A material supporting device applied to a bell-type furnace
Patent Information
- Application Number
- CN202521839835.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-28
- Publication Date
- 2026-09-01
- Estimated Expiration
- 2035-08-28
AI Technical Summary
[0004]基于此,本实用新型的目的是提供一种应用于罩式炉的物料支撑装置,以解决背景技术中现有将磁芯平铺在炉体的加热面部上,存在炉内空间利用率低,难以对更多数量的磁芯同时进行加热的技术问题
在本实用新型实施例提供的一种应用于罩式炉的物料支撑装置中,包括支撑柱,多个支撑架以及具有通孔的多个料盒,使得在对多个磁芯进行热处理时,利用本申请中的多个料盒可对多个磁芯进行收集,并将装有磁芯的料盒放置在搁置空间内,使得在一个物料支撑装置上能够放置多个磁芯,同时结合搁置空间的横截面积大于单一料盒横截面积的两倍,使得每一搁置空间内能够同时容纳至少两个料盒,实现对搁置空间的利用率最大化,最后再将物料支撑装置搁置在罩式炉中,实现对多个磁芯同时进行热处理,解决现有技术中炉内空间利用率低,难以对更多磁芯同时进行加热的技术问题。
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Figure CN224704645U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of bell-type furnace technology, and in particular to a material support device for bell-type furnaces. Background Technology
[0002] Magnetic cores require heat treatment during processing. The current method for heat treatment of magnetic cores is to lay multiple magnetic cores flat in a box furnace or tunnel furnace and use the heating power of the furnace itself to heat treat the multiple magnetic cores.
[0003] However, since existing box furnaces or tunnel furnaces only have one heating surface, the magnetic cores are laid flat inside the furnace, which means that only a very small number of magnetic cores can be heat-treated. This results in low utilization of the furnace space and makes it difficult to heat a larger number of magnetic cores at the same time. Utility Model Content
[0004] Based on this, the purpose of this utility model is to provide a material support device for bell-type furnaces, so as to solve the technical problems in the prior art where the magnetic cores are laid flat on the heating surface of the furnace body, resulting in low utilization of the furnace space and difficulty in heating a large number of magnetic cores at the same time.
[0005] The present invention provides a material support device for use in a bell-type furnace, the material support device being detachably installed inside the bell-type furnace; The material support device includes a support column, multiple support frames, and multiple material boxes with through holes; The plurality of support frames are spaced apart along the length of the support column to form a resting space for accommodating the material box between each pair of adjacent support frames; The cross-sectional area of the shelf space is greater than twice the cross-sectional area of a single material box, so that the shelf space can accommodate at least two material boxes at the same time.
[0006] Each of the aforementioned boxes is used to store multiple target magnetic cores.
[0007] Furthermore, the material support device also includes at least one connecting column, the different parts of which are used to connect the opposite edges of each support frame.
[0008] Furthermore, the support frame includes at least two cross-connected support beams and a plurality of annular frames spaced apart along the length of the support beams; The diameter of each of the ring frames is different.
[0009] Furthermore, the support frame includes a first support beam, a second support beam, and a third support beam; The first support beam, the second support beam, and the third support beam are interconnected.
[0010] Furthermore, the material support device also includes a hook, which is connected to the support column.
[0011] Furthermore, the support column is connected to the center of the support frame.
[0012] Furthermore, the plurality of through holes are spaced apart along the transverse and longitudinal directions of the material box.
[0013] Compared with the prior art, the material support device for a bell-type furnace shown in this utility model has the following advantages: The material support device for a bell-type furnace provided in this embodiment includes a support column, multiple support frames, and multiple material boxes with through holes. This allows for the collection of multiple magnetic cores using the multiple material boxes during heat treatment, and the material boxes containing the magnetic cores are placed in a storage space. This enables multiple magnetic cores to be placed on a single material support device. Furthermore, the cross-sectional area of the storage space is more than twice the cross-sectional area of a single material box, allowing each storage space to accommodate at least two material boxes simultaneously, maximizing the utilization of the storage space. Finally, the material support device is placed in the bell-type furnace, enabling simultaneous heat treatment of multiple magnetic cores. This solves the technical problem of low furnace space utilization and difficulty in simultaneously heating more magnetic cores in the prior art. Attached Figure Description
[0014] Figure 1 This is a perspective view of a material support device applied to a bell-type furnace according to an embodiment of the present invention; Figure 2 This is an exploded view of a material support device applied to a bell-type furnace according to an embodiment of the present invention; Figure 3 This is a top view of the support frame in one embodiment of the present invention; Figure 4 This is a side view of the support frame in one embodiment of the present invention. Attached image description: 100, Support column; 200, Support frame; 210, First support beam; 220, Second support beam; 230, Third support beam; 240, Circular frame; 300, Material box; 310, Through hole; 400, Shelving space; 500, Connecting column; 600, Hook.
