Workbench of electric soldering iron

By integrating soldering and cleaning functions into the soldering iron workbench, and utilizing the design of the insertion channel and sludge collection box, the problems of large space occupation and inconvenient cleaning of soldering equipment are solved, thereby improving the utilization rate of the soldering workspace and the cleaning effect.

CN223748721UActive Publication Date: 2026-01-02POTENTIAL INNOVATION TECH CO LTD
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Patent Information

Application Number
CN202520169966.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-24
Publication Date
2026-01-02
Estimated Expiration
2035-01-24

AI Technical Summary

Technical Problem

Welding equipment occupies too much space, and cleaning devices are inconvenient, which affects the utilization rate of welding workspace and the cleaning effect.

Method used

The soldering and cleaning functions are integrated into one workbench. The first cavity is used to control the temperature of the soldering iron, and the second cavity is used to clean the brush head. The soldering iron tip is cleaned by inserting a channel, and the sludge collection box is convenient for cleaning waste.

Benefits of technology

Reduce the space occupied by welding equipment, improve the utilization rate of welding workspace, and enhance the convenience and cleaning effect of cleaning waste.

✦ Generated by Eureka AI based on patent content.

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Abstract

The workbench is internally provided with a first containing cavity and a second containing cavity, and the first containing cavity is internally provided with a temperature control circuit board used for controlling the temperature of the electric soldering iron and a brush head driving circuit board used for driving a cleaning brush head to rotate. The second containing cavity and the first containing cavity at least reuse part of the shell of the workbench and are separated from the first containing cavity through a side plate, the cleaning brush head is arranged in the second containing cavity and electrically connected with the brush head driving circuit board, and an insertion channel is formed in the top of the second containing cavity. The electric soldering iron can make contact with the rotating cleaning brush head through the inserting channel for cleaning, the workbench further comprises a dirt collecting box detachably connected with a shell of the workbench, the dirt collecting box is horizontally arranged on one side of the cleaning brush head, and at least part of the dirt collecting box is located at the bottom of the second containing cavity.
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Description

TECHNICAL FIELD

[0001] The present application relates to the field of welding devices, in particular to a workbench of an electric soldering iron. BACKGROUND

[0002] In the process of manual welding using a soldering iron, the soldering iron tip will begin to rapidly oxidize when heated to a certain extent, and the residues generated after the combustion of the flux may also cover the soldering iron tip, which not only reduces the heat transfer capacity of the soldering iron tip and affects the welding effect of the soldering iron tip, but also reduces the service life of the soldering iron tip. Therefore, the soldering iron tip needs to be cleaned in time during welding to remove the oxidation layer and other residues on the soldering iron tip. At present, a separate soldering iron tip cleaning device is usually configured outside the welding table of the electric soldering iron, that is, multiple devices such as a welding table, a soldering iron tip cleaner, and even a cleaning sponge need to be configured in the welding work space, and the welding equipment occupies too much space in the welding work space; and the cleaning device usually cleans by rubbing the soldering iron tip, and the waste generated by cleaning often adheres to the cleaning device, which is not easy to clean, and may affect the cleaning effect after a long time of use.

[0003] Therefore, how to reduce the occupied space of the welding equipment, improve the space utilization rate of the welding work space, improve the cleaning convenience, and further improve the cleaning effect has become a technical problem to be solved. SUMMARY

[0004] Based on the above status, the main purpose of the present application is to provide a workbench of an electric soldering iron to reduce the occupied space of the welding equipment, improve the space utilization rate of the welding work space, improve the cleaning convenience, and further improve the cleaning effect.

[0005] To achieve the above purpose, the technical scheme adopted by the present application is as follows:

[0006] In a first aspect, the present application discloses a workbench of an electric soldering iron, wherein a first accommodating cavity is arranged in the workbench, a temperature control circuit board for controlling the temperature of the electric soldering iron and a brush head driving circuit board for driving the rotation of a cleaning brush head are arranged in the first accommodating cavity, and the workbench further comprises:

[0007] A second accommodating cavity shares at least part of the shell of the first accommodating cavity, and the second accommodating cavity is separated from the first accommodating cavity by a side plate. The cleaning brush head is arranged in the second accommodating cavity and is electrically connected to the brush head driving circuit board. An insertion channel is arranged at the top of the second accommodating cavity, and the electric soldering iron can contact the rotating cleaning brush head through the insertion channel for cleaning.

