Neodymium iron boron circular ring chamfering machine

By designing the neodymium iron boron ring chamfering machine for transmission and recycling components, the problem of water spraying resources of the chamfering machine is solved, and the water resource recycling and utilization and the cleanliness of the processing environment are achieved.

CN223130232UActive Publication Date: 2025-07-22诸暨意创磁性技术有限公司
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202422322390.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-23
Publication Date
2025-07-22
Estimated Expiration
2034-09-23

AI Technical Summary

Technical Problem

After spraying water from existing chamfering machines, water resources are seriously wasted and the processing environment is affected.

Method used

A neodymium iron boron ring chamfer machine including transmission assembly and recycling assembly is designed to collect spray water through chamfer grooves and return pipes to realize the recycling of water resources.

Benefits of technology

The recycling and utilization of water resources is realized, the random flow of water flow is avoided, and the chamfering machine and processing environment is kept clean and tidy.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223130232U_ABST
    Figure CN223130232U_ABST
Patent Text Reader

Abstract

The utility model discloses a neodymium iron boron circular ring chamfering machine, and belongs to the technical field of chamfering. A neodymium iron boron circular ring chamfering machine is used for machining chamfers on the outer edge of a circular ring and comprises a conveying assembly and a recycling assembly. The conveying assembly comprises a chamfering groove and a conveying belt. The chamfering groove is horizontally and fixedly arranged, the head end and the tail end of the chamfering groove are communicated, the notch width of the chamfering groove is matched with the thickness of the circular ring, and the circular ring is arranged in the chamfering groove. The conveying belt is arranged on the upper side of the chamfering groove, is driven by the conveying wheel and is in friction butt joint with the outer surface of the circular ring to drive the circular ring to move; the recycling assembly is arranged at the tail end of the chamfering groove, and the bottom of the chamfering groove communicates with the outside through the recycling assembly. Water sprayed by the chamfering machine can be collected, water resources are recycled, meanwhile, water flow is prevented from flowing randomly, and the chamfering machine and the machining environment are guaranteed to be clean and tidy.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The utility model belongs to the technical field of circular chamfering, and more specifically, relates to a neodymium iron boron circular chamfering machine. Background Art

[0002] A chamfering machine is a machine specialized for chamfering workpieces and removing burrs from products processed by milling, planing, etc. During the use of a chamfering machine, it is often necessary to continuously spray water to cool the grinding wheel to help the grinding wheel dissipate heat, prevent the grinding wheel from deforming or being damaged due to overheating, and at the same time, the sprayed water can wash away the grinding debris to maintain the stability of the grinding wheel function. After the existing chamfering machine sprays water, the water flow can only flow out along the outlet of the chamfering groove, which not only causes waste of water resources, but also affects the cleanliness of the chamfering machine and the processing environment, and requires personnel to regularly clean the equipment and the ground. Summary of the Utility Model

[0003] The technical problem to be solved by the utility model is to provide a neodymium iron boron circular chamfering machine, which can collect the water sprayed by the chamfering machine, realize the recycling of water resources, and at the same time avoid the random flow of water, ensuring the cleanliness of the chamfering machine and the processing environment.

[0004] A neodymium iron boron circular chamfering machine of the utility model is used for processing the chamfer of the outer edge of a circular ring, and comprises a transmission component and a recovery component. The transmission component includes a chamfering groove and a conveyor belt. The chamfering groove is horizontally and fixedly arranged, with the head and the tail being communicated. The width of the groove opening of the chamfering groove matches the thickness of the circular ring, and the circular ring is placed in the chamfering groove. The conveyor belt is arranged on the upper side of the chamfering groove and is driven by a transmission wheel. The conveyor belt is in frictional contact with the outer surface of the circular ring to drive the circular ring to move. The recovery component is arranged at the tail end of the chamfering groove, and the bottom of the chamfering groove is communicated with the outside through the recovery component.

[0005] As a further improvement of the utility model, the chamfering groove is of a concave structure, and a through processing groove is arranged on one side of the chamfering groove. A grinding wheel is arranged in the processing groove, and the output end of the grinding wheel is in contact with the side surface of the circular ring. The grinding wheel is connected to the output end of an external driving motor.

[0006] As a further improvement of the utility model, it further comprises a fixing plate fixedly arranged on one side of the chamfering groove. A transmission wheel and a bottom wheel are fixedly arranged on the side surface of the fixing plate. The bottom wheels are respectively arranged on the upper sides of the head and the tail ends of the chamfering groove. A plurality of transmission wheels are arranged above the bottom wheels. The conveyor belt is wound around the outer circumferences of the transmission wheels and the bottom wheels to extend to the upper side of the chamfering groove in a tensioned state. The conveyor belt located on the upper side of the chamfering groove is parallel to the chamfering groove.

