CN214869022U - Strong scrap flushing device - Google Patents
Strong scrap flushing device Download PDFInfo
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- CN214869022U CN214869022U CN202023350637.3U CN202023350637U CN214869022U CN 214869022 U CN214869022 U CN 214869022U CN 202023350637 U CN202023350637 U CN 202023350637U CN 214869022 U CN214869022 U CN 214869022U
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- chip
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- flushing pipe
- filter
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Abstract
The utility model particularly provides a powerful scrap flushing device, which comprises a scrap receiving mechanism and a water tank mechanism, wherein the scrap receiving mechanism is arranged corresponding to the water tank mechanism; the scrap receiving mechanism comprises a left scrap receiving box, a right scrap receiving box, a left flushing pipe and a right flushing pipe, the left flushing pipe is installed on the left scrap receiving box, the right flushing pipe is installed on the right scrap receiving box, and the left scrap receiving box is connected with the right scrap receiving box; the left chip receiving box is provided with a left chip receiving cavity, the right chip receiving box is provided with a right chip receiving cavity, the left flushing pipe is arranged corresponding to the left chip receiving cavity, and the right flushing pipe is arranged corresponding to the right chip receiving cavity; the left flushing pipe and the right flushing pipe respectively flush the left chip receiving box and the right chip receiving box, and waste chips in the left chip receiving box and the right chip receiving box are flushed to the water tank mechanism, so that the phenomenon that the waste chips are accumulated in the left chip receiving box and the right chip receiving box is avoided.
Description
Technical Field
The utility model relates to a lathe technical field especially relates to a powerful dashes bits and equips.
Background
The traditional CNC machine base chip removal method generally comprises the steps of directly utilizing the inclination of a base casting chip removal groove and cutting fluid to flush away chips or using a screw-type device to remove chips.
The chip removal method has the advantages that the chip removal is not ideal due to the poor surface flatness of the chip removal groove of the base casting and the small flow of the cutting fluid. The screw row device used by the chip removal method has higher cost and complex structure. Meanwhile, the method generally adopts a mode of chip removal on the left side and the right side, and is not convenient for centralized recovery and treatment of chips.
SUMMERY OF THE UTILITY MODEL
In order to solve the problem, the utility model provides a powerful dashes bits and equips, connect the sweeps in bits case and the right side connects the bits case with a left side respectively through the left flushing pipe and the right flushing pipe that set up and effectively wash, avoid appearing the accumulational phenomenon of sweeps.
The utility model adopts the technical proposal that: a powerful chip flushing device comprises a chip receiving mechanism and a water tank mechanism, wherein the chip receiving mechanism and the water tank mechanism are arranged correspondingly; the scrap receiving mechanism comprises a left scrap receiving box, a right scrap receiving box, a left flushing pipe and a right flushing pipe, the left flushing pipe is installed on the left scrap receiving box, the right flushing pipe is installed on the right scrap receiving box, and the left scrap receiving box is connected with the right scrap receiving box; the left scrap receiving box is provided with a left scrap receiving chamber, the right scrap receiving box is provided with a right scrap receiving chamber, the left flushing pipe is arranged corresponding to the left scrap receiving chamber, and the right flushing pipe is arranged corresponding to the right scrap receiving chamber.
The further improvement to above-mentioned technical scheme does, a left side connects the bits cavity to be the arc setting, a left side connects the bits cavity to be the slope form setting.
The further improvement to above-mentioned technical scheme does, the right side connects the bits cavity to be the arc setting, the right side connects the bits cavity to be the slope form setting.
The technical scheme is further improved in that the left flushing pipe is 7-shaped, a plurality of left water outlet holes are formed in the left flushing pipe at intervals, and the left water outlet holes are right opposite to the left chip receiving chamber.
The technical scheme is further improved in that the right flushing pipe is arranged in a shape like a Chinese character '7', the right flushing pipe is provided with a plurality of right water outlet holes arranged at intervals, and the right water outlet holes are right opposite to the right chip receiving chamber.
