Arrangement structure for carbon brush processing

CN224736892UActive Publication Date: 2026-09-11NANTONG MOXIN ELECTRIC CARBON CO LTD
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Patent Information

Application Number
CN202522218474.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-10-21
Publication Date
2026-09-11
Estimated Expiration
2035-10-21

AI Technical Summary

Technical Problem

对碳刷进行排布时,无法在排布过程中去除碳刷表面的粉尘,会影响后续加工的效果

Benefits of technology

通过设置的扇风吹尘件、扇风排尘件与供气件,可将排布箱安装至输送带进料端的上方位置,然后可将需要排布的碳刷依次放入进料管内,使得碳刷顺着进料管进入排布箱内,可通过伺服电机驱动盘式排布件旋转对碳刷依次进行排布,将碳刷依次旋转至靠近扇风吹尘件的一侧,可通过供气件将高压气体分别导送至扇风吹尘件以及扇风排尘件内,可通过扇风吹尘件对盘式排布件上排布的碳刷依次进行气吹,碳刷上被吹落的粉尘可通过扇风排尘件排出,当盘式排布件将碳刷旋转至与出料管相对应时,可使碳刷依次从出料管排出,并在输送带上进行排布,该结构能够对碳刷进行排布,并对排布过程中的碳刷进行粉尘清理,可以保持碳刷的整洁,便于后续的加工。

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to carbon brush processing technical field, and disclose a kind of arrangement structure for carbon brush processing, including arrangement box;Cavity is opened in the arrangement box, servo motor for driving disc arrangement piece rotation is installed in the cavity on the arrangement box and disc arrangement piece, the top of the arrangement box is equipped with the feed pipe being communicated with cavity, the bottom of the arrangement box is equipped with the discharge pipe being communicated with cavity;One side of the arrangement box is equipped with the fan dust blowing element being communicated with cavity, the other side of the arrangement box is equipped with the fan dust exhaust element being communicated with cavity, the fan dust blowing element and fan dust exhaust element are all connected with gas supply element.The utility model proposes a kind of arrangement structure for carbon brush processing, solves the problem that carbon brush is arranged, carbon brush on dust is inconvenient to clean.
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Description

Technical Field

[0001] This utility model relates to the field of carbon brush processing technology, and in particular to an arrangement structure for carbon brush processing. Background Technology

[0002] A carbon brush is a component used to transmit electric current. It is usually made of carbon material and has good conductivity and wear resistance. In electric motors and generators, carbon brushes transmit current by contacting rotating parts to enable the equipment to operate normally. When processing carbon brushes, they need to be arranged so that they can be processed one by one. However, the existing carbon brush arrangement method is usually to place the carbon brushes on a conveyor belt in sequence and then transport them to the processing station for processing. When arranging carbon brushes, it is impossible to remove dust from the surface of the carbon brushes during the arrangement process, which will affect the effect of subsequent processing.

[0003] To address the aforementioned issues, this application proposes an arrangement structure for carbon brush processing. Utility Model Content

[0004] Based on the technical problems existing in the background art, this utility model proposes an arrangement structure for carbon brush processing.

[0005] This utility model proposes a carbon brush processing layout structure, including a layout box; The layout box has a cavity, and a disc-type layout component located in the cavity and a servo motor for driving the disc-type layout component to rotate are installed on the layout box. A feed pipe communicating with the cavity is installed on the top of the layout box, and a discharge pipe communicating with the cavity is installed on the bottom of the layout box. A fan-blowing dust removal device communicating with the cavity is installed on one side of the arrangement box, and a fan-exhausting dust removal device communicating with the cavity is installed on the other side of the arrangement box. Both the fan-blowing dust removal device and the fan-exhausting dust removal device are connected to an air supply device.

[0006] Preferably, the disc-type layout component includes a layout disc, the servo motor is mounted on the front of the layout box, the layout disc is located in the middle of the cavity, the output end of the servo motor is connected to the center of the layout disc, the layout disc has a plurality of circumferential layout grooves, springs are installed in the layout grooves, and top blocks that slide against the inner wall of the layout grooves are installed on the springs.