[0007] As a further improvement of the utility model, a plurality of water pipes are fixedly arranged on one side of the chamfering groove. The water outlet of the water pipe is communicated with the inner side of the chamfering groove, and the water inlet of the water pipe is communicated with an external water source. The plurality of water pipes are horizontally arranged side by side on one side of the chamfering groove.

[0008] As a further improvement of the present utility model, the recycling assembly includes a water leakage port and a return pipe. The water leakage port is arranged at the tail end of the chamfering groove, and the water leakage port penetrates through the bottom of the chamfering groove. The return pipe is arranged on the lower side of the water leakage port, and the pipe orifice of the return pipe covers the entire water leakage port.

[0009] As a further improvement of the present utility model, the water leakage port includes a plurality of through holes in the shape of straight groove openings, and the through holes are arranged at intervals.

[0010] As a further improvement of the present utility model, it further includes a discharge chute. The discharge chute is fixedly arranged at the outlet of the chamfering groove. The width of the discharge chute matches the thickness of the ring. The discharge chute is inclined downward along the horizontal plane for collecting the chamfered rings.

[0011] Compared with the prior art, the beneficial effects of the present utility model are as follows:

[0012] By arranging the conveying assembly and the recycling assembly, the water flow sprayed in the water pipe flows out from the water leakage port along the chamfering groove and is collected by the return pipe, which can realize the collection of the water sprayed by the chamfering machine, realize the recycling of water resources, and at the same time avoid the random flow of water, ensuring the cleanliness of the chamfering machine and the processing environment. Description of the Drawings

[0013] Figure 1 is a schematic diagram of the overall structure of the present utility model;

[0014] Figure 2 is a schematic diagram of the structure of the grinding wheel of the present utility model;

[0015] Figure 3 is a partial cross-sectional view of the grinding wheel of the present utility model;

[0016] Figure 4 is a schematic diagram of the structure of the water leakage port, the discharge chute and the return pipe of the present utility model.

[0017] Explanation of the reference numerals in the drawings:

[0018] Fixed plate 1, conveyor wheel 2, conveyor belt 3, bottom wheel 4, chamfering groove 5, grinding wheel 6, processing groove 7, water pipe 8, water leakage port 9, return pipe 10, discharge chute 11. Detailed Embodiment

[0019] Specific Embodiment 1: Please refer to Figures 1-4 a neodymium iron boron ring chamfering machine for processing the chamfer on the outer edge of the ring, which includes a transmission assembly and a recycling assembly.

[0020] The transmission component includes a chamfered groove 5 and a conveyor belt 3. The chamfered groove 5 is horizontally and fixedly arranged, with its head and tail ends communicating with each other. The width of the notch of the chamfered groove 5 matches the thickness of the ring. The ring is placed in the chamfered groove 5 and is limited within the chamfered groove 5. The conveyor belt 3 is arranged above the chamfered groove 5 and is driven by a transmission wheel. The conveyor belt 3 is in frictional contact with the outer surface of the ring to drive the ring to move. The recycling component is arranged at the tail end of the chamfered groove 5, and the bottom of the chamfered groove 5 is connected to the outside through the recycling component.

[0021] The chamfered groove 5 has a concave structure, and a through processing groove 7 is opened on one side of the chamfered groove 5. A grinding wheel 6 is arranged in the processing groove 7. The output end of the grinding wheel 6 contacts the side surface of the ring, and the grinding wheel 6 is connected to the output end of an external driving motor. It also includes a fixing plate 1 fixedly arranged on one side of the chamfered groove 5. A conveyor wheel 2 and a bottom wheel 4 are fixedly arranged on the side surface of the fixing plate 1. The bottom wheels 4 are respectively arranged above the head and tail ends of the chamfered groove 5. A plurality of conveyor wheels 2 are arranged above the bottom wheels 4. The conveyor belt 3 is wound around the outer circumferences of the conveyor wheels 2 and the bottom wheels 4 to extend above the chamfered groove 5 in a tensioned state. The conveyor belt 3 located above the chamfered groove 5 is parallel to the chamfered groove 5. The conveyor wheels 2 and the bottom wheels 4 are respectively driven by an external conveyor motor. The driving of the external motor belongs to the existing conventional technical means, and its working principle and connection relationship will not be elaborated here.

[0022] A plurality of water pipes 8 are fixedly arranged on one side of the chamfered groove 5. The water outlet of the water pipe 8 communicates with the inner side of the chamfered groove 5, and the water inlet of the water pipe 8 communicates with an external water source. The plurality of water pipes 8 are horizontally arranged side by side on one side of the chamfered groove 5. The water pipes 8 continuously spray water into the chamfered groove 5 to cool the grinding wheel and wash away the grinding debris.

