 120 so as to facilitate clamping and removing of the plate beam 130.
In this embodiment, with continued reference to FIG. 1, the plate positioning assembly 150 includes: the X-direction positioning assembly 151, the Y-direction positioning assembly 152 and the Z-direction positioning assembly, wherein the X-direction positioning assembly 151 is used for limiting the two side edges of the pole plate main body, the Y-direction positioning assembly 152 is used for limiting the upper end edge of the pole plate main body, and the Z-direction positioning assembly is used for limiting the front surface of the pole plate main body.
Further, as shown in fig. 3, the X-direction positioning assembly 151 includes: a first X-direction positioning assembly 151a disposed at a first side edge of the plate body and a second X-direction positioning assembly disposed opposite thereto at a second side edge of the plate body, the first X-direction positioning assembly 151a comprising: a positioning mounting seat 1511, a motor 1510 arranged on one side of the positioning mounting seat 1511, a transmission mechanism 1512 arranged in the positioning mounting seat 1511, and a first X-direction limiting plate 1513 connected with the transmission mechanism 1512; the second X-directional positioning assembly includes: and a positioning plate 157 (refer to fig. 1) fixed to the second side edge for positioning and limiting the second side edge of the plate body.
As another alternative embodiment, as shown in fig. 4, the X-direction positioning assembly 151b includes: a first X-direction positioning assembly 151a disposed at a first side edge of the plate body and a second X-direction positioning assembly disposed opposite thereto at a second side edge of the plate body, the first X-direction positioning assembly 151a comprising: a wedge-shaped slide block 1515, a hydraulic cylinder 1514, a positioning slide block 1516 and a fixed positioning piece 1517, wherein the wedge-shaped slide block 1515 is connected with a push rod of the hydraulic cylinder 1514, the positioning slide block 1516 is slidably arranged parallel to the first side edge of the polar plate main body, the wedge-shaped slide block 1515 is used for driving the positioning slide block 1516 to slide through a wedge-shaped surface thereof so as to be positioned to the first side edge of the polar plate main body, and the fixed positioning piece 1517 is used for limiting the position of the wedge-shaped slide block 1515; the second X-directional positioning assembly includes: and a positioning plate 157 fixed on the second side edge for positioning and limiting the second side edge of the polar plate main body. Unlike the motor 1510, the hydraulic cylinder drive is simpler and less costly.
In this embodiment, the Y-directional positioning assembly 152 is disposed at the upper end edge of the electrode plate main body, and the Y-directional positioning assembly 152 includes: the Y-direction positioning mounting seat, a Y-direction positioning motor arranged on one side of the Y-direction positioning mounting seat, a Y-direction transmission mechanism arranged in the Y-direction positioning mounting seat and a Y-direction limiting plate connected with the Y-direction transmission mechanism. Specifically, the Y-direction positioning assembly 152 is identical to the X-direction positioning assembly structure shown in fig. 3 and 4, except for the direction of arrangement, and therefore, the specific structure is not separately shown in the drawings of the present embodiment.
In this embodiment, the Z-direction positioning assembly includes: the plate body is provided with an L-shaped bending support arm which is arranged on the limit support plate 120 and perpendicular to the plate surface of the limit support plate 120, and a pressing plate which is arranged on the L-shaped bending support arm and used for pressing the plate body. Specifically, the Z-direction positioning assembly is identical to the beam positioning assembly structure in fig. 2, and therefore, the specific structure is not separately shown in the drawings of the present embodiment for explanation.
When the large-scale polar plate is assembled, the polar plate beam and the polar plate main body can be pre-positioned and fixed, so that the polar plate beam and the polar plate main body are positioned to the preset positions, the polar plate main body is vertically placed by utilizing the limiting support plate and the limiting assembly on the limiting support plate, and the polar plate main body is positioned in multiple directions, so that the installation direction and the stress direction of the polar plate beam and the polar plate main body are consistent, the situation of displacement and the like can not occur in the welding process, the high-precision welding process can be realized, and meanwhile, the clamping is convenient, and the efficiency is higher.
Although the utility model has been described hereinabove with reference to embodiments, various modifications thereof may be made and equivalents may be substituted for elements thereof without departing from the scope of the utility model. In particular, the features of the disclosed embodiments may be combined with each other in any manner as long as there is no structural conflict, and the exhaustive description of these combinations is not given in this specification merely for the sake of omitting the descriptions and saving resources. Therefore, it is intended that the utility model not be limited to the particular embodiment disclosed, but that the utility model will include all embodiments falling within the scope of the appended claims.