[0007] Preferably, the fan dust blowing component includes a dust blowing pipe, a first rotating rod, and a first axial flow fan blade. The dust blowing pipe is horizontally installed on one side of the arrangement box, and a dust blowing channel communicating with the cavity is opened in the dust blowing pipe. The first rotating rod is horizontally arranged in the dust blowing channel, and one end of the first rotating rod is rotatably connected to the inner wall of the dust blowing pipe away from the arrangement box. The first axial flow fan blade is installed in the middle of the first rotating rod.

[0008] Preferably, the fan dust removal component includes a dust removal pipe, which is horizontally installed on the other side of the distribution box. A dust removal channel is opened inside the dust removal pipe and communicates with the cavity. An end block is installed at the end of the dust removal pipe away from the distribution box, and there is a gap between the end block and the dust removal pipe. A second rotating rod extending into the dust removal channel is rotatably connected to the end of the end block near the dust removal pipe. Two second axial flow fan blades are installed on the second rotating rod, and the two second axial flow fan blades are respectively located in the dust removal channel and between the dust removal pipe and the end block.

[0009] Preferably, the air supply component includes an air supply pipe and an air inlet pipe. The two ends of the air supply pipe are respectively connected to a dust blowing pipe and a dust exhaust pipe, and the two ends of the air supply pipe are respectively arranged towards a first axial flow fan blade and a second axial flow fan blade located in the dust exhaust pipe. The air inlet pipe is connected to the middle of the air supply pipe, and the end of the air inlet pipe away from the air supply pipe is connected to an air pump.

[0010] The above-mentioned technical solution of this utility model has the following beneficial technical effects: By incorporating a fan-driven dust-blowing component, a fan-driven dust-removing component, and an air supply component, the carbon brush arrangement box can be installed above the feed end of the conveyor belt. The carbon brushes to be arranged can then be sequentially placed into the feed pipe, allowing them to enter the arrangement box. A servo motor drives a disc-type arrangement component to rotate and arrange the carbon brushes sequentially, rotating them to the side closest to the fan-driven dust-blowing component. The air supply component then guides high-pressure gas to both the fan-driven dust-blowing and dust-removing components, allowing the fan-driven dust-blowing component to sequentially blow air onto the carbon brushes arranged on the disc-type arrangement component. Dust blown off the carbon brushes is discharged through the fan-driven dust-removing component. When the disc-type arrangement component rotates the carbon brushes to align with the discharge pipe, the carbon brushes are sequentially discharged from the discharge pipe and arranged on the conveyor belt. This structure can arrange carbon brushes and clean dust during the arrangement process, keeping the carbon brushes clean and facilitating subsequent processing. Attached Figure Description

[0011] Figure 1 This is a schematic diagram of the arrangement structure for carbon brush processing proposed in this utility model.

[0012] Figure 2 This utility model Figure 1 A schematic diagram of the planar structure.

[0013] Reference numerals: 1. Arrangement box; 2. Disc-type arrangement component; 21. Arrangement disc; 22. Spring; 23. Top block; 3. Servo motor; 4. Feed pipe; 5. Discharge pipe; 6. Fan and dust removal component; 61. Dust removal pipe; 62. First rotating rod; 63. First axial flow fan blade; 7. Fan and dust removal component; 71. Dust removal pipe; 72. End block; 73. Second rotating rod; 74. Second axial flow fan blade; 8. Air supply component; 81. Air supply pipe; 82. Air inlet pipe. Detailed Implementation

[0014] To make the objectives, technical solutions, and advantages of this utility model clearer, the present utility model will be further described in detail below with reference to specific embodiments and accompanying drawings. It should be understood that these descriptions are merely exemplary and not intended to limit the scope of this utility model. Furthermore, descriptions of well-known structures and technologies are omitted in the following description to avoid unnecessarily obscuring the concept of this utility model.