[0016] The following detailed description, in conjunction with the accompanying drawings, will further illustrate this utility model. Detailed Implementation
[0017] To facilitate understanding of this utility model, a more complete description will be given below with reference to the accompanying drawings. Several embodiments of this utility model are shown in the drawings. However, this utility model can be implemented in many different forms and is not limited to the embodiments described herein. Rather, these embodiments are provided so that the disclosure of this utility model will be more thorough and complete.
[0018] It should be noted that when a component is said to be "fixed to" another component, it can be directly on the other component or there may be an intervening component. When a component is said to be "connected to" another component, it can be directly connected to the other component or there may be an intervening component. The terms "vertical," "horizontal," "left," "right," and similar expressions used in this document are for illustrative purposes only.
[0019] Unless otherwise defined, 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 invention pertains. The terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting of the invention. The term "and / or" as used herein includes any and all combinations of one or more of the associated listed items.
[0020] Example Please see Figure 1 and Figure 4 As shown, this is a material support device applied to a bell-type furnace in an embodiment of the present invention. The material support device is detachably installed inside the bell-type furnace. It should be noted that the bell-type furnace is a heating device and belongs to the conventional prior art in this field. The bell-type furnace has a heating space and a fan. Specifically, the heat energy in the bell-type furnace can be circulated in the heating space through the fan.
[0021] To enable simultaneous heat treatment of multiple batches of magnetic cores, in this example, the material support device includes a support column 100, multiple support frames 200, and multiple material boxes 300 with through holes 310. Multiple support frames 200 are spaced apart along the length of the support column 100 so that a resting space 400 for accommodating the material box 300 is formed between each pair of adjacent support frames 200. The cross-sectional area of the shelving space 400 is more than twice the cross-sectional area of a single material box 300, so that the shelving space 400 can accommodate at least two material boxes 300 at the same time.
[0022] Each 300-piece box is used to store multiple target magnetic cores.
[0023] In other words, when heat-treating multiple magnetic cores, the multiple material boxes 300 in this example can be used to collect multiple magnetic cores, and the material boxes 300 containing the magnetic cores are placed in the resting space 400, so that multiple magnetic cores can be placed on a material support device. At the same time, the cross-sectional area of the resting space 400 is more than twice the cross-sectional area of a single material box 300, so that each resting space 400 can simultaneously accommodate at least two material boxes 300, thereby maximizing the utilization rate of the resting space 400. Finally, the material support device is placed in the bell furnace to achieve simultaneous heat treatment of multiple magnetic cores, solving the technical problem of low furnace space utilization and difficulty in heating more magnetic cores at the same time in the prior art.
[0024] For a better understanding of this case, please refer to [link / reference]. Figure 2 As shown, the material box 300 can adopt a fan-shaped structure, and the shelving space 400 can adopt a ring-shaped structure. The material boxes 300 with the fan-shaped structure can be arranged in a ring in the shelving space 400 to ensure the utilization rate of the shelving space 400.
[0025] In some preferred embodiments, the support frame 200 includes at least two cross-connected support beams and a plurality of annular frames 240 spaced apart along the length of the support beams. Each annular frame 240 has a different diameter. Specifically, the support frame 200 includes a first support beam 210, a second support beam 220, and a third support beam 230. The first support beam 210, the second support beam 220, and the third support beam 230 are cross-connected to each other. This cross-connection allows the support frame 200 to provide large-area support for the bottom of the material box 300, ensuring the stability of the material box 300 placed in the placement space 400. At the same time, the arrangement of the annular frames 240 allows each support frame 200 to form a corresponding hollow area. That is, when the bell furnace heats the magnetic core, the hot air will pass through the through holes 310 on the material and the hollow areas of the support frame 200, so that the hot air will act on each magnetic core, ensuring the heat treatment effect of each magnetic core.
