CN209394390U - A kind of high-speed machining center - Google Patents
A kind of high-speed machining center Download PDFInfo
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- CN209394390U CN209394390U CN201920082324.2U CN201920082324U CN209394390U CN 209394390 U CN209394390 U CN 209394390U CN 201920082324 U CN201920082324 U CN 201920082324U CN 209394390 U CN209394390 U CN 209394390U
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- fixedly connected
- outline border
- isocon
- guide duct
- machining center
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Abstract
The utility model discloses a kind of high-speed machining centers, including outline border, the outer arch is fixedly connected with mobile tool apron, the mobile tool apron bottom is fixedly connected with cutter, the mobile tool apron side is run through and is fixedly connected with cooling spray pipe, corrugated hose is fixedly connected at the top of the cooling spray pipe, the corrugated hose one section far from cooling spray pipe through mobile tool apron and outline border and is communicated with cooler bin, the cooler bin is fixedly connected with outline border side, outline border inner wall bottom is fixedly connected with pedestal, the base top is fixedly connected with workbench, the outer frame bottom is fixedly connected with bottom frame, the bottom frame side, which is run through, the first guide duct, first guide duct one end is communicated with air blower, the utility model relates to high-speed machining center technical fields.A kind of high-speed machining center, facilitates addition coolant liquid, and cooling effect is more preferable, and cleaning operation is more convenient, mitigates staff's burden.
Description
Technical field
The utility model relates to high-speed machining center technical field, specially a kind of high-speed machining center.
Background technique
High-speed machining center, the working performance of continuous improvement are that mold manufacturing industry is able to efficient and high-precision processing mold
Important prerequisite, under the promotion of actuation techniques, emerge structure innovation, function admirable numerous different types of High-speed machinings in
The heart, the three axis high-speed machining centers that the middle and later periods nineties occurs have developed to five-shaft high-speed machining center, in driving method,
Current linear motor driving, revolution fortune are developed to from the driving of the servo motor and ball-screw of linear motion (X/Y/Z axis)
Dynamic (A and C axis) uses the torque motor directly driven, and some companies simultaneously make machining center by linear motor and torque motor
Development is helped the travel speed for being significantly improved machining center using the Five-axis NC Machining Center directly driven, dynamic property and determined
Position precision, for the high-speed machining center of mold processing, one universal to be structurally characterized in that using gantry type frame structure, with this
Enhance lathe rigidity, and the space convenient for making full use of processing district, the material of bed piece is then most to use polymer coagulation
Soil since this material has preferable damping capacity and lower pyroconductivity, therefore is conducive to improve the machining accuracy of mold.
High-speed machining center used at present needs manual cleaning when clearing up several clasts, takes time and effort, and causes to bear to staff
It is larger, and coolant liquid addition is not very convenient during the work time for cutter.
Utility model content
(1) the technical issues of solving
In view of the deficiencies of the prior art, the utility model provides a kind of high-speed machining center, solves used at present
High-speed machining center needs manual cleaning when clearing up several clasts, takes time and effort, and causes to bear larger, and knife to staff
Coolant liquid adds not very convenient problem to tool during the work time.
(2) technical solution
In order to achieve the above object, the utility model is achieved by the following technical programs: a kind of high-speed machining center, packet
Outline border is included, the outer arch is fixedly connected with mobile tool apron, and the mobile tool apron bottom is fixedly connected with cutter, the movement
Cooling spray pipe is run through and be fixedly connected in tool apron side, is fixedly connected with corrugated hose, the spiral at the top of the cooling spray pipe
Hose runs through mobile tool apron and outline border far from one end of cooling spray pipe and is communicated with cooler bin, and the cooler bin and outline border side are solid
Fixed connection, outline border inner wall bottom are fixedly connected with pedestal, and the base top is fixedly connected with workbench, the outline border bottom
Portion is fixedly connected with bottom frame, and through there is the first guide duct, first guide duct one end is communicated with air blower for the bottom frame side,
One section far from air blower of first guide duct is communicated with the first isocon, and the is fixedly connected at the top of first isocon
Two guide ducts, second guide duct sequentially pass through outline border and pedestal far from one end of the first isocon and extend in workbench
Portion, the part that second guide duct is located inside workbench are communicated with the second isocon.
Preferably, the part that the corrugated hose is located at outside outline border is connected with high-pressure water valve.
Preferably, run through and extend to bench-top at the top of second isocon, the second shunting bottom of the tube is passed through
It wears and extends to outside workbench side.
Preferably, cleaning hole is offered at the top of outline border inner wall bottom and bottom frame.
Preferably, first isocon runs through far from one end of the first guide duct and extends to inside bottom frame.
Preferably, the bottom frame offers clean-up port far from the side of the first isocon.
