Hanging type gluing supporting device for amorphous three-dimensional wound core
By designing an amorphous three-dimensional coiled iron core hanging adhesive coating support device, and utilizing the combined structure of suspension rods and supporting components, the problem of damage to the lifting mechanism caused by the weight of a single frame iron core was solved, realizing safe adhesive coating of the iron core and adapting to the needs of iron cores of different sizes.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- HEBEI GAOJING ELECTRICAL EQUIP
- Filing Date
- 2025-05-08
- Publication Date
- 2026-04-24
AI Technical Summary
During the coating process of amorphous three-dimensional coiled iron core, the weight of a single frame iron core is relatively large. Insufficient load-bearing capacity or uneven force distribution of the lifting mechanism may cause deformation or damage to the suspension rod, causing the iron core to fall from a height and resulting in losses.
Design an amorphous three-dimensional wound iron core hanging adhesive support device, including a first vertical frame and a suspension rod fixed on the ground, with the iron core suspended on the suspension rod, and a support component set below for support, and fixedly connected by screws and nuts, to adapt to iron cores of different sizes.
It effectively prevents the lifting mechanism from being damaged due to excessive core weight, avoids the core from falling, broadens the application range of the device, and adapts to the glue coating needs of cores of different sizes.
Smart Images

Figure CN224157198U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of amorphous three-dimensional wound iron core manufacturing technology, specifically to an amorphous three-dimensional wound iron core hanging adhesive support device. Background Technology
[0002] During the coating process of amorphous three-dimensional wound iron cores, it is usually necessary to vertically suspend the single-frame iron core to apply adhesive to the joints of the core laminations or the contact surfaces between the laminations. Since the single-frame iron core is relatively heavy, about 700 kg, if the lifting mechanism is insufficiently supported or the force is uneven, the iron core in the suspended state may crush weak parts, causing deformation or damage to the lifting mechanism, which may then cause the iron core to fall from a height, resulting in unnecessary losses. Utility Model Content
[0003] To address the aforementioned shortcomings in the existing technology, this utility model aims to provide an amorphous three-dimensional wound iron core hanging adhesive support device, which can support the lower part of the iron core during the adhesive application process, preventing damage to the lifting mechanism due to excessive weight of the iron core and avoiding the iron core falling from a height.
[0004] To achieve the above objectives, the technical solution adopted by this utility model is as follows: an amorphous three-dimensional rolled iron core hanging adhesive support device, comprising a first vertical frame fixedly set on the ground, a suspension rod for suspending the iron core, and a support component for supporting the lower part of the iron core. The suspension rod is horizontally fixedly set on the upper part of the first vertical frame, and the support component is fixedly set directly below the suspension rod and abuts against the ground.
[0005] As a limitation of this utility model: one end of the supporting component abuts against the side wall of the first vertical frame, and the parts where they abut against each other are simultaneously detachably connected to a connecting component for connecting the supporting component and the first vertical frame into an integral structure. A first fastening component is simultaneously passed through the first vertical frame and the connecting component, and a second fastening component is simultaneously passed through the supporting component and the connecting component.
[0006] As a limitation of this utility model: the lower part of the first vertical frame is provided with at least two first through holes for the first fastening component to pass through along the vertical direction, and the number of supporting components is at least two, and the height of the upper surface of each supporting component is adapted to the height of different first through holes.
[0007] As a limitation of this utility model: the supporting component includes a horizontal channel steel that is parallel to the ground and opens downward, and a number of vertical channel steels with their bottom ends in contact with the ground are vertically fixed at its lower end.
[0008] As a limitation of this utility model: there are two connecting parts, both of which are channel steel, and the two connecting parts are detachably and symmetrically arranged on both sides of the contact area between the first vertical frame and the supporting part.
[0009] As a limitation of this utility model: both the first fastening component and the second fastening component are screws, and two nuts are fitted side by side and fit together at both ends of the two screws. Washers are fitted on both sides of the two screws symmetrically relative to the first vertical frame. The washers are all located on the side of the nuts closer to the first vertical frame, and the diameter of the washers is larger than the diameter of the first through hole.
[0010] As a limitation of this utility model: a horizontal frame is vertically fixed at the top of the first vertical frame, with the direction opposite to that of the suspension rod; a second vertical frame is vertically fixed at the end of the horizontal frame away from the first vertical frame; a base is fixed at the bottom of the second vertical frame, which is in contact with the ground; and at least one stud fixed to the ground is provided through the edge of the base.
[0011] As a limitation of this utility model: the two vertical frames of the rectangular frame and the horizontal frame located at the top of the two vertical frames are both channel steel.
