High-gloss, high-efficiency spiral chamfering tool

The design of the threaded rod, rolling bearing, and bearing housing simplifies the installation and disassembly process of the high-gloss and high-efficiency spiral chamfering tool, solves the problem of troublesome disassembly, and improves work efficiency.

CN224273420UActive Publication Date: 2026-05-26KUNSHAN RUIFUTE METAL TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
KUNSHAN RUIFUTE METAL TECH CO LTD
Filing Date
2025-06-12
Publication Date
2026-05-26

AI Technical Summary

Technical Problem

High-gloss, high-efficiency spiral chamfering tools are difficult to disassemble and install after prolonged use, affecting work progress and efficiency.

Method used

The design incorporates a threaded rod, rolling bearings, and bearing housing. By rotating the handle, the threaded rod rotates, the threaded cylinder moves, and the connecting plate pushes the positioning rod to slide, achieving rapid positioning of the insertion rod and simplifying the installation and disassembly process.

Benefits of technology

It enables the rapid installation and disassembly of high-gloss and high-efficiency spiral chamfering tools, improving the work efficiency of staff.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224273420U_ABST
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Abstract

This utility model proposes a high-gloss, high-efficiency spiral chamfering tool, relating to the field of high-gloss, high-efficiency spiral chamfering tools. It includes a tool body, with a housing connected to the top of the tool body. Two power mechanisms are embedded in the inner wall of the housing. A sleeve is embedded in the upper surface of the housing, and positioning mechanisms are embedded on both the left and right sides of the sleeve. An insert is located on the top of the housing. This utility model, through the cooperation of a threaded rod, rolling bearing, and bearing seat, facilitates the rotation of the threaded rod while the threaded cylinder moves according to the rotation of the threaded rod. Simultaneously, the movement of the threaded cylinder facilitates the movement of the connecting plate, pushing the positioning rod. This allows the positioning rod to slide inside the sliding cylinder and easily insert into the positioning groove. Subsequently, the cooperation between the insert and the positioning groove facilitates the limiting of the insert, thereby facilitating the quick installation and disassembly of the tool body. This method speeds up the work process and is beneficial for current use.
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Description

Technical Field

[0001] This utility model relates to the field of high-gloss and high-efficiency spiral chamfering tools, specifically high-gloss and high-efficiency spiral chamfering tools. Background Technology

[0002] The high-gloss, high-efficiency spiral chamfering tool is an advanced cutting tool designed specifically for precision chamfering. It combines the characteristics of high-gloss surface treatment and high-efficiency machining, and is widely used in fields with high requirements for surface quality and machining efficiency.

[0003] Currently, high-gloss and high-efficiency spiral chamfering cutters are prone to severe dulling after prolonged use, necessitating disassembly and replacement. However, the disassembly and installation of these cutters are currently quite cumbersome, significantly reducing the work progress of operators and hindering their use. Improvements are needed. Utility Model Content

[0004] The purpose of this utility model is to provide a high-gloss and high-efficiency spiral chamfering tool to solve the problems mentioned in the background art and overcome its technical defects.

[0005] To solve the above technical problems, the technical solution adopted by this utility model is: a high-gloss and high-efficiency spiral chamfering tool, including a tool body, a housing connected to the top of the tool body, two power mechanisms embedded in the inner side wall of the housing, a sleeve embedded in the upper surface of the housing, positioning mechanisms embedded in the left and right sides of the sleeve, and a plug provided on the top of the housing.

[0006] As a further improvement of this utility model: the plug-in includes a rod, and positioning grooves are provided on both the left and right sides of the rod.

[0007] As a further embodiment of this utility model: each of the positioning mechanisms includes a slide cylinder embedded in the sleeve, a positioning rod is slidably connected to the inner wall of each slide cylinder, and a connecting plate is connected to the upper surface of each positioning rod.

[0008] As a further improvement of this utility model: each of the positioning rods is adapted to the slide cylinder, and each of the positioning rods is adapted to the positioning groove.

[0009] As a further embodiment of this utility model: each of the power mechanisms includes a rolling bearing embedded in the housing, the inner ring of each rolling bearing is connected to a threaded rod, the ends of the two threaded rods that are close to each other are connected to bearing seats, the sides of the two bearing seats that are close to each other are respectively connected to the left and right sides of the sleeve, the outer surface of each threaded rod is threadedly connected to a threaded cylinder, and the outer surface of each threaded cylinder is connected to the upper surface of the connecting plate.

