Part milling device

By designing a protective shell, collection components, and extrusion rollers, the problems of slag splashing and laborious cleaning in traditional parts milling devices are solved, achieving effective slag collection and volume reduction, thus improving the working environment and efficiency.

CN224254854UActive Publication Date: 2026-05-19XIXIAN NEW DISTRICT XINRONGXUAN MACHINERY TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
XIXIAN NEW DISTRICT XINRONGXUAN MACHINERY TECHNOLOGY CO LTD
Filing Date
2025-05-07
Publication Date
2026-05-19

AI Technical Summary

Technical Problem

Traditional milling machines produce flying debris during operation, which affects the cleanliness of the environment, may scratch workers, cause eye injuries, damage precision equipment, and the time and effort required to clean up the debris reduces work efficiency.

Method used

A cleaning mechanism including a protective shell, a collection component, and a squeezing roller was designed. The protective shell is opened and closed by a hydraulic rod, a negative pressure fan adsorbs waste debris, and a motor drives the squeezing roller to crush the waste debris, thereby achieving effective collection of waste debris and reducing its volume.

Benefits of technology

It effectively prevents waste from splashing, efficiently collects waste, reduces the number of cleaning operations, improves the cleanliness and safety of the working environment, and reduces workload.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of part machining, and particularly relates to a part milling device which comprises a supporting frame, a supporting plate is fixedly connected to the top of the supporting frame, an L-shaped plate is fixedly connected to the top of the supporting plate, a milling assembly is arranged on the L-shaped plate, a cleaning mechanism is arranged on the top of the supporting frame, and the cleaning mechanism comprises a protection assembly, a milling assembly and a milling assembly. Comprising a supporting plate, a first sliding groove is formed in the supporting plate, a first sliding block is slidably connected into the sliding groove, a pair of protective shells are fixedly connected to the side wall of the first sliding block, and the protective shells are oppositely arranged and located at the top of a supporting frame. The problems that in the prior art, the cleaning of scattered scraps is time-consuming and labor-consuming, the working efficiency is reduced, and the working intensity is increased are solved.
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Description

Technical Field

[0001] This utility model belongs to the field of parts processing technology, specifically a parts milling device. Background Technology

[0002] A milling machine is a device used to mill parts, typically consisting of a worktable, a milling mechanism, and a control system. The worktable holds the parts to be machined, the milling mechanism drives the milling cutter to rotate via the spindle to cut the parts, and the control system controls the movement and operation during the machining process.

[0003] In existing technologies, when traditional parts milling devices are in operation, the flying debris not only affects the cleanliness of the working environment, but may also scratch the skin of workers, get into their eyes and cause harm, or even damage precision equipment parts. Cleaning up the scattered debris is time-consuming and laborious, reducing work efficiency and increasing work intensity.

[0004] Therefore, this utility model provides a component milling device. Utility Model Content

[0005] To address the shortcomings of existing technologies and solve the problems of slag flying during the operation of traditional parts milling equipment, which not only affects the cleanliness of the working environment but may also scratch the skin of workers, get into their eyes and cause harm, or even damage precision equipment parts, cleaning up the scattered slag is time-consuming and laborious, reducing work efficiency and increasing work intensity.

[0006] The technical solution adopted by this utility model to solve its technical problem is as follows: A component milling device of this utility model includes a support frame, a support plate fixedly connected to the top of the support frame, an L-shaped plate fixedly connected to the top of the support plate, a milling component provided on the L-shaped plate, and a cleaning mechanism provided on the top of the support frame. The cleaning mechanism includes: a protective component, including a first sliding groove opened on the support plate, a first sliding block slidably connected in the sliding groove, a protective shell fixedly connected to the side wall of the first sliding block, and a pair of protective shells arranged opposite to each other and located on the top of the support frame; a driving component for moving the pair of protective shells is provided on the side wall of the support frame; and a collection component, arranged between the opposite side walls of the support frame for collecting waste chips.

[0007] Preferably, the drive assembly includes a hydraulic rod fixed to the side wall of the support frame via a fixing block. The telescopic end of the hydraulic rod is fixed to a fixing block. A pair of rotating rods are rotatably connected to the fixing block via a pair of first rotating shafts. The other end of the rotating rods is rotatably connected to the side wall of the first sliding block via a second rotating shaft.

