一种配电柜组装台

By designing an adjustable height and rotating power distribution cabinet assembly table, the problem of existing tabletops being unable to adjust height and rotate was solved, improving worker operating comfort and assembly efficiency.

CN224520476UActive Publication Date: 2026-07-17SHANDONG PROVINCE JIDIANDELIXI ELECTRIC CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHANDONG PROVINCE JIDIANDELIXI ELECTRIC CO LTD
Filing Date
2025-07-17
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

The existing power distribution cabinet assembly platform has simple functions and cannot adjust the height or rotate, which requires workers to bend over to operate, resulting in high labor intensity and low efficiency.

Method used

A power distribution cabinet assembly platform was designed, comprising a lifting platform, locking components and a hydraulic cylinder unit. The platform can adjust the height and rotation angle, and can achieve lifting and rotation through a track structure. It is equipped with a locking component to fix the power distribution cabinet.

Benefits of technology

It improves worker comfort, reduces labor intensity, increases assembly efficiency, and reduces the need for multiple people to work together.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN224520476U_ABST
    Figure CN224520476U_ABST
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Abstract

本实用新型涉及一种配电柜组装台,包括设在基座上的工作台。在工作台上设有多个卡定组件。还包括升降台、锁定组件和升降驱动单元。升降台与基座之间通过沿竖直方向布置的轨道结构匹配,使升降台能相对基座沿竖直方向移动。工作台枢轴地配置在升降台的上,使工作台能相对升降台绕竖直轴线作旋转动作。锁定组件固定设在基座上且与升降台匹配,能选择地使升降台与基座在固定匹配的状态和能相对移动的匹配状态之间切换。升降驱动单元设在基座上且与升降台匹配,能驱使升降台沿竖直方向移动。本实用新型能够设定工作台的高度,以及能使工作台载着柜体转动来调节柜体的朝向,有助于改善配电柜的装配作业境况,提高作业效率。
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Claims

1. A switchgear assembling platform, comprising a base (10) and a workbench (30) arranged on the base (10); a plurality of clamping assemblies are arranged on the workbench (30); characterized in that: It also includes a lifting platform (20), a locking assembly (40), and a lifting drive unit; The lifting platform (20) and the base (10) are matched by a track structure arranged in the vertical direction, so that the lifting platform (20) can move in the vertical direction relative to the base (10); the worktable (30) is pivotally arranged above the lifting platform (20) and can rotate around the vertical axis relative to the lifting platform (20); the locking component (40) is fixed on the base (10) and matched with the lifting platform (20), and can selectively switch the lifting platform (20) and the base (10) between a fixed matching state and a matching state in which they can move relative to each other; the lifting drive unit is located on the base (10) and matched with the lifting platform (20), and can drive the lifting platform (20) to move in the vertical direction.

2. The switchgear assembly platform of claim 1, wherein: The lifting drive unit is a hydraulic cylinder unit (50), and the hydraulic cylinder body in the hydraulic cylinder unit (50) is arranged in the vertical direction and the upper end of the cylinder rod is fixedly connected to the lifting platform (20).

3. The switchgear assembly platform of claim 1, wherein: On the lower end face of the worktable (30), multiple sets of support legs (31) are arranged alternately around the circumference, and each set contains multiple support legs (31); the support legs (31) are arranged in the vertical direction; an annular groove (23) that matches the support legs (31) is formed on the upper end face of the lifting platform (20), and the lower part of the support legs (31) extends into the annular groove (23) and can move relative to the annular groove (23).

4. The switchgear assembly platform of claim 1, wherein: Each locking component includes a locking slider (60); the vertical arm (61) of the locking slider (60) extends upward relative to the upper end face of the worktable (30), and the horizontal arm (62) is opposite to the upper end face of the worktable (30); a slot is formed on the horizontal arm (62); On the worktable (30), a linear slot (32) is formed at the position of the locking slider (60), and a bolt assembly (33) is arranged at the linear slot (32); the linear slot (32) corresponds to and matches the slot, and the length of the linear slot (32) is greater than the length of the slot; the bolt body in the bolt assembly (33) passes upward through the linear slot (32) and the slot and is then fitted with a nut.

5. The switchgear assembly platform of claim 1, wherein: On the left and right sides of the base (10), there are upwardly extending vertical plates (11); a groove (111) is formed on the inner side of the vertical plate (11), an annular flange (112) is formed on the outer side, and a connecting hole is provided between the groove (111) and the annular flange (112). On the left and right sides of the lifting platform (20), downward extending side plates (22) are formed respectively; on the outer side of the side plate (22), a vertically extending outer straight groove (221) is formed; the inner side of the upright plate (11) can be inserted into the outer straight groove (221); on the bottom surface of the outer straight groove (221), a plurality of horizontally extending and vertically alternating edge plates (223) are formed. The locking assembly (40) includes a retaining plate (41), a spring (42), and a nut (43) that matches the annular flange (112) via a threaded structure. The card plate (41) matches the groove (111) and can slide left and right relative to the groove (111), so that the outer side of the card plate (41) can be selectively retracted into the groove (111) and extended out of the groove (111); multiple lateral plates (4111) are formed on the outer side of the card plate (41), and when the outer side of the card plate (41) extends out of the groove (111), the lateral plates (4111) can be inserted between two adjacent lateral plates (223); A column block (412) on the card plate (41) extends into the annular flange (112) after passing through the connecting hole; a radial flange (4121) is formed at the free end of the column block (412); a spring (42) is sleeved on the column block (412), and its two ends are in contact with the bottom surface of the annular flange (112) and the radial flange (4121) respectively; An axially extending protrusion (431) is formed on the inner bottom surface of the nut (43), so that the protrusion (431) and the column block (412) are in relative contact; turning the nut (43) can adjust the relative position between the outer side of the card plate (41) and the groove (111).

6. A power distribution cabinet assembly platform according to claim 5, characterized in that: A vertically extending inner straight groove (222) is formed on the bottom surface of the outer straight groove (221), and the width of the inner straight groove (222) is smaller than the width of the outer straight groove (221); multiple edge plates (223) are distributed on the bottom surface of the inner straight groove (222) and the lateral extension length of the edge plates (223) is not greater than the groove depth of the inner straight groove (222).

7. An electrical panel assembly stand as defined in claim 5, wherein: The free end face of the protruding post (431) is formed as an outwardly protruding spherical surface; correspondingly, a spherical groove is formed on the free end face of the column block (412); so that the spherical surface of the protruding post (431) and the spherical groove of the column block (412) come into contact and match.

8. An electrical panel assembly stand as defined in claim 5, wherein: The main body of the column block (412) is a light cylinder surface, the inner wall of the connecting hole is a light hole surface, and the outer diameter of the main body of the column block (412) is consistent with the inner diameter of the connecting hole.

9. An electrical panel assembly stand as defined in claim 5, wherein: The vertical distance between two adjacent edge plates (223) is greater than the thickness of edge plate (4111).

10. The switchgear assembly platform of claim 1, wherein: The difference between the vertical spacing between two adjacent edge plates (223) and the thickness of edge plate (4111) shall not exceed 3 mm.