[0026] In addition, to further enhance the mutual stability of the multiple support frames 200, in some other preferred embodiments, the material support device also includes at least one connecting column 500, with different portions of the connecting column 500 used to connect the opposite edges of each support frame 200. See details below. Figure 1 As shown, there can be four connecting columns 500 arranged in a circular array. Multiple support frames 200 can be integrated using the connecting columns 500.
[0027] It should be noted that the support frame 200, support column 100 and connecting column 500 can be connected to each other by welding.
[0028] In addition, the material support device also includes a hook 600, which is connected to the support column 100. The hook 600 allows the entire material support device to be installed in the bell furnace by means of suspension.
[0029] Furthermore, the support column 100 is centrally connected to the support frame 200, and multiple through holes 310 are spaced apart along the transverse and longitudinal directions of the material box 300.
[0030] In summary, the material support device for a bell-type furnace provided in this embodiment includes a support column 100, multiple support frames 200, and multiple material boxes 300 with through holes 310. This allows for the collection of multiple magnetic cores using the multiple material boxes 300 during heat treatment, and the material boxes 300 containing the magnetic cores are placed in a shelf space 400. This enables multiple magnetic cores to be placed on a single material support device. Furthermore, the cross-sectional area of the shelf space 400 is more than twice the cross-sectional area of a single material box 300, allowing each shelf space 400 to simultaneously accommodate at least two material boxes 300, maximizing the utilization of the shelf space 400. Finally, the material support device is placed in the bell-type furnace, enabling simultaneous heat treatment of multiple magnetic cores. This solves the technical problem of low furnace space utilization and difficulty in simultaneously heating more magnetic cores in the prior art.
[0031] In the description of this specification, the references to terms such as "one embodiment," "some embodiments," "example," "specific example," or "some examples," etc., indicate that a specific feature, structure, material, or characteristic described in connection with that embodiment or example is included in at least one embodiment or example of the present invention. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples.
[0032] The above embodiments only illustrate several implementation methods of this utility model, and their descriptions are relatively specific and detailed, but they should not be construed as limiting the scope of this utility model patent. It should be noted that those skilled in the art can make various modifications and improvements without departing from the concept of this utility model, and these all fall within the protection scope of this utility model. Therefore, the protection scope of this utility model patent should be determined by the appended claims.
Claims
1. A material support device for a bell-type furnace, characterized in that, The material support device is detachably installed inside the bell-type furnace; The material support device includes a support column, multiple support frames, and multiple material boxes with through holes; The plurality of support frames are spaced apart along the length of the support column to form a resting space for accommodating the material box between each pair of adjacent support frames; The cross-sectional area of the storage space is greater than twice the cross-sectional area of a single material box, so that the storage space can accommodate at least two material boxes simultaneously. Each of the aforementioned boxes is used to store multiple target magnetic cores.
2. The material support device for a bell-type furnace according to claim 1, characterized in that, The material support device further includes at least one connecting column, the different parts of which are used to connect the opposite edges of each of the support frames.
3. The material support device for a bell-type furnace according to claim 1, characterized in that, The support frame includes at least two cross-connected support beams and a plurality of annular frames spaced apart along the length of the support beams. The diameter of each of the ring frames is different.
4. The material support device for a bell-type furnace according to claim 3, characterized in that, The support frame includes a first support beam, a second support beam, and a third support beam; The first support beam, the second support beam, and the third support beam are interconnected.
5. The material support device for a bell-type furnace according to claim 1, characterized in that, The material support device also includes a hook, which is connected to the support column.
6. The material support device for a bell-type furnace according to claim 1, characterized in that, The support column is connected to the center of the support frame.
7. The material support device for a bell-type furnace according to claim 1, characterized in that, The plurality of through holes are spaced apart along the transverse and longitudinal directions of the material box.