[0008] A dirt collecting box is horizontally arranged at one side of the cleaning brush head and at least partially located at the bottom of the second accommodating cavity. The dirt collecting box is detachably connected with the shell of the workbench, so that the cleaning waste in the dirt collecting box can be poured by detaching the dirt collecting box.

[0009] Optionally, the workbench further comprises:

[0010] An inductor for inducting the electric iron is electrically connected with the second electric control component. The inductor is arranged in the second accommodating cavity and located outside the insertion channel and between the entrance end surface of the insertion channel and the outer tangent surface of the cleaning brush head.

[0011] Optionally, the workbench further comprises:

[0012] A shielding piece is arranged on the insertion channel and covers the insertion channel. The insertion hole of the shielding piece is in communication with the insertion channel.

[0013] Optionally, the inner bottom surface of the second accommodating cavity is provided with an arc-shaped recess.

[0014] Optionally, the inner bottom surface of the dirt collecting box is a slope, and the height of the inner bottom surface gradually decreases from the end close to the cleaning brush head to the end away from the cleaning brush head.

[0015] Optionally, the workbench further comprises:

[0016] A containing groove is integrally formed with the shell of the workbench. The containing groove is used for placing a cleaning sponge.

[0017] Optionally, a silica gel groove is further arranged in the containing groove. The silica gel groove at least partially covers the inner side of the containing groove, and the cleaning sponge is placed in the silica gel groove.

[0018] Optionally, the workbench further comprises an angle adjusting mechanism, which comprises:

[0019] A rotating shaft is rotatably connected with the shell of the workbench at one end.

[0020] A placing rack is fixedly connected with the rotating shaft. The placing rack is provided with a placing position for placing the electric iron.

[0021] Optionally, the angle adjusting mechanism further comprises:

[0022] A knob is tightly connected with the other end of the rotating shaft and covers the outer side of the other end of the rotating shaft.

[0023] Optionally, the workbench is further provided with a hub connector for connecting a hub.

[0024] Beneficial effects:

[0025] The workbench of the electric soldering iron disclosed in the embodiment of the present application comprises a first accommodating cavity and a second accommodating cavity, wherein the first accommodating cavity is provided with a temperature control circuit board for controlling the temperature of the electric soldering iron and a brush head driving circuit board for driving the rotation of the cleaning brush head, the second accommodating cavity is at least partially formed in the shell of the workbench and is separated from the first accommodating cavity by a side plate, the cleaning brush head is arranged in the second accommodating cavity and is electrically connected with the brush head driving circuit board, the top of the second accommodating cavity is provided with an insertion channel, the electric soldering iron can contact the rotating cleaning brush head through the insertion channel for cleaning, and the workbench further comprises a dirt collecting box which is detachably connected with the shell of the workbench and is arranged horizontally at one side of the cleaning brush head and at least partially located at the bottom of the second accommodating cavity. By arranging the first accommodating cavity and the second accommodating cavity, the workbench is divided into two different working areas, the second accommodating cavity is used for cleaning the soldering head of the electric soldering iron, and the first accommodating cavity is provided with the circuit board for controlling the welding temperature, that is, the workbench is integrated with the functions of welding and cleaning, the space occupation problem caused by multiple welding devices is solved, and the space utilization rate of the welding working space is improved. Meanwhile, since the dirt collecting box is detachably connected with the workbench, the cleaning waste cleaned by the cleaning brush head can be cleaned by detaching the dirt collecting box, the convenience of cleaning the cleaning waste is improved, the cleaning effect of the cleaning waste is improved, and the cleaning effect of the soldering head of the electric soldering iron is further improved.