[0008] Preferably, the collecting assembly includes a pair of slide rails respectively opened on opposite sidewalls of the support frame, a movable box slidably connected between the pair of slide rails, and a pair of circular holes opened at the bottom of the movable box.

[0009] Preferably, a negative pressure fan is provided inside the circular hole, a collection box is placed inside the movable box, and a set of first through holes is opened at the bottom of the collection box.

[0010] Preferably, a filter plate is fixedly connected between opposite sidewalls of the support frame, a set of second through holes is provided on the filter plate, and a second sliding groove is provided on both sides of the support frame. A sliding rod is slidably connected in the second sliding groove. A set of extrusion rollers is fixedly connected between opposite sidewalls of a pair of sliding rods. A rectangular block is fixedly connected to the sidewall of the sliding rod, and an isosceles groove is provided on the rectangular block.

[0011] Preferably, the side wall of the support frame is fixed to a motor by a pair of L-shaped rods, the output end of the motor is provided with a Z-shaped rod, and the other end of the Z-shaped rod is slidably connected in an isosceles groove.

[0012] The beneficial effects of this utility model are as follows:

[0013] 1. The component milling device of this utility model provides protection by opening and closing a pair of protective shells to prevent waste chips from splashing to the outside. Then, the waste chips are collected by a collection component. This solves the problems in the prior art where, during the operation of traditional component milling devices, the splashing of waste chips not only affects the cleanliness of the working environment, but may also scratch the skin of workers, get into their eyes and cause harm, or even damage precision equipment parts. Cleaning up the scattered waste chips is also time-consuming and laborious, reducing work efficiency and increasing work intensity.

[0014] 2. The component milling device of this utility model uses a motor to drive a Z-shaped rod to rotate, so that the Z-shaped rod can slide through an isosceles groove, allowing a rectangular block to move laterally back and forth. This allows a set of extrusion rollers to move back and forth, so that when the waste passes through the set of extrusion rollers, the volume of the waste is crushed and reduced under the action of the extrusion rollers, thereby reducing the space occupied by the waste and reducing the number of times workers need to clean the collection box. Attached Figure Description

[0015] The present invention will be further described below with reference to the accompanying drawings.

[0016] Figure 1 This is a perspective view of the present invention;

[0017] Figure 2 This is a schematic diagram of the hydraulic rod in this utility model;

[0018] Figure 3 This is a schematic diagram of the negative pressure fan in this utility model;

[0019] Figure 4 This is a schematic diagram of the motor in this utility model;

[0020] Figure 5 This is a schematic diagram of the protective shell in this utility model;

[0021] In the diagram: 1. Support frame; 2. Support plate; 3. L-shaped plate; 4. First sliding groove; 5. First sliding block; 6. Protective shell; 7. Hydraulic rod; 8. Fixed block; 9. Rotating rod; 10. Slide rail; 11. Moving box; 12. Circular hole; 13. Negative pressure fan; 14. Collection box; 15. First through hole; 16. Filter plate; 17. Second through hole; 18. Second sliding groove; 19. Sliding rod; 20. Extrusion roller; 21. Rectangular block; 22. Isosceles groove; 23. Motor; 24. Z-shaped rod. Detailed Implementation

[0022] To make the technical means, creative features, objectives and effects of this utility model easier to understand, the present utility model will be further described below in conjunction with specific embodiments.

[0023] like Figures 1 to 5 As shown in the embodiment of this utility model, a component milling device includes a support frame 1, a support plate 2 fixedly connected to the top of the support frame 1, an L-shaped plate 3 fixedly connected to the top of the support plate 2, a milling assembly disposed on the L-shaped plate 3, and a cleaning mechanism disposed on the top of the support frame 1. The cleaning mechanism includes: a protective assembly, including a first sliding groove 4 opened on the support plate 2, a first sliding block 5 slidably connected in the sliding groove, a protective shell 6 fixedly connected to the side wall of the first sliding block 5, and a pair of protective shells 6 arranged opposite to each other and located on the top of the support frame 1; and a driving assembly disposed on the side wall of the support frame 1 for moving the pair of protective shells 6; and a collection assembly disposed between the opposite side walls of the support frame 1 for collecting waste chips.

