A kind of steel wire mesh processing is with baking device

CN224778502UActive Publication Date: 2026-09-22YUNWEI INTELLIGENT TECHNOLOGY (TIANJIN) CO LTD
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Patent Information

Application Number
CN202522050942.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-24
Publication Date
2026-09-22
Estimated Expiration
2035-09-24

AI Technical Summary

Technical Problem

现有的烘烤箱内部空间较大,不能够实际所要烘烤的钢丝网数量进行内部空间的调节,使得在对少部分钢丝网进行烘烤处理时,会造成较大的热量浪费,烘烤效率较慢

Benefits of technology

1、本实用新型通过多个隔断板将箱体的内部腔室分隔成多个单元腔室,通过隔断门框和第一门的设置,可将由多个隔断板分隔成多个单元腔室,再次进行分隔成更小的空间,使得工作人员可根据所要烘烤的钢丝网数量进行灵活的调节,根据实际需要烘烤钢丝网的数量选择对应不锈钢加热管工作,降低能源的浪费,保证对钢丝网烘烤效率。

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Abstract

The utility model discloses a steel wire mesh processing technology field's a kind of baking device for steel wire mesh processing, including box, the inside wall of box is equipped with multiple first drying surface, further including multiple partition plates fixed in the inner cavity of box, multiple the partition plate is vertically arranged, and the both sides of the partition plate are equipped with second drying surface;The inside chamber of box is divided into multiple unit chambers by multiple partition plates, by the setting of partition door frame and first door, can be separated into multiple unit chambers by multiple partition plates, again, smaller space is separated, so that staff can flexibly adjust according to the steel wire mesh quantity to be baked, according to actual need, the quantity of steel wire mesh baked selects corresponding stainless steel heating pipe work, reduce the waste of energy, guarantee the steel wire mesh baking efficiency.
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Description

Technical Field

[0001] This utility model relates to the technical field of wire mesh processing, and in particular to a baking device for wire mesh processing. Background Technology

[0002] Wire mesh is a general term for mesh materials, which are woven or welded from materials such as low-carbon steel wire, medium-carbon steel wire, high-carbon steel wire, and stainless steel wire. Production processes include: ordinary weaving, embossed weaving, and spot welding. It primarily uses steel wire as raw material, processed into a mesh shape using specialized equipment, hence the name wire mesh.

[0003] Some wire mesh sheets require painting during production, and the painted surface needs to be baked after painting. Existing baking ovens have large internal spaces, making it impossible to adjust the internal space according to the actual number of wire mesh sheets to be baked. This results in significant heat waste and slow baking efficiency when baking only a small number of wire mesh sheets. Utility Model Content

[0004] The purpose of this section is to outline some aspects of embodiments of the present invention and to briefly describe some preferred embodiments. Simplifications or omissions may be made in this section, as well as in the abstract and title of the present invention, to avoid obscuring the purpose of these documents, and such simplifications or omissions should not be construed as limiting the scope of the present invention.

[0005] Therefore, the purpose of this utility model is to provide a baking device for steel wire mesh processing. The operator can flexibly adjust the space inside the box according to the number of steel wire mesh to be baked, and select the corresponding stainless steel heating tube to work according to the actual number of steel wire mesh to be baked, thereby reducing energy waste and ensuring the baking efficiency of steel wire mesh.

[0006] To solve the above-mentioned technical problems, this utility model provides a baking device for steel wire mesh processing, which adopts the following technical solution: it includes a box body, the inner side wall of the box body is equipped with a plurality of first drying surfaces, and it also includes a plurality of partition plates fixed in the inner cavity of the box body, the plurality of partition plates are arranged vertically, and a second drying surface is installed on both sides of the partition plates; The partition plate includes an outer frame, and a heat insulation plate is vertically fixed inside the outer frame. The heat insulation plate has a second drying surface on both sides. The first drying surface and the second drying surface both include multiple modularly arranged stainless steel heating tubes, and the stainless steel heating tubes are covered with a stainless steel heat dissipation plate.

[0007] Optionally, a partition door frame is fixed between adjacent partition panels and between the partition panels and the inner wall of the box, and a first door is hinged to the partition door frame via a hinge.

[0008] Optionally, a floor track is fixed to the bottom of the inner cavity of the box, one end of which is fixed to the top of the partition door frame, and the other end of which extends to the outside of the box.

[0009] Optionally, both ends of the housing are hinged to a second door.

[0010] Optionally, it also includes a negative pressure pipe fixed to the top of the box, and an air suction hood is fixed to the top of the box above the second door. One end of the negative pressure pipe is connected to the air suction hood, and the other end of the negative pressure pipe is connected to the dust removal device through a connecting pipe.

