Numerical control turning machine tool capable of reducing chipping interference

By installing a chip adsorption mechanism and a recycling box on a CNC turning machine, the problem of chip interference is solved, and the effective adsorption and unified collection of chips are achieved, ensuring the normal operation of the equipment and the quality of the workpiece.

CN223441772UActive Publication Date: 2025-10-17SUZHOU HAIYOUWEI PRECISION HARDWARE PROD CO LTD
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Patent Information

Application Number
CN202421698845.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-18
Publication Date
2025-10-17
Estimated Expiration
2034-07-18

AI Technical Summary

Technical Problem

The debris generated by CNC turning machines during the machining process will interfere with the operator's operation, affect the operation of the equipment and may cause failures, and affect the quality of the finished workpiece.

Method used

A chip adsorption mechanism is installed on a CNC turning machine tool, including an adsorption tube, an adjustment component, and a recovery box. Through the cooperation of negative pressure adsorption and the adjustment component, the chip adsorption and unified collection are achieved, reducing chip interference.

Benefits of technology

It effectively reduces the interference of debris to operators, ensures the normal operation of equipment, and improves the quality of finished products. The debris is collected and processed in a unified manner through an adsorption mechanism and a recycling bin.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a numerical control turning machine tool capable of reducing chipping interference, which comprises a turning machine tool main body, a chipping adsorption mechanism, an adjusting component and a recycling box, and a mounting bottom plate for mounting the chipping adsorption mechanism is arranged at the left upper end of the internal composition of the turning machine tool main body. Compared with the prior art, the turning machine tool has the advantages that the turning machine tool body, the chipping adsorption mechanism and the adjusting assembly are additionally arranged, the chipping adsorption mechanism is fixed to the position above the installation bottom plate, the connecting plate below the transition pipe is fixedly connected with the adjusting assembly, and the negative pressure pipe enables the first adsorption pipe to generate suction force; the dust collection cover is arranged in the dust collection box, the dust collection cover adsorbs the chippings through a transition pipe and a second adsorption pipe, the left-right position adjustment of the dust collection cover can be completed by pulling an adjusting assembly, the up-down position adjustment of the dust collection cover can be completed by pulling an adjusting sliding block II, and therefore chipping interference can be reduced; and the adsorbed chippings can be collected in a unified mode.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to numerical control lathe machine tool technical field, especially related to a numerical control lathe machine tool of reducing the interference of scrap. BACKGROUND

[0002] Numerical control lathe machine tool is a kind of highly automated machining equipment, is widely used in mechanical engineering field, and is mainly used for the machining of the rotating body parts of metal and other materials.Numerical control lathe machine tool will produce a large amount of scrap in the turning process of workpiece, and most of the common numerical control lathe machine tool is not provided with the corresponding scrap processing structure, and most of the scrap falls naturally into the receiving tray below, and is handled separately after production is completed, but the scrap will fly with the operation of equipment and the circulation of production area air during turning, and then moves irregularly, which may interfere with the operation of operator, and the scrap may contact the running part of lathe, which may affect the normal operation of running part, and then may cause the failure of lathe, in addition, the scrap and the basic tool of lathe may cause the workpiece to have a pit, which may affect the quality of final product of workpiece.

[0003] In summary, the scrap will interfere with production and processing during turning operation, so a new structure is needed to solve the above technical problems. CONTENT OF THE UTILITY MODEL

[0004] In view of the deficiencies in the prior art, the utility model aims to provide a numerical control lathe machine tool for reducing the interference of scrap, to solve the problems in the background art.

[0005] The utility model realizes the following technical scheme: a numerical control lathe machine tool for reducing the interference of scrap, comprising: a lathe machine tool main body, a scrap adsorption mechanism, an adjusting assembly and a recycling box, the lathe machine tool main body is provided with a mounting bottom plate for mounting the scrap adsorption mechanism at the upper left end of the internal composition, the mounting bottom plate is provided with the scrap adsorption mechanism for adsorbing the turning scrap above, the internal composition of the scrap adsorption mechanism is provided with a mounting plate at the lower left end, the mounting plate is provided with an adsorption tank above, the adsorption tank is provided with an adsorption pipe one for adjusting the position of dust cover above, the adsorption pipe one is provided with a transition pipe right side, the transition pipe is provided with an adsorption pipe two for adjusting the position of dust cover right below, the adsorption pipe two is provided with an adjusting assembly left side for assisting the position adjustment of dust cover, and the adsorption tank is provided with a recycling box inside for uniformly collecting the scrap.