[0010] As a further improvement of this utility model: a rotating handle is provided on both the left and right sides of the housing, and the side of the two rotating handles that are close to each other is connected to the side of the two threaded rods that are far apart from each other.

[0011] As a further improvement of this utility model: a model mark is provided on the front of the housing, and the back of the model mark is connected to the front of the housing.

[0012] As a further improvement of this utility model: a reinforcing cylinder is connected to the outer surface of the tool body, and the upper surface of the reinforcing cylinder is connected to the bottom surface of the shell.

[0013] Compared with the prior art, the beneficial effects of this utility model include:

[0014] The threaded rod, rolling bearing, and bearing housing work together to facilitate the rotation of the threaded rod while the threaded cylinder moves in accordance with the rotation of the threaded rod. At the same time, the movement of the threaded cylinder facilitates the movement of the connecting plate and the positioning rod. This allows the positioning rod to slide inside the sliding cylinder and easily insert into the positioning groove. Subsequently, the insertion rod is limited by the cooperation between the insertion rod and the positioning groove, which facilitates the quick installation and disassembly of the tool body. This method speeds up the work process and is beneficial for current use. Attached Figure Description

[0015] The disclosure of this utility model is illustrated with reference to the accompanying drawings. It should be understood that the drawings are for illustrative purposes only and are not intended to limit the scope of protection of this utility model. In the drawings, the same reference numerals are used to refer to the same parts. Wherein:

[0016] Figure 1 A schematic diagram of the overall three-dimensional structure of a high-gloss, high-efficiency spiral chamfering tool;

[0017] Figure 2 A frontal sectional view of the housing of a high-gloss, high-efficiency spiral chamfering tool;

[0018] Figure 3 A side view of the three-dimensional structure of the housing of a high-gloss, high-efficiency spiral chamfering tool;

[0019] Figure 4 A three-dimensional structural diagram of the high-gloss, high-efficiency spiral chamfering tool power mechanism viewed from the front.

[0020] The following are the labels in the diagram: 1. Housing; 2. Rotary handle; 3. Insert; 301. Insert rod; 302. Positioning groove; 4. Power mechanism; 401. Rolling bearing; 402. Threaded cylinder; 403. Threaded rod; 404. Bearing seat; 5. Positioning mechanism; 501. Slide cylinder; 502. Positioning rod; 503. Connecting plate; 6. Tool body; 7. Reinforcing cylinder; 8. Model number; 9. Sleeve. Detailed Implementation

[0021] It is readily understood that, based on the technical solution of this utility model, those skilled in the art can propose various interchangeable structural methods and implementations without altering the essential spirit of this utility model. Therefore, the following detailed embodiments and accompanying drawings are merely illustrative descriptions of the technical solution of this utility model and should not be considered as the entirety of this utility model or as limitations or restrictions on the technical solution of this utility model.

[0022] An embodiment of the present invention is shown in conjunction with the accompanying drawings.

[0023] Please see Figures 1-4 In this embodiment, the high-gloss and high-efficiency spiral chamfering tool includes a tool body 6, a housing 1 connected to the top of the tool body 6, two power mechanisms 4 embedded in the inner sidewall of the housing 1, a sleeve 9 embedded in the upper surface of the housing 1, positioning mechanisms 5 embedded in the left and right sides of the sleeve 9, and a plug 3 provided on the top of the housing 1.

[0024] In this embodiment, the plug-in 3 includes a plug rod 301. Positioning grooves 302 are provided on both the left and right sides of the plug rod 301. The positioning grooves 302 provided on the plug rod 301 facilitate the limiting of the plug rod 301. Each positioning mechanism 5 includes a slide cylinder 501 embedded with the sleeve 9. A positioning rod 502 is slidably connected to the inner wall of each slide cylinder 501. A connecting plate 503 is connected to the upper surface of each positioning rod 502. Through the design of the slide cylinder 501 and the positioning rod 502, it is easy for the positioning rod 502 to be inserted into the positioning groove 302 to limit the plug rod 301. At the same time, it is convenient to install and disassemble the tool body 6.

[0025] In this embodiment, each power mechanism 4 includes a rolling bearing 401 embedded in the housing 1. The inner ring of each rolling bearing 401 is connected to a threaded rod 403. The ends of the two threaded rods 403 that are close to each other are connected to bearing seats 404. The sides of the two bearing seats 404 that are close to each other are respectively connected to the left and right sides of the sleeve 9. The outer surface of each threaded rod 403 is threadedly connected to a threaded cylinder 402. The outer surface of each threaded cylinder 402 is connected to the upper surface of the connecting plate 503. By utilizing the cooperation of the threaded rod 403, the rolling bearing 401 and the bearing seat 404, the threaded cylinder 402 can move according to the rotation of the threaded rod 403 while the threaded rod 403 rotates. At the same time, the movement of the threaded cylinder 402 can facilitate the connection plate 503 to push the positioning rod 502 to move.