[0011] In summary, this utility model has at least one of the following beneficial effects: 1. This utility model divides the internal chamber of the box into multiple unit chambers by using multiple partition plates. Through the setting of the partition door frame and the first door, the multiple unit chambers can be further divided into smaller spaces, allowing the staff to flexibly adjust according to the number of wire meshes to be baked. The corresponding stainless steel heating tube can be selected according to the actual number of wire meshes to be baked, reducing energy waste and ensuring the baking efficiency of the wire meshes.

[0012] 2. This utility model features an air suction hood above the second door. When the second door needs to be opened after baking, the dust removal device is activated. The gas inside the chamber is absorbed by the air suction hood and then guided to the dust removal device through the negative pressure pipe and connecting pipe for purification and discharge. Attached Figure Description

[0013] To more clearly illustrate the technical solutions of the embodiments of this utility model, the accompanying drawings used in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0014] Figure 1 This is a schematic diagram of the structure of this utility model; Figure 2 This utility model Figure 1 A schematic diagram of the left-side view structure; Figure 3 This utility model Figure 1 Internal structure diagram; Figure 4 This is a schematic diagram of the partition plate structure of this utility model.

[0015] Explanation of reference numerals in the attached drawings: 1. Chamber; 2. First drying surface; 3. Partition plate; 4. Second drying surface; 5. Outer frame; 6. Heat insulation plate; 7. Stainless steel heating tube; 8. Stainless steel heat dissipation plate; 9. Partition door frame; 10. Hinge; 11. First door; 12. Floor track; 13. Second door; 14. Negative pressure pipe; 15. Suction hood; 16. Connecting pipe; 17. Dust removal device. Detailed Implementation

[0016] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. All other embodiments obtained by those skilled in the art based on the embodiments of the present utility model without creative effort are within the scope of protection of the present utility model.

[0017] In the description of this utility model, it should be noted that the terms "upper," "lower," "inner," "outer," "top / bottom," etc., indicating the orientation or positional relationship are based on the orientation or positional relationship shown in the accompanying drawings, and are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this utility model. Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance.

[0018] In the description of this utility model, it should be noted that, unless otherwise explicitly specified and limited, the terms "installed," "equipped with," "sleeved / connected," "connected," etc., should be interpreted broadly. For example, "connection" can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection or an indirect connection through an intermediate medium; it can be a connection within two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model based on the specific circumstances.

[0019] Example 1 Reference Figures 1-4 This utility model discloses a baking device for processing steel wire mesh, including a box body 1, with multiple first drying surfaces 2 installed on the inner side wall of the box body 1, and multiple partition plates 3 fixed to the inner cavity of the box body 1. The multiple partition plates 3 are arranged vertically, and a second drying surface 4 is installed on both sides of the partition plates 3.

[0020] By adopting the above structure, the internal chamber of the box 1 is divided into multiple unit chambers by multiple partition plates 3. This allows the baking process of a small amount of wire mesh to be carried out by only activating the first drying surface 2 and the second drying surface 4 located in the unit chamber. It is not necessary to heat the entire internal cavity of the box 1. Only a part of the unit chamber needs to be heated locally, which ensures the baking efficiency of the wire mesh without causing excessive heat waste.

[0021] In detail, in this embodiment, the partition plate 3 includes an outer frame 5, and a heat insulation plate 6 is vertically fixed inside the outer frame 5. The heat insulation plate 6 has a second drying surface 4 on both sides. The heat insulation plate 6 is made of heat insulation material, such as glass wool board. By setting the heat insulation plate 6, when the second drying surface 4 on one side is activated, the heat loss efficiency in the unit cavity with the second drying surface 4 is reduced.

[0022] The first drying surface 2 and the second drying surface 4 both include multiple modularly arranged stainless steel heating tubes 7. The stainless steel heating tubes 7 are covered with stainless steel heat dissipation plates 8. The stainless steel heating tubes 7 can quickly heat the unit cavity and are modularly assembled in the unit cavity. The stainless steel heat dissipation plates 8 can evenly distribute the heat generated by the stainless steel heating tubes 7 into the unit cavity, avoiding the problem of excessive local temperature.

[0023] In detail, in this embodiment, the two ends of the box body 1 are both hinged with a second door 13 via a hinge 10, which facilitates the quick entry and exit of materials, reduces production interruption time, and allows the front and rear doors to be opened simultaneously, thereby improving efficiency.