The further improvement to above-mentioned technical scheme does, water tank mechanism includes left filter assembly, right filter assembly, main filter assembly, a left side filter assembly with right side filter assembly sets up both ends about main filter assembly respectively, a left side connects the bits case to have a left delivery port, a right side connects the bits case to have a right delivery port, a left side delivery port with left side filter assembly corresponds the setting, a right side delivery port with right side filter assembly corresponds the setting.
The technical scheme is further improved in that the left filter assembly comprises a left filter box and a left filter plate arranged in the left filter box, the left filter plate is obliquely arranged, the bottom of the left filter box is obliquely arranged, and the water outlet is arranged right opposite to the left filter plate.
The technical scheme is further improved in that the right filtering component comprises a right filtering box and a right filtering plate arranged in the right filtering box, the right filtering plate is obliquely arranged, the bottom of the right filtering box is obliquely arranged, and the water outlet is arranged right at the right filtering plate.
The technical scheme is further improved in that the main filtering component comprises a main box body and a water pump arranged in the main box body, one end of the main box body is communicated with the left filtering component, and the other end of the main box body is communicated with the right filtering component.
The technical scheme is further improved in that the main box body is provided with a plurality of filtering chambers which are communicated according to the working procedures.
The utility model has the advantages as follows: the scrap receiving mechanism is used for receiving the scraps and sending the received scraps to the water tank mechanism; the water tank mechanism is used for separating the scraps from the flushing liquid so as to facilitate recovery; connect a left side in the bits mechanism to connect the bits case and connect the bits case with the right side and be used for connecing the bits, and left flushing pipe and right flushing pipe are respectively to connect the bits case with the right side to connect the bits case to wash, connect the bits case with the left side and connect the bits case with the right side and wash to water tank mechanism, avoid appearing the bits in the left side connect the bits case and connect the bits case with the right side and connect the accumulational phenomenon of bits.
Drawings
FIG. 1 is a schematic structural view of the strong scrap-washing device of the present invention;
FIG. 2 is a schematic structural diagram of a chip receiving mechanism in the powerful chip flushing device of FIG. 1;
FIG. 3 is a schematic diagram of the left and right flushing pipes of the high power scrap flushing apparatus of FIG. 2;
FIG. 4 is an enlarged schematic view taken at circle A in FIG. 3;
fig. 5 is a schematic structural diagram of a water tank mechanism in the powerful chip flushing device in fig. 1.
Description of reference numerals: 10-chip receiving mechanism, 11-left chip receiving box, 11 a-left chip receiving chamber, 11 b-left water outlet, 12-right chip receiving box, 12 a-right chip receiving chamber, 12 b-right water outlet, 13-left flushing pipe, 13 a-left water outlet hole, 14-right flushing pipe, 14 a-right water outlet hole, 20-water tank mechanism, 30-left filtering component, 31-left filtering box, 32-left filtering plate, 40-right filtering component, 41-right filtering box, 42-right filtering plate, 50-main filtering component, 51-main box body and 52-water pump.
Detailed Description
In order to facilitate understanding of the present invention, the present invention will be described more fully below. The invention may, however, be embodied in many different forms and should not be construed as limited to the embodiments set forth herein. Rather, these embodiments are provided so that this disclosure will be thorough and complete.
Unless defined otherwise, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention belongs. The terminology used in the description of the invention herein is for the purpose of describing particular embodiments only and is not intended to be limiting of the invention.
As shown in fig. 1 to 5, the utility model provides a powerful scrap flushing device, which comprises a scrap receiving mechanism 10 and a water tank mechanism 20, wherein the scrap receiving mechanism 10 is arranged corresponding to the water tank mechanism 20; the water tank mechanism 20 comprises a left filter assembly 30, a right filter assembly 40 and a main filter assembly 50, wherein the left filter assembly 30 and the right filter assembly 40 are respectively arranged at the left end and the right end of the main filter assembly 50; connect bits mechanism 10 to be used for receiving the sweeps that the processing platform fell down, connect bits mechanism 10 to wash the sweeps received to water tank mechanism 20 again, water tank mechanism 20 is used for separating sweeps and flush fluid, conveniently retrieves.