[0012] By adopting the above technical solution, the beneficial effects achieved by this utility model compared with the prior art are as follows: by suspending the iron core on the suspension rod and placing a supporting component on the ground directly below the suspension rod, the lower part of the iron core can be supported during the glue application process, thus preventing the suspension rod from being damaged due to the excessive weight of the iron core.
[0013] By opening first through holes of different heights on the side wall of the first vertical frame, when the core size becomes smaller, the support component with a higher height can be replaced, and the connecting component can be fixed into the first through hole with a higher height through the first fastening component, thereby changing the distance between the upper surface of the support component and the suspension rod. Therefore, cores of different sizes can be placed between the suspension rod and the support component, which is beneficial for the aforementioned device to adapt to cores of different sizes, broadens the scope of application of the aforementioned device, and facilitates the application of glue to cores of different sizes. Attached Figure Description
[0014] The present invention will now be described in further detail with reference to the accompanying drawings and specific embodiments.
[0015] Figure 1 This is a schematic diagram of the structure of an embodiment of the present utility model;
[0016] Figure 2 This is a structural schematic diagram of the first vertical frame, supporting component, and connecting component according to an embodiment of the present utility model;
[0017] Figure 3 This is a schematic diagram of the structure of this utility model, which has a single frame iron core suspended.
[0018] In the diagram: 1-First vertical frame, 2-Suspension rod, 3-Supporting component, 4-Connecting component, 5-First fastening component, 6-Second fastening component, 7-First through hole, 8-Nut, 9-Washer, 10-Horizontal frame, 11-Second vertical frame, 12-Chassis, 13-Stud. Detailed Implementation
[0019] The preferred embodiments of this utility model are described below with reference to the accompanying drawings. It should be understood that the amorphous three-dimensional wound iron core hanging adhesive support device described herein is a preferred embodiment, and is only used for illustration and explanation of this utility model, and does not constitute a limitation on this utility model.
[0020] The directional terms or positional relationships used in this utility model, such as "up," "down," "left," and "right," are based on the positional relationships in the accompanying drawings of this utility model. They are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or component must have a specific orientation, or that it must be constructed and operated in a specific orientation. Therefore, they should not be construed as limiting the content protected by this utility model.
[0021] An amorphous three-dimensional wound iron core hanging adhesive support device, such as Figures 1 to 3 As shown, the system includes a first vertical frame 1 fixedly mounted on the ground, a suspension rod 2 for suspending the core, and a support component 3 for supporting the lower part of the core. The suspension rod 2 is horizontally fixed above the first vertical frame 1. By suspending the single-frame core on the suspension rod 2, adhesive can be applied to the joints of the core laminations or the contact surfaces between the laminations. The support component 3 is fixedly positioned directly below the suspension rod 2 and abuts against the ground. Placing the bottom of the core suspended on the suspension rod 2 on the upper surface of the support component 3 prevents the suspension rod 2 from being damaged due to excessive weight of the core.
[0022] The supporting component 3 includes a horizontal channel steel parallel to the ground and opening downwards. Several vertical channel steels, each with its bottom end in contact with the ground, are vertically fixed to its lower end to distribute the pressure on the top horizontal channel steel. One end of each horizontal channel steel in the supporting component 3 abuts against the side wall of the first vertical frame 1. The abutting portion is detachably connected to a connecting component 4 for integrating the supporting component 3 and the first vertical frame 1 into a single structure, preventing movement of the supporting component 3 during adhesive application. There are two connecting components 4, both channel steel, detachably and symmetrically arranged on either side of the abutting portion of the first vertical frame 1 and the supporting component 3, facilitating a tighter connection between the supporting component 3 and the first vertical frame 1.
[0023] A first fastening component 5 is simultaneously inserted into the first vertical frame 1 and the connecting component 4, and a second fastening component 6 is simultaneously inserted into the supporting component 3 and the connecting component 4. Both the first fastening component 5 and the second fastening component 6 are screws, with two nuts 8 fitted side-by-side and fitting together at both ends of each screw to lock them together and prevent rotation due to external forces. Tightening the nuts 8 after placing the screw in the appropriate position fixes its position. Circular washers 9 are fitted on both sides of the two screws, symmetrical to the first vertical frame 1, to prevent the nuts 8 from directly contacting the sidewall of the connecting component 4 and causing damage. The washers 9 are located on the side of the nuts 8 closest to the first vertical frame 1, and their diameter is larger than the size of the first through hole 7 to prevent the washers 9 from being squeezed into the first through hole 7 due to excessive external pressure.