Claims (8)

1. A clamping tool for large-scale polar plate equipment for installation and welding of polar plate roof beam (130) and polar plate main part, its characterized in that includes:
a base (110);
the limiting support plate (120) is vertically arranged on the base (110) and used for limiting and supporting one surface of the polar plate main body;
the beam positioning assembly (140) is arranged at the bottom of the limit supporting plate (120) and used for positioning the polar plate beam (130), so that the polar plate beam (130) is positioned at the bottom of the limit supporting plate (120);
the plate positioning assembly (150) is used for limiting the plate main body, so that the plate main body is flatly paved on the limiting support plate (120) and the bottom of the plate main body is in butt joint with the plate beam (130).
2. The clamping jig for large plate assembly of claim 1, wherein the beam positioning assembly (140) includes a plurality of positioning mechanisms (141) arranged in parallel at the bottom of the spacing support plate (120).
3. The clamping jig for large plate assembly of claim 2, wherein the positioning mechanism (141) comprises: the plate positioning device comprises a positioning plate (1411) fixed on a limiting support plate (120) and used for positioning and supporting the bottom edge of the plate main body, an L-shaped bending support arm (1412) arranged on the positioning plate (1411) and perpendicular to the plate surface of the limiting support plate (120), and a pressing plate (1413) arranged on the L-shaped bending support arm (1412) and used for pressing the plate main body, wherein the L-shaped bending support arm (1412) is rotatably arranged on the positioning plate (1411).
4. The clamping jig for large plate assembly of claim 1, wherein the plate positioning assembly (150) comprises: x is to locating component (151), Y is to locating component (152) and Z to locating component, X is to locating component (151) be used for right the both sides edge of polar plate main part is spacing, Y is to locating component (152) be used for right the upper end edge of polar plate main part is spacing, Z is to locating component be used for right the front of polar plate main part is spacing.
5. The clamping jig for large plate assembly of claim 4, wherein the X-direction positioning assembly (151) comprises: a first X-direction positioning assembly (151 a) disposed at a first side edge of the electrode plate main body and a second X-direction positioning assembly disposed opposite to the first X-direction positioning assembly at a second side edge of the electrode plate main body, wherein the first X-direction positioning assembly (151 a) comprises: a positioning mounting seat (1511), a motor (1510) arranged on one side of the positioning mounting seat (1511), a transmission mechanism (1512) arranged in the positioning mounting seat (1511), and a first X-direction limiting plate (1513) connected with the transmission mechanism (1512); the second X-directional positioning assembly includes: the positioning plate is fixed on the second side edge and used for positioning and limiting the second side edge of the polar plate main body, an L-shaped bending support arm which is arranged on the positioning plate and perpendicular to the plate surface of the limiting support plate (120), and a pressing plate which is arranged on the L-shaped bending support arm and used for pressing the polar plate main body.
6. The clamping jig for large plate assembly of claim 4, wherein the X-direction positioning assembly (151) comprises: a first X-direction positioning assembly (151 a) disposed at a first side edge of the electrode plate main body and a second X-direction positioning assembly disposed opposite to the first X-direction positioning assembly at a second side edge of the electrode plate main body, wherein the first X-direction positioning assembly (151 a) comprises: a wedge-shaped slide block (1515), a hydraulic cylinder (1514), a positioning slide block (1516) and a fixed positioning piece (1517), wherein the wedge-shaped slide block (1515) is connected with a push rod of the hydraulic cylinder (1514), the positioning slide block (1516) is arranged in parallel with the first side edge of the polar plate main body in a sliding way, the wedge-shaped slide block (1515) is used for driving the positioning slide block (1516) to slide through a wedge-shaped surface of the wedge-shaped slide block so as to be positioned to the first side edge of the polar plate main body, and the fixed positioning piece (1517) is used for limiting the position of the wedge-shaped slide block (1515); the second X-directional positioning assembly includes: and the positioning plate is fixed on the second side edge and used for positioning and limiting the second side edge of the polar plate main body.
7. The clamping jig for large-scale plate assembly of claim 4, wherein the Y-directional positioning assembly (152) is disposed at an upper end edge of the plate body, the Y-directional positioning assembly (152) comprising: the Y-direction positioning mounting seat, a Y-direction positioning motor arranged on one side of the Y-direction positioning mounting seat, a Y-direction transmission mechanism arranged in the Y-direction positioning mounting seat and a Y-direction limiting plate connected with the Y-direction transmission mechanism.
8. The clamping jig for large plate assembly of claim 4, wherein the Z-direction positioning assembly comprises: the plate body is characterized by comprising an L-shaped bending support arm which is arranged on the limiting support plate (120) and perpendicular to the plate surface of the limiting support plate (120), and a pressing plate which is arranged on the L-shaped bending support arm and used for pressing the plate body.
CN202321276595.4U 2023-05-24 2023-05-24 Clamping jig for assembling large polar plates Active CN220296242U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202321276595.4U CN220296242U (en) 2023-05-24 2023-05-24 Clamping jig for assembling large polar plates

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202321276595.4U CN220296242U (en) 2023-05-24 2023-05-24 Clamping jig for assembling large polar plates

Publications (1)

Publication Number Publication Date
CN220296242U true CN220296242U (en) 2024-01-05

Family

ID=89372111

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202321276595.4U Active CN220296242U (en) 2023-05-24 2023-05-24 Clamping jig for assembling large polar plates

Country Status (1)

Country Link
CN (1) CN220296242U (en)

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