CN223145423U - Copper wire surface cleaning mechanism - Google Patents

Copper wire surface cleaning mechanism

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Publication number
CN223145423U
CN223145423U CN202422207055.1U CN202422207055U CN223145423U CN 223145423 U CN223145423 U CN 223145423U CN 202422207055 U CN202422207055 U CN 202422207055U CN 223145423 U CN223145423 U CN 223145423U
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CN
China
Prior art keywords
cleaning
assembly
copper wire
copper wires
component
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CN202422207055.1U
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Chinese (zh)
Inventor
顾相伟
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Jiangxi Xingming New Materials Co ltd
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Jiangxi Xingming New Materials Co ltd
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Priority to CN202422207055.1U priority Critical patent/CN223145423U/en
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Publication of CN223145423U publication Critical patent/CN223145423U/en
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Abstract

The utility model discloses a copper wire surface cleaning mechanism which comprises a cleaning tank, an incoming wire guide assembly, an outgoing wire guide assembly, a first cleaning assembly, a second cleaning assembly and a sprayer, wherein the cleaning tank is used for receiving sewage, the incoming wire guide assembly and the outgoing wire guide assembly are respectively arranged on two sides of the top of the cleaning tank and are provided with a fixed shaft, and a plurality of spacing guide wheels which are arranged at intervals are axially and rotatably arranged along the fixed shaft. The limiting guide wheels are arranged in one-to-one correspondence with the limiting grooves, so that the copper wires can be limited in the cleaning process, the interlacing of the transmission of a plurality of copper wires is prevented, and the stability and the ordering of the transmission cleaning of the copper wires are improved; the arrangement of the limiting guide wheels and the limiting grooves can clean a plurality of copper wires, the cleaning efficiency is improved, the triangular arrangement of the transmission belt can enable the copper wires to be attached to the limiting grooves on the inclined surfaces on two sides of the transmission belt, the contact surface between the copper wires is enlarged, the cleaning effect is further improved, and the inverted triangular arrangement of the first cleaning assembly and the right triangular arrangement of the second cleaning assembly can clean two sides of the copper wires, so that the cleaning comprehensiveness of the copper wires is improved.