As shown in fig. 1 to 4, the chip receiving mechanism 10 includes a left chip receiving box 11, a right chip receiving box 12, a left flushing pipe 13 and a right flushing pipe 14, the left flushing pipe 13 is mounted on the left chip receiving box 11, the right flushing pipe 14 is mounted on the right chip receiving box 12, the left chip receiving box 11 is connected with the right chip receiving box 12, in this embodiment, the left chip receiving box 11 and the right chip receiving box 12 each have a plurality of mounting brackets (not shown), and the left flushing pipe 13 and the right flushing pipe 14 are mounted on the mounting brackets; the left chip receiving box 11 is provided with a left chip receiving chamber 11a, the right chip receiving box 12 is provided with a right chip receiving chamber 12a, the left flushing pipe 13 is arranged corresponding to the left chip receiving chamber 11a, and the right flushing pipe 14 is arranged corresponding to the right chip receiving chamber 12 a; the left chip receiving chamber 11a is arranged in an arc shape, the left chip receiving chamber 11a is arranged in an inclined shape, the right chip receiving chamber 12a is arranged in an arc shape, and the right chip receiving chamber 12a is arranged in an inclined shape; the left flushing pipe 13 is arranged in a 7-shaped manner, the left flushing pipe 13 is provided with a plurality of left water outlet holes 13a which are arranged at intervals, the left water outlet holes 13a are right opposite to the left chip receiving chamber 11a, the right flushing pipe 14 is arranged in a 7-shaped manner, the right flushing pipe 14 is provided with a plurality of right water outlet holes 14a which are arranged at intervals, and the right water outlet holes 14a are right opposite to the right chip receiving chamber 12 a; the left chip receiving box 11 is provided with a left water outlet 11b, the right chip receiving box 12 is provided with a right water outlet 12b, the left water outlet 11b is arranged corresponding to the left filtering component 30, and the right water outlet 12b is arranged corresponding to the right filtering component 40.
As shown in fig. 5, the left filter assembly 30 includes a left filter box 31, a left filter plate 32 installed on the left filter box 31, the left filter plate 32 is disposed obliquely, the bottom of the left filter box 31 is disposed obliquely, the water outlet is disposed opposite to the left filter plate 32, and the left filter assembly 30 is used for filtering the mixture of the waste chips and the water flowing from the left chip receiving box 11.
The right filter assembly 40 comprises a right filter box 41 and a right filter plate 42 arranged on the right filter box 41, the right filter plate 42 is obliquely arranged, the bottom of the right filter box 41 is obliquely arranged, a water outlet is arranged right opposite to the right filter plate 42, and the right filter assembly 40 is used for filtering waste scraps and water mixture flowing into the right scrap receiving box 12.
The main filtering component 50 comprises a main box body 51 and a water pump 52 arranged on the main box body 51, one end of the main box body 51 is communicated with the left filtering component 30, and the other end of the main box body 51 is communicated with the right filtering component 40; the main box body 51 is provided with a plurality of filtering chambers which are communicated according to the working procedures; the main filtering assembly 50 is used for collecting the mixture filtered by the left filtering assembly 30 and the right filtering assembly 40, then performing further filtering, and finally recycling the flushing liquid by using the water pump 51.
The utility model discloses a theory of operation does: the scrap receiving mechanism 10 is used for receiving scraps falling from the machining table, the flushing liquid sprayed from the left flushing pipe 13 is used for flushing the scraps in the left scrap receiving box 11, the scraps are flushed to the left filtering assembly 30, the left filtering assembly 30 carries out first-step filtering on the flushing liquid and the scraps, and the filtered flushing liquid flows into the main filtering assembly 50; the right flushing pipe 14 is used for flushing the waste chips in the right chip receiving box 12, the waste chips are flushed to the right filtering assembly 40, the right filtering assembly 40 carries out first-step filtering on flushing liquid and the waste chips, and the filtered flushing liquid flows into the main filtering assembly 50; the flushing liquid filtered by the left filtering component 30 and the flushing liquid filtered by the right filtering component 40 are collected after being filtered in the main filtering component, and are finally filtered after being collected and then pumped by a water pump for recycling.
