CN220783173U - Digit control machine tool with waste liquid recycling - Google Patents

Digit control machine tool with waste liquid recycling Download PDF

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Publication number
CN220783173U
CN220783173U CN202322642442.3U CN202322642442U CN220783173U CN 220783173 U CN220783173 U CN 220783173U CN 202322642442 U CN202322642442 U CN 202322642442U CN 220783173 U CN220783173 U CN 220783173U
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China
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recovery
filter screen
machine tool
recycling
control machine
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CN202322642442.3U
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Chinese (zh)
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刘泰康
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Dongguan Aosida Precision Technology Co ltd
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Dongguan Aosida Precision Technology Co ltd
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Abstract

The utility model discloses a numerical control machine tool with waste liquid recycling function; the device comprises a numerical control machine tool, a recovery box arranged beside the numerical control machine tool, wherein the mobile end of the numerical control machine tool is provided with a mobile end for driving a workpiece to move, the recovery box is communicated with the mobile end, and a recovery filter screen, a recovery vibration assembly and a recovery mobile assembly are arranged in the recovery box; the recovery filter screen is positioned in the recovery box and is in sliding fit with the recovery box, the recovery vibration component is rotationally connected to the recovery box, and the recovery vibration component is connected with the bottom of the recovery filter screen; the recovery moving assembly is connected to the recovery box in a sliding manner and is positioned above the recovery filter screen; and a recovery pipe for discharging the cutting fluid outwards is further arranged on the recovery box. According to the utility model, the recovery filter screen is vibrated by the recovery vibration assembly, so that impurities in the mesh of the recovery filter screen drop downwards, and the next filtration is not influenced by the blockage of the recovery filter screen.