Description

Copper line surface cleaning mechanism
Technical Field
The utility model relates to the technical field of cleaning equipment, in particular to a copper wire surface cleaning mechanism.
Background
In the production of copper wire, cleaning is a critical step to ensure quality and performance of the final product. Copper wire may become contaminated with lubricating oil, metal chips or other contaminants during wire drawing, annealing, etc., which must be thoroughly removed.
The cleaning mechanism in the prior art generally adopts a cleaning tank to clean copper wires, a hairbrush roller is composed of a fixed shaft and a hairbrush attached to the fixed shaft, the copper wires are wound on the cleaning tank, and the copper wires are cleaned by rotating the cleaning roller. Because the contact area between the cleaning and the copper wire is limited, and the single-sided property of the contact surface of the copper wire to the cleaning tank, the cleaned copper wire can still remain dirt, and the cleaning is not thorough.
Disclosure of utility model
Aiming at the problems in the prior art, the utility model aims to provide a cleaning mechanism which has large contact area with copper wires and can comprehensively clean the copper wires.
In order to solve the problems, the utility model adopts the following technical scheme. A copper wire surface cleaning mechanism comprising:
a washing tank for receiving sewage;
The wire inlet guide assembly and the wire outlet guide assembly are respectively arranged at two sides of the top of the cleaning tank and are provided with a fixed shaft and a plurality of spacing guide wheels which are arranged at intervals in a rotating way along the axial direction of the fixed shaft;
The first cleaning assembly is arranged in the cleaning tank and provided with three driving wheels which are arranged in a triangular mode, a driving belt is arranged on the three driving wheels in a driving mode so that the driving belt forms a triangular shape, limiting grooves which are in one-to-one correspondence with the limiting guide wheels are formed in the driving belt, a cleaning layer is arranged in each limiting groove, and the first cleaning assembly is arranged in an inverted triangular mode;
The second cleaning component is arranged in the cleaning tank and positioned obliquely above the first cleaning component close to the wire outlet guide component, and has the same structure as the first cleaning component, and is arranged in a regular triangle;
and the sprayer sprays the copper wires and/or the first cleaning component and the second cleaning component.
Preferably, the first cleaning assembly and the second cleaning assembly further comprise a driver connected with at least one driving wheel to drive the driving belt to drive.
Preferably, the opposite sides of the first cleaning assembly and the second cleaning assembly are located on the same inclined plane.
Preferably, the two sprayers are respectively arranged at the relative positions of one surface of the first cleaning component far away from the second cleaning component and the relative position of one surface of the second cleaning component close to the first cleaning component.
Preferably, the sprayer comprises spray heads arranged on two inner walls of the cleaning tank and a water pipe connected with the spray heads.
Preferably, the inlet wire guide assembly is located obliquely above the inclined surface of the first cleaning assembly away from the second cleaning assembly.
Preferably, the wire outlet guide assembly is located obliquely below the inclined surface of the second cleaning assembly away from the first cleaning assembly.
Compared with the prior art, the utility model has the beneficial effects that:
The limiting guide wheels are arranged in one-to-one correspondence with the limiting grooves, so that the copper wires can be limited in the cleaning process, the interlacing of the transmission of a plurality of copper wires is prevented, and the stability and the ordering of the transmission cleaning of the copper wires are improved; the arrangement of the limiting guide wheels and the limiting grooves can clean a plurality of copper wires, the cleaning efficiency is improved, the triangular arrangement of the transmission belt can enable the copper wires to be attached to the limiting grooves on the inclined surfaces on two sides of the transmission belt, the contact surface between the copper wires is enlarged, the cleaning effect is further improved, and the inverted triangular arrangement of the first cleaning assembly and the right triangular arrangement of the second cleaning assembly can clean two sides of the copper wires, so that the cleaning comprehensiveness of the copper wires is improved.
Drawings
FIG. 1 is a schematic diagram of the structure of the present utility model;
Fig. 2 is a cross-sectional view of the present utility model.
The reference numerals in the figures illustrate:
1. A cleaning tank; 2, an incoming line guide assembly, 21, a fixed shaft, 22, a limiting guide wheel, 3, an outgoing line guide assembly, 4, a first cleaning assembly, 41, a driving wheel, 42, a driving belt, 43, a cleaning layer, 44, a limiting groove, 45, a driver, 5, a second cleaning assembly, 6, a sprayer, 61, a spray head, 62, a water pipe, 7 and copper wires.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
Referring to fig. 1-2, the surface cleaning mechanism for the copper wire 7 comprises a cleaning tank 1, an incoming wire guide assembly 2 and an outgoing wire guide assembly 3, a first cleaning assembly 4, a second cleaning assembly 5, a sprayer 6 and a copper wire 7 and/or the first cleaning assembly 4 and the second cleaning assembly 5, wherein the cleaning tank 1 is used for receiving sewage, the incoming wire guide assembly 2 and the outgoing wire guide assembly 3 are respectively arranged on two sides of the top of the cleaning tank 1, the fixed shaft 21 is arranged, a plurality of spacing guide wheels 22 are rotatably arranged along the axial direction of the fixed shaft 21, the first cleaning assembly 4 is arranged in the cleaning tank 1 and is provided with three driving wheels 41 which are arranged in a triangular mode, a driving belt 42 is arranged on the three driving wheels 41 in a driving mode so that the driving belt 42 forms a triangular shape, limiting grooves 44 which are in one-to-one correspondence with the spacing guide wheels 22 are arranged on the driving belt 42, a cleaning layer 43 is arranged in the limiting grooves 44, the first cleaning assembly 4 is arranged in an inverted triangular mode, the second cleaning assembly 5 is arranged in the cleaning tank 1 and is arranged on the first cleaning assembly 4 and is arranged on the inclined upper side of the outgoing wire guide assembly 3, and has the same structure as the first cleaning assembly 4.
