Scrap iron recovery structure of large shaft turning device

By designing the chip trough and hopper structure of the large shaft turning device, the chip is automatically collected and cooled, solving the problems of chip removal difficulties and safety risks during the turning process of large CNC lathes, and realizing the effect of automated chip recycling and cooling.

CN223947434UActive Publication Date: 2026-02-27CHONGQING YANLIAN HEAVY MACHINERY EQUIP
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Patent Information

Application Number
CN202423323291.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-31
Publication Date
2026-02-27
Estimated Expiration
2034-12-31

AI Technical Summary

Technical Problem

In the existing technology, it is difficult to effectively solve the problems of chip removal difficulties and manual cleaning difficulties and safety risks caused by the large amount of waste chips generated during the turning process of large CNC lathes.

Method used

A large shaft turning device was designed, including a waste chip trough and a collection hopper. The device automatically collects waste chips by using the inclined guide trough and the waste chip collection trough structure, and cools them down by using coolant or cooling water. Combined with guardrails to prevent personnel from falling, the device achieves automated waste chip recycling.

Benefits of technology

It achieves automated collection of waste chips, reduces the need for manual operation, reduces the risk of safety accidents, and improves processing safety by cooling the waste chips with coolant to prevent oxidation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a scrap iron recovery structure of a large shaft turning device, which comprises a large lathe, a waste chip groove and a collecting hopper, a plurality of support blocks are arranged in the waste chip groove side by side, the large lathe is arranged on the support blocks of the waste chip groove, a certain distance is reserved between every two adjacent support blocks, and the collecting hopper is arranged on the large lathe. A gap is formed in the supporting block, an inclined face inclining towards one side is arranged on the gap to form a material guiding groove, a scrap collecting groove is formed in the side face of the supporting block of the scrap groove, the scrap collecting groove is communicated with the material guiding groove, and the collecting hopper is arranged in the scrap collecting groove. The waste collecting device is simple in structure and capable of automatically collecting waste and avoiding the risk of manual operation.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to large -scale shaft workpiece machining technical field, concretely relates to a kind of iron chip recovery structure of large -scale shaft piece turning device. BACKGROUND

[0002] Various large -scale shaft workpieces are needed on large ship, in machining, the machining of large -scale shaft workpiece is the most important of shaft part machining, currently, mainly using large -scale numerical control lathe is turned, but because large -scale numerical control lathe is turned in process will produce a large amount of swarf, existing large -scale numerical control machine tool is directly placed on ground, and it is difficult to remove swarf, it needs artificial stoop to sweep out swarf from machine tool lower end little by little, it is difficult to operate, and there is accident risk. SUMMARY

[0003] The utility model aims at the deficiency of prior art, provide a kind of iron chip recovery structure of large -scale shaft piece turning device, automatically collect swarf, reduce manual operation, reduce accident risk.

[0004] The technical scheme of the utility model is as follows:

[0005] A kind of iron chip recovery structure of large -scale shaft piece turning device, including large -scale lathe, further including swarf groove and collecting hopper, the multiple support blocks that are side by side are provided in the swarf groove, the large -scale lathe is arranged on the support block of the swarf groove, there is a certain interval between every two adjacent support blocks, the inclined plane that is inclined to one side is provided on the interval, forming guide chute, the side surface of the support block of the swarf groove is equipped with scrap collecting groove, the scrap collecting groove is connected with the guide chute, the collecting hopper is arranged in the scrap collecting groove.

[0006] Further, the scrap collecting groove is equipped with cooling liquid or cooling water.

[0007] Further, the bottom of the scrap collecting groove is lower than the guide chute.

[0008] Further, the support block is rectangular support block, and the multiple support blocks are distributed along the longitudinal direction of the swarf groove.

[0009] Further, the inclination angle of the inclined plane is 30-60 °.

[0010] Further, the side surface of the swarf groove is equipped with guard bar.

[0011] Further, the collecting hopper is equipped with support lug for hoisting.

[0012] The above technical scheme has the following beneficial effects:

[0013] The utility model discloses a simple structure, through adopting the waste chip groove and the collection hopper, and the large -scale lathe is placed in the waste chip groove upper end, and the waste chip that produces in the lathe processing process falls into the waste chip groove right below automatically, and the automatic collection of the collection hopper is guided to fall into through the material guide groove, and the existing large -scale shaft workpiece turning waste material recovery problem is effectively solved.

[0014] The waste chip groove is internally provided with cooling liquid or cooling water, and the just-processed waste chip is cooled by the cooling liquid and the cooling water, so that the heat generated during the turning process is quickly cooled, the waste chip oxidation is prevented, and the risk of worker scalding during subsequent transfer is avoided.

[0015] The side surface of the waste chip groove is provided with a guardrail, so that personnel falling is effectively prevented.

[0016] The collection hopper is provided with a lug for lifting, and the lug facilitates the lifting and carrying of the waste chip by a travelling crane.

[0017] The following will be further described in combination with the drawings and the specific embodiments. DRAWINGS

[0018] Fig. 1 It is a structural schematic view of the specific embodiment 1.