(3) beneficial effect
The utility model provides a kind of high-speed machining center.Have it is following the utility model has the advantages that
(1), a kind of high-speed machining center is fixedly connected with mobile tool apron, the mobile tool apron bottom by outer arch
Portion is fixedly connected with cutter, and cooling spray pipe is run through and be fixedly connected in the mobile tool apron side, and the cooling spray pipe top is solid
Surely it is connected with corrugated hose, the corrugated hose runs through mobile tool apron and outline border far from one end of cooling spray pipe and is communicated with cooling
Case, the cooler bin are fixedly connected with outline border side, and outline border inner wall bottom is fixedly connected with pedestal, and the base top is solid
Surely it is connected with workbench, the part that the corrugated hose is located at outside outline border is connected with high-pressure water valve, and when work can pass through cooling
Coolant liquid is sprayed on the position of cutter and work pieces process by jet pipe, has been reached and has been facilitated addition coolant liquid, the better purpose of cooling effect.
(2), a kind of high-speed machining center is fixedly connected with bottom frame by outer frame bottom, and the bottom frame side, which is run through, to be had
First guide duct, described guide duct one end are communicated with air blower, and one section far from air blower of first guide duct is communicated with
One isocon, the first isocon top are fixedly connected with the second guide duct, and second guide duct is far from the first isocon
One end sequentially pass through outline border and pedestal and extend to inside workbench, second guide duct is located at the part inside workbench
It is communicated with the second isocon, runs through and extend to bench-top at the top of second isocon, described second shunts bottom of the tube
Run through and extend to outside workbench side, offers cleaning hole at the top of outline border inner wall bottom and bottom frame, described first
Isocon runs through far from one end of the first guide duct and extends to inside bottom frame, and the bottom frame is opened far from the side of the first isocon
Equipped with clean-up port, the second isocon blows down the clast on workbench after work, is fallen into inside bottom frame by cleaning hole, and
Clast is blown out by the first isocon, has achieved the purpose that easy cleaning.
Detailed description of the invention
Fig. 1 is the utility model side structure schematic view;
Fig. 2 is the utility model schematic view of the front view.
In figure: 1 outline border, 2 mobile tool aprons, 3 cutters, 4 cooling spray pipes, 5 corrugated hoses, 6 cooler bins, 7 pedestals, 8 work
Platform, 9 bottom frames, 10 first guide ducts, 11 air blowers, 12 first isocons, 13 second guide ducts, 14 second isocons, 15 high pressures
Water valve, 16 cleaning holes.
Specific embodiment
The following will be combined with the drawings in the embodiments of the present invention, carries out the technical scheme in the embodiment of the utility model
Clearly and completely describe, it is clear that the described embodiments are only a part of the embodiments of the utility model, rather than whole
Embodiment.Based on the embodiments of the present invention, those of ordinary skill in the art are without making creative work
Every other embodiment obtained, fall within the protection scope of the utility model.
The utility model provides a kind of technical solution referring to FIG. 1-2: a kind of high-speed machining center, including outline border 1, outside
Mobile tool apron 2 is fixedly connected at the top of frame 1, mobile 2 bottom of tool apron is fixedly connected with cutter 3, and mobile 2 side of tool apron is run through and consolidated
Surely it is connected with cooling spray pipe 4, facilitates and coolant liquid is sprayed on the position that cutter is contacted with workpiece, be fixedly connected at the top of cooling spray pipe 4
There is corrugated hose 5, corrugated hose 5 runs through mobile tool apron 2 and outline border 1 far from one end of cooling spray pipe 4 and is communicated with cooler bin 6,
Cooler bin 6 is fixedly connected with 1 side of outline border, and 1 inner wall bottom of outline border is fixedly connected with pedestal 7, is fixedly connected at the top of pedestal 7
Workbench 8,1 bottom of outline border are fixedly connected with bottom frame 9, and 9 side of bottom frame, which is run through, the first guide duct 10, the first guide duct 10 1
End is communicated with air blower 11, and one section far from air blower 11 of the first guide duct 10 is communicated with the first isocon 12, the first isocon
12 tops are fixedly connected with the second guide duct 13, and the second guide duct 13 sequentially passes through outline border 1 far from one end of the first isocon 12
With pedestal 7 and extend to inside workbench 8, the part that the second guide duct 13 is located inside workbench 8 is communicated with the second isocon
14 facilitate by inside bottom frame 9 clast blowout bottom frame 9 outside.
The part that corrugated hose 5 is located at outside outline border 1 is connected with high-pressure water valve 15.
Run through and extend to 8 top of workbench at the top of second isocon 14, facilitates and the clast on workbench 8 is blown into bottom
On seat 7,14 bottom of the second isocon is run through and is extended to outside 8 side of workbench, facilitates and blows to the clast on pedestal 7 outside
1 inner wall bottom of frame.
1 inner wall bottom of outline border and 9 top of bottom frame offer cleaning hole 16, and the clast of 1 inner wall bottom of outline border is facilitated to pass through
Cleaning hole 16 is fallen into inside bottom frame 9.
First isocon 12 runs through far from one end of the first guide duct 10 and extends to inside bottom frame 9.