[0006] As a preferred implementation, the front side of the adsorption box is provided with a negative pressure pipe for connecting with an external negative pressure adsorption device to provide negative pressure, and the connection between the negative pressure pipe and the adsorption box is provided with an open baffle. The adsorption pipe one and the adsorption pipe two are both flexible hoses, which can be connected with the external negative pressure adsorption device through the negative pressure pipe, thereby generating suction force to adsorb the turning chips.

[0007] As a preferred implementation, the front side of the adsorption pipe two is provided with a cross bar, the rear side of the cross bar is provided with an adjusting sliding groove one, and the upper end of the adjusting assembly is provided with an adjusting block.

[0008] As a preferred implementation, the adjusting sliding groove one and the adjusting sliding block one are movably embedded with each other, and the lower left of the transition pipe is provided with a connecting plate for connecting with the adjusting assembly. The upper surfaces of the connecting plate and the adjusting block are both provided with connecting thread holes.

[0009] The lower surface of the connecting plate and the upper surface of the adjusting block are movably embedded with each other and connected and fixed by screwing bolts into the inside of the connecting thread holes. The connecting plate and the adjusting assembly can be connected and fixed, and the dust cover can be adjusted in left and right positions by moving the adjusting assembly left and right.

[0010] As a preferred implementation, the lower side of the adsorption pipe two is provided with a dust cover for adsorbing the chips generated by turning. The lower side of the adjusting block is provided with an adjusting rod, and the right side of the adjusting rod is provided with an adjusting sliding groove two. The inside of the adjusting sliding groove two is provided with an adjusting sliding block two.

[0011] The adjusting sliding block two and the dust cover are integrated, the adjusting sliding block two and the adjusting sliding groove two are movably embedded with each other and are interference fit structures. The adjusting sliding block two can be pulled to slide in the inside of the adjusting sliding groove two, thereby completing the up and down position adjustment of the dust cover.

[0012] As a preferred implementation, the left side of the adsorption box is provided with an inner cavity at the lower end, and the inner sides of the front and rear ends of the adsorption box are both provided with mounting sliding grooves. The front and rear sides of the recovery box are both provided with mounting sliding blocks.

[0013] As a preferred implementation, the mounting sliding blocks and the mounting sliding grooves are movably embedded with each other. The upper surface of the recovery box is provided with a recovery groove for collecting chips, and the adsorbed chips can be uniformly collected by the recovery box.

[0014] The beneficial effects of the utility model are as follows: the turning machine main body, the scrap adsorption mechanism and the adjusting assembly are increased, the scrap adsorption mechanism is fixed above the mounting bottom plate, the connecting plate below the transition pipe is connected and fixed with the adjusting assembly, the negative pressure pipe generates suction force on the adsorption pipe one, the dust cover adsorbs the scrap through the transition pipe and the adsorption pipe two, the left and right position of the dust cover can be adjusted by pulling the adjusting assembly, the up and down position of the dust cover can be adjusted by pulling the adjusting sliding block two, so that the scrap interference is reduced, the adsorbed scrap is collected uniformly through the scrap adsorption mechanism and the recycling box. BRIEF DESCRIPTION OF DRAWINGS

[0015] In order to more clearly illustrate the technical scheme in the embodiments of the utility model or the prior art, the following will briefly introduce the drawings needed to be used in the embodiment or the prior art description, obviously, the drawings in the following description are only some embodiments of the utility model, and other drawings can be obtained according to these drawings without the creative labor for the ordinary skilled in the art.

[0016] Figure 1 It is the overall structure schematic diagram of the numerical control turning machine of the utility model for reducing scrap interference.

[0017] Figure 2 It is the structure schematic diagram of the turning machine main body in the numerical control turning machine of the utility model for reducing scrap interference.

[0018] Figure 3 It is the structure schematic diagram of the scrap adsorption mechanism in the numerical control turning machine of the utility model for reducing scrap interference.

[0019] Figure 4 It is the structure schematic diagram of the adjusting assembly in the numerical control turning machine of the utility model for reducing scrap interference.

[0020] Figure 5 It is the structure schematic diagram of the recycling box in the numerical control turning machine of the utility model for reducing scrap interference.

[0021] In the drawing, 100 is the turning machine main body, and 101 is the mounting bottom plate.

[0022] 200 is the scrap adsorption mechanism, 201 is the mounting plate, 202 is the adsorption box, 203 is the inner cavity, 204 is the mounting sliding groove, 205 is the negative pressure pipe, 206 is the adsorption pipe one, 207 is the transition pipe, 208 is the adsorption pipe two, 209 is the dust cover, 210 is the adjusting sliding block two, 211 is the cross rod, 212 is the adjusting sliding groove one, and 213 is the connecting plate.