Description

Digit control machine tool with waste liquid recycling
Technical Field
The utility model belongs to the technical field of numerical control machine tools, and particularly relates to a numerical control machine tool with waste liquid recycling.
Background
The numerical control machine tool is short for numerical control machine tool, and is an automatic machine tool with a program control system. The control system is able to logically process a program defined by control codes or other symbolic instructions, and to decode it, expressed in coded numbers, and input to the numerical control device via the information carrier. The numerical control device sends out various control signals to control the action of the machine tool through operation processing, and parts are automatically machined according to the shape and the size required by the drawing.
The numerical control machine tool well solves the problems of complex, precise, small batch and multiple kinds of part processing, is a flexible and high-efficiency automatic machine tool, represents the development direction of the modern machine tool control technology, and is a typical electromechanical integrated product. When a workpiece is cut or machined by a numerical control machine tool, it is necessary to constantly spray a cutting fluid during machining to cool and lubricate the machined part.
The current chinese patent of publication No. CN217619405U discloses a waste liquid recovery unit of precision machine tool, including precision machine tool and collection box, offered the processing groove on the collection box, install the transfer pipe on the collection box, transfer pipe and precision machine tool are connected with same connecting pipe, install the magnetic filter board in the processing groove, the hose has been cup jointed to the one end that the transfer pipe is located the processing groove, and the feed liquor pipe has been cup jointed to the other end of hose, the feed liquor pipe rotates and installs on the transfer pipe, be equipped with two clearance strips in the processing groove, two clearance strips all contact with magnetic filter board. According to the utility model, through the arrangement of the magnetic filter plates, when the recovery box is used for treating the waste liquid from the precision machine tool, the magnetic filter plates can adsorb the scraps, so that the filtered waste liquid is purer, and the processing precision of the precision machine tool can be ensured when the waste liquid is recovered and utilized.
However, when the waste liquid is recovered, too small scraps are easy to clamp on the filtering device, so that the filtering device is blocked, the filtered scraps cannot be recovered, impurities exist in the recovered waste liquid, and the subsequent recovery and reutilization are affected.
It is desirable to provide a numerically controlled machine tool with waste liquid recycling for use.
Disclosure of utility model
The utility model aims to provide a numerical control machine tool with waste liquid recycling function, so as to solve the problems in the background technology.
In order to achieve the above purpose, the present utility model provides the following technical solutions:
The utility model provides a digit control machine tool with waste liquid is retrieved and is recycled, includes the digit control machine tool, be equipped with the removal end that drives the work piece and remove on the removal end of digit control machine tool, still include the collection box that sets up in digit control machine tool side, be linked together with the removal end on the collection box, be equipped with recovery filter screen, recovery vibrations subassembly and recovery removal subassembly in the collection box;
The recovery filter screen is positioned in the recovery box and is in sliding fit with the recovery box, the recovery vibration component is rotationally connected to the recovery box, and the recovery vibration component is connected with the bottom of the recovery filter screen;
the recovery moving assembly is connected to the recovery box in a sliding manner and is positioned above the recovery filter screen; and a recovery pipe for discharging the cutting fluid outwards is further arranged on the recovery box.
Further technical scheme, retrieve the bottom of filter screen and be equipped with four vibrations springs, every all be equipped with the mount pad on the vibrations spring, retrieve the filter screen and connect on the collection box inner wall through four mount pads on four vibrations springs.
According to a further technical scheme, the recovery vibration assembly comprises a rotary motor, a rotary shaft, two rotary cams and two rotary connecting wheels;
The rotary shaft is rotationally connected to the recovery box, the rotary motor is located on the recovery box and is in transmission connection with the rotary shaft, the rotary cams are symmetrically connected to the rotary shaft, the rotary connecting wheels are connected to the bottom of the recovery filter screen, and the rotary connecting wheels are correspondingly arranged with the rotary cams.
According to a further technical scheme, the recycling moving assembly comprises a moving block, two moving motors and two screw rods;
The movable block is connected to the recovery box in a sliding mode and is connected to the upper portion of the recovery filter screen in a rotating mode, two screw rods are connected to the recovery box in a threaded mode, the movable block is connected with the two screw rods in a threaded mode, two movable motors are connected to the outer side wall of the recovery box respectively, the movable motors are connected with the screw rods in a transmission mode, and a discharge hole is formed in the side wall of the recovery box.
According to a further technical scheme, a filtering cylinder is arranged in the recovery pipe, a circular ring for fixing the filtering cylinder is arranged in the filtering cylinder, and an outer pipe which is in butt joint with the recovery pipe is arranged outside the recovery pipe.
According to a further technical scheme, a liquid storage tank is arranged on the mobile end, and a preliminary filter screen frame is arranged above the liquid storage tank.
The utility model has the beneficial effects that:
When vibrating the recovery filter screen, the rotating motor works to drive the rotating shaft to rotate on the recovery box, and the rotating shaft rotates to drive the two rotating cams to rotate so as to conflict with the two rotating connecting wheels at the bottom of the recovery filter screen, so that the recovery filter screen vibrates through the four vibrating springs, and impurities blocked in meshes of the recovery filter screen vibrate out, so that the subsequent recovery filter screen filters and recovers cutting fluid.
After the cutting fluid is filtered by the recovery filter screen, the filtered impurities are accumulated on the recovery filter screen, at the moment, the two moving motors simultaneously rotate to drive the screw rods to rotate, the two screw rods rotate to drive the moving blocks to move above the recovery filter screen, the accumulated impurities filtered on the recovery filter screen are moved to one side of the discharge port, the impurities are discharged outwards through the discharge port, and the follow-up filtration of the impurities is prevented from being influenced by excessive impurities on the recovery filter screen, so that the filtering effect of the cutting fluid is influenced.
Additional features and advantages of the utility model will be set forth in the detailed description which follows.
Drawings
Fig. 1: the utility model is a schematic three-dimensional structure.
Fig. 2: the three-dimensional structure of the recovery box is shown as a first schematic drawing.
Fig. 3: the three-dimensional structure of the recovery box is shown in the second schematic diagram.
Fig. 4: the utility model discloses a partial three-dimensional structure schematic diagram of a recovery box.
Fig. 5: the utility model recovers a three-dimensional structure schematic diagram of a vibration component.
Fig. 6: the utility model discloses a three-dimensional structure schematic diagram of a recovery moving assembly.