[0026] Other beneficial effects of the present application will be described in the specific embodiments by introducing specific technical features and technical solutions, and those skilled in the art should understand the beneficial technical effects brought by the technical features and technical solutions through the introduction of the technical features and technical solutions. BRIEF DESCRIPTION OF DRAWINGS

[0027] The preferred embodiment of the workbench of the electric soldering iron of the present application will be described below with reference to the accompanying drawings. In the drawings:

[0028] Figure 1 The structure schematic view of the workbench of the electric soldering iron disclosed in the embodiment of the present application when cooperating with the electric soldering iron;

[0029] Figure 2 The cross-sectional structure schematic view of the workbench of the electric soldering iron disclosed in the embodiment of the present application in one direction;

[0030] Figure 3 The cross-sectional structure schematic view of the workbench of the electric soldering iron disclosed in the embodiment of the present application in another direction;

[0031] Figure 4 The local enlarged schematic view of the embodiment of the present application; Figure 3

[0032] Figure 5 ​The overall structure schematic diagram of a workbench of an electric soldering iron disclosed by the embodiment. DETAILED DESCRIPTION

[0033] The present application is described in the following based on embodiments, but the present application is not limited to these embodiments only. In the following detailed description of the present application, some specific details are described in detail in order to avoid obscuring the essence of the present application, and well-known methods, processes, procedures, elements are not described in detail.

[0034] In addition, those skilled in the art should understand that the drawings provided herein are for illustrative purposes only, and the drawings are not necessarily drawn to scale.

[0035] Unless the context clearly requires otherwise, throughout the description and the claims, the words "comprise", "comprising", and the like are to be construed in an inclusive sense as opposed to an exclusive or exhaustive sense; that is to say, in the sense of "including, but not limited to".

[0036] In the description of the present application, it should be understood that the terms "first", "second" and the like are only for the purpose of description and should not be understood as indicating or implying relative importance. In addition, in the description of the present application, unless otherwise specified, the meaning of "multiple" is two or more.

[0037] In order to reduce the occupation space of the welding equipment, improve the space utilization rate of the welding work space, improve the convenience of cleaning, and further improve the cleaning effect, the present embodiment discloses a workbench of an electric soldering iron, please refer to Figure 1 , Figure 1 The structure schematic diagram of the workbench of the electric soldering iron disclosed by the embodiment when cooperating with the electric soldering iron. The workbench of the electric soldering iron integrates the welding platform module for controlling the electric soldering iron to weld and the cleaning module for cleaning the electric soldering iron, and multiple devices such as welding platform and cleaning device are integrated on one workbench, thereby realizing the integration of multiple devices, further reducing the occupation space of the welding equipment, and further improving the space utilization rate of the welding work space.

[0038] Please refer to Figure 2 , Figure 2 The cross-sectional structure schematic diagram of the workbench of the electric soldering iron disclosed by the embodiment in one direction. As Figure 1 and Figure 2As shown in the figure, the inside of the workbench 10 is provided with a first accommodating cavity 11, and a temperature control circuit board (not shown in the figure) for controlling the temperature of the electric iron 20 is arranged in the first accommodating cavity 11. The temperature control circuit board is electrically connected with the electric iron 20, and is used for controlling the temperature of the iron head of the electric iron 20 for welding. A brush head driving circuit board (not shown in the figure) for driving the cleaning brush head 121 to rotate is also arranged in the first accommodating cavity 11. The brush head driving circuit board is electrically connected with the cleaning brush head 121, and is used for driving the cleaning brush head 121 to rotate around the brush head rotation shaft, so as to clean the iron head of the electric iron 20. In the specific implementation process, the temperature control circuit board and the brush head driving circuit board can be two independent circuit boards, or can be integrated on one circuit board.