[0023] 300 is the adjusting assembly, 301 is the adjusting block, 302 is the adjusting sliding block one, and 303 is the adjusting sliding groove two.

[0024] 400 - recycling bin, 401 - recycling tank, 402 - mounting slider. DETAILED DESCRIPTION

[0025] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.

[0026] Please refer to Figures 1 to 5 The present application provides a technical solution: a numerical control turning machine tool capable of reducing debris interference, comprising: a turning machine tool body 100, a debris adsorption mechanism 200, an adjusting assembly 300, and a recycling bin 400; the upper left end of the internal components of the turning machine tool body 100 is provided with a mounting bottom plate 101 for mounting the debris adsorption mechanism 200;

[0027] The mounting bottom plate 101 is provided with the debris adsorption mechanism 200 above for adsorbing turning debris; the lower left end of the internal components of the debris adsorption mechanism 200 is provided with a mounting plate 201, the upper side of the mounting plate 201 is provided with an adsorption box 202, and the upper side of the adsorption box 202 is provided with an adsorption pipe one 206 for adjusting the position of a dust cover 209;

[0028] The right side of the adsorption pipe one 206 is provided with a transition pipe 207, the lower right side of the transition pipe 207 is provided with an adsorption pipe two 208 for adjusting the position of the dust cover 209, the left side of the adsorption pipe two 208 is provided with the adjusting assembly 300 for assisting in adjusting the position of the dust cover 209, and the inner side of the adsorption box 202 is provided with the recycling bin 400 for uniformly collecting debris.

[0029] The front side of the adsorption box 202 is provided with a negative pressure pipe 205 for connecting with an external negative pressure adsorption equipment to provide a negative pressure force, the connection between the negative pressure pipe 205 and the adsorption box 202 is provided with an open baffle, the adsorption pipe one 206 and the adsorption pipe two 208 are both flexible hoses, which can be connected with the external negative pressure adsorption equipment through the negative pressure pipe 205, thereby generating a suction force to adsorb the turning debris.

[0030] The front side of the adsorption pipe two 208 is provided with a cross rod 211, the rear side of the cross rod 211 is provided with an adjusting sliding groove one 212, the upper end of the internal components of the adjusting assembly 300 is provided with an adjusting block 301, and the front side of the adjusting block 301 is provided with an adjusting sliding block one 302.

[0031] The adjusting block 302 is movably embedded with the adjusting slot 212, the connecting plate 213 for connecting with the adjusting assembly 300 is arranged below the left side of the transition pipe 207, and the connecting plate 213 and the upper surface of the adjusting block 301 are both provided with connecting threaded holes;

[0032] The lower surface of the connecting plate 213 is embedded with the upper surface of the adjusting block 301 and is fixed by screwing bolts into the inside of the connecting threaded holes, so that the connecting plate 213 is connected with the adjusting assembly 300, and the dust cover 209 is adjusted in the left-right position by moving the adjusting assembly 300 left and right.

[0033] The dust cover 209 for adsorbing the chips generated by turning is arranged below the adsorption pipe 208, the adjusting block 301 is provided with an adjusting rod, the adjusting slot 302 is arranged on the right side of the adjusting rod, and the adjusting block 302 is movably embedded with the adjusting slot 302.

[0034] The adjusting block 302 is movably embedded with the adjusting slot 212, the connecting plate 213 for connecting with the adjusting assembly 300 is arranged below the left side of the transition pipe 207, and the connecting plate 213 and the upper surface of the adjusting block 301 are both provided with connecting threaded holes;

[0035] Please refer to Figures 1-4 , as the first embodiment of the utility model: first, the user fixes the chip adsorption mechanism 200 to the upper side of the mounting bottom plate 101, and connects and fixes the connecting plate 213 below the transition pipe 207 with the adjusting assembly 300, the negative pressure pipe 205 is connected with the external negative pressure adsorption equipment, so that the suction force can be generated, and the dust cover 209 can adsorb the chips through the adsorption pipe 206, the transition pipe 207 and the adsorption pipe 208, secondly, the user can pull the adjusting assembly 300 according to the turning position to make the adjusting block 302 slide in the adjusting slot 212, so that the left-right position of the dust cover 209 is adjusted, and the adjusting block 302 can be pulled to slide in the adjusting slot 302, so that the up-down position of the dust cover 209 is adjusted, so that the chips can be adsorbed and collected, thereby reducing the interference of the chips.