[0024] The lower part of the first vertical frame 1 has at least two first through holes 7 spaced vertically for the first fastening member 5 to pass through. There are at least two supporting members 3, and the height of the upper surface of each supporting member 3 is adapted to the height of a different first through hole 7. Because the first through holes 7 of different heights are opened on the side wall of the first vertical frame 1, when the core size decreases, a higher supporting member 3 can be replaced, and the connecting member 4 can be fixed to the higher first through hole 7 by the first fastening member 5, thereby changing the distance between the upper surface of the supporting member 3 and the suspension rod 2. Therefore, cores of different sizes can be placed between the suspension rod 2 and the supporting member 3, which is beneficial for this embodiment to adapt to cores of different sizes and broadens the applicability of this embodiment. Preferably, there are three first through holes 7 on the side wall of the first vertical frame 1, and three supporting members 3 whose heights are adapted to the first through holes 7, which can accommodate three different sizes of cores.
[0025] A horizontal frame 10, oriented in the opposite direction to the suspension rod 2, is vertically fixed at the top of the first vertical frame 1. A second vertical frame 11 is vertically fixed downward at the end of the horizontal frame 10 away from the first vertical frame 1. A base 12, in contact with the ground, is fixed at the bottom of the second vertical frame 11, which increases the contact area with the ground and prevents tipping during use. Both vertical and horizontal frames 10 are made of channel steel, and their U-shaped cross-sections have high bending strength, thus effectively resisting external torsional forces. At least one stud 13, fixed to the ground, is provided through the edge of the base 12. By drilling holes at corresponding positions on the ground and the base 12, passing the stud 13 through the base 12, and tightening the stud 13, the base 12 is fixed to the ground.
[0026] When using this embodiment, a support component 3 of appropriate height is selected according to the size of the single frame core, and the connecting component 4 is fixed at the part where the first vertical frame 1 and the support component 3 abut against each other using the first fastening component 5; then the quenched single frame core is suspended on the suspension rod 2 and the core is coated with glue.
Claims
1. An amorphous three-dimensional wound iron core hanging adhesive support device, characterized in that: It includes a first vertical frame fixedly installed on the ground, a suspension rod for suspending the iron core, and a support component for supporting the lower part of the iron core. The suspension rod is fixedly installed horizontally on the upper part of the first vertical frame, and the support component is fixedly installed directly below the suspension rod and abuts against the ground.
2. The amorphous three-dimensional wound core hanging adhesive support device according to claim 1, characterized in that: One end of the supporting component abuts against the side wall of the first vertical frame. The parts where they abut against each other are detachably connected to a connecting component for connecting the supporting component and the first vertical frame into an integral structure. A first fastening component is passed through both the first vertical frame and the connecting component, and a second fastening component is passed through both the supporting component and the connecting component.
3. The amorphous three-dimensional wound core hanging adhesive support device according to claim 2, characterized in that: The lower part of the first vertical frame is provided with at least two first through holes spaced apart in the vertical direction for the first fastening component to pass through. The number of supporting components is at least two, and the height of the upper surface of each supporting component is adapted to the height of different first through holes.
4. The amorphous three-dimensional wound core hanging adhesive support device according to claim 3, characterized in that: The supporting component includes a horizontal channel steel that is parallel to the ground and opens downwards, and several vertical channel steels whose bottom ends are in contact with the ground are vertically fixed at their lower ends.
5. The amorphous three-dimensional wound iron core hanging adhesive support device according to claim 4, characterized in that: There are two connecting parts, both of which are channel steel. The two connecting parts are detachably and symmetrically arranged on both sides of the contact area between the first vertical frame and the supporting part.
6. The amorphous three-dimensional wound iron core hanging adhesive support device according to claim 5, characterized in that: Both the first and second fastening components are screws. Two nuts are fitted side by side and fit together at both ends of the two screws. Washers are fitted on both sides of the two screws symmetrically relative to the first vertical frame. The washers are located on the side of the nuts closer to the first vertical frame, and the diameter of the washers is larger than the diameter of the first through hole.
7. The amorphous three-dimensional wound core hanging adhesive support device according to any one of claims 1 to 6, characterized in that: A horizontal frame is fixedly installed at the top of the first vertical frame, with its direction opposite to that of the suspension rod. A second vertical frame is fixedly installed at the end of the horizontal frame away from the first vertical frame. A base is fixedly installed at the bottom of the second vertical frame, which is in contact with the ground. At least one stud fixed to the ground is installed through the edge of the base.
8. The amorphous three-dimensional wound iron core hanging adhesive support device according to claim 7, characterized in that: The two vertical borders of the rectangular frame and the horizontal border located at the top of the two vertical borders are all channel steel.