Bottom frame 9 offers clean-up port far from the side of the first isocon 12.
In use, opening high-pressure water valve 15, the coolant liquid inside cooler bin 6 is entered in cooling spray pipe 4 by corrugated hose 5
Portion and the contact position for being injected in cutter 3 Yu workpiece after process finishing, open air blower 11, and the blowing of air blower 11 passes through first
Guide duct 10 is distinguished inside the second guide duct 13 and the first isocon 12, and the wind inside the second guide duct 13 enters the second isocon
14 inside are simultaneously blown on the surface of workbench 8 and pedestal 7, and the clast on workbench 8 and pedestal 7 is blown into 1 inner wall bottom of outline border simultaneously
It is fallen into inside bottom frame 9 by cleaning hole 16, the blowing of air blower 11 is blown out the clast inside bottom frame 9 by the first isocon 12.
It should be noted that, in this document, relational terms such as first and second and the like are used merely to a reality
Body or operation are distinguished with another entity or operation, are deposited without necessarily requiring or implying between these entities or operation
In any actual relationship or order or sequence.Moreover, the terms "include", "comprise" or its any other variant are intended to
Non-exclusive inclusion, so that the process, method, article or equipment including a series of elements is not only wanted including those
Element, but also including other elements that are not explicitly listed, or further include for this process, method, article or equipment
Intrinsic element.In the absence of more restrictions.By sentence " element limited including one ..., it is not excluded that
There is also other identical elements in the process, method, article or apparatus that includes the element ".
While there has been shown and described that the embodiments of the present invention, for the ordinary skill in the art,
It is understood that these embodiments can be carried out with a variety of variations in the case where not departing from the principles of the present invention and spirit, repaired
Change, replacement and variant, the scope of the utility model is by appended claims.
Claims (6)
1. a kind of high-speed machining center, including outline border (1), it is characterised in that: be fixedly connected with mobile knife at the top of the outline border (1)
Seat (2), mobile tool apron (2) bottom are fixedly connected with cutter (3), and mobile tool apron (2) side is run through and is fixedly connected
Have cooling spray pipe (4), be fixedly connected with corrugated hose (5) at the top of the cooling spray pipe (4), the corrugated hose (5) is far from cold
But one end of jet pipe (4) is run through mobile tool apron (2) and outline border (1) and is communicated with cooler bin (6), the cooler bin (6) and outline border
(1) side is fixedly connected, and outline border (1) the inner wall bottom is fixedly connected with pedestal (7), is fixedly connected at the top of the pedestal (7)
Have workbench (8), outline border (1) bottom is fixedly connected with bottom frame (9), and bottom frame (9) side, which is run through, the first guide duct
(10), described first guide duct (10) one end is communicated with air blower (11), and first guide duct (10) is far from air blower (11)
One section be communicated with the first isocon (12), be fixedly connected with the second guide duct (13), institute at the top of first isocon (12)
The second guide duct (13) are stated to sequentially pass through outline border (1) and pedestal (7) far from the one end of the first isocon (12) and extend to work
Platform (8) is internal, and second guide duct (13) is located at the internal part of workbench (8) and is communicated with the second isocon (14).
2. a kind of high-speed machining center according to claim 1, it is characterised in that: the corrugated hose (5) is located at outline border
(1) external part is connected with high-pressure water valve (15).
3. a kind of high-speed machining center according to claim 1, it is characterised in that: passed through at the top of second isocon (14)
It wears and extends at the top of workbench (8), the second isocon (14) bottom is run through and extended to outside workbench (8) side.
4. a kind of high-speed machining center according to claim 1, it is characterised in that: outline border (1) the inner wall bottom and bottom
Cleaning hole (16) are offered at the top of frame (9).
5. a kind of high-speed machining center according to claim 1, it is characterised in that: first isocon (12) is far from the
One end of one guide duct (10) is run through and extends to bottom frame (9) inside.
6. a kind of high-speed machining center according to claim 1, it is characterised in that: the bottom frame (9) shunts far from first
The side of pipe (12) offers clean-up port.
Priority Applications (1)
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CN201920082324.2U CN209394390U (en) | 2019-01-17 | 2019-01-17 | A kind of high-speed machining center |
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CN201920082324.2U CN209394390U (en) | 2019-01-17 | 2019-01-17 | A kind of high-speed machining center |
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CN209394390U true CN209394390U (en) | 2019-09-17 |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN114102387A (en) * | 2021-11-29 | 2022-03-01 | 南京赛洛德科技发展有限公司 | Internal and external cooling switching system for cutter machining |
-
2019
- 2019-01-17 CN CN201920082324.2U patent/CN209394390U/en active Active
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN114102387A (en) * | 2021-11-29 | 2022-03-01 | 南京赛洛德科技发展有限公司 | Internal and external cooling switching system for cutter machining |
CN114102387B (en) * | 2021-11-29 | 2023-06-02 | 南京赛洛德科技发展有限公司 | Internal and external cooling switching system for cutter machining |
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