[0039] Please refer to Figure 3 , Figure 3 The figure is a schematic view of the cross-sectional structure of the electric iron in another direction disclosed by the embodiment. As shown in the figure, Figure 2 and Figure 3 The workbench 10 further includes a second accommodating cavity 12, the second accommodating cavity 12 at least shares part of the shell of the workbench 10 with the first accommodating cavity 11, and the second accommodating cavity 12 is separated from the first accommodating cavity 11 by the side plate 13. The cleaning brush head 121 is arranged inside the second accommodating cavity 12 and is electrically connected with the brush head driving circuit board. The top of the second accommodating cavity 12 is provided with an insertion passage 122, and the electric iron 20 can pass through the insertion passage 122 to contact the rotating cleaning brush head 121 for cleaning.

[0040] In the embodiment, the second accommodating cavity 12 at least shares part of the shell of the workbench 10 with the first accommodating cavity 11, that is, the workbench 10 has the function of controlling the cleaning brush head 121 to clean the iron head of the electric iron 20 in addition to the function of controlling the electric iron 20 to weld. The cleaning function and the welding function are integrated on the workbench 10, so that one workbench 10 can be used when the electric iron 20 is used for welding work, and multiple devices need not be prepared, the occupied space of the welding device is reduced, and the space utilization rate of the welding work space is improved.

[0041] The insertion passage 122 is arranged at the top of the second accommodating cavity 12, the electric iron 20 can pass through the insertion passage 122 to insert into the second accommodating cavity 12, and contact the cleaning brush head 121 in the second accommodating cavity 12, so as to clean the iron head of the electric iron 20 by the cleaning brush head 121. In the specific implementation process, a driving mechanism is further arranged in the first accommodating cavity 11, the driving mechanism is connected with the cleaning brush head 121, and the driving mechanism is controlled by the brush head driving circuit board to drive the cleaning brush head 121 to rotate, so as to clean the iron head of the electric iron 20. The driving mechanism can be, for example, a motor. The cleaning brush head 121 can be a copper brush.

[0042] The second accommodating cavity 12 is provided with the cleaning brush head 121, and cleaning waste is generated when the cleaning brush head 121 cleans the iron head of the electric soldering iron 20. The first accommodating cavity 11 and the second accommodating cavity 12 are separated by the partition plate 13, so that the cleaning waste is collected in the second accommodating cavity 12, facilitating cleaning; on the other hand, the cleaning waste is prevented from entering the first accommodating cavity 11, and the cleaning waste is also prevented from affecting the temperature control circuit board and the brush head driving circuit board in the first accommodating cavity 11.

[0043] As shown in Figure 2 and Figure 3 , the workbench 10 further comprises a dirt collecting box 14, which is horizontally arranged at one side of the cleaning brush head 121 and at least partially located at the bottom of the second accommodating cavity 12. The dirt collecting box 14 is detachably connected to the shell of the workbench 10, so that the cleaning waste in the dirt collecting box 14 can be poured out by detaching the dirt collecting box 14, thereby improving the convenience of cleaning the cleaning waste and the cleaning effect of the iron head 20. In the specific implementation process, the dirt collecting box 14 can be made of silica gel.

[0044] In the embodiment, the dirt collecting box 14 is horizontally arranged at one side of the cleaning brush head 121. In the specific implementation process, when the rotation direction of the cleaning brush head 121 is counterclockwise, the dirt collecting box 14 can be arranged at the right side of the cleaning brush head 121 (as shown in the position shown in Figure 3 ; when the rotation direction of the cleaning brush head 121 is clockwise, the dirt collecting box 14 can be arranged at the left side of the cleaning brush head 121. Preferably, the dirt collecting box 14 can be arranged at the right side of the cleaning brush head 121 as shown in Figure 3 , and the cleaning brush head 121 can rotate counterclockwise under the control of the brush head driving circuit board. The dirt collecting box 14 is arranged on the tangent direction of the circumference in the rotation process of the cleaning brush head 121, so that the cleaning brush head 121 can not only throw the cleaning waste brushed off from the iron head of the electric soldering iron 20 into the dirt collecting box 14 in the rotation process, reducing the adhesion of the cleaning waste on the cleaning brush head 121 and improving the service life of the cleaning brush head 121 and the cleaning effect of the electric soldering iron 20, but also can sweep the cleaning waste at the bottom of the second accommodating cavity 12 into the dirt collecting box 14, thereby facilitating the cleaning of the second accommodating cavity 12 and preventing the second accommodating cavity 12 from containing too much cleaning waste.