[0015] like Figure 1 and Figure 2 As shown, the present invention proposes a carbon brush processing arrangement structure, including an arrangement box 1; In this embodiment, the layout box 1 has a cavity, and a disc-type layout component 2 and a servo motor 3 for driving the disc-type layout component 2 to rotate are installed on the layout box 1. The disc-type layout component 2 includes a layout disc 21, the servo motor 3 is installed on the front of the layout box 1, the layout disc 21 is located in the middle of the cavity, the output end of the servo motor 3 is connected to the center of the layout disc 21, the layout disc 21 has a plurality of circumferential layout grooves, springs 22 are installed in the layout grooves, and top blocks 23 that slide against the inner wall of the layout grooves are installed on the springs 22.

[0016] In this embodiment, a feed pipe 4 communicating with the cavity is installed on the top of the arrangement box 1, and a discharge pipe 5 communicating with the cavity is installed on the bottom of the arrangement box 1.

[0017] In this embodiment, a fan-shaped dust-blowing component 6 communicating with a cavity is installed on one side of the arrangement box 1. The fan-shaped dust-blowing component 6 includes a dust-blowing pipe 61, a first rotating rod 62, and a first axial flow fan blade 63. The dust-blowing pipe 61 is installed horizontally on one side of the arrangement box 1, and a dust-blowing channel communicating with the cavity is opened inside the dust-blowing pipe 61. The first rotating rod 62 is horizontally arranged in the dust-blowing channel, and one end of the first rotating rod 62 is rotatably connected to the inner wall of the end of the dust-blowing pipe 61 away from the arrangement box 1. The first axial flow fan blade 63 is installed in the middle of the first rotating rod 62.

[0018] In this embodiment, a fan-driven dust removal component 7 communicating with the cavity is installed on the other side of the arrangement box 1. The fan-driven dust removal component 7 includes a dust removal pipe 71, which is installed laterally on the other side of the arrangement box 1. A dust removal channel is opened in the dust removal pipe 71 and communicates with the cavity. An end block 72 is installed at the end of the dust removal pipe 71 away from the arrangement box 1, and there is a gap between the end block 72 and the dust removal pipe 71. A second rotating rod 73 extending into the dust removal channel is rotatably connected to the end of the end block 72 near the dust removal pipe 71. Two second axial flow fan blades 74 are installed on the second rotating rod 73. The two second axial flow fan blades 74 are located in the dust removal channel and between the dust removal pipe 71 and the end block 72, respectively.

[0019] In this embodiment, both the dust blowing component 6 and the dust exhaust component 7 are connected to an air supply component 8. The air supply component 8 includes an air supply pipe 81 and an air inlet pipe 82. The two ends of the air supply pipe 81 are respectively connected to the dust blowing pipe 61 and the dust exhaust pipe 71, and the two ends of the air supply pipe 81 are respectively arranged towards the first axial flow fan blade 63 and the second axial flow fan blade 74 located in the dust exhaust pipe 71. The air inlet pipe 82 is connected to the middle of the air supply pipe 81, and the end of the air inlet pipe 82 away from the air supply pipe 81 is connected to an air pump.

[0020] It should be noted that during use, the carbon brush arrangement box 1 can be installed above the feed end of the conveyor belt. Then, the carbon brushes to be arranged can be placed into the feed pipe 4 in sequence, so that the carbon brushes enter the arrangement box 1 along the feed pipe 4. The servo motor 3 can drive the arrangement disk 21 to rotate, so that the carbon brushes fall into the arrangement grooves opened on the outer periphery of the arrangement disk 21 in sequence. When the arrangement disk 21 rotates and causes the carbon brushes to deviate from the feed pipe 4, under the action of the spring 22, the carbon brushes on the top block 23 can be pressed against the inner wall of the arrangement box 1. When the carbon brushes are rotated to the side close to the dust blowing pipe 61, the air inlet pipe 82 can be connected to the air pump. The high-pressure gas can be guided to the dust blowing pipe 61 and the dust discharge pipe 71 respectively through the air supply pipe 81. Under the action of the body, the first axial flow fan 63 in the dust blowing pipe 61 and the second axial flow fan 74 in the dust discharge pipe 71 can rotate simultaneously. When the first axial flow fan 63 rotates, it can blow air into the cavity. When the second axial flow fan 74 rotates, it can discharge the dust in the cavity to the outside. Thus, the carbon brushes arranged on the arrangement plate 21 are blown by air through the dust blowing pipe 61. The dust blown off the carbon brushes can be discharged through the dust discharge pipe 71. When the carbon brushes are rotated to correspond to the discharge pipe 5, the carbon brushes can be discharged from the discharge pipe 5 in sequence and arranged on the conveyor belt. This structure can arrange the carbon brushes and clean the dust on the carbon brushes during the arrangement process, which can keep the carbon brushes clean and facilitate subsequent processing.