[0026] In this embodiment, a model number 8 is provided on the front of the housing 1, and the back of the model number 8 is connected to the front of the housing 1. The model number 8 is used to help the staff understand the model of the tool body 6. Rotating handles 2 are provided on both the left and right sides of the housing 1. The side of the two rotating handles 2 that are close to each other is connected to the side of the two threaded rods 403 that are far apart from each other. The rotating handles 2 are used to drive the threaded rods 403 to rotate. Each positioning rod 502 is adapted to the slide cylinder 501 and each positioning rod 502 is adapted to the positioning groove 302. A reinforcing cylinder 7 is connected to the outer surface of the tool body 6. The upper surface of the reinforcing cylinder 7 is connected to the bottom surface of the housing 1. The design of the reinforcing cylinder 7 makes the connection between the tool body 6 and the housing 1 more stable.

[0027] Working principle: In use, the housing 1 is moved first to drive the sleeve 9 to be fitted onto the surface of the insert rod 301. At this time, according to the rotation of the handle 2, the threaded rod 403 can be driven to rotate inside the rolling bearing 401 and bearing seat 404. Through the connection between the threaded rod 403 and the threaded cylinder 402, the threaded cylinder 402 moves on the surface of the threaded rod 403, driving the connecting plate 503 to move. Then, the connecting plate 503 pushes the positioning rod 502 to move inside the slide cylinder 501. At this time, the positioning rod 502 is inserted into the positioning groove 302, and the insert rod 301 is limited, thereby completing the quick installation of the tool body 6.

[0028] The technical scope of this utility model is not limited to the content described above. Those skilled in the art can make various modifications and variations to the above embodiments without departing from the technical concept of this utility model, and all such modifications and variations should fall within the protection scope of this utility model.

Claims

1. A high-gloss, high-efficiency spiral chamfering tool, characterized in that: The tool body (6) is connected to a housing (1) at its top. Two power mechanisms (4) are embedded in the inner wall of the housing (1). A sleeve (9) is embedded on the upper surface of the housing (1). A positioning mechanism (5) is embedded on both the left and right sides of the sleeve (9). A plug-in (3) is provided on the top of the housing (1).

2. The high-gloss, high-efficiency spiral chamfering tool according to claim 1, characterized in that, The plug (3) includes a plug rod (301), and positioning grooves (302) are provided on both the left and right sides of the plug rod (301).

3. The high-gloss, high-efficiency spiral chamfering tool according to claim 1, characterized in that, Each of the positioning mechanisms (5) includes a slide cylinder (501) embedded in the sleeve (9), and a positioning rod (502) is slidably connected to the inner wall of each slide cylinder (501), and a connecting plate (503) is connected to the upper surface of each positioning rod (502).

4. The high-gloss, high-efficiency spiral chamfering tool according to claim 3, characterized in that, Each of the positioning rods (502) is adapted to the slide (501), and each of the positioning rods (502) is adapted to the positioning groove (302).

5. The high-gloss, high-efficiency spiral chamfering tool according to claim 1, characterized in that, Each of the power mechanisms (4) includes a rolling bearing (401) embedded in the housing (1). The inner ring of each rolling bearing (401) is connected to a threaded rod (403). The two threaded rods (403) are connected to a bearing seat (404) at their close ends. The two bearing seats (404) are connected to the left and right sides of the sleeve (9) respectively. The outer surface of each threaded rod (403) is threaded with a threaded cylinder (402). The outer surface of each threaded cylinder (402) is connected to the upper surface of the connecting plate (503).

6. The high-gloss, high-efficiency spiral chamfering tool according to claim 5, characterized in that, The housing (1) is provided with rotating handles (2) on both the left and right sides. The two rotating handles (2) are connected to the opposite ends of the two threaded rods (403).

7. The high-gloss, high-efficiency spiral chamfering tool according to claim 1, characterized in that, The front of the housing (1) is provided with a model mark (8), and the back of the model mark (8) is connected to the front of the housing (1).

8. The high-gloss, high-efficiency spiral chamfering tool according to claim 1, characterized in that, The outer surface of the cutter body (6) is connected to a reinforcing cylinder (7), and the upper surface of the reinforcing cylinder (7) is connected to the bottom surface of the housing (1).