[0024] During operation, the opening and closing of a pair of protective shells 6 serves a protective function, preventing waste chips from splashing to the outside. Then, the waste chips are collected by the collection component. This solves the problems in the existing technology where, during the operation of traditional parts milling devices, the splashing of waste chips not only affects the cleanliness of the working environment, but may also scratch the skin of workers, get into their eyes and cause harm, or even damage precision equipment parts. Cleaning up the scattered waste chips is time-consuming and laborious, reducing work efficiency and increasing work intensity.

[0025] The drive assembly includes a hydraulic rod 7 fixed to the side wall of the support frame 1 via a fixing block 8. The telescopic end of the hydraulic rod 7 is fixed to the fixing block 8. A pair of rotating rods 9 are rotatably connected to the fixing block 8 via a pair of first rotating shafts. The other end of the rotating rod 9 is rotatably connected to the side wall of the first sliding block 5 via a second rotating shaft.

[0026] During operation, the first sliding block 5 is moved by the hydraulic rod 7, which in turn drives the protective shell 6 to open and close. This design allows for flexible control of the position of the protective shell 6, enabling it to play a protective role during milling and preventing waste chips from splashing to the outside. At the same time, the protective shell 6 can be opened for cleaning or maintenance, making it convenient to operate.

[0027] The collection assembly includes a pair of slide rails 10 respectively opened on opposite side walls of the support frame 1, a movable box 11 slidably connected between the pair of slide rails 10, a pair of circular holes 12 opened at the bottom of the movable box 11, a negative pressure fan 13 is provided in the circular holes 12, a collection box 14 is placed in the movable box 11, and a set of first through holes 15 are opened at the bottom of the collection box 14.

[0028] During operation, the negative pressure fan 13 adsorbs the waste generated during operation, thereby sucking the waste into the collection box 14 inside the mobile box 11 through the negative pressure. This design can efficiently collect waste and prevent the waste from spreading in the air.

[0029] A filter plate 16 is fixedly connected between opposite side walls of the support frame 1. A set of second through holes 17 are provided on the filter plate 16. A second sliding groove 18 is provided on both sides of the support frame 1. A sliding rod 19 is slidably connected in the second sliding groove 18. A set of extrusion rollers 20 is fixedly connected between opposite side walls of a pair of sliding rods 19. A rectangular block 21 is fixedly connected to the side wall of the sliding rod 19. An isosceles groove 22 is provided on the rectangular block 21. A motor 23 is fixedly connected to the side wall of the support frame 1 through a pair of L-shaped rods. A Z-shaped rod 24 is provided at the output end of the motor 23. The other end of the Z-shaped rod 24 is slidably connected in the isosceles groove 22.

[0030] During operation, the motor 23 drives the Z-shaped rod 24 to rotate, allowing the Z-shaped rod 24 to slide within the isosceles groove 22, enabling the rectangular block 21 to move laterally back and forth. This allows a set of extrusion rollers 20 to move back and forth, so that when the waste passes through the set of extrusion rollers 20, the volume of the waste is crushed and reduced under the action of the extrusion rollers 20, thereby reducing the space occupied by the waste and reducing the number of times the staff cleans the collection box 14.

[0031] Working principle: The opening and closing of a pair of protective shells 6 provides protection, preventing waste chips from splashing to the outside. The waste chips are then collected by the collection component. This solves the problems in existing technologies where, during the operation of traditional parts milling devices, flying waste chips not only affect the cleanliness of the working environment, but may also scratch the skin of workers, get into their eyes and cause harm, or even damage precision equipment parts. Cleaning up the scattered waste chips is time-consuming and laborious, reducing work efficiency and increasing work intensity.

[0032] The first sliding block 5 is moved by the hydraulic rod 7, which in turn drives the protective shell 6 to open and close. This design allows for flexible control of the position of the protective shell 6, enabling it to play a protective role during milling and preventing waste chips from splashing to the outside. At the same time, the protective shell 6 can be opened for cleaning or maintenance, making it convenient to operate.