Fig. 7: the utility model provides a split drawing of a recovery pipe.
Reference numerals: 1-a numerical control machine tool; 11-a liquid storage tank; 12-a preliminary filter screen frame; 2-a recovery box; 21-recovering a filter screen; 22-vibration springs; 23-mounting seats; 24-a discharge hole; 3-recovering the vibration component; 31-a rotating motor; 32-rotating shaft; 33-rotating the cam; 34-rotating the fifth wheel; 4-recovering the moving assembly; 41-moving blocks; 42-a mobile motor; 43-screw rod; 5-a recovery pipe; 51-filtering a cylinder; 52-a circular ring; 53-outer tube.
Description of the embodiments
The technical solutions in the embodiments of the present utility model will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present utility model.
Please refer to fig. 1-7; the numerical control machine tool with the waste liquid recycling function comprises a numerical control machine tool 1, wherein a moving end 11 for driving a workpiece to move is arranged on a moving end 11 of the numerical control machine tool 1, the numerical control machine tool further comprises a recycling box 2 arranged beside the numerical control machine tool 1, the recycling box 2 is communicated with the moving end 11, and a recycling filter screen 21, a recycling vibration assembly 3 and a recycling moving assembly 4 are arranged in the recycling box 2; the recovery filter screen 21 is positioned in the recovery box 2 and is in sliding fit with the recovery box 2, the recovery vibration component 3 is rotationally connected to the recovery box 2, and the recovery vibration component 3 is connected with the bottom of the recovery filter screen 21; the recovery moving assembly 4 is connected to the recovery box 2 in a sliding manner, and the recovery moving assembly 4 is positioned above the recovery filter screen 21; the recovery box 2 is also provided with a recovery pipe 5 for discharging the cutting fluid outwards; a liquid storage tank is arranged on the movable end 11, and a preliminary filter screen frame 12 is arranged above the liquid storage tank; the recovery box 2 is provided with a liquid discharge pipe communicated with the liquid storage tank, the recovery pipe 5 is provided with a delivery pump connected to the liquid spraying end of the numerical control machine tool 1, and the waste liquid is recovered and reused after being filtered.
When the numerical control machine tool 1 is used, during processing a workpiece, cutting fluid is sprayed on the processed workpiece, then the cutting fluid is primarily filtered through the primary filter screen frame 12, then flows into a liquid storage tank and is conveyed into the recovery tank 2 through a liquid discharge pipe, impurities in waste liquid are filtered through the recovery filter screen 21, after the filtering is finished again, the recovery filter screen 21 is vibrated through the operation of the recovery vibration assembly 3 after the filtering, so that impurities in meshes of the recovery filter screen 21 drop downwards, the blocking of the recovery filter screen 21 cannot influence the next filtering, and the recovery moving assembly 4 moves the filtered impurities from the top of the recovery filter screen 21 to the discharge port 24 to be discharged outwards; the recovery pipe 5 can also filter the waste liquid again when in use, so that no waste residue exists in the waste residue, and the subsequent processing of the numerical control machine tool 1 is affected.
In this embodiment, referring to fig. 5, four vibration springs 22 are provided at the bottom of the recovery filter 21, each vibration spring 22 is provided with a mounting seat 23, and the recovery filter 21 is connected to the inner wall of the recovery tank 2 through the four mounting seats 23 on the four vibration springs 22; the recovery vibration assembly 3 comprises a rotary motor 31, a rotary shaft 32, two rotary cams 33 and two rotary fifth wheels 34; the rotating shaft 32 is rotatably connected to the recovery tank 2, the rotating motor 31 is located on the recovery tank 2 and is in transmission connection with the rotating shaft 32, the two rotating cams 33 are symmetrically connected to the rotating shaft 32, the two rotating fifth wheels 34 are connected to the bottom of the recovery filter screen 21, and the two rotating fifth wheels 34 are correspondingly arranged with the two rotating cams 33.
When vibrating the recovery filter screen 21, the rotating motor 31 works to drive the rotating shaft 32 to rotate on the recovery box 2, and the rotating shaft 32 rotates to drive the two rotating cams 33 to rotate so as to collide with the two rotating fifth wheels 34 at the bottom of the recovery filter screen 21, so that the recovery filter screen 21 vibrates up and down through the four vibrating springs 22, and impurities blocked in the meshes of the recovery filter screen 21 vibrate out, so that the subsequent recovery filter screen 21 filters and recovers cutting fluid.
In the present embodiment, referring to fig. 6, the recovery moving assembly 4 includes a moving block 41, two moving motors 42, and two screw rods 43; the movable block 41 is slidably connected to the recovery tank 2 and above the recovery filter screen 21, two screw rods 43 are rotatably connected to the recovery tank 2, the movable block 41 is in threaded connection with the two screw rods 43, two movable motors 42 are respectively connected to the outer side wall of the recovery tank 2, the movable motors 42 are in transmission connection with the screw rods 43, and a discharge hole 24 is formed in the side wall of the recovery tank 2.
After the cutting fluid is filtered by the recovery filter screen 21, the filtered impurities are accumulated on the recovery filter screen 21, at the moment, the two moving motors 42 simultaneously rotate to drive the screw rods 43 to rotate, the two screw rods 43 rotate to drive the moving blocks 41 to move above the recovery filter screen 21, the accumulated impurities filtered on the recovery filter screen 21 move to one side of the discharge port 24, the impurities are discharged outwards through the discharge port 24, and the follow-up filtration of the impurities is prevented from being influenced by excessive impurities on the recovery filter screen 21, so that the filtering effect of the cutting fluid is influenced.
In this embodiment, referring to fig. 7, a filtering cylinder 51 is disposed in the recovery pipe 5, a circular ring 52 for fixing the filtering cylinder 51 is disposed in the filtering cylinder 51, screws or bolts are disposed on the circular ring 52 to mount the filtering cylinder 51 on the recovery pipe 5, and an outer pipe 53 is disposed on the recovery pipe 5 and is in butt joint with the filtering cylinder; the outer pipe 53 is detachably connected with the recovery pipe 5, the outer pipe 53 is connected to the conveying pump, the recovered waste liquid is recovered and conveyed, the diameter of the mesh in the filter cylinder 51 is far smaller than that of the mesh of the recovery filter screen 21, fine impurities in the waste liquid can be filtered again when the waste liquid is recovered, and therefore no scraps exist in cutting fluid conveyed to the numerical control machine tool 1, and the processing of the numerical control machine tool 1 is affected.
It will be evident to those skilled in the art that the utility model is not limited to the details of the foregoing illustrative embodiments, and that the present utility model may be embodied in other specific forms without departing from the spirit or essential characteristics thereof. The present embodiments are, therefore, to be considered in all respects as illustrative and not restrictive, the scope of the utility model being indicated by the appended claims rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. Any reference sign in a claim should not be construed as limiting the claim concerned.
The foregoing description of the preferred embodiments of the utility model is not intended to limit the utility model to the precise form disclosed, and any such modifications, equivalents, and alternatives falling within the spirit and scope of the utility model are intended to be included within the scope of the utility model.