It will be appreciated that the cleaning tank 1 is a component for receiving the contaminated water, which may be a component with a receiving space, during the cleaning of the copper wire 7. Because the copper wire 7 needs to be changed when entering the cleaning tank 1 and exiting the cleaning tank 1, the transmission direction of the copper wire 7 needs to be changed, and the incoming wire guiding assembly 2 and the outgoing wire guiding assembly 3 respectively guide the copper wire 7 entering the cleaning tank 1 and the outgoing wire guiding assembly 1, the limiting guide wheel 22 can adopt an I-shaped guide wheel structure, can be rotatably sleeved on the fixed shaft 21, can also be rotatably installed through bearing matching, and the like. The transmission of the transmission wheel 41 and the transmission belt 42 can be meshed transmission, transmission similar to the transmission of rollers and belts, and the like. The cleaning layer 43 contacts the copper wire 7, and the member for friction cleaning the copper wire 7 may be, for example, a brush or a felt, but is not limited thereto. The shower 6 is a member having a liquid spraying function.
The copper wire 7 bypasses downwards from the upper half part of the limit guide wheel 22 of the wire inlet guide assembly 2 and then is stuck in the limit grooves 44 on the two inclined planes at the bottom of the first cleaning assembly 4, then is stuck in the limit grooves 44 on the inclined planes at the two sides of the top of the second cleaning assembly 5, and finally bypasses upwards from the bottom of the limit wheel of the wire outlet guide assembly 3. During cleaning, the sprayer 6 sprays the copper wire 7, and the copper wire 7 is rubbed with the cleaning piece in the limiting groove 44 due to the transmission of the copper wire 7. And because of the limiting action of the limiting guide wheel 22 and the limiting groove 44, the copper wire 7 cannot deviate, and the ordering of the copper wire 7 in the cleaning process is ensured. And the two inclined planes of the first cleaning assembly 4 and the second cleaning assembly 5 can greatly improve the contact area with the copper wire 7, and meanwhile, the two faces of the copper wire 7 can be cleaned by the arrangement of the right triangle and the inverted triangle respectively, so that dead angle-free cleaning of the copper wire 7 is ensured.
In some embodiments, the first cleaning assembly 4 and the second cleaning assembly 5 further comprise a driver 45 connected to at least one driving wheel 41 for driving the driving belt 42. It will be appreciated that the copper wire 7 may be rubbed against the cleaning elements by the transfer of the copper wire 7 alone or by autonomous movement of the cleaning elements. Here, the driver 45 is adopted to drive the driving wheel 41 to drive the driving belt 42 and further drive the cleaning member to move so as to carry out friction cleaning on the copper wire 7. The driver 45 can be a motor direct drive or a motor matched with a gear to drive a guide wheel to drive. Thus, the friction efficiency between the cleaning member and the copper wire 7 can be improved, and the cleaning effect can be further improved.
In some embodiments, referring to fig. 2, the opposite sides of the first cleaning assembly 4 and the second cleaning assembly 5 are on the same incline. In this way, the copper wire 7 can be attached to the opposite faces of the first cleaning assembly 4 and the second cleaning assembly 5 at the same time, without depending on the external structure.
In some embodiments, the sprayers 6 are provided in two positions, and are respectively mounted at a relative position of a face of the first cleaning assembly 4 away from the second cleaning assembly 5, and a relative position of a face of the second cleaning assembly 5 close to the first cleaning assembly 4. Further, the sprayer 6 includes spray heads 61 installed on both inner walls of the cleaning tank 1, and a water pipe 62 connected to the spray heads 61. It will be appreciated that the relative positioning of the sprayer 6 means that the sprayer 6 can spray the liquid from its relatively positioned components. The copper wire 7 and the cleaning member can be wetted by the liquid spraying, stains on the copper wire 7 can be washed, and the cleaning effect of the copper wire 7 can be improved by two-time spraying. Here, the water pipe 62 may connect a water source and a pump body, and then cooperate with the spray head 61 to perform a spray operation.
In some embodiments, since the contact surfaces of the first cleaning assembly 4 and the second cleaning assembly 5 with the copper wire 7 are inclined surfaces, the wire feeding guide assembly 2 is arranged obliquely above the inclined surface of the first cleaning assembly 4 far from the second cleaning assembly 5 in order to ensure that the copper wire 7 can be attached to the inclined surfaces of the two. Further, the wire guide assembly 3 is disposed obliquely below the inclined surface of the second cleaning assembly 5 away from the first cleaning assembly 4.
The above description is only a preferred embodiment of the present utility model, but the scope of the present utility model is not limited thereto. Any person skilled in the art, within the technical scope of the present disclosure, may apply to the present utility model, and the technical solution and the improvement thereof are all covered by the protection scope of the present utility model.