[0045] In the optional embodiment, as shown in Figure 3As shown, the workbench of the soldering iron also includes a sensor 123 for sensing the soldering iron 20. The sensor 123 is electrically connected to the second electronic control component to send a sensing signal to the second electronic control component, causing the second electronic control component to control the rotation of the cleaning brush head 121. The sensor 123 is disposed in the second receiving cavity 12, located outside the insertion channel 122 and between the entrance end face of the insertion channel 122 and the outer tangential face of the cleaning brush head 121.

[0046] In this embodiment, sensor 123 can be an induction coil used to identify metal. When sensor 123 senses that the component entering the insertion channel 122 is a metal component, it sends a sensing signal to the second electronic control component, causing the second electronic control component to control the cleaning brush head 121 to rotate; when sensor 123 senses that the component entering the insertion channel 122 is not a metal component, it does not send a sensing signal, and the cleaning brush head 121 will not rotate.

[0047] To more accurately control the rotation of the cleaning brush head 121 and the position of the soldering tip of the soldering iron 20, the sensor 123 can be disposed inside the second receiving cavity 12 and located outside the insertion channel 122. In a specific implementation, the sensor 123 can be disposed on the inner wall of the second receiving cavity 12. Furthermore, the sensor 123 is specifically located between the inlet end face of the insertion channel 122 and the outer sectional surface of the cleaning brush head 121, wherein the outer sectional surface of the cleaning brush head 121 is the outer sectional surface of the cleaning brush head 121 closest to the insertion channel 122. Please refer to [link to relevant documentation]. Figure 4 , Figure 4 For this embodiment Figure 3 A magnified view of a portion, for example Figure 4 As shown, the dashed line represents the plane containing the inlet end face of the insertion channel 122, and the dashed line represents the outer tangent surface of the cleaning brush head 121. It can be understood that... Figure 4 The outer tangent of the cleaning brush head 121, indicated by the dashed line, is merely an example. Preferably, the outer tangent of the cleaning brush head 121 can be the tangent of the point closest to the entrance of the insertion channel 122 on the circumference of the cleaning brush head 121 during rotation. Since the cleaning brush head 121 may pick up cleaning waste, including metal materials, when cleaning the soldering tip of the soldering iron 20, placing the sensor 123 between the entrance end face of the insertion channel 122 and the outer tangent of the cleaning brush head 121 can prevent the sensor 123 from sensing residual cleaning waste on the cleaning brush head 121 and generating erroneous sensing signals, thereby improving the accuracy of control over the cleaning brush head 121.

[0048] In an optional embodiment, please refer to Figure 5 , Figure 5This is a schematic diagram of the overall structure of a soldering iron workbench disclosed in this embodiment. The workbench further includes a shielding member 124, which has an insertion hole 1241. The shielding member 124 is fitted over the insertion channel 122, and the insertion hole 1241 communicates with the insertion channel 122. In this embodiment, the shielding member 124 being fitted over the insertion channel 122 means that the shielding member 124 is at least partially located outside the second receiving cavity 12 and is fitted around the periphery of the insertion channel 122, thus providing a shielding effect at the opening of the insertion channel 122. Preferably, the shielding member 124 can be as follows: Figure 5 As shown, the shielding member 124 covers the entrance end face of the insertion channel 122 to achieve a better anti-splash effect. In other embodiments, the shielding member 124 may only cover a portion of the insertion channel 122, such as the inner circumference side of the insertion channel 122. The shielding member 124 prevents cleaning waste from being flung out of the channel opening of the insertion channel 122 due to high-speed rotation of the cleaning brush head 121 during cleaning, thus preventing cleaning waste from splashing. An insertion hole 1241 communicating with the insertion channel 122 is also provided on the shielding member 124, allowing the soldering iron 20 to enter the insertion channel 122 through the insertion hole 1241 without affecting the normal entry and exit of the soldering iron 20.