The above-mentioned embodiments only represent some embodiments of the present invention, and the description thereof is specific and detailed, but not to be construed as limiting the scope of the present invention. It should be noted that, for those skilled in the art, without departing from the spirit of the present invention, several variations and modifications can be made, which are within the scope of the present invention. Therefore, the protection scope of the present invention should be subject to the appended claims.
Claims (10)
1. A powerful chip flushing device is characterized by comprising a chip receiving mechanism and a water tank mechanism, wherein the chip receiving mechanism and the water tank mechanism are arranged correspondingly; the scrap receiving mechanism comprises a left scrap receiving box, a right scrap receiving box, a left flushing pipe and a right flushing pipe, the left flushing pipe is installed on the left scrap receiving box, the right flushing pipe is installed on the right scrap receiving box, and the left scrap receiving box is connected with the right scrap receiving box; the left scrap receiving box is provided with a left scrap receiving chamber, the right scrap receiving box is provided with a right scrap receiving chamber, the left flushing pipe is arranged corresponding to the left scrap receiving chamber, and the right flushing pipe is arranged corresponding to the right scrap receiving chamber.
2. The powerful chip flushing device as recited in claim 1, wherein the left chip receiving chamber is arcuate and the left chip receiving chamber is inclined.
3. The high power scrap flushing apparatus according to claim 1, wherein the right scrap receiving chamber is arcuately disposed and the right scrap receiving chamber is angularly disposed.
4. The powerful chip flushing device as claimed in claim 1, wherein the left flushing pipe is 7-shaped, and is provided with a plurality of left water outlet holes which are arranged at intervals and are opposite to the left chip receiving chamber.
5. The powerful chip flushing device as claimed in claim 1, wherein the right flushing pipe is 7-shaped, and is provided with a plurality of right outlet holes arranged at intervals, and the right outlet holes are opposite to the right chip receiving chamber.
6. The powerful chip flushing device as claimed in claim 1, wherein the water tank mechanism comprises a left filter assembly, a right filter assembly and a main filter assembly, the left filter assembly and the right filter assembly are respectively disposed at left and right ends of the main filter assembly, the left chip receiving tank has a left water outlet, the right chip receiving tank has a right water outlet, the left water outlet is disposed corresponding to the left filter assembly, and the right water outlet is disposed corresponding to the right filter assembly.
7. The powerful chip flushing device as recited in claim 6, wherein the left filter assembly comprises a left filter box, a left filter plate mounted on the left filter box, the left filter plate is disposed obliquely, the bottom of the left filter box is disposed obliquely, and the water outlet is disposed opposite to the left filter plate.
8. The powerful chip flushing device as recited in claim 6, wherein the right filter assembly comprises a right filter box, a right filter plate mounted on the right filter box, the right filter plate is disposed obliquely, the bottom of the right filter box is disposed obliquely, and the water outlet is disposed opposite to the right filter plate.
9. The powerful chip flushing device as recited in claim 6, wherein the main filter assembly comprises a main tank and a water pump mounted in the main tank, one end of the main tank is communicated with the left filter assembly, and the other end of the main tank is communicated with the right filter assembly.
10. The high power scrap washing apparatus in accordance with claim 9 wherein said main housing is provided with a plurality of filter chambers, said filter chambers being in process communication.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202023350637.3U CN214869022U (en) | 2020-12-31 | 2020-12-31 | Strong scrap flushing device |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202023350637.3U CN214869022U (en) | 2020-12-31 | 2020-12-31 | Strong scrap flushing device |
Publications (1)
Publication Number | Publication Date |
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CN214869022U true CN214869022U (en) | 2021-11-26 |
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Family Applications (1)
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CN202023350637.3U Active CN214869022U (en) | 2020-12-31 | 2020-12-31 | Strong scrap flushing device |
Country Status (1)
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CN (1) | CN214869022U (en) |
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2020
- 2020-12-31 CN CN202023350637.3U patent/CN214869022U/en active Active
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