Claims (7)

1.一种铜线表面清洁机构,其特征在于,包括:1. A copper wire surface cleaning mechanism, comprising: 清洗槽(1),用于接收污水;A cleaning tank (1) for receiving sewage; 进线导向组件(2)和出线导向组件(3),分别安装在清洗槽(1)顶部两侧,具有固定轴(21)以及沿固定轴(21)轴向旋转安装有若干间隔设置的限位导轮(22);The inlet guide assembly (2) and the outlet guide assembly (3) are respectively installed on both sides of the top of the cleaning tank (1), and have a fixed shaft (21) and a plurality of spaced limiting guide wheels (22) axially rotatably installed along the fixed shaft (21); 第一清洗组件(4),安装在清洗槽(1)内,具有呈三角排列的三个传动轮(41),三个传动轮(41)上传动安装有传动带(42)进而使传动带(42)形成三角状,所述传动带(42)上设置有与限位导轮(22)一一对应的限位槽(44),所述限位槽(44)内设置有清洁层(43),所述第一清洗组件(4)呈倒三角设置;A first cleaning component (4) is installed in the cleaning tank (1) and has three transmission wheels (41) arranged in a triangle. The three transmission wheels (41) are provided with transmission belts (42) so that the transmission belts (42) form a triangle shape. The transmission belts (42) are provided with limiting grooves (44) corresponding to the limiting guide wheels (22) one by one. A cleaning layer (43) is provided in the limiting grooves (44). The first cleaning component (4) is arranged in an inverted triangle shape. 第二清洗组件(5),安装在清洗槽(1)内且位于第一清洗组件(4)靠近出线导向组件(3)的斜上方,与第一清洗组件(4)结构相同,所述第二清洗组件(5)呈正三角设置;A second cleaning assembly (5) is installed in the cleaning tank (1) and is located obliquely above the first cleaning assembly (4) near the outlet wire guide assembly (3). The second cleaning assembly (5) has the same structure as the first cleaning assembly (4). The second cleaning assembly (5) is arranged in an equilateral triangle. 喷淋器(6),对铜线(7)和/或第一清洗组件(4)以及第二清洗组件(5)进行喷淋。The sprayer (6) sprays the copper wire (7) and/or the first cleaning component (4) and the second cleaning component (5). 2.根据权利要求1所述的一种铜线表面清洁机构,其特征在于,第一清洗组件(4)和第二清洗组件(5)还包括至少与一个传动轮(41)连接进而带动传动带(42)传动的驱动器(45)。2. A copper wire surface cleaning mechanism according to claim 1, characterized in that the first cleaning component (4) and the second cleaning component (5) further include a driver (45) connected to at least one transmission wheel (41) to drive the transmission belt (42). 3.根据权利要求1所述的一种铜线表面清洁机构,其特征在于,所述第一清洗组件(4)和第二清洗组件(5)相对的两面位于同一斜面上。3. A copper wire surface cleaning mechanism according to claim 1, characterized in that the two opposite surfaces of the first cleaning component (4) and the second cleaning component (5) are located on the same inclined plane. 4.根据权利要求1所述的一种铜线表面清洁机构,其特征在于,所述喷淋器(6)设置有两个,且分别安装在第一清洗组件(4)远离第二清洗组件(5)一面的相对位置,以及第二清洗组件(5)靠近第一清洗组件(4)一面的相对位置。4. A copper wire surface cleaning mechanism according to claim 1, characterized in that two sprayers (6) are provided, and are respectively installed at a relative position of the first cleaning component (4) away from a side of the second cleaning component (5), and at a relative position of the second cleaning component (5) close to a side of the first cleaning component (4). 5.根据权利要求1所述的一种铜线表面清洁机构,其特征在于,所述喷淋器(6)包括安装在清洗槽(1)两内壁安装的喷头(61),以及与喷头(61)连接的水管(62)。5. A copper wire surface cleaning mechanism according to claim 1, characterized in that the sprayer (6) comprises a spray head (61) installed on two inner walls of the cleaning tank (1), and a water pipe (62) connected to the spray head (61). 6.根据权利要求1所述的一种铜线表面清洁机构,其特征在于,所述进线导向组件(2)位于第一清洗组件(4)远离第二清洗组件(5)斜面的斜上方。6. A copper wire surface cleaning mechanism according to claim 1, characterized in that the wire inlet guide assembly (2) is located obliquely above the first cleaning assembly (4) away from the inclined surface of the second cleaning assembly (5). 7.根据权利要求1所述的一种铜线表面清洁机构,其特征在于,所述出线导向组件(3)位于第二清洗组件(5)远离第一清洗组件(4)斜面的斜下方。7. A copper wire surface cleaning mechanism according to claim 1, characterized in that the outlet wire guide assembly (3) is located obliquely below the second cleaning assembly (5) away from the inclined surface of the first cleaning assembly (4).
CN202422207055.1U 2024-09-09 2024-09-09 Copper wire surface cleaning mechanism Active CN223145423U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202422207055.1U CN223145423U (en) 2024-09-09 2024-09-09 Copper wire surface cleaning mechanism

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202422207055.1U CN223145423U (en) 2024-09-09 2024-09-09 Copper wire surface cleaning mechanism

Publications (1)

Publication Number Publication Date
CN223145423U true CN223145423U (en) 2025-07-25

Family

ID=96460335

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202422207055.1U Active CN223145423U (en) 2024-09-09 2024-09-09 Copper wire surface cleaning mechanism

Country Status (1)

Country Link
CN (1) CN223145423U (en)

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