[0023] The recycling component includes a water leakage port 9 and a return pipe 10. The water leakage port 9 is arranged at the tail end of the chamfered groove 5, and the water leakage port 9 penetrates the bottom of the chamfered groove 5. The return pipe 10 is arranged below the water leakage port 9, and the pipe orifice of the return pipe 10 covers the entire water leakage port 9. In this embodiment, the water leakage port 9 includes a plurality of through holes in the shape of straight groove openings, and the through holes are arranged at intervals.

[0024] It also includes a discharge chute 11. The discharge chute 11 is fixedly arranged at the outlet of the chamfered groove 5. The width of the discharge chute 11 matches the thickness of the ring. The discharge chute 11 slopes downward along the horizontal plane for collecting the chamfered rings.

[0025] Working principle:

[0026] The circular ring enters from the head end of the chamfering groove 5. The left and right sides of the circular ring are limited within the chamfering groove 5. The upper side of the circular ring abuts against and rubs against the conveyor belt 3. Under the action of friction, the circular ring is driven to roll forward along the chamfering groove 5. When the circular ring passes by the grinding wheel, the edge is ground to complete the chamfer. At the same time, the water pipe 8 sprays water into the chamfering groove 5 to cool the grinding wheel and wash away the grinding debris. The circular ring rolls out from the discharge chute 11, and the water flows into the return pipe 10 from the water leakage port 9, which can achieve the collection of the water sprayed by the chamfering machine, realize the recycling of water resources, and at the same time avoid the random flow of water, ensuring the cleanliness of the chamfering machine and the processing environment.

Claims

1. A neodymium iron boron ring chamfering machine for machining the chamfer of the outer edge of a ring, characterized in that: It includes a transmission component and a recycling component; the transmission component includes a chamfering groove (5) and a conveyor belt (3); the chamfering groove (5) is horizontally fixedly arranged, with its head and tail ends communicating with each other, the width of the notch of the chamfering groove (5) matches the thickness of the ring, and the ring is placed in the chamfering groove (5); the conveyor belt (3) is arranged on the upper side of the chamfering groove (5), the conveyor belt (3) is driven by a transmission wheel, and the conveyor belt (3) is in frictional contact with the outer surface of the ring to drive the ring to move; the recycling component is arranged at the tail end of the chamfering groove (5), and the bottom of the chamfering groove (5) is connected to the outside through the recycling component.

2. The neodymium iron boron circular chamfering machine according to claim 1, wherein: The chamfering groove (5) is of a concave structure, and a through processing groove (7) is opened on one side of the chamfering groove (5); a grinding wheel (6) is arranged in the processing groove (7), the output end of the grinding wheel (6) is in contact with the side surface of the ring, and the grinding wheel (6) is connected to the output end of an external driving motor.

3. A neodymium iron boron circular chamfering machine according to claim 1, characterized in that: It also includes a fixing plate (1) fixedly arranged on one side of the chamfering groove (5); a transmission wheel (2) and a bottom wheel (4) are fixedly arranged on the side surface of the fixing plate (1); the bottom wheels (4) are respectively arranged on the upper sides of the head and tail ends of the chamfering groove (5); a plurality of transmission wheels (2) are arranged on the upper side of the bottom wheels (4); the conveyor belt (3) is wound around the outer circumferences of the transmission wheels (2) and the bottom wheels (4) to extend to the upper side of the chamfering groove (5) in a tensioned state; the conveyor belt (3) located on the upper side of the chamfering groove (5) is parallel to the chamfering groove (5).

4. A neodymium iron boron ring chamfering machine according to claim 1, characterized in that: A plurality of water pipes (8) are fixedly arranged on one side of the chamfering groove (5); the water outlet of the water pipe (8) is communicated with the inner side of the chamfering groove (5), and the water inlet of the water pipe (8) is communicated with an external water source; the plurality of water pipes (8) are horizontally arranged side by side on one side of the chamfering groove (5).

5. A neodymium iron boron ring chamfering machine according to claim 1, characterized in that: The recycling component includes a water leakage port (9) and a return pipe (10); the water leakage port (9) is arranged at the tail end of the chamfering groove (5), and the water leakage port (9) penetrates through the bottom of the chamfering groove (5); the return pipe (10) is arranged under the water leakage port (9), and the pipe orifice of the return pipe (10) covers the entire water leakage port (9).

6. The neodymium iron boron circular chamfering machine according to claim 5, wherein: The water leakage port (9) includes a plurality of through holes in the shape of straight slot openings, and the through holes are arranged at intervals.

7. A neodymium iron boron ring chamfering machine according to claim 1, characterized in that: It also includes a discharge chute (11); the discharge chute (11) is fixedly arranged at the outlet of the chamfering groove (5), the width of the discharge chute (11) matches the thickness of the ring, and the discharge chute (11) slopes downward along the horizontal plane for collecting the chamfered rings.