[0024] Example 2 Reference Figure 4 Based on the same concept as in Embodiment 1, this wire mesh processing baking device further includes adjacent partition plates 3 and a partition door frame 9 fixed between the partition plates 3 and the inner wall of the housing 1. A first door 11 is hinged to the partition door frame 9 via a hinge 10. Through the partition door frame 9 and the first door 11, multiple partition plates 3 can be divided into multiple unit chambers, further subdivided into smaller spaces. This allows operators to flexibly adjust the space according to the number of wire meshes to be baked. The stainless steel heating tubes 7 in each space are independently controlled, and the corresponding stainless steel heating tube 7 is selected to operate based on the actual number of wire meshes to be baked, reducing energy waste. When all the space inside the housing 1 is utilized, all the stainless steel heating tubes 7 on the inner wall of the housing 1 and the heat insulation plate 6 can be opened, resulting in high baking efficiency.

[0025] In detail, in this embodiment, a ground rail 12 is fixed at the bottom of the inner cavity of the box 1. One end of the ground rail 12 is fixed to the top of the partition door frame 9, and the other end of the ground rail 12 extends to the outside of the box 1. The ground rail 12 facilitates the wire mesh to be guided into the inside of the box 1 through the wire mesh frame and the external docking equipment.

[0026] Example 3 Reference Figure 1 , Figure 2 and Figure 4 Based on the same concept as in Embodiment 1 above, this wire mesh processing baking device also includes a negative pressure pipe 14 fixed to the top of the box 1. An air suction hood 15 is fixed above the second door 13 on the top of the box 1. One end of the negative pressure pipe 14 is connected to the air suction hood 15, and the other end of the negative pressure pipe 14 is connected to the dust removal device 17 through a connecting pipe 16. The dust removal device 17 adopts an existing product, which will not be described in detail here. When the second door 13 needs to be opened after baking, the dust removal device 17 is activated. The gas in the box 1 will be absorbed by the air suction hood 15, and then guided to the dust removal device 17 through the negative pressure pipe 14 and the connecting pipe 16 to be purified and discharged.

[0027] Working principle: According to the wire mesh to be baked, the staff can close or open the first door 11, move the wire mesh frame that hangs the wire mesh to the corresponding space, and then turn on the stainless steel heating tubes 7 of the first drying surface 2 and the second drying surface 4 in the corresponding space. It is not necessary to heat the entire inner cavity of the box 1, but only to heat a part of the unit cavity locally, so as to ensure the baking efficiency of the wire mesh and avoid causing too much heat waste.

[0028] When the second door 13 needs to be opened after baking, the dust removal device 17 is activated. The gas inside the chamber 1 is absorbed by the suction hood 15, and then guided to the dust removal device 17 for purification and discharge through the negative pressure pipe 14 and connecting pipe 16. The above are all preferred embodiments of this utility model, and are not intended to limit the scope of protection of this utility model. Therefore, all equivalent changes made to the structure, shape, and principle of this utility model should be covered within the scope of protection of this utility model.

Claims

1. A baking device for processing wire mesh, comprising a housing (1), wherein a plurality of first drying surfaces (2) are installed on the inner sidewall of the housing (1), characterized in that: It also includes multiple partition plates (3) fixed to the inner cavity of the box (1), the multiple partition plates (3) are arranged vertically, and a second drying surface (4) is installed on both sides of the partition plate (3); The partition plate (3) includes an outer frame (5), and a heat insulation plate (6) is vertically fixed inside the outer frame (5). The heat insulation plate (6) has a second drying surface (4) on both sides. The first drying surface (2) and the second drying surface (4) both include multiple modularly arranged stainless steel heating tubes (7), and the stainless steel heating tubes (7) are covered with a stainless steel heat dissipation plate (8).

2. The baking device for processing steel wire mesh according to claim 1, characterized in that: A partition door frame (9) is fixed between the adjacent partition plate (3) and the inner wall of the partition plate (3) and the box (1), and a first door (11) is hinged to the partition door frame (9) by a hinge (10).

3. The baking device for processing steel wire mesh according to claim 2, characterized in that: The bottom of the inner cavity of the box (1) is fixed with a ground rail (12), one end of which is fixed to the top of the partition door frame (9), and the other end of which extends through to the outside of the box (1).

4. A baking apparatus for processing steel wire mesh according to any one of claims 1-3, characterized in that: The two ends of the box (1) are hinged to a second door (13) by a hinge (10).

5. The baking device for processing steel wire mesh according to claim 4, characterized in that: It also includes a negative pressure pipe (14) fixed to the top of the box (1). The top of the box (1) is fixed above the second door (13) with an air suction hood (15). One end of the negative pressure pipe (14) is connected to the air suction hood (15), and the other end of the negative pressure pipe (14) is connected to the dust removal device (17) through a connecting pipe (16).