[0033] The negative pressure fan 13 is designed to adsorb the waste generated during operation, thereby drawing the waste into the collection box 14 inside the mobile box 11 through negative pressure. This design can efficiently collect waste and prevent it from spreading in the air.

[0034] The motor 23 drives the Z-shaped rod 24 to rotate, allowing the Z-shaped rod 24 to slide through the isosceles groove 22, enabling the rectangular block 21 to move laterally back and forth. This allows a set of extrusion rollers 20 to move back and forth, so that when the waste passes through the set of extrusion rollers 20, the volume of the waste is crushed and reduced under the action of the extrusion rollers 20, thereby reducing the space occupied by the waste and reducing the number of times the staff cleans the collection box 14.

[0035] The terms "front," "back," "left," "right," "top," and "bottom" all refer to the figures in the accompanying drawings. Figure 1 Based on the perspective of the observer, the side of the device facing the observer is defined as the front, the left side of the observer is defined as the left, and so on.

[0036] In the description of this utility model, it should be understood that the terms "center", "longitudinal", "lateral", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limiting the scope of protection of this utility model.

[0037] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. Those skilled in the art should understand that this utility model is not limited to the above embodiments. The embodiments and descriptions in the specification are merely illustrative of the principles of this utility model. Various changes and modifications can be made to this utility model without departing from its spirit and scope, and all such changes and modifications fall within the scope of the claimed utility model. The scope of protection of this utility model is defined by the appended claims and their equivalents.

Claims

1. A component milling device, comprising a support frame (1), a support plate (2) fixedly connected to the top of the support frame (1), an L-shaped plate (3) fixedly connected to the top of the support plate (2), and a milling assembly disposed on the L-shaped plate (3), characterized in that: The top of the support frame (1) is provided with a cleaning mechanism, which includes: The protective component includes a first sliding groove (4) on a support plate (2), a first sliding block (5) slidably connected in the sliding groove, a protective shell (6) fixed to the side wall of the first sliding block (5), and a pair of protective shells (6) arranged opposite to each other and located on the top of the support frame (1). The side wall of the support frame (1) is provided with a drive component for moving the pair of protective shells (6). A collection component is provided between the opposite sidewalls of the support frame (1) for collecting waste.

2. The component milling device according to claim 1, characterized in that: The drive assembly includes a hydraulic rod (7) fixed to the side wall of the support frame (1) by a fixing block (8). The extension end of the hydraulic rod (7) is fixed to the fixing block (8). A pair of rotating rods (9) are rotatably connected to the fixing block (8) by a pair of first rotating shafts. The other end of the rotating rods (9) is rotatably connected to the side wall of the first sliding block (5) by a second rotating shaft.

3. The component milling device according to claim 1, characterized in that: The collection assembly includes a pair of slide rails (10) respectively opened on opposite side walls of the support frame (1), and a movable box (11) is slidably connected between the pair of slide rails (10). The bottom of the movable box (11) is provided with a pair of circular holes (12).

4. A component milling device according to claim 3, characterized in that: A negative pressure fan (13) is installed inside the circular hole (12), and a collection box (14) is placed inside the movable box (11). A set of first through holes (15) is opened at the bottom of the collection box (14).

5. A component milling device according to claim 1, characterized in that: A filter plate (16) is fixed between opposite side walls of the support frame (1). A set of second through holes (17) is provided on the filter plate (16). A second sliding groove (18) is provided on both sides of the support frame (1). A sliding rod (19) is slidably connected in the second sliding groove (18). A set of extrusion rollers (20) is fixed between opposite side walls of a pair of sliding rods (19). A rectangular block (21) is fixed to the side wall of the sliding rod (19). An isosceles groove (22) is provided on the rectangular block (21).

6. A component milling device according to claim 5, characterized in that: The side wall of the support frame (1) is fixed with a motor (23) by a pair of L-shaped rods. The output end of the motor (23) is provided with a Z-shaped rod (24), and the other end of the Z-shaped rod (24) is slidably connected in the isosceles groove (22).