[0021] It should be understood that the specific embodiments described above are merely illustrative or explanatory of the principles of this utility model and do not constitute a limitation thereof. Therefore, any modifications, equivalent substitutions, improvements, etc., made without departing from the spirit and scope of this utility model should be included within its protection scope. Furthermore, the appended claims are intended to cover all variations and modifications falling within the scope and boundaries of the appended claims, or equivalent forms of such scope and boundaries.

Claims

1. A carbon brush processing layout structure, comprising a layout box (1), characterized in that: The arrangement box (1) has a cavity inside. The arrangement box (1) is equipped with a disc arrangement component (2) located in the cavity and a servo motor (3) for driving the disc arrangement component (2) to rotate. The top of the arrangement box (1) is equipped with a feed pipe (4) communicating with the cavity, and the bottom of the arrangement box (1) is equipped with a discharge pipe (5) communicating with the cavity. A fan dust removal device (6) communicating with the cavity is installed on one side of the arrangement box (1), and a fan dust removal device (7) communicating with the cavity is installed on the other side of the arrangement box (1). Both the fan dust removal device (6) and the fan dust removal device (7) are connected to an air supply device (8).

2. The arrangement for processing carbon brushes according to claim 1, characterized in that The disc-type layout component (2) includes a layout disc (21), the servo motor (3) is installed on the front of the layout box (1), the layout disc (21) is located in the middle of the cavity, the output end of the servo motor (3) is connected to the center of the layout disc (21), the layout disc (21) has several circumferential layout grooves, the layout grooves are installed with springs (22), and the springs (22) are installed with top blocks (23) that slide against the inner wall of the layout groove.

3. The arrangement according to claim 2, characterized in that The fan dust blowing component (6) includes a dust blowing pipe (61), a first rotating rod (62) and a first axial flow fan blade (63). The dust blowing pipe (61) is installed horizontally on one side of the arrangement box (1). A dust blowing channel communicating with the cavity is opened in the dust blowing pipe (61). The first rotating rod (62) is installed horizontally in the dust blowing channel, and one end of the first rotating rod (62) is rotatably connected to the inner wall of the end of the dust blowing pipe (61) away from the arrangement box (1). The first axial flow fan blade (63) is installed in the middle of the first rotating rod (62).

4. The carbon brush processing arrangement structure according to claim 3, characterized in that, The fan dust removal component (7) includes a dust removal pipe (71), which is horizontally installed on the other side of the arrangement box (1). A dust removal channel is opened in the dust removal pipe (71) and communicates with the cavity. An end block (72) is installed at the end of the dust removal pipe (71) away from the arrangement box (1), and there is a gap between the end block (72) and the dust removal pipe (71). A second rotating rod (73) extending into the dust removal channel is rotatably connected to the end of the end block (72) near the dust removal pipe (71). Two second axial flow fan blades (74) are installed on the second rotating rod (73). The two second axial flow fan blades (74) are located in the dust removal channel and between the dust removal pipe (71) and the end block (72), respectively.

5. The arrangement according to claim 4, characterized in that The air supply component (8) includes an air supply pipe (81) and an air inlet pipe (82). The two ends of the air supply pipe (81) are connected to the dust blowing pipe (61) and the dust exhaust pipe (71) respectively. The two ends of the air supply pipe (81) are respectively arranged towards the first axial flow fan blade (63) and the second axial flow fan blade (74) located in the dust exhaust pipe (71). The air inlet pipe (82) is connected to the middle of the air supply pipe (81). The end of the air inlet pipe (82) away from the air supply pipe (81) is connected to an air pump.