[0049] In optional embodiments, such as Figure 3 As shown, the inner bottom surface of the second receiving cavity 12 is provided with an arc-shaped recess 125. In this embodiment, the arc-shaped recess 125 at the bottom of the second receiving cavity 12 facilitates the accumulation of cleaning waste brushed off by the cleaning brush head 121 into the arc-shaped recess 125 under the action of gravity. When the cleaning brush head 121 rotates, it can sweep the cleaning waste accumulated in the arc-shaped recess 125 into the sludge collection box 14. Furthermore, since the cleaning brush head 121 rotates within the second receiving cavity 12, the arc-shaped recess 125 also better conforms to the circumferential contour of the cleaning brush head 121 when it rotates.

[0050] In optional embodiments, such as Figure 3 As shown, the inner bottom surface 141 of the sludge collection box 14 is inclined, and the height of the inner bottom surface 141 gradually decreases from the end near the cleaning brush head 121 to the end away from the cleaning brush head 121. In this embodiment, the inner bottom surface 141 of the sludge collection box 14 is inclined. When the cleaning brush head 121 sweeps the cleaning waste into the sludge collection box 14, the cleaning waste will slide to the bottom of the sludge collection box 14 due to inertia and gravity, and will not accumulate at the connection between the second receiving cavity 12 and the inner cavity of the sludge collection box 14. This allows for better collection of cleaning waste and improves the efficiency of collecting cleaning waste.

[0051] In an optional embodiment, the sludge collection box 14 may be slidable within the second receiving cavity 12 until the bottom of the sludge collection box 14 abuts against the bottom of the second receiving cavity 12. For example...Figure 3 As shown, a handle 142 is also provided on the outside of the sludge collection box 14. The handle 142 is provided to facilitate pulling out the second receiving cavity 12 and emptying the cleaning waste stored in the sludge collection box 14.

[0052] In optional embodiments, such as Figure 3 As shown, the soldering iron's workbench also includes a receiving groove 15, which is integrally formed with the outer shell of the workbench 10. The receiving groove 15 is used to hold a cleaning sponge 151. In this embodiment, the workbench 10 may also be provided with an integrally formed receiving groove 15, in which the cleaning sponge 151 is placed. The cleaning sponge 151 is also used to wipe and clean the soldering tip of the soldering iron 20. In specific implementation, in order to make the structure of the soldering iron's workbench more compact and improve its aesthetics, the receiving groove 15 may be located on the other side of the cleaning brush head 121, that is, on the side opposite to the sludge collection box 14. The receiving groove is located outside the first receiving cavity 11, on the outer surface of the workbench 10.

[0053] In optional embodiments, such as Figure 3 As shown, a silicone groove 152 is also provided inside the receiving groove 15. The silicone groove 152 at least partially covers the inner side of the receiving groove 15, and a cleaning sponge 151 is placed inside the silicone groove 152. In this embodiment, the silicone groove 152 can cover the inner wall of the receiving groove 15, especially the inner side wall of the receiving groove 15, and the cleaning sponge 151 can be placed inside the silicone groove 152. In specific implementation, the silicone groove 152 can be made of a high-temperature resistant material, and excess solder can be removed by gently tapping or wiping the silicone groove 152.

[0054] In optional embodiments, such as Figure 3 and Figure 5 As shown, the worktable of the soldering iron is also equipped with an angle adjustment mechanism 16. The angle adjustment mechanism 16 includes: a rotating shaft 161, one end of which is rotatably connected to the outer shell of the worktable 10; and a placement rack 162 fixedly connected to the rotating shaft 161, with a placement position 1621 for placing the soldering iron 20 inside the placement rack 162. In this embodiment, when the soldering iron 20 is placed on the worktable, the angle adjustment mechanism 16 is used to adjust the placement angle of the soldering iron 20. The soldering iron 20 can be placed inside the placement position 1621. The placement rack 162 is fixedly connected to the rotating shaft 161, and when the rotating shaft 161 rotates to adjust the angle, the placement rack 162 rotates synchronously with the rotating shaft 161.