Claims (6)

1. The numerical control machine tool with the function of recycling waste liquid comprises a numerical control machine tool (1), wherein a moving end (11) for driving a workpiece to move is arranged on a moving end (11) of the numerical control machine tool (1),
The device is characterized by further comprising a recovery box (2) arranged beside the numerical control machine tool (1), wherein the recovery box (2) is communicated with the movable end (11), and a recovery filter screen (21), a recovery vibration assembly (3) and a recovery movable assembly (4) are arranged in the recovery box (2);
The recovery filter screen (21) is positioned in the recovery box (2) and is in sliding fit with the recovery box (2), the recovery vibration component (3) is rotationally connected to the recovery box (2), and the recovery vibration component (3) is connected with the bottom of the recovery filter screen (21);
The recovery moving assembly (4) is connected to the recovery box (2) in a sliding manner, and the recovery moving assembly (4) is positioned above the recovery filter screen (21);
The recovery box (2) is also provided with a recovery pipe (5) for discharging the cutting fluid outwards.
2. The numerical control machine tool with waste liquid recycling according to claim 1, wherein four vibration springs (22) are arranged at the bottom of the recycling filter screen (21), mounting seats (23) are arranged on each vibration spring (22), and the recycling filter screen (21) is connected to the inner wall of the recycling box (2) through the four mounting seats (23) on the four vibration springs (22).
3. A numerically controlled machine tool with waste liquid recycling according to claim 2, characterized in that said recycling vibration assembly (3) comprises a rotary motor (31), a rotary shaft (32), two rotary cams (33) and two rotary fifth wheels (34);
The rotary shaft (32) is rotationally connected to the recovery box (2), the rotary motor (31) is located on the recovery box (2) and is in transmission connection with the rotary shaft (32), the rotary cams (33) are symmetrically connected to the rotary shaft (32), the rotary connecting wheels (34) are connected to the bottom of the recovery filter screen (21), and the rotary connecting wheels (34) and the rotary cams (33) are correspondingly arranged.
4. A numerically controlled machine tool with waste liquid recycling according to claim 2, characterized in that said recycling movement assembly (4) comprises a movement block (41), two movement motors (42) and two screw rods (43);
The utility model discloses a recycling bin, including collection bin (2), filter screen (21) and movable block (41), movable block (41) sliding connection is on collection bin (2) and with the top of retrieving filter screen (21), two lead screw (43) rotate and connect on collection bin (2), movable block (41) and two lead screw (43) threaded connection, two movable motor (42) are connected respectively on the lateral wall of collection bin (2), movable motor (42) are connected with lead screw (43) transmission, be equipped with discharge gate (24) on the lateral wall of collection bin (2).
5. The numerical control machine tool with waste liquid recycling function according to claim 1, wherein a filtering circular screen (51) is arranged in the recycling pipe (5), a circular ring (52) for fixing the filtering circular screen (51) is arranged in the filtering circular screen, and an outer pipe (53) which is in butt joint with the recycling pipe (5) is arranged outside the recycling pipe.
6. The numerical control machine tool with waste liquid recycling function according to claim 1, wherein a liquid storage tank is arranged on the movable end (11), and a preliminary filter screen frame (12) is arranged above the liquid storage tank.
CN202322642442.3U 2023-09-27 2023-09-27 Digit control machine tool with waste liquid recycling Active CN220783173U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202322642442.3U CN220783173U (en) 2023-09-27 2023-09-27 Digit control machine tool with waste liquid recycling

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202322642442.3U CN220783173U (en) 2023-09-27 2023-09-27 Digit control machine tool with waste liquid recycling

Publications (1)

Publication Number Publication Date
CN220783173U true CN220783173U (en) 2024-04-16

Family

ID=90652349

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202322642442.3U Active CN220783173U (en) 2023-09-27 2023-09-27 Digit control machine tool with waste liquid recycling

Country Status (1)

Country Link
CN (1) CN220783173U (en)

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