[0019] Fig. 2 It is a top view of the specific embodiment 1.

[0020] Fig. 3 It is a structural schematic view of the support block and the material guide groove in the specific embodiment 1.

[0021] In the drawings, 1 is a large -scale lathe, 2 is a waste chip groove, 2-1 is a support block, 2-2 is a material guide groove, 2-3 is a waste chip groove, and 3 is a collection hopper. DETAILED DESCRIPTION Specific embodiment 1:

[0022] Reference Figs. 1 to 3As shown, a large shaft turning device iron chip recycling structure, including large lathe 1, scrap groove 2 and collecting hopper 3, a pit is dug in the ground to form scrap groove 2, scrap groove 2 is rectangular groove, a plurality of support blocks 2-1 are arranged side by side in the scrap groove 2, the support blocks 2-1 are rectangular support blocks, the plurality of support blocks 2-1 are distributed longitudinally along the scrap groove 2, there is a certain spacing between each adjacent two support blocks 2-1, the position and number of support blocks 2-1 are set corresponding to the position of support feet at the lower end of large lathe, each support foot corresponds to a support block, the large lathe is arranged on the support blocks of the scrap groove. A slope is arranged on the spacing, the slope is inclined to one side, the inclination angle of the slope is 30-60°, forming a material guide groove 2-2, the angle is the best blanking effect. The side surface of the support block of the scrap groove 2 is provided with a chip collecting groove 2-3, the chip collecting groove 2-3 is communicated with the material guide groove 2-2, the material guide groove is inclined to the side of the chip collecting groove 2-2, the collecting hopper 3 is arranged in the chip collecting groove 2-3, the collecting hopper 3 is in the form of a rectangular structure with wide upper and narrow lower, the collecting hopper 3 is provided with a lifting lug 3-1 for lifting, which facilitates lifting by the crane.

[0023] Possibly, the chip collecting groove 2-3 is provided with cooling liquid or cooling water for cooling the scrap. The bottom of the chip collecting groove 2-3 is lower than the material guide groove 2-2, so that the collecting hopper placed in the chip collecting groove can automatically collect the scrap falling through the material guide groove.

[0024] Possibly, the side surface of the scrap groove 2 is provided with a guardrail, which is protected by the guardrail to prevent personnel from accidentally falling into the scrap groove, effectively avoiding personnel safety accidents.

Claims

1. A chip recovery structure of a large shaft turning device including a large lathe, characterized by: The waste groove is internally provided with a plurality of support blocks arranged side by side, and the large lathe is arranged on the support blocks of the waste groove.

2. The chip recovery structure of the turning apparatus for a large shaft member according to claim 1, characterized by: The waste groove is internally provided with a plurality of support blocks arranged side by side, and the large lathe is arranged on the support blocks of the waste groove.

3. The chip recovery structure of the turning apparatus for a large shaft member according to claim 1 or 2, characterized in that: The support blocks are rectangular support blocks, and the plurality of support blocks are longitudinally distributed along the waste groove.

4. The chip recovery structure of the turning apparatus for a large shaft member according to Claim 1, wherein: The slope is inclined at an angle of 30-60°.

5. The chip recovery structure of the turning apparatus for a large shaft member according to Claim 1, wherein: The waste groove is internally provided with a plurality of support blocks arranged side by side, and the large lathe is arranged on the support blocks of the waste groove.

6. The iron chip collecting structure of the large shaft work turning apparatus according to claim 1 or 2, characterized by: The waste groove is internally provided with a plurality of support blocks arranged side by side, and the large lathe is arranged on the support blocks of the waste groove.

7. The chip recovery structure of the turning apparatus for a large shaft member according to Claim 1, characterized in that: The support blocks are rectangular support blocks, and the plurality of support blocks are longitudally distributed along the waste groove. The slope is inclined at an angle of 30-60°. The waste groove is internally provided with a plurality of support blocks arranged side by side, and the large lathe is arranged on the support blocks of the waste groove. The waste groove is internally provided with a plurality of support blocks arranged side by side, and the large lathe is arranged on the support blocks of the waste groove. The support blocks are rectangular support blocks, and the plurality of support blocks are longitudally distributed along the waste groove. The slope is inclined at an angle of 30-60°. The waste groove is internally provided with a plurality of support blocks arranged side by side, and the large lathe is arranged on the support blocks of the waste groove. The waste groove is internally provided with a plurality of support blocks arranged side by side, and the large lathe is arranged on the support blocks of the waste groove. The support blocks are rectangular support blocks, and the plurality of support blocks are longitudally distributed along the waste groove. The slope is inclined at an angle of 30-60°. The waste groove is internally provided with a plurality of support blocks arranged side by side, and the large lathe is arranged on the support blocks of the waste groove. The waste groove is internally provided with a plurality of support blocks arranged side by side, and the large lathe is arranged on the support blocks of the waste groove. The support blocks are rectangular support blocks, and the plurality of support blocks are longitudally distributed along the waste groove. The slope is inclined at an angle of 30-60°. The waste groove is internally provided with a plurality of support blocks arranged side by side, and the large lathe is arranged on the support blocks of the waste groove.