[0055] In optional embodiments, such as Figure 5As shown in FIG. 1, the angle adjusting mechanism 16 further comprises a knob 163, which is sleeved on the outside of the other end of the rotating shaft 161 and is fixedly connected with the other end of the rotating shaft 161. In the embodiment, one end of the rotating shaft 161 is rotationally connected with the shell of the workbench 10, and the other end of the rotating shaft 161 is sleeved with the knob 163, so that the rotation of the rotating shaft 161 can be adjusted by rotating the knob 163, which is convenient for the operator to operate. It can be understood that the rotating shaft 161 and the knob 163 are fixedly connected, and it is not necessarily required that the rotating shaft 161 and the knob 163 are not detachable, but only need to be fixedly connected after the connection of the rotating shaft 161 and the knob 163 is completed.

[0056] In an optional embodiment, as shown in FIG. 1, Figure 5 As shown in FIG. 1, the workbench 10 is further provided with a hub connector 17 for connecting the hub. In the embodiment, when the electric soldering iron 20 is placed on the workbench 10, the hub connector 17 is used to accommodate the wire at the tail end of the electric soldering iron 20, so as to make the operation space neat. Preferably, as shown in FIG. 1, Figure 5 As shown in FIG. 1, the hub connector 17 can be arranged at the bottom of the workbench 10, and a hub structure 17 also needs to be connected (not shown in the figure), which needs to occupy a certain longitudinal space, so that the hub connector 17 is arranged at the bottom of the workbench 10, so as to make full use of the longitudinal height of the workbench 10 itself, and further improve the space utilization rate of the welding work space.

[0057] According to the workbench of the electric soldering iron disclosed in the embodiment of the present application, the first accommodating cavity and the second accommodating cavity are arranged in the workbench, the temperature control circuit board for controlling the temperature of the electric soldering iron and the brush head driving circuit board for driving the rotation of the cleaning brush head are arranged in the first accommodating cavity, the second accommodating cavity is at least partially used with the shell of the workbench and is separated from the first accommodating cavity by the side plate, the cleaning brush head is arranged in the second accommodating cavity and is electrically connected with the brush head driving circuit board, the top of the second accommodating cavity is provided with an insertion channel, the electric soldering iron can contact the rotating cleaning brush head for cleaning through the insertion channel, and the workbench further comprises a dirt collecting box which is detachably connected with the shell of the workbench and is horizontally arranged at one side of the cleaning brush head and at least partially located at the bottom of the second accommodating cavity. By arranging the first accommodating cavity and the second accommodating cavity, the workbench is divided into two different working areas, the second accommodating cavity is used for cleaning the iron head of the electric soldering iron, and the first accommodating cavity accommodates the circuit board for controlling the welding temperature, that is, the workbench integrates the functions of welding and cleaning, solves the space occupation problem caused by multiple welding devices, and improves the space utilization rate of the welding work space. At the same time, since the dirt collecting box is detachably connected with the workbench, the cleaning waste cleaned by the cleaning brush head can be cleaned by detaching the dirt collecting box, which improves the convenience of cleaning the cleaning waste, improves the cleaning effect of the cleaning waste, and further improves the cleaning effect of the iron head of the electric soldering iron.

[0058] Those skilled in the art can understand that the above-mentioned preferred embodiments can be freely combined and superimposed without conflict. Among them, the flowcharts and block diagrams in the drawings illustrate the possible implementation architecture, function and operation of the system, method and computer program product according to various embodiments of the present disclosure. In this regard, each block in the flowchart or block diagram can represent a module, a program segment, or a part of code containing one or more executable instructions for implementing the specified logical function. It should also be noted that in some alternative implementations, the functions noted in the blocks can occur in different orders than those noted in the drawings, for example, two blocks indicated in succession can actually be executed substantially in parallel, and sometimes they can be executed in reverse order, depending on the function involved. It should also be noted that each block in the block diagram and / or flowchart, and the combination of blocks in the block diagram and / or flowchart, can be implemented by a dedicated hardware-based system that performs the specified functions or operations, or can be implemented by a combination of dedicated hardware and computer instructions. The numbering of the steps herein is only for the convenience of explanation and reference, and does not limit the front and back order, and the specific execution order is determined by the technology itself, and those skilled in the art can determine various allowed and reasonable orders according to the technology itself.