[0036] The inner cavity 203 is arranged at the lower end of the left side of the adsorption box 202, the mounting slot 204 is arranged at the inner side of the front and rear ends of the adsorption box 202, and the mounting block 402 is arranged at the front and rear sides of the recovery box 400.

[0037] The mounting block 402 is movably embedded with the mounting slot 204, the recovery slot 401 for collecting the chips is arranged on the upper surface of the recovery box 400, and the adsorbed chips can be uniformly collected through the recovery box 400.

[0038] Please refer to Figures 1-3 and Figure 5As the second embodiment of the utility model: based on the above first embodiment, the user can embed the installation sliding block 402 of the two sides of the recycling box 400 into the inside of the installation sliding groove 204, embed the recycling box 400 into the inner cavity 203, and the collected debris can fall into the inside of the recycling groove 401, so that the debris can be uniformly collected and subsequent processing is facilitated.

[0039] The above only is the preferred embodiment of the utility model, and does not use to limit the utility model, and any modification, equivalent replacement, improvement etc. that is made within the spirit and principle of the utility model should be included in the protection scope of the utility model.

Claims

1. A CNC turning machine tool for reducing chip interference, comprising: A turning machine tool body (100), a chip adsorption mechanism (200), an adjustment component (300) and a recovery box (400), characterized in that: the turning machine tool body (100) is provided with a mounting base plate (101) for mounting the chip adsorption mechanism (200) at the upper left end of its internal components; A chip adsorption mechanism (200) for adsorbing turning chips is provided above the mounting base plate (101); a mounting plate (201) is provided at the lower left end of the chip adsorption mechanism (200); an adsorption box (202) is provided above the mounting plate (201); and an adsorption pipe (206) for adjusting the position of a dust collection hood (209) is provided above the adsorption box (202); A transition pipe (207) is provided on the right side of the adsorption pipe 1 (206), an adsorption pipe 2 (208) for adjusting the position of the dust hood (209) is provided at the lower right side of the transition pipe (207), an adjustment component (300) for assisting in adjusting the position of the dust hood (209) is provided on the left side of the adsorption pipe 2 (208), and a recovery box (400) for uniformly collecting debris is provided on the inner side of the adsorption box (202).

2. A CNC turning machine tool for reducing chip interference according to claim 1, characterized in that: The front side of the adsorption box (202) is provided with a negative pressure pipe (205) for connecting to an external negative pressure adsorption device to provide negative pressure suction. A perforated baffle is provided at the connection between the negative pressure pipe (205) and the adsorption box (202). Both the adsorption pipe 1 (206) and the adsorption pipe 2 (208) are telescopic hoses.

3. A CNC turning machine tool for reducing chip interference according to claim 2, characterized in that: The front side of the adsorption tube 2 (208) is provided with a cross bar (211), and the rear side of the cross bar (211) is provided with an adjustment slide groove (212). The upper end of the internal component of the adjustment component (300) is provided with an adjustment block (301), and the front side of the adjustment block (301) is provided with an adjustment slider (302).

4. A CNC turning machine tool for reducing chip interference according to claim 3, characterized in that: The adjusting slider (302) and the adjusting slot (212) are movably engaged with each other, and a connecting plate (213) for connecting with the adjusting assembly (300) is provided at the lower left of the transition pipe (207), and the upper surfaces of the connecting plate (213) and the adjusting block (301) are both provided with connecting threaded holes; The lower surface of the connecting plate (213) and the upper surface of the adjusting block (301) are fitted together and fixed by screwing bolts into the inner sides of the connecting threaded holes.

5. A CNC turning machine tool for reducing chip interference according to claim 4, characterized in that: A dust cover (209) for adsorbing chips generated by turning is provided below the second adsorption tube (208), an adjustment rod is provided below the adjustment block (301), an adjustment slot (303) is provided on the right side of the adjustment rod, and an adjustment slider (210) is provided inside the second adjustment slot (303); The second adjusting slider (210) and the dust cover (209) are an integrated structure, and the second adjusting slider (210) and the second adjusting slide groove (303) are interlocked and have an interference fit structure.

6. The CNC turning machine tool for reducing chip interference according to claim 1, characterized in that: An inner cavity (203) is provided at the lower end of the left side of the adsorption box (202), mounting grooves (204) are provided on the inner side surfaces at both the front and rear ends of the adsorption box (202), and mounting sliders (402) are provided on the front and rear sides of the recovery box (400).

7. A CNC turning machine tool for reducing chip interference according to claim 6, characterized in that: The installation slide block (402) and the installation slide groove (204) are movably engaged with each other, and a recovery groove (401) for collecting debris is provided on the upper surface of the recovery box (400).