[0059] Those skilled in the art can understand that the above-mentioned preferred embodiments can be freely combined and superimposed without conflict.

[0060] It should be understood that the above-described embodiments are only exemplary and not limiting, and those skilled in the art can make various obvious or equivalent modifications or replacements to the above-described details without departing from the essential principles of the present application, which will be included in the scope of the claims of the present application.

Claims

1. A workbench for electric soldering irons, characterized in that, The workbench (10) is provided with a first accommodating cavity (11), the first accommodating cavity (11) is provided with a temperature control circuit board for controlling the temperature of the electric iron (20) and a brush head driving circuit board for driving the rotation of the cleaning brush head (121), and further comprises: A second accommodating cavity (12) shares at least part of the shell of the workbench (10) with the first accommodating cavity (11), and the second accommodating cavity (12) is separated from the first accommodating cavity (11) by a side plate (13), the cleaning brush head (121) is arranged in the second accommodating cavity (12) and is electrically connected with the brush head driving circuit board, and the top of the second accommodating cavity (12) is provided with an insertion channel (122), the electric iron (20) can contact the rotating cleaning brush head (121) through the insertion channel (122) for cleaning; A pollution collection box (14) is horizontally arranged on one side of the cleaning brush head (121) and at least partially located at the bottom of the second accommodating cavity (12), and the pollution collection box (14) is detachably connected with the shell of the workbench (10), so that the cleaning waste in the pollution collection box (14) can be poured out by detaching the pollution collection box (14).

2. A workbench for electric irons according to claim 1, characterized in that, Further comprising: An inductor (123) for inducting the electric iron (20) is electrically connected with a second electric control assembly, the inductor (123) is arranged in the second accommodating cavity (12), located outside the insertion channel (122) and between the inlet end surface of the insertion channel (122) and the outer tangent surface of the cleaning brush head (121).

3. The workbench for electric irons according to claim 1, characterized in that, Further comprising: A shielding piece (124) is provided with an insertion hole (1241), the shielding piece (124) is sleeved on the insertion channel (122), and the insertion hole (1241) is in communication with the insertion channel (122).

4. The workbench for electric irons according to claim 1, characterized in that, The inner bottom surface of the second accommodating cavity (12) is provided with an arc-shaped recess (125).

5. The workbench for electric irons according to claim 1, characterized in that, The inner bottom surface (141) of the pollution collection box (14) is inclined, and the height of the inner bottom surface (141) gradually decreases from one end close to the cleaning brush head (121) to the other end away from the cleaning brush head (121).

6. The workbench for electric irons according to claim 1, characterized in that, Further comprising: A containing groove (15) is integrally formed with the shell of the workbench (10), and the containing groove (15) is used for placing a cleaning sponge (151).

7. A workbench for electric irons according to claim 6, characterized in that, The containing groove (15) is further provided with a silica gel groove (152), the silica gel groove (152) at least partially covers the inner side of the containing groove (15), and the cleaning sponge (151) is placed in the silica gel groove (152).

8. The workbench for electric irons according to claim 1, characterized in that, Further comprising an angle adjusting mechanism (16), the angle adjusting mechanism (16) comprises: A rotating shaft (161) is rotatably connected with the shell of the workbench (10) at one end; A placing rack (162) is fixedly connected with the rotating shaft (161), and the placing rack (162) is provided with a placing position (1621) for placing the electric iron (20).

9. A workbench for electric irons according to claim 8, characterized in that, The angle adjusting mechanism (16) further comprises: A knob (163) is sleeved on the outer side of the other end of the rotating shaft (161) and is tightly connected with the other end of the rotating shaft (161).

10. The workbench for electric irons according to claim 1, characterized in that, The workbench (10) is further provided with a hub connector (17) for connecting a hub.